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8/3/2019 TUV Fixtures EMC Report
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Prfbericht - Nr.:Test Report No.:
15042762 001 Seite 2 von 55Page 2 of 55
Type designation:
No. Type of lamp Model Rated voltage Rated wattage
1. Ceiling light JBDW001-40 40W
2. Ceiling light JBDW001-80
AC 120-277V,
50-60Hz 80W
3. Flood light JBFD001a-40 40W
4. Flood light JBFD001b-80 80W
5. Flood light JBFD001b-120 120W
6. Flood light JBFD001b-150 150W
7. Flood light JBFD001c-120 120W
8. Flood light JBFD001c-150 150W
9. Flood light JBFD001c-200 200W
10. Flood light JBFD002-120 120W
11. Flood light JBFD002-150 150W
12. Flood light JBFD002-200 200W
13. Flood light JBFD002-300 300W
14. Flood light JBFD003-80
AC 120-277V,
50-60Hz
80W
15. Highbay JBHB001-80 80W
16. Highbay JBHB001-120 120W
17. Highbay JBHB001-150 150W
18. Highbay JBHB001-200 200W
19. Highbay JBHB002-80 80W
20. Highbay JBHB002-120 120W
21. Highbay JBHB002-150 150W
22. Highbay JBHB002-200 200W23. Highbay JBHB002-300 300W
24. Highbay JBHB003-80 80W
25. Highbay JBHB003-120 120W
26. Highbay JBHB003-150 150W
27. Highbay JBHB003-200
AC 120-277V,
50-60Hz
200W
28. Parking light JBPL001-40 40W
29. Parking light JBPL001-80 80W
30. Parking light JBPL002-40 40W
31. Parking light JBPL002-80
AC 120-277V,
50-60Hz
80W
32. Street light JBRD002-120 120W
33. Street light JBRD002-150 150W34. Street light JBRD002-200 200W
35. Street light JBRD002-300 300W
36. Street light JBRD004-120 120W
37. Street light JBRD004-150 150W
38. Street light JBRD004-200 200W
39. Street light JBRD006-40 40W
40. Street light JBRD006-80 80W
41. Street light JBRD007-40 40W
42. Street light JBRD007-80
AC 120-277V,
50-60Hz
80W
43. Tunnel light JBTN001-80 80W
44. Tunnel light JBTN001-120 120W45. Tunnel light JBTN001-150 150W
46. Tunnel light JBTN003-200 200W
47. Tunnel light JBTN003-300
AC 120-277V,50-60Hz
300W
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Identities and differences:
Among above models, all the lamps with the same rated wattage use the same electronic
ballast. 100W, 120W & 150W models are the same in electrical characteristics and the
difference between them is only rated wattage. This is the same case for 200W & 300W
models.
Therefore all the EMC tests were performed on JBFD001a-40, JBHB001-80, JBRD002-150 &
JBTN003-300 respectively which cover all ballast wattages.
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TEST SUMMARY4.1.1 HARMONICS ON ACMAINS
Result:Passed
4.1.2 VOLTAGE CHANGES, VOLTAGE FLUCTUATIONS AND FLICKER ON AC MAINSResult:Passed
4.1.3 MAINS TERMINAL CONTINUOUS DISTURBANCE VOLTAGEResult:Passed
4.1.4 RADIATED ELECTROMAGNETIC DISTURBANCEResult:Passed
4.1.5 RADIATED ELECTROMAGNETIC DISTURBANCE (30-300MHZ)Result:Passed
5.1.1 ELECTROSTATIC DISCHARGEResult:Passed
5.1.2 RF RADIATED IMMUNITY TESTResult:Passed
5.1.3 POWER FREQUENCY MAGNETIC FIELDS
Result:Passed5.2.1 FAST TRANSIENTS ON ACPOWER LINES
Result:Passed
5.2.2 INJECTED CURRENT INTO ACPOWER PORTResult:Passed
5.2.3 SURGES TO ACPOWER PORTResult:Passed
5.2.4 VOLTAGE DIPS AND INTERRUPTIONS TO ACPOWER PORTResult:
Passed
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Contents
1 TEST SITES .......................................................... ........................................................... ................................. 6
1.1 TEST FACILITIES ....................................................... ........................................................... ....................... 61.2 LIST OF TEST AND MEASUREMENT INSTRUMENTS ..................................................... ................................. 6
2 GENERAL PRODUCT INFORMATION ............................................................ .......................................... 7
2.1 PRODUCT FUNCTION AND INTENDED USE......................................................... .......................................... 72.2 RATINGS AND SYSTEM DETAILS ................................................... ........................................................... ... 72.3 INDEPENDENT OPERATION MODES ......................................................... .................................................... 72.4 NOISE GENERATING AND NOISE SUPPRESSING PARTS ......................................................... ....................... 72.5 SUBMITTED DOCUMENTS.................................................... ........................................................... ............. 7
3 TEST SET-UP AND OPERATION MODES ....................................................... .......................................... 8
3.1 PRINCIPLE OF CONFIGURATION SELECTION ...................................................... .......................................... 83.2 PHYSICAL CONFIGURATION FOR TESTING ........................................................ .......................................... 83.3 TEST OPERATION AND TEST SOFTWARE ........................................................... .......................................... 83.4 SPECIAL ACCESSORIES AND AUXILIARY EQUIPMENT .......................................................... ....................... 83.5 COUNTERMEASURES TO ACHIEVE EMCCOMPLIANCE ......................................................... ....................... 8
4 TEST RESULTS E M I S S I O N ................................................................................................................. 94.1 EMISSION IN THE FREQUENCY RANGE UP TO 30MHZ ......................................................... ....................... 9
4.1.1 Harmonics on AC Mains....................................................................................................................... 94.1.2 Voltage changes, voltage fluctuations and flicker on AC mains ........................................................ . 144.1.3 Mains Terminal Continuous Disturbance Voltage.............................................................................. 154.1.4 Radiated Electromagnetic Disturbance .............................................................................................. 244.1.5 Radiated Electromagnetic Disturbance (30-300MHz)........................................................................ 37
5 TEST RESULTS I M M U N I T Y ............................................................................................................. 42
5.1 ENCLOSURE .................................................... ........................................................... ............................... 435.1.1 Electrostatic Discharge....................................................................................................................... 435.1.2 RF radiated immunity test............... ............................................................ ........................................ 445.1.3 Power Frequency Magnetic Fields ..................................................................................................... 45
5.2 INPUT AND OUTPUT ACPOWER PORTS ............................................................ ........................................ 465.2.1 Fast Transients on AC Power Lines.................................................................................................... 465.2.2 Injected Current into AC Power Port.................................................................................................. 475.2.3 Surges to AC Power Port ........................................................ ........................................................... . 485.2.4 Voltage dips and interruptions to AC Power Port .............................................................................. 49
6 PHOTOGRAPHS OF THE TEST SET-UP.......................................................... ........................................ 50
7 LIST OF TABLES.......... ........................................................... ........................................................... ........... 55
8 LIST OF FIGURES................. ............................................................ ........................................................... . 55
9 LIST OF PHOTOGRAPHS ..................................................... ........................................................... ........... 55
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1 Test Sites
1.1 Test Facilities
Laboratory: TV Rheinland (Shanghai) Co., Ltd.Address: 10-15/F, Huatsing Building, No. 88, Lane 777, West Guangzhong Road,Zhabei District, Shanghai 200072, P.R. China
The used test equipment is in accordance with CISPR 16-1 series standards for measurement
of radio interference.
