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Environment Test Report Product Name: Product Model: Product Type: Power System TP48200A TP48200A-H15A3 TP48200A-H15A5 TP48200A-D15A1 Report Number: SYBH(H) 346052012 Reliability Laboratory of Huawei Technologies Co., Ltd. Administration Building, Headquarters of Huawei Technologies Co., Ltd., Bantian, Longgang District, Shenzhen, 518129, P.R.C Tel: +86 755 28780808 Fax: +86 755 89652518

Notice 1. The laboratory has Passed the accreditation by China National Accreditation Service for Conformity Assessment (CNAS). The accreditation number is L0310. 2. The laboratory has Passed the accreditation by The American Association for Laboratory Accreditation (A2LA). The accreditation number is 2174.02. 3. The laboratory has been listed by the ISTA to perform Environment measurements. The accreditation numbers is ST-1803. 4. The test report is invalid if not marked with the signatures of the persons responsible for preparing and approving the test report. 5. The test report is invalid if there is any evidence of erasure and/or falsification. 6. The test report is only valid for the test samples. 7. Content of the test report, in part or in full, cannot be used for publicity and/or promotional purposes without prior written approval from the laboratory. Page 2 of 34

Applicant: Address: Product Name: Product Model: Product Type: Version: Huawei Technologies Co., Ltd. Administration Building, Headquarters of Huawei Technologies Co., Ltd., Bantian, Longgang District, Shenzhen, 518129, P.R.C Power System TP48200A TP48200A-H15A3, TP48200A-H15A5, TP48200A-D15A1 V300R001C03 Date of Receipt Sample: 2012-06-04 Start Date of Test: 2012-06-04 End Date of Test: 2012-06-15 Test : Pass Approved by Senior Engineer: 2012-07-22 Wu Xiaozhi Date Name Signature Prepared by: 2011-07-21 Shi Feng Date Name Signature Page 3 of 34

Modification Record No. Last Report No. Modification Description NA NA NA Page 4 of 34

CONTENT 1. General Information... 6 1.1 Standard Compliance... 6 1.2 Test Location... 6 1.3 Testing Environment... 6 1.4 Test Items and s... 7 1.5 Test Instruments... 8 1.6 Auxiliary Equipment... 8 2 Product Specification... 8 2.1 Main Product Specification... 8 2.2 Product Configuration and Test Setup... 9 3 Detailed Test Data... 10 3.1 Low Temperature Storage... 10 3.2 High Temperature Storage... 11 3.3 Damp heat storage... 11 3.4 Low Temperature Operation... 13 3.5 High Temperature Operation... 13 3.6 Damp Heat Cyclic Operation... 14 3.7 Temperature Cycles... 16 3.8 Drop with Package... 17 3.9 Random vibration with package... 18 3.10 Sinusoidal vibration operation... 19 3.11 Shock operation... 20 3.12 Water Jet Test... 21 3.13 Salt Fog Test... 21 3.14 Altitude Operation Test... 22 3.15 Acoustic Test... 23 4 Test Photos... 25 4.1 Climatic Test Photos... 25 4.2 Mechanical and other Test Photos... 26 Appendix Abbreviations... 34 Page 5 of 34

