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Motors for hazardous areas New cast iron motors in sizes 160-180

Motors for hazardous areas New cast iron motors in sizes ...vpromelectro.ru/file_upload/01b28b86073a37ae8be04b8349b28888.pdfABB / Motors for hazardous areas / New cast iron motors

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  • Motors for hazardous areas New cast iron motors in sizes 160-180

  • 2 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Cast iron motors for hazardous areas New design for sizes 160 to 180

    With the new product platform for hazardous area motors ABB is now ready to meet all the future challenges of energy efficiency requirements, and to meet and exceed our customer expectations concerning motor reliability, lifecycle costs and availability.

    ABB motors for hazardous area fulfill the IE2 efficiency classes according to IEC 60034-30; 2008 and EPAct requirements.

    The new product generation of hazardous area motors is based on the modular product platform, which has been developed in response to the market demands. Special attention has been paid to bearing and winding temperatures together with optimising the individual part design keeping a strong environmetal focus in mind. Design results in increased reliability and longer lifetime reducing the overall lifecycle costs.

    Designed with extensive features and benefits.

    The new generation M3_P 160 to 180 are replacing the existing products with the features :

    n Adapted to market demand

    n Fulfilling requirements of high efficiency, resulting in low lifecycle costs and an environmetally friendly motor

    n Designed with a reduced bearing and winding temperature - increased lifetime

    n Improved surface treatment, corrosion category C3M as standard

    n Modular design for improved availability and easy modifications

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 3

    Rating platesRating plates in the new motors are double the size compared to the old design.

    The upper part of the plate includes the main rating plate data and the lower part can be used for frequency converter data, lubrication or item number data.

    The rating plate is located as standard on the top of the motor beside the main terminal box. There are four additional places for mounting the rating plate. The rating plate is in stainless steel.

    Technical information and documentationCertificates, dimension drawings and datasheets are available on the Internet at www.abb.com/motors&generatores.

    The technical data on the new motor sizes presented in this leaflet will be included in the main product catalogue for motors for hazardous areas to be published later in 2009.

  • 4 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Ordering informationWhen placing an order, please state the following minimum data in the order, as in example.

    The product code of the motor is composed in accordance with the following example.

    Explanation of the product code:

    Positions 1 to 43GJP = Totally enclosed flameproof motor Ex d with cast iron frame3GKP = Totally enclosed flameproof motor Ex de with cast iron frame3GHP = Totally enclosed increased safety motor Ex e with cast iron

    frame3GGP = Totally enclosed non-sparkiing motor Ex nA with cast iron

    frame

    Positions 5 and 6

    IEC-frame16 = 16018 = 180

    Position 7 Speed (Pole pairs)1 = 2 poles2 = 4 poles3 = 6 poles4 = 8 poles5 = 10 poles6 = 12 poles7 = >12 poles

    Position 8 to 10Serial number

    Position 11- (dash)

    Motor size

    A B C D. E. F. G

    M3JP 160 MLC 3GJP 161 033 - A D H 003 etc. 1 2 3 4 5 6 7 8 9 10 11 12 13 14

    A Motor typeB Motor sizeC Product code D Mounting arrangement code E Voltage and frequency code F Generation codeG Variant codes

    Position 12Mounting arrangementA = Foot-mounted, top-mounted terminal boxR = Foot-mounted, terminal box RHS seen from D-endL = Foot-mounted, terminal box LHS seen from D-endB = Flange-mounted, large flangeC = Flange-mounted, small flange (sizes 71 to 112)H = Foot- and flange-mounted, terminal box top-mountedJ = Foot- and flange-mounted, small flange with tapped holesS = Foot- and flange-mounted, terminal box RHS seen from D-endT = Foot- and flange-mounted, terminal box LHS seen from D-endV = Flange-mounted, special flangeF = Foot- and flange-mounted. Special flange

    Position 13Voltage and frequency codeSee table below

    Position 14 Generation code = H

    The product code must be, if needed, followed by variant codes.

    Code letters for supplementing the product code - single speed motors

    Code letter for voltage and frequency

    Direct start or, with ∆-connection, also Y/∆-start

    Motor S D H E F T U X

    size 50Hz 60 Hz 50 Hz 60 Hz 50 Hz 50 Hz 60 Hz 50 Hz 50 Hz 50 Hz Frame sizes 71 to 132 on request160-450 220, 230 V∆ - 380, 400, 415 V∆ 440 V∆ 415V∆ 500 V∆ - 500 VY 660 V∆ 690 V∆ connection or 380,400,415 VY 440 VY 660, 690 VY - - - - - - - frequency, 690 V maximum

    Code letters for supplementing the product code - two speed motorsCode letter for voltage (50 Hz)Motorsize A S B D H E X160-450 220 V 230 V 380 V 400 V 415 V 500 V Other rated voltage, connection or frequency, 690 V maximum

    Motor type M3JP 160 MLCPole number 2Mounting arrangement (IM code) IM B3 (IM 1001) Rated output 18.5 kWProduct code 3GJP161033-ADH Variant codes if needed

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 5

    Flameproof motors Ex d/Ex de IIB/IIC T4, M3JP/M3KP 160-180Technical data for TEFC cage three phase motorsFor other frame sizes, see catalogue 9AKK104006, EN 12-2008IP 55 – IC 411 – Insulation class F, temperature rise class B IE2 efficiency class according to IEC 60034-30; 2008

    1) Temperature rise class F2) The output exceeds one step higher output than the basic with rated output

    acc. to CENELEC.3) Nominal power lower than CENELEC+1.

    The two bullets in the product code indicate choice of mounting arrangement, voltage and frequency (see ordering information page)

    Efficiency values are given according to both IEC/EN 60034-2-1; 2007 and IEC 60034-2; 1996. Please note that the values are not comparable without knowing the testing method. ABB has calculated the iEC/EN 60034-2-1; 2007 efficiency values acc. to indirect method, stray losses (additional losses) from measuring.

