Models: BRP391 series; BRP392 series; BRP394 series;

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1 -page 1 of EMC Test report for LED street lighting Models: BRP391 series; BRP392 series; BRP394 series; Shanghai, date of issue: July. 09 th, 2017 Author: Jerremy Cai By order of Philips Lighting (China) Investment Co., Ltd. author : Jerremy Cai B 99 pages 0 annexes (sec) DEKRA Testing and Certification (Shanghai) Ltd. Document reviewed : Zuyao Fan SH-F-PC4-005 v1.1 DEKRA Testing and Certification (Shanghai) Ltd. 3F #250 Jiangchangsan Road Building 16 Headquarter Economy Park Shibei Hi-Tech Park, Zhabei District Shanghai CHINA Telephone Telefax

2 -page 2 of CONTENTS 1 Test description Model description Summary Applied standards Overview of results General Information Product Information Customer Information Test data Environmental conditions Measurement Uncertainty Emission test results Mains conducted disturbance voltage Disturbance voltage at control terminal Radiated Magnetic Field emission Radiated disturbance Common mode terminal voltage (CDN method) Harmonic currents Voltage fluctuations (Flicker) Immunity Test Results Electrostatic discharge immunity Radiated EM field immunity Electrical Fast Transient immunity Surge transient immunity RF Conducted immunity Power supply interruptions and dips Identification of the equipment under test Model list...98

3 -page 3 of TEST DESCRIPTION The report is issued to base on original test report Ref. No dated on including the following modifications: - Update the explanation of model list as per requirement by client. - Add some models and list in model list with bold letters (New models are fully same construction as originals except model type.) After review, no test is considered necessary. The tests described in this report do not result in the right to use any approval mark as conferred by DEKRA. As far as the tests were based on certain specifications, these are mentioned in the report. The conclusion and results stated in this test report are based on a non-recurrent examination of sample(s) provided by the applicant. 1.1 Model description The apparatus as supplied for the tests are LED street lightings, models BRP394 LED384/NW 320W V DM PSR P7 CT, BRP391 LED48/NW 40W V DM, BRP391 LED60/NW 50W V DM and BRP394 LED384/NW 320W V DM with driver Xitanium 150W 0.7A 230V Y, Xitanium 150W A Prog GL sxt, Xi FP 150W A SNLDAE 230V S240 sxt, Xi LP 150W A S1 230V S240 sxt. This product has electronic control unit and earth connection. According to the declaration from manufacturer, they are identical except rated power, dimension and driver. Due to the similarity between them, models BRP394 LED384/NW 320W V DM PSR P7 CT, BRP391 LED48/NW 40W V DM, BRP391 LED60/NW 50W V DM and BRP394 LED384/NW 320W V DM with driver Xitanium 150W 0.7A 230V Y, Xitanium 150W A Prog GL sxt, Xi FP 150W A SNLDAE 230V S240 sxt, Xi LP 150W A S1 230V S240 sxt were selected for the full test and the results are also representative for other models as well.

4 -page 4 of Figure 1 General view Figure 2 General view

5 -page 5 of SUMMARY This chapter presents an overview of standards and results. Refer to the next chapters for details of measured test results and applied test levels. 2.1 Applied standards Standard Year Title EN Emission Electrical lighting and similar equipment EN Immunity - Equipment for general lighting purposes EN Limits for harmonic currents emissions EN Limitation of voltage fluctuations and flicker 2.2 Overview of results Emission tests Mains conducted disturbance voltage Disturbance voltage at control terminal Radiated Magnetic Field emission Radiated disturbance Common mode terminal voltage (CDN method) Harmonic current emission Limitation of voltage fluctuations (flicker) Result PASS PASS PASS PASS PASS PASS PASS Immunity tests Electrostatic Discharges (ESD) Radiated EM Field Electrical fast transient (EFT) Surge transients Conducted RF disturbances Power supply voltage interruptions & dips Result PASS PASS PASS PASS PASS PASS

