55
GSZ/VSZ 13 SEER Split System Heat Pumps Refer to Service Manual RS6200006 for installation, operation, and troubleshooting information. All safety information must be followed as provided in the Service Manual. Refer to the appropriate Parts Catalog for part number information. Models listed on page 3. RT6212006r10 December 2011 Copyright © 2007-2011 Goodman Manufacturing Company, L.P. ® TECHNICAL MANU TECHNICAL MANU TECHNICAL MANU TECHNICAL MANU TECHNICAL MANUAL AL AL AL AL This manual is to be used by qualified, professionally trained HVAC technicians only. Goodman does not assume any responsibility for property damage or personal injury due to improper service procedures or services performed by an unqualified person. Downloaded from www.Manualslib.com manuals search engine

Goodman Technical Manual Gszvsz_13_seer

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Page 1: Goodman Technical Manual Gszvsz_13_seer

GSZ/VSZ 13 SEERSplit System Heat Pumps

• Refer to Service Manual RS6200006 for installation, operation, and troubleshooting information.

• All safety information must be followed as provided in the Service Manual.

• Refer to the appropriate Parts Catalog for part number information.

• Models listed on page 3.

RT6212006r10December 2011

Copyright © 2007-2011 Goodman Manufacturing Company, L.P.

® TECHNICAL MANUTECHNICAL MANUTECHNICAL MANUTECHNICAL MANUTECHNICAL MANUALALALALAL

This manual is to be used by qualified, professionally trained HVAC technicians only. Goodman doesnot assume any responsibility for property damage or personal injury due to improper serviceprocedures or services performed by an unqualified person.

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Page 2: Goodman Technical Manual Gszvsz_13_seer

PRODUCT IDENTIFICATION

2

The model number is used for positive identification of component parts used in manufacturing. Please use this numberwhen requesting service or parts information.

WARNINGWARNINGHIGH VOLTAGE!Disconnect ALL power before servicing or installing this unit. Multiple powersources may be present. Failure to do so may cause property damage, personalinjury or death.

Installation and repair of this unitshould be performed ONLY byindividuals meeting (at a mini-

mum) the requirements of an "entry level technician", asspecified by the Air-Conditioning, Heating, and Refrigera-tion Institute (AHRI). Attempting to install or repair thisunit without such background may result in productdamage, personal injury or death.

Goodman will not be responsiblefor any injury or property damagearising from improper service or

service procedures. If you install or perform service onthis unit, you assume responsibility for any personalinjury or property damage which may result. Many juris-dictions require a license to install or service heating andair conditioning equipment.

WARNINGWARNING WARNINGWARNING

G S Z 13 024 1 A A

PRODUCTFAMILY:S: Split System

PRODUCT TYPE:C: Condenser R-22X: Condenser R-410AH: Heat Pump R-22Z: Heat Pump R-410A

SEER:SEER Rating

BRAND:G: Goodman® Brand(Standard Feature Set Model)

S: Goodman® DeluxeV: Value

NOMINALCAPACITY018: 1.5 Tons024: 2 Tons030: 2.5 tons036: 3 Tons042: 3.5 Tons048: 4 Tons060: 5 tons

ELECTRICAL:1: 208-230v 1ph/60Hz3: 208-230v 3ph/60Hz4: 460v 3ph/60Hz

MAJOR REVISION:A: Initial Release

MINOR REVISION:A: Initial Release

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Page 3: Goodman Technical Manual Gszvsz_13_seer

PRODUCT IDENTIFICATION

3

The United States Environmental Protection Agency (“EPA”) has issued various regulations re-garding the introduction and disposal of refrigerants introduced into this unit. Failure to followthese regulations may harm the environment and can lead to the imposition of substantial fines.These regulations may vary by jurisdiction. Should questions arise, contact your local EPA office.

WARNINGWARNING

Do not connect or use any devicethat is not design certified by Good-man for use with this unit. Serious

property damage, personal injury, reduced unit perfor-mance and/or hazardous conditions may result from theuse of such non-approved devices.

WARNINGWARNING To prevent the risk of propertydamage, personal injury, or death,do not store combustible materi-

als or use gasoline or other flammable liquids or vaporsin the vicinity of this appliance.

WARNINGWARNING

The model number is used for positive identification of component parts used in manufacturing. Please use this numberwhen requesting service or parts information.

* Indicates minor revision & is not used for order entry or inventory management

GSZ130181A*GSZ130241A*GSZ130301A*GSZ130361A*GSZ130421A*GSZ130481A*GSZ130601A*

GSZ130241B*GSZ130361B*

GSZ130363A*GSZ130483A*GSZ130484A*GSZ130603A*GSZ130604A*

VSZ130181A*VSZ130241A*VSZ130301A*VSZ130361A*VSZ130421A*VSZ130481A*VSZ130601A*

VSZ130241B*VSZ130361B*

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Page 4: Goodman Technical Manual Gszvsz_13_seer

PRODUCT DESIGN

4

GSZ/VSZ13 models are available in 1 1/2 through 5 ton sizesand use R-410A refrigerant. They are designed for 208/230volt single phase applications.Select GSZ13 models are available in 208/230 and 460 volt3-phase applications. These models use R-410A refrigerant.The condenser air is pulled through the condenser coil by adirect drive propeller fan. This condenser air is then dis-charged out of the top of the cabinet.These units are designed for free air discharge, so no addi-tional resistance like duct work shall be attached.The suction and liquid line connections on present modelsare of the sweat type for field piping with refrigerant type cop-per. Front seating valves are factory installed to accept thefield run copper. The total refrigerant charge for a normal in-stallation is factory installed in the condensing unit. GSZ unitsare charged for the matching evaporator coil and a 15 footrefrigerant line set.Systems should be properly sized by heat gain and losscalculations made according to methods of the Air Condi-tioning Contractors Association (ACCA) or equivalent. It isthe contractors responsibility to ensure the system has ad-equate capacity to heat or cool the conditioned space.GSZ/VSZ models use high-efficiency Copeland® scroll"Ultratech" compressors which are specifically desgined forR-410A refrigerant. There are a number of design character-istics which are different from the scroll compared to the tra-ditional reciprocating compressor."Ultratech" Series scroll compressors with Copeland®

ComfortAlert diagnositics will not have a discharge thermo-stat. Some of the early model scroll compressors requireddischarge thermostats.Due to their design Scroll compressors are inherently moretolerant of small quantities of liquid refrigerant.NOTE: Even though the compressor section of a Scroll com-pressor is more tolerant of liquid refrigerant, continuedfloodback or flooded start conditions may wash oil from thebearing surfaces causing premature bearing failure."Ultratech" Series scroll compressors use "POE" orpolyolester oil which is NOT compatible with mineral oil basedlubricants like 3GS. "POE" oil must be used if additional oilis required.

WARNINGTo avoid possible injury, explosion or death, practicesafe handling of refrigerants.

Operating pressures and amp draws may differ from stan-dard reciprocating and/or scroll compressors. This informa-tion may be found in the "Cooling Performance Data" sec-tion.This unit is for outdoor installation only. Refer to minimumfigure for clearances from the sides of the unit to full wallsand other objects.

NOTE: This unit cannot be completely enclosed. At leastone side must be unrestricted.These clearances will help avoid air recirculation. If installingtwo or more units at the same location, allow at least 24inches between units. If only one side is restricted (for ex-ample, against the outside wall of a house), the unit may beplaced as close as 8" to that one wall.DO NOT locate the unit:

* Directly under a vent termination for a gas appliance.* Within 3 feet of a clothes drier vent* Where the refreezing of defrost water would create

a hazard* Where water may rise into the unit.

Model Type A B C AA

Residential 10" 10" 18" 20"

Light Commercial 12" 12" 18" 24"

Minimum Airflow Clearance

OK!OK!

AA AAA

A

CC

C COK!

OK!

OK!OK!

NOTRECOMMENDED

AA

AA AA

AAAA

B B B

B

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Page 5: Goodman Technical Manual Gszvsz_13_seer

PRODUCT DESIGN

5

Model Dimensions - W x D x HG/VSZ130181A* 26 x 26 x 32¼

G/VSZ130241A* 26 x 26 x 32¼

G/VSZ130241B* 26 x 26 x 32½

G/VSZ130301A* 26 x 26 x 32¼

G/VSZ130361A*GSZ130363A*

29 x 29 x 38¼

G/VSZ130361B* 29 x 29 x 32½

G/VSZ130421A* 29 x 29 x 38¼G/VSZ130481A*GSZ130483A*GSZ130484A*

29 x 29 x 34¼

G/VSZ130601A*GZX130603A*GSZ130604A*

35½ x 35½ x 34¼

Product Dimensions

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Page 6: Goodman Technical Manual Gszvsz_13_seer

HEAT PUMP SPECIFICATIONS

6

NOTE: This data is provided as a guide, it is important to electrically connect the unit and properly size fuses/circuit breakers andwires in accordance with all national and/or local electrical codes. Use copper wire only.

Unit specifications are subject to change without notice. ALWAYS refer to the unit's serial plate for the most up-to-date generaland electrical information.

G/VSZ130[18-60]1A*

* Up to 24' in equivalent line length(1) Wire size should be determined in accordance with National Electrical Codes; extensive wire runs will require larger wire sizes.(2) Maximum Overcurrent Protection Device: MUST use Time Delay Fuse or HACR type Circuit Breaker of the same size as noted.

NOTES:• Always check the S & R plate for electrical data on the unit being installed.• Installer will need to supply 7/8" to 1-1/8" adapters for suction line connections (4 & 5 ton units).• Installer will need to supply 3/4" to 7/8" adapters for suction line connections (3 ton unit).• Unit is charged with refrigerant for 15' of 3/8" liquid line. System charge must be adjusted per Installation Instructions Final Charge

Procedure.• Installation of these units requires the specified TXV Kit to be installed on the indoor coil. THE SPECIFIED TXV IS DETERMINED BY THE

OUTDOOR UNIT, NOT THE INDOOR COIL.

*SZ1

3018

1A

*SZ1

3024

1A

*SZ1

3030

1A

*SZ1

3036

1A

*SZ1

3042

1A

*SZ1

3048

1A

*SZ1

3060

1A

Nominal Capacities

Cooling Capacity, BTUH 18,000 24,000 30,000 36,000 42,000 48,000 60,000

Heating Capacity, BTUH 17,000 23,000 26,400 34,000 40,500 44,000 58,000

Compressor

R.L. Amps 9.0 12.8 14.1 16.6 17.9 19.8 26.4

L.R. Amps 48.0 58.3 73.0 79.0 112.0 109.0 134.0

Low Pressure Switch

Open 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG

Close 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG

High Pressure Switch

Open 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG

Close 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG

Condenser Fan Motor

Horsepower 1/6 1/6 1/6 1/4 1/4 1/4 1/4

F.L. Amps 1.10 1.10 1.10 1.50 1.50 1.50 1.50

Liquid Line, Inches O.D.* 3/8" 3/8" 3/8" 3/8" 3/8" 3/8" 3/8"

Suction Line, Inches O.D.* 3/4" 3/4" 3/4" 3/4" 7/8" 7/8" 7/8"

Refrigerant Charge 122.0 122.0 127.0 171.0 174.0 222.0 245.0

Power Supply 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1

Minimum Circuit Ampacity(1) 12.3 17.1 18.7 22.3 23.9 26.3 34.5

Maximum Overcurrent Device(2) 20 25 30 35 40 45 60

Electrical Conduit Size

Power Supply (Inches) 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4

Approximate Shipping Weight 198 198 202 232 235 240 266

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Page 7: Goodman Technical Manual Gszvsz_13_seer

HEAT PUMP SPECIFICATIONS

7

NOTE: This data is provided as a guide, it is important to electrically connect the unit and properly size fuses/circuit breakers andwires in accordance with all national and/or local electrical codes. Use copper wire only.

Unit specifications are subject to change without notice. ALWAYS refer to the unit's serial plate for the most up-to-date generaland electrical information.

GSZ130[18, 42-60]1AC; GSZ130301AD; GSX130421AE

VSZ130[18, 42-60]1AB/AD; VSZ130301AC/AE

* Up to 24' in equivalent line length(1) Wire size should be determined in accordance with National Electrical Codes; extensive wire runs will require larger wire sizes.(2) Maximum Overcurrent Protection Device: MUST use Time Delay Fuse or HACR type Circuit Breaker of the same size as noted.

NOTES:• Always check the S & R plate for electrical data on the unit being installed.• Installer will need to supply 7/8" to 1-1/8" adapters for suction line connections (4 & 5 ton units).• Installer will need to supply 3/4" to 7/8" adapters for suction line connections (3 ton unit).• Unit is charged with refrigerant for 15' of 3/8" liquid line. System charge must be adjusted per Installation Instructions Final Charge

Procedure.• Installation of these units requires the specified TXV Kit to be installed on the indoor coil. THE SPECIFIED TXV IS DETERMINED BY THE

OUTDOOR UNIT, NOT THE INDOOR COIL.

GSZ

1301

81A

CVS

Z130

181A

B

VSZ1

3018

1AD

GSZ

1303

01A

DVS

Z130

301A

C

VSZ1

3030

1AE

GSZ

1304

21A

CVS

Z130

421A

BVS

Z130

421A

D

GSZ

1304

21A

E

GSZ

1304

81A

CVS

Z130

481A

BVS

Z130

481A

D

GSZ

1306

01A

CVS

Z130

601A

B

Nominal Capacities

Cooling Capacity, BTUH 18,000 18,000 30,000 30,000 42,000 42,000 48,000 60,000

Heating Capacity, BTUH 17,000 17,000 26,400 26,400 40,500 40,500 44,000 58,000

Compressor

R.L. Amps 9.0 9.0 14.1 14.1 17.9 17.9 19.9 26.4

L.R. Amps 48.0 48.0 73.0 73.0 112.0 112.0 109.0 134.0

Low Pressure Switch

Open 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG

Close 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG

High Pressure Switch

Open 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG

Close 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG

Condenser Fan Motor

Horsepower 1/6 1/8 1/6 1/8 1/4 1/4 1/4 1/4

F.L. Amps 1.10 0.7 1.10 0.7 1.50 1.50 1.50 1.50

Liquid Line, Inches O.D.* 3/8" 3/8" 3/8" 3/8" 3/8" 3/8" 3/8" 3/8"

Suction Line, Inches O.D.* 3/4" 3/4" 3/4" 3/4" 7/8" 7/8" 7/8" 7/8"

Refrigerant Charge 119.0 119.0 124.0 124.0 171.0 156.0 219.0 240.0

Power Supply 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1

Minimum Circuit Ampacity(1) 12.4 12.0 18.7 18.3 23.9 23.9 26.4 34.5

Maximum Overcurrent Device(2) 20 20 30 30 40 40 45 60

Electrical Conduit Size

Power Supply (Inches) 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4

Approximate Shipping Weight 198 198 202 202 235 235 240 266

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Page 8: Goodman Technical Manual Gszvsz_13_seer

HEAT PUMP SPECIFICATIONS

8

NOTE: This data is provided as a guide, it is important to electrically connect the unit and properly size fuses/circuit breakers andwires in accordance with all national and/or local electrical codes. Use copper wire only.

Unit specifications are subject to change without notice. ALWAYS refer to the unit's serial plate for the most up-to-date generaland electrical information.

G/VSZ130[24,36]B*

(1) Wire size should be determined in accordance with National Electrical Codes; extensive wire runs will require larger wire sizes.(2) Maximum Overcurrent Protection Device: MUST use Time Delay Fuse or HACR type Circuit Breaker of the same size as noted.(3) Tested and rated in accordance with AHRI Standard 210/240

NOTES:• Always check the S & R plate for electrical data on the unit being installed.• Installer will need to supply 7/8" to 1-1/8" adapters for suction line connections (4 & 5 ton units).• Installer will need to supply 3/4" to 7/8" adapters for suction line connections (3 ton unit).• Unit is charged with refrigerant for 15' of 3/8" liquid line. System charge must be adjusted per Installation Instructions Final Charge

Procedure.• Installation of these units requires the specified TXV Kit to be installed on the indoor coil. THE SPECIFIED TXV IS DETERMINED BY THE

OUTDOOR UNIT, NOT THE INDOOR COIL.

GSZ

1302

41B

*VS

Z130

241B

*

VSZ1

3024

1BC

GSZ

1303

61B

*VS

Z130

361B

*

GSZ

1303

61B

*VS

Z130

361B

*

GSZ

1303

61B

C

Nominal Capacities

Cooling Capacity, BTUH 24,000 24,000 36,000 36,000 36,000

Heating Capacity, BTUH 23,000 23,000 34,000 34,000 34,000

Compressor

R.L. Amps 12.8 12.8 16.7 16.7 16.7

L.R. Amps 58.3 58.3 79.0 79.0 79.0

Low Pressure Switch

Open 22 PSIG 22 PSIG 22 PSIG 22 PSIG 22 PSIG

Close 50 PSIG 50 PSIG 50 PSIG 50 PSIG 50 PSIG

High Pressure Switch

Open 610 PSIG 610 PSIG 610 PSIG 610 PSIG 610 PSIG

Close 420 PSIG 420 PSIG 420 PSIG 420 PSIG 420 PSIG

Condenser Fan Motor

Horsepower 1/6 1/8 1/4 1/4 1/4

F.L. Amps 1.10 0.7 1.50 1.50 1.50

Liquid Line, Inches O.D.* 3/8" 3/8" 3/8" 3/8" 3/8"

Suction Line, Inches O.D.* 3/4" 3/4" 3/4" 3/4" 3/4"

Refrigerant Charge 113.0 113.0 131.0 128.0 122.0

Power Supply 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1 208/230-60-1

Minimum Circuit Ampacity(1) 17.1 16.7 22.3 22.3 22.3

Maximum Overcurrent Device(2) 25 25 35 35 35

Electrical Conduit Size

Power Supply (Inches) 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4

Approximate Shipping Weight 198 198 232 232 232

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Page 9: Goodman Technical Manual Gszvsz_13_seer

HEAT PUMP SPECIFICATIONS

9

NOTE: This data is provided as a guide, it is important to electrically connect the unit and properly size fuses/circuit breakers andwires in accordance with all national and/or local electrical codes. Use copper wire only.

Unit specifications are subject to change without notice. ALWAYS refer to the unit's serial plate for the most up-to-date generaland electrical information.

(1) Wire size should be determined in accordance with National Electrical Codes; extensive wire runs will require larger wire sizes.(2) Maximum Overcurrent Protection Device: MUST use Time Delay Fuse or HACR type Circuit Breaker of the same size as noted.(3) Tested and rated in accordance with AHRI Standard 210/240

NOTES:• Always check the S & R plate for electrical data on the unit being installed.• Installer will need to supply 7/8" to 1-1/8" adapters for suction line connections (4 & 5 ton units).• Installer will need to supply 3/4" to 7/8" adapters for suction line connections (3 ton unit).• Unit is charged with refrigerant for 15' of 3/8" liquid line. System charge must be adjusted per Installation Instructions Final Charge

Procedure.• Installation of these units requires the specified TXV Kit to be installed on the indoor coil. THE SPECIFIED TXV IS DETERMINED BY THE

OUTDOOR UNIT, NOT THE INDOOR COIL.

GSZ

1303

63A*

GSZ

1304

83A*

GSZ

1304

84A*

GSZ

1306

03A*

GSZ

1306

04A*

Nominal Capacities

Cooling Capacity, BTUH 36,000 48,000 48,000 60,000 60,000

Heating Capacity, BTUH 34,000 44,000 44,000 58,000 58,000

Decibels 74 76 76 75 75

Compressor

R.L. Amps 10.4 13.1 6.1 16.0 7.8

L.R. Amps 73.0 83.1 41.0 110.0 52.0

Type Scroll Scroll Scroll Scroll Scroll

Condenser Fan Motor

Horsepower 1/4 1/4 1/4 1/4 1/4

F.L. Amps 1.50 1.50 0.80 1.50 0.80

Refrigerant System

Liquid Line, Inches O.D.* 3 3/8" 3/8" 3/8" 3/8" 3/8"

Suction Line, Inches O.D.* 3 7/8" 1 1/8" 1 1/8" 1 1/8" 1 1/8"

Liquid Valve Connection, Inches O.D.* 3/8" 3/8" 3/8" 3/8" 3/8"

Suction Valve Connection, Inches O.D.* 3/4" 7/8" 7/8" 7/8" 7/8"

Refrigerant Charge 171.0 222.0 222.0 245.0 245.0

Piston Size 0.068 0.078 0.078 0.088 0.088

Power Supply 208/230-60-3 208/230-60-3 460-60-3 208/230-60-3 460-60-3

Minimum Circuit Ampacity(1) 14.5 17.9 8.4 21.5 10.6

Maximum Overcurrent Device(2) 20 30 15 35 15

Min / Max Volts 197 / 253 197 / 253 414 / 506 197 / 253 414 / 506

Electrical Conduit Size

Power Supply (Inches) 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4 1/2 or 3/4

Approximate Shipping Weight 232 235 234 262 261

GSZ130[36-60][3,4]A*

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Page 10: Goodman Technical Manual Gszvsz_13_seer

10

COOLING PERFORMANCE DATA G/VSZ130181A* M

OD

EL:

G/V

SZ1

3018

1A*

/ AR

*F18

2416

**E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Ou

tdoo

r A

mbi

ent T

em

pera

ture

6575

8595

105

115

Ente

ring

Indo

or

Wet

Bu

lb T

empe

ratu

reID

B*

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h17

.117

.719

.4-

16.7

17.3

18.9

-16

.316

.918

.5-

15.9

16.4

18.0

-15

.115

.617

.1-

14.0

14.5

15.9

-S

/T0.

740.

620.

43-

0.77

0.64

0.45

-0.

790.

660.

46-

0.82

0.68

0.47

-0.

850.

710.

49-

0.85

0.71

0.49

-T

1715

11-

1715

11-

1715

11-

1815

12-

1715

11-

1614

11-

675

KW

1.25

1.27

1.31

-1.

341.

371.

41-

1.42

1.45

1.50

-1.

491.

521.

57-

1.55

1.59

1.64

-1.

611.

641.

69-

AM

PS4.

54.

64.

8-

4.9

5.0

5.2

-5.

35.

45.

6-

5.7

5.8

6.0

-6.

06.

26.

4-

6.4

6.5

6.8

-H

I PR

225

242

255

-25

227

128

7-

287

309

326

-32

735

237

1-

367

395

418

-40

643

746

1-

LO P

R10

911

612

6-

115

122

133

-11

912

713

9-

125

133

146

-13

114

015

2-

136

144

158

-M

Bh

16.6

17.2

18.8

-16

.216

.818

.4-

15.8

16.4

17.9

-15

.416

.017

.5-

14.6

15.2

16.6

-13

.614

.015

.4-

S/T

0.71

0.59

0.41

-0.

730.

610.

43-

0.75

0.63

0.44

-0.

780.

650.

45-

0.81

0.67

0.47

-0.

810.

680.

47-

T18

1612

-18

1612

-18

1612

-18

1612

-18

1612

-17

1511

-70

600

KW

1.24

1.26

1.30

-1.

331.

361.

40-

1.41

1.44

1.48

-1.

481.

511.

56-

1.54

1.57

1.62

-1.

591.

631.

68-

AM

PS4.

54.

64.

7-

4.8

4.9

5.1

-5.

25.

45.

6-

5.6

5.7

5.9

-6.

06.

16.

3-

6.3

6.5

6.7

-H

I PR

222

239

253

-25

026

928

4-

284

306

323

-32

334

836

8-

364

392

413

-40

243

345

7-

LO P

R10

811

412

5-

114

121

132

-11

812

613

7-

124

132

144

-13

013

815

1-

134

143

156

-M

Bh

15.3

15.8

17.4

-14

.915

.516

.9-

14.6

15.1

16.5

-14

.214

.716

.1-

13.5

14.0

15.3

-12

.513

.014

.2-

S/T

0.68

0.57

0.40

-0.

710.

590.

41-

0.73

0.61

0.42

-0.

750.

630.

43-

0.78

0.65

0.45

-0.

780.

660.

45-

T18

1612

-19

1612

-19

1612

-19

1612

-18

1612

-17

1511

-52

5K

W1.

211.

231.

27-

1.30

1.32

1.36

-1.

381.

401.

45-

1.44

1.47

1.52

-1.

501.

531.

58-

1.55

1.59

1.64

-A

MPS

4.3

4.5

4.6

-4.

74.

85.

0-

5.1

5.2

5.4

-5.

55.

65.

8-

5.8

5.9

6.1

-6.

16.

36.

5-

HI P

R21

623

224

5-

242

261

275

-27

529

631

3-

314

338

356

-35

338

040

1-

390

420

443

-LO

PR

104

111

121

-11

011

712

8-

115

122

133

-12

012

814

0-

126

134

146

-13

013

915

1-

MB

h17

.34

17.8

519

.32

20.7

416

.94

17.4

418

.87

20.2

616

.53

17.0

218

.43

19.7

816

.13

16.6

117

.98

19.2

915

.32

15.7

817

.08

18.3

314

.19

14.6

115

.82

16.9

8S

/T0.

840.

760.

570.

370.

880.

780.

590.

380.

900.

800.

610.

390.

930.

830.

630.

400.

960.

860.

650.

420.

970.

870.

660.

42T

2018

1510

2019

1511

2019

1511

2019

1511

2018

1510

1917

1410

675

KW

1.26

1.28

1.32

1.36

1.35

1.38

1.42

1.46

1.43

1.46

1.51

1.56

1.50

1.54

1.58

1.64

1.57

1.60

1.65

1.70

1.62

1.65

1.71

1.76

AM

PS4.

64.

74.

85.

04.

95.

05.

25.

45.

35.

55.

75.

95.

75.

96.

06.

36.

16.

26.

46.

76.

46.

66.

87.

1H

I PR

227

244

258

269

255

274

289

302

290

312

329

343

330

355

375

391

371

399

422

440

410

441

466

486

LO P

R11

011

712

713

611

612

313

514

312

012

814

014

912

713

514

715

713

314

115

416

413

714

615

917

0M

Bh

16.8

17.3

18.8

20.1

16.4

16.9

18.3

19.7

16.1

16.5

17.9

19.2

15.7

16.1

17.5

18.7

14.9

15.3

16.6

17.8

13.8

14.2

15.4

16.5

S/T

0.81

0.72

0.55

0.35

0.84

0.75

0.57

0.36

0.86

0.77

0.58

0.37

0.88

0.79

0.60

0.38

0.92

0.82

0.62

0.40

0.93

0.83

0.63

0.40

T21

1916

1121

1916

1121

1916

1121

2016

1121

1916

1120

1815

1075

600

KW

1.25

1.27

1.31

1.35

1.34

1.37

1.41

1.45

1.42

1.45

1.50

1.54

1.49

1.52

1.57

1.62

1.55

1.59

1.64

1.69

1.61

1.64

1.69

1.75

AM

PS4.

54.

64.

84.

94.

95.

05.

25.

35.

35.

45.

65.

85.

75.

86.

06.

26.

06.

26.

46.

66.

46.

56.

87.

0H

I PR

225

242

255

266

252

271

287

299

287

309

326

340

327

352

371

387

368

396

418

436

406

437

461

481

LO P

R10

911

612

613

411

512

213

314

211

912

713

914

812

513

314

615

513

114

015

316

213

614

515

816

8M

Bh

15.5

16.0

17.3

18.6

15.2

15.6

16.9

18.2

14.8

15.3

16.5

17.7

14.5

14.8

816

.117

.313

.714

.115

.316

.412

.713

.114

.215

.2S

/T0.

780.

690.

530.

340.

810.

720.

550.

350.

830.

740.

560.

360.

850.

760.

580.

370.

880.

790.

600.

390.

890.

800.

600.

39T

2119

1611

2120

1611

2120

1611

2220

1611

2120

1611

2018

1510

525

KW

1.22

1.24

1.28

1.32

1.31

1.33

1.38

1.42

1.39

1.42

1.46

1.51

1.46

1.49

1.53

1.58

1.51

1.55

1.60

1.65

1.57

1.60

1.65

1.71

AM

PS4.

44.

54.

64.

84.

74.

95.

05.

25.

25.

35.

55.

75.

55.

65.

86.

05.

96.

06.

26.

46.

26.

46.

66.

8H

I PR

218

235

248

258

245

263

278

290

278

299

316

330

317

341

360

376

357

384

405

423

394

424

448

467

LO P

R10

511

212

213

011

111

812

913

811

612

313

414

312

212

914

115

012

713

614

815

813

214

015

316

3S

hade

d ar

ea is

AC

CA

(TV

A)

cond

ition

sID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

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ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

Hig

h an

d lo

w p

ress

ures

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d at

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n se

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.

Downloaded from www.Manualslib.com manuals search engine

Page 11: Goodman Technical Manual Gszvsz_13_seer

11

COOLING PERFORMANCE DATA G/VSZ130181A* M

OD

EL:

G/V

SZ1

3018

1A*

/ AR

*F18

2416

**E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB*

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h17

.618

.019

.320

.617

.217

.618

.820

.116

.817

.218

.419

.616

.416

.817

.919

.215

.615

.917

.018

.214

.414

.815

.816

.9S

/T0.

930.

870.

710.

530.

960.

900.

730.

551.

000.

920.

750.

561.

000.

950.

780.

581.

001.

000.

810.

601.

001.

000.

810.

61D

T22

2119

1523

2219

1523

2219

1522

2219

1521

2219

1520

2017

1467

5K

W1.

271.

291.

331.

371.

361.

391.

431.

481.

441.

471.

521.

571.

521.

551.

601.

651.

581.

611.

661.

721.

631.

671.

721.

78A

MPS

4.6

4.7

4.9

5.0

5.0

5.1

5.3

5.4

5.4

5.5

5.7

5.9

5.8

5.9

6.1

6.3

6.1

6.3

6.5

6.8

6.5

6.7

6.9

7.2

HI P

R22

924

726

127

225

727

729

230

529

331

533

334

733

335

937

939

537

540

442

644

441

444

647

149

1LO

PR

111

118

129

137

117

125

136

145

122

129

141

151

128

136

148

158

134

143

156

166

139

147

161

171

MB

h17

.117

.518

.720

.016

.717

.118

.319

.516

.316

.717

.819

.115

.916

.317

.418

.615

.115

.516

.517

.714

.014

.315

.316

.4S

/T0.

880.

830.

670.

500.

920.

860.

700.

520.

940.

880.

720.

540.

970.

910.

740.

551.

000.

940.

770.

571.

000.

950.

770.

58D

T23

2219

1523

2320

1624

2320

1624

2320

1623

2219

1621

2118

1580

600

KW

1.26

1.28

1.32

1.36

1.35

1.38

1.42

1.46

1.43

1.46

1.51

1.56

1.50

1.54

1.59

1.64

1.57

1.60

1.65

1.70

1.62

1.65

1.71

1.76

AM

PS4.

64.

74.

85.

04.

95.

05.

25.

45.

35.

55.

75.

95.

75.

96.

16.

36.

16.

26.

46.

76.

46.

66.

87.

1H

I PR

227

244

258

269

255

274

290

302

290

312

329

343

330

355

375

391

371

400

422

440

410

441

466

486

LO P

R11

011

712

713

611

612

313

514

312

012

814

014

912

713

514

715

713

314

115

416

413

714

615

917

0M

Bh

15.8

16.2

17.3

18.5

15.4

15.8

16.9

18.0

15.1

15.4

16.5

17.6

14.7

15.0

16.1

17.2

14.0

14.3

15.3

16.3

12.9

13.2

14.1

15.1

S/T

0.85

0.80

0.65

0.49

0.88

0.83

0.67

0.50

0.91

0.85

0.69

0.52

0.93

0.88

0.71

0.53

0.97

0.91

0.74

0.55

0.98

0.92

0.75

0.56

DT

2423

2016

2423

2016

2423

2016

2423

2016

2423

2016

2221

1815

525

KW

1.23

1.25

1.29

1.33

1.32

1.34

1.39

1.43

1.40

1.43

1.47

1.52

1.47

1.50

1.55

1.60

1.53

1.56

1.61

1.66

1.58

1.61

1.67

1.72

AM

PS4.

44.

54.

74.

94.

84.

95.

15.

35.

25.

35.

55.

75.

65.

75.

96.

15.

96.

16.

36.

56.

36.

46.

66.

9H

I PR

220

237

250

261

247

266

281

293

281

302

319

333

320

344

364

379

360

388

409

427

398

428

452

472

LO P

R10

611

312

413

211

212

013

113

911

712

413

614

512

313

114

315

212

913

714

915

913

314

215

516

5

MB

h18

.018

.319

.220

.517

.517

.918

.720

.017

.117

.518

.319

.516

.717

.017

.819

.015

.916

.216

.918

.114

.715

.015

.716

.7S

/T0.

970.

940.

850.

691.

000.

970.

880.

711.

001.

000.

900.

731.

001.

000.

930.

751.

001.

000.

960.

781.

001.

000.

970.

79D

T24

2322

1924

2422

1923

2422

1923

2323

2022

2222

1920

2021

1867

5K

W1.

281.

301.

341.

381.

371.

401.

441.

491.

451.

491.

531.

581.

531.

561.

611.

661.

591.

631.

681.

731.

651.

681.

741.

79A

MPS

4.6

4.7

4.9

5.1

5.0

5.1

5.3

5.5

5.4

5.6

5.8

6.0

5.8

6.0

6.2

6.4

6.2

6.3

6.6

6.8

6.6

6.7

7.0

7.2

HI P

R23

224

926

327

526

028

029

530

829

631

833

635

033

736

238

339

937

940

843

044

941

845

047

549

6LO

PR

112

119

130

138

118

126

137

146

123

131

143

152

129

137

150

160

135

144

157

167

140

149

163

173

MB

h17

.417

.818

.619

.917

.017

.418

.219

.416

.616

.917

.718

.916

.216

.517

.318

.515

.415

.716

.417

.514

.314

.515

.216

.3S

/T0.

930.

890.

810.

650.

960.

930.

840.

680.

980.

950.

860.

701.

000.

980.

890.

721.

001.

000.

920.

751.

001.

000.

930.

75D

T25

2423

2025

2523

2025

2523

2025

2523

2024

2423

2022

2222

1985

600

KW

1.27

1.29

1.33

1.37

1.36

1.39

1.43

1.48

1.44

1.47

1.52

1.57

1.52

1.55

1.60

1.65

1.58

1.61

1.66

1.72

1.63

1.67

1.72

1.78

AM

PS4.

64.

74.

95.

05.

05.

15.

35.

45.

45.

55.

75.

95.

85.

96.

16.

36.

16.

36.

56.

86.

56.

76.

97.

2H

I PR

229

247

261

272

257

277

292

305

293

315

333

347

333

359

379

395

375

404

426

444

414

446

471

491

LO P

R11

111

812

913

711

712

513

614

512

212

914

115

112

813

614

815

813

414

315

616

613

914

716

117

1M

Bh

16.1

16.4

17.2

18.3

15.7

16.0

16.8

17.9

15.3

15.6

16.4

17.5

15.0

15.3

16.0

17.0

14.2

14.5

15.2

16.2

13.2

13.4

14.1

15.0

S/T

0.89

0.86

0.78

0.63

0.93

0.89

0.81

0.65

0.95

0.92

0.83

0.67

0.98

0.95

0.85

0.69

1.00

0.98

0.89

0.72

1.00

0.99

0.89

0.72

DT

2525

2320

2525

2421

2625

2421

2625

2421

2525

2420

2323

2219

525

KW

1.24

1.26

1.30

1.34

1.33

1.36

1.40

1.44

1.41

1.44

1.48

1.53

1.48

1.51

1.56

1.61

1.54

1.57

1.62

1.68

1.59

1.63

1.68

1.73

AM

PS4.

54.

64.

74.

94.

84.

95.

15.

35.

25.

45.

65.

85.

65.

75.

96.

26.

06.

16.

36.

66.

36.

56.

77.

0H

I PR

222

239

253

264

250

269

284

296

284

305

323

336

323

348

367

383

364

391

413

431

402

432

457

476

LO P

R10

811

412

513

311

412

113

214

011

812

613

714

612

413

214

415

313

013

815

116

113

414

315

616

6

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

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B: E

nter

ing

Indo

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ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 12: Goodman Technical Manual Gszvsz_13_seer

12

COOLING PERFORMANCE DATA G/VSZ130241A* M

OD

EL:

G/V

SZ1

3024

1A*

/ AR

*F18

2416

**E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Ou

tdo

or A

mb

ien

t Te

mp

era

ture

6575

8595

105

115

Ente

ring

Ind

oor

We

t B

ulb

Te

mp

erat

ure

IDB

*A

irfl

ow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h22

.523

.425

.6-

22.0

22.8

25.0

-21

.522

.324

.4-

21.0

21.7

23.8

-19

.920

.622

.6-

18.4

19.1

21.0

-S

/T0.

740.

620.

43-

0.77

0.64

0.45

-0.

790.

660.

46-

0.81

0.68

0.47

-0.

850.

710.

49-

0.85

0.71

0.49

-D

T17

1411

-17

1511

-17

1511

-17

1511

-17

1511

-16

1410

-92

3K

W1.

631.

661.

71-

1.75

1.79

1.84

-1.

861.

901.

96-

1.95

2.00

2.06

-2.

042.

