MS. SANDY HSU Date: 05/19/2010 MEAN WELL ENTERPRISES CO LTD Subscriber: WU-CHUAN 3RD RD PartySite:

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1 MS. SANDY HSU Date: 05/19/2010 MEAN WELL ENTERPRISES CO LTD Subscriber: WU-CHUAN 3RD RD PartySite: WUGU INDUSTRIAL PARK File No: E TAIPEI HSIEN Project No: 10CA TAIWAN PD No: 10O20017 Type: R PO Number: Subject: UL Certification Documents For Applicant This authorization is effective from the date of this Notice and only for products produced at the manufacturing location(s) specified on the current Authorization Page. Records in the Follow-Up Services Procedure covering the product are identified on the Addendum and attached. Products that bear the UL Mark shall be identical to those that were evaluated by UL and found to comply with UL s requirements. If changes in construction are discovered, appropriate action will be taken for products not in compliance and continued use of the UL Mark may be withdrawn. UL may elect to withdraw use of the UL Mark if the Applicant or Manufacturer fails to comply with UL's requirements, including ongoing compliance of the product under UL's Follow-Up Services. The contents of this Letter are intended solely for the use of UL, the Applicant and specified Manufacturers. The opinions and findings of UL represent its judgment given with due consideration to the limitations of practical operation in accordance with UL s objectives and purposes. UL shall not incur any obligation or liability for any loss, expense or damages, including incidental, consequential or punitive damages, arising out of or in connection with the use or reliance upon the contents of this letter to anyone other

2 than the Applicant as provided in the agreement between UL and Applicant. Any use or reference to UL s name or certification mark(s) by anyone other than the Applicant in accordance with the agreement is prohibited without the express written approval of UL. This material is provided on behalf of (UL) or any authorized licensee of UL.

3 The following material resulting from the investigation under the above numbers is enclosed. Document Volume Report Reference Status Date Index X1 UL Test Report X1 E A123-UL-1 New 05/19/10 Please file revised Authorizations, Indices, and General Inspection Instructions in place of material of like identity. New Test Reports should be filed immediately following the last Test Report. Amendments or Corrections should be filed immediately before the Test Report to which they relate. Re-issued Test Reports should be filed immediately before all material related to the Test Report that it replaces. NOTE: Manufacturers receive only the following sub-sections of the Applicant s complete Test Report, where applicable: Cover Page, Specific Inspection Criteria (BA through BE), Specific Technical Criteria (through section CF), Critical Components table, and Enclosures containing image supplements. Manufacturers do not receive Test Report information related to standard clause compliance or testing results. NOTE: Manufacturers that require an Initial Product Inspection (IPI) have received their copy of the Follow-Up Service Procedure, but are instructed they are not allowed to ship products bearing the UL Mark until their UL Representative has successfully conducted the Initial Production Inspection. Please review this material and report any inaccuracies to UL Canada Customer Service, PHONE: ULC ( ), FAX: , CustomerService.ca@ca.ul.com, referring to the above Project and/or PD Numbers. This material is provided on behalf of (UL) or any authorized licensee of UL. c: TRT File

4 File Volume Page Date: E Index X May-10 Index Product Type Model/Type Reference Report Reference # Open Frame Power Supply Open Frame Power Supply Switching Power Supply Open Frame Power Supply Switching Power Supply Switching Power Supply Switching Power Supply Switching Power Supply Switching Power Supply Switching Power Supply DIN RAIL Power Supply Switching Power Supply Switching Power Supply Switching Power Supply Switching Power Supply Switching Power Supply Switching Power Supply PD-45PR PPQ-1003X, where X may be A, B, C, or D. S-40-w where w can be 5, 12, 15, or 24 S-60-x where x can be 5, 9, 12, 15 or 24 D-60y, where y can be A or B T-60z, where z can be A, B, BTE or C PTsb-181CL, and PTsb-205CL Models DRP-240-x (where x can be 24 or 48) DR-120-x (where x can be 12, 24 or 48) UR24-6, UR48-3 DP-260OR, DP -130OR Models Rx-y-z, where x can be S, D, ID, T or Q; y can be 85, 100 and z can be 3.3, 5, 12, 15, 24, 48, A, B, C, or D. Models Rx-y-z, where x can be S, D, ID, T or Q; y can be 65, 75 and z can be 3.3, 5, 12, 15, 24, 48, A, B, C, or D. DRT , DRT E A8-UL-1 E A10-UL-1 E A12-UL-1 E A13-UL-1 E A14-UL-1 E A16-UL-1 E A15-UL-1 E A18-UL-1 E A19-UL-1 E A22-UL-1 E A20-UL-1 RS-25-x, where x can be 3.3, 5, 12, 15, 24, 48. E A23-UL-1 Rx-50y, where x can be S, D, T, ID or Q, y can E A26-UL-1 be -3.3, -5, -12, -15, -24, -48, A, B, C or D. RS-35-x, where x can be 3.3, 5, 12, 15, 16, 24 E A25-UL-1 or 48. RD-35y where y can be A, B or 13. Rx-yz, where x can be S, D, T, ID or Q; y can be E A24-UL or 150; z can be -3.3, -5, -12, -15, -24, -48, -1224, -1248, -2448, -2412, -4812, -4824, A, B, C or D. RID , RID , RS , RS NES-150-x, where x=3.3, 5, 7.5, 9, 12, 15, 24, 48 PSP-600-x, where x can be 5, 12, 13.5, 15, 24, E A28-UL-1 27, 32 or 48. SP-750-x, where x can be 5, 12, 15, 24, 27, 36 E A27-UL-1 or 48 and SP-750-yAPI-1, where y can be 24 or 48,

5 File Volume Page Date: E Index X May-10 Open frame power supply Power Supply Switching Power Supply Redundant Power Supply Redundant Power Supply SP-750-yOCE ans SP-750-yOCE where y can be 24 or 48 LPS-50-X, X = 3.3, 5, 7.5, 12, 13.5, 15, 24, 27, 48 DR-480-X, DRP-480-X, DR-480S -X, DRP- 480S -X (X = 24, 48) PD-85SP MP1K0-aaaaaaa, MP1K0-aaaaab, MP1K0- aaaaba, MP1K0-aaabaa, MP1K0-aabaaa, MP1K0-abaaaa, MP1K0-baaaaa, MP1K0- bbaaa-c, MP1K0-abbaa-c, MP1K0-aabba-c, MP1K0-aaabb-c, MP1K0-babaa, MP1K0-baaba, MP1K0-baaab, MP1K0-aabab, MP1K0-ababa, MP1K0-abaab, MP1K0-bbba-c, MP1K0-abbb-c, MP1K0-babb-c, MP1K0-bbab-c, where a can be A-X or #; b can be 2A-2K or ##; c can be 1, 2, 3, 4, 5, 6 or blank. MP650-aaaaa, MP650-aaab, MP650-aaba, MP650-abaa, MP650-baaa, MP650-abb-c, MP650-bba-c, MP650-bab, where a can be A-X or #; b can be 2A-2K or ##; c can be 1, 2 or blank. E A5-UL-2 E A17-UL-3 E A31-UL-1 E A36-UL-1 E A32-UL-1 DIN RAIL Power DRT-960X-Y (X = P or blank; Y = 24 or 48) E A34-UL-1 Supply Switching Power DR-60-x, where x can be 5, 12, 15, or 24. E A37-UL-1 Supply Switching Power DR-30-x, where x can be 5, 12, 15, or 24. E A33-UL-1 Supply Switching Power IPC-300A, IPC-300B, IPC-250, IPC-200 E A41-UL-1 Supply Switching Power USP-350-x (x = 3.3, 5, 12, 15, 24, 48, 53AD) E A45-UL-1 Supply Other SP-125CL E A47-UL-1 Switching Power NES-15-x (x = 5, 12, 15, 24, 48) E A50-UL-1 Supply (For Built- In) Switching Power NES-25-x (x = 5, 12, 15, 24, 48) E A51-UL-1 Supply (For Built- In) Switching Power NES-100-x (x = 5, 7.5, 9, 12, 15, 24, 48) E A58-UL-1 Supply (For Built- In) Switching Power RPX-65Y, where X may be D or T, and Y may E A62-UL-1 Supply (Buildingin type) be C, D, E, F or G. Switching Power QP-320D, QP-320F E A60-UL-1 Supply, Openframe, Built-In Switch Model Power Supplies S-100-F-x (x=5, 7.5, 12, 15, 24, or 48) E A63-UL-1 Switching Power Supply SP AE, SP-480-x, where x can be 3.3, 5, E A9-UL-2 12, 15, 24, 48, PSP PD Switching Power PPS-200-x (x = 5, 12, 15, 24, 27, 48) E A65-UL-1