6 -page 6 of GENERAL INFORMATION 3.1 Product Information Equipment under test Trade mark Tested Type Representative types LED Street Lighting PHILIPS BRP394 LED384/NW 320W V DM PSR P7 CT; BRP391 LED48/NW 40W V DM; BRP391 LED60/NW 50W V DM; BRP394 LED384/NW 320W V DM with driver Xitanium 150W 0.7A 230V Y; BRP394 LED384/NW 320W V DM with driver Xitanium 150W A Prog GL sxt; BRP394 LED384/NW 320W V DM with driver Xi FP 150W A SNLDAE 230V S240 sxt; BRP394 LED384/NW 320W V DM with driver Xi LP 150W A S1 230V S240 sxt; BRP391 series; BRP392 series; BRP394 series; Ratings V~; 50 / 60 Hz; 30W to 320 W; 3.2 Customer Information Applicant Address Philips Lighting (China) Investment Co., Ltd. Building 9, Lane 888, Tianlin Road, Minhang district, Shanghai, China Manufacturer Address Philips Lighting (China) Investment Co., Ltd. Building 9, Lane 888, Tianlin Road, Minhang district, Shanghai, China Factory Address Philips Luminaires (Chengdu) Co., Ltd No. 91, Tianyuan Road, Hi-tech, West District, Chengdu City, Sichuan Province, , P. R. China

7 -page 7 of Test data For radiated disturbance and radiated EM field immunity tests: Location Address Date(s) of performance of tests Supervised by DEKRA Testing and Certification (Suzhou) Co., Ltd. No. 99, Hongye Road, Suzhou Industrial Park, Suzhou, , P. R. China. Mar Zuyao Fan For other tests: Location Address Date of receipt of test item Date(s) of performance of tests Supervised by DEKRA Testing and Certification (Shanghai) Ltd. 1 F, No. 250, Jiangchangsan Road, Shanghai City Mar (sample(s) provided by applicant) Mar Zuyao Fan 3.4 Environmental conditions Tests have been performed in a controlled laboratory environment, where the environmental conditions are maintained within the applicable ranges. Ambient temperature 15 C 35 C Relative Humidity air 30% - 60% 3.5 Measurement Uncertainty Conducted Emission Expanded Uncertainty: U = 3.22 db Radiated Magnetic Field emission Expanded Uncertainty: U = 2.88 db Radiated Emission Expanded Uncertainty (30-200MHz): U = 3.70 db (horizontal) U = 4.23 db (vertical) Radiated Emission Expanded Uncertainty (200M-1000MHz): U = 3.20 db (horizontal) U = 3.23 db (vertical)

8 -page 8 of EMISSION TEST RESULTS 4.1 Mains conducted disturbance voltage Standard EN Frequency [MHz] QP [db( V)] AV [db( V)] 0,009 0, N/A 0,05 0, *) N/A 0,15 0, *) *) 0,50 5, , *) Limits decreasing linearly with the logarithm of the frequency Port Test method Mode AC mains LISN On mode

9 -page 9 of Results for model BRP394 LED384/NW 320W V DM PSR P7 CT Line

10 -page 10 of Neutral

11 Results for BRP391 LED48/NW 40W V DM -page 11 of Line

12 -page 12 of Neutral

13 -page 13 of Results for BRP391 LED60/NW 50W V DM Line

14 -page 14 of Neutral

15 -page 15 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XITANIUM 150W 0.7A 230V Y Line

16 -page 16 of Neutral

17 -page 17 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XITANIUM 150W A PROG GL SXT, Max power Line

18 -page 18 of Neutral

19 -page 19 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XITANIUM 150W A PROG GL SXT, Min power Line

20 -page 20 of Neutral

21 -page 21 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI FP 150W A SNLDAE 230V S240 SXT, Max power Line

22 -page 22 of Neutral

23 -page 23 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI FP 150W A SNLDAE 230V S240 SXT, Min power Line

24 -page 24 of Neutral

25 -page 25 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI LP 150W A S1 230V S240 SXT Line

26 -page 26 of Neutral Refer to chapter 6 for a photo of the test set-up. Conclusion: PASS

27 -page 27 of Disturbance voltage at control terminal Standard EN Frequency [MHz] QP [db( V)] AV [db( V)] 0,15 0, *) *) 0, *) Limits decreasing linearly with the logarithm of the frequency Port Test method Mode Control terminal ISN On dimming mode

