By order of American Power Conversion Holdings Inc. at New Taipei, Taiwan. Author : Harry Deng Reviewed : Tim Yan Pages : 53 pages Annex : NIL

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1 EMC Test report for Multiple Protable Socket-outlets with SPD Models PM5-GR, PM5-RS, PM5-SP, PM5-UK, PM5U-GR, PM5U-RS, PM5U-UK, PM5U-SP, PM5V-GR, PM5V-RS, PM5V-SP, PM5V-UK, PM5T-GR, PM5T-RS, PM5T-SP, PM5T-UK, PM5-FR, PM5U-FR, PM5V-FR, PM5T-FR, PM5-IT, PM5U-IT, PM5V-IT, PM5T-IT, PM6-GR, PM6-RS, PM6-SP, PM6-UK, PM6U-UK, PM6U-GR, PM6U-RS, PM6U-SP, PMH63VT-GR, PMH63VT-RS, PMH63VT-SP, PMH63VT-UK,PM6-FR, PM6U-FR, PMH63VT-FR, PM6-IT, PM6U-IT, PMH63VT-IT, PM8-GR, PM8-UK, PM8-RS, PM8-SP, PMF83VT-GR, PMF83VT-RS, PMF83VT-SP, PM8-FR, PMF83VT-FR,PM8-IT, PMF83VT-IT, PMF83VT-UK Guangzhou, date of issue: Author Harry Deng By order of American Power Conversion Holdings Inc. at New Taipei, Taiwan Author : Harry Deng Reviewed : Tim Yan Pages : 53 pages Annex : NIL DEKRA Testing and Certification (Shanghai) Ltd. Guangzhou Branch Building A3, No.3 Qiyun Road, Science City, Guangzhou Hi-Tech Industrial Development Zone, Guangzhou, P.R. China Tel Fax

2 -page 2 of CONTENTS page 1 Test description Model description Environment Summary Applied standards Overview of results General Information Product Information Client Information Test data Overview of measurement uncertainty Equipment list Emission test results Mains conducted disturbance voltage Radiated EM Field emission 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 Description of modifications Identification of the equipment under test Product Internal view... 40

3 -page 3 of TEST DESCRIPTION The conclusion and results stated in this test report are based on a non-recurrent examination of sample(s) provided by the applicant. This report is based on report In this update, changing the rated voltage of models PM5-UK, PM5U-UK, PM5V-UK, PM5T-UK from 250 Vac to Vac. After technical review, model PM5U-UK was chosen to repeat mains conducted disturbance voltage and radiated EM field emission test.

4 -page 4 of Model description The apparatus as supplied for the test is multiple portable socket-outlets with SPD intended for residential use and the products contain electronic control circuitry and have earth connection but no component susceptible to magnetic fields. Based on manufacturer s declaration, 1, PM5-GR, PM5-RS, PM5-SP, PM5U-GR, PM5U-RS, PM5U-SP, PM5V-GR, PM5V-RS, PM5V-SP, PM5T-GR, PM5T-RS, PM5T-SP, PM5-FR, PM5U-FR, PM5V-FR, PM5T-FR, PM5-IT, PM5U-IT, PM5V-IT, PM5T-IT 1) PM5U-GR, PM5U-RS, PM5U-SP, PM5U-IT, PM5U-FR are identical and with USB charged part, except for the model name and jack socket number 2) PM5-GR, PM5-RS, PM5-SP, PM5-UK, PM5V-GR, PM5V-RS, PM5V-SP, PM5T-GR, PM5T-RS, PM5T-SP, PM5-FR, PM5V-FR, PM5T-FR, PM5-IT, PM5V-IT, PM5T-IT are identical to PM5U-GR but without USB charged part, except for the model name and jack socket number, 2, PM6-GR, PM6-RS, PM6-SP, PM6U-GR, PM6U-RS, PM6U-SP, PMH63VT-GR, PMH63VT-RS, PMH63VT-SP, PM6-FR, PM6U-FR, PMH63VT-FR, PM6-IT, PM6U-IT, PMH63VT-IT 1) PM6U-GR, PM6U-RS, PM6U-SP, PM6U-IT, PM6U-FR are identical and with USB charged part, except for the model name and jack socket number 2) PM6-GR, PM6-RS, PM6-SP, PMH63VT-GR, PMH63VT-RS, PMH63VT-SP, PM6-FR, PMH63VT-FR, PM6-IT, PMH63VT-IT are identical to PM6U-GR but without USB charged part, except for the model name and jack socket number 3, PM8-GR, PM8-RS, PM8-SP, PMF83VT-GR, PMF83VT-RS, PMF83VT-SP, PM8-FR, PMF83VT-FR, PM8-IT, PMF83VT-IT, PMF83VT-GR, PMF83VT-RS, PMF83VT-SP, PMF83VT-IT, PMF83VT-FR are identical, except for the model name and jack socket number 4, Model PMF83VT-GR based on model PM6U-GR, added one set of straightway coaxial connector, but deleted the USB charged port 5, Model PM5U-GR is different from model PM6U-GR.