082.

15-

2.11

2.15

2.22

-A

MPS

6.1

6.2

6.4

-6.

66.

87.

0-

7.2

7.3

7.6

-7.

77.

98.

1-

8.2

8.4

8.7

-8.

78.

99.

2-

HI P

R22

724

425

7-

254

274

289

-28

931

132

8-

329

354

374

-37

039

942

1-

409

440

465

-LO

PR

104

111

121

-11

011

712

8-

114

122

133

-12

012

814

0-

126

134

146

-13

013

915

1-

MB

h21

.922

.724

.8-

21.4

22.2

24.3

-20

.921

.623

.7-

20.4

21.1

23.1

-19

.320

.022

.0-

17.9

18.6

20.3

-S

/T0.

710.

590.

41-

0.73

0.61

0.42

-0.

750.

630.

44-

0.78

0.65

0.45

-0.

810.

670.

47-

0.81

0.68

0.47

-D

T17

1511

-18

1512

-18

1512

-18

1512

-17

1511

-16

1411

-70

820

KW

1.61

1.65

1.70

-1.

741.

771.

83-

1.84

1.88

1.94

-1.

941.

982.

05-

2.02

2.06

2.13

-2.

092.

142.

21-

AM

PS6.

06.

26.

4-

6.5

6.7

6.9

-7.

17.

37.

5-

7.6

7.8

8.0

-8.

18.

38.

6-

8.6

8.8

9.1

-H

I PR

224

241

255

-25

227

128

6-

286

308

325

-32

635

137

0-

367

395

417

-40

543

646

0-

LO P

R10

311

012

0-

109

116

127

-11

312

013

2-

119

127

138

-12

513

314

5-

129

137

150

-M

Bh

20.2

20.9

22.9

-19

.720

.422

.4-

19.3

20.0

21.9

-18

.819

.521

.3-

17.8

18.5

20.3

-16

.517

.118

.8-

S/T

0.68

0.57

0.40

-0.

710.

590.

41-

0.73

0.61

0.42

-0.

750.

630.

43-

0.78

0.65

0.45

-0.

780.

650.

45-

DT

1815

12-

1815

12-

1815

12-

1816

12-

1815

12-

1714

11-

718

KW

1.58

1.61

1.66

-1.

701.

731.

79-

1.80

1.84

1.90

-1.

891.

931.

99-

1.97

2.01

2.08

-2.

042.

082.

15-

AM

PS5.

96.

06.

2-

6.4

6.5

6.7

-6.

97.

17.

3-

7.4

7.6

7.8

-7.

98.

18.

3-

8.3

8.5

8.8

-H

I PR

218

234

247

-24

426

327

7-

278

299

315

-31

634

035

9-

356

383

404

-39

342

344

7-

LO P

R10

010

611

6-

106

112

123

-11

011

712

8-

115

123

134

-12

112

914

0-

125

133

145

-

MB

h22

.923

.625

.527

.422

.423

.024

.926

.821

.922

.524

.426

.121

.322

.023

.825

.520

.320

.922

.624

.218

.819

.320

.922

.4S

/T0.

840.

750.

570.

370.

870.

780.

590.

380.

900.

800.

610.

390.

930.

830.

630.

400.

960.

860.

650.

420.

970.

870.

660.

42D

T19

1815

1020

1815

1020

1815

1020

1815

1019

1815

1018

1714

992

3K

W1.

641.

671.

731.

781.

761.

801.

861.

921.

871.

911.

982.

041.

972.

012.

082.

152.

052.

102.

172.

242.

122.

172.

242.

32A

MPS

6.2

6.3

6.5

6.8

6.7

6.8

7.0

7.3

7.2

7.4

7.7

8.0

7.7

7.9

8.2

8.5

8.2

8.4

8.7

9.1

8.7

9.0

9.3

9.6

HI P

R22

924

626

027

125

727

629

230

429

231

433

234

633

335

837

839

437

440

342

544

341

344

547

049

0LO

PR

105

112

122

130

111

118

129

138

116

123

134

143

121

129

141

150

127

135

148

157

132

140

153

163

MB

h22

.322

.924

.826

.621

.722

.424

.226

.021

.221

.823

.625

.420

.721

.323

.124

.819

.720

.221

.923

.518

.218

.820

.321

.8S

/T0.

800.

720.

540.

350.

830.

750.

560.

360.

860.

770.

580.

370.

880.

790.

600.

380.

920.

820.

620.

400.

920.

830.

630.

40D

T20

1815

1020

1915

1120

1915

1120

1915

1120

1915

1119

1714

1075

820

KW

1.63

1.66

1.71

1.77

1.75

1.79

1.84

1.90

1.86

1.90

1.96

2.02

1.96

2.00

2.06

2.13

2.04

2.08

2.15

2.22

2.11

2.15

2.22

2.30

AM

PS6.

16.

26.

46.

76.

66.

87.

07.

27.

27.

37.

67.

97.

77.

98.

18.

48.

28.

48.

79.

08.

78.

99.

29.

5H

I PR

227

244

257

269

254

274

289

301

289

311

329

343

329

354

374

390

370

399

421

439

409

441

465

485

LO P

R10

411

112

112

911

011

712

813

611

412

213

314

212

012

814

014

912

613

414

615

613

013

915

116

1M

Bh

20.5

21.1

22.9

24.6

20.1

20.7

22.4

24.0

19.6

20.2

21.8

23.4

19.1

19.7

21.3

22.9

18.2

18.7

20.2

21.7

16.8

17.3

18.7

20.1

S/T

0.78

0.69

0.53

0.34

0.80

0.72

0.54

0.35

0.82

0.74

0.56

0.36

0.85

0.76

0.58

0.37

0.88

0.79

0.60

0.38

0.89

0.80

0.60

0.39

DT

2019

1511

2119

1611

2119

1611

2119

1611

2119

1611

1918

1410

718

KW

1.59

1.62

1.67

1.72

1.71

1.74

1.80

1.86

1.81

1.85

1.91

1.97

1.91

1.95

2.01

2.08

1.99

2.03

2.10

2.17

2.05

2.10

2.17

2.24

AM

PS5.

96.

16.

36.

56.

46.

66.

87.

07.

07.

17.

47.

77.

57.

67.

98.

27.

98.

18.

48.

78.

48.

68.

99.

3H

I PR

220

237

250

260

247

265

280

292

280

302

319

332

319

344

363

379

359

387

408

426

397

427

451

471

LO P

R10

110

811

712

510

711

412

413

211

111

812

913

711

712

413

514

412

213

014

215

112

613

414

715

6

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

=out

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uni

t am

ps (

com

p.+f

anH

igh

and

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es.

Downloaded from www.Manualslib.com manuals search engine

Page 13: Goodman Technical Manual Gszvsz_13_seer

13

COOLING PERFORMANCE DATA G/VSZ130241A* M

OD

EL:

G/V

SZ1

3024

1A*

/ AR

*F18

2416

**E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB*

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h23

.323

.825

.527

.222

.823

.324

.926

.622

.222

.724

.326

.021

.722

.223

.725

.320

.621

.122

.524

.119

.119

.520

.822

.3S

/T0.

930.

870.

710.

530.

960.

900.

730.

551.

000.

920.

750.

561.

000.

950.

780.

581.

001.

000.

800.

601.

001.

000.

810.

61D

T22

2118

1422

2118

1522

2118

1522

2118

1521

2118

1419

1917

1392

3K

W1.

651.

691.

741.

801.

781.

821.

871.

941.

891.

931.

992.

061.

992.

032.

102.

172.

072.

122.

192.

262.

142.

192.

262.

34A

MPS

6.2

6.4

6.6

6.8

6.7

6.9

7.1

7.4

7.3

7.5

7.7

8.0

7.8

8.0

8.3

8.6

8.3

8.5

8.8

9.2

8.8

9.0

9.4

9.7

HI P

R23

124

926

327

425

927

929

530

729

531

733

535

033

636

238

239

837

840

743

044

841

844

947

549

5LO

PR

106

113

123

131

112

119

130

139

117

124

136

144

123

130

142

152

129

137

149

159

133

141

154

164

MB

h22

.623

.124

.726

.422

.122

.624

.225

.821

.622

.123

.625

.221

.121

.523

.024

.620

.020

.521

.923

.418

.518

.920

.221

.6S

/T0.

880.

830.

670.

500.

910.

860.

700.

520.

940.

880.

720.

540.

970.

910.

740.

551.

000.

940.

770.

571.

000.

950.

770.

58D

T22

2119

1523

2219

1523

2219

1523

2219

1522

2219

1521

2018

1480

820

KW

1.64

1.67

1.73

1.78

1.76

1.80

1.86

1.92

1.87

1.91

1.98

2.04

1.97

2.01

2.08

2.15

2.05

2.10

2.17

2.24

2.12

2.17

2.24

2.32

AM

PS6.

26.

36.

56.

86.

76.

87.

07.

37.

27.

47.

78.

07.

77.

98.

28.

58.

28.

48.

79.

18.

79.

09.

39.

6H

I PR

229

246

260

271

257

276

292

304

292

314

332

346

333

358

378

394

374

403

425

444

413

445

470

490

LO P

R10

511

212

213

011

111

812

913

811

612

313

414

312

112

914

115

012

713

514

815

713

214

015

316

3M

Bh

20.9

21.4

22.8

24.4

20.4

20.9

22.3

23.8

19.9

20.4

21.8

23.3

19.4

19.9

21.2

22.7

18.5

18.9

20.2

21.6

17.1

17.5

18.7

20.0

S/T

0.85

0.80

0.65

0.49

0.88

0.83

0.67

0.50

0.90

0.85

0.69

0.52

0.93

0.88

0.71

0.53

0.97

0.91

0.74

0.55

0.98

0.92

0.75

0.56

DT

2322

1915

2322

1915

2322

1915

2322

1915

2322

1915

2121

1814

718

KW

1.60

1.63

1.69

1.74

1.72

1.76

1.81

1.87

1.83

1.87

1.93

1.99

1.92

1.96

2.03

2.10

2.00

2.05

2.11

2.18

2.07

2.12

2.19

2.26

AM

PS6.

06.

16.

36.

66.

56.

66.

97.

17.

07.

27.

57.

77.

57.

78.

08.

38.

08.

28.

58.

88.

58.

79.

09.

3H

I PR

222

239

252

263

249

268

283

295

283

305

322

336

323

347

367

382

363

391

412

430

401

432

456

475

LO P

R10

210

911

912

610

811

512

513

311

211

913

013

911

812

513

714

612

313

114

315

312

813

614

815

8

MB

h23

.724

.225

.327

.023

.223

.624

.826

.422

.623

.124

.225

.822

.122

.523

.625

.121

.021

.422

.423

.919

.419

.820

.722

.1S

/T0.

970.

940.

840.

691.

000.

970.

880.

711.

000.

990.

900.

731.

001.

000.

930.

751.

001.

000.

960.

781.

001.

000.

970.

79D

T23

2321

1823

2322

1923

2322

1922

2222

1921

2121

1919

2020

1792

3K

W1.

671.

701.

751.

811.

791.

831.

891.

951.

901.

952.

012.

082.

002.

052.

112.

182.

092.

132.

202.

282.

162.

212.

282.

36A

MPS

6.3

6.4

6.6

6.9

6.8

6.9

7.2

7.4

7.4

7.6

7.8

8.1

7.9

8.1

8.4

8.7

8.4

8.6

8.9

9.2

8.9

9.1

9.4

9.8

HI P

R23

325

126

527

726

228

229

831

029

832

133

935

333

936

538

640

238

241

143

445

242

245

447

950

0LO

PR

107

114

125

133

113

121

132

140

118

125

137

146

124

132

144

153

130

138

151

161

134

143

156

166

MB

h23

.023

.524

.626

.222

.522

.924

.025

.622

.022

.423

.525

.021

.421

.922

.924

.420

.420

.821

.723

.218

.919

.220

.121

.5S

/T0.

930.

890.

810.

650.

960.

930.

840.

680.

980.

950.

860.

691.

000.

980.

880.

721.

001.

000.

920.

741.

001.

000.

930.

75D

T24

2422

1924

2422

1924

2423

1924

2423

2023

2322

1921

2221

1885

820

KW

1.65

1.69

1.74

1.80

1.78

1.82

1.87

1.94

1.89

1.93

1.99

2.06

1.99

2.03

2.10

2.17

2.07

2.12

2.19

2.26

2.14

2.19

2.26

2.34

AM

PS6.

26.

46.

66.

86.

76.

97.

17.

47.

37.

57.

78.

07.

88.

08.

38.

68.

38.

58.

89.

28.

89.

09.

49.

7H

I PR

231

249

263

274

259

279

295

307

295

317

335

350

336

362

382

398

378

407

430

448

418

449

475

495

LO P

R10

611

312

313

111

211

913

013

911

712

413

614

412

313

014

215

212

913

714

915

913

314

115

416

4M

Bh

21.3

21.7

22.7

24.2

20.8

21.2

22.2

23.7

20.3

20.7

21.7

23.1

19.8

20.2

21.1

22.5

18.8

19.2

20.1

21.4

17.4

17.7

18.6

19.8

S/T

0.89

0.86

0.78

0.63

0.92

0.89

0.81

0.65

0.95

0.91

0.83

0.67

0.98

0.94

0.85

0.69

1.00

0.98

0.88

0.72

1.00

0.99

0.89

0.72

DT

24.3

224

2320

2524

2320

2524

2320

2524

2320

2424

2320

2222

2118

718

KW

1.61

1.65

1.70

1.75

1.74

1.77

1.83

1.89

1.84

1.88

1.94

2.01

1.94

1.98

2.05

2.11

2.02

2.06

2.13

2.20

2.09

2.14

2.21

2.28

AM

PS6.

06.

26.

46.

66.

56.

76.

97.

27.

17.

37.

57.

87.

67.

88.

08.

48.

18.

38.

68.

98.

68.

89.

19.

4H

I PR

224

241

255

266

252

271

286

298

286

308

325

339

326

351

370

386

367

395

417

435

405

436

460

480

LO P

R10

311

012

012

810

911

612

713

511

312

013

214

011

912

713

814

712

513

314

515

412

913

715

015

9

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 14: Goodman Technical Manual Gszvsz_13_seer

14

COOLING PERFORMANCE DATAEX

PAND

ED P

ERFO

RMAN

CE D

ATA

MO

DEL:

G/V

SZ13

0241

B*/ A

R*F1

8241

6**

COO

LING

OPE

RATI

ON

Outd

oor

Ambi

ent T

empe

ratu

re65

7585

9510

511

5En

terin

g In

door

Wet

Bul

b Te

mpe

ratu

reID

BAi

rflo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh22

.523

.425

.6-

22.0

22.8

25.0

-21

.522

.324

.4-

21.0

21.7

23.8

-19

.920

.622

.6-

18.4

19.1

21.0

-S/

T0.

750.

630.

44-

0.78

0.65

0.45

-0.

800.

670.

46-

0.83

0.69

0.48

-0.

860.

720.

50-

0.86

0.72

0.50

-∠

T17

1511

-18

1512

-18

1512

-18

1512

-17

1511

-16

1411

-90

0KW

1.63

1.66

1.71

-1.

751.

781.

84-

1.85

1.89

1.95

-1.

951.

992.

05-

2.03

2.07

2.14

-2.

102.

142.

21-

AM

PS6.

16.

26.

4-

6.5

6.7

6.9

-7.

17.

37.

5-

7.6

7.8

8.0

-8.

18.

38.

5-

8.5

8.8

9.0

-HI

PR

228

246

259

-25

627

629

1-

291

314

331

-33

235

737

7-

373

402

424

-41

344

446

9-

LO P

R10

311

012

0-

109

116

127

-11

412

113

2-

119

127

139

-12

513

314

5-

129

138

150

-M

Bh21

.922

.724

.8-

21.4

22.2

24.3

-20

.921

.623

.7-

20.4

21.1

23.1

-19

.320

.022

.0-

17.9

18.6

20.3

-S/

T0.

720.

600.

42-

0.74

0.62

0.43

-0.

760.

640.

44-

0.79

0.66

0.46

-0.

820.

680.

47-

0.82

0.69

0.48

-∠

T18

1612

-18

1612

-18

1612

-18

1612

-18

1612

-17

1511

-70

800

KW1.

621.

651.

70-

1.74

1.77

1.83

-1.

841.

881.

94-

1.93

1.97

2.04

-2.

012.

052.

12-

2.08

2.12

2.19

-A

MPS

6.0

6.2

6.3

-6.

56.

66.

9-

7.0

7.2

7.4

-7.

57.

78.

0-

8.0

8.2

8.5

-8.

58.

79.

0-

HI P

R22

624

325

7-

254

273

288

-28

831

032

8-

329

354

373

-37

039

842

0-

408

440

464

-LO

PR

102

109

119

-10

811

512

6-

112

120

131

-11

812

613

7-

124

132

144

-12

813

614

9-

MBh

20.2

20.9

22.9

-19

.720

.422

.4-

19.3

20.0

21.9

-18

.819

.521

.3-

17.8

18.5

20.3

-16

.517

.118

.8-

S/T

0.69

0.58

0.40

-0.

720.

600.

42-

0.74

0.61

0.43

-0.

760.

630.

44-

0.79

0.66

0.46

-0.

800.

660.

46-

∠T

1816

12-

1916

12-

1916

12-

1916

12-

1816

12-

1715

11-

700

KW1.

581.

611.

66-

1.69

1.73

1.78

-1.

801.

831.

89-

1.89

1.93

1.99

-1.

962.

002.

07-

2.03

2.07

2.14

-A

MPS

5.9

6.0

6.2

-6.

36.

56.

7-

6.8

7.0

7.2

-7.

37.

57.

7-

7.8

8.0

8.2

-8.

28.

48.

7-

HI P

R21

923

624

9-

246

265

280

-28

030

131

8-

319

343

362

-35

938

640

7-

396

426

450

-LO

PR

9910

611

5-

105

112

122

-10

911

612

7-

115

122

133

-12

012

813

9-

124

132

144

-

MBh

22.9

223

.60

25.5

427

.41

22.3

923

.05

24.9

526

.78

21.8

522

.50

24.3

626

.14

21.3

221

.95

23.7

625

.50

20.2

520

.85

22.5

724

.23

18.7

619

.32

20.9

122

.44

S/T

0.86

0.77

0.58

0.37

0.89

0.79

0.60

0.39

0.91

0.81

0.62

0.40

0.94

0.84

0.64

0.41

0.97

0.87

0.66

0.42

0.98

0.88

0.67

0.43

∠T

2018

1510

2019

1511

2019

1511

2019

1511

2019

1511

1917

1410

900

KW1.

641.

671.

731.

781.

761.

801.

851.

911.

871.

911.

972.

031.

962.

012.

072.

142.

042.

092.

162.

232.

112.

162.

232.

30A

MPS

6.1

6.3

6.5

6.7

6.6

6.8

7.0

7.2

7.2

7.3

7.6

7.9

7.7

7.8

8.1

8.4

8.1

8.3

8.6

8.9

8.6

8.8

9.1

9.5

HI P

R23

124

826

227

325

927

929

430

729

431

733

434

933

536

138

139

737

740

642

944

741

744

847

449

4LO

PR

104

111

121

129

110

117

128

137

115

122

133

142

121

128

140

149

126

134

147

156

131

139

152

162

MBh

22.3

22.9

24.8

26.6

21.7

22.4

24.2

26.0

21.2

21.8

23.6

25.4

20.7

21.3

23.1

24.8

19.7

20.2

21.9

23.5

18.2

18.8

20.3

21.8

S/T

0.82

0.73

0.55

0.36

0.85

0.76

0.57

0.37

0.87

0.78

0.59

0.38

0.90

0.80

0.61

0.39

0.93

0.83

0.63

0.40

0.94

0.84

0.63

0.41

∠T

2119

1611

2119

1611

2119

1611

2120

1611

2119

1611

2018

1510

7580

0KW

1.63

1.66

1.71

1.77

1.75

1.79

1.84

1.90

1.85

1.89

1.95

2.02

1.95

1.99

2.05

2.12

2.03

2.07

2.14

2.21

2.10

2.14

2.21

2.28

AM

PS6.

16.

26.

46.

66.

56.

76.

97.

27.

17.

37.

57.

87.

67.

88.

08.

38.

18.

38.

58.

98.

58.

89.

09.

4HI

PR

228

246

260

271

256

276

291

304

291

314

331

345

332

357

377

393

373

402

424

443

413

444

469

489

LO P

R10

311

012

012

810

911

612

713

511

412

113

214

111

912

713

914

812

513

314

515

512

913

815

016

0M

Bh20

.521

.122

.924

.620

.120

.722

.424

.019

.620

.221

.823

.419

.119

.721

.322

.918

.218

.720

.221

.716

.817

.318

.720

.1S/

T0.

790.

700.

530.

340.

820.

730.

550.

360.

840.

750.

570.

360.

860.

770.

580.

380.

900.

800.

610.

390.

900.

810.

610.

39∠

T21

2016

1122

2016

1122

2016

1122

2016

1121

2016

1120

1815

1070

0KW

1.59

1.62

1.67

1.72

1.71

1.74

1.80

1.85

1.81

1.85

1.91

1.97

1.90

1.94

2.00

2.07

1.98

2.02

2.09

2.15

2.05

2.09

2.16

2.23

AM

PS5.

96.

06.

26.

56.

46.

56.

77.

06.

97.

17.

37.

67.

47.

67.

88.

17.

88.

08.

38.

68.

38.

58.

89.

1HI

PR

222

238

252

263

249

267

282

295

283

304

321

335

322

346

366

382

362

390

412

429

400

431

455

474

LO P

R10

010

711

712

410

611

312

313

111

011

712

813

611

612

313

414

312

112

914

115

012

513

314

615

5

Shad

ed a

rea

is A

CCA

(TV

A) c

ondi

tions

IDB:

Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reKW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(com

p.+f

an)

High

and

low

pre

ssur

es a

re m

easu

red

at th

e liq

uid

and

suct

ion

serv

ice

valv

es.

G/VSZ130241B*

Downloaded from www.Manualslib.com manuals search engine

Page 15: Goodman Technical Manual Gszvsz_13_seer

15

COOLING PERFORMANCE DATA G/VSZ130241B*EX

PAND

ED P

ERFO

RMAN

CE D

ATA

MO

DEL:

G/V

SZ13

0241

B*/ A

R*F1

8241

6**

COO

LING

OPE

RATI

ON

Outd

oor

Ambi

ent T

empe

ratu

re65

7585

9510

511

5En

terin

g In

door

Wet

Bul

b Te

mpe

ratu

reID

BAi

rflo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh23

.33

23.8

425

.47

27.2

222

.79

23.2

824

.87

26.5

922

.24

22.7

324

.28

25.9

621

.70

22.1

723

.69

25.3

220

.62

21.0

722

.51

24.0

619

.10

19.5

120

.85

22.2

9S/

T0.

940.

880.

720.

541.

000.

910.

740.

561.

000.

940.

760.

571.

000.

970.

790.

591.

001.

000.

820.

611.

001.

000.

820.

62⎠

T22

2119

1523

2219

1523

2219

1522

2219

1521

2219

1520

2018

1490

0KW

1.65

1.69

1.74

1.79

1.78

1.81

1.87

1.93

1.88

1.92

1.98

2.05

1.98

2.02

2.09

2.15

2.06

2.11

2.17

2.24

2.13

2.18

2.25

2.32

AM

PS6.

26.

36.

56.

86.

76.

87.

07.

37.

27.

47.

77.

97.

77.

98.

28.

58.

28.

48.

79.

08.

78.

99.

29.

6HI

PR

233

251

265

276

261

281

297

310

297

320

338

352

339

364

385

401

381

410

433

452

421

453

478

499

LO P

R10

611

212

313

111

211

913

013

811

612

313

514

312

213

014

115

112

813

614

815

813

214

015

316

3M

Bh22

.623

.124

.726

.422

.122

.624

.225

.821

.622

.123

.625

.221

.121

.523

.024

.620

.020

.521

.923

.418

.518

.920

.221

.6S/

T0.

900.

840.

680.

510.

930.

870.

710.

530.

950.

890.

730.

540.

980.

920.

750.

561.

000.

960.

780.

581.

000.

960.

780.

59⎠

T23

2219

1624

2320

1624

2320

1624

2320

1623

2220

1621

2118

1580

800

KW1.

641.

671.

731.

781.

761.

801.

851.

911.

871.

911.

972.

031.

962.

012.

072.

142.

042.

092.

162.

232.

112.

162.

232.

30A

MPS

6.1

6.3

6.5

6.7

6.6

6.8

7.0

7.2

7.2

7.3

7.6

7.9

7.7

7.8

8.1

8.4

8.1

8.3

8.6

8.9

8.6

8.8

9.1

9.5

HI P

R23

124

826

227

325

927

929

430

729

431

733

534

933

536

138

139

737

740

642

944

741

744

847

449

4LO

PR

105

111

121

129

110

117

128

137

115

122

133

142

121

128

140

149

126

134

147

156

131

139

152

162

MBh

20.9

21.4

22.8

24.4

20.4

20.9

22.3

23.8

19.9

20.4

21.8

23.3

19.4

19.9

21.2

22.7

18.5

18.9

20.2

21.6

17.1

17.5

18.7

20.0

S/T

0.86

0.81

0.66

0.49

0.90

0.84

0.68

0.51

0.92

0.86

0.70

0.52

0.95

0.89

0.72

0.54

0.98

0.92

0.75

0.56

0.99

0.93

0.76

0.57

⎠T

2423

2016

2423

2016

2423

2016

2423

2016

2423

2016

2221

1915

700

KW1.

601.

641.

691.

741.

721.

761.

811.

871.

831.

861.

921.

981.

921.

962.

022.

081.

992.

042.

102.

172.

062.

112.

172.

25A

MPS

6.0

6.1

6.3

6.5

6.4

6.6

6.8

7.0

7.0

7.1

7.4

7.6

7.4

7.6

7.9

8.2

7.9

8.1

8.4

8.7

8.4

8.6

8.9

9.2

HI P

R22

424

125

426

525

127

028

529

828

630

732

433

832

535

037

038

536

639

441

643

440

443

545

947

9LO

PR

101

108

118

125

107

114

124

132

111

118

129

138

117

124

136

145

123

130

142

152

127

135

147

157

MBh

23.7

424

.19

25.3

427

.03

23.1

823

.63

24.7

526

.40

22.6

323

.07

24.1

625

.78

22.0

822

.51

23.5

725

.15

20.9

821

.38

22.3

923

.89

19.4

319

.81

20.7

422

.13

S/T

0.98

0.95

0.86

0.70

1.00

0.98

0.89

0.72

1.00

1.00

0.91

0.74

1.00

1.00

0.94

0.76

1.00

1.00

0.98

0.79

1.00

1.00

0.98

0.80

⎠T

2423

2219

2424

2219

2324

2219

2323

2320

2122

2219

2020

2118

900

KW1.

671.

701.

751.

811.

791.

831.

881.

941.

901.

942.

002.

072.

002.

042.

102.

172.

082.

122.

192.

262.

152.

202.

272.

34A

MPS

6.2

6.4

6.6

6.8

6.7

6.9

7.1

7.4

7.3

7.5

7.7

8.0

7.8

8.0

8.2

8.6

8.3

8.5

8.8

9.1

8.8

9.0

9.3

9.7

HI P

R23

525

326

727

926

428

430

031

330

032

334

135

634

236

838

940

538

541

443

745

642

545

748

350

4LO

PR

107

113

124

132

113

120

131

139

117

125

136

145

123

131

143

152

129

137

150

159

133

142

155

165

MBh

23.0

23.5

24.6

26.2

22.5

22.9

24.0

25.6

22.0

22.4

23.5

25.0

21.4

21.9

22.9

24.4

20.4

20.8

21.7

23.2

18.9

19.2

20.1

21.5

S/T

0.94

0.91

0.82

0.66

0.97

0.94

0.85

0.69

1.00

0.96

0.87

0.71

1.00

0.99

0.90

0.73

1.00

1.00

0.93

0.76

1.00

1.00

0.94

0.76

⎠T

2524

2320

2525

2320

2525

2320

2525

2420

2324

2320

2222

2219

8580

0KW

1.65

1.69

1.74

1.79

1.78

1.81

1.87

1.93

1.88

1.92

1.98

2.05

1.98

2.02

2.09

2.15

2.06

2.11

2.17

2.24

2.13

2.18

2.25

2.32

AM

PS6.

26.

36.

56.

86.

76.

87.

07.

37.

27.

47.

77.

97.

77.

98.

28.

58.

28.

48.

79.

08.

78.

99.

29.

6HI

PR

233

251

265

276

261

281

297

310

297

320

338

352

339

364

385

401

381

410

433

452

421

453

478

499

LO P

R10

611

212

313

111

211

913

013

811

612

313

514

312

213

014

115

112

813

614

815

813

214

015

316

3M

Bh21

.321

.722

.724

.220

.821

.222

.223

.720

.320

.721

.723

.119

.820

.221

.122

.518

.819

.220

.121

.417

.417

.718

.619

.8S/

T0.

910.

870.

790.

640.

940.

910.

820.

660.

960.

930.

840.

680.

990.

960.

860.

701.

000.

990.

900.

731.

001.

000.

910.

73⎠

T25

2524

2026

2524

2126

2524

2126

2524

2125

2524

2023

2322

1970

0KW

1.62

1.65

1.70

1.75

1.73

1.77

1.83

1.88

1.84

1.88

1.94

2.00

1.93

1.97

2.04

2.10

2.01

2.05

2.12

2.19

2.08

2.12

2.19

2.26

AM

PS6.

06.

16.

36.

66.

56.

66.

97.

17.

07.

27.

47.

77.

57.

77.

98.

28.

08.

28.

58.

88.

58.

79.

09.

3HI

PR

226

243

257

268

254

273

288

301

288

310

328

342

328

353

373

389

370

398

420

438

408

439

464

484

LO P

R10

210

911

912

710

811

512

613

411

212

013

113

911

812

613

714

612

413

214

415

312

813

614

915

8

Shad

ed a

rea

is A

RI R

atin

g Co

nditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW=T

otal

sys

tem

pow

erA

MPS

=out

door

uni

t am

ps (c

omp.

+fan

)Hi

gh a

nd lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 16: Goodman Technical Manual Gszvsz_13_seer

16

COOLING PERFORMANCE DATA G/VSZ130301A* M

OD

EL:

G/V

SZ1

3030

1A*

/ AR

*F30

301*

*E

XP

AN

DE

D P

ER

FO

RM

AN

CE

DA

TAC

OO

LIN

G O

PE

RAT

ION

Ou

tdo

or

Am

bie

nt

Te

mp

era

ture

6575

8595

105

115

Ente

rin

g In

do

or

We

t B

ulb

Te

mp

era

ture

IDB

*A

irfl

ow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h27

.428

.431

.1-

26.8

27.8

30.4

-26

.127

.129

.7-

25.5

26.4

29.0

-24

.225

.127

.5-

22.4

23.3

25.5

-S

/T0.

760.

630.

44-

0.79

0.66

0.46

-0.

810.

670.

47-

0.83

0.70

0.48

-0.

870.

720.

50-

0.87

0.73

0.51

-D

T16

1411

-17

1411

-17

1411

-17

1411

-16

1411

-15

1310

-11

73K

W1.

982.

022.

08-

2.13

2.17

2.24

-2.

252.

302.

37-

2.37

2.42

2.49

-2.

462.

522.

60-

2.55

2.60

2.68

-A

MPS

7.8

7.9

8.2

-8.

38.

58.

8-

9.0

9.2

9.5

-9.

69.

810

.2-

10.2

10.5

10.8

-10

.811

.111

.4-

HI P

R22

924

626

0-

257

276

292

-29

231

433

2-

333

358

378

-37

440

342

5-

413

445

470

-LO

PR

107

114

124

-11

312

013

1-

117

125

136

-12

313

114

3-

129

137

150

-13

414

215

5-

MB

h27

.028

.030

.7-

26.4

27.4

30.0

-25

.826

.729

.3-

25.1

26.1

28.5

-23

.924

.727

.1-

22.1

22.9

25.1

-S

/T0.

730.

610.

42-

0.75

0.63

0.44

-0.

770.

650.

45-

0.80

0.67

0.46

-0.

830.

690.

48-

0.84

0.70

0.48

-D

T17

1511

-17

1511

-17

1511

-18

1512

-17

1511

-16

1411

-70

1050

KW

1.97

2.01

2.07

-2.

122.

162.

22-

2.24

2.29

2.36

-2.

352.

402.

48-

2.45

2.50

2.58

-2.

532.

592.

67-

AM

PS7.

77.

98.

1-

8.3

8.5

8.8

-9.

09.

29.

5-

9.6

9.8

10.1

-10

.210

.410

.7-

10.7

11.0

11.3

-H

I PR

227

245

258

-25

527

429

0-

290

312

330

-33

035

537

5-

372

400

422

-41

144

246

7-

LO P

R10

611

312

3-

112

119

130

-11

612

413

5-

122

130

142

-12

813

614

9-

133

141

154

-M

Bh

25.7

26.6

29.1

-25

.126

.028

.5-

24.5

25.4

27.8

-23

.924

.727

.1-

22.7

23.5

25.8

-21

.021

.823

.9-

S/T

0.70

0.58

0.40

-0.

720.

600.

42-

0.74

0.62

0.43

-0.

770.

640.

44-

0.79

0.66

0.46

-0.

800.

670.

46-

DT

1815

12-

1816

12-

1816

12-

1816

12-

1815

12-

1714

11-

927

KW

1.94

1.98

2.04

-2.

082.

132.

19-

2.21

2.25

2.32

-2.

322.

372.

44-

2.41

2.46

2.54

-2.

492.

542.

62-

AM

PS7.

67.

88.

0-

8.2

8.3

8.6

-8.

89.

09.

3-

9.4

9.6

9.9

-10

.010

.210

.5-

10.5

10.8

11.1

-H

I PR

223

240

253

-25

026

928

4-

284

306

323

-32

434

836

8-

364

392

414

-40

243

345

7-

LO P

R10

411

112

1-

110

117

128

-11

412

113

3-

120

128

139

-12

613

414

6-

130

138

151

-

MB

h27

.928

.731

.133

.427

.228

.030

.432

.626

.627

.429

.631

.825

.926

.728

.931

.024

.625

.427

.529

.522

.823

.525

.427

.3S

/T0.

860.

770.

590.

380.

900.

800.

610.

390.

920.

820.

620.

400.

950.

850.

640.

410.

980.

880.

670.

430.

990.

890.

670.

43D

T19

1714

1019

1814

1019

1814

1019

1815

1019

1714

1018

1613

911

73K

W2.

002.

042.

102.

162.

142.

192.

252.

332.

272.

322.

392.

472.

392.

442.

512.

592.

482.

542.

622.

702.

572.

622.

712.

79A

MPS

7.8

8.0

8.2

8.5

8.4

8.6

8.9

9.2

9.1

9.3

9.6

10.0

9.7

9.9

10.3

10.6

10.3

10.5

10.9

11.3

10.9

11.2

11.5

11.9

HI P

R23

124

926

327

425

927

929

530

729

531

733

535

033

636

238

239

837

840

743

044

841

844

947

549

5LO

PR

108

115

125

133

114

121

132

141

118

126

138

147

124

132

145

154

130

139

151

161

135

144

157

167

MB

h27

.528

.330

.632

.926

.827

.629

.932

.126

.227

.029

.231

.325

.626

.328

.530

.624

.325

.027

.129

.022

.523

.225

.126

.9S

/T0.

830.

740.

560.

360.

860.

770.

580.

370.

880.

790.

600.

380.

910.

810.

610.

400.

940.

840.

640.

410.

950.

850.

640.

41D

T20

1815

1020

1915

1020

1915

1120

1915

1120

1815

1019

1714

1075

1050

KW

1.99

2.03

2.09

2.15

2.13

2.18

2.24

2.31

2.26

2.31

2.38

2.45

2.37

2.42

2.50

2.58

2.47

2.52

2.60

2.69

2.55

2.61

2.69

2.78

AM

PS7.

88.

08.

28.

58.

48.

68.

89.

19.

19.

39.

69.

99.

69.

910

.210

.610

.210

.510

.811

.210

.811

.111

.411

.9H

I PR

230

247

261

272

258

277

293

305

293

315

333

347

334

359

379

395

375

404

427

445

415

446

471

492

LO P

R10

711

412

413

311

312

013

114

011

812

513

714

612

413

114

415

313

013

815

016

013

414

315

616

6M

Bh

26.1

26.9

29.1

31.2

25.5

26.3

28.4

30.5

24.9

25.6

27.7

29.8

24.3

25.0

27.1

29.0

23.1

23.8

25.7

27.6

21.4

22.0

23.8

25.6

S/T

0.79

0.71

0.54

0.35

0.82

0.73

0.56

0.36

0.84

0.75

0.57

0.37

0.87

0.78

0.59

0.38

0.90

0.81

0.61

0.39

0.91

0.81

0.62

0.40

DT

2119

1511

2119

1611

2119

1611

2119

1611

2119

1611

1918

1510

927

KW

1.96

2.00

2.06

2.12

2.10

2.14

2.21

2.28

2.22

2.27

2.34

2.42

2.34

2.38

2.46

2.54

2.43

2.48

2.56

2.64

2.51

2.56

2.65

2.73

AM

PS7.