1.2 List of Test and Measurement Instruments
Table 1: List of test and measurement equipment
No. Equipment Model Serial no. Cal. due date
1.Harmonic emission/voltage
fluctuation and flicker test system
Profline 2105-
400-413-LNS55907, 72292 10.06.2011
2. EMI test receiver ESIB26 100227 10.06.2011
3. Artificial mains network NNB 42 04/10048 15.02.20124. Triple loop antenna HXYZ 9170 HXYZ 9170-128 10.06.2011
5. Coupling/decoupling network CDN M016 20580 28.06.2011
6. ESD generator NSG 437 392 30.11.2011
7. Barometer DYM3 08102717 12.04.2012
8.3m modified semi-anechoic
chamberSAC N/A 22.11.2011
9. Electric field probe 2244/90.21 AV-0017 05.05.2011
10.EM probes optical interface
EMC-300BN-2137/01 C-0019 05.05.2011
11. Signal generator SML 02 101162 10.06.201112. Power meter PMS_1081 1081A3123 31.05.2011
13. Power meter PMS_1081 1081A3122 31.05.2011
14. Broadband horn antenna BBHA 9120EBBHA
9120E224N/A
15. EMS antenna HL 046 100039 N/A
16. RF power amplifier 0019 FLH200/100 18.11.2011
17. EFT/B generator NSG 2025 20283 10.06.2011
18. Surge generator NSG 2050 200421-502LU 10.06.2011
19. RF generator NSG 2070 1083 10.06.2011
20. Coupling/decoupling network CDN M016 20810 06.07.2012
21.Voltage dips and short
interruptions test system
NSG 1007-5-
400-413-LNS,NSG 2200-1
55907, 200230-
053EK10.06.2011
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2 General Product Information
2.1 Product Function and Intended UseThe EUT (equipment under test) is induction lamp for lighting and similar use. For the
further information, refer to the users manual.
2.2 Ratings and System DetailsSystem input voltage : AC 120-277VFrequency : 50-60HzRated wattage for lamp : Refer to page 2Protection class : I
Identities and differences:
Refer to page 3.
2.3 Independent Operation ModesThe basic operation modes are: On or Off.
2.4 Noise Generating and Noise Suppressing PartsRefer to the circuit diagram for further information.
2.5
Submitted DocumentsCircuit diagram and labels.
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3 Test Set-up and Operation Modes
3.1 Principle of Configuration Selection
Emission: The equipment under test (EUT) was configured to measure its highestpossible emission level. The test conditions were adapted accordingly in reference to the
instructions for use.
Refer to the related paragraph of this report.
Immunity: The equipment under test (EUT) was configured to have its highestpossible susceptibility against the tested phenomena. The test conditions were adapted
accordingly in reference to the instructions for use.
Refer to the related paragraph of this report.
3.2 Physical Configuration for TestingRefer to the related paragraph of this report.
3.3 Test Operation and Test SoftwareRefer to the related paragraph of this report. No software was used.
3.4 Special Accessories and Auxiliary EquipmentNone.
3.5 Countermeasures to achieve EMC Compliance
The tested sample contained noise suppression capacitor, inductor and common modechoke as described in the circuit diagram. No special measure is employed to achieve the
requirement.
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4 Test Results E M I S S I O N
4.1 Emission in the Frequency Range up to 30 MHz
4.1.1 Harmonics on AC Mains
Result: Passed
Date of testing : 15.03.2011Test procedure : EN 61000-3-2:2006+A1+A2Test duration : 2.5minHarmonic order : 2 40thFrequency range : 0 2kHzAmbient condition : Temperature: 21C; Relative humidity: 42%
Following are the measurement results, which were obtained via an automatic
measurement system.
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Table 2: Harmonic currents measurement result (JBFD001a-40)
Equipment category: Class C; Test voltage: AC 231.86V, 50Hz
Fundamental current I1: 0.880A; Power factor: 0.956; Active input power: 44.1W.