6 File Volume Page Date: E Index X May-10 Supply, Open- Frame, Built-In Switching Power Supply Switching Power Supply Switching Power Supply Open Frame Switching Power Supply Switching Power Supply SE-1000-X where X can be 5, 9,12,15, 24 or 48. E A66-UL-1 PT-4503CO ASP-150-X (X = 12, 15, 20, 24, 27 or 48) PS-35-X, where X can be 3.3, 5, 7.5, 12, 13.5, 15, 24, or 48. Switching Power Supply Unit: RSP-1000-x, where x can be 12, 15, 24, 27 or 48 RCP-1000-xy, where x can be 12, 24 or 48, y=- C or Blank E A70-UL-1 E A72-UL-1 E A74-UL-1 E A78-UL-1 Backplane rack: RCP-1Uz, where z can be I or T Switching Power supply with Rack: RCP-3K1Uz-xy, x can be 12, 24 or 48, y can be -C or blank, and z can be I or T. Mounting Rack Battery Charger PB-xy-z where x (total output power) can be 300 E A80-UL-1 or 360, y can be P (with PFC choke) or N (no PFC choke) and z (output voltage) can be 12, 24 or 48 or 48ET-1 Open Frame PID-250X, where X can be A, B, C or D E A81-UL-1 Switching Power Supply DC-DC Converter NSD15-xyz (x can be 12 or 48; y can be S or D; E A83-UL-1 z can be 3, 5, 12 or 15) DC-DC converter NSD10-xyz (x can be 12 or 48; y can be S or D; E A82-UL-1 z can be 3, 5, 9, 12 or 15) DIN RAIL Power DRH and DRH E A84-UL-1 Supply Switching Power RS-15-X where X may be 3.3, 5, 12, 15, 24 or E A85-UL-1 Supply 48 Switching Power USP-500-X where X denotes output voltage E A86-UL-1 Supply which may be 5, 12, 15, 24 or 48. DIN Rail Power DR-100-X where X denotes output voltage, E A87-UL-1 Supply which may be 12, 15 or 24. DIN RAIL Power DRT , DRT and DRT PE E A21-UL-2 Supply Open Frame Switching Power Supply Open frame switching power supply PPx-125y, where x can be S or T; when x equal to S, that y will be -3.3, -5, -9, -12, -13.5, -15, - 24, -27 or -48; when x equal to T that y will be A, B, C or D. PPT-125AA RPS-60-12AT E A7-UL-2 E A90-UL-1 Single Output MDR-x-y ( x = 40 or 60, y = 5, 12, 24, 48) E A91-UL-1

7 File Volume Page Date: E Index X May-10 Industrial DIN Rail Power Supply DC-DC Power Supply Switching Power Supply 2/8 Stage Switching Mode Battery Charger Open Frame Switching Power Supply Switching Power Supply SD-200C-24 E A93-UL-1 P , P , P , SE-600-5, SE- E A2-UL , SE , SE , SE , SE , SE , CE-S B PB-1000-x E A94-UL-1 Where x (output voltage) can be 12, 24, 48. Pw-120x-yPzz, where w can be S, A, or B; where x can be P or N; where y can be 13, 27, or 54; and where z can be 0-9, A-Z, or blank. PID-24RC Switch mode type ID-60B, IT-60D, IT-60F, IQ-60D, IQ-60F power supply Switching Power Model: NED-100XY, X=A, B, C, D for output Supply rating differences; Y=GD (Secondary Output Functional Earthing separated without Jump (J101) or blank (Secondary Output connected with Functional Earthing together) Switching Power CLG-150-XY Supply (X=12, 15, 20, 24, 30, 36, or 48; Y=A, B or C) Building-In PSC-60A, PSC-60B Switching Power Supplies Building-In Switching Power Supply Building-In Switching Power Supplies Switching Power Supply Building-In Switching Power Supplies Single Output Industrial DIN Rail Power Supply Redundant Power Supply Open Frame Switching Power Supply Switching Power Supply SE-450-X, where X can be 3.3, 5, 12, 15, 24, 36 or 48 SE-1500-X, where X can be 5, 12, 15, 24, 27 or 48 HRPX-150-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48). RSP-3000-X, where X can be 12, 24, or 48 RSP-2400-X, where X can be 12, 24, or 48 DR-15-X (X may be 5, 12, 15, or 24) MP450-aaaaa, MP450-aaab, MP450-aaba, NP450-abaa, MP450-baaa, MP450-abb-c, MP- 450bba-c, MP450-bab, where a can be A-X or #; b can be 2A-2K or ##; c can be 1, 2 or blank. MPT-120BC88 HRPX-600-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48), HRPG UN E A95-UL-1 E A98-UL-1 E A1-UL-3 E A100-UL-1 E A96-UL-2 E A101-UL-1 E A102-UL-1 E A103-UL-1 E A106-UL-1 E A104-UL-1 E A105-UL-1 E A35-UL-2 E A108-UL-1 E A109-UL-1

8 File Volume Page Date: E Index X May-10 Switching Power Supply Building-In Switching Power Supplies Switching Power Supplies Switching Power Supply Switching Power Supply Switching Power Supplies Open Frame Power Supply Switching Power Supplies Switching Power Supplies Switching Power Supply Switching Power Supplies Switching Power Supply Switching Power Supply Switching Power Supply (For Built- In) ELN-30-9, ELN-30-9GE PSC-100A, PSC-100B, PSC-100AHO E A110-UL-1 E A111-UL-1 HRPX-300-Y (X=G or blank; Y=3.3, 5, 7.5, 12, E A112-UL-1 15, 24, 36, 48) SP , SP-320-5, SP , SP , E A3-UL-4 SP , SP , SP , SP , SP , SP , SP EV, SP NP, SPV , SPV , SPV , SPV , SPV , SPV RSP-1500-X (X can be 5, 12, 15, 24, 27, 27VS, E A39-UL-2 48); SPV-1500-X (X can be 12, 24, 48). Note: X denotes output DC voltage. SP-240-X, X = 5, 7.5, 12, 15, 24, 30, 48 E A114-UL-1 LPS , LPS-75-5, LPS-75-12, LPS-75-15, LPS-75-24, LPS LPS-75-24GR HRP-75-X, X = 3.3, 5, 7.5, 12, 15, 24, 36, 48 E A4-UL-3 E A115-UL-1 HRP-100-X (X = 3.3, 5, 7.5, 12, 15, 24, 36, 48) E A119-UL-1 HLG-240x-yz (x can be H or blank, y can 12, 15, 20, 24, 30, 36, 42, 48 or 54, z can be A, B, C or blank) ELP-75-X (X = 3.3, 5, 12, 15, 24, 36, 48) MP450-2KSX#-AG E A117-UL-1 E A121-UL-1 E A118-UL-1 HRPX-200-Y (X = G or blank for marketing; Y = E A120-UL-1 3.3, 5, 7.5, 12, 15, 24, 36, 48 for output voltage) NEx-35y (x = S, D,T; y = -5, -12, -15, -24, -48, E A52-UL-2 A, B, C, D), SCP-35-12, SCP Switching Power NEx-75y (x = S, D, T; y = -5, -12, -15, -24, -48, Supply (For Built- A, B, C or D), SCP-75-12, SCP In) Switching Power NEx-50y (x = S, D, T; y = -5, -12, -15, -24, -48, Supply (For Built- A, B, C or D), SCP-50-12, SCP In) Switching Power Supply HRPX-450-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48) E A57-UL-2 E A56-UL-2 E A123-UL-1

9 File Volume Page Date: E Index X May-10

10 Issue Date: Page 1 of 2 Report Reference # E A123-UL-1 COVER PAGE FOR TEST REPORT Product Category: Product Category CCN: Test Procedure: Product: Power Supplies for Information Technology Equipment Including Electrical Business Equipment QQGQ2, QQGQ8 Component Recognition Switching Power Supply Model/Type Reference: HRPX-450-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48) Rating(s): Input: Vac, 50/60Hz, 6.0A Output: HRPX : +3.3Vdc/90A HRPX-450-5: +5Vdc/90A HRPX : +7.5Vdc/60A HRPX : +12Vdc/37.5A HRPX : +15Vdc/30A HRPX : +24Vdc/18.8A HRPX : +36Vdc/12.5A HRPX : +48Vdc/9.5A Standards: UL , 2nd Edition, (Information Technology Equipment - Safety - Part 1: General Requirements) CSA C22.2 No , 2nd Edition, (Information Technology Equipment - Safety - Part 1: General Requirements) Applicant Name and Address: MEAN WELL ENTERPRISES CO LTD 28 WU-CHUAN 3RD RD WUGU INDUSTRIAL PARK TAIPEI HSIEN 248 TAIWAN This Report includes the following parts, in addition to this cover page: 1. Specific Inspection Criteria 2. Specific Technical Criteria 3. Clause Verdicts 4. Critical Components 5. Test Results 6. National Differences 7. Enclosures Copyright 2010