    Output

    kW

    Motor type

    M3JP/M3KP

    Product code

    3GJP / 3GKP

    Speed

    r/min

    Efficiency Efficiency Power

    factor

    cos j

    100%

    Current Torque Moment

    of inertia

    J = 1/4

    kgm2

    Weight kg Sound

    pressure

    level LP

    dB(A)

    IEC 60034-

    2-1: 2007

    IEC 60034-

    2;1996

    IN Is TN Ts Tmax

    Full

    load

    100%

    3/4

    load

    75%

    Full

    load

    100%

    3/4

    load

    75%

    A IN Nm TN TN Ex d Ex de

    3000 r/min = 2-poles 400 V 50 Hz CENELEC design

    11 160 MLA 161 410-••H 2936 90.1 90.3 90.5 90.4 0.87 20 6.7 36 2.6 3.1 0.043 213 207 71

    15 160 MLB 161 420-••H 2934 90.9 91.2 91.3 91.3 0.88 28 7.2 49 3 3.5 0.052 222 216 71

    18.5 160 MLC 161 430-••H 2934 91.9 92.4 92.5 92.6 0.90 33 7.5 60 2.8 3.4 0.062 233 227 71

    22 180 MLA 181 410-••H 2938 91.8 92.3 92.3 92.5 0.90 39 6.9 72 2.5 3.1 0.089 265 259 71

    High-output design

    22 160 MLD 161 440-••H 2929 91.4 91.8 92.1 92.1 0.90 39 7.2 72 2.7 3.4 0.07 239 233 77

    30 180 MLB 181 420-••H 2943 92.7 93.2 93.2 93.5 0.90 53 6.8 97 2.3 3.1 0.13 298 292 78

    37 2) 180 MLC 181 430-••H 2947 92.9 93.2 93.2 93.2 0.89 65 7.9 120 2.9 3.6 0.13 298 292 78

    1500 r/min = 4-poles 400 V 50 Hz CENELEC design

    11 160 MLC 162 430-••H 1470 91.4 91.8 91.5 91.7 0.82 22.5 6.8 71 2.9 3.3 0.096 232 226 62

    15 160 MLE 162 450-••H 1467 91.9 92.4 92.0 92.4 0.83 30 7.3 98 3 3.4 0.13 255 249 62

    18.5 180 MLA 182 410-••H 1474 91.8 92.2 92.4 92.5 0.82 36 7.1 120 2.6 3.1 0.19 277 271 62

    22 180 MLB 182 420-••H 1471 91.9 92.6 92.6 93.0 0.82 42 6.8 143 2.5 3 0.21 285 279 62

    High-output design

    18.5 160 MLF 162 460-••H 1469 91.7 92.1 91.9 92.2 0.83 36.5 7.8 120 3.2 3.5 0.13 255 249 68

    22 160 MLG 162 470-••H 1466 90.8 91.1 91.3 91.2 0.81 44.5 7.9 143 3.3 3.6 0.13 255 249 68

    30 1) 180 MLC 182 430-••H 1473 92.3 92.5 92.7 92.6 0.81 59 7.1 194 2.8 3.2 0.248 304 298 66

    1000 r/min = 6-poles 400 V 50 Hz CENELEC design

    7.5 160 MLA 163 410-••H 965 87.2 88.4 88.5 89.1 0.81 15.5 6.5 74 1.9 3 0.088 226 220 57

    11 160 MLB 163 420-••H 972 90.3 91 90.5 91.0 0.80 23 7.6 108 2.3 3.5 0.126 253 247 65

    15 180 MLB 183 420-••H 972 90.6 91.2 91.1 91.4 0.81 31 6.8 147 1.9 3.2 0.25 304 298 58

    High-output design

    14 1) 3) 160 MLC 163 430-••H 969 89.2 89.4 90.0 90.2 0.75 31 7.9 138 2.8 3.9 0.126 253 247 64

    18.5 180 MLC 183 430-••H 975 90.1 90.2 90.2 89.9 0.74 41 7.2 181 2 3.2 0.25 304 298 61

    750 r/min = 8-poles 400 V 50 Hz CENELEC design

    4 160 MLA 164 410-••H 722 86.7 87.4 86.6 87.1 0.71 9.5 5.4 53 1.7 2.8 0.133 251 245 59

    5.5 160 MLB 164 420-••H 723 86.8 87.6 87.2 89.0 0.71 13.2 5.8 73 1.9 3.1 0.133 251 245 53

    7.5 160 MLC 164 430-••H 718 85.5 86.6 86.6 87.3 0.70 18.4 5.7 100 2.1 3.1 0.133 251 245 55

    11 180 MLB 184 420-••H 724 88.4 89.1 89.8 89.9 0.73 24.5 5.7 145 1.7 2.7 0.245 298 292 63

    600 r/min = 10-poles 400 V 50 Hz CENELEC design

    3 160 MLA 165 410-••H 577 80.7 80.7 81.2 80.8 0.60 9.2 4.1 50 1.5 2.3 0.088 226 220 66

    4 160 MLB 165 420-••H 576 81.1 81.7 82.3 81.5 0.59 12.8 4.1 66 1.5 2.3 0.126 251 245 66

    5.5 1) 160 MLC 165 430-••H 567 79.3 82.1 80.0 80.6 0.61 16.8 3.8 93 1.4 2 0.126 253 247 66

    7.5 180 MLB 185 420-••H 582 86.8 86.7 87.9 88.0 0.62 20.5 5 123 1.4 2.7 0.245 298 292 62

    500 r/min = 12-poles 400 V 50 Hz CENELEC design

    2.2 160 MLB 166 420-••H 480 79.3 78.3 79.4 78.0 0.52 8.2 3.7 44 1.5 2.7 0.133 251 245 66

    3 160 MLC 166 430-••H 477 79.2 78.6 79.9 78.9 0.53 11 3.8 60 1.6 2.7 0.133 251 245 66

    4 160 MLD 166 440-••H 473 78.9 78.7 80.1 79.4 0.54 14.6 3.7 81 1.6 2.6 0.133 251 245 66

    5.5 180 MLB 186 420-••H 481 81.4 82.8 82.4 81.4 0.56 18.5 3.5 109 1.1 2.1 0.245 298 292 60

  • 6 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Increased safety motors Exe II T3, M3HP 160-180Technical data for TEFC three phase motors, acc. to ENFor other frame sizes, see catalogue 9AKK104006, EN 12-2008IP 55 – IC 411 – Insulation class F, temperature rise class B IE2 efficiency class according to IEC 60034-30; 2008

    The two bullets in the product code indicate choice of mounting arrangement, voltage and frequency (see ordering information page)

    Efficiency values are given according to both IEC/EN 60034-2-1; 2007 and IEC 60034-2; 1996. Please note that the values are not comparable without knowing the testing method. ABB has calculated the iEC/EN 60034-2-1; 2007 efficiency values acc. to indirect method, stray losses (additional losses) from measuring.