Harmonicorder
Result (avg.)(A)
100% limit(A)
Result (max.)(A)
150% limit(A)
Result
2 0.001 0.018 0.002 0.026 Pass
3 0.014 0.252 0.015 0.378 Pass
5 0.003 0.088 0.003 0.132 Pass
7 0.002 0.062 0.003 0.092 Pass
9 0.002 0.044 0.002 0.066 Pass
11 0.001 0.026 0.001 0.040 Pass
13 0.001 0.026 0.001 0.040 Pass
15 0.001 0.026 0.001 0.040 Pass
17 0.001 0.026 0.001 0.040 Pass
19 0.001 0.026 0.001 0.040 Pass
21 0.001 0.026 0.001 0.040 Pass
23 0.001 0.026 0.001 0.040 Pass
25 0.001 0.026 0.001 0.040 Pass
27 0.001 0.026 0.001 0.040 Pass
29 0.001 0.026 0.001 0.040 Pass
31 0.001 0.026 0.001 0.040 Pass
33 0.001 0.026 0.001 0.040 Pass35 0.001 0.026 0.001 0.040 Pass
37 0.000 0.026 0.001 0.040 Pass
39 0.000 0.026 0.001 0.040 Pass
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Table 3: Harmonic currents measurement result (JBHB001-80)
Equipment category: Class C; Test voltage: AC 231.86V, 50Hz
Fundamental current I1: 0.359A; Power factor: 0.969; Active input power: 81.3W.
Harmonicorder
Result (avg.)(A)
100% limit(A)
Result (max.)(A)
150% limit(A)
Result
2 0.001 0.007 0.002 0.011 Pass
3 0.026 0.104 0.028 0.157 Pass
5 0.007 0.036 0.007 0.054 Pass
7 0.005 0.025 0.005 0.038 Pass
9 0.003 0.018 0.004 0.027 Pass
11 0.002 0.011 0.003 0.016 Pass
13 0.002 0.011 0.002 0.016 Pass
15 0.001 0.011 0.001 0.016 Pass
17 0.001 0.011 0.001 0.016 Pass
19 0.001 0.011 0.001 0.016 Pass
21 0.001 0.011 0.001 0.016 Pass
23 0.001 0.011 0.001 0.016 Pass
25 0.001 0.011 0.001 0.016 Pass
27 0.001 0.011 0.001 0.016 Pass
29 0.001 0.011 0.001 0.016 Pass
31 0.001 0.011 0.001 0.016 Pass
33 0.001 0.011 0.001 0.016 Pass35 0.001 0.011 0.001 0.016 Pass
37 0.001 0.011 0.001 0.016 Pass
39 0.001 0.011 0.001 0.016 Pass
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Table 4: Harmonic currents measurement result (JBRD002-150)
Equipment category: Class C; Test voltage: AC 231.85V, 50Hz
Fundamental current I1: 0.681A; Power factor: 0.961; Active input power: 149.7W.
Harmonicorder
Result (avg.)(A)
100% limit(A)
Result (max.)(A)
150% limit(A)
Result
2 0.002 0.018 0.003 0.026 Pass
3 0.110 0.254 0.111 0.381 Pass
5 0.039 0.088 0.039 0.132 Pass
7 0.023 0.062 0.023 0.092 Pass
9 0.014 0.044 0.014 0.066 Pass
11 0.006 0.026 0.007 0.040 Pass
13 0.003 0.026 0.004 0.039 Pass
15 0.004 0.026 0.004 0.039 Pass
17 0.004 0.026 0.004 0.040 Pass
19 0.003 0.026 0.003 0.040 Pass
21 0.003 0.026 0.003 0.040 Pass
23 0.001 0.026 0.001 0.040 Pass
25 0.001 0.026 0.002 0.040 Pass
27 0.002 0.026 0.002 0.040 Pass
29 0.002 0.026 0.002 0.040 Pass
31 0.003 0.026 0.003 0.039 Pass
33 0.002 0.026 0.003 0.039 Pass35 0.002 0.026 0.002 0.040 Pass
37 0.002 0.026 0.002 0.040 Pass
39 0.001 0.026 0.001 0.040 Pass
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Table 5: Harmonic currents measurement result (JBTN003-300)
Equipment category: Class C; Test voltage: AC 231.86V, 50Hz
Fundamental current I1: 1.226A; Power factor: 0.951; Active input power: 275.1W.
Harmonicorder
Result (avg.)(A)
100% limit(A)
Result (max.)(A)
150% limit(A)
Result
2 0.003 0.025 0.005 0.036 Pass
3 0.159 0.350 0.161 0.518 Pass
5 0.043 0.123 0.044 0.182 Pass
7 0.028 0.086 0.028 0.129 Pass
9 0.010 0.061 0.010 0.091 Pass
11 0.012 0.037 0.013 0.055 Pass
13 0.008 0.037 0.009 0.055 Pass
15 0.008 0.037 0.009 0.055 Pass
17 0.004 0.037 0.005 0.055 Pass
19 0.007 0.037 0.007 0.055 Pass
21 0.006 0.037 0.007 0.055 Pass
23 0.007 0.037 0.008 0.055 Pass
25 0.004 0.037 0.005 0.055 Pass
27 0.006 0.037 0.006 0.055 Pass
29 0.005 0.037 0.005 0.055 Pass
31 0.004 0.037 0.005 0.055 Pass
33 0.003 0.037 0.004 0.055 Pass35 0.005 0.037 0.006 0.055 Pass
37 0.005 0.037 0.005 0.055 Pass
39 0.005 0.037 0.007 0.055 Pass
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4.1.2 Voltage changes, voltage fluctuations and flicker on AC mains
Result: Passed
Basic standard : EN 61000-3-3:2008
Due to the low power of the samples, they can not produce voltage fluctuation, which
will exceed the limits specified by the standard above. Therefore, the samples are deemed
to meet the requirements of EN 61000-3-3:2008 without actual test.
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4.1.3 Mains Terminal Continuous Disturbance Voltage
Result: Passed
Date of testing : 15.03.2011 - 23.03.2011Test procedure : EN 55015:2006+A1+A2 and CISPR 16-1 series standardsFrequency range : 9kHz - 30MHzKind of test site : Shielded roomAmbient condition : Temperature: 21C; Relative humidity: 42%
Test Setup
Input voltage : AC 230V, 50HzOperational mode : Continuous operation with induction lamp as loadEarthing : Through power cord (as class I equipment)
The measurement setup was made according to EN 55015:2006+A1+A2 in a shielded
room.