5 -page 5 of Hence, models PM5U-GR and model PM6U-GR were chosen for full testing, Model PMF83VT-GR was chosen to repeat the Radiated emission test, model PM5U-UK was chosen to repeat mains conducted disturbance voltage and radiated EM field emission test. And the corresponding test data are also representative of the other models as well. Figure 1 model PM5U-GR Figure 2 model PM6U-GR Figure 3 model PMF83VT-GR

6 -page 6 of Figure 4 model PM5U-UK The operating modes as stated in the user manual are on (maximum rated USB output) and off mode.

7 -page 7 of Environment The requirements and standards apply to equipment intended for use in: Residential (domestic) environment Commercial and light-industrial environment Industrial environment Medical environment

8 -page 8 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 Generic standards Immunity for residential, commercial and light-industrial environments EN Generic standards emission standard for residential, A commercial and light-industrial environments 2.2 Overview of results Emission tests Mains conducted disturbance voltage Radiated EM field emission Harmonic current emission Limitation of voltage fluctuations (flicker) Result PASS PASS PASS PASS Immunity tests Electrostatic Discharges (ESD) Radiated EM Field Electrical fast transient (EFT) / Burst transients Surge transients Conducted RF disturbances Power supply voltage interruptions & dips Result PASS PASS PASS PASS PASS PASS

9 -page 9 of GENERAL INFORMATION 3.1 Product Information Equipment under test Trade mark Tested Type Represented type(s) U nominal USB rated output Multiple Protable Socket-outlets with SPD APC by Schneider Electric PM5U-GR, PM6U-GR, PMF83VT-GR, PM5U-UK PM5-GR, PM5-RS, PM5-SP, PM5-UK, PM5U-RS, PM5U-SP, PM5V-GR, PM5V-RS, PM5V-SP, PM5T-GR, PM5T-RS, PM5T-SP, PM5-FR, PM5U-FR, PM5V-FR, PM5V-UK, PM5T-FR, PM5-IT, PM5U-IT, PM5V-IT, PM5T-IT, PM5T-UK, PM6-GR, PM6-RS, PM6-SP, PM6-UK, PM6U-RS, PM6U-SP, PM6U-UK, PMH63VT-GR, PMH63VT-RS, PMH63VT-SP, PMH63VT-UK, PM6-FR, PM6U-FR, PMH63VT-FR, PM6-IT, PM6U-IT, PMH63VT-IT, PM8-GR, PM8-RS, PM8-SP, PM8-UK, PMF83VT-GR, PMF83VT-RS, PMF83VT-SP, PM8-FR, PMF83VT-FR, PM8-IT, PMF83VT-IT, PMF83VT-RS, PMF83VT-SP, PMF83VT-IT, PMF83VT-FR, PMF83VT-UK Vac, 50/60 Hz,13 A for models PM5-UK, PM5U- UK, PM5V-UK, PM5T-UK; 250 Vac 50 Hz, 13 A for models PM6-UK, PM6U-UK, PMH63VT-UK, PM8-UK, PMF83VT-UK; 250 Vac, 50 Hz, 16 A (limited to 10A) for the rest models 5 Vdc, 1 A 3.2 Client Information Applicant Address American Power Conversion Holdings Inc. 3F,NO.205, Sec.3, Beixin Rd., Xindian Dist, New Taipei City, Taiwan Manufacturer/Factory Address Dongguan Quan Sheng Electric Co., Ltd. Ju-Tang 2nd Industrial Park, Dongguan, Guangdong, China