    Output kW

    Motor type M3HP

    Product code 3GHP

    Speed r/min

    Efficiency

    Power factor cos j100%

    Current Torque Time tE sec

    Moment of inertia J = 1/4 kgm2

    Weight kg

    Sound pressure level LP dB(A)IEC

    60034- 2-1: 2007

    IEC 60034-2;1996

    IN Is TN Ts Tmax

    Full load 100%

    Full load 100%

    A IN Nm TN TN

    3000 r/min = 2-poles 400 V 50 Hz CENELEC design

    8 160 MLB 161 420-••H 2939 88.8 89.9 0.91 14.5 7.5 26 2.8 3.5 12 0.052 216 69

    11 160 MLC 161 430-••H 2940 91.1 92.0 0.92 19 7.6 36 2.6 3.4 10 0.062 227 69

    12.5 160 MLD 161 440-••H 2935 92.1 92.5 0.92 22 7.8 41 2.8 3.4 7 0.07 233 69

    15 180 MLB 181 420-••H 2949 91.1 91.8 0.91 26 7.1 49 2.2 3 12 0.13 292 69

    18 180 MLC 181 430-••H 2952 92.8 93.5 0.91 31 7.3 58 2.4 3.2 9 0.13 292 69

    1500 r/min = 4-poles 400 V 50 Hz CENELEC design

    11 160 MLC 162 430-••H 1463 90.9 91.0 0.84 21 7.2 72 2.6 3.1 15 0.096 226 62

    15 160 MLE 162 450-••H 1468 91.9 91.9 0.83 29 8.1 98 3.1 3.6 6 0.13 249 68

    17 180 MLB 182 420-••H 1471 91.3 92.6 0.84 33 6.6 110 2.3 2.9 12 0.21 279 66

    20 180 MLC 182 430-••H 1476 92.6 93.1 0.82 38 7.4 129 2.7 3.1 8 0.248 298 66

    1000 r/min = 6-poles 400 V 50 Hz CENELEC design

    6.6 160 MLA 163 410-••H 973 87.5 89.4 0.79 13.8 7.3 65 2.1 3.4 14 0.088 220 57

    7.5 160 MLB 163 420-••H 971 89.6 90.2 0.76 16 6.9 77 2.4 3.6 19 0.126 247 65

    11 160 MLC 163 430-••H 971 89.8 90.3 0.76 23 7.3 108 2.6 3.8 7 0.126 247 65

    14 180 MLB 183 420-••H 975 90.5 91.4 0.79 28.5 7.6 137 1.8 3 16 0.25 298 67

    750 r/min = 8-poles 400 V 50 Hz CENELEC design

    3.5 160 MLA 164 410-••H 730 85.6 87.3 0.68 9 6.1 46 1.8 3.2 20 0.133 245 55

    4.8 160 MLB 164 420-••H 730 86.2 87.8 0.67 12 6.6 63 2 3.4 20 0.133 245 55

    6.6 160 MLC 164 430-••H 721 85.1 86.8 0.71 16 6 87 1.8 3 19 0.133 245 55

    9.7 180 MLB 184 420-••H 726 88.4 89.8 0.74 21.5 5.9 127 1.7 2.8 19 0.245 292 63

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 7

    Non-sparking motors Ex nA, M3GP 160-180Technical data for TEFC three phase motorsFor other frame sizes, see catalogue 9AKK104006, EN 12-2008IP 55 – IC 411 – Insulation class F, temperature rise class B IE2 efficiency class according to IEC 60034-30; 2008

    1) Temperature rise class F2) The output exceeds one step higher output than the basic with rated output

    acc. to CENELEC.3) Nominal power lower than CENELEC+1.

    The two bullets in the product code indicate choice of mounting arrangement, voltage and frequency (see ordering information page)

    Efficiency values are given according to both IEC/EN 60034-2-1; 2007 and IEC 60034-2; 1996. Please note that the values are not comparable without knowing the testing method. ABB has calculated the iEC/EN 60034-2-1; 2007 efficiency values acc. to indirect method, stray losses (additional losses) from measuring.

    Output

    kW

    Motor type

    M3GP

    Product code

    3GGP

    Speed

    r/min

    Efficiency Efficiency Power

    factor

    cos j

    100%

    Current Torque Mo-

    ment

    of

    inertia

    J = 1/4

    kgm2

    Weight

    kg

    Sound

    pressure

    level LP

    dB(A)