1. General Information 1.1 Standard Compliance Product Standard: GR-487-CORE:2009 ETSI EN 300 019-1-1 V2.1.4:2003 ETSI EN 300 019-1-2 V2.1.4:2003 ETSI EN 300 019-1-4 V2.1.2:2003 Test Methods: ETSI EN 300 019-2-1 V2.1.2: 2000 ETSI EN 300 019-2-2 V2.1.2: 1999 ETSI EN 300 019-2-4 V2.2.2: 2003 IEC60068-2-1:2007 / GB/T 2423.1:2008 IEC 60068-2-2:2007 / GB/T 2423.2:2008 IEC 60068-2-6:2007 / GB/T 2423.10:2008 IEC 60068-2-11:1981 / GB/T 2423.17:1993 IEC 60068-2-14:2009 / GB/T 2423.22:2002 IEC 60068-2-27:2008 / GB/T 2423.5:1995 IEC 60068-2-30:2005 / GB/T 2423.4:2008 IEC 60068-2-41:1983/GB/T 2423.26:2008 IEC 60068-2-56:1983/GB/T 2423.3:2008 IEC 60529:2001/GB4208:2008 ISTA 2B:2008 1.2 Test Location Test Location 1: Address: Test Location 2: Address: Reliability Laboratory of Huawei Technologies Co., Ltd. Administration Building, Headquarters of Huawei Technologies Co., Ltd., Bantian, Longgang District, Shenzhen, 518129, P.R.C Shenzhen Yitong Testing Technology Co., Ltd. F/3, Block 18A, Guanlong No.1 Industrial Zone, Xili Town, Nanshan District, Shenzhen, Guangdong, China. 1.3 Testing Environment Ambient Temperature: +20 C-+25 C Relative Humidity: 45%-55% Atmospheric Pressure: 101 kpa Page 6 of 34

Test s 1.4 Test Items and s Table-1 Test items and results SN Test Item Standard Compliance Test Parameter 1 2 3 4 5 6 7 8 9 10 Low temperature Storage High temperature Storage Damp heat Storage High temperature operation Low temperature operation Temperature cycle Damp heat cyclic operation Drop with package Random vibration with package Sinusoidal vibration operation 11 Shock operation 12 Water jet Test 13 Salt fog test 14 Altitude operation GB/T 2423.1 IEC 60068-2-1 ETSI EN 300 019-2-1 GB/T 2423.2 IEC 60068-2-2 ETSI EN 300 019-2-1 GB/T 2423.3 IEC 60068-2-56 ETSI EN 300 019-2-2 GB/T 2423.2 IEC 60068-2-2 ETSI EN 300 019-2-4 GB/T 2423.1 IEC 60068-2-1 ETSI EN 300 019-2-4 GB/T 2423.22 IEC 60068-2-14 ETSI EN 300 019-2-4 GB/T 2423.4 IEC 60068-2-30 ETSI EN 300 019-2-4 ISTA 2B ETSI EN 300 019-2-2 GB/T 2423.10 IEC 60068-2-6 ETSI EN 300 019-2-4 GB/T 2423.5 IEC 60068-2-27 ETSI EN 300 019-2-4 GB4208 IEC60529 GB/T 2423.17 IEC 60068-2-11 GB/T 2423.26 IEC 60068-2-41 15 Acoustic test GR-487-CORE -40, 24h PASS +70, 24h PASS +40,95%RH,96h +50, 24h PASS PASS -40, 24h PASS -40 -+50, 1 /min, t1=3h, 2cyclse PASS +25 -+50, 95%RH, 48h PASS Mass drop height 300kg 0.3m Frequency range ASD 5~20Hz, 1m 2 /s 3 ; 20~200Hz, -3dB; 3 axes, 30min/each axes. 5-9Hz:1.2mm; 9-200Hz:4m/s2; 3 axes, 5 sweep cycles per axis, 1oct/min half sine,11ms,30m/s 2,3 axes, 6 times per axis Water flow volume: 12.5L/min±5% Water pressure : 30kPa Distance: 2.5m 3m Duration of water spraying: 1 minute/m2, at least 3 minutes Diameter of the nozzle: 6.3mm +35,5%±1% Nacl solution, ph:6.5~7.2,duration of test: 192h PASS PASS PASS PASS PASS PASS +40, 55kPa,16h PASS 1.5m from the cabinet surfaces in all horizontal directions at a height of 1 m from the cabinet mounting surface PASS Page 7 of 34