The measurement equipment like test receivers, quasi-peak detector and Artificial Mains
Network (AMN) are in compliance with CISPR 16-1 series standards. The tested object
was operated under its rated voltage and rated frequency. Prior to the measurements the
test object operated about 15 minutes (warm-up) in order to stabilize its operating
conditions and to ensure reliable measurement values.
Furthermore an internal calibration with the test receiver was conducted prior to each
measurement.
The tested object was set-up on a wooden table. The EUT was set 0.8m away from the
AMN. The cord longer than necessary to be connected to the AMN was folded forth and
back parallel so as to form a bundle with a length between 0.3m and 0.4m.
The disturbance voltage was determined according to clause 8 of EN
55015:2006+A1+A2 while measuring the line and neutral conductor by turns.
The following figures and tables were those measured by an automatic measuring system.
Both Quasi-peak and Average value were measured. Quasi-peak and Average value weremeasured and listed respectively where they had a maximum in previous scanning survey.
In the figures, means Quasi-peak value and + means Average value which was
measured in final measurement.
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Figure 1: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBFD001a-40)
Level [dBV]
0
20
40
60
80
100
120
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
+ + + +
+ +x x
xxxx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.540000 35.50 20.2 56.0 20.5 L1
0.790000 35.90 20.1 56.0 20.1 L1
0.920000 39.80 20.1 56.0 16.2 L1
1.050000 35.70 20.1 56.0 20.3 L1
1.095000 33.80 20.1 56.0 22.2 L1
1.145000 34.50 20.1 56.0 21.5 L1
Final average measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.395000 40.30 20.0 48.0 7.6 L1
0.655000 40.40 20.2 46.0 5.6 L1
0.920000 39.10 20.1 46.0 6.9 L1
1.180000 38.70 20.1 46.0 7.3 L1
1.445000 31.70 20.1 46.0 14.3 L1
2.230000 30.10 20.3 46.0 15.9 L1
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Figure 2: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBFD001a-40)
Level [dBV]
0
20
40
60
80
100
120
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
+
+ + + + +x
x x
x
xx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.395000 41.70 20.2 58.0 16.3 N
0.685000 36.20 20.3 56.0 19.8 N
0.795000 34.70 20.3 56.0 21.3 N
0.915000 41.80 20.3 56.0 14.2 N
1.050000 36.20 20.4 56.0 19.8 N
1.175000 39.80 20.4 56.0 16.2 N
Final average measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.260000 35.90 20.3 51.4 15.5 N
0.390000 41.70 20.2 48.1 6.4 N
0.655000 41.00 20.2 46.0 5.0 N
0.915000 40.70 20.3 46.0 5.3 N
1.175000 40.40 20.4 46.0 5.6 N
1.440000 38.30 20.3 46.0 7.7 N
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Figure 3: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBHB001-80)
Level [dBV]
0
20
40
60
80
100
120
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
++
+ + + +x
x
x
xx x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.370000 40.60 20.0 58.5 17.9 L1
0.490000 37.80 20.1 56.2 18.3 L1
0.725000 32.40 20.2 56.0 23.6 L1
0.900000 40.90 20.1 56.0 15.1 L1
1.160000 37.10 20.1 56.0 18.9 L1
11.130000 35.90 21.1 60.0 24.1 L1
Final average measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.260000 37.50 19.9 51.4 13.9 L1
0.385000 42.60 20.0 48.2 5.6 L1
0.645000 36.20 20.2 46.0 9.8 L1
0.900000 37.00 20.1 46.0 9.0 L1
1.160000 36.50 20.1 46.0 9.5 L1
1.415000 35.20 20.2 46.0 10.8 L1
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Figure 4: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBHB001-80)
Level [dBV]
0
20
40
60
80
100
120
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
++ +
+ + +
xx
x
xx x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.180000 47.90 20.2 64.5 16.5 N
0.385000 45.40 20.2 58.2 12.8 N
0.645000 40.40 20.2 56.0 15.6 N
0.775000 34.90 20.3 56.0 21.1 N
0.905000 37.10 20.3 56.0 18.9 N
1.160000 38.90 20.4 56.0 17.1 N
Final average measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.260000 36.60 20.3 51.4 14.9 N
0.385000 41.60 20.2 48.2 6.6 N
0.645000 40.80 20.2 46.0 5.2 N
0.905000 36.20 20.3 46.0 9.8 N
1.160000 36.20 20.4 46.0 9.8 N
1.420000 35.50 20.3 46.0 10.5 N
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Figure 5: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBRD002-150)
100 kHz 1 MHz 10 MHz9 kHz 30 MHz
0.0
10.0
20.0
30.0
40.0
50.0
60.0
70.0
80.0
90.0
100.0
110.0
-10.0
120.0
dBV
Limits
55015MQP
55015MAV
Transducer
V2LnLISN
Traces
PK+
AV
Final quasi-peak & average measurement results:
Trace Frequency Level Limit Delta Limit(MHz) ( dBV) ( dBV) (dB)
1 QP 0.0101 73.26 110.00 -36.74
1 QP 0.1257 48.61 81.61 -33.00
1 QP 0.3345 53.29 59.34 -6.05
1 QP 0.5505 42.08 56.00 -13.92
1 QP 2.0625 24.44 56.00 -31.56
1 QP 10.4055 44.88 60.00 -15.12
2 AV 0.3795 37.10 48.29 -11.19
2 AV 1.131 38.32 46.00 -7.682 AV 2.139 20.80 46.00 -25.20
2 AV 10.311 36.00 50.00 -14.00
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Figure 6: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBRD002-150)