    IEC 60034-

    2-1: 2007

    IEC 60034-

    2;1996

    IN Is TN Ts Tmax

    Full

    load

    100%

    3/4 load

    75%

    Full

    load

    100%

    3/4

    load

    75%

    A IN Nm TN TN

    3000 r/min 400 V 50 Hz High-output design

    11 160 MLA 161 410-••H 2936 90.1 90.3 90.5 90.4 0.87 20 6.7 36 2.6 3.1 0.043 207 71

    15 160 MLB 161 420-••H 2934 90.9 91.2 91.3 91.3 0.88 28 7.2 49 3 3.5 0.052 216 71

    18.5 160 MLC 161 430-••H 2934 91.9 92.4 92.5 92.6 0.90 33 7.5 60 2.8 3.4 0.062 227 71

    22 180 MLA 181 410-••H 2938 91.8 92.3 92.3 92.5 0.90 39 6.9 72 2.5 3.1 0.089 259 71

    High-output design

    22 160 MLD 161 440-••H 2929 91.4 91.8 92.1 92.1 0.90 39 7.2 72 2.7 3.4 0.07 233 77

    30 180 MLB 181 420-••H 2943 92.7 93.2 93.2 93.5 0.90 53 6.8 97 2.3 3.1 0.13 292 78

    37 2) 180 MLC 181 430-••H 2947 92.9 93.2 93.2 93.2 0.89 65 7.9 120 2.9 3.6 0.13 292 78

    1500 r/min = 4-poles 400 V 50 Hz CENELEC design

    11 160 MLC 162 430-••H 1470 91.4 91.8 91.5 91.7 0.82 22.5 6.8 71 2.9 3.3 0.096 226 62

    15 160 MLE 162 450-••H 1467 91.9 92.4 92.0 92.4 0.83 30 7.3 98 3 3.4 0.13 249 62

    18.5 180 MLA 182 410-••H 1474 91.8 92.2 92.4 92.5 0.82 36 7.1 120 2.6 3.1 0.19 271 62

    22 180 MLB 182 420-••H 1471 91.9 92.6 92.6 93.0 0.82 42 6.8 143 2.5 3 0.21 279 62

    High-output design

    18.5 160 MLF 162 460-••H 1469 91.7 92.1 91.9 92.2 0.83 36.5 7.8 120 3.2 3.5 0.13 249 68

    22 160 MLG 162 470-••H 1466 90.8 91.1 91.3 91.2 0.81 44.5 7.9 143 3.3 3.6 0.13 249 68

    30 1) 180 MLC 182 430-••H 1473 92.3 92.5 92.7 92.6 0.81 59 7.1 194 2.8 3.2 0.248 298 66

    1000 r/min = 6-poles 400 V 50 Hz CENELEC design

    7.5 160 MLA 163 410-••H 965 87.2 88.4 88.5 89.1 0.81 15.5 6.5 74 1.9 3 0.088 220 57

    11 160 MLB 163 420-••H 972 90.3 91.0 90.5 91.0 0.80 23 7.6 108 2.3 3.5 0.126 247 65

    15 180 MLB 183 420-••H 972 90.6 91.2 91.1 91.4 0.81 31 6.8 147 1.9 3.2 0.25 298 58

    High-output design

    14 1)2) 160 MLC 163 430-••H 969 89.2 89.4 90.0 90.2 0.75 31 7.9 138 2.8 3.9 0.126 247 64

    18.5 180 MLC 183 430-••H 975 90.1 90.2 90.2 89.9 0.74 41 7.2 181 2 3.2 0.25 298 61

    750 r/min = 8-poles 400 V 50 Hz CENELEC design

    4 160 MLA 164 410-••H 722 86.7 87.4 86.6 87.1 0.71 9.5 5.4 53 1.7 2.8 0.133 245 59

    5.5 160 MLB 164 420-••H 723 86.8 87.6 87.2 89.0 0.71 13.2 5.8 73 1.9 3.1 0.133 245 53

    7.5 160 MLC 164 430-••H 718 85.5 86.6 86.6 87.3 0.70 18.4 5.7 100 2.1 3.1 0.133 245 55

    11 180 MLB 184 420-••H 724 88.4 89.1 89.8 89.9 0.73 24.5 5.7 145 1.7 2.7 0.245 292 63

    600 r/min = 10-poles 400 V 50 Hz CENELEC design

    3 160 MLA 165 410-••H 577 80.7 80.7 81.2 80.8 0.6 9.2 4.1 50 1.5 2.3 0.088 220 66

    4 160 MLB 165 420-••H 576 81.1 81.7 82.3 81.5 0.59 12.8 4.1 66 1.5 2.3 0.126 245 66

    5.5 1) 160 MLC 165 430-••H 567 79.3 82.1 80.0 80.6 0.61 16.8 3.8 93 1.4 2 0.126 247 66

    7.5 180 MLB 185 420-••H 582 86.8 86.7 87.9 88.0 0.62 20.5 5.0 123 1.4 2.7 0.245 292 62

    500 r/min = 12-poles 400 V 50 Hz CENELEC design

    2.2 160 MLB 166 420-••H 480 79.3 78.3 79.4 78.0 0.52 8.2 3.7 44 1.5 2.7 0.133 245 66

    3 160 MLC 166 430-••H 477 79.2 78.6 79.9 78.9 0.53 11 3.8 60 1.6 2.7 0.133 245 66

    4 160 MLD 166 440-••H 473 78.9 78.7 80.1 79.4 0.54 14.6 3.7 81 1.6 2.6 0.133 245 66

    5.5 180 MLB 186 420-••H 481 81.4 82.8 82.4 81.4 0.56 18.5 3.5 109 1.1 2.1 0.245 292 60

  • 8 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Dust ignition proof motors, M3GP 160-180Technical data for TEFC three phase motors, Category 2D - T = 125°C - IP 65For other frame sizes, see catalogue 9AKK104006, EN 12-2008IP 55 – IC 411 – Insulation class F, temperature rise class B IE2 efficiency class according to IEC 60034-30; 2008

    1) Temperature rise class F2) The output exceeds one step higher output than the basic with rated output

    acc. to CENELEC.3) Nominal power lower than CENELEC+1.

    Note: when ordering ordering, the following variant code has to be added: 453 DIP/Ex tD acc. to ATEX directive 94/9/EC, T=125°C, IP 65

    The two bullets in the product code indicate choice of mounting arrangement, voltage and frequency (see ordering information page)

    Efficiency values are given according to both IEC/EN 60034-2-1; 2007 and IEC 60034-2; 1996. Please note that the values are not comparable without knowing the testing method. ABB has calculated the iEC/EN 60034-2-1; 2007 efficiency values acc. to indirect method, stray losses (additional losses) from measuring.

    Output kW

    Motor type M3GP

    Product code 3GGP

    Speed r/min

    Efficiency Efficiency Power factor cos j 100%

    Current Torque Mo-ment of inertia J = 1/4 kgm2

    Weight kg

    Sound pressure level LP dB(A)