11 Issue Date: Page 2 of 2 Report Reference # E A123-UL-1 This is to certify that representative samples of the products covered by this Test Report have been investigated in accordance with the above referenced Standards. The products have been found to comply with the requirements covering the category and the products are judged to be eligible for Follow -Up Service under the indicated Test Procedure. The manufacturer is authorized to use the UL Mark on such products which comply with this Test Report and any other applicable requirements of ('UL') in accordance with the Follow -Up Service Agreement. Only those products which properly bear the UL Mark are considered as being covered by UL's Follow -Up Service under the indicated Test Procedure. The applicant is authorized to reproduce the referenced Test Report provided it is reproduced in its entirety. UL authorizes the applicant to reproduce the latest pages of the referenced Test Report consisting of the first page of the Specific Technical Criteria through to the end of the Conditions of Acceptability. Any information and documentation provided to you involving UL Mark services are provided on behalf of Underwriters Laboratories Inc(ULI) or any authorized license of ULI. Test Report By: Reviewed By: Joyce Liang Project Engineer Underwriters Laboratories of Canada Inc. Sam Fu Project Engineer Underwriters Laboratories Taiwan Co., Ltd. Copyright 2010

12 Issue Date: Page 1 of 70 Report Reference # E A123-UL-1 SPECIFIC INSPECTION CRITERIA BA1.0 BA1.1 Special Instructions to UL Representative Inspect the transformer(s) listed in BD1.1 per AA1.1- (C). When the tests are conducted at other location, inspect test record and specification sheet provided by the component manufacturer. Verify the specification sheet indicates 100% routine test specified in BD1.1 be conducted at the component manufacturer. BB1.0 BB1.1 Supporting Documentation The following documents located at the beginning of this Procedure supplement the requirements of this Test Report: A. Authorization - The Authorization page may include additional Factory Identification Code markings. B. Generic Inspection Instructions - i. Part AC details important information which may be applicable to products covered by this Procedure. Products described in this Test Report must comply with any applicable items listed unless otherwise stated in the body of this Test Report. ii. Part AE details any requirements which may be applicable to all products covered by this Procedure. Products described in this Test Report must comply with any applicable items listed unless otherwise stated in the body of each Test Report. iii. Part AF details the requirements for the UL Certification Mark which is not controlled by the technical standard used to investigate these products. Products are permitted to bear only the Certification Mark(s) corresponding to the countries for which it is certified, as indicated in each Test Report. BC1.0 BC1.1 BC1.2 Markings and instructions The following markings and instructions are provided as indicated. All clause references are from UL , 2nd Edition, (Information Technology Equipment - Safety - Part 1: General Requirements). Standard Clause Clause Title Power rating - Ratings Power rating - Company identification Power rating - Model Fuses - Nonoperator access/solderedin fuses Marking or Instruction Details Ratings (voltage, frequency/dc, current) Listee's or Recognized company's name, Trade Name, Trademark or File Number Model Number Unambiguous reference to service documentation for instructions for replacement of fuses replaceable only by service personnel TRF No. IECEN60950_1C

13 Issue Date: Page 2 of 70 Report Reference # E A123-UL-1 Fuses - Rating Rated current and voltage and type located on or adjacent to fuse or fuseholder. BD1.0 BD1.1 BD1.2 BD1.3 BD1.4 Production-Line Testing Requirements Electric Strength Test Special Constructions - Refer to Generic Inspection Instructions, Part AC for further information. Model Component Removable Parts Test probe location HRPX- 450-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48) HRPX- 450-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48) Transformer (T1) Transformer (T900 when provided) Earthing Continuity Test Exemptions - This test is not required for the following models: Electric Strength Test Exemptions - This test is not required for the following models: Electric Strength Test Component Exemptions - The following solid-state components may be disconnected from the remainder of the circuitry during the performance of this test: Test Potential V rms V dc Primary to Secondary Primary to Secondary Test Time, s 1 1 BE1.0 BE1.1 Sample and Test Specifics for Follow-Up Tests at UL Model Component Material Test Sample(s) Test Specifics TRF No. IECEN60950_1C

14 Issue Date: Page 3 of 70 Report Reference # E A123-UL-1 SPECIFIC TECHNICAL CRITERIA UL :2005 (2nd Edition) Information technology equipment - Safety - Part 1: General requirements Report Reference No... : E A123-UL-1 Compiled by... : Joyce Liang Reviewed by... : Sam Fu Date of issue... : Standards... : UL , 2nd Edition, (Information Technology Equipment - Safety - Part 1: General Requirements) CSA C22.2 No , 2nd Edition, (Information Technology Equipment - Safety - Part 1: General Requirements) Test procedure... : Component Recognition Non-standard test method... : Test item description... : Switching Power Supply Trademark... : None Model and/or type reference... : HRPX-450-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48) Rating(s)... : Input: Vac, 50/60Hz, 6.0A Output: HRPX : +3.3Vdc/90A HRPX-450-5: +5Vdc/90A HRPX : +7.5Vdc/60A HRPX : +12Vdc/37.5A HRPX : +15Vdc/30A HRPX : +24Vdc/18.8A HRPX : +36Vdc/12.5A HRPX : +48Vdc/9.5A TRF No. IECEN60950_1C

15 Issue Date: Page 4 of 70 Report Reference # E A123-UL-1 Particulars: test item vs. test requirements Equipment mobility...: for building-in Connection to the mains...: To be evaluated in end product Operating condition...: continuous Over voltage category...: OVC II Mains supply tolerance (%)...: +10%, -10% (Declared by Manufacturer) Tested for IT power systems...: No IT testing, phase-phase voltage (V)...: Class of equipment...: Class I (earthed) Mass of equipment (kg)...: 1.1Kg Pollution degree...: PD 2 IP protection class...: IP X0 Possible test case verdicts: - test case does not apply to the test object...: N / A - test object does meet the requirement...: Pass - test object does not meet the requirement...: Fail (acceptable only if a corresponding, less stringent national requirement is "Pass") General remarks: - "(see Enclosure #)" refers to additional information appended to the Test Report - "(see appended table)" refers to a table appended to the Test Report - Throughout the Test Report a point is used as the decimal separator TRF No. IECEN60950_1C

16 Issue Date: Page 5 of 70 Report Reference # E A123-UL-1 GENERAL PRODUCT INFORMATION: CA1.0 CA1.1 Report Summary CB1.0 CB1.1 Product Description The devices are AC/DC switching power supplies. Each consists of electronic components mounted on PWBs enclosed in a metal enclosure. Each has two terminal blocks and a DC fan. CC1.0 CC1.1 Model Differences All models have identical schematic and PWB layout. Models with different X in model number are identical except for model designation. Mocdel with different Y in model number are identical except for transformer T1 secondary and some secondary components. See Enclosure ID 5-01 for detailed model differences. CD1.0 CD1.1 Additional Information CE1.0 CE1.2 CE1.3 CE1.4 CE1.5 CE1.13 Technical Considerations The product was submitted and evaluated for use at the maximum ambient temperature (Tma) permitted by the manufacturer s specification of: 50 C The means of connection to the mains supply is: To be evaluated in end product The product is intended for use on the following power systems: TN The equipment disconnect device is considered to be: To be evaluated in end product. The following are available from the Applicant upon request: Specific data sheets for LED indicators that are class I and operate at wavelength in the nm range., Installation (Safety) Instructions / Manual CF1.0 CF1.1 CF1.2 CF1.3 CF1.5 Engineering Conditions of Acceptability For use only in or with complete equipment where the acceptability of the combination is determined by When installed in an end-product, consideration must be given to the following: The following Production-Line tests are conducted for this product: Electric Strength, Earthing Continuity The end-product Electric Strength Test is to be based upon a maximum working voltage of: Primary-SELV: 303 Vrms, 480 Vpk, Primary-Earthed Dead Metal: 303 Vrms, 480 Vpk The following secondary output circuits are SELV: All outputs TRF No. IECEN60950_1C

17 Issue Date: Page 6 of 70 Report Reference # E A123-UL-1 CF1.6 CF1.10 CF1.11 CF1.12 The following secondary output circuits are at hazardous energy levels: All outputs The following output terminals were referenced to earth during performance testing: Transformer T1 (pin FL2 or output -V); Transformer T900 (pin 7, 8 or AUXG). The power supply terminals and/or connectors are: Not investigated for field wiring The maximum investigated branch circuit rating is: 20 A CF1.13 The investigated Pollution Degree is: 2 CF1.15 CF1.16 CF1.17 CF1.18 CF1.19 CF1.20 CF2.0 Proper bonding to the end-product main protective earthing termination is: Required An investigation of the protective bonding terminals has: Been conducted The following input terminals/connectors must be connected to the end-product supply neutral: Terminal AC/N from input terminal block TB1. The following magnetic devices (e.g. transformers or inductor) are provided with an OBJY2 insulation system with the indicated rating greater than Class A (105 C): T1 (Class B) & T900 (Class B) The following end-product enclosures are required: Mechanical, Electrical, Fire The following components require special consideration during end-product Thermal (Heating) tests due to the indicated maximum temperature measurements during component-level testing: ZNR1 body Terminal FG from the input terminal block TB1 shall be properly bonded to the protective grounding terminal of the end product and the ground traces of the PWB shall be investigated according to clause TRF No. IECEN60950_1C