1.5 Test Instruments Table-2 List of test instruments Test Instrument Model Manufacturer (Asset) number Calibration Date Calibration Interval (month) Climatic chamber WPH -1 Envirotronics 3606032744 2011-10-09 12 Climatic chamber ACS-1 ACS 3604040034 2011-11-14 12 Water Jet Test Equipment IPX5 WUXISUNAN CB30279 2011-11-14 12 Low air pressure Chongqing QD09 tester YINHE 3606032532 2012-03-19 12 Free-drop tester AD-500 LAB 3604110651 2011-11-14 12 Hemi-anechoic Room / BSWA TECH 3606111862 2011-09-13 Acoustics Test System MF02PN Mueller BBM 3606111719 2011-09-13 12 Tape Measure Hi-Lock 16/TAJIMA TAJIMA JL100609 2011-06-16 12 Salt fog tester YW-30F CERPREI REC-D 2012-04-07 12 Shock and vibration Test System DLS-5000-60 1.6 Auxiliary Equipment Yitong TTS-YQ-072 2011-09-03 12 Table-3 List of test auxiliary instruments Name Model Manufacturer S/N Calibration Date Calibration Interval (month) Test PIII1G/128M/30G/ Computer 15" LEGEND NA NA NA DC Load DC54V/500A GUOHUA A100126165 2011-12-16 12 AC Source CHROMA 6560 CHROMA 3608124372 2011-11-04 12 Multi-meter FLUKE LH41A FLUKE A110619915 2011-06-21 24 Digital Phosphor Oscilloscope TDS5104B TEKTRONIX A110100158 2012-02-03 12 2 Product Specification 2.1 Main Product Specification Rated Input Voltage Rated Power Dimensions of the Sample Dimensions of the Packaged Sample Weight of the Sample Weight of the Packaged Sample Input:~200-240V; 50/60Hz;84A MAX or ~200-240/346-415V;3W+N+G; 50/60Hz; 41A MAX 10700 W 650 mm (W) 650 mm (D) 1500 mm (H) 175mm(width)x 150mm(depth)x 225mm(height) 98 kg 108 kg Page 8 of 34

Sample Assembly Level Quantity of the Sample Cabinet 1 set 2.2 Product Configuration and Test Setup 2.2.1 Product Configuration TP48200A-D15A1 TP48200A-H15A5 TP48200A-H15A3 2.2.2 Test Setup Figure-1 TP48200A V300R001 configuration diagram TP 48200A V300 R001 2.2.3 Board List Figure-2 Test setup Unless otherwise noted in the report, the functional boards installed in the units shall be selected from the below list, but not means all the functional boards listed below shall be installed in one unit. Board Name Hardware Version Description WD22DLPC VER.C DC Power Lightning Protection Board PW31PCBB VER.D Power System backboard EN21DETA01 VER.E User Interface Board SMU02B VER.B Site Monitoring Unit R4850N1 VER.G Rectifier Page 9 of 34

EN21AFBA01 VER.F Two level of shutting down electricity in System detect black board GM51DFIU VER.D Fan Interface Unit 2.2.4 Sub-Assembly Module Name Model Manufacture Description Cabinet TP48200A V300R001 HUAWEI Cabinet 3 Detailed Test Data 3.1 Low Temperature Storage 3.1.1 Test Procedure and Test Curve 1) Before test, check the mechanical and electronic (initial check) 2) Turn off the power of the EUT and put it in the middle of the chamber (conditional test) 3) Decrease the temperature to -40 in the rate of 1 /min (conditional test) 4) Keep the chamber in -40 for 24h (conditional test) 5) Hoist the temperature to +25 in the rate of 1 /min, and keep for 2h. (recovery) 6) Turn on the power of the EUT and check he mechanical and electronic (finally check) 3.1.2 Detailed Test Data SN Check Item Check Subitem 1 2 Mechanical Electrical Figure-3 Test curve of low temperature storage Table-4 Detailed test data of low temperature storage Qualification Criterion Initial Final Connectors Not broken Not broken Not broken Components Voltage accuracy ±1% ±1% ±1% System Normal Normal Normal Page 10 of 34