10 3.3 Test data -page 10 of Location Address Location Address Date Supervised by DEKRA Testing and Certification (Shanghai) Ltd. Guangzhou Branch Building A3, No.3 Qiyun Road, Science City, Guangzhou Hi-Tech Industrial Development Zone, Guangzhou, P.R. China Guangzhou Electrical Safety Testing Institute (CEST) No.6, Haichengdong Street, Xingangdong Road, Haizhu District, Guangzhou, , P. R. China to ; to Harry Deng 3.4 Overview of measurement uncertainty Measurement Mains disturbance voltage (9 khz 30MHz) Radiated disturbance (30MHz 1000MHz) Uncertainty ± 1,66 db ± 3,32 db

11 -page 11 of Equipment list Location: DEKRA Testing and Certification (Shanghai) Ltd. Guangzhou Branch Item Instrumentation Manufacturer Model No. Serial No. Dekra No. Cal. due date 1 EMI Receiver R&S ESCI G/L LISN R&S ENV G/L Shielding Room Changzhou Feite / / G/L POWER SOURCE California 500LiX- Instruments CTS A00193 G/L Analyzer California Instruments PACS-A 1132A00193 G/L ESD Generator TESEQ NSG G/L Signal Generator TESEQ NSG G/L STEPTRANSFOR MER TESEQ INA6501 / G/L Signal Generator TESEQ NSG G/L CDN TESEQ M G/L EM-Koppelzange TESEQ KEMZ G/L dB TESEQ ATN G/L EMI receiver R&S ESCI G/L Antenna SCHWARZBE (30MHz-3GHz) CK VULB G/L Chamber ETS / / G/L

12 -page 12 of EMISSION TEST RESULTS 4.1 Mains conducted disturbance voltage Requirements Standard EN Frequency [MHz] Limits QP [db( V)] AV [db( V)] 0,15 0, *) *) 0, *) Limits decreasing linearly with the logarithm of the frequency Environment condition Ambient temperature 25 C Relative Humidity air 50 %

13 -page 13 of Model Port Test method Mode PM5U-GR AC mains LISN On mode (worst case in USB maximum output mode). Results Line Att 10 db RBW 9 khz MT 1 s PREAMP OFF dbµv 90 1 MHz 10 MHz 80 1 PK MAXH 70 2 AV MAXH CE-QP 60 CE-AV 50 TDS DB DC khz 30 MHz EDIT PEAK LIST (Final Measurement Results) Trace1: CE-QP Trace2: CE-AV Date: 28.OCT :37:02 Trace3: --- TRACE FREQUENCY LEVEL dbµv DELTA LIMIT db 2 Average 554 khz Average 386 khz Average MHz Average MHz Average MHz Quasi Peak 466 khz Quasi Peak 370 khz No other significant emissions were measured at the frequency range of interest 2 Average 862 khz employing both the QP and AV detectors. 2 Average 254 khz Quasi Peak 246 khz Average MHz Quasi Peak 178 khz Average MHz Quasi Peak MHz Quasi Peak MHz Quasi Peak 638 khz

14 -page 14 of Neutral Att 10 db RBW 9 khz MT 1 s PREAMP OFF dbµv 90 1 MHz 10 MHz 80 1 PK MAXH 70 2 AV MAXH CE-QP 60 CE-AV 50 TDS DB DC khz 30 MHz EDIT PEAK LIST (Final Measurement Results) Trace1: CE-QP Trace2: CE-AV Date: 28.OCT :34:41 Trace3: --- TRACE FREQUENCY LEVEL dbµv DELTA LIMIT db 2 Average 558 khz Average 382 khz Average MHz Average MHz Average MHz Quasi Peak 374 khz Average 266 khz No other significant emissions were measured at the frequency range of interest 1 Quasi Peak 238 khz employing both the QP and AV detectors. 2 Average 874 khz Average 2.59 MHz Quasi Peak MHz Quasi Peak 182 khz Average MHz Quasi Peak MHz Quasi Peak 562 khz Quasi Peak MHz

15 -page 15 of Model Port Test method Mode PM6U-GR AC mains LISN On mode (worst case in USB maximum output mode). Results Line Att 10 db RBW 9 khz MT 1 s PREAMP OFF dbµv 90 1 MHz 10 MHz 80 1 PK MAXH 70 2 AV MAXH CE-QP 60 CE-AV 50 TDS DB DC khz 30 MHz EDIT PEAK LIST (Final Measurement Results) Trace1: CE-QP Trace2: CE-AV Date: 28.OCT :42:53 Trace3: --- TRACE FREQUENCY LEVEL dbµv DELTA LIMIT db 2 Average 886 khz Average 786 khz Average 350 khz Average MHz Quasi Peak 350 khz Quasi Peak 246 khz Average MHz Average 250 khz Average MHz No other significant emissions were measured at the frequency range of interest 2 Average 450 khz employing both the QP and AV detectors. 1 Quasi Peak 178 khz Quasi Peak 446 khz Quasi Peak 898 khz Quasi Peak 774 khz Version: Quasi Peak MHz Quasi Peak MHz Quasi Peak MHz Average 206 khz