28 -page 28 of Results for BRP391 LED48/NW 40W V DM, Min power Frequency Measure Level Reading Level Over Limit Limit Probe Cable Amp Type (MHz) (dbuv) (dbuv) (db) (dbuv) (db) (db) (db) QP AV QP AV QP AV QP AV QP AV QP AV

29 -page 29 of Results for BRP391 LED48/NW 40W V DM, Max power Frequency Measure Level Reading Level Over Limit Limit Probe Cable Amp Type (MHz) (dbuv) (dbuv) (db) (dbuv) (db) (db) (db) QP AV QP AV QP AV QP AV QP AV QP AV

30 -page 30 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XITANIUM 150W A PROG GL SXT, Min power Frequency Measure Level Reading Level Over Limit Limit Probe Cable Amp Type (MHz) (dbuv) (dbuv) (db) (dbuv) (db) (db) (db) QP AV QP AV QP AV QP AV QP AV QP AV QP AV QP AV QP AV

31 -page 31 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XITANIUM 150W A PROG GL SXT, Max power Frequency Measure Level Reading Level Over Limit Limit Probe Cable Amp Type (MHz) (dbuv) (dbuv) (db) (dbuv) (db) (db) (db) QP AV QP AV QP AV QP AV QP AV

32 -page 32 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI FP 150W A SNLDAE 230V S240 SXT, Min power Frequency (MHz) Measure Level (dbuv) Reading Level (dbuv) Over Limit (db) Limit (dbuv) QP AV QP AV QP AV QP AV QP AV QP AV Probe (db) Cable (db) Amp (db) Type

33 -page 33 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI FP 150W A SNLDAE 230V S240 SXT, Max power Frequency (MHz) Measure Level (dbuv) Reading Level (dbuv) Over Limit (db) Limit (dbuv) QP QP AV AV QP AV QP AV QP AV QP AV QP AV Probe (db) Cable (db) Amp (db) Type Refer to chapter 6 for the test set-up. Conclusion: PASS

34 -page 34 of Radiated Magnetic Field emission Standard EN Port Enclosure with cabling Mode On mode Frequency [MHz] QP [db( A)] 0,009 0, ,07 0, *) 0,15 3, *) 3,0 30,0 22 *) Limits decreasing linearly with the logarithm of the frequency

35 -page 35 of Results for model BRP394 LED384/NW 320W V DM PSR P7 CT X Axis

36 -page 36 of Y Axis

37 -page 37 of Z Axis

38 -page 38 of Results for BRP391 LED48/NW 40W V DM X Axis

39 -page 39 of Y Axis

40 -page 40 of Z Axis

41 -page 41 of Results for BRP391 LED60/NW 50W V DM X Axis

42 -page 42 of Y Axis

43 -page 43 of Z Axis

44 -page 44 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XITANIUM 150W 0.7A 230V Y X Axis

45 -page 45 of Y Axis

46 -page 46 of Z Axis

47 -page 47 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XITANIUM 150W A PROG GL SXT X Axis

48 -page 48 of Y Axis

49 -page 49 of Z Axis

50 -page 50 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI FP 150W A SNLDAE 230V S240 SXT X Axis

51 -page 51 of Y Axis

52 -page 52 of Z Axis

53 -page 53 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI LP 150W A S1 230V S240 SXT X Axis

54 -page 54 of Y Axis

55 -page 55 of Z Axis Refer to chapter 6 for a photo of the test set-up. Conclusion: PASS

56 -page 56 of Radiated disturbance Standard EN Measuring distance 3 meters Frequency [MHz] QP [db( 3m Port Mode Enclosure On mode

57 -page 57 of Results for model BRP394 LED384/NW 320W V DM PSR P7 CT Horizontal

58 -page 58 of Vertical

59 -page 59 of Results for BRP391 LED48/NW 40W V DM, Max power Horizontal Frequency Measure Reading Over Limit Probe Cable Amp Ant Table Type (MHz) Level (dbuv/m) Level (dbuv) Limit (db) (dbuv/m) (db/m) (db) (db) Pos (cm) Pos (deg) QP QP QP QP QP QP