monitor function Alarm 3.2 High Temperature Storage 3.2.1 Test Procedure and Test Curve 1) Before test, check the mechanical and electronic (initial check) 2) Turn off the power of the EUT and put it in the middle of the chamber (conditional test) 3) Hoist the temperature to +70 in the rate of 1 /min (conditional test) 4) Keep the chamber in +70 for 24h; (conditional test) 5) Decrease the temperature to +25 in the rate of 1 /min, and keep for 2h (recovery) 6) Turn on the power of the EUT and check he mechanical and electronic (finally check) 3.2.2 Detailed Test Data SN Check Item Check Subitem 1 Mechanical Figure-4 Test curve of high temperature storage Table-5 Detailed test data of high temperature storage Qualification Criterion Initial Final Connectors Not broken Not broken Not broken Components Voltage accuracy System Electrical 2 monitor function Alarm 3.3 Damp heat storage 3.3.1 Test Procedure and Test Curve ±1% ±1% ±1% Normal Normal Normal 1) Before test, check the mechanical and electronic (initial check) Page 11 of 34

2) put it in the middle of the chamber (conditional test) 3) hoist the humidity of the chamber to 95%RH in 1h with the temperature keep for +25 ; (conditional test) 4) hoist the temp of the chamber to +40 in 1h with the humidity keeping for 95% RH (conditional test) 5) keep the chamber in +40, 95%RH for 96h (conditional test) 6) recover the humidity to 50% in 1h, when recover the humidity to 50% in 0.5h, recover the temp in +25 (conditional test) 7) keep the EUT in +25, 50%RH for 2h to recover; (conditional test) 8) check the mechanical and electronic (finally check) 3.3.2 Detailed Test Data SN Check Item Check Subitem 1 2 Mechanical Electrical REMARK: Red color for temperature and blue for humidity Figure-5 Test curve of damp heat storage Table-6 Detailed test data of damp heat storage Qualification Criterion Initial Final Connectors Not broken Not broken Not broken Components Voltage accuracy System monitor function Alarm ±1% ±1% ±1% Normal Normal Normal Page 12 of 34

3.4 Low Temperature Operation 3.4.1 Test Procedure and Test Curve 1) Before test, check the mechanical and electronic (initial check) 2) Turn off the power of the EUT and put it in the middle of the chamber (conditional test) 3) Decrease the temperature to -40 in the rate of 1 min (conditional test) 4) Keep the EUT in -40 for 2h, and then turn on the power of the EUT (conditional test) 5) Keep the EUT working under -40 for 16h with the 220V power supply, 4h with the 90V power supply and 4h with the 290V power supply, check the electric during the conditional test (conditional test) 6) Hoist the temperature to +25 in the rate of 1 /min, and keep for 2h (recovery) 7) check the mechanical and electronic (finally check) 3.4.2 Detailed Test Data SN Check Item Check Subitem 1 Mechanical Figure-6 Test curve of low temperature operation Table-7 Detailed test data of low temperature operation Qualification Criterion Initial Intermediate Final Connectors Not broken Not broken Not broken Not broken Components or or or Voltage accuracy ±1% ±1% ±1% ±1% 2 System Electrical monitor function Normal Normal Normal Normal Alarm 3.5 High Temperature Operation 3.5.1 Test Procedure and Test Curve 1) Before the test, check mechanical and electronic (initial measurement). Page 13 of 34