16 Neutral -page 16 of Att 10 db RBW 9 khz MT 1 s PREAMP OFF dbµv 90 1 MHz 10 MHz 80 1 PK MAXH 70 2 AV MAXH CE-QP 60 CE-AV 50 TDS DB DC khz 30 MHz EDIT PEAK LIST (Final Measurement Results) Trace1: CE-QP Trace2: CE-AV Date: 28.OCT :40:39 Trace3: --- TRACE FREQUENCY LEVEL dbµv DELTA LIMIT db 2 Average MHz Average 350 khz Average MHz Quasi Peak 182 khz Quasi Peak 250 khz Average MHz Average 978 khz Quasi Peak MHz No other significant emissions were measured at the frequency range of interest 1 Quasi Peak 442 khz employing both the QP and AV detectors. 1 Quasi Peak 358 khz Quasi Peak MHz Average 3.99 MHz Quasi Peak MHz Average 450 khz Average 258 khz Average 626 khz Quasi Peak 974 khz Quasi Peak 618 khz Quasi Peak MHz Date: 28.OCT :40:35

17 -page 17 of Model Port Test method Mode PM5U-UK AC mains LISN On mode (worst case in USB maximum output mode). Results Line Att 10 db AUTO RBW 9 khz MT 1 s PREAMP ON dbµv 90 1 MHz 10 MHz 80 1 PK MAXH 70 2 AV MAXH 22CEBQ 60 22CEBA 50 TDS DB DC khz 30 MHz EDIT PEAK LIST (Final Measurement Results) Trace1: 22CEBQ Trace2: 22CEBA Trace3: Date: 25.JUL :13:21 TRACE FREQUENCY LEVEL dbµv DELTA LIMIT db 2 Average 506 khz Average 278 khz Quasi Peak 210 khz Quasi Peak 278 khz Average 210 khz Quasi Peak 518 khz Average 654 khz No other significant emissions were measured at the frequency range of interest 2 Average MHz employing both the QP and AV detectors. 2 Average MHz Average MHz Quasi Peak 642 khz Quasi Peak MHz Quasi Peak MHz Quasi Peak MHz Version:

18 -page 18 of Neutral Att 10 db AUTO RBW 9 khz MT 1 s PREAMP ON dbµv 90 1 MHz 10 MHz 80 1 PK MAXH 70 2 AV MAXH 22CEBQ 60 22CEBA 50 TDS DB DC khz 30 MHz EDIT PEAK LIST (Final Measurement Results) Trace1: 22CEBQ Trace2: 22CEBA Date: 25.JUL :09:44 Trace3: --- TRACE FREQUENCY LEVEL dbµv DELTA LIMIT db 2 Average 514 khz Average 278 khz Quasi Peak 206 khz Quasi Peak 278 khz Average 206 khz Quasi Peak 522 khz Average 658 khz Average 1.31 MHz Average MHz Average 2.21 MHz No other significant emissions were measured at the frequency range of interest 1 Quasi Peak 638 khz employing both the QP and AV detectors. 1 Quasi Peak MHz Quasi Peak 1.49 MHz Refer to chapter 6 for the test set-up. 1 Quasi Peak MHz Conclusion: PASS

19 -page 19 of Radiated EM Field emission Requirements Standard EN Frequency [MHz] Limits - QP [db( V/m)] at 3 meters Environment condition Ambient temperature 20 C Relative Humidity air 50 %

20 -page 20 of Model Port Test method Measuring distance Mode PM5U-GR Enclosure Semi-Anechoic chamber 3 meters On mode (worst case in USB maximum output mode.) Results Horizontal Att 10 db RBW 120 khz MT 1 s PREAMP ON dbµv /m MHz 1 GHz 1 PK MAXH TDS DB DC MHz 1 GHz EDIT PEAK LIST (Final Measurement Results) Trace1: Trace2: --- Trace3: Date: 28.OCT :03:53 TRACE FREQUENCY LEVEL dbµv/m DELTA LIMIT db 1 Quasi Peak MHz Quasi Peak 93 MHz No other significant emissions were measured at the frequency range of interest employing the QP detectors.