    IEC 60034- 2-1: 2007

    IEC 60034-2;1996

    IN Is TN Ts Tmax

    Full load 100%

    3/4 load 75%

    Full load 100%

    3/4 load 75%

    A IN Nm TN TN

    3000 r/min = 2-poles 400 V 50 Hz CENELEC design

    11 160 MLA 161 410-••H453 2936 90.1 90.3 90.5 90.4 0.87 20 6.7 36 2.6 3.1 0.043 207 71

    15 160 MLB 161 420-••H453 2934 90.9 91.2 91.3 91.3 0.88 28 7.2 49 3 3.5 0.052 216 71

    18.5 160 MLC 161 430-••H453 2934 91.9 92.4 92.5 92.6 0.90 33 7.5 60 2.8 3.4 0.062 227 71

    22 180 MLA 181 410-••H453 2938 91.8 92.3 92.3 92.5 0.90 39 6.9 72 2.5 3.1 0.089 259 71

    High-output design

    22 160 MLD 161 440-••H453 2929 91.4 91.8 92.1 92.1 0.90 39 7.2 72 2.7 3.4 0.07 233 77

    30 180 MLB 181 420-••H453 2943 92.7 93.2 93.2 93.5 0.90 53 6.8 97 2.3 3.1 0.13 292 78

    37 2) 180 MLC 181 430-••H453 2947 92.9 93.2 93.2 93.2 0.89 65 7.9 120 2.9 3.6 0.13 292 78

    1500 r/min = 4-poles 400 V 50 Hz CENELEC design

    11 160 MLC 162 430-••H453 1470 91.4 91.8 91.5 91.7 0.82 22.5 6.8 71 2.9 3.3 0.096 226 62

    15 160 MLE 162 450-••H453 1467 91.9 92.4 92.0 92.4 0.83 30 7.3 98 3 3.4 0.13 249 62

    18.5 180 MLA 182 410-••H453 1474 91.8 92.2 92.4 92.5 0.82 36 7.1 120 2.6 3.1 0.19 271 62

    22 180 MLB 182 420-••H453 1471 91.9 92.6 92.6 93.0 0.82 42 6.8 143 2.5 3 0.21 279 62

    High-output design

    18.5 160 MLF 162 460-••H453 1469 91.7 92.1 91.9 92.2 0.83 36.5 7.8 120 3.2 3.5 0.13 249 68

    22 160 MLG 162 470-••H453 1466 90.8 91.1 91.3 91.2 0.81 44.5 7.9 143 3.3 3.6 0.13 249 68

    30 1) 180 MLC 182 430-••H453 1473 92.3 92.5 92.7 92.6 0.81 59 7.1 194 2.8 3.2 0.248 298 66

    1000 r/min = 6-poles 400 V 50 Hz CENELEC design

    7.5 160 MLA 163 410-••H453 965 87.2 88.4 88.5 89.1 0.81 15.5 6.5 74 1.9 3 0.088 220 57

    11 160 MLB 163 420-••H453 972 90.3 91 90.5 91.0 0.80 23 7.6 108 2.3 3.5 0.126 247 65

    15 180 MLB 183 420-••H453 972 90.6 91.2 91.1 91.4 0.81 31 6.8 147 1.9 3.2 0.25 298 58

    High-output design

    14 1)3) 160 MLC 163 430-••H453 969 89.2 89.4 90.0 90.2 0.75 31 7.9 138 2.8 3.9 0.126 247 64

    18.5 180 MLC 183 430-••H453 975 90.1 90.2 90.2 89.9 0.74 41 7.2 181 2 3.2 0.25 298 61

    750 r/min = 8-poles 400 V 50 Hz CENELEC design

    4 160 MLA 164 410-••H453 722 86.7 87.4 86.6 87.1 0.71 9.5 5.4 53 1.7 2.8 0.133 245 59

    5.5 160 MLB 164 420-••H453 723 86.8 87.6 87.2 89.0 0.71 13.2 5.8 73 1.9 3.1 0.133 245 53

    7.5 160 MLC 164 430-••H453 718 85.5 86.6 86.6 87.3 0.70 18.4 5.7 100 2.1 3.1 0.133 245 55

    11 180 MLB 184 420-••H453 724 88.4 89.1 89.8 89.9 0.73 24.5 5.7 145 1.7 2.7 0.245 292 63

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 9

    Dust ignition proof motors, M3GP 160-180Technical data for TEFC three phase motors, Category 3D - T = 125°C - IP 55For other frame sizes, see catalogue 9AKK104006, EN 12-2008IP 55 – IC 411 – Insulation class F, temperature rise class B IE2 efficiency class according to IEC 60034-30; 2008

    Output kW

    Motor type M3GP

    Product code 3GGP

    Speed r/min

    Efficiency Efficiency Power factor cos j 100%

    Current Torque Mo-ment of inertia J = 1/4 kgm2

    Weight kg

    Sound pressure level LP dB(A)

    IEC 60034- 2-1: 2007

    IEC 60034-2;1996

    IN Is TN Ts Tmax

    Full load 100%

    3/4 load 75%

    Full load 100%

    3/4 load 75%

    A IN Nm TN TN

    3000 r/min = 2-poles 400 V 50 Hz CENELEC design

    11 160 MLA 161 410-••H452 2936 90.1 90.3 90.5 90.4 0.87 20 6.7 36 2.6 3.1 0.043 207 71

    15 160 MLB 161 420-••H452 2934 90.9 91.2 91.3 91.3 0.88 28 7.2 49 3 3.5 0.052 216 71

    18.5 160 MLC 161 430-••H452 2934 91.9 92.4 92.5 92.6 0.90 33 7.5 60 2.8 3.4 0.062 227 71

    22 180 MLA 181 410-••H452 2938 91.8 92.3 92.3 92.5 0.90 39 6.9 72 2.5 3.1 0.089 259 71

    High-output design

    22 160 MLD 161 440-••H452 2929 91.4 91.8 92.1 92.1 0.90 39 7.2 72 2.7 3.4 0.07 233 77

    30 180 MLB 181 420-••H452 2943 92.7 93.2 93.2 93.5 0.90 53 6.8 97 2.3 3.1 0.13 292 78

    37 2) 180 MLC 181 430-••H452 2947 92.9 93.2 93.2 93.2 0.89 65 7.9 120 2.9 3.6 0.13 292 78

    1500 r/min = 4-poles 400 V 50 Hz CENELEC design

    11 160 MLC 162 430-••H452 1470 91.4 91.8 91.5 91.7 0.82 22.5 6.8 71 2.9 3.3 0.096 226 62

    15 160 MLE 162 450-••H452 1467 91.9 92.4 92.0 92.4 0.83 30 7.3 98 3 3.4 0.13 249 62

    18.5 180 MLA 182 410-••H452 1474 91.8 92.2 92.4 92.5 0.82 36 7.1 120 2.6 3.1 0.19 271 62

    22 180 MLB 182 420-••H452 1471 91.9 92.6 92.6 93.0 0.82 42 6.8 143 2.5 3 0.21 279 62

    High-output design

    18.5 160 MLF 162 460-••H452 1469 91.7 92.1 91.9 92.2 0.83 36.5 7.8 120 3.2 3.5 0.13 249 68

    22 160 MLG 162 470-••H452 1466 90.8 91.1 91.3 91.2 0.81 44.5 7.9 143 3.3 3.6 0.13 249 68

    30 1) 180 MLC 182 430-••H452 1473 92.3 92.5 92.7 92.6 0.81 59 7.1 194 2.8 3.2 0.248 298 66

    1000 r/min = 6-poles 400 V 50 Hz CENELEC design

    7.5 160 MLA 163 410-••H452 965 87.2 88.4 88.5 89.1 0.81 15.5 6.5 74 1.9 3 0.088 220 57

    11 160 MLB 163 420-••H452 972 90.3 91 90.5 91.0 0.80 23 7.6 108 2.3 3.5 0.126 247 65

    15 180 MLB 183 420-••H452 972 90.6 91.2 91.1 91.4 0.81 31 6.8 147 1.9 3.2 0.25 298 58

    High-output design

    14 1)3) 160 MLC 163 430-••H452 969 89.2 89.4 90.0 90.2 0.75 31 7.9 138 2.8 3.9 0.126 247 64

    18.5 180 MLC 183 430-••H452 975 90.1 90.2 90.2 89.9 0.74 41 7.2 181 2 3.2 0.25 298 61

    750 r/min = 8-poles 400 V 50 Hz CENELEC design

    4 160 MLA 164 410-••H452 722 86.7 87.4 86.6 87.1 0.71 9.5 5.4 53 1.7 2.8 0.133 245 59

    5.5 160 MLB 164 420-••H452 723 86.8 87.6 87.2 89.0 0.71 13.2 5.8 73 1.9 3.1 0.133 245 53

    7.5 160 MLC 164 430-••H452 718 85.5 86.6 86.6 87.3 0.70 18.4 5.7 100 2.1 3.1 0.133 245 55

    11 180 MLB 184 420-••H452 724 88.4 89.1 89.8 89.9 0.73 24.5 5.7 145 1.7 2.7 0.245 292 63

    1) Temperature rise class F2) The output exceeds one step higher output than the basic with rated output

    acc. to CENELEC.3) Nominal power lower than CENELEC+1.