18 Issue Date: Page 7 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 1 GENERAL Pass 1.5 Components Pass General Pass Comply with IEC or relevant component standard (see appended table 1.5.1) Evaluation and testing of components Components certified to IEC harmonized standard and checked for correct application. Components, for which no relevant IEC- Standard exist, have been tested under the conditions occurring in the equipment, using applicable parts of IEC Components not certified are used in accordance with their ratings and they comply with applicable parts of IEC and the relevant component Standard Thermal controls Thermal Controls comply with Annex K, see Annex K - Thermal Controls Transformers Transformers used are suitable for their intended applications and comply with relevant parts of this standard and particularly Annex C Interconnecting cables No interconnecting cables provided Capacitors bridging insulation Line-to-Neutral capacitors are subclass X1 or X2. Primary-to-earth capacitors are subclass Y1 or Y2. Bridging capacitor C31 is subclass Y Resistors bridging insulation Resistors only bridge functional insulation Resistors bridging functional, basic or supplementary insulation Resistors bridging double or reinforced insulation Pass Pass Pass Pass Pass Pass Pass TRF No. IECEN60950_1C

19 Issue Date: Page 8 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict between a.c. mains and other circuits Resistors bridging double or reinforced insulation between a.c. mains and antenna or coaxial cable Accessible parts To be evaluated in end product Components in equipment for IT power systems Not for use on IT systems Surge suppressors Pass General Pass Protection of VDRs Fuse FS1 rated F8A/250V is used before the VDR Bridging of functional insulation by a VDR Pass Bridging of basic insulation by a VDR Only functional insulation is bridged by VDR Bridging of supplementary, double or reinforced insulation by a VDR Pass 1.6 Power interface Pass AC power distribution systems TN power system Pass Input current The steady state input current of the equipment did not exceed the RATED CURRENT by more than 10% under NORMAL LOAD. (see appended table 1.6.2) Voltage limit of hand-held equipment Neutral conductor Pass Pass TRF No. IECEN60950_1C

20 Issue Date: Page 9 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 1.7 Marking and instructions Pass Power rating Rating marking readily visible to operator Rated voltage(s) or voltage range(s) (V)... : Vac Symbol for nature of supply, for d.c. only... : Rated frequency or rated frequency range (Hz)... : 50/60 Hz. Rated current (ma or A)... : 6.0A Manufacturer's name or trademark or identification mark... : Mean Well or E Model identification or type reference... : HRPX-450-Y (X=G or blank; Y=3.3, 5, 7.5, 12, 15, 24, 36, 48). Symbol for Class II equipment only... : Other markings and symbols... : Additional symbols do not give rise to misunderstanding Safety instructions and marking Operating/safety instructions made available to the user General Pass Disconnect devices To be evaluated in the end product Overcurrent protective device To be evaluated in the end product IT Power distribution systems Operator access with a tool Ozone Short duty cycles Supply voltage adjustment... : Auto-ranging. Method and means of adjustment; reference to installation instructions... : Power outlets on the equipment... : No standard power outlets are provided Fuse identification (marking, special fusing characteristics, cross-reference)... : FS1, 8A/250V Wiring terminals To be evaluated in end product Protective earthing and bonding terminals... : Protective earthing to be evaluated in end product Terminal for a.c. mains supply conductors Terminals intended for connection of the primary Pass Pass Pass Pass Pass Pass Pass Pass Pass TRF No. IECEN60950_1C

21 Issue Date: Page 10 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict power neutral conductor indicated by the capital letter N. Marking not placed on any part which might be removed when conductors are being connected. The suitability of the terminals for connection to the AC Mains supply shall be evaluated in the end product Terminals for d.c. mains supply conductors Controls and indicators Pass Identification, location and marking... : The function of controls affecting safety is obvious regardless of language Colours... : A green LED is illuminated when the unit is operating Symbols according to IEC : Markings using figures... : Isolation of multiple power sources... : There is only one connection to hazardous voltages Thermostats and other regulating devices... : No adjustable thermostats or similar regulating devices Durability All markings provided on UL Recognized Component labels suitable for surface they are applied upon and meet the durability test Removable parts No marking is located on (a) removable part(s) Replaceable batteries... : No batteries Language(s)... : Equipment for restricted access locations... : Pass Pass Pass Pass TRF No. IECEN60950_1C

22 Issue Date: Page 11 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 2 PROTECTION FROM HAZARDS Pass 2.1 Protection from electric shock and energy hazards Pass Protection in operator access areas To be evaluated in end product Access to energized parts For building-in. Accessibility is to be evaluated in end product. Test by inspection... : Test with test finger (Figure 2A)... : Test with test pin (Figure 2B)... : Test with test probe (Figure 2C)... : Battery compartments Access to ELV wiring Working voltage (Vpeak or Vrms); minimum distance through insulation (mm)... : Access to hazardous voltage circuit wiring Energy hazards... : The output of the power supplies presents an energy hazard. No operator access permitted. To be evaluated in end product Manual controls Discharge of capacitors in equipment Pass Measured voltage (V); time-constant (s)... : line-to-line: V0 (original V)=364pk; 37%V0=135 V; Voltage at 1 second = 0 V Energy hazards - d.c. mains supply a) Capacitor connected to the d.c. mains supply.. : b) Internal battery connected to the mains supply : Audio amplifiers... : Protection in service access areas Protection in restricted access locations Pass Pass - - TRF No. IECEN60950_1C

23 Issue Date: Page 12 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 2.2 SELV circuits Pass General requirements Pass Voltages under normal conditions (V)... : Not exceed 42,4 V peak, or 60 V d.c Voltages under fault conditions (V)... : Not exceed 42,4 V peak, or 60 V d.c. for longer than 200 ms and moreover, not exceed 71 V peak or 120 V d.c Connection of SELV circuits to other circuits... : SELV connected to limited current circuit. Pass Pass Pass 2.3 TNV circuits Limits No TNV presents Type of TNV circuits... : Separation from other circuits and from accessible parts General requirements Protection by basic insulation Protection by earthing Protection by other constructions... : Separation from hazardous voltages Insulation employed... : Connection of TNV circuits to other circuits Insulation employed... : Test for operating voltages generated externally TRF No. IECEN60950_1C

24 Issue Date: Page 13 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 2.4 Limited current circuits Pass General requirements For secondary of Bridging Capacitor C Limit values 0.7 ma peak Pass Frequency (Hz)... : 60 - Measured current (ma)... : Measured voltage (V)... : Measured circuit capacitance (nf or uf)... : 2200pF Connection of limited current circuits to other circuits Pass Pass 2.5 Limited power sources a) Inherently limited output b) Impedance limited output c) Regulating network limited output under normal operating and single fault condition d) Overcurrent protective device limited output Max. output voltage (V), max. output current (A), max. apparent power (VA)... : Current rating of overcurrent protective device (A): - - TRF No. IECEN60950_1C

25 Issue Date: Page 14 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 2.6 Provisions for earthing and bonding Pass Protective earthing To be evaluated in end Product Functional earthing Functional earthing separated from Hazardous voltage by reinforced insulation Protective earthing and protective bonding conductors Tobe evaluated in end product General Size of protective earthing conductors Rated current (A), cross-sectional area (mm²), AWG... : Size of protective bonding conductors Rated current (A), cross-sectional area mm²), AWG... : Resistance of earthing conductors and their terminations; resistance (ohm), voltage drop (V), test current (A), duration (min)... : Test current 40A: Ground pin - chassis: Voltage drop 0.43V Colour of insulation... : Not used Terminals To be evaluated in end product General Protective earthing and bonding terminals Rated current (A), type, nominal thread diameter (mm)... : Separation of the protective earthing conductor from protective bonding conductors Integrity of protective earthing To be evaluated at endproduct Interconnection of equipment Components in protective earthing conductors and protective bonding conductors Disconnection of protective earth Parts that can be removed by an operator Parts removed during servicing Corrosion resistance Screws for protective bonding Metal thickness at least twice the pitch of the screw Reliance on telecommunication network or cable Pass TRF No. IECEN60950_1C

26 Issue Date: Page 15 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict distribution system 2.7 Overcurrent and earth fault protection in primary circuits Pass Basic requirements Protective devices are integrated in the equipment. Instructions when protection relies on building installation Faults not covered in Protection from faults not covered in 5.3 are provided by end installation Short-circuit backup protection The building installation is considered as providing shortcircuit backup protection Number and location of protective devices... : One protective device (Fuse FS1) in the "LIVE" phase Protection by several devices Only one protective device is provided Warning to service personnel... : Pass Pass Pass Pass 2.8 Safety interlocks General principles Protection requirements Inadvertent reactivation Fail-safe operation Moving parts Overriding Switches and relays Contact gaps (mm)... : Overload test Endurance test Electric strength test Mechanical actuators TRF No. IECEN60950_1C

27 Issue Date: Page 16 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 2.9 Electrical insulation Pass Properties of insulating materials Natural rubber, materials containing asbestos and hygroscopic materials are not used as insulation.adequate clearances and creepage distances Humidity conditioning Electric strength test was conducted after the humidity treatment. Relative humidity (%), temperature ( C)... : 95%, 40 C, 48 hours Grade of insulation Adequate level of safety insulation is provided and maintained to comply with the requirements of this standard Separation from hazardous voltages Pass Method(s) used... : Primary circuit separated from Secondary circuit by double insulation or reinforced insulation. Pass Pass Pass - TRF No. IECEN60950_1C