21 -page 21 of Vertical Att 10 db RBW 120 khz MT 1 s PREAMP ON dbµv /m MHz 1 GHz 1 PK MAXH TDS DB DC MHz 1 GHz EDIT PEAK LIST (Final Measurement Results) Trace1: Trace2: --- Date: 28.OCT :00:10 Trace3: --- TRACE FREQUENCY LEVEL dbµv/m DELTA LIMIT db 1 Quasi Peak MHz Quasi Peak MHz Quasi Peak MHz No other significant emissions were measured at the frequency range of interest employing the QP detectors.

22 -page 22 of Model Port Test method Measuring distance Mode PM6U-GR Enclosure Semi-Anechoic chamber 3 meters On mode (worst case in USB maximum output mode.) Results Horizontal Att 10 db RBW 120 khz MT 1 s PREAMP ON dbµv /m MHz 1 GHz 1 PK MAXH TDS DB DC MHz 1 GHz EDIT PEAK LIST (Final Measurement Results) Trace1: Trace2: --- Date: 28.OCT :18:21 Trace3: --- TRACE FREQUENCY LEVEL dbµv/m DELTA LIMIT db 1 Quasi Peak MHz Quasi Peak MHz Quasi Peak MHz Quasi Peak MHz No other significant emissions were measured at the frequency range of interest employing the QP detectors.

23 -page 23 of Vertical Att 10 db RBW 120 khz MT 1 s PREAMP ON dbµv /m MHz 1 GHz 1 PK MAXH TDS DB DC MHz 1 GHz EDIT PEAK LIST (Final Measurement Results) Trace1: Trace2: --- Date: 28.OCT :21:43 Trace3: --- TRACE FREQUENCY LEVEL dbµv/m DELTA LIMIT db 1 Quasi Peak MHz Quasi Peak MHz Quasi Peak MHz No other significant emissions were measured at the frequency range of interest employing the QP detectors.

24 -page 24 of Model Port Test method Measuring distance Mode PMF83VT-GR Enclosure Semi-Anechoic chamber 3 meters On mode (worst case in USB maximum output mode.) Results Horizontal Att 10 db RBW 120 khz MT 1 ms PREAMP ON dbµv /m MHz 1 GHz 1 PK MAXH TDS DB DC MHz 1 GHz No significant emissions were measured at the frequency range of interest employing the QP detectors (more than 20dB below the limits). Date: 26.SEP :43:25

25 -page 25 of Vertical Att 10 db RBW 120 khz MT 1 ms PREAMP ON dbµv /m MHz 1 GHz 1 PK MAXH TDS DB DC MHz 1 GHz No significant emissions were measured at the frequency range of interest employing the QP detectors (more than 20dB below the limits). Date: 26.SEP :45:11

26 -page 26 of Model Port Test method Measuring distance Mode PM5U-UK Enclosure Semi-Anechoic chamber 3 meters On mode (worst case in USB maximum output mode.) Results Horizontal Freq (MHz) Reading (dbuv) C.F (db) Result (dbuv/m) Limit (dbuv/m) Margin=limit-result (db) 97,80 22,69 10,95 33,64 40,00 6,36 169,01 16,01 11,73 27,74 40,00 12,26 Remarks: C.F (Correction Factor) = Antenna factor + Cable loss No other significant emissions were measured at the frequency range of interest employing the QP detectors.

27 -page 27 of Vertical Freq (MHz) Reading (dbuv) C.F (db) Result (dbuv/m) Limit (dbuv/m) Margin=limit-result (db) 97,80 22,69 10,95 33,64 40,00 6,36 169,01 16,01 11,73 27,74 40,00 12,26 Remarks: C.F (Correction Factor) = Antenna factor + Cable loss No other significant emissions were measured at the frequency range of interest employing the QP detectors. Refer to chapter 6 for the test set-up. Conclusion: PASS

28 -page 28 of Harmonic currents Requirements Standard EN Reference standard EN Port AC Mains supply 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, refrigerators and freezers having one or more variable-speed to control compressor motor(s) Results and limits The EUT has a rated power of less than 75 W. According to EN , no limits are specified for this category of products. Hence, the EUT is deemed to comply with the requirements of the standard without testing. Conclusion: PASS

29 -page 29 of Voltage fluctuations (Flicker) Requirements Standard EN Reference standard EN Port AC Mains supply Equipment intended to be connected to 230/400 Vac, 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. Results Tests are not necessary because the EUT is unlikely to produce significant voltage fluctuations or flicker (clause 6.1) Conclusion: PASS