100 kHz 1 MHz 10 MHz9 kHz 30 MHz
0.0
10.0
20.0
30.0
40.0
50.0
60.0
70.0
80.0
90.0
100.0
110.0
-10.0
120.0
dBV
Limits
55015MQP
55015MAV
Transducer
V2LnLISN
Traces
PK+
AV
Final quasi-peak & average measurement results:
Trace Frequency Level Limit Delta Limit(MHz) ( dBV) ( dBV) (dB)
1 QP 0.0091 72.51 110.00 -37.49
1 QP 0.1259 60.34 81.59 -21.25
1 QP 0.3345 52.61 59.34 -6.73
1 QP 0.537 42.84 56.00 -13.16
1 QP 2.13 25.81 56.00 -30.19
1 QP 10.3335 45.97 60.00 -14.03
2 AV 0.3795 37.43 48.29 -10.86
2 AV 1.1355 33.08 46.00 -12.922 AV 2.319 18.67 46.00 -27.33
2 AV 17.034 36.92 50.00 -13.08
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Figure 7: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBTN003-300)
Level [dBV]
0
20
40
60
80
100
120
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
+
+ + + +
+
x
x
xx
x
x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.009500 81.10 21.2 110.0 28.9 L1
0.131900 33.20 20.0 81.2 47.9 L1
0.265000 47.90 19.9 61.3 13.3 L1
0.795000 43.40 20.1 56.0 12.6 L1
9.775000 35.90 21.2 60.0 24.1 L1
22.305000 49.80 20.8 60.0 10.2 L1
Final average measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.265000 44.10 19.9 51.3 7.2 L1
0.395000 36.20 20.0 48.0 11.8 L1
0.525000 35.10 20.1 46.0 10.9 L1
0.660000 33.80 20.2 46.0 12.2 L1
0.790000 34.70 20.1 46.0 11.3 L1
22.115000 41.50 20.9 50.0 8.5 L1
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Figure 8: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBTN003-300)
Level [dBV]
0
20
40
60
80
100
120
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
+
+ + + +
+
xx
x
x x
x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.009100 88.60 21.1 110.0 21.4 N
0.009400 88.70 21.1 110.0 21.3 N
0.131200 54.20 20.1 81.2 27.1 N
0.395000 44.40 20.2 58.0 13.5 N
0.790000 45.40 20.3 56.0 10.6 N
22.475000 57.10 21.2 60.0 2.9 N
Final average measurement results:
Frequency Level Transd Limit Margin Line
MHz dBV dB dBV dB
0.260000 46.70 20.3 51.4 4.7 N
0.395000 37.40 20.2 48.0 10.5 N
0.525000 35.90 20.1 46.0 10.1 N
0.790000 34.70 20.3 46.0 11.3 N
0.920000 33.70 20.3 46.0 12.3 N
22.350000 48.20 21.2 50.0 1.8 N
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4.1.4 Radiated Electromagnetic Disturbance
Result: Passed
Date of testing : 15.03.2011 - 25.03.2011Test procedure : EN 55015:2006+A1+A2 and CISPR 16-1 series standardsFrequency range : 9kHz - 30MHzAmbient condition : Temperature: 23C; Relative humidity: 42%
Test Setup
Input voltage : AC 230V, 50HzOperational mode : Continuous operation with induction lamp as loadEarthing : Through power cord (as class I equipment)
The measurement equipment like test receivers, loop antenna and coaxial switch are in
compliance with the CISPR 16-1 series standards. The test set-up was made according to
Clause 9 of EN 55015:2006+A1+A2.
The EUT was operated at its rated voltage and rated frequency. The EUT was place in the
center of the loop antenna. The EUT was operated for at least 20 minutes before a
measurement.
Induced current in the loop antenna was measured by means of a current probe (1V/A)
according to clause 9 of EN 55015:2006+A1+A2. The three-field components were
measured in sequence by means of a coaxial switch (loop antenna controller). The
measurement was performed with a peak value detector.
The following figures and tables were those measured by an automatic measuring system.
Quasi-peak value was measured and listed where it had a maximum in previous scanning
survey. In the figures, means Quasi-peak value which was measured in finalmeasurement.
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Figure 9: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBFD001a-40)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x
x
x
xxx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
3.079500 -11.80 0.3 22.0 33.8 X
3.309000 -6.10 0.3 22.0 28.1 X
3.556500 1.40 0.3 22.0 20.6 X
6.022500 -9.50 0.5 22.0 31.5 X
6.099000 -6.70 0.5 22.0 28.7 X
6.148500 -9.50 0.5 22.0 31.5 X
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Figure 10: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBFD001a-40)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
xx
xx
x
x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
2.602500 -11.80 0.2 23.7 35.5 Y
2.854500 -10.20 0.2 22.6 32.8 Y
3.291000 -1.70 0.3 22.0 23.7 Y
3.376500 -2.60 0.3 22.0 24.6 Y
3.588000 6.90 0.3 22.0 15.1 Y
14.968500 -1.30 0.8 22.0 23.3 Y
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Figure 11: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBFD001a-40)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x
xxxxx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
3.655500 -1.10 0.3 22.0 23.1 Z
3.943500 -8.80 0.3 22.0 30.8 Z
6.022500 -3.90 0.5 22.0 25.9 Z
6.031500 -0.20 0.5 22.0 22.2 Z
6.040500 -2.60 0.5 22.0 24.6 Z
6.054000 -2.20 0.5 22.0 24.2 Z
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Figure 12: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBHB001-80)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x
xxxx x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
3.534000 0.00 0.3 22.0 22.0 X