28 Issue Date: Page 17 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 2.10 Clearances, creepage distances and distances through insulation Pass General Pollution degree 2 applicable. Pass Frequency... : 50/60Hz Pass Pollution degrees... : Pollution Degree 2 Pass Reduced values for functional insulation Intervening unconnected conductive parts Insulation with varying dimensions Special separation requirements Insulation in circuits generating starting pulses Determination of working voltage See appended table and General Pass RMS working voltage Pass Peak working voltage Pass Clearances See appended table and General Pass Mains transient voltages Pass Pass Pass a) AC mains supply... : 2500V Pass b) Earthed d.c. mains supplies... : c) Unearthed d.c.. mains supplies... : d) Battery operation... : Clearances in primary circuits (see appended table and ) Clearances in secondary circuits Compliance criteria for Pass Clearances in circuits having starting pulses Transients from a.c. mains supply... : Transients from d.c. mains supply... : Transients from telecommunication networks and cable distribution systems... : Measurement of transient voltage levels a) Transients from a mains supply For an a.c. mains supply... : For a d.c. mains supply... : b) Transients from a telecommunication network Creepage distances (see appended table Pass Pass TRF No. IECEN60950_1C

29 Issue Date: Page 18 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict and ) General Pass Material group and comparative tracking index Pass CTI tests... : Material Group IIIa or IIIb assumed unless otherwise indicated. 100 <= CTI < Minimum creepage distances Pass Solid insulation Pass General Pass Distances through insulation UL recognized R/C (FPQU2) optocouplers used. Insulation sheet provides basic insulation only Insulating compound as solid insulation Semiconductor devices UL recognized R/C (FPQU2) optocouplers used Cemented joints Thin sheet material - General Pass Separable thin sheet material Pass Number of layers (pcs)... : 2 layers insulation tape wrap transformer outside. 2 layers insulation tape between primary and secondary of transformers T1 and T Non-separable thin sheet material UL recognized R/C triple insulated winding wire used T Thin sheet material - standard test procedure Electric strength test... : Thin sheet material - alternative test procedure Pass Electric strength test... : (see appended table 5.2) Insulation in wound components Pass Wire in wound components Working voltage... : a) Basic insulation not under stress... : b) Basic, supplementary, reinforced insulation... : c) Compliance with Annex U... : Two wires in contact inside wound component; - Pass Pass - TRF No. IECEN60950_1C

30 Issue Date: Page 19 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict angle between 45 and : Wire with solvent-based enamel in wound components Electric strength test... : - Routine test Additional insulation in wound components Working voltage... : - Basic insulation not under stress... : - Supplementary, reinforced insulation... : Construction of printed boards Pass Uncoated printed boards (see appended table and ) Coated printed boards Insulation between conductors on the same inner surface of a printed board Insulation between conductors on different layers of a printed board Distance through insulation Number of insulation layers (pcs)... : Component external terminations (see appended table and ) Tests on coated printed boards and coated components Sample preparation and preliminary inspection Thermal conditioning Electric strength test Abrasion resistance test Thermal cycling Test for Pollution Degree 1 environment and insulating compound Tests for semiconductor devices and cemented joints Enclosed and sealed parts Pass Pass TRF No. IECEN60950_1C

31 Issue Date: Page 20 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 3 WIRING, CONNECTIONS AND SUPPLY Pass 3.1 General Pass Current rating and overcurrent protection Pass Protection against mechanical damage Securing of internal wiring Insulation of conductors Beads and ceramic insulators Screws for electrical contact pressure All electrical screw connections are by metal screw with more than 2 threads into a metal plate Insulating materials in electrical connections No contact pressure through insulating material Self-tapping and spaced thread screws No thread-cutting or space thread screws used Termination of conductors Pass 10 N pull test Checked by Inspection Sleeving on wiring Heat shrinkable sleeving used. Pass Pass TRF No. IECEN60950_1C

32 Issue Date: Page 21 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 3.2 Connection to mains supply Means of connection To be evaluated in end product Connection to an a.c. mains supply To be evaluated in end product Connection to a d.c. mains supply Multiple supply connections Permanently connected equipment To be evaluated in end product. Number of conductors, diameter of cable and conduits (mm)... : Appliance inlets No appliance inlet Power supply cords A power supply cord is not provided AC power supply cords Type... : - Rated current (A), cross-sectional area (mm²), AWG... : DC power supply cords Cord anchorages and strain relief Mass of equipment (kg), pull (N)... : - Longitudinal displacement (mm)... : Protection against mechanical damage Cord guards Diameter of minor dimension D (mm); test mass (g)... : Radius of curvature of cord (mm)... : Supply wiring space To be evaluated in end product TRF No. IECEN60950_1C

33 Issue Date: Page 22 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 3.3 Wiring terminals for connection of external conductors Pass Wiring terminals For building-in. To be evaluated in end product Connection of non-detachable power supply cords Screw terminals Pass Conductor sizes to be connected To be evaluated in end product. Rated current (A), cord/cable type, cross-sectional area (mm²)... : Wiring terminal sizes Pass Rated current (A), type and nominal thread diameter (mm)... : R/C (XCFR2) terminal bloack (TB1) rated 300 V ac, 20 A each pin Wiring terminals design Terminals are mounted such that they do not become loose, place stress on internal wiring, or reduce creepage and clearances below those prescribed in Grouping of wiring terminals All mains supply and earthing terminals in close proximity Stranded wire - - Pass Pass TRF No. IECEN60950_1C

34 Issue Date: Page 23 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 3.4 Disconnection from the mains supply General requirement To be evaluated in end product Disconnect devices To be evaluated in end product Permanently connected equipment To be evaluated in end product Parts which remain energized To be evaluated in end product Switches in flexible cords Number of poles - single-phase and d.c. equipment Number of poles - three-phase equipment Switches as disconnect devices Plugs as disconnect devices Interconnected equipment Multiple power sources 3.5 Interconnection of equipment Pass General requirements Pass Types of interconnection circuits... : Interconnection circuits are SELV CIRCUITS ELV circuits as interconnection circuits Data ports for additional equipment Pass 4 PHYSICAL REQUIREMENTS Pass 4.1 Stability Angle of 10 For building-in Test force (N)... : TRF No. IECEN60950_1C

35 Issue Date: Page 24 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 4.2 Mechanical strength Pass General Pass Steady force test, 10 N Pass Steady force test, 30 N Tested on chassis. No hazard as a result of the 30 N test Steady force test, 250 N For building-in. To be evaluated in end product Impact test Fall test Swing test Drop test; height (mm)... : Stress relief test Cathode ray tubes Picture tube separately certified... : High pressure lamps Wall or ceiling mounted equipment; force (N)... : Pass TRF No. IECEN60950_1C

36 Issue Date: Page 25 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 4.3 Design and construction Pass Edges and corners All edges and corners are judged to be sufficiently well rounded so as not to constitute a hazard. Judged by inspection Handles and manual controls; force (N)... : Adjustable controls Securing of parts No loosening of parts impairing creep age distances or clearances over supplementary or reinforced insulation is likely to occur Connection by plugs and sockets Direct plug-in equipment Torque... : Compliance with the relevant mains plug standard: Heating elements in earthed equipment No heating elements Batteries No batteries - Overcharging of a rechargeable battery - Unintentional charging of a non-rechargeable battery - Reverse charging of a rechargeable battery - Excessive discharging of any battery Oil and grease The insulation of the internal wiring is not exposed to oil, grease, etc Dust, powders, liquids and gases Containers for liquids or gases Flammable liquids... : Quantity of liquid (l)... : Flash point ( C)... : Radiation Pass General Ionizing radiation Measured radiation (pa/kg)... : - Measured high-voltage (kv)... : - Measured focus voltage (kv)... : - Pass Pass TRF No. IECEN60950_1C

37 Issue Date: Page 26 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict CRT markings... : Effect of ultraviolet (UV) radiation on materials Part, property, retention after test, flammability classification... : Human exposure to ultraviolet (UV) radiation... : Laser (including LEDs) Contains only one visible indicator LED (Class 1) operating in the range of nm wavelength. No IEC evaluation was deemed necessary. Laser class... : (For indicator LEDs, see above statement.) Other types... : Pass Protection against hazardous moving parts General To be evaluated in end product Protection in operator access areas... : Protection in restricted access locations... : Protection in service access areas 4.5 Thermal requirements Pass General Pass Temperature tests (see appended table 4.5) Pass Normal load condition per Annex L... : See Annex L Temperature limits for materials Pass Touch temperature limits Pass Resistance to abnormal heat... : TRF No. IECEN60950_1C