2) Power off the EUT and put it in the middle of the chamber (conditional test). 3) Increase the temperature to +50 at a rate of 1 /min (conditional test). 4) Keep the temperature stay at +50 for 2 hours, and then turn on the EUT (conditional test). 5) Keep the temperature stay at +50 for 24 hours (conditional test). 6) Lower the temperature to +25 at a rate of 1 /min, and keep for 2 hours (recovery). 7) Check the mechanical and electronic (final measurement). Figure-7 Test curve of high temperature operation 3.5.2 Detailed Test Data SN Check Item Check Sub-item 1 Mechanical Table-8 Detailed test data of high temperature operation Qualification Criterion Initial Intermediate Final Connectors Not broken Not broken Not broken Not broken Components or or or Voltage accuracy ±1% ±1% ±1% ±1% 2 System Electrical monitor function Normal Normal Normal Normal Alarm 3.6 Damp Heat Cyclic Operation 3.6.1 Test Procedure and Test Curve 9) Before the test, check mechanical and electronic (initial measurement). 10) Put the EUT in the middle of the chamber (conditional test). 11) Increase the humidity of the chamber to 95%RH within 1 hour with the temperature at +25 (conditional test). 12) Increase the temperature in the chamber to +50 in 3h with the humidity stable at 95% RH (conditional test). Page 14 of 34

13) Keep the temperature in the chamber at +50 and 95%RH for 9 hours (conditional test). 14) Lower the temperature to +25 within 3 hours, with the humidity stable at 95% RH (conditional test). 15) Keep the temperature in the chamber at +25, 95%RH for 9 hours (conditional test). 16) Repeat steps 4) to 7). 17) Decrease the humidity to 50% within 1 hour, keep the temperature stay at +25, and check the electric during the conditional test (conditional test). 18) Keep the EUT stay at +25 and 50%RH for 2 hours (recovery). 19) Check the mechanical and electronic (final measurement). 3.6.2 Detailed Test Data SN Check Item Check Subitem Figure-8 Test curve of damp heat cyclic operation Table-9 Detailed test data of damp heat cyclic operation Qualification Criterion Initial Intermediate Final Page 15 of 34

1 Mechanical Connectors Not broken Not broken Not broken Not broken Components Voltage accuracy System Electrical 2 monitor function Alarm 3.7 Temperature Cycles 3.7.1 Test Procedure and Test Curve or or ±1% ±1% ±1% ±1% or Normal Normal Normal Normal 1) Before test, check the mechanical and electronic (initial check) 2) put it in the middle of the chamber (conditional test) 3) Decrease the temperature to -40 in the rate of 1 /min keep -40 for 3h (conditional test) 4) Hoist the temperature to +50 in the rate of 1 /min keep +50 for 3h (conditional test) 5) Do step 3) 4) again (conditional test) 6) Recover the temperature to +25, and keep +25 for 2h (recovery) 7) check the mechanical and electronic (finally check) 3.7.2 Detailed Test Data SN Check Item Check Subitem 1 Mechanical Figure-9 Test curve of temperature cycles Table-10 Detailed test data of temperature cycles operation Qualification Criterion Initial Intermediate Final Connectors Not broken Not broken Not broken Not broken Components or or or Page 16 of 34

Voltage accuracy System Electrical 2 monitor function Alarm 3.8 Drop with Package ±1% ±1% ±1% ±1% Normal Normal Normal Normal 3.8.1 The signed style for the packaged sample Surface S1, S2, S3, S4, S5, S6 (every surface) Edge E1-6 Corner C2-3-6 S4 S1 E1-6 S5 S6 S2 S3 Figure-10 The signed style for the packaged sample appointed drop height, then drop twice for each of the four edges (E3-2, E3-4, E3-5 and E3- C2-3- 6 3.8.2 Test procedure 1) Before the test, check all. 2) Drop twice for each of the four corners (C2-3-5, C2-3-6, C3-4-6 and C3-4-5) at the 6) at the appointed drop height, then drop twice for each drop style of S3 (lift E2-3, lift E5-3, lift E6-3 and lift E4-3) at the appointed drop height. 3) Check all. 3.8.3 Detailed Test Data Table-11 Detailed test data of drop with package SN Check Item Check Sub-item Qualification Criterion 1 2 Packaging material Mechanical 3 Electrical Initial Final Connectors Not broken Not broken Not broken Components Surfaces No nicks No nicks No nicks Voltage accuracy System monitor function ±1% ±1% ±1% Normal Normal Normal Page 17 of 34