4.344000 -6.20 0.4 22.0 28.2 X
4.357500 -7.20 0.4 22.0 29.2 X
4.384500 -7.20 0.4 22.0 29.2 X
4.825500 -9.60 0.4 22.0 31.6 X
15.085500 -10.20 0.8 22.0 32.2 X
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Figure 13: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBHB001-80)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x
x
x
xx
x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
0.128600 42.90 0.2 64.1 21.1 Y
0.384000 25.80 0.2 46.7 20.9 Y
3.561000 7.50 0.3 22.0 14.5 Y
4.015500 -10.60 0.3 22.0 32.6 Y
4.344000 -9.60 0.4 22.0 31.6 Y
15.324000 -1.90 0.8 22.0 23.9 Y
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Figure 14: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBHB001-80)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x
xxxxx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
3.570000 0.70 0.3 22.0 21.3 Z
4.632000 -10.60 0.4 22.0 32.6 Z
4.668000 -9.60 0.4 22.0 31.6 Z
4.704000 -8.70 0.4 22.0 30.7 Z
4.821000 -7.50 0.4 22.0 29.5 Z
4.879500 -8.70 0.4 22.0 30.7 Z
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Figure 15: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBRD002-150)
Level [dBA]
-40
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
xx
xxxx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
0.126300 43.30 0.2 64.8 21.4 X
0.379500 37.90 0.2 46.8 9.0 X
4.614000 -4.00 0.4 22.0 26.0 X
5.050500 -6.20 0.5 22.0 28.2 X
5.203500 -10.00 0.5 22.0 32.0 X
5.653500 -11.00 0.5 22.0 33.0 X
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Figure 16: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBRD002-150)
Level [dBA]
-40
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x x
x
x
x x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
0.126000 46.40 0.2 64.9 18.4 Y
0.379500 46.20 0.2 46.8 0.7 Y
4.708500 7.50 0.4 22.0 14.5 Y
5.244000 -10.00 0.5 22.0 32.0 Y
5.491500 -1.30 0.5 22.0 23.3 Y
6.643500 -2.80 0.5 22.0 24.8 Y
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Figure 17: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBRD002-150)
Level [dBA]
-40
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x
x
xxxx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
0.125800 43.80 0.2 64.9 21.2 Z
0.379500 31.80 0.2 46.8 15.0 Z
24.675000 -8.00 1.1 22.0 30.0 Z
24.954000 -8.00 1.1 22.0 30.0 Z
28.977000 -5.50 1.1 22.0 27.5 Z
29.422500 -8.00 1.2 22.0 30.0 Z
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Figure 18: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBTN003-300)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
x xxxx x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
2.832000 -11.80 0.2 22.7 34.5 X
3.808500 -11.70 0.3 22.0 33.7 X
3.858000 -11.70 0.3 22.0 33.7 X
3.912000 -7.30 0.3 22.0 29.3 X
4.065000 -11.10 0.3 22.0 33.1 X
27.852000 -9.40 1.1 22.0 31.4 X
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Figure 19: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBTN003-300)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
xx
x
x xx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
1.351500 -8.90 0.2 31.6 40.5 Y
2.868000 -11.80 0.2 22.5 34.3 Y
7.431000 -1.10 0.5 22.0 23.1 Y
9.685500 -8.10 0.6 22.0 30.1 Y
27.789000 -9.90 1.1 22.0 31.9 Y
28.549500 -9.80 1.1 22.0 31.8 Y
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Figure 20: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBTN003-300)
Level [dBA]
-30
-20
0
20
40
60
80
90
9k 20k 40k 100k 300k 1M 2M 4M 10M 30M
Frequency [Hz]
xxx
xxx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin Loop
MHz dBA dB dBA dB
2.778000 1.70 0.2 22.9 21.2 Z
2.935500 -0.80 0.2 22.3 23.1 Z
2.985000 2.10 0.2 22.1 20.0 Z
3.601500 -0.60 0.3 22.0 22.6 Z
3.651000 2.30 0.3 22.0 19.7 Z
3.705000 3.00 0.3 22.0 19.0 Z
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4.1.5 Radiated Electromagnetic Disturbance (30-300MHz)
Result: Passed
Date of testing : 15.03.2011 - 23.03.2011Test procedure : EN 55015:2006+A1+A2Frequency range : 30- 300MHzLimits : Quasi-peak limits:
30-100MHz, 64 to 54dBV;
100-230MHz, 54dBV
230-300MHz, 61dBVKind of test site : Shielded roomOperation mode : Continuous operation with induction lamp as loadAmbient condition : Temperature: 21C; Relative humidity: 42%
The lighting equipment is placed on one or more non-conducting blocks with a height of
(100.2) cm which in turn are placed on an earthed metal plate with dimensions at least
20cm larger than the lighting equipment.
The lighting equipment is connected via a mains supply cable with a length of (2010)
cm to the appropriate coupling/decoupling network (CDN-M2 or CDM-M3, see IEC
61000-4-6).
The RF output of the CDN is connected to measuring receiver with a Quasi-peak detector
via a 6dB, 50 attenuator (required to minimise any mismatch error).
The following figures and tables were those measured by an automatic measurement
system. A preview test was firstly performed with peak detector. The final test was
performed with Quasi-peak at those critical frequencies during the preview test. In the
following figures, + means final measurement results with Quasi-peak detector.