67.

88.

18.

38.

28.

48.

79.

08.

99.

19.

49.

79.

59.

710

.010

.410

.110

.310

.611

.010

.610

.911

.211

.6H

I PR

225

242

256

267

252

272

287

299

287

309

326

340

327

352

372

388

368

396

418

436

406

437

462

482

LO P

R10

511

212

213

011

111

812

913

711

512

313

414

312

112

914

115

012

713

514

715

713

114

015

216

2

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

=out

door

uni

t am

ps (

com

p.+f

anH

igh

and

low

pre

ssur

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re m

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red

at th

e liq

uid

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serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 17: Goodman Technical Manual Gszvsz_13_seer

17

COOLING PERFORMANCE DATA G/VSZ130301A* M

OD

EL:

G/V

SZ1

3030

1A*

/ AR

*F30

301*

*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

AT

AC

OO

LIN

G O

PE

RAT

ION

Ou

tdo

or

Am

bie

nt

Te

mp

era

ture

6575

8595

105

115

Ente

rin

g In

do

or

We

t B

ulb

Te

mp

era

ture

IDB

*A

irfl

ow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h28

.429

.031

.033

.127

.728

.330

.332

.427

.127

.729

.531

.626

.427

.028

.830

.825

.125

.627

.429

.323

.223

.725

.427

.1S

/T0.

950.

890.

720.

540.

980.

920.

750.

561.

000.

940.

770.

571.

000.

980.

790.

591.

001.

000.

820.

621.

001.

000.

830.

62D

T21

2018

1421

2018

1421

2018

1421

2118

1420

2018

1418

1917

1311

73K

W2.

012.

052.

122.

182.

162.

202.

272.

342.

292.

342.

412.

492.

412.

462.

532.

622.

502.

562.

642.

722.

592.

642.

732.

82A

MPS

7.9

8.1

8.3

8.6

8.5

8.7

9.0

9.3

9.2

9.4

9.7

10.1

9.8

10.0

10.3

10.7

10.4

10.6

11.0

11.4

11.0

11.3

11.6

12.0

HI P

R23

425

126

527

726

228

229

831

129

832

133

935

333

936

538

640

238

241

143

445

342

245

447

950

0LO

PR

109

116

127

135

115

123

134

142

120

127

139

148

126

134

146

156

132

140

153

163

136

145

158

169

MB

h28

.028

.630

.532

.627

.327

.929

.831

.926

.727

.229

.131

.126

.026

.628

.430

.424

.725

.327

.028

.822

.923

.425

.026

.7S

/T0.

910.

850.

690.

520.

940.

880.

720.

540.

960.

900.

740.

551.

000.

930.

760.

571.

000.

970.

790.

591.

000.

980.

800.

59D

T22

2119

1522

2219

1523

2219

1523

2219

1522

2119

1520

2017

1480

1050

KW

2.00

2.04

2.10

2.17

2.15

2.19

2.26

2.33

2.28

2.33

2.40

2.47

2.39

2.44

2.52

2.60

2.49

2.54

2.62

2.71

2.57

2.63

2.71

2.80

AM

PS7.

88.

08.

38.

68.

48.

68.

99.

29.

19.

39.

610

.09.

710

.010

.310

.710

.310

.610

.911

.310

.911

.211

.512

.0H

I PR

232

250

264

275

260

280

296

308

296

318

336

351

337

363

383

399

379

408

431

449

419

451

476

497

LO P

R10

811

512

613

411

412

213

314

111

912

613

814

712

513

314

515

413

113

915

216

213

514

415

716

7M

Bh

26.6

27.1

29.0

31.0

25.9

26.5

28.3

30.3

25.3

25.9

27.7

29.6

24.7

25.3

27.0

28.8

23.5

24.0

25.6

27.4

21.7

22.2

23.7

25.4

S/T

0.87

0.82

0.66

0.50

0.90

0.85

0.69

0.51

0.92

0.87

0.71

0.53

0.95

0.89

0.73

0.54

0.99

0.93

0.76

0.56

1.00

0.94

0.76

0.57

DT

2322

1915

2322

1915

2322

1915

2322

1916

2322

1915

2221

1814

927

KW

1.97

2.01

2.07

2.13

2.12

2.16

2.22

2.29

2.24

2.29

2.36

2.43

2.35

2.40

2.48

2.56

2.45

2.50

2.58

2.66

2.53

2.59

2.67

2.76

AM

PS7.

77.

98.

18.

48.

38.

58.

89.

19.

09.

29.

59.

89.

69.

810

.110

.510

.210

.410

.711

.110

.711

.011

.311

.8H

I PR

227

245

258

269

255

274

290

302

290

312

330

344

330

355

375

391

372

400

422

440

411

442

467

487

LO P

R10

611

312

313

111

211

913

013

911

612

413

514

412

213

014

215

112

813

614

915

913

314

115

416

4

MB

h28

.929

.430

.832

.928

.228

.830

.132

.127

.528

.129

.431

.426

.927

.428

.730

.625

.526

.027

.229

.123

.624

.125

.226

.9S

/T0.

990.

960.

870.

701.

000.

990.

900.

731.

001.

000.

920.

751.

001.

000.

950.

771.

001.

000.

990.

801.

001.

000.

990.

81D

T22

2221

1822

2221

1822

2221

1821

2121

1820

2021

1819

1920

1711

73K

W2.

032.

072.

132.

202.

182.

222.

292.

362.

312.

362.

432.

512.

422.

482.

552.

642.

522.

582.

662.

752.

612.

662.

752.

84A

MPS

8.0

8.1

8.4

8.7

8.6

8.8

9.0

9.4

9.3

9.5

9.8

10.1

9.9

10.1

10.4

10.8

10.5

10.7

11.1

11.5

11.1

11.4

11.7

12.2

HI P

R23

625

426

828

026

528

530

131

430

132

434

235

734

336

939

040

638

641

543

845

742

645

948

450

5LO

PR

110

117

128

136

116

124

135

144

121

129

140

150

127

135

147

157

133

142

155

165

138

146

160

170

MB

h28

.529

.030

.432

.427

.828

.329

.731

.727

.127

.729

.030

.926

.527

.028

.330

.125

.125

.626

.828

.623

.323

.724

.926

.5S

/T0.

950.

920.

830.

670.

990.

950.

860.

701.

000.

980.

880.

711.

001.

000.

910.

741.

001.

000.

940.

771.

001.

000.

950.

77D

T24

2322

1924

2422

1924

2422

1923

2422

1922

2222

1920

2121

1885

1050

KW

2.02

2.06

2.12

2.19

2.17

2.21

2.28

2.35

2.30

2.34

2.42

2.49

2.41

2.46

2.54

2.62

2.51

2.56

2.64

2.73

2.59

2.65

2.74

2.82

AM

PS7.

98.

18.

38.

68.

58.

79.

09.

39.

29.

49.

710

.19.

810

.110

.410

.710

.410

.711

.011

.411

.011

.311

.612

.1H

I PR

234

252

266

278

263

283

299

311

299

322

340

354

340

366

387

403

383

412

435

454

423

455

481

502

LO P

R10

911

612

713

511

612

313

414

312

012

813

914

812

613

414

615

613

214

115

316

313

714

515

916

9M

Bh

27.0

27.6

28.9

30.8

26.4

26.9

28.2

30.1

25.8

26.3

27.5

29.4

25.1

25.6

26.8

28.6

23.9

24.4

25.5

27.2

22.1

22.6

23.6

25.2

S/T

0.91

0.88

0.79

0.64

0.94

0.91

0.82

0.67

0.97

0.93

0.84

0.68

1.00

0.96

0.87

0.71

1.00

1.00

0.90

0.73

1.00

1.00

0.91

0.74

DT

2424

2320

2524

2320

2524

2320

2525

2320

2424

2320

2222

2118

927

KW

1.99

2.03

2.09

2.15

2.13

2.18

2.24

2.31

2.26

2.31

2.38

2.45

2.37

2.42

2.50

2.58

2.47

2.52

2.60

2.69

2.55

2.61

2.69

2.78

AM

PS7.

88.

08.

28.

58.

48.

68.

89.

19.

19.

39.

69.

99.

69.

910

.210

.610

.210

.510

.811

.210

.811

.111

.411

.9H

I PR

230

247

261

272

258

277

293

305

293

315

333

347

334

359

379

395

375

404

426

445

415

446

471

491

LO P

R10

711

412

413

311

312

013

114

011

812

513

714

612

413

114

415

313

013

815

016

013

414

315

616

6

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 18: Goodman Technical Manual Gszvsz_13_seer

18

COOLING PERFORMANCE DATA G/VSZ130361A* M

OD

EL:

G/V

SZ1

3036

1A*

/ AR

*F36

4216

**E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h33

.835

.038

.4-

33.0

34.2

37.5

-32

.233

.436

.6-

31.4

32.6

35.7

-29

.931

.033

.9-

27.7

28.7

31.4

-S

/T0.

740.

620.

43-

0.77

0.64

0.44

-0.

790.

660.

46-

0.81

0.68

0.47

-0.

840.

700.

49-

0.85

0.71

0.49

-DT

1614

11-

1614

11-

1614

11-

1614

11-

1614

11-

1513

10-

1425

KW

2.60

2.65

2.73

-2.

792.

842.

92-

2.95

3.01

3.10

-3.

093.

153.

25-

3.21

3.28

3.38

-3.

323.

383.

49-

AM

PS9.

49.

710

.0-

10.2

10.4

10.7

-11

.011

.311

.7-

11.8

12.0

12.4

-12

.512

.813

.2-

13.2

13.6

14.0

-H

I PR

239

257

272

-26

828

930

5-

305

328

347

-34

737

439

5-

391

421

444

-43

246

549

1-

LO P

R10

811

412

5-

114

121

132

-11

812

613

7-

124

132

144

-13

013

815

1-

134

143

156

-M

Bh

33.3

34.5

37.8

-32

.533

.736

.9-

31.7

32.9

36.1

-31

.032

.135

.2-

29.4

30.5

33.4

-27

.328

.331

.0-

S/T

0.71

0.59

0.41

-0.

730.

610.

43-

0.75

0.63

0.44

-0.

780.

650.

45-

0.81

0.67

0.47

-0.

810.

680.

47-

DT17

1511

-17

1511

-17

1511

-17

1511

-17

1511

-16

1411

-70

1275

KW

2.59

2.64

2.72

-2.

772.

832.

91-

2.93

2.99

3.08

-3.

073.

143.

23-

3.19

3.26

3.36

-3.

303.

373.

47-

AM

PS9.

49.

69.

9-

10.1

10.3

10.7

-11

.011

.211

.6-

11.7

12.0

12.4

-12

.412

.713

.1-

13.2

13.5

13.9

-H

I PR

237

255

270

-26

628

730

3-

303

326

344

-34

537

139

2-

388

418

441

-42

946

148

7-

LO P

R10

711

412

4-

113

120

131

-11

712

513

6-

123

131

143

-12

913

715

0-

134

142

155

-M

Bh

31.6

32.8

35.9

-30

.932

.035

.1-

30.2

31.3

34.3

-29

.430

.533

.4-

28.0

29.0

31.7

-25

.926

.829

.4-

S/T

0.68

0.57

0.39

-0.

700.

590.

41-

0.72

0.60

0.42

-0.

740.

620.

43-

0.77

0.65

0.45

-0.

780.

650.

45-

DT18

1512

-18

1512

-18

1512

-18

1612

-18

1512

-16

1411

-11

25K

W2.

552.

602.

68-

2.73

2.78

2.87

-2.

892.

953.

03-

3.03

3.09

3.18

-3.

143.

213.

31-

3.25

3.31

3.42

-A

MPS

9.2

9.4

9.7

-9.

910

.210

.5-

10.8

11.0

11.4

-11

.511

.812

.1-

12.2

12.5

12.9

-12

.913

.213

.7-

HI P

R23

325

026

4-

261

281

297

-29

731

933

7-

338

364

384

-38

040

943

2-

420

452

478

-LO

PR

105

111

122

-11

111

812

8-

115

122

133

-12

112

814

0-

127

135

147

-13

113

915

2-

MB

h34

.435

.438

.341

.133

.634

.637

.440

.232

.833

.736

.539

.232

.032

.935

.638

.230

.431

.333

.836

.328

.129

.031

.433

.7S

/T0.

840.

750.

570.

370.

870.

780.

590.

380.

890.

800.

610.

390.

920.

830.

620.

400.

960.

860.

650.

420.

970.

860.

650.

42DT

1917

1410

1917

1410

1917

1410

1918

1410

1917

1410

1816

139

1425

KW

2.62

2.67

2.75

2.83

2.81

2.86

2.95

3.04

2.97

3.03

3.12

3.22

3.11

3.18

3.28

3.38

3.24

3.30

3.41

3.51

3.34

3.41

3.52

3.63

AM

PS9.

59.

710

.010

.410

.310

.510

.811

.211

.111

.411

.812

.211

.912

.212

.613

.012

.612

.913

.313

.813

.413

.714

.114

.7H

I PR

241

260

274

286

271

292

308

321

308

332

350

365

351

378

399

416

395

425

449

468

436

469

496

517

LO P

R10

911

612

613

411

512

213

314

211

912

713

914

812

513

314

615

513

114

015

316

213

614

515

816

8M

Bh

33.9

34.9

37.7

40.5

33.1

34.1

36.9

39.6

32.3

33.2

36.0

38.6

31.5

32.4

35.1

37.7

29.9

30.8

33.3

35.8

27.7

28.5

30.9

33.2

S/T

0.81

0.72

0.55

0.35

0.84

0.75

0.57

0.36

0.86

0.77

0.58

0.37

0.88

0.79

0.60

0.38

0.92

0.82

0.62

0.40

0.93

0.83

0.63

0.40

DT20

1815

1020

1815

1020

1815

1020

1815

1020

1815

1018

1714

1075

1275

KW

2.61

2.66

2.74

2.82

2.79

2.85

2.93

3.02

2.95

3.01

3.10

3.20

3.10

3.16

3.26

3.36

3.22

3.29

3.39

3.49

3.32

3.39

3.50

3.61

AM

PS9.

59.

710

.010

.310

.210

.410

.811

.211

.111

.311

.712

.111

.812

.112

.512

.912

.512

.813

.313

.813

.313

.614

.014

.6H

I PR

240

258

272

284

269

290

306

319

306

329

348

363

348

375

396

413

392

422

446

465

433

466

492

513

LO P

R10

811

512

513

311

412

113

214

111

812

613

814

712

413

214

515

413

013

915

116

113

514

415

716

7M

Bh

32.2

33.1

35.9

38.5

31.4

32.4

35.0

37.6

30.7

31.6

34.2

36.7

29.9

30.8

33.3

35.8

28.4

29.3

31.7

34.0

26.3

27.1

29.3

31.5

S/T

0.77

0.69

0.52

0.34

0.80

0.72

0.54

0.35

0.82

0.73

0.56

0.36

0.85

0.76

0.57

0.37

0.88

0.79

0.59

0.38

0.89

0.79

0.60

0.39

DT20

1915

1121

1915

1121

1916

1121

1916

1120

1915

1119

1814

1011

25K

W2.

572.

622.

702.

772.

752.

812.

892.

972.

912.

973.

063.

153.

053.

113.

213.

313.

173.

233.

333.

443.

273.

343.

443.

55A

MPS

9.3

9.5

9.8

10.2

10.0

10.3

10.6

11.0

10.9

11.1

11.5

11.9

11.6

11.9

12.3

12.7

12.3

12.6

13.0

13.5

13.0

13.3

13.8

14.3

HI P

R23

525

326

727

826

428

430

031

230

032

334

135

534

236

838

840

538

441

343

745

542

445

748

250

3LO

PR

106

112

123

131

112

119

130

138

116

124

135

144

122

130

142

151

128

136

148

158

132

141

154

164

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

=out

door

uni

t am

ps (

com

p.+f

a nH

igh

and

low

pre

ssur

es a

re m

easu

red

at th

e liq

uid

and

suct

ion

serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 19: Goodman Technical Manual Gszvsz_13_seer

19

COOLING PERFORMANCE DATA G/VSZ130361A* M

OD

EL:

G/V

SZ1

3036

1A*

/ AR

*F36

4216

**E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB*

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h34

.98

35.7

538

.19

40.8

234

.17

34.9

137

.30

39.8

833

.35

34.0

836

.41

38.9

332

.54

33.2

535

.53

37.9

830

.91

31.5

933

.75

36.0

828

.64

29.2

631

.26

33.4

2S

/T0.

920.

870.

700.

530.

960.

900.

730.

550.

980.

920.

750.

561.

000.

950.

770.

581.

001.

000.

800.

601.

001.

000.

810.

60DT

2120

1714

2120

1814

2120

1814

2120

1814

2020

1714

1819

1613

1425

KW

2.64

2.69

2.77

2.85

2.83

2.88

2.97

3.06

2.99

3.05

3.15

3.24

3.14

3.20

3.30

3.40

3.26

3.33

3.43

3.54

3.37

3.44

3.55

3.66

AM

PS9.

69.

810

.110

.510

.410

.610

.911

.311

.211

.511

.912

.312

.012

.312

.713

.112

.713

.013

.514

.013

.513

.814

.314

.8HI

PR

244

262

277

289

274

294

311

324

311

335

354

369

354

381

403

420

399

429

453

473

441

474

501

522

LO P

R11

011

712

713

611

612

313

514

312

112

814

014

912

713

514

715

713

314

115

416

413

714

615

917

0M

Bh

34.5

35.2

37.6

40.2

33.7

34.4

36.8

39.3

32.9

33.6

35.9

38.4

32.1

32.8

35.0

37.4

30.5

31.1

33.3

35.5

28.2

28.8

30.8

32.9

S/T

0.88

0.83

0.67

0.50

0.92

0.86

0.70

0.52

0.94

0.88

0.72

0.54

0.97

0.91

0.74

0.55

1.00

0.94

0.77

0.57

1.00

0.95

0.77

0.58

DT22

2118

1522

2119

1522

2119

1522

2119

1522

2118

1520

2017

1480

1275

KW

2.63

2.68

2.76

2.84

2.81

2.87

2.95

3.04

2.98

3.04

3.13

3.23

3.12

3.19

3.28

3.39

3.24

3.31

3.41

3.52

3.35

3.42

3.53

3.64

AM

PS9.

59.

810

.110

.410

.310

.510

.911

.311

.211

.411

.812

.211

.912

.212

.613

.112

.713

.013

.413

.913

.413

.714

.214

.7HI

PR

242

261

275

287

272

292

309

322

309

333

351

366

352

379

400

417

396

426

450

469

438

471

497

519

LO P

R10

911

612

713

511

512

313

414

212

012

713

914

812

613

414

615

513

214

015

316

313

614

515

816

9M

Bh

32.7

33.5

35.7

38.2

32.0

32.7

34.9

37.3

31.2

31.9

34.1

36.4

30.5

31.1

33.3

35.5

28.9

29.6

31.6

33.8

26.8

27.4

29.3

31.3

S/T

0.85

0.79

0.65

0.48

0.88

0.82

0.67

0.50

0.90

0.84

0.69

0.51

0.93

0.87

0.71

0.53

0.96

0.90

0.74

0.55

0.97

0.91

0.74

0.55

DT23

2219

1523

2219

1523

2219

1523

2219

1523

2219

1521

2018

1411

25K

W2.

592.

642.

722.

802.

772.

832.

913.

002.

932.

993.

083.

183.

073.

143.

233.

333.

193.

263.

363.

473.

303.

373.

473.

58A

MPS

9.4

9.6

9.9

10.3

10.1

10.3

10.7

11.1

11.0

11.2

11.6

12.0

11.7

12.0

12.4

12.8

12.4

12.7

13.1

13.6

13.2

13.5

13.9

14.4

HI P

R23

725

527

028

126

628

730

331

630

332

634

435

934

537

139

240

938

841

844

146

042

946

148

750

8LO

PR

107

114

124

132

113

120

131

140

117

125

136

145

123

131

143

152

129

137

150

160

134

142

155

165

MB

h35

.59

36.2

838

.00

40.5

434

.76

35.4

437

.11

39.6

033

.94

34.5

936

.23

38.6

533

.11

33.7

535

.35

37.7

131

.45

32.0

633

.58

35.8

229

.14

29.7

031

.11

33.1

9S

/T0.

970.

930.

840.

681.

000.

970.

870.

711.

000.

990.

900.

731.

001.

000.

920.

751.

001.

000.

960.

781.

001.

000.

970.

78DT

2222

2118

2222

2118

2222

2118

2122

2118

2021

2118

1919

1917

1425

KW

2.66

2.71

2.79

2.87

2.85

2.91

2.99

3.08

3.02

3.08

3.17

3.27

3.16

3.23

3.33

3.43

3.29

3.36

3.46

3.57

3.39

3.47

3.57

3.69

AM

PS9.

79.

910

.210

.610

.410

.711

.011

.411

.311

.612

.012

.412

.112

.412

.813

.312

.913

.213

.614

.113

.613

.914

.414

.9HI

PR

246

265

280

292

276

297

314

328

314

338

357

373

358

385

407

424

403

433

458

477

445

479

506

527

LO P

R11

111

812

913

711

712

513

614

512

212

914

115

112

813

614

815

813

414

315

616

613

914

716

117

1M

Bh

35.1

35.7

37.4

39.9

34.3

34.9

36.6

39.0

33.4

34.1

35.7

38.1

32.6

33.3

34.8

37.2

31.0

31.6

33.1

35.3

28.7

29.3

30.6

32.7

S/T

0.93

0.89

0.81

0.65

0.96

0.93

0.84

0.68

0.98

0.95

0.86

0.70

1.00

0.98

0.89

0.72

1.00

1.00

0.92

0.75

1.00

1.00

0.93

0.75

DT23

2322

1924

2322

1924

2322

1924

2422

1922

2322

1921

2120

1885

1275

KW

2.65

2.70

2.78

2.86

2.83

2.89

2.98

3.07

3.00

3.06

3.15

3.25

3.15

3.21

3.31

3.41

3.27

3.34

3.44

3.55

3.38

3.45

3.56

3.67

AM

PS9.

69.

910

.210

.510

.410

.611

.011

.411

.311

.511

.912

.312

.012

.312

.713

.212

.813

.113

.514

.013

.513

.814

.314

.8HI

PR

245

263

278

290

274

295

312

325

312

336

355

370

356

383

404

421

400

430

455

474

442

476

502

524

LO P

R11

011

712

813

611

612

413

514

412

112

914

015

012

713

514

715

713

314

215

516

513

814

616

017

0M

Bh

33.3

34.0

35.6

37.9

32.5

33.2

34.7

37.1

31.8

32.4

33.9

36.2

31.0

31.6

33.1

35.3

29.4

30.0

31.4

33.5

27.3

27.8

29.1

31.1

S/T

0.89

0.86

0.77

0.63

0.92

0.89

0.80

0.65

0.94

0.91

0.82

0.67

0.97

0.94

0.85

0.69

1.00

0.97

0.88

0.71

1.00

0.98

0.89

0.72

DT24

2422

1924

2423

2024

2423

2025

2423

2024

2423

2022

2221

1811

25K

W2.

612.

662.

742.

822.

792.

852.

933.

022.

953.

013.

103.

203.

103.

163.

263.

363.

223.

283.

393.

493.

323.

393.

503.

61A

MPS

9.5

9.7

10.0

10.3

10.2

10.4

10.8

11.2

11.1

11.3

11.7

12.1

11.8

12.1

12.5

12.9

12.5

12.8

13.3

13.8

13.3

13.6

14.0

14.6

HI P

R24

025

827

228

426

928

930

631

930

632

934

836

334

837

539

641

339

242

244

546

543

346

649

251

3LO

PR

108

115

125

133

114

121

132

141

118

126

138

147

124

132

145

154

130

139

151

161

135

143

157

167

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 20: Goodman Technical Manual Gszvsz_13_seer

20

COOLING PERFORMANCE DATA G/VSZ130361B*EX

PAND

ED P

ERFO

RMAN

CE

DATA

MO

DEL:

G/V

SZ13

0361

B* /

AR*F

3642

16**

COO

LING

OPE

RATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Airf

low

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MBh

34.3

35.5

38.9

-33

.534

.738

.0-

32.7

33.9

37.1

-31

.933

.136

.2-

30.3

31.4

34.4

-28

.129

.131

.9-

S/T

0.75

0.63

0.44

-0.

780.

650.

45-

0.80

0.67

0.46

-0.

830.

690.

48-

0.86

0.72

0.50

-0.

860.

720.

50-

ΠΧ18

1512

-18

1512

-18

1512

-18

1612

-18

1512

-17

1411

-13

50KW

2.49

2.54

2.62

-2.

682.

742.

82-

2.84

2.91

3.00

-2.

993.

063.

16-

3.12

3.18

3.29

-3.

223.

303.

40-

AMPS

8.6

8.8

9.1

-9.

39.

59.

8-

10.1

10.3

10.7

-10

.811

.011

.4-

11.5

11.7

12.1

-12

.112

.412

.8-

HI P

R23

825

627

0-

267

287

303

-30

432

734

5-

346

372

393

-38

941

944

2-

430

463

488

-LO

PR

107

114

124

-11

312

013

1-

118

125

137

-12

413

114

4-

130

138

150

-13

414

315

6-

MBh

33.3

34.5

37.8

-32

.533

.736

.9-

31.7

32.9

36.1

-31

.032

.135

.2-

29.4

30.5

33.4

-27

.328

.331

.0-

S/T

0.72

0.60

0.42

-0.

740.

620.

43-

0.76

0.64

0.44

-0.

790.

660.

46-

0.82

0.68

0.47

-0.

820.

690.

48-

ΠΧ18

1612

-19

1612

-19

1612

-19

1612

-18

1612

-17

1511

-70

1200

KW2.

472.

522.

60-

2.66

2.71

2.80

-2.

822.

882.

97-

2.97

3.03

3.13

-3.

093.

163.

26-

3.20

3.27

3.38

-AM

PS8.

58.

79.

0-

9.2

9.4

9.7

-10

.010

.210

.6-

10.7

10.9

11.3

-11

.311

.612

.0-

12.0

12.3

12.7

-HI

PR

236

253

268

-26

428

430

0-

301

323

342

-34

236

838

9-

385

414

438

-42

645

848

4-

LO P

R10

611

312

3-

112

119

130

-11

612

413

5-

122

130

142

-12

813

614

9-

133

141

154

-M

Bh30

.731

.934

.9-

30.0

31.1

34.1

-29

.330

.433

.3-

28.6

29.6

32.5

-27

.228

.230

.8-

25.2

26.1

28.6

-S/

T0.

690.

580.

40-

0.72

0.60

0.42

-0.

740.

610.

43-

0.76

0.63

0.44

-0.

790.

660.

46-

0.80

0.66

0.46

-ΠΧ

1916

12-

1916

12-

1916

12-

1916

12-

1916

12-

1815

12-

1050

KW2.

412.

462.

54-

2.59

2.65

2.73

-2.

752.

812.

90-

2.89

2.96

3.05

-3.

013.

083.

18-

3.12

3.19

3.29

-AM

PS8.

38.

58.

8-

9.0

9.2

9.5

-9.

710

.010

.3-

10.4

10.6

11.0

-11

.011

.311

.7-

11.7

12.0

12.4

-HI

PR

228

246

260

-25

627

629

1-

292

314

331

-33

235

737

7-

374

402

425

-41

344

446

9-

LO P

R10

310

912

0-

109

116

126

-11

312

013

1-

119

126

138

-12

413

214

4-

129

137

149

-

MBh

34.8

835

.91

38.8

741

.72

34.0

735

.08

37.9

740

.75

33.2

634

.24

37.0

639

.78

32.4

533

.41

36.1

638

.81

30.8

231

.74

34.3

536

.87

28.5

529

.40

31.8

234

.15

S/T

0.86

0.77

0.58

0.37

0.89

0.79

0.60

0.39

0.91

0.81

0.62

0.40

0.94

0.84

0.64

0.41

0.97

0.87

0.66

0.42

0.98

0.88

0.67

0.43

ΠΧ20

1915

1121

1916

1121

1916

1121

1916

1120

1915

1119

1814

1013

50KW

2.51

2.56

2.64

2.73

2.70

2.76

2.84

2.94

2.87

2.93

3.02

3.12

3.02

3.08

3.18

3.29

3.14

3.21

3.32

3.43

3.25

3.32

3.43

3.55

AMPS

8.7

8.9

9.2

9.5

9.4

9.6

9.9

10.3

10.2

10.4

10.8

11.2

10.9

11.1

11.5

11.9

11.6

11.8

12.2

12.7

12.2

12.5

13.0

13.4

HI P

R24

025

927

328

527

029

030

632

030

733

034

936

434

937

639

741

439

342

344

746

643

446

749

351

5LO

PR

108

115

126

134

114

122

133

141

119

126

138

147

125

133

145

154

131

139

152

162

135

144

157

167

MBh

33.9

34.9

37.7

40.5

33.1

34.1

36.9

39.6

32.3

33.2

36.0

38.6

31.5

32.4

35.1

37.7

29.9

30.8

33.3

35.8

27.7

28.5

30.9

33.2

S/T

0.82

0.73

0.55

0.36

0.85

0.76

0.57

0.37

0.87

0.78

0.59

0.38

0.90

0.80

0.61

0.39

0.93

0.83

0.63

0.40

0.94

0.84

0.63

0.41

ΠΧ21

2016

1121

2016

1121

2016

1122

2016

1121

2016

1120

1815

1075

1200

KW2.

492.

542.

622.

702.

682.

742.

822.

912.

852.

913.

003.

102.

993.

063.

163.

263.

123.

193.

293.

403.

223.

303.

403.

52AM

PS8.

68.

89.

19.

49.

39.

59.

810

.210

.110

.310

.711

.110

.811

.011

.411

.811

.511

.712

.112

.612

.112

.412

.813

.3HI

PR

238

256

270

282

267

287

303

316

304

327

345

360

346

372

393

410

389

419

442

461

430

463

489

510

LO P

R10

711

412

413

311

312

013

114

011

812

513

714

612

413

114

415

313

013

815

016

013

414

315

616

6M

Bh31

.332

.234

.837

.430

.531

.434

.036

.529

.830

.733

.235

.629

.129

.932

.434

.827

.628

.430

.833

.025

.626

.328

.530

.6S/

T0.

790.

700.

530.

340.

820.

730.

550.

360.

840.

750.

570.

360.

860.

770.

580.

380.

900.

800.

610.

390.

900.

810.

610.

39ΠΧ

2220

1611

2220

1611

2220

1611

2220

1711

2220

1611

2019

1511

1050

KW2.

432.

482.

562.

642.

612.

672.

752.

842.

782.

842.

933.

022.

922.

983.

083.

183.

043.

113.

213.

313.

143.

213.

323.

43AM

PS8.

48.

68.

99.

29.

09.

39.

69.

99.

810

.010

.410

.810

.510

.711

.111

.511

.111

.411

.812

.211

.812

.112

.513

.0HI

PR

231

248

262

274

259

279

294

307

295

317

335

349

335

361

381

398

377

406

429

447

417

449

474

494

LO P

R10

411

112

112

911

011

712

813

611

412

113

314

112

012

813

914

812

613

414

615

513

013

815

116

1

Shad

ed a

rea

is A

CCA

(TVA

) con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW=T

otal

sys

tem

pow

erAM

PS=o

utdo

or u

nit a

mps

(com

p.+f

an)

High

and

low

pres

sure

s ar

e m

easu

red

at th

e liq

uid

and

suct

ion

serv

ice v

alve

s.

Downloaded from www.Manualslib.com manuals search engine

Page 21: Goodman Technical Manual Gszvsz_13_seer

21

COOLING PERFORMANCE DATA G/VSZ130361B*EX

PAND

ED P

ERFO

RMAN

CE D

ATA

MO

DEL:

G/V

SZ13

0361

B* /

AR*F

3642

16**

COO

LING

OPE

RATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Airf

low

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MBh

35.5

036

.27

38.7

541

.43

34.6

735

.43

37.8

540

.46

33.8

534

.59

36.9

539

.50

33.0

233

.74

36.0

538

.54

31.3

732

.06

34.2

536

.61

29.0

629

.69

31.7

233

.91

S/T

0.94

0.88

0.72

0.54

1.00

0.91

0.74

0.56

1.00

0.94

0.76

0.57

1.00

0.97

0.79

0.59

1.00

1.00

0.82

0.61

1.00

1.00

0.82

0.62

ΠΧ23

2219

1524

2219

1523

2219

1522

2219

1521

2219

1520

2018

1413

50KW

2.53

2.58

2.66

2.75

2.72

2.78

2.87

2.96

2.89

2.95

3.05

3.15

3.04

3.11

3.21

3.32

3.17

3.24

3.35

3.46

3.28

3.35

3.46

3.58

AMPS

8.8

9.0

9.3

9.6

9.5

9.7

10.0

10.4

10.3

10.5

10.9

11.3

11.0

11.2

11.6

12.0

11.7

12.0

12.3

12.8

12.4

12.7

13.1

13.6

HI P

R24

326

127

628

827

229

331

032

331

033

335

236

735

338

040

141

839

742

745

147

043

947

249

852

0LO

PR

109

116

127

135

116

123

134

143

120

128

139

148

126

134

146

156

132

141

153

163

137

145

159

169

MBh

34.5

35.2

37.6

40.2

33.7

34.4

36.8

39.3

32.9

33.6

35.9

38.4

32.1

32.8

35.0

37.4

30.5

31.1

33.3

35.5

28.2

28.8

30.8

32.9

S/T

0.90

0.84

0.68

0.51

0.93

0.87

0.71

0.53

0.95

0.89

0.73

0.54

0.98

0.92

0.75

0.56

1.00

0.96

0.78

0.58

1.00

0.96

0.78

0.59

ΠΧ24

2320

1624

2320

1624

2320

1624

2320

1623

2320

1622

2119

1580

1200

KW2.

512.

562.

642.

732.

702.

762.

852.

942.

872.

933.

023.

123.

023.

083.

183.

293.

143.

213.

323.

433.

253.

323.

433.

55AM

PS8.

78.

99.

29.

59.

49.

69.

910

.310

.210

.410

.811

.210

.911

.111

.511

.911

.611

.812

.212

.712

.212

.513

.013

.4HI

PR

240

259

273

285

270

290

306

320

307

330

349

364

349

376

397

414

393

423

447

466

434

467

493

515

LO P

R10

811

512

613

411

412

213

314

111

912

613

814

712

513

314

515

413

113

915

216

213

514

415

716

7M

Bh31

.832

.534

.737

.131

.131

.733

.936

.330

.331

.033

.135

.429

.630

.232

.334

.528

.128

.730

.732

.826

.026

.628

.430

.4S/

T0.

860.

810.

660.

490.

890.

840.

680.

510.

920.

860.

700.

520.

950.

890.

720.

540.

980.

920.

750.

560.

990.

930.

760.

57ΠΧ

2423

2016

2423

2016

2423

2016

2524

2016

2423

2016

2322

1915

1050

KW2.

452.

502.

582.

662.

642.

692.

782.

872.

802.

862.

953.

052.

943.

013.

103.

213.

063.

133.

233.

343.

173.

243.

353.

46AM

PS8.

58.

78.

99.

39.

19.

39.

610

.09.

910

.110

.510

.910

.610

.811

.211

.611

.211

.511

.912

.311

.912

.212

.613

.1HI

PR

233

251

265

276

262

282

297

310

298

320

338

353

339

365

385

402

381

410

433

452

421

453

479

499

LO P

R10

511

212

213

011

111

812

913

711

512

313

414

312

112

914

115

012

713

514

715

713

114

015

216

2

MBh

36.1

236

.82

38.5

641

.14

35.2

835

.96

37.6

640

.18

34.4

435

.11

36.7

739

.22

33.6

034

.25

35.8

738

.27

31.9

232

.54

34.0

836

.35

29.5

730

.14

31.5

733

.68

S/T

0.98

0.95

0.86

0.70

1.00

0.98

0.89

0.72

1.00

1.00

0.91

0.74

1.00

1.00

0.94

0.76

1.00

1.00

0.98

0.79

1.00

1.00

0.98

0.80

ΠΧ24

2423

1924

2423

2023

2423

2023

2323

2022

2223

2020

2121

1813

50KW

2.55

2.60

2.68

2.77

2.74

2.80

2.89

2.99

2.91

2.98

3.07

3.18

3.07

3.13

3.24

3.34

3.20

3.27

3.37

3.49

3.31

3.38

3.49

3.61

AMPS

8.8

9.1

9.3

9.7

9.5

9.8

10.1

10.5

10.4

10.6

11.0

11.4

11.1

11.3

11.7

12.2

11.8

12.1

12.5

12.9

12.5

12.8

13.2

13.7

HI P

R24

526

427

929

127

529

631

332

631

333

735

637

135

638

440

542

240

143

145

647

544

347

750

352

5LO

PR

110

117

128

137

117

124

135

144

121

129

141

150

127

135

148

158

133

142

155

165

138

147

160

171

MBh

35.1

35.7

37.4

39.9

34.3

34.9

36.6

39.0

33.4

34.1

35.7

38.1

32.6

33.3

34.8

37.2

31.0

31.6

33.1

35.3

28.7

29.3

30.6

32.7

S/T

0.94

0.91

0.82

0.66

0.97

0.94

0.85

0.69

1.00

0.96

0.87

0.70

1.00

0.99

0.90

0.73

1.00

1.00

0.93

0.76

1.00

1.00

0.94

0.76

ΠΧ25

2523

2026

2524

2126

2524

2125

2524

2124

2424

2022

2222

1985

1200

KW2.