Alarm 3.9 Random vibration with package 3.9.1 Test procedure 1) Make the initial examination and measurement before testing, and record the test data before test. 2) Verify the shaking table can achieve the random vibration test curve with the bare table. 3) Mount the EUT on the shaking table firmly with the Z axes. 4) Switch the EUT on 5) Start the vibration test and the test condition is shown in table 1. 6) After finishing the Z axes test, change the test axes from Z to X, and start the vibration test. 7) After finishing the X axes test, change the test axes from X to Y, and start the vibration test. 8) Make continuous measurement during 3 axis tests. 9) Perform the final examination and measurement including the appearance, mechanical characteristic and functional verification. 3.9.2 Detailed Test Data Figure-11 Test curve of random vibration with package Table-12 Detailed test data of random vibration with package SN Check Item Check Sub-item Qualification Criterion Initial Final or 1 Packaging material Connectors Not broken Not broken Not broken 2 Mechanical Components or Surfaces No nicks No nicks No nicks Voltage accuracy ±1% ±1% ±1% 3 Electrical System monitor function Normal Normal Normal Alarm Page 18 of 34

3.10 Sinusoidal vibration operation 3.10.1 Test procedure 1) Make the initial examination and measurement before testing, and record the test data before test. 2) Verify the shaking table can achieve the sine sweep vibration test curve with the bare table. 3) Mount the EUT on the shaking table firmly with the Z axes. Place the accelerometers on the base, center and top of the EUT. 4) Start the vibration test and the test condition is shown in test parameter 5) Make continuous measurement during 3 axis tests. 6) Record the resonance frequency of the EUT. 7) Perform the final examination and measurement including the appearance, mechanical characteristic and functional verification. Figure-12 Test curve of sinusoidal vibration operation 3.10.2 Detailed Test Data SN Check Item Check Subitem 1 2 Mechanical Electrical Table-13 Detailed test data of sinusoidal vibration operation Qualification Criterion Initial Intermediate Final Connectors Not broken Not broken Not broken Not broken Components or or or Voltage accuracy ±1% ±1% ±1% ±1% System monitor Normal Normal Normal Normal function Alarm Page 19 of 34

3.11 Shock operation 3.11.1 Test procedure 1) Make the initial examination and measurement before testing, and record the test data before test. 2) Verify the shaking table can achieve the shock test curve with the bare table. 3) Mount the EUT on the shaking table firmly with the Z axes. 4) Start the shock test and the EUT is subjected to ±3 times. And test condition is shown in test parameter. 5) After finishing the Z axes test, change test axes from Z to X, and repeat ±3 times for X axes. 6) After finishing the X axes test, change test axes from X to Y, and repeat ±3 times for Y axes. 7) Make continuous measurement during test. 8) Perform the final examination and measurement including the appearance, mechanical characteristic and functional verification. Figure-13 Test curve of shock operation 3.11.2 Detailed Test Data SN Check Item Check Subitem 1 Mechanical Table-14 Detailed test data of shock operation Qualification Criterion Initial Intermediate Final Connectors Not broken Not broken Not broken Not broken Components or or or 2 Electrical Voltage ±1% ±1% ±1% ±1% Page 20 of 34

accuracy System monitor function Alarm 3.12 Water Jet Test 3.12.1 Test procedure Normal Normal Normal Normal 1) Make the initial examination and measurement before testing, and record the test data 2) Mount the EUT in the suitable position according to its normal operational attitude, set the distance 2.5~3m from the spray nozzle to the EUT surface. 3) Adjust the water pressure to the delivery rate of 12.5L/min±5% using the jet equipment request by GB4208-93. Spray the each surface of the EUT that water can enter. The duration is 1min/m2 according to the surface area of the EUT(except the bottom),at least 3min. 4) Perform the final examination and measurement including the appearance, mechanical characteristic and functional verification as soon as possible. 3.12.2 Detailed test data Figure-14 Test curve of water jet test Table-15 Detailed test data of water jet test SN Check items Check sub items Qualification criterion Waterproof 1 3.13 Salt Fog Test 3.13.1 Test procedure Water spray test(ipx5) No water entered into the cabinet Initial measurement results No water in the cabinet Final measurement results No water in the cabinet 1) The EUT shall be visually examined and, if necessary, electrically and mechanically checked as required by the relevant specification. (initial check) Page 21 of 34