    Note: when ordering ordering, the following variant code has to be added: 452 DIP/Ex tD acc. to ATEX directive 94/9/EC, T=125°C, IP 55

    The two bullets in the product code indicate choice of mounting arrangement, voltage and frequency (see ordering information page)

    Efficiency values are given according to both IEC/EN 60034-2-1; 2007 and IEC 60034-2; 1996. Please note that the values are not comparable without knowing the testing method. ABB has calculated the iEC/EN 60034-2-1; 2007 efficiency values acc. to indirect method, stray losses (additional losses) from measuring.

  • 10 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Motors for hazardous areas, sizes 160-180 - Variant codes

    S = Included as standardP = New manufacturerM = On modification of a stocked motor; or on new manufacture, the number of number per order may be limited.R = On requestNA = Not applicable.

    Certain variant codes cannot be used simultaneously.

    Code 1) / Variant M3JP Flameproof Ex D

    M3KP Flameproof Ex de

    M3HP Increased safety Ex e

    M3GP Non-sparking Ex nA

    M3GP DIP, Ex tD

    Administration531 Sea freight packing. M M P M M

    Balancing052 Vibration acc. to Grade A (IEC 60034-14). S S S S S

    417 Vibration acc. to Grade B (IEC 60034-14). P P P P P

    424 Full key balancing. P P P P P

    Bearings and Lubrication036 Transport lock for bearings M M P M M

    037 Roller bearing at D-end, for Exd(e) IIB / IIC M M P M M

    040 Heat resistant grease. P P P P P

    058 Angular contact bearing at D-end, shaft force away from bearing.

    NA NA P P P

    107 Pt100 2-wire in bearings. P P P P P

    130 Pt100 3-wire in bearings. P P P P P

    194 2Z bearings greased for life at both ends. M M P M M

    795 Lubrication information plate M M P M M

    796 Grease nipples JIS B 1575 PT 1/8 Type A P P P P P

    797 Stainless steel measuring nipples P P P P P

    798 Stainless steel grease nipples P P P P P

    799 Grease nipples flat type DIN 3404, thread M10x1 M M P M M

    Brakes412 Built-on brake. NA NA NA NA NA

    Branch standard designs178 Stainless steel / acid proof bolts. M M P M M

    204 Jacking bolts for foot mounted motors. P P P P P

    209 Non-standard voltage or frequency, (special winding). P P P P P

    396 Motor designed for ambient temperature -20°C to -40°C, wtih space heaters (code 450/451 must be added).

    P P NA P P

    397 Motor designed for ambient temperature -40°C to -55°C, wtih space heaters (code 450/451 must be added).

    P P NA P P

    398 Motor designed for ambient temperature -20°C to -40°C. P P NA P P

    399 Motor designed for ambient temperature -40°C to -55°C. P P NA P P

    425 Corrosion protected stator and rotor core. S S S S S

    786 Special design shaft upwards (V3, V36, V6) for outdoor mounting.

    P P P P P

    Cooling system068 Light alloy metal fan M M P M M

    206 Steel fan. P P P P P

    183 Separate motor cooling (fan axial, N-end). P P NA P NA

    791 Stainless steel fan cover NA NA NA NA NA

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 11

    Code 1) / Variant M3JP Flameproof Ex D

    M3KP Flameproof Ex de

    M3HP Increased safety Ex e

    M3GP Non-sparking Ex nA

    M3GP DIP, Ex tD

    Coupling035 Assembly of customer supplied coupling-half. NA NA NA NA NA

    Documentation141 Binding dimension drawing. M M P M M

    Drain holes065 Plugged drain holes NA NA S S S

    076 Draining holes with plugs in open position NA NA NA NA NA

    448 Draining holes with metal plugs. P P P P P

    Earthing Bolt067 External earthing bolt. S S S S S

    Hazardous Environments452 DIP/Ex tD acc. to ATEX directive 94/9/EC , T= 125 ºC, cat. 3D,

    IP55M M NA M S

    453 DIP/Ex tD acc. to ATEX directive 94/9/EC , T= 125 ºC, cat. 2D, IP65

    M M NA M M

    454 DIP/Ex tD acc. to ATEX directive 94/9/EC , T= 125 ºC, cat. 3D, IP65

    M M NA M M

    804 DIP/Ex tD IEC 61241, T125 ºC, IP55 (zone 22) M M NA M M

    805 DIP/Ex tD IEC 61241, T125 ºC, IP65 (zone 21) M M NA M M

    806 DIP/Ex tD IEC 61241, T125 ºC, IP65 (zone 22) M M NA M M

    456 ExnA design, fulfilling IEC 60079-15 with certificate NA NA NA M NA

    480 ExnA design acc. To ATEX derective 94/9/EC, temp class T3 NA NA NA S NA

    272 Exe II acc. To ATEX directive 94/9/EC temp. Class T2 NA NA P NA NA

    461 Ex d(e) design, Group II C M M NA NA NA

    462 Ex d(e) design, temperature class T5. R R NA NA NA

    464 Alleinschutz’ design. Certification of flame proof motor and protection device together.

    P P NA NA NA

    507 Ex d from Ex de. NA P NA NA NA

    508 Ex de from Ex d. P NA NA NA NA

    812 Explosion protection according to IEC-standards. M M NA M M

    813 Thermistor-based surface temperature protection T4 for frequency convertor duty.

    M M NA P P

    814 Ex tD (DIP) motors, temperature class T 150C. M M NA M M

    816 Pt-100-based surface temperature protection T4 for frequency convertor duty. 3-wire system.

    P P NA NA NA

    Heating elements450 Heating element, 100-120V. M M P M M

    451 Heating element, 200-240V. M M P M M

    Insulation system014 Winding insulation class H. P P NA P P

    405 Special winding insulation for frequency converter supply. P P NA P P

    S = Included as standardP = New manufacturerM = On modification of a stocked motor; or on new manufacture, the number of number per order may be limited.R = On requestNA = Not applicable.

    Certain variant codes cannot be used simultaneously.