38 Issue Date: Page 27 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 4.6 Openings in enclosures Top and side openings For building-in, fire enclosure to be provided in end product. Dimensions (mm)... : Bottoms of fire enclosures Construction of the bottom, dimensions (mm)... : Doors or covers in fire enclosures Openings in transportable equipment Constructional design measures Dimensions (mm)... : Evaluation measures for larger openings Use of metallized parts Adhesives for constructional purposes Conditioning temperature ( C), time (weeks)... : Resistance to fire Pass Reducing the risk of ignition and spread of flame Pass Method 1, selection and application of components wiring and materials Method 2, application of all of simulated fault condition tests Conditions for a fire enclosure Parts requiring a fire enclosure For building-in, fire enclosure to be provided in end product Parts not requiring a fire enclosure Materials Pass General Materials for fire enclosures For building-in, fire enclosure to be provided in end product Materials for components and other parts outside fire enclosures Materials for components and other parts inside fire enclosures All internal materials are rated V-2 or better or are mounted on a PWB rated V-1 or better Materials for air filter assemblies Materials used in high-voltage components No high-voltage components. Pass Pass TRF No. IECEN60950_1C

39 Issue Date: Page 28 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 5 ELECTRICAL REQUIREMENTS AND SIMULATED ABNORMAL CONDITIONS Pass 5.1 Touch current and protective conductor current Pass General Pass Configuration of equipment under test (EUT) Pass Single connection to an a.c. mains supply Pass Redundant multiple connections to an a.c. mains supply Simultaneous multiple connections to an a.c. mains supply Test circuit Single phase equipment intended only for connection to star TN system Application of measuring instrument Tested using D.1 measuring instrument Test procedure Pass Test measurements Pass Supply voltage (V)... : 264V - Measured touch current (ma)... : Max. 1.5 ma (with switch "e" open) Max. 0.18mA (with switch "e" closed) Max. allowed touch current (ma)... : 3.5mA (with switch "e" open) 0.25mA (with switch "e" closed) Measured protective conductor current (ma)... : -- - Max. allowed protective conductor current (ma).. : Equipment with touch current exceeding 3,5 ma General... : Simultaneous multiple connections to the supply Touch currents to telecommunication networks and cable distribution systems and from telecommunication networks Limitation of the touch current to a telecommunication network or to a cable distribution system Supply voltage (V)... : - Measured touch current (ma)... : - Max. allowed touch current (ma)... : Summation of touch currents from Pass Pass - - TRF No. IECEN60950_1C

40 Issue Date: Page 29 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict telecommunication networks a) EUT with earthed telecommunication ports... : b) EUT whose telecommunication ports have no reference to protective earth 5.2 Electric strength Pass General (see appended table 5.2) Pass Test procedure No insulation breakdown detected during the test. Pass TRF No. IECEN60950_1C

41 Issue Date: Page 30 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 5.3 Abnormal operating and fault conditions Pass Protection against overload and abnormal operation (see appended table 5.3) Motors Fan motor evaluated as part of component evaluation Transformers Transformers are constructed in accordance with the applicable Clause and Annex C Functional insulation... : Functional insulation complies with the requirement (c) Electromechanical components Audio amplifiers in ITE... : Simulation of faults See table 5.3 Pass Unattended equipment The equipments do not have any thermostats, temperature limiters, or thermal cut-outs which functioned during the Heating Test Compliance criteria for abnormal operating and fault conditions No fire, emission of molten metal or deformation was noted during the tests. Electric Strength tests performed after abnormal and fault tests During the tests No fire, emission of molten metal or deformation was noted during the tests After the tests Electric Strength tests performed after abnormal and fault tests. Pass Pass Pass Pass Pass Pass TRF No. IECEN60950_1C

42 Issue Date: Page 31 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 6 CONNECTION TO TELECOMMUNICATION NETWORKS 6.1 Protection of telecommunication network service persons, and users of other equipment connected to the network, from hazards in the equipment Protection from hazardous voltages Separation of the telecommunication network from earth Requirements Supply voltage (V)... : - Current in the test circuit (ma)... : Exclusions... : 6.2 Protection of equipment users from overvoltages on telecommunication networks Separation requirements Electric strength test procedure Impulse test Steady-state test Compliance criteria 6.3 Protection of the telecommunication wiring system from overheating Max. output current (A)... : - Current limiting method... : - 7 CONNECTION TO CABLE DISTRIBUTION SYSTEMS 7.1 General 7.2 Protection of cable distribution system servi ce persons, and users of other equipment connected to the system, from hazardous voltages in the equipment 7.3 Protection of equipment users from overvoltages on the cable distribution system 7.4 Insulation between primary circuits and cable distribution systems General Voltage surge test Impulse test TRF No. IECEN60950_1C

43 Issue Date: Page 32 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict A ANNEX A, TESTS FOR RESISTANCE TO HEAT AND FIRE A.1 Flammability test for fire enclosures of movable equipment having a total mass exceeding 18 kg, and of stationary equipment (see ) A.1.1 Samples... : - Wall thickness (mm)... : - A.1.2 Conditioning of samples; temperature ( C)... : A.1.3 Mounting of samples... : A.1.4 Test flame (see IEC ) Flame A, B, C or D... : A.1.5 Test procedure A.1.6 Compliance criteria Sample 1 burning time (s)... : - Sample 2 burning time (s)... : - Sample 3 burning time (s)... : - A.2 Flammability test for fire enclosures of movable equipment having a total mass not exceeding 18 kg, and for material and components located inside fire enclosures (see and ) A.2.1 Samples, material... : - Wall thickness (mm)... : - A.2.2 Conditioning of samples; temperature ( C)... : A.2.3 Mounting of samples... : A.2.4 Test flame (see IEC ) Flame A, B or C... : - A.2.5 Test procedure A.2.6 Compliance criteria Sample 1 burning time (s)... : - Sample 2 burning time (s)... : - Sample 3 burning time (s)... : - A.2.7 Alternative test acc. to IEC , cl. 5 and 9 Sample 1 burning time (s)... : - Sample 2 burning time (s)... : - Sample 3 burning time (s)... : - A.3 Hot flaming oil test (see 4.6.2) A.3.1 Mounting of samples A.3.2 Test procedure TRF No. IECEN60950_1C

44 Issue Date: Page 33 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict A.3.3 Compliance criterion B ANNEX B, MOTOR TESTS UNDER ABNORMAL CONDITIONS(see and 5.3.2) B.1 General requirements Position... : - Manufacturer... : - Type... : - Rated values... : - B.2 Test conditions B.3 Maximum temperatures B.4 Running overload test B.5 Locked-rotor overload test Test duration (days)... : - Electric strength test: test voltage (V)... : - B.6 Running overload test for d.c. motors in secondary circuits B.6.1 General B.6.2 Test procedure B.6.3 Alternative test procedure B.6.4 Electric strength test; test voltage (V)... : B.7 Locked-rotor overload test for d.c. motors in secondary circuits B.7.1 General B.7.2 Test procedure B.7.3 Alternative test procedure B.7.4 Electric strength test; test voltage (V)... : B.8 Test for motors with capacitors B.9 Test for three-phase motors B.10 Test for series motors Operating voltage (V)... : - TRF No. IECEN60950_1C

45 Issue Date: Page 34 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict C ANNEX C, TRANSFORMERS (see and 5.3.3) Pass Position... : See appended table Manufacturer... : See appended table Type... : See appended table Rated values... : See appended table Method of protection... : protection by regulating network C.1 Overload test See appended table 5.3. Pass C.2 Insulation (see appended table 5.2) Pass Protection from displacement of windings... : Min. 3mm wide margin tape provided on both sides of each winding in Transformer T1. Min. 3.3mm wide margin tape provided on both sides of each winding in Transformer T Pass D ANNEX D, MEASURING INSTRUMENTS FOR TOUCH-CURRENT TESTS (see 5.1.4) D.1 Measuring instrument Pass D.2 Alternative measuring instrument Pass E ANNEX E, TEMPERATURE RISE OF A WINDING (see ) F ANNEX F, MEASUREMENT OF CLEARANCES AND CREEPAGE DISTANCES (see 2.10 and Annex G) Pass TRF No. IECEN60950_1C

46 Issue Date: Page 35 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict G ANNEX G, ALTERNATIVE METHOD FOR DETERMINING MINIMUM CLEARANCES G.1 Clearances G.1.1 General G.1.2 Summary of the procedure for determining minimum clearances G.2 Determination of mains transient voltage (V) G.2.1 AC mains supply... : G.2.2 Earthed d.c. mains supply... : G.2.3 Unearthed d.c. mains supply... : G.2.4 Battery operation... : G.3 Determination of telecommunication network transient voltage (V) :... : G.4 Determination of required withstand voltage (V) G.4.1 Mains transients and internal repetitive peaks... : G.4.2 Transients from telecommunication networks... : G.4.3 Combination of transients G.4.4 Transients from cable distribution systems G.5 Measurement of transient voltages (V) G.6 Determination of minimum clearances... : H ANNEX H, IONIZING RADIATION (see ) J ANNEX J, TABLE OF ELECTROCHEMICAL POTENTIALS (see ) Metal(s) used... : Aluminum - TRF No. IECEN60950_1C