60 -page 60 of Vertical Frequency (MHz) Measure Level (dbuv/m) Reading Level (dbuv) Over Limit (db) Limit (dbuv/m) Probe (db/m) Cable (db) Amp (db) Ant Pos (cm) Table Pos (deg) QP QP QP QP QP QP Type

61 -page 61 of Results for BRP391 LED48/NW 40W V DM, Min power Horizontal Frequency Measure Reading Over Limit Probe Cable Amp Ant Table Type (MHz) Level (dbuv/m) Level (dbuv) Limit (db) (dbuv/m) (db/m) (db) (db) Pos (cm) Pos (deg) QP QP QP QP QP QP

62 -page 62 of Vertical Frequency (MHz) Measure Level (dbuv/m) Reading Level (dbuv) Over Limit (db) Limit (dbuv/m) Probe (db/m) Cable (db) Amp (db) Ant Pos (cm) Table Pos (deg) QP QP QP QP QP QP Type

63 -page 63 of Results for BRP391 LED60/NW 50W V DM Horizontal Frequency Measure Reading Over Limit Probe Cable Amp Ant Table Type (MHz) Level (dbuv/m) Level (dbuv) Limit (db) (dbuv/m) (db/m) (db) (db) Pos (cm) Pos (deg) QP QP QP QP QP QP

64 -page 64 of Vertical Frequency (MHz) Measure Level (dbuv/m) Reading Level (dbuv) Over Limit (db) Limit (dbuv/m) Probe (db/m) Cable (db) Amp (db) Ant Pos (cm) Table Pos (deg) QP QP QP QP QP QP Type Refer to chapter 6 for a photo of the test set-up. Conclusion: PASS

65 -page 65 of Common mode terminal voltage (CDN method) Standard EN Test method CDN Mode On mode Frequency [MHz] QP [db( V)] * *) Limits decreasing linearly with the logarithm of the frequency

66 -page 66 of Results for BRP394 LED384/NW 320W V DM with driver Xitanium 150W 0.7A 230V Y

67 -page 67 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI LP 150W A S1 230V S240 SXT

68 -page 68 of Results for BRP394 LED384/NW 320W V DM with driver Xitanium 150W A Prog GL sxt in max power

69 -page 69 of Results for BRP394 LED384/NW 320W V DM with driver Xitanium 150W A Prog GL sxt in min power

70 -page 70 of Results for BRP394 LED384/NW 320W V DM with driver Xi FP 150W A SNLDAE 230V S240 sxt in max power

71 -page 71 of Results for BRP394 LED384/NW 320W V DM with driver Xi FP 150W A SNLDAE 230V S240 sxt in min power Refer to chapter 6 for the test set-up. Conclusion: PASS

72 -page 72 of Harmonic currents Standard EN Port AC Mains supply Mode On mode Class A All apparatus not classified as Class B, C or D Class B Portable tools Class C Lighting equipment Class D Personal computers, television receivers

73 C u r r e n t R M S ( A m p s ) C u r r e n t ( A m p s ) V o l t a g e ( V o l t s ) -page 73 of Results for model BRP394 LED384/NW 320W V DM PSR P7 CT Current & voltage waveforms Harmonics and Class C limit line European Limits H a r m o n i c #

74 -page 74 of Test Result: Pass Source qualification: Normal THC(A): I-THD(%): 5.7 POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass

75 C u r r e n t R M S ( A m C p u s r ) r e n t ( A m p s ) V o l t a g e ( V o l t s ) -page 75 of Result for BRP391 LED48/NW 40W V DM Current & voltage waveforms Harmonics and Class C limit line European Limits H a r m o n i c # Test result: Pass Worst harmonics H7-65.5% of 100% limit, H7-46.4% of 150% limit.

76 -page 76 of Test Result: Pass Source qualification: Normal THC(A): I-THD(%): 11.0 POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): 41.7 Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass

77 C u r r e n t R M S ( A m p s ) C u r r e n t ( A m p s ) V o l t a g e ( V o l t s ) -page 77 of Results for BRP391 LED60/NW 50W V DM Test Result: Pass Source qualification: Normal Current & voltage waveforms Harmonics and Class C limit line European Limits H a r m o n i c # Test result: Pass Worst harmonics H5-57.3% of 100% limit, H5-39.8% of 150% limit.