30 -page 30 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 2, 4, 8 kv Contact discharges 4 kv Performed tests Model PM5U-GR, PM6U-GR Operation mode On mode (with maximum USB output) Air discharges 2 kv 4 kv 8 kv xx kv Contact discharges 2 kv 4 kv 8 kv xx kv Via coupling planes Horizontal Vertical Polarity Positive Negative Set-up Table-top Floor standing Ambient temperature 22 C Relative Humidity air 54 % 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

31 -page 31 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 1,4-2,0 GHz 2,0 2,7GHz Modulation 1 khz 80% AM Field strength 3 V/m 3 V/m 1 V/m Performed tests Model PM5U-GR, PM6U-GR Operation mode On mode (with maximum USB output) Frequency range MHz 1,4-2,0 GHz 2,0 2,7GHz Tested Field strength 3 V/m 3 V/m 1 V/m Dwell time 1 second Test set-up Full Anechoic Chamber Ambient temperature 22 C Relative Humidity air 54 % Observations During the test no loss of performance was observed. After the test the EUT functioned as intended. No unacceptable loss of performance and no loss of data were observed. Conclusion: PASS

32 -page 32 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 kv; AC input power port Repetition frequency 5 khz 2,5 khz Performed tests Model PM5U-GR, PM6U-GR Operation mode On mode (with maximum USB output) Tested Voltage; Port 1kV; AC input power port Injection method CDN Capacitive clamp Polarity Positive Negative Set-up Table-top Floor standing Ambient temperature 22 C Relative Humidity air 54 % 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

33 -page 33 of Surge transient immunity The surge transient immunity test simulates the surges that are caused by overvoltages due to indirect (induced) lightning transients. The pulse is a slow transient with highenergy contents and due to its long duration may cause damage to an unprotected EUT. 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 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 Model PM5U-GR, PM6U-GR Operation mode On mode (with maximum USB output) Tested Voltage; Port 1 kv; AC input power port (line to line) 2 kv; AC input power port (line to earth) Polarity Positive Negative Ambient temperature 22 C Relative Humidity air 54 % 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

34 -page 34 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 Performed tests Model PM5U-GR, PM6U-GR Operation mode On mode (with maximum USB output) Tested level; Port 3 V; AC input power port Frequency range 0, MHz Dwell time 1 second Injection method CDN-M3 EM clamp Ambient temperature 22 C Relative Humidity air 54 % 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

35 -page 35 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% (25/30 periods at 50/60 Hz) B U NOM 100% (1 period) AC input power port B U NOM 100% (0,5 period) C U NOM 100% (250/300 periods at 50/60 Hz) Performed tests Model PM5U-GR, PM6U-GR Operation mode On mode (with maximum USB output) Tested voltage AC input power port, 230 Vac U NOM 30% (25/30 periods at 50 Hz) AC input power port U NOM 100% (1 period) U NOM 100% (0,5 period) U NOM 100% (250/300 periods at 50 Hz) Ambient temperature 22 C Relative Humidity air 54 % Observations During the test, the output voltage dropped. After the test the EUT functioned as intended. No unacceptable loss of performance was observed. Conclusion: PASS

36 -page 36 of DESCRIPTION OF MODIFICATIONS The EUT was modified in order to comply with all the requirements as stipulated by the standards state in Section 2. The modifications are listed as follows: Model PM6U-GR was failed in Mains conducted disturbance voltage; the modification done by the clients is shown below: 1. Add copper foil paper 2. Change the soldering locating for the L/N wirings of USB charger

37 3. Product assembly and wirings management requirement -page 37 of All test items were carried out after modification.

38 -page 38 of IDENTIFICATION OF THE EQUIPMENT UNDER TEST The photograph shows the tested device. Figure 5 Mains conducted disturbance voltage test setup

39 -page 39 of Figure 6 Radiated EM field emission setup

40 8 PRODUCT INTERNAL VIEW For PM5U-GR: -page 40 of

41 -page 41 of

42 -page 42 of

43 -page 43 of

44 -page 44 of

45 -page 45 of For PM6U-GR:

46 -page 46 of

47 -page 47 of

48 -page 48 of

49 -page 49 of

50 -page 50 of For PMF83VT-GR:

51 -page 51 of

52 -page 52 of

53 -page 53 of END ---

By order of American Power Conversion Holdings Inc. at New Taipei City, Taiwan

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