  • 12 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Code 1) / Variant M3JP Flameproof Ex D

    M3KP Flameproof Ex de

    M3HP Increased safety Ex e

    M3GP Non-sparking Ex nA

    M3GP DIP, Ex tD

    Mounting arrangements009 IM 2001 foot/flange mounted, IEC flange, from IM 1001 (B35

    from B3).M M P M M

    066 Modified for non-standard mounting position. Specify IM xxxx. Use for all mounting arrangements excluding IM B3 (1001) and IM B5 (3001).

    M M P M M

    305 Additional lifting lugs P P P P P

    Painting109 Paint thickness = 120 µm. M M P M M

    110 Paint thickness = 160 µm. M M P M M

    111 Painting system C3M acc. to ISO 12944-2:2007 S S S S S

    114 Special paint colour, standard grade. M M P M M

    115 Painting system C4M acc. to ISO 12944-2:2007 P P P P P

    754 Painting system C5M acc. to ISO 12944-2:2007 P P P P P

    Protection005 Metal protective roof, vertical motor, shaft down. M M P M M

    072 Radial seal at D-end. M M P M M

    073 Sealed against oil at D-end. P P P P P

    157 Terminal box degree of protection IP65. M M P M M

    158 Degree of protection IP65. M M P M M

    403 Degree of protection IP56. M M P M M

    404 Degree of protection IP56, without fan and fan cover. P P NA P P

    434 Degree of protection IP56, open deck. P P P P P

    783 Labyrinth sealing at D-end. P P P P P

    Rating & instruction plates002 Restamping voltage, frequency and output, continuous duty. M M P M M

    095 Restamping output (maintained voltage, frequency), intermittent duty.

    M M NA P P

    135 Mounting of additional identification plate, stainless. M M P M M

    139 Additional identification plate delivered loose. M M P M M

    161 Additional rating plate delivered loose. M M P M M

    163 Frequency converter rating plate. Rating data according to quotation.

    M M NA M M

    Shaft & rotor069 Two shaft extensions as per basic catalogue. P P P P P

    max DA= 38mm EA=80mm

    070 One or two special shaft extensions, standard shaft material. P P P P P

    Max shaft end diameter at N-end : DA = 38

    164 Shaft extension with closed key-way. S S S S S

    165 Shaft extension with open key-way. P P P P P

    410 Stainless steel shaft (standard or non-standard design). R R R R R

    421 VIK Design (Verband der Industriellen Energie- und Kraftwirtschaf e.V)

    NA M P P P

    151 Design according to SHELL DEP 33.66.05.31-Gen. June 2007 P P P P P

    758 Saudi Aramco design. P P NA P P

    S = Included as standardP = New manufacturerM = On modification of a stocked motor; or on new manufacture, the number of number per order may be limited.R = On requestNA = Not applicable.

    Certain variant codes cannot be used simultaneously.

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 13

    Code 1) / Variant M3JP Flameproof Ex D

    M3KP Flameproof Ex de

    M3HP Increased safety Ex e

    M3GP Non-sparking Ex nA

    M3GP DIP, Ex tD

    775 Design according to SHELL DEP 33.66.05.31-Gen. January 1999 design.

    P P NA P P

    778 GOST Export/Import Certificate (Russia). NA NA NA NA NA

    779 SASO Export/Import Certificate (Saudi Arabia) M M P M M

    782 Fulfilling CQST Certification requirements (China) NA NA NA NA NA

    Stator winding temperature sensors120 KTY 84-130 (1 per phase) in stator winding. P P NA P P

    121 Bimetal detectors, break type (NCC), (3 in series), 130ºC, in stator winding.

    P P NA NA NA

    122 Bimetal detectors, break type (NCC), (3 in series), 150ºC, in stator winding.

    P P NA NA NA

    123 Bimetal detectors, break type (NCC), (3 in series), 170ºC, in stator winding.

    NA NA NA NA NA

    125 Bimetal detectors, break type (NCC), (2x3 in series), 150ºC, in stator winding.

    P P NA NA NA

    127 Bimetal detectors, break type (NCC), (3 in series, 130ºC & 3 in series, 150ºC), in stator winding.

    P P NA NA NA

    435 PTC - thermistors (3 in series), 130ºC, in stator winding. P P S P M

    436 PTC - thermistors (3 in series), 150ºC, in stator winding. S S NA S S

    439 PTC - thermistors (2x3 in series), 150ºC, in stator winding. M M NA M M

    440 PTC - thermistors (3 in series, 110ºC & 3 in series 130ºC), in stator winding.

    P P P P P

    441 PTC - thermistors (3 in series, 130ºC & 3 in series, 150ºC), in stator winding.

    M M NA P P

    445 Pt-100 2-wire in stator winding, 1 per phase P P P P P

    446 Pt-100 2-wire in stator winding, 2 per phase P P P P P

    502 Pt-100 3-wire in stator winding, 1 per phase. P P P P P

    503 Pt-100 3-wire in stator winding, 2 per phase. P P P P P

    Terminal box021 Terminal box on LHS (seen from D-end) P P P P P

    022 Cable entry LHS (seen from D-end). M M P M M

    137 Extended cable connection, low terminal box, “Flying leads” NA P P P NA

    157 Terminal box degree of protection IP65. M M P M M

    180 Terminal box on RHS (seen from D-end) P P P P P

    380 Separate terminal box for temperature detectors, std. material P P P P P

    400 4 x 90 degr turnable terminal box S S S S S

    413 Extended cable connection, no terminal box. NA NA NA NA NA

    418 Separate terminal box for auxiliaries, standard material. P P P P P

    466 Terminal box at N-end. NA NA NA NA NA

    468 Cable entry from D-end. M M P M M

    469 Cable entry from N-end. M M P M M

    567 Separate terminal box material: Cast Iron. S S S S S

    568 Separate terminal box for heating elements, std. material P P P P P

    569 Separate terminal box for brakes NA NA NA NA NA

    728 Standard cable gland, Ex d IIB, armoured cable, double sealing. P P NA P P

    730 Prepared for NPT cable glands P P P P P

    S = Included as standardP = New manufacturerM = On modification of a stocked motor; or on new manufacture, the number of number per order may be limited.R = On requestNA = Not applicable.

    Certain variant codes cannot be used simultaneously.