78 -page 78 of Test Result: Pass Source qualification: Normal THC(A): I-THD(%): 17.1 POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): 49.5 Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass

79 C u r r e n t R M S ( A m p s ) C u r r e n t ( A m p s ) V o l t a g e ( V o l t s ) -page 79 of Results for BRP394 LED384/NW 320W V DM with driver Xitanium 150W 0.7A 230V Y Test Result: Pass Source qualification: Normal Current & voltage waveforms Harmonics and Class C limit line European Limits H a r m o n i c # Test result: Pass Worst harmonics H % of 100% limit, H11-41% of 150% limit.

80 -page 80 of Test Result: Pass Source qualification: Normal THC(A): I-THD(%): 6.1 POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass

81 C u r r e n t R M S ( A m p s ) C u r r e n t ( A m p s ) V o l t a g e ( V o l t s ) -page 81 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI FP 150W A SNLDAE 230V S240 SXT Test Result: Pass Source qualification: Normal Current & voltage waveforms Harmonics and Class C limit line European Limits H a r m o n i c # Test result: Pass Worst harmonics H % of 100% limit, H % of 150% limit.

82 -page 82 of Test Result: Pass Source qualification: Normal THC(A): I-THD(%): 6.3 POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass

83 C u r r e n t R M S ( A m p s ) C u r r e n t ( A m p s ) V o l t a g e ( V o l t s ) -page 83 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI LP 150W A S1 230V S240 SXT Test Result: Pass Source qualification: Normal Current & voltage waveforms Harmonics and Class C limit line European Limits H a r m o n i c # Test result: Pass Worst harmonics H % of 100% limit, H % of 150% limit.

84 -page 84 of Test Result: Pass Source qualification: Normal THC(A): I-THD(%): 5.2 POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass

85 C u r r e n t R M S ( A m p s ) C u r r e n t ( A m p s ) V o l t a g e ( V o l t s ) -page 85 of Results for BRP394 LED384/NW 320W V DM with driver Xitanium 150W A GL Prog sxt Test Result: Pass Source qualification: Normal Current & voltage waveforms Harmonics and Class C limit line European Limits H a r m o n i c # Test result: Pass Worst harmonics H % of 100% limit, H % of 150% limit.

86 -page 86 of Test Result: Pass Source qualification: Normal THC(A): I-THD(%): 11.7 POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass N/A N/A Pass Conclusion: PASS

87 -page 87 of Voltage fluctuations (Flicker) Standard EN Port AC Mains supply Voltage 230 Vac Mode On mode Equipment intended to be connected to 230/400 V AC, 50 Hz supply systems may not produce voltage fluctuations in the supply systems due to variation of the input current above the limits as stated below. P ST 1 P LT Tmax (dt > 3,3%) Not applicable 500 ms d C 3,3% d MAX 4% Results for BRP394 LED384/NW 320W V DM PSR P7 CT Relative voltage change characteristic Tmax 0,0 ms Maximum relative voltage change d MAX <0,05% Relative Voltage change d C <0,050% Short term flicker P ST Long term flicker P LT N/A

88 -page 88 of Result for BRP391 LED48/NW 40W V DM Tmax (dt > 3,3%) 0,0 ms Maximum relative voltage change d MAX <0,050 % Relative Voltage change d C <0,050 % Short term flicker P ST 0,064 Long term flicker P LT Not applicable Results for BRP391 LED60/NW 50W V DM Tmax (dt > 3,3%) 0,0 ms Maximum relative voltage change d MAX <0,050 % Relative Voltage change d C <0,050 % Short term flicker P ST 0,064 Long term flicker P LT Not applicable Results for BRP394 LED384/NW 320W V DM with driver Xitanium 150W 0.7A 230V Y Tmax (dt > 3,3%) 0,0 ms Maximum relative voltage change d MAX <0,050 % Relative Voltage change d C <0,050 % Short term flicker P ST 0,064 Long term flicker P LT Not applicable