2) Cleaning the EUT immediately before the test; it shall also state whether temporary protective coatings shall be removed.(pre-conditioning) 3) The EUT shall be tested in their normal operating positions according to the relevant specification. They shall therefore be divided into lots, and each lot shall be tested in one of the operating positions. (conditional test) 4) Duration of spray test:8h(conditional test) 5) At the completion of the test, the EUT shall be washed by distilled, the temperature of the water used for washing shall not exceed +35, the EUT shall then be stored under standard recovery conditions for not less than 1h and not more than 2h(recovery) 6) The EUT shall be visually inspected and the result shall be recorded.(final measurement) 3.13.2 Detailed test data SN Check Item Check Subitem 1 Mechanical Table-16 Detailed test data of salt fog test Qualification Criterion Initial Final Connectors Not broken Not broken Not broken Components Voltage accuracy System Electrical 2 monitor function Alarm 3.14 Altitude Operation Test 3.14.1 Test procedure ±1% ±1% ±1% Normal Normal Normal 1) Before test, check the mechanical and electronic. 2) Increase the temperature to +40 in the rate of 1 /min. 3) Keep the EUT in +40 for 1h. 4) Decrease the chamber s pressure at a rate of 10kPa/h to 55kPa. 5) Maintain a condition of +40 and 55kPa for 16 hours. 6) Decrease the temperature to +25 in the rate of 1 /min, at the same time increase the chamber s pressure at a rate of 10kPa/hr to ambient, and keep for 1h. (Recovery) 7) Check the mechanical and electronic (finally check) Page 22 of 34

3.14.2 Detailed test data SN Check Item 1 Mechanical Figure-15 Test curve of altitude operation Table-17 Detailed test data of altitude operation test Check Subitem Qualification Criterion Initial Intermediate Final Connectors Not broken Not broken Not broken Not broken Components Voltage accuracy System Electrical 2 monitor function Alarm 3.15 Acoustic Test 3.15.1 Test procedure or ±1% ±1% ±1% ±1% Normal Normal Normal Normal 1) Put the sample in the center of the hemi-anechoic room. 2) Measure the background noise. 3) Power on the EUT, and then adjust fan at full speed. 4) The locations of microphones are lay as the following figure and another location at 1.5m from the cabinet surfaces in all horizontal directions at a height of 1m from the cabinet mounting surface 5) Record the data of the measurement points, and then calculate the power level. Page 23 of 34

Figure-16 The locations of microphones 3.15.2 Detailed test data Table-18 Detailed test data of acoustic test point 1 2 3 4 Sound pressure level (dba) 63.9 56.4 51.1 55.5 5 63.7 Background noise (dba) 21.6 6 63.9 7 8 Qualification criterion Test result 53.2 51.3 65 PASS Page 24 of 34

4 Test Photos 4.1 Climatic Test Photos Figure-17 Photograph of TP48200AV300R001 configuration Figure-18 Photograph of TP48200AV300R001 configuration Page 25 of 34

Figure-19 Photograph of TP48200AV300R001configuration 4.2 Mechanical and other Test Photos Figure-20 Photograph of TP48200AV300R001 Page 26 of 34

Figure-21 Drop with package Figure-22 Random vibration with package Page 27 of 34

Figure-23 Sinusoidal vibration operation Figure-24 Shock operation test Page 28 of 34

Figure-25 Salt fog test Page 29 of 34

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Figure-26 Water jet test Figure-27 Altitude operation test Page 31 of 34

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Figure-28 Acoustic t test Page 33 of 34

Appendix Abbreviations Abbreviation EUT Full Name Equipment Under Test END Page 34 of 34