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Figure 21: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBFD001a-40)
Level [dBV]
0
10
20
30
40
50
60
70
80
30M 40M 50M 60M 80M 100M 200M 300MFrequency [Hz]
xx x
xx
x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin
MHz dBA dB dBV dB
60.400000 34.00 15.9 58.2 24.2
91.700000 31.80 16.9 54.7 22.9
97.800000 30.70 16.1 54.2 23.5
203.600000 34.20 16.7 54.0 19.8
207.900000 36.30 17.0 54.0 17.7
250.050000 42.50 17.2 61.0 18.5
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Figure 22: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBHB001-80)
Level [dBV]
0
10
20
30
40
50
60
70
80
30M 40M 50M 60M 80M 100M 200M 300M
Frequency [Hz]
x
xxx
x
x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin
MHz dBA dB dBV dB
136.200000 34.60 16.5 54 19.4
136.900000 40.10 16.6 54 13.9
137.850000 41.30 16.3 54 12.7
140.900000 41.40 16.1 54 12.6
145.900000 36.30 15.9 54 17.7
166.700000 29.20 17.2 54 24.8
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Figure 23: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBRD002-150)
Level [dBV]
0
10
20
30
40
50
60
70
80
30M 40M 50M 60M 80M 100M 200M 300M
Frequency [Hz]
x
xx x
x x
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin
MHz dBA dB dBV dB
38.000000 43.40 17.0 62.0 18.7
89.650000 33.30 17.1 54.9 21.6
103.650000 35.70 15.6 54.0 18.3
117.250000 37.00 16.6 54.0 17.0
127.950000 30.20 17.2 54.0 23.8191.000000 31.30 15.7 54.0 22.7
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Figure 24: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBTN003-300)
Level [dBV]
0
10
20
30
40
50
60
70
80
30M 40M 50M 60M 80M 100M 200M 300M
Frequency [Hz]
x
xxx
xx
Final quasi-peak measurement results:
Frequency Level Transd Limit Margin
MHz dBA dB dBV dB
84.450000 45.80 17.3 55.4 9.6
94.500000 42.30 16.4 54.5 12.2
94.900000 42.40 16.3 54.4 12.0
98.350000 39.20 16.1 54.1 14.9
107.700000 40.90 15.7 54.0 13.1
117.450000 38.70 16.7 54.0 15.3
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5 Test Results I M M U N I T Y
During the immunity tests, the EUT was operated under conditions specified by clause
3.1 of this report.
Performance criterion A: During the test no change of the luminous intensity shall be
observed and the regulating control, if any, shall operate during the test as intended.
Performance criterion B: During the test the luminous intensity may change to any value.
After the test the luminous intensity shall be restored to its initial value within 1 min.Regulating controls need not function during the test, but after the test the mode of the
control shall be the same as before the test provided that during the test no mode
changing commands were given.
Performance criterion C: During the after the test any change of the luminous intensity is
allowed and the lamp(s) may be extinguished. After the test, within 30 min, all functions
shall return to normal if necessary by temporary interruption of the mains supply and/or
operating the regulating control.
Date of testing : 15.03.2011 - 23.03.2011
Room temperature : 21-22C
Relative humidity : 41-42%
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5.1 Enclosure
5.1.1 Electrostatic Discharge
Result: Passed
The immunity against electrostatic discharge was tested in accordance with EN
61547:2009. Test setup and ESD-Generator are according to IEC 61000-4-2 which is
specified by EN 61547:2009.The EUT is placed on 0.8m wood table above the ground plane. And the minimum
distance between the EUT and all other conductive structures except the ground plane
beneath the EUT is more than 0.5m.
The reference ground plane is an aluminium sheet of 0.25mm minimum thickness. Thereference ground plane is connected to the protective earth. The size of the ground plane
is 2m x 2m.
A horizontal coupling plane (HCP), 1.6m x 0.8m, is placed on the table and isolates the
EUT 0.5mm thick. Vertical coupling plane of dimensions 0.5m x 0.5m is placed parallel
to and positioned at a distance of 0.1m from the EUT.
Charge voltage : 4.0kV (Contact Discharge), 8.0kV (Air Discharge)Polarity : positive / negativeNumber of discharges : 10Performance criteria : B
Table 6: ESD, positive / negative polarity
Position Kind of Discharge Result Remarks
Screws Contact discharge 4kV Pass No disturbance of function
Seam Air discharge 8kV Pass DittoPower lines Air discharge 8kV Pass Ditto
Coupling plane
(HCP & VCP)Contact discharge 4kV Pass Ditto
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5.1.2 RF radiated immunity test
Result: Passed
The RF radiated immunity test was carried out in accordance with IEC 61000-4-3 which
is specified by EN 61547:2009.
The test was performed inside a modified semi-anechoic chamber with a test distance of
3m. The field uniformity of the modified semi-anechoic chamber is regularly calibrated
to ensure the 0-6dB field uniformity criterion as specified by IEC 61000-4-3.
Test level : 3V/mFrequency range : 80 - 1000MHzModulation : 80% AM, 1kHzSweep rate : Frequency step: 1%Dwell time : 3sPerformance criteria : A
Table 7: Radiated electromagnetic field test results
Polarization Result Remarks
Horizontal Pass No disturbance of functionVertical Pass Ditto
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5.1.3 Power Frequency Magnetic FieldsResult: Passed
According to clause 5.4 of EN 61547:2009, this test needs only to be applied to
equipment containing components susceptible to magnetic fields, such as Hall elements
or magnetic field sensors. The EUT does not have any component susceptible to
magnetic fields. Therefore, the EUT is deemed to be compliant without practical testing.
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5.2 Input and Output AC Power Ports
5.2.1 Fast Transients on AC Power Lines
Result: Passed
The immunity against fast transients on AC power lines was tested in accordance to EN
61547:2009. Test setup and the fast transient noise generator are according to IEC 61000-
4-4 which is specified by EN 61547:2009.The EUT is placed on 0.1m wood support above the ground plane. And the minimum
distance between the EUT and all other conductive structures except the ground plane
beneath the EUT is more than 0.5m.
The length between the coupling device and the EUT is less than 0.5m.The cord lengthmore than 0.5m, the excess length of the cable shall be folded to avoid a flat coil and
situated at a distance of 0,1m above the ground reference plane.
The reference ground plane is an aluminium sheet of 0.25mm minimum thickness. The
reference ground plane is connected to the protective earth. The size of the ground plane
is 2m x 2m.
Test voltage : 1kVPolarity : negative / positiveRepetition frequency : 5kHzTest duration : 120secTr/Tn : 5ns/50nsPerformance criteria : B
Table 8: Burst, AC power lines, positive and negative polarity
Line Result RemarksL+N+PE - GRP 1kV Pass No disturbance of function
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5.2.2 Injected Current into AC Power Port
Result: Passed
The immunity against injected current into AC power port was tested according to EN
61547:2009 in a shielded room. Test setup and the test generator are according to IEC
61000-4-6 which is specified by EN 61547:2009.