532.

582.

662.

752.

722.

782.

872.

962.

892.

953.

053.

153.

043.

113.

213.

323.

173.

243.

353.

463.

283.

353.

463.

58AM

PS8.

89.

09.

39.

69.

59.

710

.010

.410

.310

.510

.911

.311

.011

.211

.612

.011

.712

.012

.312

.812

.412

.713

.113

.6HI

PR

243

261

276

288

272

293

310

323

310

333

352

367

353

380

401

418

397

427

451

470

439

472

498

520

LO P

R10

911

612

713

511

612

313

414

312

012

813

914

812

613

414

615

613

214

115

316

313

714

515

916

9M

Bh32

.433

.034

.636

.931

.632

.233

.836

.030

.931

.532

.935

.130

.130

.732

.134

.328

.629

.230

.532

.626

.527

.028

.330

.2S/

T0.

910.

870.

790.

640.

940.

910.

820.

660.

960.

930.

840.

680.

990.

960.

860.

701.

000.

990.

900.

731.

001.

000.

910.

73ΠΧ

2625

2421

2626

2421

2626

2421

2626

2421

2525

2421

2324

2219

1050

KW2.

472.

522.

602.

682.

662.

712.

802.

892.

822.

882.

973.

072.

973.

033.

133.

233.

093.

163.

263.

373.

203.

273.

383.

49AM

PS8.

58.

79.

09.

39.

29.

49.

710

.110

.010

.210

.611

.010

.710

.911

.311

.711

.311

.612

.012

.512

.012

.312

.713

.2HI

PR

235

253

268

279

264

284

300

313

301

323

341

356

342

368

389

406

385

414

438

456

425

458

483

504

LO P

R10

611

312

313

111

211

913

013

911

612

413

514

412

213

014

215

112

813

614

915

913

314

115

416

4

Shad

ed a

rea

is A

RI R

atin

g C

ondi

tions

IDB:

Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reKW

=Tot

al s

yste

m p

ower

AMPS

=out

door

uni

t am

ps (c

omp.

+fan

)Hi

gh a

nd lo

w pr

essu

res

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvice

val

ves.

Downloaded from www.Manualslib.com manuals search engine

Page 22: Goodman Technical Manual Gszvsz_13_seer

22

COOLING PERFORMANCE DATA GZ130363A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3036

3A*

/ AR

*F36

4216

**C

OO

LIN

G O

PER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h33

.835

.038

.4-

33.0

34.2

37.5

-32

.233

.436

.6-

31.4

32.6

35.7

-29

.931

.033

.9-

27.7

28.7

31.4

-S

/T0.

760.

630.

44-

0.79

0.66

0.45

-0.

800.

670.

47-

0.83

0.69

0.48

-0.

860.

720.

50-

0.87

0.73

0.50

-14

25D

T17

1411

-17

1411

-17

1411

-17

1511

-17

1411

-16

1310

-K

W2.

522.

572.

65-

2.70

2.76

2.84

-2.

862.

923.

01-

3.01

3.07

3.17

-3.

133.

193.

30-

3.23

3.30

3.41

-A

MPS

6.6

6.8

7.0

-7.

17.

37.

5-

7.7

7.9

8.1

-8.

28.

48.

6-

8.7

8.9

9.2

-9.

29.

49.

7-

HI P

R23

825

627

0-

267

287

303

-30

332

734

5-

346

372

393

-38

941

844

2-

430

462

488

-LO

PR

107

114

124

-11

312

013

1-

117

125

136

-12

313

114

3-

129

137

150

-13

414

215

5-

MB

h33

.334

.537

.8-

32.5

33.7

36.9

-31

.732

.936

.1-

31.0

32.1

35.2

-29

.430

.533

.4-

27.3

28.3

31.0

-S

/T0.

730.

610.

42-

0.75

0.63

0.43

-0.

770.

640.

45-

0.80

0.66

0.46

-0.

830.

690.

48-

0.83

0.70

0.48

-70

1275

DT

1715

11-

1815

12-

1815

12-

1815

12-

1815

12-

1614

11-

KW

2.51

2.56

2.63

-2.

692.

742.

83-

2.85

2.91

3.00

-2.

993.

053.

15-

3.11

3.18

3.28

-3.

213.

283.

39-

AM

PS6.

66.

87.

0-

7.1

7.3

7.5

-7.

77.

88.

1-

8.1

8.3

8.6

-8.

68.

89.

1-

9.1

9.3

9.6

-H

I PR

236

254

268

-26

528

530

1-

301

324

342

-34

336

939

0-

386

416

439

-42

745

948

5-

LO P

R10

611

312

3-

112

119

130

-11

612

413

5-

122

130

142

-12

813

614

9-

133

141

154

-M

Bh

31.6

32.8

35.9

-30

.932

.035

.1-

30.2

31.3

34.3

-29

.430

.533

.4-

28.0

29.0

31.7

-25

.926

.829

.4-

S/T

0.69

0.58

0.40

-0.

720.

600.

42-

0.74

0.62

0.43

-0.

760.

640.

44-

0.79

0.66

0.46

-0.

800.

670.

46-

1125

DT

1816

12-

1816

12-

1816

12-

1816

12-

1816

12-

1715

11-

KW

2.47

2.52

2.59

-2.

652.

702.

78-

2.81

2.86

2.95

-2.

943.

013.

10-

3.06

3.13

3.22

-3.

163.

233.

33-

AM

PS6.

56.

66.

8-

7.0

7.1

7.3

-7.

57.

77.

9-

8.0

8.2

8.4

-8.

58.

78.

9-

9.0

9.2

9.4

-H

I PR

231

249

263

-26

027

929

5-

295

318

336

-33

636

238

2-

378

407

430

-41

845

047

5-

LO P

R10

411

112

1-

110

117

128

-11

412

113

3-

120

128

139

-12

613

414

6-

130

138

151

-

MB

h34

.37

35.3

938

.30

41.1

133

.57

34.5

637

.41

40.1

532

.77

33.7

436

.52

39.2

031

.97

32.9

235

.63

38.2

430

.37

31.2

733

.85

36.3

328

.14

28.9

731

.36

33.6

5S

/T0.

860.

770.

580.

370.

890.

800.

600.

390.

910.

820.

620.

400.

940.

840.

640.

410.

980.

880.

660.

430.

990.

880.

670.

4314

25D

T19

1814

1019

1815

1019

1815

1019

1815

1019

1814

1018

1714

9.3

KW

2.54

2.59

2.67

2.7

2.72

2.78

2.87

3.0

2.89

2.95

3.04

3.1

3.03

3.10

3.19

3.3

3.15

3.22

3.32

3.4

3.26

3.33

3.43

3.5

AM

PS6.

76.

97.

17.

37.

27.

47.

67.

87.

87.

98.

28.

58.

38.

58.

79.

08.

89.

09.

29.

69.

29.

59.

810

.1H

I PR

240

259

273

284.

727

029

030

631

9.5

307

330

348

363.

434

937

639

741

3.8

393

423

446

465.

643

446

749

351

4.4

LO P

R10

811

512

513

3.5

114

121

132

141.

011

812

613

814

6.6

124

132

145

154.

013

013

915

116

1.3

135

144

157

166.

9M

Bh

33.9

34.9

37.7

40.5

33.1

34.1

36.9

39.6

32.3

33.2

36.0

38.6

31.5

32.4

35.1

37.7

29.9

30.8

33.3

35.8

27.7

28.5

30.9

33.2

S/T

0.82

0.74

0.56

0.4

0.85

0.76

0.58

0.4

0.88

0.78

0.59

0.4

0.90

0.81

0.61

0.4

0.94

0.84

0.64

0.4

0.95

0.85

0.64

0.4

7512

75D

T20

1915

1020

1915

1120

1915

1121

1915

1120

1915

1119

1714

9.9

KW

2.53

2.58

2.65

2.7

2.71

2.77

2.85

2.9

2.87

2.93

3.02

3.1

3.01

3.08

3.17

3.3

3.14

3.20

3.30

3.4

3.24

3.31

3.42

3.5

AM

PS6.

76.

87.

07.

37.

27.

37.

57.

87.

77.

98.

18.

48.

28.

48.

79.

08.

78.

99.

29.

59.

29.

49.

710

.1H

I PR

239

257

271

282.

726

828

830

431

7.3

304

328

346

360.

834

737

339

441

1.0

390

420

443

462.

343

146

449

051

0.8

LO P

R10

711

412

413

2.5

113

120

131

140.

011

812

513

714

5.5

124

131

144

152.

913

013

815

016

0.2

134

143

156

165.

7M

Bh

32.2

33.1

35.9

38.5

31.4

32.4

35.0

37.6

30.7

31.6

34.2

36.7

29.9

30.8

33.3

35.8

28.4

29.3

31.7

34.0

26.3

27.1

29.3

31.5

S/T

0.79

0.71

0.53

0.3

0.82

0.73

0.55

0.4

0.84

0.75

0.57

0.4

0.87

0.77

0.59

0.4

0.90

0.80

0.61

0.4

0.91

0.81

0.61

0.4

1125

DT

2119

1611

2119

1611

2119

1611

2120

1611

2119

1611

2018

1510

.2K

W2.

492.

542.

612.

72.

672.

722.

812.

92.

832.

892.

973.

12.

973.

033.

123.

23.

093.

153.

253.

43.

193.

263.

363.

5A

MPS

6.6

6.7

6.9

7.1

7.0

7.2

7.4

7.7

7.6

7.8

8.0

8.3

8.1

8.3

8.5

8.8

8.6

8.8

9.0

9.3

9.0

9.2

9.5

9.9

HI P

R23

425

226

627

7.1

262

282

298

310.

929

832

133

935

3.6

340

366

386

402.

738

241

143

445

3.1

422

455

480

500.

6LO

PR

105

112

122

130

111

118

129

137

115

123

134

143

121

129

141

150

127

135

147

157

131

140

152

162

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

=out

door

uni

t am

ps (

com

p.+f

an)

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 23: Goodman Technical Manual Gszvsz_13_seer

23

COOLING PERFORMANCE DATA GZ130363A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3036

3A*

/ AR

*F36

4216

**C

OO

LIN

G O

PER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h34

.98

35.7

538

.19

40.8

234

.17

34.9

137

.30

39.8

833

.35

34.0

836

.41

38.9

332

.54

33.2

535

.53

37.9

830

.91

31.5

933

.75

36.0

828

.64

29.2

631

.26

33.4

2S

/T0.

940.

890.

720.

540.

980.

920.

750.

561.

000.

940.

770.

571.

000.

970.

790.

591.

001.

000.

820.

611.

001.

000.

830.

6214

25D

T21

2018

1422

2118

1422

2118

1421

2118

1420

2018

1418

1917

13.3

KW

2.56

2.61

2.69

2.8

2.75

2.80

2.89

3.0

2.91

2.97

3.06

3.2

3.06

3.12

3.22

3.3

3.18

3.25

3.35

3.5

3.29

3.36

3.46

3.6

AM

PS6.

86.

97.

17.

47.

37.

47.

67.

97.

88.

08.

38.

68.

38.

58.

89.

18.

89.

09.

39.

79.

39.

59.

810

.2H

I PR

243

261

276

287.

627

229

330

932

2.7

310

333

352

367.

035

338

040

141

8.0

397

427

451

470.

343

847

249

851

9.6

LO P

R10

911

612

713

4.8

115

123

134

142.

412

012

713

914

8.0

126

134

146

155.

513

214

015

316

3.0

136

145

158

168.

6M

Bh

34.5

35.2

37.6

40.2

33.7

34.4

36.8

39.3

32.9

33.6

35.9

38.4

32.1

32.8

35.0

37.4

30.5

31.1

33.3

35.5

28.2

28.8

30.8

32.9

S/T

0.90

0.85

0.69

0.5

0.94

0.88

0.72

0.5

0.96

0.90

0.73

0.5

0.99

0.93

0.76

0.6

1.00

0.97

0.79

0.6

1.00

0.97

0.79

0.6

8012

75D

T22

2219

1523

2219

1523

2219

1523

2219

1522

2219

1520

2018

14.1

KW

2.55

2.60

2.67

2.8

2.73

2.79

2.87

3.0

2.89

2.95

3.05

3.1

3.04

3.10

3.20

3.3

3.16

3.23

3.33

3.4

3.27

3.34

3.44

3.6

AM

PS6.

76.

97.

17.

37.

27.

47.

67.

97.

88.

08.

28.

58.

38.

58.

79.

08.

89.

09.

39.

69.

39.

59.

810

.1H

I PR

241

259

274

285.

627

029

130

732

0.5

308

331

349

364.

535

037

739

841

5.1

394

424

448

467.

043

546

849

551

6.0

LO P

R10

811

512

613

3.9

114

122

133

141.

511

912

613

814

7.0

125

133

145

154.

413

113

915

216

1.8

135

144

157

167.

4M

Bh

32.7

33.5

35.7

38.2

32.0

32.7

34.9

37.3

31.2

31.9

34.1

36.4

30.5

31.1

33.3

35.5

28.9

29.6

31.6

33.8

26.8

27.4

29.3

31.3

S/T

0.87

0.81

0.66

0.5

0.90

0.84

0.69

0.5

0.92

0.86

0.70

0.5

0.95

0.89

0.73

0.5

0.99

0.92

0.75

0.6

0.99

0.93

0.76

0.6

1125

DT

2322

1915

2322

2016

2323

2016

2423

2016

2322

1916

2221

1814

.5K

W2.

512.

562.

632.

72.

692.

742.

832.

92.

852.

913.

003.

12.

993.

053.

153.

23.

113.

183.

283.

43.

213.

283.

393.

5A

MPS

6.6

6.8

7.0

7.2

7.1

7.3

7.5

7.7

7.7

7.8

8.1

8.4

8.1

8.3

8.6

8.9

8.6

8.8

9.1

9.4

9.1

9.3

9.6

10.0

HI P

R23

625

426

827

9.9

265

285

301

314.

130

132

434

235

7.2

343

369

390

406.

838

641

643

945

7.7

427

459

485

505.

7LO

PR

106

113

123

131

112

119

130

139

116

124

135

144

122

130

142

151

128

136

149

159

133

141

154

164

MB

h35

.59

36.2

838

.00

40.5

434

.76

35.4

437

.11

39.6

033

.94

34.5

936

.23

38.6

533

.11

33.7

535

.35

37.7

131

.45

32.0

633

.58

35.8

229

.14

29.7

031

.11

33.1

9S

/T0.

990.

960.

860.

701.

000.

990.

890.

721.

001.

000.

920.

741.

001.

000.

950.

771.

001.

000.

980.

801.

001.

000.

990.

8014

25D

T23

2221

1822

2321

1922

2221

1921

2222

1920

2121

1819

1920

17.2

KW

2.58

2.63

2.71

2.8

2.77

2.82

2.91

3.0

2.93

2.99

3.09

3.2

3.08

3.14

3.24

3.3

3.20

3.27

3.38

3.5

3.31

3.38

3.49

3.6

AM

PS6.

87.

07.

27.

47.

37.

57.

78.

07.

98.

18.

38.

68.

48.

68.

99.

28.

99.

19.

49.

79.

49.

69.

910

.3H

I PR

245

264

278

290.

527

529

631

332

5.9

313

337

355

370.

735

638

340

542

2.2

401

431

455

475.

044

347

650

352

4.8

LO P

R11

011

712

813

6.2

116

124

135

143.

912

112

914

014

9.5

127

135

147

157.

113

314

215

516

4.6

138

146

160

170.

3M

Bh

35.1

35.7

37.4

39.9

34.3

34.9

36.6

39.0

33.4

34.1

35.7

38.1

32.6

33.3

34.8

37.2

31.0

31.6

33.1

35.3

28.7

29.3

30.6

32.7

S/T

0.95

0.91

0.83

0.7

0.98

0.95

0.86

0.7

1.00

0.97

0.88

0.7

1.00

1.00

0.91

0.7

1.00

1.00

0.94

0.8

1.00

1.00

0.95

0.8

8512

75D

T24

2422

1924

2423

2024

2423

2024

2423

2022

2322

1921

2121

18.1

KW

2.57

2.62

2.70

2.8

2.75

2.81

2.89

3.0

2.92

2.98

3.07

3.2

3.06

3.13

3.23

3.3

3.19

3.25

3.36

3.5

3.29

3.36

3.47

3.6

AM

PS6.

86.

97.

17.

47.

37.

47.

77.

97.

98.

08.

38.

68.

48.

58.

89.

18.

99.

19.

39.

79.

49.

69.

910

.2H

I PR

243

262

277

288.

527

329

431

032

3.7

311

334

353

368.

135

438

140

241

9.3

398

428

452

471.

744

047

350

052

1.1

LO P

R10

911

612

713

5.2

116

123

134

142.

912

012

813

914

8.5

126

134

146

156.

013

214

115

316

3.5

137

145

159

169.

1M

Bh

33.3

34.0

35.6

37.9

32.5

33.2

34.7

37.1

31.8

32.4

33.9

36.2

31.0

31.6

33.1

35.3

29.4

30.0

31.4

33.5

27.3

27.8

29.1

31.1

S/T

0.91

0.88

0.79

0.6

0.94

0.91

0.82

0.7

0.96

0.93

0.84

0.7

1.00

0.96

0.87

0.7

1.00

1.00

0.90

0.7

1.00

1.00

0.91

0.7

1125

DT

2524

2320

2525

2320

2525

2320

2525

2320

2424

2320

2223

2218

.7K

W2.

532.

582.

652.

72.

712.

772.

852.

92.

872.

933.

023.

13.

013.

083.

173.

33.

143.

203.

303.

43.

243.

313.

413.

5A

MPS

6.7

6.8

7.0

7.3

7.2

7.3

7.5

7.8

7.7

7.9

8.1

8.4

8.2

8.4

8.7

9.0

8.7

8.9

9.2

9.5

9.2

9.4

9.7

10.0

HI P

R23

925

727

128

2.7

268

288

304

317.

230

432

834

636

0.8

347

373

394

410.

939

042

044

346

2.2

431

464

490

510.

7LO

PR

107

114

124

133

113

120

131

140

118

125

137

146

124

131

144

153

130

138

150

160

134

143

156

166

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

)H

igh

and

low

pre

ssur

es a

re m

easu

red

at th

e liq

uid

and

suct

ion

serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 24: Goodman Technical Manual Gszvsz_13_seer

24

COOLING PERFORMANCE DATA G/VSZ130421A* M

OD

EL:

G/V

SZ1

3042

1A*

/ AR

*F36

421*

*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MBh

39.7

41.1

45.1

-38

.840

.244

.0-

37.8

39.2

43.0

-36

.938

.341

.9-

35.1

36.4

39.8

-32

.533

.736

.9-

S/T

0.74

0.62

0.43

-0.

770.

640.

45-

0.79

0.66

0.46

-0.

820.

680.

47-

0.85

0.71

0.49

-0.

850.

710.

49-

DT

1815

12-

1816

12-

1816

12-

1816

12-

1816

12-

1715

11-

1519

KW

2.89

2.95

3.04

-3.

103.

173.

27-

3.29

3.36

3.47

-3.

463.

543.

65-

3.60

3.68

3.80

-3.

733.

813.

93-

AM

PS10

.310

.510

.9-

11.1

11.4

11.8

-12

.112

.412

.8-

13.0

13.3

13.8

-13

.814

.214

.7-

14.7

15.1

15.6

-HI

PR

218

234

247

-24

426

327

7-

278

299

315

-31

634

035

9-

356

383

404

-39

342

344

7-

LO P

R10

711

412

4-

113

120

131

-11

812

513

7-

124

131

144

-13

013

815

0-

134

143

156

-M

Bh38

.539

.943

.8-

37.6

39.0

42.7

-36

.738

.141

.7-

35.8

37.1

40.7

-34

.135

.338

.7-

31.5

32.7

35.8

-S/

T0.

710.

590.

41-

0.73

0.61

0.43

-0.

750.

630.

44-

0.78

0.65

0.45

-0.

810.

670.

47-

0.81

0.68

0.47

-D

T19

1612

-19

1612

-19

1612

-19

1612

-19

1612

-17

1511

-70

1350

KW

2.87

2.93

3.02

-3.

083.

143.

24-

3.27

3.34

3.44

-3.

433.

513.

62-

3.57

3.65

3.77

-3.

703.

783.

90-

AM

PS10

.210

.410

.8-

11.0

11.3

11.7

-12

.012

.312

.7-

12.9

13.2

13.6

-13

.714

.114

.5-

14.6

14.9

15.4

-HI

PR

215

232

245

-24

226

027

5-

275

296

312

-31

333

735

6-

352

379

400

-38

941

944

2-

LO P

R10

611

312

3-

112

119

130

-11

612

413

5-

122

130

142

-12

813

614

9-

133

141

154

-M

Bh35

.636

.940

.4-

34.7

36.0

39.4

-33

.935

.138

.5-

33.1

34.3

37.6

-31

.432

.635

.7-

29.1

30.2

33.1

-S/

T0.

680.

570.

40-

0.71

0.59

0.41

-0.

730.

610.

42-

0.75

0.63

0.43

-0.

780.

650.

45-

0.78

0.66

0.45

-D

T19

1612

-19

1713

-19

1713

-19

1713

-19

1613

-18

1512

-11

81K

W2.

802.

862.

94-

3.01

3.07

3.17

-3.

193.

263.

36-

3.35

3.42

3.53

-3.

493.

563.

68-

3.61

3.68

3.80

-A

MPS

9.9

10.1

10.5

-10

.711

.011

.3-

11.7

12.0

12.4

-12

.512

.813

.2-

13.3

13.7

14.1

-14

.114

.515

.0-

HI P

R20

922

523

7-

234

252

266

-26

728

730

3-

304

327

345

-34

236

838

8-

377

406

429

-LO

PR

103

109

120

-10

911

612

6-

113

120

131

-11

912

613

8-

124

132

144

-12

913

714

9-

MBh

40.4

41.6

45.0

48.3

39.4

40.6

43.9

47.2

38.5

39.6

42.9

46.0

37.5

38.7

41.8

44.9

35.7

36.7

39.7

42.7

33.0

34.0

36.8

39.5

S/T

0.84

0.76

0.57

0.37

0.88

0.78

0.59

0.38

0.90

0.80

0.61

0.39

0.93

0.83

0.63

0.40

0.96

0.86

0.65

0.42

0.97

0.87

0.66

0.42

DT

2119

1611

2119

1611

2119

1611

2119

1611

2119

1611

1918

1510

1519

KW

2.91

2.97

3.06

3.16

3.13

3.19

3.29

3.40

3.32

3.39

3.50

3.61

3.49

3.57

3.68

3.80

3.63

3.71

3.83

3.96

3.76

3.84

3.97

4.10

AM

PS10

.410

.611

.011

.411

.211

.511

.912

.412

.212

.513

.013

.513

.113

.413

.914

.414

.014

.314

.815

.414

.815

.215

.716

.4HI

PR

220

236

250

260

247

265

280

292

280

302

319

332

319

344

363

379

359

387

408

426

397

427

451

471

LO P

R10

811

512

613

411

412

213

314

111

912

613

814

712

513

314

515

413

113

915

216

213

514

415

716

7M

Bh39

.240

.343

.746

.938

.339

.442

.745

.837

.438

.541

.644

.736

.537

.540

.643

.634

.635

.738

.641

.432

.133

.035

.738

.4S/

T0.

810.

720.

550.

350.

840.

750.

570.

360.

860.

770.

580.

370.

880.

790.

600.

380.

920.

820.

620.

400.

930.

830.

630.

40D

T22

2016

1122

2016

1122

2016

1122

2017

1122

2016

1120

1915

1175

1350

KW

2.89

2.95

3.04

3.13

3.10

3.17

3.27

3.37

3.29

3.36

3.47

3.58

3.46

3.54

3.65

3.77

3.60

3.68

3.80

3.93

3.73

3.81

3.93

4.06

AM

PS10

.310

.510

.911

.311

.111

.411

.812

.212

.112

.412

.813

.313

.013

.313

.814

.313

.814

.214

.715

.314

.715

.115

.616

.2HI

PR

218

234

247

258

244

263

277

289

278

299

316

329

316

340

359

375

356

383

404

422

393

423

447

466

LO P

R10

711

412

413

311

312

013

114

011

812

513

714

612

413

114

415

313

013

815

016

013

414

315

616

6M

Bh36

.237

.240

.343

.335

.336

.439

.442

.334

.535

.538

.441

.233

.634

.637

.540

.232

.032

.935

.638

.229

.630

.533

.035

.4S/

T0.

780.

690.

530.

340.

810.

720.

550.

350.

830.

740.

560.

360.

850.

760.

580.

370.

880.

790.

600.

390.

890.

800.

600.

39D

T22

2016

1122

2017

1222

2017

1222

2117

1222

2017

1121

1916

1111

81K

W2.

822.

882.

973.

063.

033.

093.

193.

293.

223.

283.

393.

503.

383.

453.

563.

683.

523.

593.

713.

833.

643.

713.

843.

96A

MPS

10.0

10.2

10.6

11.0

10.8

11.1

11.5

11.9

11.8

12.1

12.5

13.0

12.6

12.9

13.4

13.9

13.4

13.8

14.3

14.8

14.3

14.6

15.1

15.7

HI P

R21

122

724

025

023

725

526

928

126

929

030

631

930

733

034

936

434

537

139

240

938

141

043

345

2LO

PR

104

111

121

129

110

117

128

136

114

121

133

141

120

128

139

148

126

134

146

155

130

138

151

161

Shad

ed a

rea

is A

CCA

(TV

A) c

ondi

tions

IDB:

Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reKW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(com

p.+f

an)

High

and

low

pre

ssur

es a

re m

easu

red

at th

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and

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ion

serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 25: Goodman Technical Manual Gszvsz_13_seer

25

COOLING PERFORMANCE DATA G/VSZ130421A* M

OD

EL:

G/V

SZ1

3042

1A*

/ AR

*F36

421*

*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB*

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MBh

41.1

42.0

44.8

47.9

40.1

41.0

43.8

46.8

39.2

40.0

42.8

45.7

38.2

39.0

41.7

44.6

36.3

37.1

39.6

42.4

33.6

34.4

36.7

39.2

S/T

0.93

0.87

0.71

0.53

0.96

0.90

0.73

0.55

1.00

0.92

0.75

0.56

1.00

0.95

0.78

0.58

1.00

1.00

0.81

0.60

1.00

1.00

0.81

0.61

DT

2322

1915

2322

1916

2422

1916

2323

2016

2222

1915

2021

1814

1519

KW2.

933.

003.

093.

183.

153.

223.

323.

433.

353.

423.

533.

643.

523.

593.

713.

833.

663.

743.

873.

993.

793.

874.

004.

13A

MPS

10.4

10.7

11.1

11.5

11.3

11.6

12.0

12.5

12.3

12.7

13.1

13.6

13.2

13.6

14.0

14.6

14.1

14.5

15.0

15.6

15.0

15.4

15.9

16.5

HI P

R22

223

925

226

324

926

828

329

528

330

532

233

632

334

736

738

236

339

141

243

040

143

245

647

5LO

PR

109

116

127

135

116

123

134

143

120

128

139

148

126

134

146

156

132

141

153

163

137

145

159

169

MBh

39.9

40.8

43.5

46.5

39.0

39.8

42.5

45.5

38.0

38.9

41.5

44.4

37.1

37.9

40.5

43.3

35.2

36.0

38.5

41.1

32.6

33.4

35.6

38.1

S/T

0.88

0.83

0.67

0.50

0.92

0.86

0.70

0.52

0.94

0.88

0.72

0.54

0.97

0.91

0.74

0.55

1.00

0.94

0.77

0.57

1.00

0.95

0.77

0.58

DT

2423

2016

2423

2016

2423

2016

2423

2016

2423

2016

2222

1915

8013

50KW

2.91

2.97

3.06

3.16

3.13

3.19

3.29

3.40

3.32

3.39

3.50

3.61

3.49

3.57

3.68

3.80

3.63

3.71

3.83

3.96

3.76

3.84

3.97

4.10

AM

PS10

.410

.611

.011

.411

.211

.511

.912

.412

.212

.513

.013

.513

.113

.413

.914

.414

.014

.314

.815

.414

.815

.215

.716

.4H

I PR

220

237

250

260

247

265

280

292

280

302

319

332

319

344

363

379

359

387

408

426

397

427

451

471

LO P

R10

811

512

613

411

412

213

314

111

912

613

814

712

513

314

515

413

113

915

216

213

514

415

716

7M

Bh36

.837

.640

.243

.036

.036

.739

.342

.035

.135

.938

.341

.034

.235

.037

.440

.032

.533

.235

.538

.030

.130

.832

.935

.2S/

T0.

850.

800.

650.

490.

880.

830.

670.

500.

910.

850.

690.

520.

930.

880.

710.

530.

970.

910.

740.

550.

980.

920.

750.

56D

T24

2320

1625

2421

1625

2421

1625

2421

1725

2420

1623

2219

1511

81KW

2.84

2.90

2.99

3.08

3.06

3.12

3.22

3.32

3.24

3.31

3.41

3.52

3.41

3.48

3.59

3.71

3.55

3.62

3.74

3.86

3.67

3.75

3.87

3.99

AM

PS10

.110

.310

.711

.110

.911

.211

.612

.011

.912

.212

.613

.112

.713

.113

.514

.013

.613

.914

.415

.014

.414

.815

.315

.9H

I PR

213

229

242

253

239

257

272

284

272

293

309

322

310

333

352

367

349

375

396

413

385

414

438

456

LO P

R10

511

212

213

011

111

812

913

711

512

313

414

312

112

914

115

012

713

514

715

713

114

015

216

2

MBh

41.8

42.6

44.6

47.6

40.8

41.6

43.6

46.5

39.9

40.6

42.5

45.4

38.9

39.6

41.5

44.3

36.9

37.6

39.4

42.1

34.2

34.9

36.5

39.0

S/T

0.97

0.94

0.85

0.69

1.00

0.97

0.88

0.71

1.00

1.00

0.90

0.73

1.00

1.00

0.93

0.75

1.00

1.00

0.96

0.78

1.00

1.00

0.97

0.79

DT

2524

2320

2524

2320

2424

2320

2424

2320

2223

2320

2121

2119

1519

KW2.

963.

023.

113.

213.

183.

253.

353.

453.

373.

453.

563.

673.

553.

623.

743.

863.

693.

773.

904.

033.

823.

904.

034.

17A

MPS

10.5

10.8

11.2

11.6

11.4

11.7

12.1

12.6

12.5

12.8

13.2

13.7

13.4

13.7

14.2

14.7

14.2

14.6

15.1

15.7

15.1

15.5

16.0

16.7

HI P

R22

424

125

526

625

227

128

629

828

630

832

533

932

635

137

038

636

739

541

743

440

543

646

048

0LO

PR

110

117

128

137

117

124

135

144

121

129

141

150

127

135

148

158

133

142

155

165

138

147

160

171

MBh

40.6

41.4

43.3

46.2

39.6

40.4

42.3

45.1

38.7

39.4

41.3

44.1

37.7

38.5

40.3

43.0

35.9

36.6

38.3

40.8

33.2

33.9

35.5

37.8

S/T

0.93

0.89

0.81

0.65

0.96

0.93

0.84

0.68

0.98

0.95

0.86

0.70

1.00

0.98

0.89

0.72

1.00

1.00

0.92

0.75

1.00

1.00

0.93

0.75

DT

2625

2421

2625

2421

2626

2421

2626

2421

2425

2421

2323

2219

8513

50KW

2.93

3.00

3.09

3.18

3.15

3.22

3.32

3.43

3.35

3.42

3.53

3.64

3.52

3.59

3.71

3.83

3.66

3.74

3.87

3.99

3.79

3.87

4.00

4.13

AM

PS10

.410

.711

.111

.511

.311

.612

.012

.512

.312

.713

.113

.613

.213

.614

.014

.614

.114

.515

.015

.615

.015

.415

.916

.5H

I PR

222

239

252

263

249

268

283

295

283

305

322

336

323

347

367

382

363

391

412

430

401

432

456

475

LO P

R10

911

612

713

511

612

313

414

312

012

813

914

812

613

414

615

613

214

115

316

313

714

515

916

9M

Bh37

.538

.240

.042

.736

.637

.339

.141

.735

.736

.438

.140

.734

.835

.537

.239

.733

.133

.735

.337

.730

.731

.332

.734

.9S/

T0.

890.

860.

780.

630.

930.

890.

810.

650.

950.

920.

830.

670.

980.

950.

850.

691.

000.

980.

890.

721.

000.

990.

890.

72D

T26

2624

2126

2625

2126

2625

2127

2625

2126

2624

2124

2423

2011

81KW

2.87

2.93

3.01

3.11

3.08

3.14

3.24

3.34

3.27

3.34

3.44

3.55

3.43

3.51

3.62

3.74

3.57

3.65

3.77

3.89

3.70

3.78

3.90

4.03

AM

PS10

.210

.410

.811

.211

.011

.311

.712

.112

.012

.312

.713

.212

.913

.213

.614

.213

.714

.114

.515

.114

.514

.915

.416

.0H

I PR

215

232

245

255

242

260

275

286

275

296

312

326

313

337

356

371

352

379

400

417

389

419

442

461

LO P

R10

611

312

313

111

211

913

013

911

612

413

514

412

213

014

215

112

813

614

915

913

314

115

416

4

Shad

ed a

rea

is A

HRI

Rat

ing

Cond

itions

IDB:

Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reKW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

)Hi

gh a

nd lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 26: Goodman Technical Manual Gszvsz_13_seer

26

COOLING PERFORMANCE DATA G/VSZ130481A* M

OD

EL:

G/V

SZ1

3048

1A*

/AR

*F48

601*

* E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Ou

tdo

or

Am

bie

nt

Te

mp

era

ture

6575

8595

105

115

Ente

rin

g In

do

or

We

t B

ulb

Te

mp

era

ture

IDB

*A

irfl

ow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h45

.146

.751

.2-

44.0

45.6

50.0

-43

.044

.548

.8-

41.9

43.5

47.6

-39

.841

.345

.2-

36.9

38.2

41.9

-S

/T0.

760.

630.

44-

0.79

0.66

0.46

-0.

810.

670.

47-

0.83

0.70

0.48

-0.

860.

720.

50-

0.87

0.73

0.50

-D

T17

1511

-18

1512

-18

1512

-18

1512

-18

1512

-16

1411

-18

00K

W3.

333.

393.

48-

3.55

3.62

3.72

-3.

753.

823.

93-

3.92

4.00

4.12

-4.

074.

154.

28-

4.20

4.28

4.41

-A

MPS

11.8

12.1

12.5

-12

.713

.013

.5-

13.8

14.2

14.6

-14

.815

.215

.7-

15.7

16.1

16.7

-16

.717

.117

.7-

HI P

R23

425

226

6-

262

282

298

-29

832

133

9-

340

366

386

-38

241

143

4-

422

454

480

-LO

PR

111

118

129

-11

712

513

6-

122

129

141

-12

813

614

8-

134

143

156

-13

914

716

1-

MB

h43

.845

.449

.7-

42.7

44.3

48.5

-41

.743

.247

.4-

40.7

42.2

46.2

-38

.740

.143

.9-

35.8

37.1

40.7

-S

/T0.

720.

600.

42-

0.75

0.63

0.43

-0.

770.

640.

45-

0.79

0.66

0.46

-0.

820.

690.

48-

0.83

0.69

0.48

-D

T18

1612

-18

1612

-18

1612

-19

1612

-18

1612

-17

1511

-70

1600

KW

3.31

3.37

3.46

-3.

533.

593.

70-

3.72

3.79

3.90

-3.

893.

974.

09-

4.04

4.12

4.24

-4.

174.

254.

38-

AM

PS11

.712

.012

.3-

12.6

12.9

13.4

-13

.714

.014

.5-

14.7

15.0

15.5

-15

.616

.016

.5-

16.5

16.9

17.5

-H

I PR

231

249

263

-26

027

929

5-

295

318

336

-33

636

238

2-

378

407

430

-41

845

047

5-

LO P

R11

011

712

7-

116

123

135

-12

012

814

0-

127

135

147

-13

314

115

4-

137

146

159

-M

Bh

40.4

41.9

45.9

-39

.540

.944

.8-

38.5

39.9

43.7

-37

.638

.942

.7-

35.7

37.0

40.5

-33

.134

.337

.5-

S/T

0.70

0.58

0.40

-0.

720.

600.

42-

0.74

0.62

0.43

-0.

770.

640.

44-

0.79

0.66

0.46

-0.

800.

670.

46-

DT

1916

12-

1916

12-

1916

12-

1916

12-

1916

12-

1715

11-

1400

KW

3.24

3.30

3.39

-3.

453.

523.

62-

3.64

3.71

3.82

-3.

813.

884.

00-

3.95

4.03

4.15

-4.

074.

154.