47 Issue Date: Page 36 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict K ANNEX K, THERMAL CONTROLS (see and 5.3.8) Pass K.1 Making and breaking capacity The two thermostats are is UL R/C and was tested for cycles of operation during the component evaluation. K.2 Thermostat reliability; operating voltage (V)... : K.3 Thermostat endurance test; operating voltage (V) : K.4 Temperature limiter endurance; operating voltage (V)... : The two thermostats are UL R/C and was tested for cycles of operation during the component evaluation. K.5 Thermal cut-out reliability K.6 Stability of operation (see appended table 5.3) Pass Pass Pass L ANNEX L, NORMAL LOAD CONDITIONS FOR SOME TYPES OF ELECTRICAL BUSINESS EQUIPMENT (see and 4.5.2) L.1 Typewriters L.2 Adding machines and cash registers L.3 Erasers L.4 Pencil sharpeners L.5 Duplicators and copy machines L.6 Motor-operated files L.7 Other business equipment Maximum rating load. Pass Pass TRF No. IECEN60950_1C

48 Issue Date: Page 37 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict M ANNEX M, CRITERIA FOR TELEPHONE RINGING SIGNALS (see 2.3.1) M.1 Introduction M.2 Method A M.3 Method B M.3.1 Ringing signal M Frequency (Hz)... : - M Voltage (V)... : - M Cadence; time (s), voltage (V)... : - M Single fault current (ma)... : - M.3.2 Tripping device and monitoring voltage... : M Conditions for use of a tripping device or a monitoring voltage M Tripping device M Monitoring voltage (V)... : N ANNEX N, IMPULSE TEST GENERATORS (see , , , , 7.3.2, and Clause G.5) N.1 ITU-T impulse test generators N.2 IEC impulse test generator P ANNEX P, NORMATIVE REFERENCES Pass Q ANNEX Q, Voltage dependent resistors (VDRs) (see ) Pass a) Preferred climatic categories... : The VDR's used are UL R/C components. b) Maximum continuous voltage... : VDR's used are rated for the application c) Pulse current... : The VDR's used are UL R/C components. Pass Pass Pass TRF No. IECEN60950_1C

49 Issue Date: Page 38 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict R ANNEX R, EXAMPLES OF REQUIREMENTS FOR QUALITY CONTROL PROGRAMMES R.1 Minimum separation distances for unpopulated coated printed boards (see ) R.2 Reduced clearances (see ) S ANNEX S, PROCEDURE FOR IMPULSE TESTING (see ) S.1 Test equipment S.2 Test procedure S.3 Examples of waveforms during impulse testing T ANNEX T, GUIDANCE ON PROTECTION AGAINST INGRESS OF WATER (see 1.1.2)... : IPX0 - U ANNEX U, INSULATED WINDING WIRES FOR USE WITHOUT INTERLEAVED INSULATION (see )... : - V ANNEX V, AC POWER DISTRIBUTION SYSTEMS (see 1.6.1) Pass V.1 Introduction Pass V.2 TN power distribution systems Pass TRF No. IECEN60950_1C

50 Issue Date: Page 39 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict W ANNEX W, SUMMATION OF TOUCH CURRENTS W.1 Touch current from electronic circuits W.1.1 Floating circuits W.1.2 Earthed circuits W.2 Interconnection of several equipments W.2.1 Isolation W.2.2 Common return, isolated from earth W.2.3 Common return, connected to protective earth X ANNEX X, MAXIMUM HEATING EFFECT IN TRANSFORMER TESTS (see clause C.1) X.1 Determination of maximum input current Pass X.2 Overload test procedure Pass Pass Y ANNEX Y, ULTRAVIOLET LIGHT CONDITIONING TEST (see ) Y.1 Test apparatus... : Y.2 Mounting of test samples... : Y.3 Carbon-arc light-exposure apparatus... : Y.4 Xenon-arc light-exposure apparatus... : Z ANNEX Z, OVERVOLTAGE CATEGORIES (see and Clause G.2) Pass AA ANNEX AA, MANDREL TEST (see ) TRF No. IECEN60950_1C

51 Issue Date: Page 40 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict TABLE: list of critical components Pass Object/part No. Manufacturer/ trademark type/model technical data Product Category CCN(s) Enclosure cover Various Various Aluminium, min. 1.2 mm thick, secured to enclosure base by screws. Measured overall 211 by by 10 mm. Enclosure base various various Aluminum, min. 2.0 mm thick. Measured overall 218 by 105 Vent Openings (Side Chassis) Fan Opening (Front Chassis) by 40 mm. Various Various Four rectangular openings each measured overall 6.9 by 2.5 mm on both Left and Right Chassis. One additional slot opening measured overall 10 by 4.0mm on left Chassis Various Various Measured overall 38 mm dia., consists of 3 concentric slot rings, each measured max. 10 mm wide. Fan Sanyo Denki Co Ltd 109P0412K3023 Rated 12Vdc, 0.55A, 21 CFM. Outward airflow orientation. Secured to the front Chassis by screws. Fan leads provided with min. 0.4mm thick tubing. Fan (Alternate) Sanyo Denki Co Ltd 109P0412J3023 Rated 12Vdc, 0.35A, 16.3 CFM. Outward airflow orientation. Secured to the front Chassis by screws. Fan leads provided with min. 0.4mm thick tubing. Required Marks of Conformity GPWV2 GPWV2 Fan (Alternate) Sanyo Denki Co Ltd 109P0412G3023 Rated 12Vdc, 0.31A, 14.8 GPWV2 UL UL UL Supplement ID TRF No. IECEN60950_1C

52 Issue Date: Page 41 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict CFM. Outward airflow orientation. Secured to the front Chassis by screws. Fan leads provided with min. 0.4mm thick tubing. Fan (Alternate) MINEBEA MOTOR MFG CORP 1611RL-04W-B50 Rated 12Vdc, 0.22A, 10.5 CFM. Outward airflow orientation. Secured to the front Chassis by screws. Fan leads provided with min. 0.4mm thick tubing. GPWV2 Fan (Alternate) MINEBEA MOTOR 1611RL-04W-B60 Rated 12Vdc, 0.35A, 13.7 GPWV2 MFG CORP CFM. Outward airflow orientation. Secured to the front Chassis by screws. Fan leads provided with min. 0.4mm thick tubing. Fan (Alternate) MINEBEA MOTOR 1611RL-04W-B70 Rated 12Vdc, 0.47A, 15.8 GPWV2 MFG CORP CFM. Outward airflow orientation. Secured to the front Chassis by screws. Fan leads provided with min. 0.4mm thick tubing. Fan (Alternate) Delta Electronics Inc FFB0412VHN Rated 12Vdc, 0.16A, GPWV2 CFM. Outward airflow orientation. Secured to the front Chassis by screws. Fan leads provided with min. 0.4mm thick tubing. Insulating Tubing/Sleeving (Applied on leads of thermal switch on L100 except secondary portion and Various Varous FEP, PTFE, PVC, TFE, neoprene, or marked VW-1; minimum 105 degree C, minimum 300 V. Mininum 0.4 mm thick UZFT2, YDPU2, YDTU2 UL UL UL UL UL TRF No. IECEN60950_1C

53 Issue Date: Page 42 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict fan leads) Insulating Tubing/Sleeving (Applied on other components) Various Varous FEP, PTFE, PVC, TFE, neoprene, or marked VW-1; minimum 105 degree C, minimum 300 V. Various Various Min. 300V, min. 80 degree C. VW-1 Various Various Min. 60V, min. 80 degree C. VW-1 UZFT2, YDPU2, YDTU2 Internal Wiring (Primary, for thermal switches) AVLV2, AVLV8 UL Internal Wiring (SELV, AVLV2, AVLV8 UL for fan leads) Terminal Block (TB1) Switchlab T35 series 300 V ac, 20 A, 120 degree C. XCFR2 UL Printed Wiring Boards (Main board and Small secondary board) Various Various Rated minimum V-1, minimum 105 degree C. ZPMV2 Control Board (optional) Various Various Rated minimum V-1, minimum ZPMV2 UL 105 degree C. Fuse (FS1) Various Various F8A, 250Vac JDYX, JDYX7 UL Fuse (FS1) (Alternate) CONQUER UBM F8A, 250Vac JDYX2, JDYX8 UL ELECTRONICS CO LTD Fuse (FS1) (Alternate) LITTELFUSE INC 216 F8A, 250Vac JDYX2, JDYX8 UL Fuse (FS1) (Alternate) BEL FUSE INC 5HF F8A, 250Vac JDYX2, JDYX8 UL Fuse (FS1) (Alternate) Bleeder Resistors (R1, R2) X-Capacitors (C1, C2) (Optional) X-Capacitors (C1, C2) (Optional) (Alternate) WALTER ELECTRONIC CO LTD FSC F8A, 250Vac JDYX2, JDYX8 UL Various Various Rated max. 470 k ohms, ARCOTRONICS SPA EPCOS ELECTRONIC R.46, R.49 B3292 series minimum 1/4 W. Each rated max. 1 uf, minimum 250 Vac, 110 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. Each rated max. 1 uf, minimum 250 Vac, 105 degree FOWX2 FOWX2 UL UL UL UL TRF No. IECEN60950_1C