89 -page 89 of Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI FP 150W A SNLDAE 230V S240 SXT Tmax (dt > 3,3%) 0,0 ms Maximum relative voltage change d MAX <0,050 % Relative Voltage change d C <0,050 % Short term flicker P ST 0,073 Long term flicker P LT Not applicable Results for BRP394 LED384/NW 320W V DM WITH DRIVER XI LP 150W A S1 230V S240 SXT Tmax (dt > 3,3%) 0,0 ms Maximum relative voltage change d MAX 0,250 % Relative Voltage change d C 0,230 % Short term flicker P ST 0,120 Long term flicker P LT Not applicable Results for BRP394 LED384/NW 320W V DM with driver Xitanium 150W A GL Prog sxt Tmax (dt > 3,3%) 0,0 ms Maximum relative voltage change d MAX <0,050 % Relative Voltage change d C <0,050 % Short term flicker P ST 0,064 Long term flicker P LT Not applicable Conclusion: PASS

90 -page 90 of IMMUNITY TEST RESULTS 5.1 Electrostatic discharge immunity Electrostatic discharges (ESD) are the result of persons or objects that accumulate static electricity due to for instance walking on synthetic carpets. The ESD can influence the operation of equipment or damage its electronics, either by a direct discharge or indirectly by coupling or radiation. Both effects are simulated during the tests. Requirements Standard EN Basic standard EN Port Enclosure Performance criterion B; During the test degradation is allowed. No change of operating state or stored data is allowed. Air discharges 8 kv Contact discharges 4 kv Mode On mode Performed tests Air discharges 4 kv 8 kv 15 kv 2 kv Contact discharges 2 kv 4 kv 8 kv kv Via coupling planes Horizontal Vertical Polarity Positive Negative Set-up Table-top Floor standing Ambient temperature 23 C Relative Humidity air 48% Observations During the test no loss of performance was observed. After the test the EUT functioned as intended. No unacceptable loss of performance was observed. Conclusion: PASS

91 -page 91 of Radiated EM field immunity During the test it is verified if the equipment under test has sufficient immunity against radiated electromagnetic fields. Walkie-talkies, radio transmitters, television transmitters, and telecommunication equipment including cellular telephones and other emitting devices, like industrial electromagnetic sources can generate these fields. Requirements Standard EN Basic standard EN Port Enclosure Performance criterion A; Operation as intended Frequency range MHz Modulation 1 khz 80% AM Field strength 3 V/m Performed tests Frequency range Tested Field strength Dwell time Test set-up Mode MHz 3 V/m 3 seconds Full Anechoic Chamber On mode Observations During the test no loss of performance was observed. After the test the EUT functioned as intended. No unacceptable loss of performance was observed. Conclusion: PASS

92 -page 92 of Electrical Fast Transient immunity The EFT immunity test simulates disturbances by bursts of very short transients caused for example by switching off loads such as an AC motor or bouncing relay contacts. The transients are likely to disturb electronics but less likely to cause damage. Requirements Standard EN Basic standard EN Performance criterion B; During the test degradation is allowed. No change of operating state or stored data is allowed. Pulse characteristics 5/50 ns Peak Voltage; Port 1,0 kv; AC input power port 0,5 kv; dimming port Repetition frequency 5 khz 2,5 khz Performed tests Tested Voltage; Port 1,0 kv; AC input power port 0,5 kv; dimming port Mode On mode Injection method CDN Capacitive clamp Polarity Positive Negative Set-up Table-top Floor standing Observations During the test no loss of performance was observed. After the test the EUT functioned as intended. No unacceptable loss of performance was observed. Conclusion: PASS

93 -page 93 of Surge transient immunity The surge transient immunity test simulates the surges that are caused by overvoltage due to indirect (induced) lightning transients. The pulse is a slow transient with high-energy contents and due to its long duration may cause damage to an unprotected EUT. Requirements Standard EN Basic standard EN Performance criterion C; Temporary, self-recoverable loss of function is allowed. Pulse characteristics 1,2/50 µs Peak Voltage; Port 1 kv; AC input power port (Line to line) 2 kv; AC input power port (Line to earth) Performed tests Tested Voltage; Port 1 kv; AC input power port (Line to line) 2 kv; AC input power port (Line to earth) Mode On mode Polarity Positive Negative Observations During the test no loss of performance was observed. After the test the EUT functioned as intended. No unacceptable loss of performance was observed. Conclusion: PASS