28-

AM

PS11

.411

.612

.0-

12.3

12.6

13.0

-13

.313

.714

.1-

14.3

14.6

15.1

-15

.215

.516

.1-

16.1

16.5

17.0

-H

I PR

224

242

255

-25

227

128

6-

286

308

326

-32

635

137

1-

367

395

417

-40

643

646

1-

LO P

R10

611

312

4-

112

120

131

-11

712

413

6-

123

131

143

-12

913

714

9-

133

142

155

-

MB

h45

.847

.251

.154

.844

.846

.149

.953

.643

.745

.048

.752

.342

.643

.947

.551

.040

.541

.745

.148

.537

.538

.641

.844

.9S

/T0.

860.

770.

580.

380.

890.

800.

610.

390.

920.

820.

620.

400.

950.

850.

640.

410.

980.

880.

660.

430.

990.

890.

670.

43D

T20

1915

1120

1915

1120

1915

1121

1916

1120

1915

1119

1714

1018

00K

W3.

353.

413.

513.

613.

583.

653.

753.

863.

783.

853.

964.

083.

954.

034.

154.

274.

104.

184.

314.

444.

234.

324.

454.

58A

MPS

11.9

12.2

12.6

13.0

12.9

13.2

13.6

14.1

14.0

14.3

14.8

15.3

14.9

15.3

15.8

16.4

15.9

16.3

16.8

17.5

16.8

17.3

17.8

18.5

HI P

R23

625

426

828

026

528

530

131

430

132

434

235

734

336

939

040

738

641

543

945

842

745

948

550

6LO

PR

112

119

130

138

118

126

137

146

123

131

143

152

129

137

150

160

135

144

157

167

140

149

163

173

MB

h44

.545

.849

.653

.243

.544

.848

.452

.042

.443

.747

.350

.841

.442

.646

.149

.539

.340

.543

.847

.036

.437

.540

.643

.6S

/T0.

820.

740.

560.

360.

850.

760.

580.

370.

870.

780.

590.

380.

900.

810.

610.

390.

940.

840.

630.

410.

940.

840.

640.

41D

T21

1916

1121

2016

1121

2016

1121

2016

1121

1916

1120

1815

1075

1600

KW

3.33

3.39

3.48

3.58

3.55

3.62

3.72

3.83

3.75

3.82

3.93

4.05

3.92

4.00

4.12

4.24

4.07

4.15

4.28

4.41

4.20

4.28

4.41

4.55

AM

PS11

.812

.112

.512

.912

.713

.013

.514

.013

.814

.214

.615

.214

.815

.215

.716

.315

.716

.116

.717

.316

.717

.117

.718

.4H

I PR

234

252

266

277

262

282

298

311

298

321

339

354

340

366

386

403

382

411

434

453

422

454

480

501

LO P

R11

111

812

913

711

712

513

614

512

212

914

115

112

813

614

915

813

414

315

616

613

914

716

117

1M

Bh

41.1

42.3

45.8

49.1

40.1

41.3

44.7

48.0

39.2

40.3

43.7

46.8

38.2

39.3

42.6

45.7

36.3

37.4

40.5

43.4

33.6

34.6

37.5

40.2

S/T

0.79

0.71

0.54

0.35

0.82

0.74

0.56

0.36

0.84

0.75

0.57

0.37

0.87

0.78

0.59

0.38

0.90

0.81

0.61

0.39

0.91

0.81

0.62

0.40

DT

2120

1611

2220

1611

2220

1611

2220

1611

2220

1611

2019

1510

1400

KW

3.26

3.32

3.41

3.51

3.48

3.54

3.64

3.75

3.67

3.74

3.85

3.96

3.84

3.91

4.03

4.15

3.98

4.06

4.18

4.31

4.10

4.19

4.31

4.44

AM

PS11

.511

.712

.112

.612

.412

.713

.113

.613

.513

.814

.214

.814

.414

.715

.215

.815

.315

.716

.216

.816

.216

.617

.217

.8H

I PR

227

244

258

269

254

274

289

302

289

311

329

343

330

355

375

391

371

399

421

439

410

441

466

486

LO P

R10

811

412

513

311

412

113

214

111

812

613

714

612

413

214

415

313

013

815

116

113

414

315

616

6

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

=out

door

uni

t am

ps (

com

p.+f

an

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 27: Goodman Technical Manual Gszvsz_13_seer

27

COOLING PERFORMANCE DATA G/VSZ130481A* M

OD

EL:

G/V

SZ1

3048

1A*

/AR

*F48

601*

* E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OLI

NG

OP

ER

ATIO

N

Ou

tdo

or

Am

bie

nt

Te

mp

era

ture

6575

8595

105

115

Ente

rin

g In

do

or

We

t B

ulb

Te

mp

era

ture

IDB

*A

irfl

ow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h46

.747

.750

.954

.445

.646

.649

.753

.244

.545

.548

.651

.943

.444

.347

.450

.641

.242

.145

.048

.138

.239

.041

.744

.6S

/T0.

950.

890.

720.

541.

000.

920.

750.

561.

000.

940.

770.

571.

001.

000.

790.

591.

001.

000.

820.

611.

001.

000.

830.

62D

T23

2219

1523

2219

1523

2219

1522

2319

1521

2219

1520

2018

1418

00K

W3.

383.

443.

533.

633.

603.

673.

783.

893.

803.

883.

994.

113.

984.

064.

184.

314.

134.

224.

344.

484.

264.

354.

484.

62A

MPS

12.0

12.3

12.7

13.2

13.0

13.3

13.7

14.2

14.1

14.4

14.9

15.5

15.1

15.4

16.0

16.6

16.0

16.4

17.0

17.6

17.0

17.4

18.0

18.7

HI P

R23

825

727

128

326

828

830

431

730

432

834

636

134

737

339

441

139

042

044

346

243

146

449

051

1LO

PR

113

120

131

140

119

127

139

148

124

132

144

154

130

139

152

161

137

145

159

169

141

150

164

175

MB

h45

.346

.349

.552

.944

.245

.248

.351

.643

.244

.147

.250

.442

.143

.146

.049

.240

.040

.943

.746

.737

.137

.940

.543

.3S

/T0.

900.

850.

690.

510.

940.

880.

710.

530.

960.

900.

730.

550.

990.

930.

760.

561.

000.

960.

780.

591.

000.

970.

790.

59D

T23

2320

1624

2320

1624

2320

1624

2320

1623

2320

1621

2118

1580

1600

KW

3.35

3.41

3.51

3.61

3.58

3.65

3.75

3.86

3.78

3.85

3.96

4.08

3.95

4.03

4.15

4.28

4.10

4.18

4.31

4.44

4.23

4.32

4.45

4.58

AM

PS11

.912

.212

.613

.012

.913

.213

.614

.114

.014

.314

.815

.314

.915

.315

.816

.415

.916

.316

.817

.516

.817

.317

.818

.5H

I PR

236

254

268

280

265

285

301

314

301

324

342

357

343

369

390

407

386

415

439

458

427

459

485

506

LO P

R11

211

913

013

911

812

613

714

612

313

114

315

212

913

715

016

013

514

415

716

714

014

916

317

3M

Bh

41.8

42.7

45.6

48.8

40.8

41.7

44.6

47.7

39.9

40.7

43.5

46.5

38.9

39.7

42.5

45.4

36.9

37.8

40.3

43.1

34.2

35.0

37.4

39.9

S/T

0.87

0.82

0.66

0.50

0.90

0.85

0.69

0.51

0.92

0.87

0.71

0.53

0.95

0.90

0.73

0.54

0.99

0.93

0.76

0.57

1.00

0.94

0.76

0.57

DT

2423

2016

2423

2016

2423

2016

2423

2016

2423

2016

2222

1915

1400

KW

3.28

3.34

3.43

3.53

3.50

3.57

3.67

3.77

3.69

3.77

3.87

3.99

3.87

3.94

4.06

4.18

4.01

4.09

4.21

4.34

4.14

4.22

4.34

4.48

AM

PS11

.611

.812

.212

.712

.512

.813

.213

.713

.613

.914

.414

.914

.514

.915

.416

.015

.515

.816

.417

.016

.416

.817

.318

.0H

I PR

229

246

260

271

257

277

292

305

292

315

332

346

333

358

378

395

375

403

426

444

414

445

470

490

LO P

R10

911

612

613

411

512

213

314

211

912

713

914

812

513

314

615

513

114

015

216

213

614

415

816

8

MB

h47

.548

.450

.754

.146

.447

.349

.552

.845

.346

.148

.351

.644

.245

.047

.150

.342

.042

.844

.847

.838

.939

.641

.544

.3S

/T0.

990.

960.

860.

701.

000.

990.

900.

731.

001.

000.

920.

741.

001.

000.

950.

771.

001.

000.

980.

801.

001.

000.

990.

80D

T24

2422

1924

2423

2023

2423

2023

2323

2021

2222

1920

2021

1818

00K

W3.

403.

463.

563.

663.

633.

703.

803.

923.

833.

914.

024.

144.

014.

094.

214.

344.

164.

254.

384.

514.

304.

384.

524.

66A

MPS

12.1

12.4

12.8

13.3

13.1

13.4

13.9

14.4

14.2

14.6

15.1

15.6

15.2

15.6

16.1

16.7

16.2

16.6

17.1

17.8

17.2

17.6

18.2

18.9

HI P

R24

125

927

428

527

029

130

732

030

733

134

936

435

037

739

841

539

442

444

846

743

546

849

551

6LO

PR

114

122

133

141

121

128

140

149

125

133

146

155

132

140

153

163

138

147

160

171

143

152

166

177

MB

h46

.147

.049

.252

.545

.045

.948

.151

.343

.944

.846

.950

.142

.943

.745

.848

.840

.741

.543

.546

.437

.738

.540

.343

.0S

/T0.

950.

910.

820.

670.

980.

950.

850.

691.

000.

970.

880.

711.

001.

000.

900.

731.

001.

000.

940.

761.

001.

000.

950.

77D

T25

2523

2025

2524

2025

2524

2025

2524

2123

2423

2022

2222

1985

1600

KW

3.38

3.44

3.53

3.63

3.60

3.67

3.78

3.89

3.80

3.88

3.99

4.11

3.98

4.06

4.18

4.31

4.13

4.22

4.34

4.48

4.26

4.35

4.48

4.62

AM

PS12

.012

.312

.713

.213

.013

.313

.714

.214

.114

.414

.915

.515

.115

.416

.016

.616

.016

.417

.017

.617

.017

.418

.018

.7H

I PR

238

257

271

283

268

288

304

317

304

328

346

361

347

373

394

411

390

420

443

462

431

464

490

511

LO P

R11

312

013

114

011

912

713

914

812

413

214

415

413

013

915

216

113

714

515

916

914

115

016

417

5M

Bh

42.5

43.4

45.4

48.5

41.5

42.4

44.4

47.3

40.6

41.3

43.3

46.2

39.6

40.3

42.2

45.1

37.6

38.3

40.1

42.8

34.8

35.5

37.2

39.7

S/T

0.91

0.88

0.79

0.64

0.95

0.91

0.82

0.67

0.97

0.94

0.84

0.68

1.00

0.97

0.87

0.71

1.00

1.00

0.90

0.73

1.00

1.00

0.91

0.74

DT

2525

2421

2625

2421

2625

2421

2626

2421

2525

2421

2323

2219

1400

KW

3.31

3.37

3.46

3.56

3.53

3.59

3.69

3.80

3.72

3.79

3.90

4.02

3.89

3.97

4.09

4.21

4.04

4.12

4.24

4.37

4.17

4.25

4.38

4.51

AM

PS11

.712

.012

.312

.812

.612

.913

.313

.813

.714

.014

.515

.114

.715

.015

.516

.115

.616

.016

.517

.116

.516

.917

.518

.2H

I PR

231

249

263

274

260

279

295

308

295

318

335

350

336

362

382

399

378

407

430

448

418

450

475

495

LO P

R11

011

712

713

611

612

313

514

312

012

814

014

912

713

514

715

713

314

115

416

413

714

615

917

0

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 28: Goodman Technical Manual Gszvsz_13_seer

28

COOLING PERFORMANCE DATA GSZ130483A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3048

3A*

/ AR

*F48

6016

**

CO

OLI

NG

OP

ERA

TIO

NO

utdo

or A

mbi

ent T

empe

ratu

re65

7585

9510

511

5En

teri

ng In

door

Wet

Bul

b Te

mpe

ratu

reID

BA

irflo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh

45.1

46.7

51.2

-44

.045

.650

.0-

43.0

44.5

48.8

-41

.943

.547

.6-

39.8

41.3

45.2

-36

.938

.241

.9-

S/T

0.76

0.63

0.44

-0.

790.

660.

46-

0.81

0.67

0.47

-0.

830.

700.

48-

0.86

0.72

0.50

-0.

870.

730.

50-

DT

1715

11-

1815

12-

1815

12-

1815

12-

1815

12-

1614

11-

1800

KW

3.26

3.32

3.42

-3.

493.

553.

66-

3.69

3.76

3.88

-3.

873.

954.

07-

4.02

4.10

4.23

-4.

154.

244.

37-

AM

PS7.

57.

77.

9-

8.1

8.3

8.5

-8.

78.

99.

2-

9.3

9.5

9.8

-9.

910

.110

.4-

10.4

10.7

11.0

-H

I PR

239

257

271

-26

828

830

4-

304

328

346

-34

737

339

4-

390

420

443

-43

146

449

0-

LO P

R10

711

412

4-

113

120

131

-11

812

513

7-

124

131

144

-13

013

815

0-

134

143

156

-

MB

h43

.845

.449

.7-

42.7

44.3

48.5

-41

.743

.247

.4-

40.7

42.2

46.2

-38

.740

.143

.9-

35.8

37.1

40.7

-S

/T0.

720.

600.

42-

0.75

0.63

0.43

-0.

770.

640.

45-

0.79

0.66

0.46

-0.

820.

690.

48-

0.83

0.69

0.48

-D

T18

1612

-18

1612

-18

1612

-19

1612

-18

1612

-17

1511

-70

1600

KW

3.23

3.29

3.39

-3.

463.

533.

63-

3.66

3.73

3.85

-3.

843.

924.

04-

3.99

4.07

4.20

-4.

124.

204.

33-

AM

PS7.

47.

67.

8-

8.0

8.2

8.4

-8.

78.

99.

1-

9.2

9.4

9.7

-9.

810

.010

.3-

10.3

10.6

10.9

-H

I PR

236

254

268

-26

528

530

1-

301

324

342

-34

336

939

0-

386

416

439

-42

745

948

5-

LO P

R10

611

312

3-

112

119

130

-11

612

413

5-

122

130

142

-12

813

614

9-

133

141

154

-M

Bh

40.4

41.9

45.9

-39

.540

.944

.8-

38.5

39.9

43.7

-37

.638

.942

.7-

35.7

37.0

40.5

-33

.134

.337

.5-

S/T

0.70

0.58

0.40

-0.

720.

600.

42-

0.74

0.62

0.43

-0.

770.

640.

44-

0.79

0.66

0.46

-0.

800.

670.

46-

DT

1916

12-

1916

12-

1916

12-

1916

12-

1916

12-

1715

11-

1400

KW

3.16

3.22

3.31

-3.

383.

453.

55-

3.58

3.65

3.76

-3.

753.

833.

94-

3.89

3.98

4.10

-4.

024.

104.

23-

AM

PS7.

37.

47.

6-

7.8

8.0

8.2

-8.

48.

68.

9-

9.0

9.2

9.5

-9.

59.

710

.0-

10.1

10.3

10.6

-H

I PR

229

247

260

-25

727

729

2-

292

315

332

-33

335

837

8-

375

403

426

-41

444

547

0-

LO P

R10

310

912

0-

109

116

126

-11

312

013

1-

119

126

138

-12

413

214

4-

129

137

149

-

MB

h45

.84

47.2

051

.09

54.8

344

.77

46.1

049

.90

53.5

543

.71

45.0

048

.71

52.2

842

.64

43.9

047

.52

51.0

040

.51

41.7

145

.15

48.4

537

.52

38.6

441

.82

44.8

8S

/T0.

860.

770.

580.

380.

890.

800.

610.

390.

920.

820.

620.

400.

950.

850.

640.

410.

980.

880.

660.

430.

990.

890.

670.

43D

T20

1915

1120

1915

1120

1915

1121

1916

1120

1915

1119

1714

1018

00K

W3.

283.

343.

443.

543.

513.

583.

693.

803.

723.

793.

914.

033.

903.

984.

104.

234.

054.

144.

264.

404.

184.

274.

404.

55A

MPS

7.6

7.7

8.0

8.3

8.1

8.3

8.6

8.9

8.8

9.0

9.3

9.6

9.4

9.6

9.9

10.3

9.9

10.2

10.5

10.9

10.5

10.8

11.1

11.5

HI P

R24

125

927

428

627

029

130

732

030

733

134

936

435

037

739

841

539

442

444

846

743

546

849

551

6LO

PR

108

115

126

134

114

122

133

141

119

126

138

147

125

133

145

154

131

139

152

162

135

144

157

167

MB

h44

.545

.849

.653

.243

.544

.848

.452

.042

.443

.747

.350

.841

.442

.646

.149

.539

.340

.543

.847

.036

.437

.540

.643

.6S

/T0.

820.

740.

560.

360.

850.

760.

580.

370.

870.

780.

590.

380.

900.

810.

610.

390.

940.

840.

630.

410.

940.

840.

640.

41D

T21

1916

1121

2016

1121

2016

1121

2016

1121

1916

1120

1815

1075

1600

KW

3.26

3.32

3.42

3.52

3.49

3.56

3.66

3.77

3.69

3.76

3.88

4.00

3.87

3.95

4.07

4.20

4.02

4.10

4.23

4.36

4.15

4.24

4.37

4.51

AM

PS7.

57.

77.

98.

28.

18.

38.

58.

88.

78.

99.

29.

59.

39.

59.

810

.29.

910

.110

.410

.810

.410

.711

.011

.4H

I PR

239

257

271

283

268

288

304

317

304

328

346

361

347

373

394

411

390

420

443

462

431

464

490

511

LO P

R10

711

412

413

311

312

013

114

011

812

513

714

612

413

114

415

313

013

815

016

013

414

315

616

6

MB

h41

.142

.345

.849

.140

.141

.344

.748

.039

.240

.343

.746

.838

.239

.34

42.6

45.7

36.3

37.4

40.5

43.4

33.6

34.6

37.5

40.2

S/T

0.79

0.71

0.54

0.35

0.82

0.74

0.56

0.36

0.84

0.75

0.57

0.37

0.87

0.78

0.59

0.38

0.90

0.81

0.61

0.39

0.91

0.81

0.62

0.40

DT

2120

1611

2220

1611

2220

1611

2220

1611

2220

1611

2019

1510

1400

KW

3.19

3.25

3.34

3.44

3.41

3.48

3.58

3.68

3.60

3.68

3.79

3.90

3.78

3.86

3.97

4.10

3.93

4.01

4.13

4.26

4.05

4.14

4.27

4.40

AM

PS7.

37.

57.

78.

07.

98.

08.

38.

68.

58.

79.

09.

39.

19.

39.

69.

99.

69.

810

.110

.510

.110

.410

.711

.1H

I PR

231

249

263

274

260

279

295

308

295

318

336

350

336

362

382

399

378

407

430

448

418

450

475

496

LO P

R10

411

112

112

911

011

712

813

611

412

113

314

112

012

813

914

812

613

414

615

513

013

815

116

1S

hade

d ar

ea is

AC

CA

(TV

A)

cond

ition

sID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

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igh

and

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re m

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red

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es.

Downloaded from www.Manualslib.com manuals search engine

Page 29: Goodman Technical Manual Gszvsz_13_seer

29

COOLING PERFORMANCE DATA GSZ130483A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3048

3A*

/ AR

*F48

6016

**

CO

OLI

NG

OP

ERA

TIO

NO

utdo

or A

mbi

ent T

empe

ratu

re65

7585

9510

511

5En

teri

ng In

door

Wet

Bul

b Te

mpe

ratu

reID

BA

irflo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh

46.6

647

.67

50.9

354

.45

45.5

746

.57

49.7

553

.18

44.4

945

.46

48.5

651

.92

43.4

044

.35

47.3

850

.65

41.2

342

.13

45.0

148

.12

38.1

939

.03

41.6

944

.57

S/T

0.95

0.89

0.72

0.54

1.00

0.92

0.75

0.56

1.00

0.94

0.77

0.57

1.00

1.00

0.79

0.59

1.00

1.00

0.82

0.61

1.00

1.00

0.83

0.62

DT

2322

1915

2322

1915

2322

1915

2223

1915

2122

1915

2020

1814

1800

KW

3.30

3.37

3.47

3.57

3.54

3.61

3.72

3.83

3.75

3.82

3.94

4.06

3.93

4.01

4.13

4.26

4.08

4.17

4.30

4.43

4.22

4.31

4.44

4.58

AM

PS7.

67.

88.

08.

38.

28.

48.

79.

08.

99.

19.

49.

79.

59.

710

.010

.310

.010

.310

.611

.010

.610

.911

.211

.6H

I PR

243

262

277

288

273

294

310

324

311

334

353

368

354

381

402

419

398

428

452

472

440

473

500

521

LO P

R10

911

612

713

511

612

313

414

312

012

813

914

812

613

414

615

613

214

115

316

313

714

515

916

9

MB

h45

.346

.349

.552

.944

.245

.248

.351

.643

.244

.147

.250

.442

.143

.146

.049

.240

.040

.943

.746

.737

.137

.940

.543

.3S

/T0.

900.

850.

690.

510.

940.

880.

710.

530.

960.

900.

730.

550.

990.

930.

760.

561.

000.

960.

780.

591.

000.

970.

790.

59D

T23

2320

1624

2320

1624

2320

1624

2320

1623

2320

1621

2118

1580

1600

KW

3.28

3.34

3.44

3.54

3.51

3.58

3.69

3.80

3.72

3.79

3.91

4.03

3.90

3.98

4.10

4.23

4.05

4.14

4.26

4.40

4.18

4.27

4.41

4.55

AM

PS7.

67.

78.

08.

38.

18.

38.

68.

98.

89.

09.

39.

69.

49.

69.

910

.310

.010

.210

.510

.910

.510

.811

.111

.5H

I PR

241

259

274

286

270

291

307

320

308

331

349

364

350

377

398

415

394

424

448

467

435

468

495

516

LO P

R10

811

512

613

411

412

213

314

111

912

613

814

712

513

314

515

413

113

915

216

213

514

415

716

7

MB

h41

.842

.745

.648

.840

.841

.744

.647

.739

.940

.743

.546

.538

.939

.742

.545

.436

.937

.840

.343

.134

.235

.037

.439

.9S

/T0.

870.

820.

660.

500.

900.

850.

690.

510.

920.

870.

710.

530.

950.

900.

730.

540.

990.

930.

760.

571.

000.

940.

760.

57D

T24

2320

1624

2320

1624

2320

1624

2320

1624

2320

1622

2219

1514

00K

W3.

213.

273.

363.

463.

433.

503.

603.

713.

633.

713.

823.

933.

813.

894.

004.

133.

964.

044.

164.

294.

084.

174.

304.

44A

MPS

7.4

7.5

7.8

8.0

7.9

8.1

8.4

8.7

8.6

8.8

9.0

9.4

9.1

9.3

9.6

10.0

9.7

9.9

10.2

10.6

10.2

10.5

10.8

11.2

HI P

R23

425

226

627

726

228

229

831

129

832

133

935

434

036

638

640

338

241

143

445

342

245

448

050

1LO

PR

105

112

122

130

111

118

129

137

115

123

134

143

121

129

141

150

127

135

147

157

131

140

152

162

MB

h47

.47

48.3

950

.68

54.0

746

.37

47.2

649

.50

52.8

145

.26

46.1

448

.32

51.5

544

.16

45.0

147

.14

50.2

941

.95

42.7

644

.79

47.7

838

.86

39.6

141

.49

44.2

6S

/T0.

990.

960.

860.

701.

000.

990.

900.

731.

001.

000.

920.

741.

001.

000.

950.

771.

001.

000.

980.

801.

001.

000.

990.

80D

T24

2422

1924

2423

2023

2423

2023

2323

2021

2222

1920

2021

1818

00K

W3.

333.

393.

493.

603.

563.

643.

743.

863.

773.

853.

974.

093.

964.

044.

164.

304.

114.

204.

334.

474.

254.

344.

484.

62A

MPS

7.7

7.9

8.1

8.4

8.3

8.5

8.7

9.0

9.0

9.2

9.5

9.8

9.5

9.8

10.1

10.4

10.1

10.4

10.7

11.1

10.7

11.0

11.3

11.7

HI P

R24

626

527

929

127

629

731

332

731

433

835

637

235

738

440

642

340

243

345

747

644

447

850

552

6LO

PR

110

117

128

137

117

124

135

144

121

129

141

150

127

135

148

158

133

142

155

165

138

147

160

171

MB

h46

.147

.049

.252

.545

.045

.948

.151

.343

.944

.846

.950

.142

.943

.745

.848

.840

.741

.543

.546

.437

.738

.540

.343

.0S

/T0.

950.

910.

820.

670.

980.

950.

850.

691.

000.

970.

880.

711.

001.

000.

900.

731.

001.

000.

940.

761.

001.

000.

950.

77D

T25

2523

2025

2524

2025

2524

2025

2524

2123

2423

2022

2222

1985

1600

KW

3.30

3.37

3.47

3.57

3.54

3.61

3.72

3.83

3.75

3.82

3.94

4.06

3.93

4.01

4.13

4.26

4.08

4.17

4.30

4.43

4.22

4.31

4.44

4.58

AM

PS7.

67.

88.

08.

38.

28.

48.

79.

08.

99.

19.

49.

79.

59.

710

.010

.310

.010

.310

.611

.010

.610

.911

.211

.6H

I PR

243

262

277

288

273

294

310

324

311

334

353

368

354

381

402

419

398

428

452

472

440

473

500

521

LO P

R10

911

612

713

511

612

313

414

312

012

813

914

812

613

414

615

613

214

115

316

313

714

515

916

9

MB

h42

.543

.445

.448

.541

.542

.444

.447

.340

.641

.343

.346

.239

.640

.342

.245

.137

.638

.340

.142

.834

.835

.537

.239

.7S

/T0.

910.

880.

790.

640.

950.

910.

820.

670.

970.

940.

840.

681.

000.

970.

870.

711.

001.

000.

900.

731.

001.

000.

910.

74D

T25

2524

2126

2524

2126

2524

2126

2624

2125

2524

2123

2322

1914

00K

W3.

233.

293.

393.

493.

463.

533.

633.

743.

663.

733.

853.

963.

843.

924.

034.

163.

994.

074.

204.

334.

124.

204.

334.

47A

MPS

7.4

7.6

7.8

8.1

8.0

8.2

8.4

8.7

8.7

8.8

9.1

9.5

9.2

9.4

9.7

10.1

9.8

10.0

10.3

10.7

10.3

10.6

10.9

11.3

HI P

R23

625

426

828

026

528

530

131

430

132

434

235

734

336

939

040

738

641

543

945

842

745

948

550

6LO

PR

106

113

123

131

112

119

130

139

116

124

135

144

122

130

142

151

128

136

149

159

133

141

154

164

Sha

ded

area

is A

HR

I Rat

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Con

ditio

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B: E

nter

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Indo

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ry B

ulb

Tem

pera

ture

KW

=Tot

al s

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m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

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igh

and

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pre

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re m

easu

red

at th

e liq

uid

and

suct

ion

serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 30: Goodman Technical Manual Gszvsz_13_seer

30

COOLING PERFORMANCE DATA GSZ130484A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3048

4A*

/ AR

*F48

6016

**

CO

OLI

NG

OP

ERA

TIO

NO

utdo

or A

mbi

ent T

empe

ratu

re65

7585

9510

511

5En

teri

ng In

door

Wet

Bul

b Te

mpe

ratu

reID

BA

irflo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh

45.1

46.7

51.2

-44

.045

.650

.0-

43.0

44.5

48.8

-41

.943

.547

.6-

39.8

41.3

45.2

-36

.938

.241

.9-

S/T

0.76

0.63

0.44

-0.

790.

660.

46-

0.81

0.67

0.47

-0.

830.

700.

48-

0.86

0.72

0.50

-0.

870.

730.

50-

DT

1715

11-

1815

12-

1815

12-

1815

12-

1815

12-

1614

11-

1800

KW

3.25

3.31

3.41

-3.

483.

543.

65-

3.68

3.75

3.87

-3.

863.

944.

06-

4.01

4.09

4.22

-4.

144.

234.

36-

AM

PS4.

44.

54.

7-

4.7

4.9

5.0

-5.

15.

25.

4-

5.5

5.6

5.7

-5.

85.

96.

1-

6.1

6.2

6.4

-H

I PR

243

261

276

-27

229

330

9-

310

333

352

-35

338

040

1-

397

427

451

-43

847

249

8-

LO P

R10

711

412

4-

113

120

131

-11

812

513

7-

124

131

144

-13

013

815

0-

134

143

156

-

MB

h43

.845

.449

.7-

42.7

44.3

48.5

-41

.743

.247

.4-

40.7

42.2

46.2

-38

.740

.143

.9-

35.8

37.1

40.7

-S

/T0.

720.

600.

42-

0.75

0.63

0.43

-0.

770.

640.

45-

0.79

0.66

0.46

-0.

820.

690.

48-

0.83

0.69

0.48

-D

T18

1612

-18

1612

-18

1612

-19

1612

-18

1612

-17

1511

-70

1600

KW

3.22

3.28

3.38

-3.

453.

523.

62-

3.65

3.72

3.84

-3.

833.

914.

03-

3.98

4.06

4.19

-4.

114.

194.

32-

AM

PS4.

44.

54.

6-

4.7

4.8

5.0

-5.

15.

25.

4-

5.4

5.5

5.7

-5.

75.

96.

0-

6.0

6.2

6.4

-H

I PR

240

259

273

-27

029

030

6-

307

330

348

-34

937

639

7-

393

423

447

-43

446

749

3-

LO P

R10

611

312

3-

112

119

130

-11

612

413

5-

122

130

142

-12

813

614

9-

133

141

154

-M

Bh

40.4

41.9

45.9

-39

.540

.944

.8-

38.5

39.9

43.7

-37

.638

.942

.7-

35.7

37.0

40.5

-33

.134

.337

.5-

S/T

0.70

0.58

0.40

-0.

720.

600.

42-

0.74

0.62

0.43

-0.

770.

640.

44-

0.79

0.66

0.46

-0.

800.

670.

46-

DT

1916

12-

1916

12-

1916

12-

1916

12-

1916

12-

1715

11-

1400

KW

3.15

3.21

3.30

-3.

373.

443.

54-

3.57

3.64

3.75

-3.

743.

823.

93-

3.88

3.97

4.09

-4.

014.

094.

22-

AM

PS4.

34.

44.

5-

4.6

4.7

4.8

-5.

05.

15.

2-

5.3

5.4

5.6

-5.

65.

75.

9-

5.9

6.0

6.2

-H

I PR

233

251

265

-26

228

129

7-

297

320

338

-33

936

538

5-

381

410

433

-42

145

347

9-

LO P

R10

310

912

0-

109

116

126

-11

312

013

1-

119

126

138

-12

413

214

4-

129

137

149

-

MB

h45

.84

47.2

051

.09

54.8

344

.77

46.1

049

.90

53.5

543

.71

45.0

048

.71

52.2

842

.64

43.9

047

.52

51.0

040

.51

41.7

145

.15

48.4

537

.52

38.6

441

.82

44.8

8S

/T0.

860.

770.

580.

380.

890.

800.

610.

390.

920.

820.

620.

400.

950.

850.

640.

410.

980.

880.

660.

430.

990.

890.

670.

43D

T20

1915

1120

1915

1120

1915

1121

1916

1120

1915

1119

1714

1018

00K

W3.

273.

333.

433.

533.

503.

573.

683.

793.

713.

783.

904.

023.

893.

974.

094.

224.

044.

134.

254.

394.

174.

264.

394.

54A

MPS

4.5

4.6

4.7

4.9

4.8

4.9

5.0

5.2

5.2

5.3

5.4

5.6

5.5

5.6

5.8

6.0

5.8

6.0

6.1

6.4

6.2

6.3

6.5

6.7

HI P

R24

526

427

929

127

529

631

332

631

333

735

637

135

638

340

542

240

143

145

647

544

347

750

352

5LO

PR

108

115

126

134

114

122

133

141

119

126

138

147

125

133

145

154

131

139

152

162

135

144

157

167

MB

h44

.545

.849

.653

.243

.544

.848

.452

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.443

.747

.350

.841

.442

.646

.149

.539

.340

.543

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.437

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.643

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/T0.

820.

740.

560.

360.

850.

760.

580.

370.

870.

780.

590.

380.

900.

810.

610.

390.

940.

840.

630.

410.

940.

840.

640.

41D

T21

1916

1121

2016

1121

2016

1121

2016

1121

1916

1120

1815

1075

1600

KW

3.25

3.31

3.41

3.51

3.48

3.55

3.65

3.76

3.68

3.75

3.87

3.99

3.86

3.94

4.06

4.19

4.01

4.09

4.22

4.35

4.14

4.23

4.36

4.50

AM

PS4.

44.

54.

74.

84.

84.

95.

05.

25.

15.

25.

45.

65.

55.

65.

86.

05.

85.

96.

16.

36.

16.

26.

46.

7H

I PR

243

261

276

288

272

293

310

323

310

333

352

367

353

380

401

418

397

427

451

470

439

472

498

520

LO P

R10

711

412

413

311

312

013

114

011

812

513

714

612

413

114

415

313

013

815

016

013

414

315

616

6

MB

h41

.142

.345

.849

.140

.141

.344

.748

.039

.240

.343

.746

.838

.239

.34

42.6

45.7

36.3

37.4

40.5

43.4

33.6

34.6

37.5

40.2

S/T

0.79

0.71

0.54

0.35

0.82

0.74

0.56

0.36

0.84

0.75

0.57

0.37

0.87

0.78

0.59

0.38

0.90

0.81

0.61

0.39

0.91

0.81

0.62

0.40

DT

2120

1611

2220

1611

2220

1611

2220

1611

2220

1611

2019

1510

1400

KW

3.18

3.24

3.33

3.43

3.40

3.47

3.57

3.67

3.59

3.67

3.78

3.89

3.77

3.85

3.96

4.09

3.92

4.00

4.12

4.25

4.04

4.13

4.26

4.39

AM

PS4.

34.

44.

54.

74.

64.

74.

95.

05.

05.

15.

35.

45.

35.

45.

65.

85.

65.

85.

96.

15.

96.

16.

36.

5H

I PR

235

253

268

279

264

284

300

313

300

323

341

356

342

368

389

406

385

414

438

456

425

458

483

504

LO P

R10

411

112

112

911

011

712

813

611

412

113

314

112

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914

812

613

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AC

CA

(TV

A)

cond

ition

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nter

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ry B

ulb

Tem

pera

ture

KW

=Tot

al s

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AM

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utdo

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(co

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+fan

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igh

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Downloaded from www.Manualslib.com manuals search engine

Page 31: Goodman Technical Manual Gszvsz_13_seer

31

COOLING PERFORMANCE DATA GSZ130484A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3048

4A*

/ AR

*F48

6016

**

CO

OLI

NG

OP

ERA

TIO

NO

utdo

or A

mbi

ent T

empe

ratu

re65

7585

9510

511

5En

teri

ng In

door

Wet

Bul

b Te

mpe

ratu

reID

BA

irflo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh

46.6

647

.67

50.9

354

.45

45.5

746

.57

49.7

553

.18

44.4

945

.46

48.5

651

.92

43.4

044

.35

47.3

850

.65

41.2

342

.13

45.0

148

.12

38.1

939

.03

41.6

944

.57

S/T

0.95

0.89

0.72

0.54

1.00

0.92

0.75

0.56

1.00

0.94

0.77

0.57

1.00

1.00

0.79

0.59

1.00

1.00

0.82

0.61

1.00

1.00

0.83

0.62

DT

2322

1915

2322

1915

2322

1915

2223

1915

2122

1915

2020

1814

1800

KW

3.29

3.36

3.46

3.56

3.53

3.60

3.71

3.82

3.74

3.81

3.93

4.05

3.92

4.00

4.12

4.25

4.07

4.16

4.29

4.42

4.21

4.30

4.43

4.57

AM

PS4.

54.

64.

74.

94.

84.

95.

15.

35.

25.

35.

55.

75.

55.

75.

96.

15.

96.

06.

26.

46.

26.

46.

66.

8H

I PR

248

267

281

294

278

299

316

329

316

340

359

375

360

387

409

427

405

436

460

480

447

482

508

530

LO P

R10

911

612

713

511

612

313

414

312

012

813

914

812

613

414

615

613

214

115

316

313

714

515

916

9

MB

h45

.346

.349

.552

.944

.245

.248

.351

.643

.244

.147

.250

.442

.143

.146

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.240

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.943

.746

.737

.137

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/T0.

900.

850.

690.

510.

940.

880.

710.

530.

960.

900.

730.

550.

990.

930.

760.

561.

000.

960.

780.

591.

000.

970.

790.