  • 14 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Code 1) / Variant M3JP Flameproof Ex D

    M3KP Flameproof Ex de

    M3HP Increased safety Ex e

    M3GP Non-sparking Ex nA

    M3GP DIP, Ex tD

    732 Standard cable gland, Ex d IIB, armoured cable. M M P M P

    733 Standard cable gland, Ex d IIB, non-armoured cable. M M P M P

    734 Standard cable gland, Ex d IIC, armoured cable. M M P M M

    735 Standard cable gland, Ex d IIC, non-armoured cable. M M P M P

    736 Standard cable gland Exe acc. To EN standards NA S S S S

    737 Standard cable gland Exe with clamping device acc. To EN standards

    NA P P P P

    741 Motor equipped with Exe terminal box NA S S S S

    743 Painted flange for cable glands NA M P M M

    744 Stainless steel flange for cable glands NA M P M M

    745 Painted steel flange for cable glands NA M P M M

    746 Stainless steel cable flange equipped with standard brass cable glands

    NA P P P P

    Testing145 Type test report from a catalogue motor, 400V 50Hz. M M 42 M M

    146 Type test with report for motor from specific delivery batch. P P P P P

    148 Routine test report. M M P M M

    150 Customer witnessed testing. Specify test procedure with other codes.

    P P P P P

    222 Torque/speed curve, type test and multi-point load test with report for motor from specific delivery batch.

    P P P P P

    760 Vibration level test M M P M M

    761 Vibration spectrum test. P P P P P

    762 Noise level test. P P P P P

    763 Noise spectrum test. P P P P P

    764 Test with ABB frequency converter available at ABB test field. ABB standard test procedure.

    P P NA P P

    Variable speed drives181 Rating plate with ABB standard loadability values for VSD

    operation. Other auxiliaries for VSD operation to be selected as necessary.

    M M NA M M

    701 Insulated bearing at N-end. NA NA NA NA NA

    704 EMC cable gland NA M NA P P

    470 Prepared for hollow shaft pulse tacho (L&L equivalent). P P NA P P

    680 2048 pulse tacho, Ex d, tD, L&L 841910001 P P NA P NA

    747 1024 pulse tacho, Ex d, tD, L&L 841910002 P P NA P NA

    Y/D starting

    117 Terminals for Y/D start at both speeds (two speed windings). Only Ex de.

    NA P R R R

    118 Terminals for Y/D start at high speed (two speed windings). P P R R R

    119 Terminals for Y/D start at low speed (two speed windings). P P R R R

    S = Included as standardP = New manufacturerM = On modification of a stocked motor; or on new manufacture, the number of number per order may be limited.R = On requestNA = Not applicable.

    Certain variant codes cannot be used simultaneously.

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 15

    TolerancesA, B ISO js14C, CA ± 0.8D, DA ISO k6 < Ø 50mm ISO m6 > Ø 50mmF, FA ISO h9H +0 -0.5

    Dimension drawings Sizes 160-180Flameproof motors M3JP

    Above table gives the main dimensions in mm. For detailed drawings please see our web-pages ‘www.abb.com/motors&generators’ or contact ABB.

    Motor size IM 1001, IM B3 AND IM 3001, IM B5D GA F E L max O

    poles poles poles poles poles

    2 4-8 2 4-8 2 4-8 2 4-8 2 4-8

    160 42 42 45 45 12 12 110 110 808 808 45180 48 48 51.5 51.5 14 14 110 110 826 826 50

    Motor size IM 1001, IM B3 IM 3001, IM B5 Protective roofA B B’ C HD K H M N P S DS LS

    poles

    2 4-8

    160 254 210 254 108 495 14.5 160 300 250 350 18.5 328 852 852180 279 241 279 121 535 14.5 180 300 250 350 18.5 360 876 876

    Foot-mounted: IM B3 (IM 1001)

    Flange-mounted: IM B5 (IM 3001)

    Motor with protection cover

  • 16 ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009

    Dimension drawings Sizes 160-180Flameproof M3KP, Increased safety M3HP,

    Non-sparking M3GP and Ex tD M3GP motors

    Motor size IM 1001, IM B3 AND IM 3001, IM B5

    D GA F E L max O

    poles poles poles poles poles

    2 4-8 2 4-8 2 4-8 2 4-8 2 4-8

    160 42 42 45 45 12 12 110 110 808 808 45

    180 48 48 51.5 51.5 14 14 110 110 826 826 50

    Motor size IM 1001, IM B3 IM 3001, IM B5 Protective roof

    A B B’ C HD K H M N P S DS LS poles

    2 4-8

    160 254 210 254 108 499 14.5 160 300 250 350 18.5 328 852 852

    180 279 241 279 121 539 14.5 180 300 250 350 18.5 360 876 876

    Foot-mounted: IM B3 (IM 1001)

    Flange-mounted: IM B5 (IM 3001)

    Motor with protection cover

    TolerancesA, B ISO js14C, CA ± 0.8D, DA ISO k6 < Ø 50mm ISO m6 > Ø 50mmF, FA ISO h9H +0 -0.5

    Above table gives the main dimensions in mm. For detailed drawings please see our web-pages ‘www.abb.com/motors&generators’ or contact ABB.

  • ABB / Motors for hazardous areas / New cast iron motors 160-180 EN 03-2009 17

    Motors for hazardous areas in brief, M3JP, M3KP, M3HP, M3GP, M3GP 160-180

    Motor size 160 180

    Stator, feet Material Cast iron EN-GJL-200

    Paint color shade Blue, Munsell 8B 4.5/3.25 / NCS 4822 B05G

    Corrosion class C3 medium according to ISO/EN 12944-2

    Bearing end shields Material Cast iron EN-GJL-200

    Paint color shade Blue, Munsell 8B 4.5/3.25 / NCS 4822 B05G

    Corrosion class C3 medium according to ISO/EN 12944-2

    Bearings D- and N-end 6309/C3 6310/C3

    Axially-locked bearings Inner bearing cover As standard, locked at D-end

    Bearing seal Gamma ring as standard, radial seal on request

    Lubrication Regreasable bearings as standard, bearings greased for life as option

    Measuring nipples SPM as standard

    Rating plate Material Stainless steel, EN 10088, thickness 0.5 mm

    Terminal box Frame material Cast iron EN-GJL-200

    Cover material Cast iron EN-GJL-200

    Cover screws material Steel 5G, coated with zinc and blue cromated

    Connections Cable entries 2xM40x1.5

    Terminals 6 terminals for connection with cable lugs (not included)

    Fan Material Reinforced glass fiber laminate or aluminum

    Fan cover Material Zinc coated steel

    Paint color shade Blue, Munsell 8B 4.5/3.25 / NCS 4822 B05G

    Corrosion class C3 medium according to ISO/EN 12944-2

    Stator winding Material Copper

    Insulation Insulation class F

    Winding protection 3 pcs thermistors as standard

    Rotor winding Material Pressure die-cast aluminum

    Balancing Half key balancing

    Key way Closed

    Heating elements On request 25 W

    Drain holes Optional

    External earthing bolt As standard

    Enclosure IP 55, higher protection on request

    Cooling method IC 411