94 -page 94 of RF Conducted immunity During this test the immunity of the equipment for induced or conducted electromagnetic fields is checked. Fields generated by radio and other transmitters cause RF voltages in long cables like the mains network. This test reproduces these induced disturbing voltages by injecting them to the EUT via the cabling. Requirements Standard EN Basic standard EN Performance criterion A; Operation as intended Frequency range 0,15 80 MHz Modulation 1 khz 80% AM Test level; Port 3 V; AC input power port, dimming port Performed tests Tested level; Port 3 V; AC input power port, dimming port Mode On mode Frequency range 0,15 80 MHz Dwell time 3 seconds Injection method CDN-M3 EM clamp Observations During the test no loss of performance was observed. After the test the EUT functioned as intended. No unacceptable loss of performance was observed. Conclusion: PASS

95 -page 95 of Power supply interruptions and dips Requirements Basic standard EN Performance criterion B; During the test degradation is allowed. No change of operating state or stored data is allowed. C; Temporary, self-recoverable loss of function is allowed. Standard EN C U NOM 30% (10 periods) AC input power port B U NOM 100% (0,5 period) Performed tests Tested voltage Mode AC input power port AC input power port On mode U NOM 30% (10 periods) U NOM 100% (0,5 period) Observations After the test the EUT functioned as intended. No unacceptable loss of performance was observed. Conclusion: PASS

96 -page 96 of IDENTIFICATION OF THE EQUIPMENT UNDER TEST The photograph shows the tested device. Figure 3 Conducted Emission test setup Figure 4 Radiated Magnetic Field emission test setup

97 -page 97 of Figure 5 Radiated disturbance test setup Figure 6 Common mode terminal voltage (CDN method)

98 -page 98 of MODEL LIST Type Name x Housing aaa bb ccc (W) dddd ee fff gg tt hhh AMP- M BRP39x LEDaaa/bb cccw V dddd ee 1 Small 96 max 80 max fff gg tt hhh BRP39x LEDaaa/bb PSU/ DM/DW1/ cccw V dddd ee 2 Middle 192 max CW/NW/WW 160 max PSR/ PSD/ PSDD/ Nil DW2/DWV/ DWP/ DWX/ Ni/P7/P1 CTANZ Client or or code Nil Nil fff gg tt Nil DMV/DMP hhh BRP39x LEDaaa/bb cccw V dddd ee 4 Large 384 max 320 max fff gg tt hhh Note: The explanation for model list BRP39x LEDaaa/bb cccw V ee fff dddd gg tt hhh or BRP39x cccw ff tt AMP- M) x=1 denotes small version housing, x=2 denotes middle version housing, x=4 denotes large version housing;

99 -page 99 of LED denotes light source, could be blank aaa denotes rated lumen output, could be blank eg. aaa=150, the rated lumen output 15000lm bb denotes colour temperature, could be blank CW=Cool White NW=Neutral White WW=Warm White ccc denotes rated system power eg. ccc=150, the rated system power 150W dddd denotes : Driver Type, could be blank or PSU/PSR/PSD/PSA/PSDD/nil (The order of dddd and ffff can be exchanged) ee denotes type of insulation protection ; nil means class I, could be blank fff denotes Lens type: DM/DW1/DW2/ DWV/DWP/DWX/DMV/DMP gg denotes PE cell function: P1 and P7 means 7 pin NEMA socket application, tt denotes City Touch Application: CT = City Touch version/p 7 pin NEMA PE cell/nil hhh denotes country code: ANZ or nil nil means blank V means the voltage, could be blank AMP-M means client code, could be blank For example see next page. Model number BRP391 40W DM CT AMP-M BRP391 90W DM CT AMP-M BRP W DM CT AMP-M BRP W DM CT AMP-M END

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