59D

T23

2320

1624

2320

1624

2320

1624

2320

1623

2320

1621

2118

1580

1600

KW

3.27

3.33

3.43

3.53

3.50

3.57

3.68

3.79

3.71

3.78

3.90

4.02

3.89

3.97

4.09

4.22

4.04

4.13

4.25

4.39

4.17

4.26

4.40

4.54

AM

PS4.

54.

64.

74.

94.

84.

95.

05.

25.

25.

35.

55.

65.

55.

65.

86.

05.

86.

06.

26.

46.

26.

36.

56.

7H

I PR

245

264

279

291

275

296

313

326

313

337

356

371

356

384

405

422

401

431

456

475

443

477

503

525

LO P

R10

811

512

613

411

412

213

314

111

912

613

814

712

513

314

515

413

113

915

216

213

514

415

716

7

MB

h41

.842

.745

.648

.840

.841

.744

.647

.739

.940

.743

.546

.538

.939

.742

.545

.436

.937

.840

.343

.134

.235

.037

.439

.9S

/T0.

870.

820.

660.

500.

900.

850.

690.

510.

920.

870.

710.

530.

950.

900.

730.

540.

990.

930.

760.

571.

000.

940.

760.

57D

T24

2320

1624

2320

1624

2320

1624

2320

1624

2320

1622

2219

1514

00K

W3.

203.

263.

353.

453.

423.

493.

593.

703.

623.

703.

813.

923.

803.

883.

994.

123.

954.

034.

154.

284.

074.

164.

294.

43A

MPS

4.4

4.4

4.6

4.7

4.7

4.8

4.9

5.1

5.0

5.2

5.3

5.5

5.4

5.5

5.7

5.8

5.7

5.8

6.0

6.2

6.0

6.1

6.3

6.6

HI P

R23

825

627

028

226

728

730

331

630

432

734

536

034

637

239

341

038

941

944

246

143

046

248

850

9LO

PR

105

112

122

130

111

118

129

137

115

123

134

143

121

129

141

150

127

135

147

157

131

140

152

162

MB

h47

.47

48.3

950

.68

54.0

746

.37

47.2

649

.50

52.8

145

.26

46.1

448

.32

51.5

544

.16

45.0

147

.14

50.2

941

.95

42.7

644

.79

47.7

838

.86

39.6

141

.49

44.2

6S

/T0.

990.

960.

860.

701.

000.

990.

900.

731.

001.

000.

920.

741.

001.

000.

950.

771.

001.

000.

980.

801.

001.

000.

990.

80D

T24

2422

1924

2423

2023

2423

2023

2323

2021

2222

1920

2021

1818

00K

W3.

323.

383.

483.

593.

553.

633.

733.

853.

763.

843.

964.

083.

954.

034.

154.

294.

104.

194.

324.

464.

244.

334.

474.

61A

MPS

4.5

4.6

4.8

4.9

4.9

5.0

5.1

5.3

5.3

5.4

5.5

5.7

5.6

5.7

5.9

6.1

5.9

6.1

6.3

6.5

6.3

6.4

6.6

6.8

HI P

R25

026

928

429

628

130

231

933

331

934

436

337

836

439

141

343

140

944

046

548

545

248

651

453

6LO

PR

110

117

128

137

117

124

135

144

121

129

141

150

127

135

148

158

133

142

155

165

138

147

160

171

MB

h46

.147

.049

.252

.545

.045

.948

.151

.343

.944

.846

.950

.142

.943

.745

.848

.840

.741

.543

.546

.437

.738

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.343

.0S

/T0.

950.

910.

820.

670.

980.

950.

850.

691.

000.

970.

880.

711.

001.

000.

900.

731.

001.

000.

940.

761.

001.

000.

950.

77D

T25

2523

2025

2524

2025

2524

2025

2524

2123

2423

2022

2222

1985

1600

KW

3.29

3.36

3.46

3.56

3.53

3.60

3.71

3.82

3.74

3.81

3.93

4.05

3.92

4.00

4.12

4.25

4.07

4.16

4.29

4.42

4.21

4.30

4.43

4.57

AM

PS4.

54.

64.

74.

94.

84.

95.

15.

35.

25.

35.

55.

75.

55.

75.

96.

15.

96.

06.

26.

46.

26.

46.

66.

8H

I PR

248

267

281

294

278

299

316

329

316

340

359

375

360

387

409

427

405

436

460

480

447

482

508

530

LO P

R10

911

612

713

511

612

313

414

312

012

813

914

812

613

414

615

613

214

115

316

313

714

515

916

9

MB

h42

.543

.445

.448

.541

.542

.444

.447

.340

.641

.343

.346

.239

.640

.342

.245

.137

.638

.340

.142

.834

.835

.537

.239

.7S

/T0.

910.

880.

790.

640.

950.

910.

820.

670.

970.

940.

840.

681.

000.

970.

870.

711.

001.

000.

900.

731.

001.

000.

910.

74D

T25

2524

2126

2524

2126

2524

2126

2624

2125

2524

2123

2322

1914

00K

W3.

223.

283.

383.

483.

453.

523.

623.

733.

653.

723.

843.

953.

833.

914.

024.

153.

984.

064.

194.

324.

114.

194.

324.

46A

MPS

4.4

4.5

4.6

4.8

4.7

4.8

5.0

5.1

5.1

5.2

5.4

5.5

5.4

5.5

5.7

5.9

5.7

5.9

6.0

6.3

6.0

6.2

6.4

6.6

HI P

R24

025

927

328

527

029

030

631

930

733

034

836

334

937

639

741

439

342

344

646

643

446

749

351

4LO

PR

106

113

123

131

112

119

130

139

116

124

135

144

122

130

142

151

128

136

149

159

133

141

154

164

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

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igh

and

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re m

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at th

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and

suct

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serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 32: Goodman Technical Manual Gszvsz_13_seer

32

COOLING PERFORMANCE DATA G/VSZ130601A* M

OD

EL:

G/V

SZ1

3060

1A*

/ AR

*F48

601*

*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OL

ING

OP

ER

AT

ION

Ou

tdo

or

Am

bie

nt

Te

mp

era

ture

6575

8595

105

115

Ente

rin

g In

do

or

We

t B

ulb

Te

mp

era

ture

IDB

Air

flo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh

55.9

57.9

63.4

-54

.656

.562

.0-

53.3

55.2

60.5

-52

.053

.959

.0-

49.4

51.2

56.1

-45

.747

.451

.9-

S/T

0.75

0.63

0.44

-0.

780.

650.

45-

0.80

0.67

0.46

-0.

830.

690.

48-

0.86

0.72

0.50

-0.

860.

720.

50-

DT

1917

13-

1917

13-

1917

13-

1917

13-

1917

13-

1816

12-

2025

KW

4.11

4.19

4.31

-4.

404.

494.

62-

4.66

4.75

4.90

-4.

884.

995.

14-

5.08

5.18

5.34

-5.

245.

355.

52-

AM

PS14

.514

.815

.3-

15.7

16.1

16.6

-17

.117

.518

.1-

18.3

18.7

19.3

-19

.419

.920

.6-

20.6

21.1

21.9

-H

I PR

225

242

255

-25

227

128

7-

287

309

326

-32

735

237

1-

367

395

418

-40

643

746

1-

LO P

R10

210

811

8-

108

115

125

-11

211

913

0-

118

125

137

-12

313

114

3-

127

136

148

-M

Bh

54.2

56.2

61.6

-53

.054

.960

.1-

51.7

53.6

58.7

-50

.452

.357

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47.9

49.7

54.4

-44

.446

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S/T

0.72

0.60

0.42

-0.

740.

620.

43-

0.76

0.64

0.44

-0.

790.

660.

46-

0.82

0.68

0.47

-0.

820.

690.

48-

DT

2017

13-

2017

13-

2017

13-

2018

13-

2017

13-

1916

12-

7018

00K

W4.

084.

164.

28-

4.37

4.46

4.59

-4.

624.

724.

86-

4.85

4.95

5.10

-5.

045.

145.

30-

5.20

5.31

5.48

-A

MPS

14.4

14.7

15.2

-15

.515

.916

.5-

16.9

17.3

17.9

-18

.118

.519

.2-

19.3

19.7

20.4

-20

.420

.921

.7-

HI P

R22

223

925

3-

250

269

284

-28

430

632

3-

323

348

368

-36

439

241

3-

402

433

457

-LO

PR

101

107

117

-10

711

312

4-

111

118

129

-11

612

413

5-

122

130

142

-12

613

414

7-

MB

h50

.151

.956

.8-

48.9

50.7

55.5

-47

.749

.554

.2-

46.6

48.3

52.9

-44

.245

.850

.2-

41.0

42.5

46.5

-S

/T0.

690.

580.

40-

0.72

0.60

0.42

-0.

740.

610.

43-

0.76

0.63

0.44

-0.

790.

660.

46-

0.80

0.66

0.46

-D

T20

1813

-20

1813

-21

1813

-21

1814

-20

1813

-19

1612

-15

75K

W3.

994.

074.

18-

4.27

4.35

4.48

-4.

524.

614.

75-

4.73

4.83

4.98

-4.

925.

025.

18-

5.08

5.19

5.35

-A

MPS

14.0

14.3

14.8

-15

.115

.516

.0-

16.4

16.8

17.4

-17

.618

.018

.6-

18.7

19.2

19.8

-19

.920

.421

.0-

HI P

R21

623

224

5-

242

261

275

-27

529

631

3-

314

338

356

-35

338

040

1-

390

420

443

-LO

PR

9810

411

4-

103

110

120

-10

811

412

5-

113

120

131

-11

812

613

7-

122

130

142

-

MB

h56

.858

.563

.367

.955

.557

.161

.866

.454

.255

.860

.464

.852

.854

.458

.963

.250

.251

.755

.960

.046

.547

.951

.855

.6S

/T0.

860.

770.

580.

370.

890.

790.

600.

390.

910.

810.

620.

400.

940.

840.

640.

410.

970.

870.

660.

420.

980.

880.

670.

43D

T22

2017

1222

2117

1222

2117

1223

2117

1222

2017

1221

1916

1120

25K

W4.

144.

224.

344.

474.

434.

524.

664.

804.

694.

794.

945.

094.

925.

025.

185.

345.

125.

225.

395.

565.

295.

405.

575.

75A

MPS

14.6

15.0

15.5

16.1

15.8

16.2

16.8

17.4

17.2

17.7

18.2

18.9

18.4

18.9

19.5

20.3

19.6

20.1

20.8

21.6

20.8

21.3

22.1

22.9

HI P

R22

724

425

826

925

527

428

930

229

031

232

934

333

035

537

539

137

139

942

244

041

044

146

648

6LO

PR

103

110

120

127

109

116

126

135

113

120

131

140

119

126

138

147

125

132

145

154

129

137

150

159

MB

h55

.156

.861

.566

.053

.955

.560

.064

.452

.654

.158

.662

.951

.352

.857

.261

.448

.750

.254

.358

.345

.146

.550

.354

.0S

/T0.

820.

730.

550.

360.

850.

760.

570.

370.

870.

780.

590.

380.

900.

800.

610.

390.

930.

830.

630.

400.

940.

840.

630.

41D

T23

2117

1223

2118

1223

2118

1223

2218

1223

2117

1222

2016

1175

1800

KW

4.11

4.19

4.31

4.44

4.40

4.49

4.62

4.76

4.66

4.75

4.90

5.05

4.89

4.99

5.14

5.30

5.08

5.18

5.34

5.51

5.24

5.35

5.52

5.70

AM

PS14

.514

.815

.315

.915

.716

.116

.617

.217

.117

.518

.118

.818

.318

.719

.320

.119

.519

.920

.621

.420

.621

.121

.922

.7H

I PR

225

242

255

266

252

271

287

299

287

309

326

340

327

352

371

387

368

396

418

436

406

437

461

481

LO P

R10

210

811

812

610

811

512

513

311

211

913

013

911

812

513

714

612

313

114

315

212

813

614

815

8M

Bh

50.9

52.4

56.7

60.9

49.7

51.2

55.4

59.5

48.5

50.0

54.1

58.1

47.3

48.8

52.8

56.6

45.0

46.3

50.1

53.8

41.7

42.9

46.4

49.8

S/T

0.79

0.70

0.53

0.34

0.82

0.73

0.55

0.36

0.84

0.75

0.57

0.36

0.86

0.77

0.58

0.38

0.90

0.80

0.61

0.39

0.90

0.81

0.61

0.39

DT

2322

1812

2422

1812

2422

1812

2422

1812

2422

1812

2220

1711

1575

KW

4.02

4.10

4.22

4.34

4.30

4.39

4.52

4.65

4.55

4.64

4.78

4.93

4.77

4.87

5.02

5.17

4.96

5.06

5.22

5.38

5.12

5.23

5.39

5.56

AM

PS14

.114

.414

.915

.515

.315

.616

.116

.816

.617

.017

.618

.217

.718

.218

.819

.518

.919

.420

.020

.820

.020

.521

.222

.1H

I PR

218

235

248

258

245

263

278

290

278

299

316

330

317

341

360

376

357

384

405

423

394

424

448

467

LO P

R99

105

115

122

105

111

121

129

109

116

126

134

114

121

133

141

120

127

139

148

124

132

144

153

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

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door

uni

t am

ps (

com

p.+f

an

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 33: Goodman Technical Manual Gszvsz_13_seer

33

COOLING PERFORMANCE DATA G/VSZ130601A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

CO

OL

ING

OP

ER

ATI

ON

MO

DEL

: G

SZ1

3060

1A*

/ A

R*F

4860

1**

Ou

tdo

or

Am

bie

nt

Te

mp

era

ture

6575

8595

105

115

Ente

rin

g In

do

or

We

t B

ulb

Te

mp

era

ture

IDB

Air

flo

w59

6367

7159

6367

7159

6367

7159

6367

7159

6367

7159

6367

71M

Bh

55.9

57.9

63.4

-54

.656

.562

.0-

53.3

55.2

60.5

-52

.053

.959

.0-

49.4

51.2

56.1

-45

.747

.451

.9-

S/T

0.75

0.63

0.44

-0.

780.

650.

45-

0.80

0.67

0.46

-0.

830.

690.

48-

0.86

0.72

0.50

-0.

860.

720.

50-

DT

1917

13-

1917

13-

1917

13-

1917

13-

1917

13-

1816

12-

2025

KW

4.11

4.19

4.31

-4.

404.

494.

62-

4.66

4.75

4.90

-4.

884.

995.

14-

5.08

5.18

5.34

-5.

245.

355.

52-

AM

PS14

.514

.815

.3-

15.7

16.1

16.6

-17

.117

.518

.1-

18.3

18.7

19.3

-19

.419

.920

.6-

20.6

21.1

21.9

-H

I PR

225

242

255

-25

227

128

7-

287

309

326

-32

735

237

1-

367

395

418

-40

643

746

1-

LO P

R10

210

811

8-

108

115

125

-11

211

913

0-

118

125

137

-12

313

114

3-

127

136

148

-M

Bh

54.2

56.2

61.6

-53

.054

.960

.1-

51.7

53.6

58.7

-50

.452

.357

.3-

47.9

49.7

54.4

-44

.446

.050

.4-

S/T

0.72

0.60

0.42

-0.

740.

620.

43-

0.76

0.64

0.44

-0.

790.

660.

46-

0.82

0.68

0.47

-0.

820.

690.

48-

DT

2017

13-

2017

13-

2017

13-

2018

13-

2017

13-

1916

12-

7018

00K

W4.

084.

164.

28-

4.37

4.46

4.59

-4.

624.

724.

86-

4.85

4.95

5.10

-5.

045.

145.

30-

5.20

5.31

5.48

-A

MPS

14.4

14.7

15.2

-15

.515

.916

.5-

16.9

17.3

17.9

-18

.118

.519

.2-

19.3

19.7

20.4

-20

.420

.921

.7-

HI P

R22

223

925

3-

250

269

284

-28

430

632

3-

323

348

368

-36

439

241

3-

402

433

457

-LO

PR

101

107

117

-10

711

312

4-

111

118

129

-11

612

413

5-

122

130

142

-12

613

414

7-

MB

h50

.151

.956

.8-

48.9

50.7

55.5

-47

.749

.554

.2-

46.6

48.3

52.9

-44

.245

.850

.2-

41.0

42.5

46.5

-S

/T0.

690.

580.

40-

0.72

0.60

0.42

-0.

740.

610.

43-

0.76

0.63

0.44

-0.

790.

660.

46-

0.80

0.66

0.46

-D

T20

1813

-20

1813

-21

1813

-21

1814

-20

1813

-19

1612

-15

75K

W3.

994.

074.

18-

4.27

4.35

4.48

-4.

524.

614.

75-

4.73

4.83

4.98

-4.

925.

025.

18-

5.08

5.19

5.35

-A

MPS

14.0

14.3

14.8

-15

.115

.516

.0-

16.4

16.8

17.4

-17

.618

.018

.6-

18.7

19.2

19.8

-19

.920

.421

.0-

HI P

R21

623

224

5-

242

261

275

-27

529

631

3-

314

338

356

-35

338

040

1-

390

420

443

-LO

PR

9810

411

4-

103

110

120

-10

811

412

5-

113

120

131

-11

812

613

7-

122

130

142

-

MB

h56

.858

.563

.367

.955

.557

.161

.866

.454

.255

.860

.464

.852

.854

.458

.963

.250

.251

.755

.960

.046

.547

.951

.855

.6S

/T0.

860.

770.

580.

370.

890.

790.

600.

390.

910.

810.

620.

400.

940.

840.

640.

410.

970.

870.

660.

420.

980.

880.

670.

43D

T22

2017

1222

2117

1222

2117

1223

2117

1222

2017

1221

1916

1120

25K

W4.

144.

224.

344.

474.

434.

524.

664.

804.

694.

794.

945.

094.

925.

025.

185.

345.

125.

225.

395.

565.

295.

405.

575.

75A

MPS

14.6

15.0

15.5

16.1

15.8

16.2

16.8

17.4

17.2

17.7

18.2

18.9

18.4

18.9

19.5

20.3

19.6

20.1

20.8

21.6

20.8

21.3

22.1

22.9

HI P

R22

724

425

826

925

527

428

930

229

031

232

934

333

035

537

539

137

139

942

244

041

044

146

648

6LO

PR

103

110

120

127

109

116

126

135

113

120

131

140

119

126

138

147

125

132

145

154

129

137

150

159

MB

h55

.156

.861

.566

.053

.955

.560

.064

.452

.654

.158

.662

.951

.352

.857

.261

.448

.750

.254

.358

.345

.146

.550

.354

.0S

/T0.

820.

730.

550.

360.

850.

760.

570.

370.

870.

780.

590.

380.

900.

800.

610.

390.

930.

830.

630.

400.

940.

840.

630.

41D

T23

2117

1223

2118

1223

2118

1223

2218

1223

2117

1222

2016

1175

1800

KW

4.11

4.19

4.31

4.44

4.40

4.49

4.62

4.76

4.66

4.75

4.90

5.05

4.89

4.99

5.14

5.30

5.08

5.18

5.34

5.51

5.24

5.35

5.52

5.70

AM

PS14

.514

.815

.315

.915

.716

.116

.617

.217

.117

.518

.118

.818

.318

.719

.320

.119

.519

.920

.621

.420

.621

.121

.922

.7H

I PR

225

242

255

266

252

271

287

299

287

309

326

340

327

352

371

387

368

396

418

436

406

437

461

481

LO P

R10

210

811

812

610

811

512

513

311

211

913

013

911

812

513

714

612

313

114

315

212

813

614

815

8M

Bh

50.9

52.4

56.7

60.9

49.7

51.2

55.4

59.5

48.5

50.0

54.1

58.1

47.3

48.8

52.8

56.6

45.0

46.3

50.1

53.8

41.7

42.9

46.4

49.8

S/T

0.79

0.70

0.53

0.34

0.82

0.73

0.55

0.36

0.84

0.75

0.57

0.36

0.86

0.77

0.58

0.38

0.90

0.80

0.61

0.39

0.90

0.81

0.61

0.39

DT

2322

1812

2422

1812

2422

1812

2422

1812

2422

1812

2220

1711

1575

KW

4.02

4.10

4.22

4.34

4.30

4.39

4.52

4.65

4.55

4.64

4.78

4.93

4.77

4.87

5.02

5.17

4.96

5.06

5.22

5.38

5.12

5.23

5.39

5.56

AM

PS14

.114

.414

.915

.515

.315

.616

.116

.816

.617

.017

.618

.217

.718

.218

.819

.518

.919

.420

.020

.820

.020

.521

.222

.1H

I PR

218

235

248

258

245

263

278

290

278

299

316

330

317

341

360

376

357

384

405

423

394

424

448

467

LO P

R99

105

115

122

105

111

121

129

109

116

126

134

114

121

133

141

120

127

139

148

124

132

144

153

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

=out

door

uni

t am

ps (

com

p.+f

an

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 34: Goodman Technical Manual Gszvsz_13_seer

34

COOLING PERFORMANCE DATA GSZ130603A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3060

3A*

/AR

*F48

6016

**C

OO

LIN

G O

PER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h55

.957

.963

.4-

54.6

56.5

62.0

-53

.355

.260

.5-

52.0

53.9

59.0

-49

.451

.256

.1-

45.7

47.4

51.9

-S

/T0.

750.

630.

44-

0.78

0.65

0.45

-0.

800.

670.

46-

0.83

0.69

0.48

-0.

860.

720.

50-

0.86

0.72

0.50

-D

T19

1713

-19

1713

-19

1713

-19

1713

-19

1713

-18

1612

-20

25K

W4.

064.

144.

26-

4.35

4.44

4.57

-4.

614.

704.

85-

4.84

4.94

5.09

-5.

035.

145.

30-

5.20

5.31

5.48

-A

MPS

8.4

8.6

8.8

-9.

09.

29.

6-

9.8

10.1

10.4

-10

.510

.811

.1-

11.2

11.4

11.8

-11

.812

.112

.5-

HI P

R22

524

225

5-

252

271

287

-28

730

932

6-

327

352

371

-36

739

541

8-

406

437

461

-LO

PR

102

108

118

-10

811

512

5-

112

119

130

-11

812

513

7-

123

131

143

-12

713

614

8-

MB

h54

.256

.261

.6-

53.0

54.9

60.1

-51

.753

.658

.7-

50.4

52.3

57.3

-47

.949

.754

.4-

44.4

46.0

50.4

-S

/T0.

720.

600.

42-

0.74

0.62

0.43

-0.

760.

640.

44-

0.79

0.66

0.46

-0.

820.

680.

47-

0.82

0.69

0.48

-D

T20

1713

-20

1713

-20

1713

-20

1813

-20

1713

-19

1612

-70

1800

KW

4.03

4.11

4.23

-4.

324.

414.

54-

4.57

4.67

4.81

-4.

804.

905.

05-

4.99

5.10

5.26

-5.

165.

275.

43-

AM

PS8.

38.

58.

8-

8.9

9.2

9.5

-9.

710

.010

.3-

10.4

10.7

11.0

-11

.111

.311

.7-

11.7

12.0

12.4

-H

I PR

222

239

253

-25

026

928

4-

284

306

323

-32

334

836

8-

364

392

413

-40

243

345

7-

LO P

R10

110

711

7-

107

113

124

-11

111

812

9-

116

124

135

-12

213

014

2-

126

134

147

-M

Bh

50.1

51.9

56.8

-48

.950

.755

.5-

47.7

49.5

54.2

-46

.648

.352

.9-

44.2

45.8

50.2

-41

.042

.546

.5-

S/T

0.69

0.58

0.40

-0.

720.

600.

42-

0.74

0.61

0.43

-0.

760.

630.

44-

0.79

0.66

0.46

-0.

800.

660.

46-

DT

2018

13-

2018

13-

2118

13-

2118

14-

2018

13-

1916

12-

1575

KW

3.94

4.02

4.13

-4.

224.

304.

43-

4.47

4.56

4.70

-4.

694.

784.

93-

4.87

4.98

5.13

-5.

035.

145.

30-

AM

PS8.

18.

28.

5-

8.7

8.9

9.2

-9.

59.

710

.0-

10.1

10.4

10.7

-10

.811

.011

.4-

11.4

11.7

12.1

-H

I PR

216

232

245

-24

226

127

5-

275

296

313

-31

433

835

6-

353

380

401

-39

042

044

3-

LO P

R98

104

114

-10

311

012

0-

108

114

125

-11

312

013

1-

118

126

137

-12

213

014

2-

MB

h56

.80

58.4

863

.30

67.9

455

.48

57.1

261

.83

66.3

654

.16

55.7

660

.36

64.7

852

.84

54.4

058

.89

63.2

050

.20

51.6

855

.94

60.0

446

.50

47.8

751

.82

55.6

2S

/T0.

860.

770.

580.

370.

890.

790.

600.

390.

910.

810.

620.

400.

940.

840.

640.

410.

970.

870.

660.

420.

980.

880.

670.

43D

T22

2017

1222

2117

1222

2117

1223

2117

1222

2017

1221

1916

1120

25K

W4.

094.

174.

294.

424.

384.

474.

614.

754.

654.

744.

895.

044.

884.

985.

135.

305.

075.

185.

345.

525.

245.

355.

525.

70A

MPS

8.4

8.6

8.9

9.2

9.1

9.3

9.6

10.0

9.9

10.2

10.5

10.9

10.6

10.9

11.2

11.6

11.3

11.6

11.9

12.4

12.0

12.3

12.7

13.2

HI P

R22

724

425

826

925

527

428

930

229

031

232

934

333

035

537

539

137

139

942

244

041

044

146

648

6LO

PR

103

110

120

127

109

116

126

135

113

120

131

140

119

126

138

147

125

132

145

154

129

137

150

159

MB

h55

.156

.861

.566

.053

.955

.560

.064

.452

.654

.158

.662

.951

.352

.857

.261

.448

.750

.254

.358

.345

.146

.550

.354

.0S

/T0.

820.

730.

550.

360.

850.

760.

570.

370.

870.

780.

590.

380.

900.

800.

610.

390.

930.

830.

630.

400.

940.

840.

630.

41D

T23

2117

1223

2118

1223

2118

1223

2218

1223

2117

1222

2016

1175

1800

KW

4.06

4.14

4.26

4.39

4.35

4.44

4.57

4.72

4.61

4.71

4.85

5.00

4.84

4.94

5.09

5.26

5.03

5.14

5.30

5.47

5.20

5.31

5.48

5.66

AM

PS8.

48.

68.

89.

29.

09.

39.

69.

99.

810

.110

.410

.810

.510

.811

.111

.511

.211

.511

.812

.311

.812

.112

.513

.0H

I PR

225

242

255

266

252

271

287

299

287

309

326

340

327

352

371

387

368

396

418

436

406

437

461

481

LO P

R10

210

811

812

610

811

512

513

311

211

913

013

911

812

513

714

612

313

114

315

212

813

614

815

8

MB

h50

.952

.456

.760

.949

.751

.255

.459

.548

.550

.054

.158

.147

.348

.75

52.8

56.6

45.0

46.3

50.1

53.8

41.7

42.9

46.4

49.8

S/T

0.79

0.70

0.53

0.34

0.82

0.73

0.55

0.36

0.84

0.75

0.57

0.36

0.86

0.77

0.58

0.38

0.90

0.80

0.61

0.39

0.90

0.81

0.61

0.39

DT

2322

1812

2422

1812

2422

1812

2422

1812

2422

1812

2220

1711

1575

KW

3.97

4.05

4.17

4.29

4.25

4.34

4.47

4.61

4.50

4.60

4.74

4.88

4.72

4.82

4.97

5.13

4.91

5.02

5.17

5.34

5.07

5.18

5.35

5.52

AM

PS8.

18.

38.

68.

98.

89.

09.

39.

69.

59.

810

.110

.510

.210

.510

.811

.210

.911

.111

.511

.911

.511

.812

.212

.7H

I PR

218

235

248

258

245

263

278

290

278

299

316

330

317

341

360

376

357

384

405

423

394

424

448

467

LO P

R99

105

115

122

105

111

121

129

109

116

126

134

114

121

133

141

120

127

139

148

124

132

144

153

Sha

ded

area

is A

CC

A (

TVA

) co

nditi

ons

IDB

: Ent

erin

g In

door

Dry

Bul

b Te

mpe

ratu

reK

W=T

otal

sys

tem

pow

erA

MPS

=out

door

uni

t am

ps (

com

p.+f

an)

Hig

h an

d lo

w p

ress

ures

are

mea

sure

d at

the

liqui

d an

d su

ctio

n se

rvic

e va

lves

.

Downloaded from www.Manualslib.com manuals search engine

Page 35: Goodman Technical Manual Gszvsz_13_seer

35

COOLING PERFORMANCE DATA GSZ130603A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3060

3A*

/AR

*F48

6016

**C

OO

LIN

G O

PER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h57

.81

59.0

763

.11

67.4

756

.47

57.7

061

.65

65.9

055

.12

56.3

360

.18

64.3

353

.78

54.9

558

.71

62.7

651

.09

52.2

055

.77

59.6

247

.32

48.3

651

.66

55.2

3S

/T0.

940.

880.

720.

541.

000.

910.

740.

561.

000.

940.

760.

571.

000.

970.

790.

591.

001.

000.

820.

611.

001.

000.

820.

62D

T25

2421

1626

2421

1725

2421

1724

2421

1723

2421

1721

2219

1520

25K

W4.

124.

204.

334.

464.

424.

514.

654.

794.

684.

784.

935.

084.

925.

025.

185.

345.

115.

225.

395.

565.

285.

405.

575.

75A

MPS

8.5

8.7

9.0

9.3

9.2

9.4

9.7

10.1

10.0

10.2

10.6

11.0

10.7

11.0

11.3

11.8

11.4

11.7

12.1

12.5

12.1

12.4

12.8

13.3

HI P

R22

924

726

127

225

727

729

230

529

331

533

334

733

335

937

939

537

540

442

644

441

444

647

149

1LO

PR

104

111

121

129

110

117

128

136

114

122

133

141

120

128

139

148

126

134

146

156

130

138

151

161

MB

h56

.157

.461

.365

.554

.856

.059

.964

.053

.554

.758

.462

.552

.253

.457

.060

.949

.650

.754

.257

.945

.946

.950

.253

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/T0.

900.

840.

680.

510.

930.

870.

710.

530.

950.

890.

730.

540.

980.

920.

750.

561.

000.

960.

780.

581.

000.

960.

780.

59D

T26

2521

1726

2522

1726

2522

1726

2522

1725

2522

1723

2320

1680

1800

KW

4.09

4.17

4.29

4.42

4.38

4.47

4.61

4.75

4.65

4.74

4.89

5.04

4.88

4.98

5.14

5.30

5.07

5.18

5.34

5.52

5.24

5.35

5.52

5.70

AM

PS8.

48.

68.

99.

29.

19.

39.

610

.09.

910

.210

.510

.910

.610

.911

.211

.611

.311

.611

.912

.412

.012

.312

.713

.2H

I PR

227

244

258

269

255

274

290

302

290

312

329

343

330

355

375

391

371

400

422

440

410

441

466

486

LO P

R10

311

012

012

710

911

612

613

511

312

013

114

011

912

613

814

712

513

214

515

412

913

715

015

9

MB

h51

.852

.956

.660

.550

.651

.755

.259

.149

.450

.553

.957

.648

.249

.252

.656

.245

.846

.850

.053

.442

.443

.346

.349

.5S

/T0.

860.

810.

660.

490.

900.

840.

680.

510.

920.

860.

700.

520.

950.

890.

720.

540.

980.

920.

750.

560.

990.

930.

760.

57D

T26

2522

1726

2522

1826

2522

1827

2622

1826

2522

1725

2420

1615

75K

W4.

004.

084.

204.

324.

284.

374.

504.

644.

544.

634.

774.

924.

764.

865.

015.

174.

955.

065.

215.

385.

125.

225.

395.

56A

MPS

8.2

8.4

8.7

9.0

8.9

9.1

9.4

9.7

9.6

9.9

10.2

10.6

10.3

10.6

10.9

11.3

11.0

11.2

11.6

12.1

11.6

11.9

12.3

12.8

HI P

R22

023

725

026

124

726

628

129

328

130

231

933

332

034

436

437

936

038

840

942

739

842

845

247

2LO

PR

100

106

116

124

106

112

123

131

110

117

127

136

115

123

134

143

121

129

140

149

125

133

145

155

MB

h58

.82

59.9

662

.80

67.0

057

.45

58.5

761

.34

65.4

456

.09

57.1

759

.88

63.8

854

.72

55.7

858

.42

62.3

251

.98

52.9

955

.50

59.2

148

.15

49.0

851

.41

54.8

4S

/T0.

980.

950.

860.

701.

000.

980.

890.

721.

001.

000.

910.

741.

001.

000.

940.

761.

001.

000.

980.

791.

001.

000.

980.

80D

T26

2624

2126

2625

2125

2625

2125

2525

2224

2425

2122

2223

2020

25K

W4.

154.

234.

364.

494.

454.

544.

684.

834.

724.

824.

975.

124.

955.

065.

225.

385.

155.

265.

435.

615.

335.

445.

615.

80A

MPS

8.6

8.8

9.1

9.4

9.3

9.5

9.8

10.2

10.1

10.3

10.7

11.1

10.8

11.1

11.4

11.9

11.5

11.8

12.2

12.6

12.2

12.5

12.9

13.4

HI P

R23

224

926

327

526

028

029

530

829

631

833

635

033

736

238

339

937

940

843

044

941

845

047

549

6LO

PR

105

112

122

130

111

118

129

137

115

123

134

143

121

129

141

150

127

135

148

157

131

140

153

163

MB

h57

.158

.261

.065

.055

.856

.959

.663

.554

.555

.558

.162

.053

.154

.256

.760

.550

.551

.453

.957

.546

.747

.749

.953

.2S

/T0.

940.

910.

820.

660.

970.

940.

850.

691.

000.

960.

870.

711.

000.

990.

900.

731.

001.

000.

930.

761.

001.

000.

940.

76D

T27

2725

2228

2726

2228

2726

2227

2726

2226

2626

2224

2424

2185

1800

KW

4.12

4.20

4.33

4.46

4.42

4.51

4.65

4.79

4.68

4.78

4.93

5.08

4.92

5.02

5.18

5.34

5.11

5.22

5.39

5.56

5.28

5.40

5.57

5.75

AM

PS8.

58.

79.

09.

39.

29.

49.

710

.110

.010

.210

.611

.010

.711

.011

.311

.811

.411

.712

.112

.512

.112

.412

.813

.3H

I PR

229

247

261

272

257

277

292

305

293

315

333

347

333

359

379

395

375

404

426

444

414

446

471

491

LO P

R10

411

112

112

911

011

712

813

611

412

213

314

112

012

813

914

812

613

414

615

613

013

815

116

1

MB

h52

.753

.756

.360

.051

.552

.555

.058

.650

.351

.253

.757

.249

.050

.052

.355

.846

.647

.549

.753

.143

.144

.046

.149

.1S

/T0.

910.

870.

790.

640.

940.

910.

820.

660.

960.

930.

840.

680.

990.

960.

860.

701.

000.

990.

900.

731.

001.

000.

910.

73D

T28

2726

2228

2826

2328

2826

2328

2826

2327

2826

2325

2624

2115

75K

W4.

034.

114.

234.

364.

324.

404.

544.

684.

574.

674.

814.

964.

804.

905.

055.

214.

995.

105.

265.

435.

165.

275.

435.

61A

MPS

8.3

8.5

8.8

9.1

8.9

9.2

9.5

9.8

9.7

10.0

10.3

10.7

10.4

10.7

11.0

11.4

11.1

11.3

11.7

12.2

11.7

12.0

12.4

12.9

HI P

R22

223

925

326

425

026

928

429

628

430

532

333

632

334

836

738

336

439

141

343

140

243

245

747

6LO

PR

101

107

117

125

107

113

124

132

111

118

129

137

116

124

135

144

122

130

142

151

126

134

147

156

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

)H

igh

and

low

pre

ssur

es a

re m

easu

red

at th

e liq

uid

and

suct

ion

serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 36: Goodman Technical Manual Gszvsz_13_seer

36

COOLING PERFORMANCE DATA GSZ130604A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3060

4A*

/AR

*F48

6016

**C

OO

LIN

G O

PER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h55

.957

.963

.4-

54.6

56.5

62.0

-53

.355

.260

.5-

52.0

53.9

59.0

-49

.451

.256

.1-

45.7

47.4

51.9

-S

/T0.

750.

630.

44-

0.78

0.65

0.45

-0.

800.

670.

46-

0.83

0.69

0.48

-0.

860.

720.

50-

0.86

0.72

0.50

-D

T19

1713

-19

1713

-19

1713

-19

1713

-19

1713

-18

1612

-20

25K

W4.

064.

144.

26-

4.35

4.44

4.57

-4.

614.

704.

85-

4.84

4.94

5.09

-5.

035.

145.

30-

5.20

5.31

5.48

-A

MPS

4.6

4.7

4.9

-5.

05.

15.

2-

5.4

5.5

5.7

-5.

75.

86.

0-

6.1

6.2

6.4

-6.

46.

56.