The EUT is placed on a ground reference plane and shall be insulated from it by an
insulating support 0.1m thick. And the minimum distance between the EUT and all other
conductive structures except the ground plane beneath the EUT is more than 0.5m.
The EUT comprised a single unit. The coupling and decoupling networks are inserted on
the power supply connection. The coupling and decoupling networks are placed on the
ground reference plane, making direct contact with it at about 0.1 0.3 meter from EUT.
The cable between EUT and CDN is as short as possible and not bundled nor wrapped.
The height of cable between the EUT and the coupling and decoupling networks above
the ground reference plane is 50mm.
Voltage level : 3V(rms)(unmodulated)Environmental phenomena : r.f. current, common mode, 1kHz, 80%AMSource impedance : 150
Frequency range : 0.15 80MHzFrequency step : 1%Dwell time : 3sPerformance criteria : A
Table 9: Injected current, AC power port
Line Result Remarks
AC Input port Pass No disturbance of function
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5.2.3 Surges to AC Power Port
Result: Passed
The immunity against surges to AC power port was tested in accordance to EN
61547:2009. Test setup and the Combination Wave Generator (CWG) are according to
IEC 61000-4-5 which is specified by EN 61547:2009.
The EUT is placed on 0.1m wood support above the ground plane.
Open-circuit test voltage : 2kV (common mode)1kV (differential mode)
Tr/Tn : 1.2/50s (open-circuit voltage)8/20s (short-circuit current)
Test numbers : 5 positive and 5 negative pulsesRepetition rate : 1 surge/minPerformance criteria : B
Table 10: Surges to AC power lines, positive/negative
Line Result Remarks
L-PE (common mode) 2kV Pass No disturbance of functionN-PE (common mode) 2kV Pass Ditto
L-N (differential mode) 1kV Pass Ditto
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5.2.4 Voltage dips and interruptions to AC Power Port
Result: Passed
The immunity against voltage dips and interruptions to AC power port was tested in
accordance to EN 61547:2009. Test setup and the test generator are according to IEC
61000-4-11 which is specified by EN 61547:2009.
Table 11: Test condition and test result for voltage dips
EnvironmentalPhenomena
Test level(in % UT)
Duration (in period ofthe rated frequency)
Performancecriteria
Result
Interruptions 0 0.5 (10ms) B Pass
Voltage dips (in %UT) 30 70 10 (200ms) C Ditto
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6 Photographs of the Test Set-UpPhotograph 1: Set-up for emission of harmonics
Photograph 2: Set-up for disturbance voltage
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Photograph 3: Set-up for magnetic radiation
Photograph 4: Set-up for radiated disturbance (30-300MHz)
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Photograph 5: Set-up for ESD
Photograph 6: Set-up for RF electromagnetic field
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Photograph 7: Set-up for EFT
Photograph 8: Set-up for injected current
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Photograph 9: Set-up for surge
Photograph 10: Set-up for voltage dips and interruptions
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7 List of TablesTable 1: List of test and measurement equipment....................... ........................................................... ....................... 6Table 2: Harmonic currents measurement result (JBFD001a-40)................................................ ............................... 10Table 3: Harmonic currents measurement result (JBHB001-80)........................................................... ..................... 11Table 4: Harmonic currents measurement result (JBRD002-150)......................................................... ..................... 12Table 5: Harmonic currents measurement result (JBTN003-300) ......................................................... ..................... 13Table 6: ESD, positive / negative polarity ...................................................... ........................................................... . 43Table 7: Radiated electromagnetic field test results.............................. ........................................................... ........... 44Table 8: Burst, AC power lines, positive and negative polarity............................................................. ..................... 46Table 9: Injected current, AC power port ....................................................... ........................................................... . 47Table 10: Surges to AC power lines, positive/negative ...................................................... ........................................ 48Table 11: Test condition and test result for voltage dips............................................................................................. 49
8 List of FiguresFigure 1: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBFD001a-40)............................................... 16Figure 2: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBFD001a-40) .............................................. 17Figure 3: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBHB001-80) ................................................ 18Figure 4: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBHB001-80)............................................... . 19Figure 5: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBRD002-150) .............................................. 20Figure 6: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBRD002-150)............................................. . 21Figure 7: Spectral diagram, Conducted Emission, 9kHz - 30MHz, L (JBTN003-300) .............................................. 22Figure 8: Spectral diagram, Conducted Emission, 9kHz - 30MHz, N (JBTN003-300).............................................. 23
Figure 9: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBFD001a-40)..................................... 25Figure 10: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBFD001a-40)................................... 26Figure 11: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBFD001a-40) ................................... 27Figure 12: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBHB001-80).................................... 28Figure 13: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBHB001-80).................................... 29Figure 14: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBHB001-80) .................................... 30Figure 15: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBRD002-150).................................. 31Figure 16: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBRD002-150).................................. 32Figure 17: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBRD002-150) .................................. 33Figure 18: Spectral diagram, Radiated Electromagnetic Disturbance, axis X (JBTN003-300) .................................. 34Figure 19: Spectral diagram, Radiated Electromagnetic Disturbance, axis Y (JBTN003-300) .................................. 35Figure 20: Spectral diagram, Radiated Electromagnetic Disturbance, axis Z (JBTN003-300).................................. . 36Figure 21: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBFD001a-40) ......................... 38
Figure 22: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBHB001-80)...... ..................... 39Figure 23: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBRD002-150).... ..................... 40Figure 24: Spectral diagram, Radiated Electromagnetic Disturbance, 30-300MHz (JBTN003-300).... ..................... 41
9 List of PhotographsPhotograph 1: Set-up for emission of harmonics ...................................................... .................................................. 50Photograph 2: Set-up for disturbance voltage ........................................................... .................................................. 50Photograph 3: Set up for magnetic radiation 51