8-

HI P

R22

524

225

5-

252

271

287

-28

730

932

6-

327

352

371

-36

739

541

8-

406

437

461

-LO

PR

102

108

118

-10

811

512

5-

112

119

130

-11

812

513

7-

123

131

143

-12

713

614

8-

MB

h54

.256

.261

.6-

53.0

54.9

60.1

-51

.753

.658

.7-

50.4

52.3

57.3

-47

.949

.754

.4-

44.4

46.0

50.4

-S

/T0.

720.

600.

42-

0.74

0.62

0.43

-0.

760.

640.

44-

0.79

0.66

0.46

-0.

820.

680.

47-

0.82

0.69

0.48

-D

T20

1713

-20

1713

-20

1713

-20

1813

-20

1713

-19

1612

-70

1800

KW

4.03

4.11

4.23

-4.

324.

414.

54-

4.57

4.67

4.81

-4.

804.

905.

05-

4.99

5.10

5.26

-5.

165.

275.

43-

AM

PS4.

64.

74.

8-

4.9

5.0

5.2

-5.

35.

45.

6-

5.7

5.8

6.0

-6.

06.

16.

3-

6.3

6.5

6.7

-H

I PR

222

239

253

-25

026

928

4-

284

306

323

-32

334

836

8-

364

392

413

-40

243

345

7-

LO P

R10

110

711

7-

107

113

124

-11

111

812

9-

116

124

135

-12

213

014

2-

126

134

147

-M

Bh

50.1

51.9

56.8

-48

.950

.755

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47.7

49.5

54.2

-46

.648

.352

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44.2

45.8

50.2

-41

.042

.546

.5-

S/T

0.69

0.58

0.40

-0.

720.

600.

42-

0.74

0.61

0.43

-0.

760.

630.

44-

0.79

0.66

0.46

-0.

800.

660.

46-

DT

2018

13-

2018

13-

2118

13-

2118

14-

2018

13-

1916

12-

1575

KW

3.94

4.02

4.13

-4.

224.

304.

43-

4.47

4.56

4.70

-4.

694.

784.

93-

4.87

4.98

5.13

-5.

035.

145.

30-

AM

PS4.

54.

64.

7-

4.8

4.9

5.1

-5.

25.

35.

5-

5.5

5.6

5.8

-5.

86.

06.

2-

6.2

6.3

6.5

-H

I PR

216

232

245

-24

226

127

5-

275

296

313

-31

433

835

6-

353

380

401

-39

042

044

3-

LO P

R98

104

114

-10

311

012

0-

108

114

125

-11

312

013

1-

118

126

137

-12

213

014

2-

MB

h56

.80

58.4

863

.30

67.9

455

.48

57.1

261

.83

66.3

654

.16

55.7

660

.36

64.7

852

.84

54.4

058

.89

63.2

050

.20

51.6

855

.94

60.0

446

.50

47.8

751

.82

55.6

2S

/T0.

860.

770.

580.

370.

890.

790.

600.

390.

910.

810.

620.

400.

940.

840.

640.

410.

970.

870.

660.

420.

980.

880.

670.

43D

T22

2017

1222

2117

1222

2117

1223

2117

1222

2017

1221

1916

1120

25K

W4.

094.

174.

294.

424.

384.

474.

614.

754.

654.

744.

895.

044.

884.

985.

135.

305.

075.

185.

345.

525.

245.

355.

525.

70A

MPS

4.7

4.8

4.9

5.1

5.0

5.1

5.3

5.5

5.4

5.5

5.7

5.9

5.8

5.9

6.1

6.3

6.1

6.3

6.4

6.7

6.5

6.6

6.8

7.1

HI P

R22

724

425

826

925

527

428

930

229

031

232

934

333

035

537

539

137

139

942

244

041

044

146

648

6LO

PR

103

110

120

127

109

116

126

135

113

120

131

140

119

126

138

147

125

132

145

154

129

137

150

159

MB

h55

.156

.861

.566

.053

.955

.560

.064

.452

.654

.158

.662

.951

.352

.857

.261

.448

.750

.254

.358

.345

.146

.550

.354

.0S

/T0.

820.

730.

550.

360.

850.

760.

570.

370.

870.

780.

590.

380.

900.

800.

610.

390.

930.

830.

630.

400.

940.

840.

630.

41D

T23

2117

1223

2118

1223

2118

1223

2218

1223

2117

1222

2016

1175

1800

KW

4.06

4.14

4.26

4.39

4.35

4.44

4.57

4.72

4.61

4.71

4.85

5.00

4.84

4.94

5.09

5.26

5.03

5.14

5.30

5.47

5.20

5.31

5.48

5.66

AM

PS4.

64.

74.

95.

05.

05.

15.

25.

45.

45.

55.

75.

95.

75.

86.

06.

26.

16.

26.

46.

66.

46.

56.

87.

0H

I PR

225

242

255

266

252

271

287

299

287

309

326

340

327

352

371

387

368

396

418

436

406

437

461

481

LO P

R10

210

811

812

610

811

512

513

311

211

913

013

911

812

513

714

612

313

114

315

212

813

614

815

8

MB

h50

.952

.456

.760

.949

.751

.255

.459

.548

.550

.054

.158

.147

.348

.75

52.8

56.6

45.0

46.3

50.1

53.8

41.7

42.9

46.4

49.8

S/T

0.79

0.70

0.53

0.34

0.82

0.73

0.55

0.36

0.84

0.75

0.57

0.36

0.86

0.77

0.58

0.38

0.90

0.80

0.61

0.39

0.90

0.81

0.61

0.39

DT

2322

1812

2422

1812

2422

1812

2422

1812

2422

1812

2220

1711

1575

KW

3.97

4.05

4.17

4.29

4.25

4.34

4.47

4.61

4.50

4.60

4.74

4.88

4.72

4.82

4.97

5.13

4.91

5.02

5.17

5.34

5.07

5.18

5.35

5.52

AM

PS4.

54.

64.

74.

94.

85.

05.

15.

35.

25.

45.

55.

75.

65.

75.

96.

15.

96.

06.

26.

46.

26.

46.

66.

8H

I PR

218

235

248

258

245

263

278

290

278

299

316

330

317

341

360

376

357

384

405

423

394

424

448

467

LO P

R99

105

115

122

105

111

121

129

109

116

126

134

114

121

133

141

120

127

139

148

124

132

144

153

Sha

ded

area

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CC

A (

TVA

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nditi

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IDB

: Ent

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door

Dry

Bul

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W=T

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.

Downloaded from www.Manualslib.com manuals search engine

Page 37: Goodman Technical Manual Gszvsz_13_seer

37

COOLING PERFORMANCE DATA GSZ130604A*E

XP

AN

DE

D P

ER

FOR

MA

NC

E D

ATA

MO

DEL

: G

SZ1

3060

4A*

/AR

*F48

6016

**C

OO

LIN

G O

PER

ATI

ON

Out

door

Am

bien

t Tem

pera

ture

6575

8595

105

115

Ente

ring

Indo

or W

et B

ulb

Tem

pera

ture

IDB

Air

flow

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

5963

6771

MB

h57

.81

59.0

763

.11

67.4

756

.47

57.7

061

.65

65.9

055

.12

56.3

360

.18

64.3

353

.78

54.9

558

.71

62.7

651

.09

52.2

055

.77

59.6

247

.32

48.3

651

.66

55.2

3S

/T0.

940.

880.

720.

541.

000.

910.

740.

561.

000.

940.

760.

571.

000.

970.

790.

591.

001.

000.

820.

611.

001.

000.

820.

62D

T25

2421

1626

2421

1725

2421

1724

2421

1723

2421

1721

2219

1520

25K

W4.

124.

204.

334.

464.

424.

514.

654.

794.

684.

784.

935.

084.

925.

025.

185.

345.

115.

225.

395.

565.

285.

405.

575.

75A

MPS

4.7

4.8

5.0

5.1

5.1

5.2

5.3

5.5

5.5

5.6

5.8

6.0

5.8

5.9

6.1

6.4

6.2

6.3

6.5

6.7

6.5

6.7

6.9

7.1

HI P

R22

924

726

127

225

727

729

230

529

331

533

334

733

335

937

939

537

540

442

644

441

444

647

149

1LO

PR

104

111

121

129

110

117

128

136

114

122

133

141

120

128

139

148

126

134

146

156

130

138

151

161

MB

h56

.157

.461

.365

.554

.856

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.964

.053

.554

.758

.462

.552

.253

.457

.060

.949

.650

.754

.257

.945

.946

.950

.253

.6S

/T0.

900.

840.

680.

510.

930.

870.

710.

530.

950.

890.

730.

540.

980.

920.

750.

561.

000.

960.

780.

581.

000.

960.

780.

59D

T26

2521

1726

2522

1726

2522

1726

2522

1725

2522

1723

2320

1680

1800

KW

4.09

4.17

4.29

4.42

4.38

4.47

4.61

4.75

4.65

4.74

4.89

5.04

4.88

4.98

5.14

5.30

5.07

5.18

5.34

5.52

5.24

5.35

5.52

5.70

AM

PS4.

74.

84.

95.

15.

05.

15.

35.

55.

45.

55.

75.

95.

85.

96.

16.

36.

16.

36.

46.

76.

56.

66.

87.

1H

I PR

227

244

258

269

255

274

290

302

290

312

329

343

330

355

375

391

371

400

422

440

410

441

466

486

LO P

R10

311

012

012

710

911

612

613

511

312

013

114

011

912

613

814

712

513

214

515

412

913

715

015

9

MB

h51

.852

.956

.660

.550

.651

.755

.259

.149

.450

.553

.957

.648

.249

.252

.656

.245

.846

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.053

.442

.443

.346

.349

.5S

/T0.

860.

810.

660.

490.

900.

840.

680.

510.

920.

860.

700.

520.

950.

890.

720.

540.

980.

920.

750.

560.

990.

930.

760.

57D

T26

2522

1726

2522

1826

2522

1827

2622

1826

2522

1725

2420

1615

75K

W4.

004.

084.

204.

324.

284.

374.

504.

644.

544.

634.

774.

924.

764.

865.

015.

174.

955.

065.

215.

385.

125.

225.

395.

56A

MPS

4.6

4.7

4.8

5.0

4.9

5.0

5.1

5.3

5.3

5.4

5.6

5.8

5.6

5.7

5.9

6.1

6.0

6.1

6.3

6.5

6.3

6.4

6.6

6.9

HI P

R22

023

725

026

124

726

628

129

328

130

231

933

332

034

436

437

936

038

840

942

739

842

845

247

2LO

PR

100

106

116

124

106

112

123

131

110

117

127

136

115

123

134

143

121

129

140

149

125

133

145

155

MB

h58

.82

59.9

662

.80

67.0

057

.45

58.5

761

.34

65.4

456

.09

57.1

759

.88

63.8

854

.72

55.7

858

.42

62.3

251

.98

52.9

955

.50

59.2

148

.15

49.0

851

.41

54.8

4S

/T0.

980.

950.

860.

701.

000.

980.

890.

721.

001.

000.

910.

741.

001.

000.

940.

761.

001.

000.

980.

791.

001.

000.

980.

80D

T26

2624

2126

2625

2125

2625

2125

2525

2224

2425

2122

2223

2020

25K

W4.

154.

234.

364.

494.

454.

544.

684.

834.

724.

824.

975.

124.

955.

065.

225.

385.

155.

265.

435.

615.

335.

445.

615.

80A

MPS

4.7

4.8

5.0

5.2

5.1

5.2

5.4

5.6

5.5

5.6

5.8

6.0

5.9

6.0

6.2

6.4

6.2

6.4

6.6

6.8

6.6

6.7

6.9

7.2

HI P

R23

224

926

327

526

028

029

530

829

631

833

635

033

736

238

339

937

940

843

044

941

845

047

549

6LO

PR

105

112

122

130

111

118

129

137

115

123

134

143

121

129

141

150

127

135

148

157

131

140

153

163

MB

h57

.158

.261

.065

.055

.856

.959

.663

.554

.555

.558

.162

.053

.154

.256

.760

.550

.551

.453

.957

.546

.747

.749

.953

.2S

/T0.

940.

910.

820.

660.

970.

940.

850.

691.

000.

960.

870.

711.

000.

990.

900.

731.

001.

000.

930.

761.

001.

000.

940.

76D

T27

2725

2228

2726

2228

2726

2227

2726

2226

2626

2224

2424

2185

1800

KW

4.12

4.20

4.33

4.46

4.42

4.51

4.65

4.79

4.68

4.78

4.93

5.08

4.92

5.02

5.18

5.34

5.11

5.22

5.39

5.56

5.28

5.40

5.57

5.75

AM

PS4.

74.

85.

05.

15.

15.

25.

35.

55.

55.

65.

86.

05.

85.

96.

16.

46.

26.

36.

56.

76.

56.

76.

97.

1H

I PR

229

247

261

272

257

277

292

305

293

315

333

347

333

359

379

395

375

404

426

444

414

446

471

491

LO P

R10

411

112

112

911

011

712

813

611

412

213

314

112

012

813

914

812

613

414

615

613

013

815

116

1

MB

h52

.753

.756

.360

.051

.552

.555

.058

.650

.351

.253

.757

.249

.050

.052

.355

.846

.647

.549

.753

.143

.144

.046

.149

.1S

/T0.

910.

870.

790.

640.

940.

910.

820.

660.

960.

930.

840.

680.

990.

960.

860.

701.

000.

990.

900.

731.

001.

000.

910.

73D

T28

2726

2228

2826

2328

2826

2328

2826

2327

2826

2325

2624

2115

75K

W4.

034.

114.

234.

364.

324.

404.

544.

684.

574.

674.

814.

964.

804.

905.

055.

214.

995.

105.

265.

435.

165.

275.

435.

61A

MPS

4.6

4.7

4.8

5.0

4.9

5.0

5.2

5.4

5.3

5.4

5.6

5.8

5.7

5.8

6.0

6.2

6.0

6.1

6.3

6.6

6.3

6.5

6.7

6.9

HI P

R22

223

925

326

425

026

928

429

628

430

532

333

632

334

836

738

336

439

141

343

140

243

245

747

6LO

PR

101

107

117

125

107

113

124

132

111

118

129

137

116

124

135

144

122

130

142

151

126

134

147

156

Sha

ded

area

is A

HR

I Rat

ing

Con

ditio

nsID

B: E

nter

ing

Indo

or D

ry B

ulb

Tem

pera

ture

KW

=Tot

al s

yste

m p

ower

AM

PS=o

utdo

or u

nit a

mps

(co

mp.

+fan

)H

igh

and

low

pre

ssur

es a

re m

easu

red

at th

e liq

uid

and

suct

ion

serv

ice

valv

es.

Downloaded from www.Manualslib.com manuals search engine

Page 38: Goodman Technical Manual Gszvsz_13_seer

38

SPLIT SYSTEM HEATING PERFORMANCE M

ODE

L: G

/VSZ

1301

81A*

/ A

R*F

1824

16**

HEA

TIN

G O

PER

ATIO

NO

utdo

or A

mbi

ent T

empe

ratu

re

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h21

.420

.219

.017

.817

.016

.515

.314

.113

.312

.311

.310

.710

.39.

28.

27.

26.

15.

0

DE

LTA

T33

.031

.229

.427

.526

.225

.423

.621

.820

.619

.017

.516

.515

.914

.312

.711

.09.

47.

7

KW

1.68

1.64

1.61

1.58

1.56

1.54

1.51

1.48

1.46

1.42

1.39

1.37

1.36

1.32

1.29

1.26

1.23

1.19

AM

PS7.

36.

76.

35.

95.

75.

65.

35.

04.

84.

64.

34.

24.

24.

03.

73.

53.

22.

9

CO

P3.

733.

603.

463.

303.

193.

122.

962.

792.

682.

532.

392.

292.

222.

041.

861.

661.

461.

22

EER

12.8

12.3

11.8

11.3

10.9

10.7

10.1

9.5

9.2

8.7

8.2

7.8

7.6

7.0

6.3

5.7

5.0

4.2

EXPA

ND

ED P

ERFO

RM

AN

CE

DAT

A

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

268

6328

471

300

7931

686

332

9434

810

236

411

038

111

739

712

541

313

343

014

170

287

6330

471

321

7833

786

354

9437

010

138

710

940

411

742

012

543

713

245

414

075

308

6332

570

343

7836

086

377

9339

410

141

110

942

811

744

512

446

213

247

914

065

259

6327

470

289

7830

586

321

9333

610

135

210

936

811

638

312

439

913

241

513

970

278

6329

471

310

7832

686

342

9435

810

137

410

939

011

740

612

442

213

243

814

075

298

6331

471

331

7934

886

364

9438

110

239

711

041

411

743

012

544

613

346

214

065

252

6226

770

282

7829

785

313

9332

810

134

310

835

811

637

412

438

913

240

513

970

271

6328

671

302

7831

886

333

9434

910

136

510

938

011

739

612

441

213

242

714

075

290

6330

771

323

7933

986

355

9437

110

238

710

940

311

741

912

543

513

245

114

0

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flo

w

Rat

e

37

530

600

680

Downloaded from www.Manualslib.com manuals search engine

Page 39: Goodman Technical Manual Gszvsz_13_seer

39

SPLIT SYSTEM HEATING PERFORMANCEEX

PAN

DED

PER

FOR

MA

NC

E D

ATA

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

MO

DEL:

G/V

SZ13

0241

A* /

AR

*F18

2416

**H

EATI

NG

OPE

RAT

ION

Out

door

Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h28

.927

.425

.824

.123

.022

.320

.719

.116

.715

.414

.213

.412

.911

.610

.39.

07.

66.

3

DE

LTA

T32

.630

.929

.127

.226

.025

.223

.421

.618

.917

.416

.015

.114

.613

.111

.610

.18.

67.

1

KW

2.20

2.15

2.11

2.07

2.04

2.02

1.98

1.94

1.75

1.71

1.67

1.65

1.63

1.59

1.56

1.52

1.48

1.44

AM

PS9.

79.

08.

47.

97.

67.

57.

06.

76.

46.

15.

85.

65.

65.

34.

94.

64.

33.

8

CO

P3.

853.

723.

573.

413.

303.

233.

062.

892.

792.

632.

482.

382.

312.

131.

931.

731.

511.

27

EER

13.2

12.7

12.2

11.7

11.3

11.0

10.5

9.9

9.5

9.0

8.5

8.1

7.9

7.3

6.6

5.9

5.2

4.4

HI P

R40

739

037

535

835

034

333

031

730

329

027

827

226

725

724

723

722

822

0

LO P

R13

512

611

810

810

298

9080

7365

5753

5143

3731

2722

Downloaded from www.Manualslib.com manuals search engine

Page 40: Goodman Technical Manual Gszvsz_13_seer

40

SPLIT SYSTEM HEATING PERFORMANCEEX

PAN

DED

PER

FOR

MA

NC

E D

ATA

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

MO

DEL

: G

/VSZ

1302

41B*

/ AR

*F18

2416

**HE

ATIN

G O

PER

ATIO

NO

utdo

or A

mbi

ent T

empe

ratu

re

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h28

.927

.425

.824

.123

.022

.320

.719

.116

.915

.614

.313

.613

.011

.710

.49.

17.

76.

3

DE

LTA

T33

.531

.729

.827

.926

.625

.824

.022

.119

.518

.016

.615

.715

.113

.612

.010

.58.

97.

3

KW

2.17

2.12

2.08

2.04

2.02

2.00

1.96

1.91

1.80

1.76

1.72

1.70

1.68

1.64

1.60

1.57

1.52

1.49

AM

PS10

.19.

38.

78.

27.

97.

77.

36.

96.

66.

36.

05.

95.

85.

55.

24.

94.

54.

0

CO

P3.

913.

773.

623.

463.

343.

273.

102.

922.

742.

592.

442.

332.

272.

081.

891.

691.

481.

25

EER

13.3

12.9

12.4

11.8

11.4

11.2

10.6

10.0

9.4

8.8

8.3

8.0

7.7

7.1

6.5

5.8

5.1

4.3

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

261

5927

766

293

7330

880

324

8734

095

356

102

372

109

388

116

404

124

420

131

7028

058

297

6631

373

329

8034

687

362

9437

810

239

510

941

111

642

712

344

413

075

301

5831

865

335

7335

280

368

8738

594

402

101

419

108

435

116

452

123

468

130

6525

258

267

6528

372

298

8031

387

329

9434

410

136

010

837

511

539

112

340

613

070

271

5828

766

303

7331

880

334

8735

094

366

101

381

109

397

116

413

123

429

130

7529

159

307

6632

373

340

8035

688

372

9538

810

240

410

942

011

643

612

345

213

165

246

5826

165

276

7229

079

305

8732

094

335

101

351

108

366

115

381

122

396

130

7026

458

280

6629

573

310

8032

687

341

9435

610

137

210

838

711

640

312

341

813

075

283

5929

966

315

7333

180

347

8736

395

379

102

394

109

410

116

426

123

441

130

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flow

R

ate

37

700

800

900

Downloaded from www.Manualslib.com manuals search engine

Page 41: Goodman Technical Manual Gszvsz_13_seer

41

SPLIT SYSTEM HEATING PERFORMANCEEX

PAN

DED

PER

FOR

MA

NC

E D

ATA

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

MO

DEL:

G/V

SZ13

0301

A* /

AR

*F30

301*

*H

EATI

NG

OPE

RAT

ION

Out

door

Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h33

.231

.429

.627

.626

.425

.623

.821

.919

.918

.416

.916

.015

.413

.812

.310

.79.

17.

5

DE

LTA

T29

.327

.726

.124

.423

.322

.621

.019

.317

.616

.214

.914

.113

.612

.210

.89.

48.

06.

6

KW

2.52

2.47

2.42

2.37

2.35

2.32

2.28

2.23

2.37

2.32

2.26

2.23

2.21

2.16

2.11

2.05

2.00

1.95

AM

PS9.

79.

08.

58.

07.

77.

67.

26.

96.

66.

36.

05.

95.

85.

65.

25.

04.

64.

2

CO

P3.

863.

723.

573.

413.

293.

223.

052.

882.

462.

322.

192.

102.

041.

881.

701.

521.

341.

12

EER

13.2

12.7

12.2

11.6

11.3

11.0

10.4

9.8

8.4

7.9

7.5

7.2

7.0

6.4

5.8

5.2

4.6

3.8

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

260

5927

366

286

7330

080

313

8732

795

340

102

354

109

368

116

381

123

395

130

7027

959

293

6630

673

320

8033

487

348

9436

210

137

610

938

911

640

312

341

713

075

299

5831

366

328

7334

280

356

8737

094

384

101

398

108

412

115

426

122

440

130

6525

158

264

6527

772

290

8030

387

316

9432

910

134

210

835

511

536

912

238

212

970

269

5928

366

296

7330

980

323

8733

694

350

101

363

108

376

115

390

123

403

130

7528

959

303

6631

673

330

8034

487

358

9537

110

238

510

939

811

641

212

342

513

065

245

5825

765

270

7228

279

295

8730

894

321

101

333

108

346

115

359

122

372

129

7026

359

276

6628

973

302

8031

587

328

9434

110

135

410

836

711

538

012

239

312

975

282

5929

566

309

7332

280

335

8734

995

362

102

375

109

388

116

401

123

415

130

880

1000

1130

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flo

w

Rat

e

37

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

Downloaded from www.Manualslib.com manuals search engine

Page 42: Goodman Technical Manual Gszvsz_13_seer

42

EXPA

ND

ED P

ERFO

RM

AN

CE

DAT

ASPLIT SYSTEM HEATING PERFORMANCE

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

MO

DEL:

G/V

SZ13

0361

A* /

AR

*F36

4216

**H

EATI

NG

OPE

RAT

ION

Out

door

Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h42

.740

.538

.135

.634

.032

.930

.628

.219

.918

.416

.916

.015

.413

.812

.310

.79.

17.

5

DE

LTA

T31

.029

.427

.725

.924

.723

.922

.220

.514

.513

.412

.311

.611

.210

.08.

97.

86.

65.

4

KW

3.07

3.01

2.96

2.90

2.87

2.85

2.79

2.74

2.82

2.76

2.70

2.67

2.64

2.58

2.52

2.46

2.40

2.35

AM

PS14

.213

.212

.311

.611

.211

.010

.49.

99.

49.

08.

68.

48.

37.

97.

47.

06.

55.

8

CO

P4.

073.

933.

773.

593.

473.

393.

213.

022.

071.

951.

841.

761.

711.

571.

421.

271.

110.

93

EER

13.9

13.4

12.9

12.3

11.8

11.6

11.0

10.3

7.1

6.7

6.3

6.0

5.8

5.4

4.9

4.3

3.8

3.2

HI P

R37

235

634

332

832

031

430

229

027

726

525

424

824

423

522

621

620

920

1

LO P

R13

312

311

510

610

096

8979

7164

5652

5042

3731

2721

Downloaded from www.Manualslib.com manuals search engine

Page 43: Goodman Technical Manual Gszvsz_13_seer

43

SPLIT SYSTEM HEATING PERFORMANCEEX

PAN

DED

PER

FOR

MA

NC

E D

ATA

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

MO

DEL

: G

/VSZ

1303

61B*

/ AR

*F36

4216

**HE

ATIN

G O

PER

ATIO

NO

utdo

or A

mbi

ent T

empe

ratu

re

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h42

.740

.538

.135

.634

.032

.930

.628

.226

.224

.222

.221

.020

.218

.116

.114

.012

.09.

8

Delta

T33

.031

.229

.427

.526

.225

.423

.621

.820

.218

.617

.216

.215

.614

.012

.410

.89.

27.

6

KW

3.09

3.03

2.97

2.90

2.87

2.84

2.79

2.73

2.70

2.64

2.58

2.54

2.52

2.45

2.39

2.33

2.27

2.21

AM

PS14

.013

.012

.111

.411

.010

.810

.29.

79.

38.

88.

48.

28.

17.

77.

26.

86.

35.

6

CO

P4.

053.

913.

763.

593.

473.

393.

213.

032.

842.

682.

532.

422.

352.

161.

971.

761.

541.

30

EER

13.8

13.4

12.8

12.3

11.8

11.6

11.0

10.4

9.7

9.2

8.6

8.3

8.0

7.4

6.7

6.0

5.3

4.4

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

258

5926

966

280

7229

279

303

8631

593

326

9933

810

634

911

336

111

937

212

670

277

5928

866

300

7231

279

323

8633

592

347

9935

810

637

011

238

111

939

312

675

297

5930

965

321

7233

279

344

8535

692

368

9938

010

539

111

240

311

941

512

565

249

5926

065

271

7228

278

293

8530

492

315

9832

610

533

711

234

911

836

012

570

267

5927

966

290

7230

179

312

8532

492

335

9934

610

535

711

236

911

938

012

575

287

5929

866

310

7332

179

333

8634

493

356

9936

710

637

811

239

011

940

112

665

243

5925

365

264

7227

578

286

8529

692

307

9831

810

532

911

134

011

835

112

570

261

5927

266

283

7229

479

305

8531

592

326

9933

710

534

811

235

911

837

012

575

279

5929

166

302

7331

379

324

8633

692

347

9935

810

636

911

238

011

939

112

5

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flow

R

ate

37

1050

1200

1350

Downloaded from www.Manualslib.com manuals search engine

Page 44: Goodman Technical Manual Gszvsz_13_seer

44

SPLIT SYSTEM HEATING PERFORMANCE

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

EXPA

ND

ED P

ERFO

RM

AN

CE

DAT

A M

ODE

L: G

SZ13

0363

A* /

AR*F

3642

16**

HEA

TIN

G O

PER

ATIO

NOu

tdoo

r Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0M

Bh

42.7

40.5

38.1

35.6

34.0

32.9

30.6

28.2

19.9

18.4

16.9

16.0

15.4

13.8

12.3

10.7

9.1

7.5

DE

LTA

T31

.029

.427

.725

.924

.723

.922

.220

.514

.513

.412

.311

.611

.210

.08.

97.

86.

65.

4K

W2.

902.

842.

792.

732.

702.

682.

632.

582.

422.

372.

322.

292.

272.

222.

172.

122.

072.

02A

MPS

9.9

9.2

8.7

8.2

7.9

7.8

7.4

7.0

6.7

6.5

6.2

6.0

6.0

5.7

5.3

5.1

4.7

4.3

CO

P4.

324.

174.

003.

813.

683.

603.

413.

212.

412.

272.

142.

051.

991.

821.

651.

481.

291.

08E

ER14

.814

.213

.713

.012

.612

.311

.611

.08.

27.

87.

37.

06.

86.

25.

75.

04.

43.

7

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

245

5825

864

271

7128

378

296

8530

991

322

9833

510

534

911

236

211

937

512

570

263

5727

664

290

7130

378

316

8432

991

343

9835

610

536

911

138

211

839

612

575

282

5729

664

309

7132

377

337

8435

091

364

9837

710

439

111

140

411

841

712

565

237

5724

964

261

7027

477

286

8429

991

311

9732

410

433

711

134

911

736

212

470

254

5726

764

280

7129

378

305

8431

891

331

9834

410

435

711

136

911

838

212

575

273

5828

665

299

7131

278

325

8533

891

352

9836

510

537

811

239

011

840

312

565

231

5724

364

255

7026

777

279

8429

190

304

9731

610

432

811

134

111

735

312

470

248

5726

064

273

7128

577

298

8431

091

323

9833

510

434

811

136

011

837

312

475

266

5827

964

292

7130

478

317

8533

091

343

9835

510

536

811

238

111

839

312

5

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flo

w

Rat

e

37

1120

1275

1430

Downloaded from www.Manualslib.com manuals search engine

Page 45: Goodman Technical Manual Gszvsz_13_seer

45

SPLIT SYSTEM HEATING PERFORMANCE

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

MO

DEL:

G/V

SZ13

0421

A* /

AR

*F36

421*

*H

EATI

NG

OPE

RAT

ION

Out

door

Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h50

.347

.644

.841

.940

.038

.836

.033

.229

.927

.625

.424

.023

.120

.718

.416

.013

.711

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DE

LTA

T34

.532

.630

.728

.727

.426

.624

.722

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.518

.917

.416

.515

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.212

.611

.09.

47.

7

KW

3.60

3.53

3.46

3.39

3.35

3.32

3.25

3.18

3.24

3.16

3.09

3.05

3.02

2.95

2.88

2.80

2.73

2.66

AM

PS16

.915

.614

.513

.613

.112

.912

.111

.510

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.49.

99.

79.

59.

08.

47.

97.

26.

4

CO

P4.

093.

953.

793.

623.

493.

423.

243.

052.

702.

552.

402.

302.

242.

061.

871.

671.

471.

23

EER

14.0

13.5

12.9

12.4

11.9

11.7

11.1

10.4

9.2

8.7

8.2

7.9

7.6

7.0

6.4

5.7

5.0

4.2

EXPA

ND

ED P

ERFO

RM

AN

CE

DAT

A

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

262

5727

065

279

7328

881

297

8830

696

314

104

323

112

332

120

341

127

350

135

7028

157

290

6529

973

308

8031

688

325

9633

410

434

311

135

211

936

112

737

013

575

301

5731

065

319

7232

88 0

337

8834

696

355

103

364

111

372

119

381

127

390

134

6525

357

261

6527

072

278

8028

788

295

9530

410

331

211

132

111

833

012

633

813

470

271

5728

065

289

7329

780

306

8831

496

323

103

331

111

340

119

348

127

357

134

7529

158

300

6530

873

317

8132

689

334

9634

310

435

111

236

011

936

812

737

713

565

246

5725

564

263

7227

180

279

8828

895

296

103

305

111

313

118

321

126

330

134

7026

557

273

6528

173

290

8029

888

306

9631

510

332

311

133

111

934

012

634

813

475

284

5829

265

301

7330

981

318

8832

696

334

104

343

112

351

119

359

127

367

135

1180

1350

1520

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flo

w

Rat

e

37

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

Downloaded from www.Manualslib.com manuals search engine

Page 46: Goodman Technical Manual Gszvsz_13_seer

46

See

Hea

ting

Mod

e ch

art o

n fo

llow

ing

page

. C

hart

appl

ies

to G

SZ1

3048

1A, G

SZ1

3048

3A &

GS

Z130

484A

.

EXPA

ND

ED P

ERFO

RM

AN

CE

DAT

ASPLIT SYSTEM HEATING PERFORMANCE

MO

DEL:

G/V

SZ13

0481

A* /A

R*F4

8601

**

HEA

TIN

G O

PER

ATIO

NO

utdo

or A

mbi

ent T

empe

ratu

re

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h55

.352

.449

.346

.144

.042

.639

.636

.533

.631

.128

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.026

.023

.320

.718

.015

.412

.6

DE

LTA

T32

.030

.328

.526

.725

.524

.722

.921

.119

.518

.016

.515

.615

.013

.512

.010

.48.

97.

3

KW

3.93

3.87

3.80

3.73

3.69

3.66

3.59

3.52

3.37

3.30

3.23

3.19

3.17

3.10

3.04

2.97

2.90

2.84

AM

PS18

.216

.815

.714

.814

.314

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99.

38.

78.

17.

3

CO

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113.

963.

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233.

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762.

592.

472.

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991.

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551.

30

EER

14.1

13.5

13.0

12.4

11.9

11.7

11.0

10.4

10.0

9.4

8.8

8.5

8.2

7.5

6.8

6.1

5.3

4.4

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

MO

DEL:

GSZ

1304

83A*

/ AR

*F48

6016

**

HEA

TIN

G O

PER

ATIO

NO

utdo

or A

mbi

ent T

empe

ratu

re65

6055

5047

4540

3530

2520

1715

105

0-5

-10

MB

h55

.352

.449

.346

.144

.042

.639

.636

.533

.631

.128

.627

.026

.023

.320

.718

.015

.412

.6D

ELT

A T

32.0

30.3

28.5

26.7

25.5

24.7

22.9

21.1

19.5

18.0

16.5

15.6

15.0

13.5

12.0

10.4

8.9

7.3

KW

3.94

3.87

3.80

3.72

3.68

3.65

3.58

3.51

3.49

3.42

3.34

3.30

3.27

3.20

3.12

3.05

2.98

2.90

AM

PS11

.110

.39.

79.

18.

88.

68.

27.

87.

57.

26.

86.

76.

66.

35.

95.

65.

24.

7C

OP

4.10

3.96

3.80

3.62

3.50

3.42

3.24

3.05

2.82

2.66

2.50

2.39

2.33

2.14

1.94

1.73

1.51

1.27

EER

14.0

13.5

13.0

12.4

11.9

11.7

11.1

10.4

9.6

9.1

8.6

8.2

7.9

7.3

6.6

5.9

5.2

4.3

Downloaded from www.Manualslib.com manuals search engine

Page 47: Goodman Technical Manual Gszvsz_13_seer

47

SPLIT SYSTEM HEATING PERFORMANCEEX

PAN

DED

PER

FOR

MA

NC

E D

ATA

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

Hea

ting

Mod

e c

hart

appl

ies

to G

SZ1

3048

1A, G

SZ1

3048

3A &

GS

Z130

484A

.

MO

DEL:

GSZ

1304

84A*

/ AR

*F48

6016

**

HEA

TIN

G O

PER

ATIO

NOu

tdoo

r Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0M

Bh

55.3

52.4

49.3

46.1

44.0

42.6

39.6

36.5

33.6

31.1

28.6

27.0

26.0

23.3

20.7

18.0

15.4

12.6

DE

LTA

T32

.030

.328

.526

.725

.524

.722

.921

.119

.518

.016

.515

.615

.013

.512

.010

.48.

97.

3K

W3.

943.

873.

803.

733.

683.

653.

583.

513.

493.

423.

343.

303.

273.

203.

123.

052.

982.

90A

MPS

6.1

5.7

5.4

5.1

4.9

4.8

4.6

4.4

4.2

4.0

3.8

3.8

3.7

3.5

3.3

3.2

3.0

2.7

CO

P4.

103.

963.

803.

623.

503.

423.

243.

052.

822.

662.

502.

392.

332.

141.

941.

731.

511.

27E

ER14

.013

.513

.012

.411

.911

.711

.110

.49.

69.

18.

68.

27.

97.

36.

65.

95.

24.

3

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

257

6027

067

283

7429

682

309

8932

396

336

103

349

111

362

118

376

125

389

133

7027

660

289

6730

374

316

8133

089

343

9635

710

337

011

038

411

839

712

541

113

275

296

5931

067

324

7433

881

351

8836

596

379

103

393

110

406

117

420

125

434

132

6524

859

261

6627

374

286

8129

988

312

9532

410

233

711

035

011

736

312

437

613

170

267

6028

067

293

7430

681

319

8833

296

345

103

358

110

371

117

384

125

397

132

7528

660

299

6731

375

326

8234

089

353

9636

610

337

911

139

311

840

612

541

913

265

242

5925

466

267

7427

981

291

8830

495

316

102

329

110

341

117

354

124

367

131

7026

060

273

6728

574

298

8131

188

323

9633

610

334

911

036

211

737

412

438

713

275

279

6029

267

305

7431

882

331

8934

496

357

103

370

111

383

118

396

125

408

132

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flow

R

ate

37

1400

1600

1800

Downloaded from www.Manualslib.com manuals search engine

Page 48: Goodman Technical Manual Gszvsz_13_seer

48

SPLIT SYSTEM HEATING PERFORMANCEEX

PAN

DED

PER

FOR

MA

NC

E D

ATA

MO

DEL:

G/V

SZ13

0601

A* /

AR

*F48

601*

*H

EATI

NG

OPE

RAT

ION

Outd

oor A

mbi

ent T

empe

ratu

re

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0

MB

h72

.969

.065

.060

.758

.056

.252

.248

.144

.941

.438

.136

.034

.731

.127

.624

.020

.516

.8

DE

LTA

T37

.535

.533

.431

.229

.828

.926

.924

.823

.121

.319

.618

.517

.816

.014

.212

.410

.68.

6

KW

5.21

5.11

5.01

4.92

4.86

4.82

4.72

4.63

4.66

4.56

4.46

4.40

4.36

4.26

4.16

4.06

3.96

3.86

AM

PS24

.022

.220

.719

.518

.818

.417

.316

.415

.715

.014

.213

.913

.713

.012

.111

.310

.59.

4

CO

P4.

103.

953.

793.

623.

493.

413.

233.

052.

822.

662.

502.

402.

332.

141.

941.

731.

521.

28

EER

14.0

13.5

13.0

12.4

11.9

11.7

11.1

10.4

9.6

9.1

8.6

8.2

8.0

7.3

6.6

5.9

5.2

4.4

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

See

Hea

ting

Mod

e ch

art o

n fo

llow

ing

page

. C

hart

appl

ies

to G

/VS

Z130

601A

, GS

Z130

603A

& G

SZ1

3060

4A.

MO

DEL:

GSZ

1306

03A*

/AR*

F486

016*

*H

EATI

NG

OPE

RAT

ION

Out

door

Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0M

Bh

72.9

69.0

65.0

60.7

58.0

56.2

52.2

48.1

44.9

41.4

38.1

36.0

34.7

31.1

27.6

24.0

20.5

16.8

DE

LTA

T37

.535

.533

.431

.229

.828

.926

.924

.823

.121

.319

.618

.517

.816

.014

.212

.410

.68.

6K

W5.

215.

115.

014.

914.

864.

814.

724.

624.

654.

554.

454.

394.

344.

244.

144.

043.

943.

84A

MPS

13.1

12.2

11.4

10.7

10.3

10.1

9.5

9.0

8.6

8.2

7.8

7.7

7.6

7.2

6.7

6.3

5.8

5.2

CO

P4.

103.

953.

793.

623.

503.

423.

243.

052.

822.

672.

512.

402.

342.

151.

951.

741.

531.

28E

ER14

.013

.513

.012

.411

.911

.711

.110

.49.

69.

18.

68.

28.

07.

36.

76.

05.

24.

4

Downloaded from www.Manualslib.com manuals search engine

Page 49: Goodman Technical Manual Gszvsz_13_seer

49

SPLIT SYSTEM HEATING PERFORMANCEEX

PAN

DED

PER

FOR

MA

NC

E D

ATA

*Not

e: S

hade

d ar

ea is

AH

RI R

atin

g C

ondi

tions

at 4

7° o

utdo

or a

mbi

ent t

embe

ratu

re

High

pre

ssur

e is

mea

sure

d at

the

liqui

d se

rvic

e va

lve

(the

smal

ler v

alve

).Lo

w p

ress

ure

is m

easu

red

at th

e ga

uge

port

conn

ectio

n.Ca

lcul

atio

ns a

re b

ased

on

nom

inal

CFM

and

70

°F in

door

dry

bul

b.

AMP

S =

Out

door

uni

t am

ps (c

omp.

+fan

)KW

= T

otal

sys

tem

pow

er

Hea

ting

Mod

e c

hart

appl

ies

to G

/VS

Z130

601A

, GS

Z130

603A

& G

SZ1

3060

4A.

MO

DEL:

GSZ

1306

04A*

/AR*

F486

016*

*H

EATI

NG

OPE

RAT

ION

Out

door

Am

bien

t Tem

pera

ture

6560

5550

4745

4035

3025

2017

1510

50

-5-1

0M

Bh

72.9

69.0

65.0

60.7

58.0

56.2

52.2

48.1

44.9

41.4

38.1

36.0

34.7

31.1

27.6

24.0

20.5

16.8

DE

LTA

T37

.535

.533

.431

.229

.828

.926

.924

.823

.121

.319

.618

.517

.816

.014

.212

.410

.68.

6K

W5.

215.

115.

014.

914.

864.

814.

724.

624.

654.

554.

454.

394.

344.

244.

144.

043.

943.

84A

MPS

6.5

6.1

5.7

5.4

5.2

5.1

4.8

4.6

4.4

4.2

4.1

4.0

3.9

3.7

3.5

3.3

3.1

2.8

CO

P4.

103.

953.

793.

623.

503.

423.

243.

052.

822.

672.

512.

402.

342.

151.

951.

741.

531.

28E

ER14

.013

.513

.012

.411

.911

.711

.110

.49.

69.

18.

68.

28.

07.

36.

76.

05.

24.

4

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

tLi

qSu

ctLi

qSu

ctLi

qSu

ctLi

qS

uct

Liq

Suc

t65

257

5827

966

301

7332

481

346

8836

995

391

103

414

110

436

118

459

125

482

133

7027

658

299

6632

373

346

8036

988

392

9541

610

343

911

046

211

748

512

550

913

275

296

5832

065

345

7336

980

393

8741

795

441

102

465

110

489

117

513

125

537

132

6524

858

270

6529

172

313

8033

487

356

9537

810

240

010

942

211

744

412

446

613

270

267

5828

965

312

7333

480

357

8837

995

402

102

424

110

446

117

469

125

491

132

7528

659

310

6633

373

357

8138

088

403

9642

610

345

011

047

311

849

612

551

913

265

242

5826

365

284

7230

580

326

8734

795

368

102

390

109

411

117

433

124

454

131

7026

058

282

6530

473

326

8034

888

370

9539

210

241

311

043

511

745

712

447

913

275

279

5830

266

325

7334

881

370

8839

395

416

103

438

110

461

118

483

125

506

132

Pres

sure

s sh

own

are

for m

ost p

opul

ar m

atch

indo

or u

nit W

ITH

NO

FR

OS

T O

N O

UTD

OO

R C

OIL

. Due

to fa

ctor

s lik

e ai

rflow

, cha

rge,

indo

or c

oil &

fros

t, pr

essu

res

will

var

y si

gnifi

cant

ly. L

iqui

d (s

mal

l) se

rvic

e va

lve

pres

sure

s sh

ould

be

± 20

psi

g &

suc

tion

(acc

ess

port)

pre

ssur

es s

houl

d be

± 5

psi

g of

the

valu

es li

sted

in th

is c

hart

.

6252

22

HE

ATI

NG

MO

DE

4247

5767

Indo

or R

etur

n A

ir Dr

y Bu

lb

Tem

pera

ture

F)

1727

Liqu

id V

alve

& C

ompr

esso

r Suc

tion

Pres

sure

Out

door

Air

Dry

Bul

b Te

mpe

ratu

re (º

F)32

Indo

or

Air

Flow

R

ate

37

1580

1800

2030

Downloaded from www.Manualslib.com manuals search engine

Page 50: Goodman Technical Manual Gszvsz_13_seer

50

PERFORMANCE DATAPERFORMANCE TEST

All data based upon listed indoor dry bulb temperature. .00 inches external static pressure on coil of outdoor section. Indoorair cubic feet per minute (CFM) as listed in the Performance Data Sheets:

If conditions vary from this, results will change as follows:1. As indoor dry bulb temperatures increase, a slight increase will occur in indoor air temperature drop (Delta T). Low

and high side pressures and power will not change.

2. As indoor CFM decreases, a slight increase will occur in indoor temperature drop (Delta T). A slight decrease willoccur in low and high side pressures and power.

A properly operating unit should be within plus or minus 2 degrees of the subcooling value shown in the Heat PumpSpecifications.

A properly operating unit should be within plus or minus 3 degrees of the typical (Delta T) value shown.

A properly operating unit should be within plus or minus 7 PSIG of the HI PR shown.

A properly operating unit should be within plus or minus 3 PSIG of the LO PR shown.

A properly operating unit should be within plus or minus 3 Amps of the typical value shown.

NOTE: Pressures are measured at the liquid and suction service valve ports.

Downloaded from www.Manualslib.com manuals search engine

Page 51: Goodman Technical Manual Gszvsz_13_seer

HIG

H V

OLT

AG

E!

DIS

CO

NN

ECT

ALL

PO

WE

R B

EFO

RE

SER

VIC

ING

OR

INS

TALL

ING

TH

ISU

NIT

. M

ULT

IPLE

PO

WER

SO

UR

CES

MAY

BE

PR

ESEN

T. F

AIL

UR

E TO

DO

SO

MAY

CA

US

E PR

OP

ERTY

DA

MA

GE,

PER

SON

AL

INJU

RY

OR

DE

ATH

.

WIRING DIAGRAMS

51Wiring is subject to change, always refer to the wiring diagram on the unit for the most up-to-date wiring.

G/VSZ130[18-60]1[A/B]*

US

E N

.E.C

. CLA

SS

2 W

IRE

NO

TES

:1)

TO

IND

OO

R U

NIT

LO

W V

OLT

AG

E

TER

MIN

AL B

LOC

K &

IND

OO

R

TH

ER

MO

STA

T.2)

STA

RT

AS

SIST

FA

CTO

RY

EQ

UIP

PE

D W

HEN

RE

QU

IRED

.3)

CR

ANKC

ASE

HEA

TER

MAY

BE

F

AC

TOR

YO

R F

IELD

INS

TALL

ED.

CO

MP

ALTERNATE DOUBLEPOLE CONTACTOR ONLY

IO

T1

C

MAIN

R

AUX

5

S

SR

SA

21

RCC

F

SC

T2

C

L1L2

(IF U

SE

D)

CH

C

F

MAIN

AUXIO C

M

LPS

VE

ND

OR

: GO

OD

MAN

PR

INT

SHO

P

0

1/06

0140

R00

029P

OR

BL/P

KB

L

RD

O Y CR

NO

TE 1

CO

LOR

CO

DE

BK

-----

-----

-----

BLA

CK

BL/

PK

------

----B

LUE

/PIN

K ST

RIP

EB

R---

------

-----

- BR

OW

NO

R --

-----

-----

--- O

RA

NG

EP

U---

------

-----

- PU

RPL

ER

D --

-----

-----

--- R

EDW

H--

-----

------

- WH

ITE

YL

-----

------

---- Y

ELLO

WY

L/PK

-----

----Y

ELL

OW

/PIN

K S

TRIP

E

COM

PONE

NT C

ODE

C --

-----

------

-- C

ON

TAC

TOR

CH

-----

-----

--- C

RAN

KCA

SE H

EAT

ERC

M --

-----

-----

OU

TDO

OR

FA

N M

OTO

RC

OM

P ---

-----

CO

MPR

ESS

OR

DC

-----

-----

--- D

EFR

OS

T C

ON

TRO

LD

FT --

-----

---- D

EFR

OS

T TH

ER

MO

STA

TH

PS-

-----

------

-HIG

H P

RES

SU

RE

SWIT

CH

HV

DR

-----

--- H

IGH

VO

LTAG

E D

EFR

OS

T R

ELA

YIO

----

-----

-----

INTE

RN

AL O

VER

LOA

DLP

S --

-----

-----

LO

W P

RES

SUR

E S

WIT

CH

LVD

R --

-----

-- LO

W V

OLT

AG

E D

EFR

OS

T R

ELA

YLV

JB --

-----

--- L

OW

VO

LTAG

EJU

NC

TIO

N B

OX

RC

CF

-----

----

RU

N C

APA

CIT

OR

FO

R C

OM

PR

ESS

OR

& F

ANR

VC

-----

-----

- RE

VER

SIN

G V

ALVE

CO

ILS

A ---

-----

-----

STA

RT

AS

SIST

SC

-----

-----

--- S

TAR

T C

APA

CIT

OR

FO

R C

OM

PR

ES

SOR

(OP

TIO

NA

L)SR

-----

------

--ST

ART

RE

LAY

FOR

CO

MP

RES

SO

R (O

PTIO

NAL

)

CO

NTR

OLS

SH

OW

N W

ITH

TH

ER

MO

STAT

IN 'O

FF'P

OS

ITIO

N.

T1 L1

T2 L2

ALTE

RN

ATE

DO

UB

LEP

OLE

CO

NTA

CTO

R

OU

TDO

OR

PO

WE

RS

UPP

LYS

EE

RAT

ING

PLA

TE

WIR

ING

CO

DE

FAC

TOR

Y W

IRIN

GH

IGH

VO

LTA

GE

LOW

VO

LTA

GE

OP

TIO

NAL

HIG

H V

OLT

AG

E

FIEL

D W

IRIN

GH

IGH

VO

LTA

GE

LOW

VO

LTA

GE

RD

S

A(IF

US

ED)

NO

TE 2

LVJB

CON

TROL

BO

X

SC

RD

BL

L2T2

L1T1

C

BK

BK

BK

RD

RD

BK

BL

YL/

PK

YL

BL

RD

RC

CF

FC

HER

MY

L YL

YL

BRR

D

PU

YL

RD

SR

5 21

BK

YL

BL

IO

CMAU

X

MAI

N

BKB

R

PU

YL

C

R

S

RD

BK

AUX

MA

INCO

MP

BK

DFT

YL/P

KY

L/P

KLP

S

EQU

IPM

ENT

GR

OU

ND

US

E C

OPP

ERC

ON

DU

CTO

RS

ON

LY

DF1

DF2

HVD

R

CH

(IF U

SE

D)

NO

TE 3

W2

LVD

R

O

R

O

OY

C

RVC

W2

IND

OO

RP

OW

ER

SU

PP

LY

RC

DFT

CY

DC

RD

FT

RVC

BK

RD

RD

BK

CH

(IF U

SE

D)

NO

TE 3

BK

BK

BK

WH

W2

DC

OR

CY

OO

BL Y

LB

KR

D

RR

RD

LVD

R

W2

WH

DFT RD

H V D R

DF2 DF1

BKBK

HP

S

BL/

PK

HP

SB

L/P

K

BL/P

K

YL/

PK

Downloaded from www.Manualslib.com manuals search engine

Page 52: Goodman Technical Manual Gszvsz_13_seer

WIRING DIAGRAMS

52

HIG

H V

OLT

AG

E!

DIS

CO

NN

ECT

ALL

PO

WE

R B

EFO

RE

SER

VIC

ING

OR

INS

TALL

ING

TH

ISU

NIT

. M

ULT

IPLE

PO

WER

SO

UR

CES

MAY

BE

PR

ESEN

T. F

AIL

UR

E TO

DO

SO

MAY

CA

US

E PR

OP

ERTY

DA

MA

GE,

PER

SON

AL

INJU

RY

OR

DE

ATH

.

US

E N

.E.C

. CLA

SS 2

WIR

E

NO

TES

:1)

TO

IND

OO

R U

NIT

LO

W V

OLT

AG

E

TE

RM

INA

L B

LOC

K &

IND

OO

R

TH

ER

MO

STA

T.2)

STA

RT

AS

SIS

T FA

CT

OR

Y

EQ

UIP

PE

D W

HE

N R

EQ

UIR

ED

.

CO

MP

ALTERNATE DOUBLEPOLE CONTACTOR ONLY

IO

T1

C

MAIN

R

AUX

5

S

SR

SA

21

RC

CF

SC

T2

C

L1L2

(IF U

SED

)

CH

C

F

MAI

N

AUXIO C

M

014

0R00

171-

A

OR

BL/

PK

BL

RD

O Y CR

COLO

R C

OD

EB

K --

-----

------

-- B

LAC

KB

L/PK

----

------

BLU

E/P

INK

STR

IPE

BR

-----

-----

-----

BR

OW

NG

R--

------

------

-- G

REE

NO

R --

-----

------

-- O

RA

NG

EP

U --

-----

------

-- P

UR

PLE

RD

-----

------

---- R

ED

WH

-----

-----

---- W

HIT

EY

L ---

-----

------

- YE

LLO

WY

L/P

K----

-----

-- Y

ELLO

W/P

INK

STR

IPE

COM

PONE

NT C

OD

EC

----

----

-----

-- C

ON

TAC

TOR

CA

DM

----

----

CO

MFO

RT

ALE

RT

DIA

GN

OS

TIC

MO

DU

LEC

CR

----

-----

-- C

OM

PR

ES

SO

R C

ON

TAC

TOR

RE

LAY

CH

---

----

------

CR

AN

KC

AS

E H

EAT

ER

CH

S --

----

----

- CR

AN

KC

ASE

HEA

TER

SW

ITC

HC

M -

----

-----

-- O

UTD

OO

R F

AN

MO

TOR

CM

R -

----

----

- CO

ND

EN

SE

R M

OTO

R R

ELA

YC

OM

P --

-----

- C

OM

PR

ES

SO

RC

S --

----

----

--- C

OM

PR

ES

SO

R S

OLE

NO

IDD

C -

----

-----

--- D

EFR

OS

T C

ON

TRO

LD

FT --

----

-----

DE

FRO

ST

TH

ER

MO

STA

TD

T ---

----

-----

- DIS

CHAR

GE

TH

ER

MO

STA

TH

PS

----

----

--- H

IGH

PR

ESS

UR

E S

WIT

CH

HV

DR

-----

---

HIG

H V

OLT

AGE

DE

FRO

ST

RE

LAY

IO --

-----

----

--- I

NTE

RN

AL

OV

ERLO

ADLP

S

----

----

-- LO

W P

RE

SS

UR

E S

WIT

CH

LVD

R -

-----

--- L

OW

VO

LTA

GE

DEF

RO

ST

RE

LAY

LVJB

----

----

- LO

W V

OLT

AG

E JU

NC

TIO

N B

OX

RC

CF

----

----

- RU

N C

APA

CIT

OR

FO

R C

OM

PRE

SS

OR

& F

AN

RV

C --

----

----

- REV

ERS

ING

VA

LVE

CO

ILS

A ---

-----

----

- STA

RT

ASS

IST

SC

----

----

-----

STA

RT

CA

PAC

ITO

R F

OR

CO

MPR

ES

SO

R (O

PTI

ON

AL)

SR

----

----

-----

STA

RT

RE

LAY

FOR

CO

MPR

ESS

OR

(OP

TIO

NA

L)

CO

NTR

OLS

SH

OW

N W

ITH

TH

ER

MO

STA

T IN

'OFF

' PO

SIT

ION

.

OU

TDO

OR

PO

WE

R S

UPP

LYS

EE R

ATIN

G P

LATE

WIR

ING

CO

DE

FAC

TOR

Y W

IRIN

GH

IGH

VO

LTAG

ELO

W V

OLT

AGE

OP

TIO

NA

L H

IGH

VO

LTAG

E

FIE

LDW

IRIN

GH

IGH

VO

LTAG

ELO

W V

OLT

AGE

LVJB

CO

NTR

OL

BOX

SC

RD

BL

L2T2

L1T1

C

BK

BK

BK

RD R

D

BL

RD

RC

CF

FC

HER

MY

L YL

YL

BR

RDPU

YL

RD

SR

5 21

BK

YL

BL

IO CM

AUX

MA

IN

BR

PU

YL

C

R

S

RD

BK

AUX

MA

INC

OM

P

YL/

PK

LPS

EQ

UIP

ME

NT

GR

OU

ND

USE

CO

PPE

RC

ON

DU

CTO

RS

ON

LY

DF1

DF2

CH

LVD

R

R

CN

T

IND

OO

R P

OW

ER

SU

PP

LY

DFT

C

Y

DC

DFT

WH

W2

DC

YO

O-R

V

BL/

PK

R

WH

LVD

R

DFT

OR

HVD

R

BL/

PK

HP

SO

C

RVC

W2

R

HV

DR

YL/

PK

DF2 DF1

BK

CC

R

R-D

FT

WC

NT

C-R

VC

CR

-PS

1P

S2

RD

RD

RD

BK

YL

BK Y

L/P

KBL Y

L/P

K

BL

YL

CH

S

R-D

FT

O-R

VC

-RV

LPS

PS

2R

-PS

1 O

WC

HP

S

CC

R

}FIEL

D L

OW

VOLT

AG

EC

ON

NEC

TIO

NS

RD

BK

CH

CH

SBK

RD

RD

S

A(IF

US

ED

)N

OTE

2

DFT

RVC

RD

BK

BK

BL/

PK

BK

GR

Y

CA

DM

CAD

M

T1 L1

T2 L2

ALT

ER

NAT

ED

OU

BLE

POLE

CO

NTA

CTO

R

CAD

M

Wiring is subject to change, always refer to the wiring diagram on the unit for the most up-to-date wiring.

GSZ130181AC, GSZ130241BB, GSZ130301AD, GSZ130361BBGSZ130421AC, GSZ130481AC, GSZ130601AC

VSZ130181AB, VSZ130241BB, VSZ130301AC, VSZ130361BBVSZ130421AB, VSZ130481AB, VSZ130601AB

Downloaded from www.Manualslib.com manuals search engine

Page 53: Goodman Technical Manual Gszvsz_13_seer

HIG

H V

OLT

AG

E!

DIS

CO

NN

ECT

ALL

PO

WE

R B

EFO

RE

SER

VIC

ING

OR

INS

TALL

ING

TH

ISU

NIT

. M

ULT

IPLE

PO

WER

SO

UR

CES

MAY

BE

PR

ESEN

T. F

AIL

UR

E TO

DO

SO

MAY

CA

US

E PR

OP

ERTY

DA

MA

GE,

PER

SON

AL

INJU

RY

OR

DE

ATH

.

WIRING DIAGRAMS

53

GSZ130181AD, GSZ130241[B*/C*], GSZ130301A[E/F], GSZ130361BBVSZ130181A[C/D], VSZ130241B[B/C], VSZ130301A[D/E],

VSZ130361B[B/C], VSZ130421A[C/D], VSZ130481A[C/D], VSZ130601AC

Wiring is subject to change, always refer to the wiring diagram on the unit for the most up-to-date wiring.

US

E N

.E.C

. CLA

SS 2

WIR

E

NO

TES

:1)

TO

IND

OO

R U

NIT

LO

W V

OLT

AGE

TER

MIN

AL

BLO

CK

& IN

DO

OR

TH

ERM

OST

AT.

2) S

TART

AS

SIS

T FA

CTO

RY E

QU

IPPE

D W

HE

N R

EQU

IRE

D.

3) U

SE

CO

PPE

R C

OND

UC

TOR

ON

LY.

4) C

RA

NKC

ASE

HEA

TER

& C

RAN

KCAS

E H

EAT

ER

SWIT

CH

AR

E FA

CTO

RY

INST

ALL

ED O

PTI

ON

5) 4

0VA

MIN

IMU

M T

RAN

SFO

RM

ER IS

REQ

UIR

ED.

6) C

OM

MO

N S

IDE

OF

TRA

NSF

OR

MER

MU

ST B

E G

RO

UN

DED

.

CO

MP

ALTERNATE DOUBLEPOLE CONTACTOR ONLY

IO

T1

C

MAIN

R

AUX

5

S

SR

SA

21

RC

CF

SC

T2

C

L1L2

(IF U

SED

)N

OTE

2CH

CF

MAI

N

AUXIO CM

0140

R00

171

- B

OR

BL/

PKBLR

D

O Y CR

COLO

RC

ODE

BK --

------

------

- BLA

CK

BL/P

K --

------

-- BL

UE/

PINK

STR

IPE

BR --

------

------

- BR

OW

NG

R---

------

-----

-- G

REE

NO

R --

------

------

- OR

ANG

EPU

-----

------

---- P

UR

PLE

RD --

------

------

- RED

WH

------

-----

--- W

HIT

EYL

-----

-----

-----

YELL

OW

YL/P

K---

------

-- YE

LLO

W/P

INK

STR

IPE

CO

MP

ON

ENT

CO

DE

C --

------

------

- CO

NTA

CTO

RC

AD

M --

------

CO

MFO

RT

ALE

RT

DIA

GN

OS

TIC

MO

DU

LEC

CR

-----

-----

- CO

MPR

ESS

OR

CO

NTA

CTO

R R

ELAY

CH

-----

------

-- C

RAN

KC

ASE

HE

ATE

RC

HS

----

------

- CR

AN

KCA

SE

HE

ATER

SW

ITC

HC

M --

------

----

OU

TDO

OR

FA

N M

OTO

RC

MR

-----

-----

CO

ND

ENSE

R M

OTO

R R

ELA

YC

OM

P --

-----

- CO

MPR

ES

SOR

CS

----

------

--- C

OM

PR

ESS

OR

SO

LEN

OID

DC

-----

------

-- D

EFR

OS

T C

ON

TRO

LD

FT --

-----

---- D

EFR

OS

T TH

ERM

OST

ATD

T ---

-----

-----

DIS

CH

AR

GE

THER

MO

STA

TH

PS

-----

------

HIG

H P

RE

SSU

RE

SW

ITC

HH

VD

R --

-----

- H

IGH

VO

LTA

GE

DEF

RO

ST R

ELAY

IO --

-----

------

- IN

TER

NA

L O

VER

LOA

DLP

S -

------

--- L

OW

PR

ES

SUR

E S

WIT

CH

LVD

R --

------

- LO

W V

OLT

AG

E D

EFR

OS

T R

ELAY

LVJB

---

------

LO

W V

OLT

AGE

JU

NC

TIO

N B

OX

RC

CF

-----

---- R

UN

CA

PAC

ITO

R F

OR

CO

MPR

ESS

OR

& F

ANR

VC --

-----

---- R

EVER

SIN

G V

ALV

E C

OIL

SA

------

------

- STA

RT

AS

SIS

TS

C --

-----

------

STA

RT

CA

PAC

ITO

R F

OR

CO

MPR

ESS

OR

(OPT

ION

AL)

SR

----

------

--- S

TAR

T R

ELA

Y FO

R C

OM

PRE

SSO

R (O

PTIO

NA

L)C

ON

TRO

LS S

HO

WN

WIT

H T

HE

RM

OST

AT IN

'OFF

' PO

SIT

ION

.

OU

TDO

OR

PO

WE

R S

UP

PLY

SEE

RAT

ING

PLA

TE

WIR

ING

CODE

FACT

OR

Y W

IRIN

GH

IGH

VOLT

AG

ELO

W V

OLT

AGE

OPT

ION

AL H

IGH

VO

LTAG

E

FIEL

D W

IRIN

GH

IGH

VOLT

AG

ELO

W V

OLT

AGE

LVJB

CO

NTR

OL

BO

X

SC

RD

BL

L2T2

L1T1

C

BK

BK

BK

RD R

D

BL

RD

RCC

F

FC

HE

RM

YL

YL

YL

BR

RDPU

YL

RD

SR

5 21

BK

YL

BL

IO CM

AU

X

MA

IN

BR

PU

YLC

R

S

RD

BK

AU

X

MA

INC

OM

P

YL/

PK

LPS

EQ

UIP

ME

NT

GR

OU

ND

DF1

DF2

CH

LVD

R

R

CNT

IND

OO

R P

OW

ER

SU

PP

LY

DFT

C

Y

DC

DFT

WH

W2

DC

BL/

PK

HPS

O

C

RV

C

W2

R

HV

DR

YL/

PK

BK

RD

BKP

UB

K

BL

BL

PU

CH

S

R-D

FT

O-R

VC

-RV

LPS

PS2

R-P

S1 O

WC

HP

S

CC

R

}FIE

LD L

OW

VOLT

AGE

CO

NN

ECTI

ONS

RD

BK

CH

CH

S

RD

SA

(IF

US

ED

)N

OT

E 2

DFT

RV

C

RD

BK

BL/

PK

BK

GR

Y

T1 L1

T2 L2

ALT

ERNA

TEDO

UBL

E P

OLE

CO

NTA

CTO

R

R

DF1

DF2

0

0-RV

C-RV

W

LVDR

HVDR

CCR CNT

0

DFT

R-DF

T

R-PS

1

Y

Y

CR C C

PS2

YL/

PK

YL/

PK

RD

RD

BL/

PKW

HO

R

BK

BK

SEE

NO

TE 4

SE

E N

OTE

5 &

6

SE

E N

OT

E 4

SEE

NO

TE

3

BK

BKR

D

NO

TE

1

IO

Downloaded from www.Manualslib.com manuals search engine

Page 54: Goodman Technical Manual Gszvsz_13_seer

WIRING DIAGRAMS

54

HIG

H V

OLT

AG

E!

DIS

CO

NN

ECT

ALL

PO

WE

R B

EFO

RE

SER

VIC

ING

OR

INS

TALL

ING

TH

ISU

NIT

. M

ULT

IPLE

PO

WER

SO

UR

CES

MAY

BE

PR

ESEN

T. F

AIL

UR

E TO

DO

SO

MAY

CA

US

E PR

OP

ERTY

DA

MA

GE,

PER

SON

AL

INJU

RY

OR

DE

ATH

.

Wiring is subject to change, always refer to the wiring diagram on the unit for the most up-to-date wiring.

GSZ130[36-60][3,4]A*

USE

N.E

.C. C

LASS

2 WIR

E

NO

TES:

1) TO

IND

OO

R U

NIT

LOW

VOLT

AGE

TE

RM

INAL

BLO

CK

& IN

DO

OR

TH

ER

MO

STA

T.

LPS

01

40R

0016

2 RE

V. B

OR

BLRD

OB

L/PK

CR

NO

TE 1

CO

LOR

CO

DE

BK --

------

-----

-- BLA

CK

BL/P

K ---

-----

-- B

LUE

/ PIN

K STR

IPE

BR

-----

------

----

BRO

WN

OR

------

----

----- O

RA

NG

E

PU --

------

-----

-- PU

RPL

ER

D --

-----

------

-- R

ED

W

H ---

-----

------

WH

ITE

YL --

-----

-----

--- Y

ELL

OW

YL/P

K---

-----

----Y

ELLO

W/P

INK S

TRIP

E

CO

MP

ON

ENT C

OD

EC

-----

-----

----- C

ON

TAC

TOR

CH

-----

------

-- C

RA

NK

CAS

E H

EATE

RC

M ---

-----

---- O

UTD

OO

R FA

N M

OTO

RC

OM

P ---

-----

CO

MPR

ES

SOR

DC

----

-----

---- D

EFR

OS

T CO

NTR

OL

DFT

------

-----

DEF

RO

ST T

HER

MO

STAT

HP

S---

-----

-----

HIG

H P

RES

SUR

E S

WIT

CH

FC ---

-----

-----

FAN

CAP

AC

ITO

RH

VD

R ---

----- H

IGH

VO

LTA

GE

DEF

RO

ST R

ELAY

IO ---

-----

-----

- INTE

RN

AL O

VER

LOAD

LP

S ---

-----

---- L

OW

PRE

SSU

RE S

WIT

CH

LVD

R ---

-----

- LO

W VO

LTA

GE

DE

FRO

ST R

ELA

YLV

JB ---

----

--- LO

W VO

LTA

GE

JU

NC

TIO

N BO

XR

VC --

------

--- R

EVE

RS

ING

VALV

E C

OIL

CO

NTR

OLS

SHO

WN

WIT

H TH

ER

MO

STA

T IN

'OFF

' PO

SIT

ION

.

WIR

ING

CO

DE

FAC

TOR

Y WIR

ING

HIG

H VO

LTAG

ELO

W V

OLT

AG

EO

PTIO

NAL

HIG

H VO

LTAG

E FI

ELD

WIR

ING

HIG

H VO

LTAG

ELO

W V

OLT

AG

E

LVJB

CO

NTR

OL B

OX

IO

CMAU

X

MA

IN

BK

BR

PU

BK

DFT

YL/

PKYL

/PK

LPS

EQ

UIP

MEN

T GR

OU

ND

USE

CO

PPER

C

ON

DU

CTO

RS O

NLY

CH

(IF U

SED)

W2

LVD

R

O

R

O

O

C

RV

C

W2

IND

OO

R PO

WE

RS

UP

PLY

RC

DFT

CY

DC

RD

FT

RV

CBK

RDR

D

BKC

H(IF

USE

D)

BK

WH

W2

DC

OR

CY

OO

BL

YLBK

RD

RR

RD

LVD

R

W2

WH

DFT RD

H V D R

DF2 DF1

BKBK

CO

MP

T1

C

T3

T2

FC

T3

C

L1L3

MAIN

AUXIO C

M

BK

T3

CO

MP

T1

L2C

T2

OU

TDO

OR

POW

ER S

UP

PLY

SEE

RAT

ING

PLA

TE

T1

T2

RD

YL

RD

BKB

K

C

T1 L1

T2 L2

T3 L3YL

RD

YL

FC

PU

BR

RD

DF1

DF2H

VDR

BK

BL

YL/P

K

BL

BK

BK

HPS

HPS

BL/P

K

BL/P

K YL/P

K

BL/P

K

Y

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Page 55: Goodman Technical Manual Gszvsz_13_seer

HIG

H V

OLT

AG

E!

DIS

CO

NN

ECT

ALL

PO

WE

R B

EFO

RE

SER

VIC

ING

OR

INS

TALL

ING

TH

ISU

NIT

. M

ULT

IPLE

PO

WER

SO

UR

CES

MAY

BE

PR

ESEN

T. F

AIL

UR

E TO

DO

SO

MAY

CA

US

E PR

OP

ERTY

DA

MA

GE,

PER

SON

AL

INJU

RY

OR

DE

ATH

.

WIRING DIAGRAMS

55

Wiring is subject to change, always refer to the wiring diagram on the unit for the most up-to-date wiring.

GSZ130[36-60][3,4]A*

USE

N.E

.C. C

LAS

S 2

WIR

E

NO

TES:

1) T

O IN

DO

OR

UN

IT L

OW

VO

LTA

GE

T

ER

MIN

AL

BLO

CK

& IN

DO

OR

T

HE

RM

OST

AT.

LPS

0140

R00

162-

C

OR

BLRD

OB

L/PK

CR

NO

TE 1

COLO

RC

ODE

BK

----

-----

-----

- BLA

CK

BL/

PK

----

----

-- B

LUE

/ PIN

K S

TRIP

EB

R --

-----

-----

--- B

RO

WN

OR

----

----

-----

-- O

RA

NG

EP

U --

-----

-----

--- P

UR

PLE

RD

----

-----

-----

- RE

DW

H --

----

-----

--- W

HIT

EYL

----

-----

----

-- Y

ELL

OW

YL/P

K--

-----

-----

YEL

LOW

/PIN

K S

TRIP

E

CO

MP

ON

ENT

CO

DE

C --

-----

------

-- C

ON

TAC

TOR

CH

-----

------

-- C

RAN

KCA

SE H

EAT

ER

CM

-----

-----

-- O

UTD

OO

R F

AN M

OTO

RC

OM

P ---

-----

CO

MPR

ESSO

RD

C --

-----

------

DE

FRO

ST C

ON

TRO

LD

FT --

-----

---- D

EFR

OST

TH

ERM

OS

TAT

HPS

-----

------

--HIG

H P

RE

SSU

RE

SW

ITC

HFC

-----

-----

--- F

AN

CA

PAC

ITO

RH

VDR

-----

--- H

IGH

VO

LTAG

E D

EFR

OST

REL

AYIO

----

-----

-----

INTE

RN

AL

OV

ERLO

AD

LPS

----

-----

--- L

OW

PR

ESSU

RE

SW

ITC

HLV

DR

----

-----

LOW

VO

LTAG

E D

EFR

OST

RE

LAY

LVJB

----

------

LO

W V

OLT

AG

E J

UN

CTI

ON

BO

XR

VC

-----

-----

- RE

VER

SIN

G V

ALV

E C

OIL

CO

NTR

OLS

SH

OW

N W

ITH

TH

ER

MO

STA

T IN

'OFF

' PO

SITI

ON

.

WIR

ING

CO

DEFA

CTO

RY

WIR

ING

HIG

H V

OLT

AG

ELO

W V

OLT

AG

EO

PTI

ON

AL

HIG

H V

OLT

AG

E

FIE

LD W

IRIN

GH

IGH

VO

LTA

GE

LOW

VO

LTA

GE

LVJB

CO

NTR

OL

BO

X

IO

CMAU

X

MA

IN

BK

BR

PU

BK

DFT

YL/P

KY

L/PK

LPS

EQ

UIP

ME

NT

GR

OU

ND

US

E C

OP

PE

RC

ON

DU

CTO

RS

ON

LY

CH

(IF U

SED

)

W2

LVD

R

O

R

O

O

C

RVC

W2

IND

OO

R P

OW

ER

SU

PP

LY

RC

DFT

CY

DC

RD

FT

RV

CBK

RDR

D

BKC

H(IF

USE

D)

BK

WH

W2

DC

OR

CY

OO

BLYL

BKR

D

RR

RD

LVD

R

W2

WH

DFT

RD

H V D R

DF2 DF1

BKBK

CO

MP

T1

C

T3

T2

FC

T3

C

L1L3

MAIN

AUX

IO CM

BK

T3

CO

MP

T1

L2C

T2

OU

TDO

OR

PO

WE

R S

UP

PLY

SE

E R

ATIN

G P

LATE

T1

T2

RD

YL

RD

BK

BK

C

T1 L1

T2 L2

T3 L3YL

RD

YL

FC

PU

BR

RD

DF1

DF

2HV

DR

BK

BL

YL/P

K

BL

BKBK

HP

S

HP

S

BL/

PK

BL/P

K YL/

PK

BL/P

K

Y

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