54 Issue Date: Page 43 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict COMPONENTS S A C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. X-Capacitors (C1, C2) ISKRA KNB1530 Each rated max. 1 uf, FOWX2 UL (Optional) (Alternate) KONDENZATORJI D D minimum 250 Vac, 100 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. X-Capacitors (C1, C2) ISKRA KNB1560 Each rated max. 1 uf, FOWX2 UL (Optional) (Alternate) KONDENZATORJI D D minimum 250 Vac, 125 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. X-Capacitors (C1, C2) LIOW GU GS-L Each rated max. 1 uf, FOWX2 UL (Optional) (Alternate) ELECTRONICS INDUSTRY CO LTD minimum 250 Vac, 100 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. X-Capacitors (C1, C2) PILKOR PCX2 335 Each rated max. 1 uf, FOWX2 UL (Optional) (Alternate) ELECTRONICS CO LTD minimum 250 Vac, 85 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. X-Capacitors (C1, C2) PILKOR PCX2 335M Each rated max. 1 uf, FOWX2 UL (Optional) (Alternate) ELECTRONICS CO LTD minimum 250 Vac, 105 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. X-Capacitors (C1, C2) PILKOR PCX2 337 Each rated max. 1 uf, FOWX2 UL (Optional) (Alternate) ELECTRONICS CO LTD minimum 250 Vac, 100 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. X-Capacitors (C1, C2) ULTRA TECH XIPHI HQX Each rated max. 1 uf, FOWX2 UL TRF No. IECEN60950_1C

55 Issue Date: Page 44 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict (Optional) (Alternate) X-Capacitors (C1, C2) (Optional) (Alternate) X-Capacitors (C1, C2) (Optional) (Alternate) X-Capacitors (C1, C2) (Optional) (Alternate) Y-Capacitors (C3, C4, C23, C24, C30) (Optional) Y-Capacitors (C3, C4, C23, C24, C30) (Optional) (Alternate) Y-Capacitors (C3, C4, C23, C24, C30) (Optional) (Alternate) ENTERPRISE CO LTD VISHAY CAPACITORS BELGIUM N V CHENG TUNG INDUSTRIAL CO LTD SHINY SPACE ENTERPRISE CO LTD MURATA MFG CO LTD WALSIN TECHNOLOGY CORP minimum 250 Vac, 100 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. 339 Each rated max. 1 uf, minimum 250 Vac, 105 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. CTX Each rated max. 1 uf, minimum 250 Vac, 100 degree C. Class X1 or X2. (Meet IEC ). The damp heat test duration in 21 days minimum. SX1 Each rated max. 1 uf, minimum 250 Vac, 100 degree C. Class X1 or X2. (Meet IEC ). The damp heat test KX, KH AH, AC duration in 21 days minimum. Each rated max pf, minimum 250 Vac, 125 degree C. Class Y1 or Y2. (Meet IEC ). The damp heat test duration in 21 days minimum. Each rated max pf, minimum 250 Vac, 125 degree C. Class Y1 or Y2. (Meet IEC ). The damp heat test duration in 21 days minimum. TDK-EPC CORP CD, CS Each rated max pf, minimum 250 Vac, 125 degree C. Class Y1 or Y2. (Meet IEC ). The damp heat test duration in 21 days minimum. FOWX2 FOWX2 FOWX2 FOWX2, FOWX8 FOWX2, FOWX8 FOWX2, FOWX8 UL UL UL UL UL UL TRF No. IECEN60950_1C

56 Issue Date: Page 45 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Y-Capacitors (C3, C4, C23, C24, C30) (Optional) (Alternate) Varistor (ZNR1) (Optional) Varistor (ZNR1) (Optional) (Alternate) Varistor (ZNR1) (Optional) (Alternate) Varistor (ZNR1) (Optional) (Alternate) Thermistor (RTH1) (Optional) Relay (RY1) Relay (RY1) (Alternate) Relay (RY1) (Alternate) WELSON INDUSTRIAL CO LTD THINKING ELECTRONIC INDUSTRIAL CO LTD JOYIN CO LTD WD, KL TVR10471-D, TVR14471-D Each rated max pf, minimum 250 Vac, 125 degree C. Class Y1 or Y2. (Meet IEC ). The damp heat test duration in 21 days minimum. FOWX2, FOWX8 UL 300Vac VZCA2 UL 14S471K, 14N471K 300Vac VZCA2 UL CENTRA SCIENCE CNR-14D471K 300Vac VZCA2 UL CORP NIPPON CHEMI- TNR14V-471K 300Vac VZCA2 UL CON CORP Various Various Rated minimum 2 A, maximum ohms at 25 degree C SONG CHUAN 835-1A-B-C Rated 10 A, 277Vac. NRNT2 UL PRECISION CO LTD TYCO OJESS112HMF, Rated 10A, 250V. NRNT2 UL ELECTRONICS OJESH112HMF (SHENZHEN) CO. LTD TYCO ELECTRONICS (SHENZHEN) CO. LTD OJESS112LMH, OJESH112LMH Rated 8A, 250V. NRNT2 UL Rectifier (BD1) Various Various Rated minimum 2A, minimum 600 V, minimum 100 degree C, minimum isolation voltage 1500 Vac Electrolytic Capacitor (C5) Various Various Integral pressure relief, rated 330 uf, minimum 400 V, minimum 85 degree C. QQQX2 UL TRF No. IECEN60950_1C

57 Issue Date: Page 46 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Transistors (Q1, Q2, Q3, Various Various Rated 12A-22 A, minimum Q4) V. Line Filters (LF1, LF2) Various TR-548 Open type construction. Rated (Optional) 130 degree C. Core (LF1, LF2) Various Various Ferrite, measured overall mm OD by 14 mm ID by 8 mm wide. Coil (LF1, LF2) Various Various Rated minimum 130 degree C. OBMW2 UL PFC choke (L3) Various TR-934 Open type construction. Rated degree C. Core (L3) Various Various Ferrite, measured overall mm OD by mm ID by 18 mm wide. Coil (L3) Various Various Rated minimum 130 degree C. OBMW2 UL Choke (T2) (Optional) Various TR-435 Open type construction. Rated degree C. Choke (T2) (Optional) Various TR-852 Open type construction. Rated (Alternate) 130 degree C. Core (T2) Various Various Ferrite, measured overall mm OD by 7 mm ID by 5 mm wide. Coil (T2) Various Various Rated minimum 130 degree C. OBMW2 UL Triple Insulated Winding Wire (T2) Various Various Rated minimum 130 degree C. OBJT2 UL Optical Isolators (U2, U3, Sharp Corp., PC123 Minimum 5000Vac isolation. FPQU2 UL U4, U901) (U4 optional; Electronic Double protection. U901 on optional Control Components Group Board) Optical Isolators (U2, U3, Lite-On Technology LTV-817 Minimum 5000Vac isolation. FPQU2 UL U4, U901) (U4 optional; U901 on optional Control Board) Corp. Double protection. Optical Isolators (U2, U3, COSMO K1010 Minimum 5000Vac isolation. FPQU2 UL TRF No. IECEN60950_1C

58 Issue Date: Page 47 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict U4, U901) (U4 optional; U901 on optional Control Board) Bridging Capacitor (C31) (Optional) Bridging Capacitor (C31) (Optional) (Alternate) Briding Capacitor (C31) (Optional) (Alternate) Bridging Capacitor (C31) (Optional) (Alternate) Transformer (T1) ELECTRONICS CORP MURATA MFG CO LTD WALSIN TECHNOLOGY CORP KX AH Double protection. Rated max pf, minimum 250 Vac, 125 degree C. Class Y1. (Meet IEC ). The damp heat test duration in 21 days minimum. Rated max pf, minimum 250 Vac, 125 degree C. Class Y1. (Meet IEC ). The damp heat test duration in 21 days minimum. TDK-EPC CORP CD Rated max pf, minimum 250 Vac, 125 degree C. Class Y1. (Meet IEC ). The damp heat test duration in 21 days minimum. WELSON INDUSTRIAL CO LTD Jet Signal Industries Co., Ltd. WD TF-2107 (for Y=3.3), TF-2108 (for Y=5), TF (for Y=7.5), TF-2110 (for Y=12), TF-2111 (for Y=15), TF (for Y=24), TF-2113 (for Y=36), TF-2114 (for Y=48) Rated max pf, minimum 250 Vac, 125 degree C. Class Y1. (Meet IEC ). The damp heat test duration in 21 days minimum. Class B (130 degree C) Insulation System, Type SBI4.2. FOWX2 UL FOWX2 UL FOWX2 UL FOWX2 UL OBJY2 UL 7-01 TRF No. IECEN60950_1C

59 Issue Date: Page 48 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Transformer (T1) (Alternate) Transformer (T1) (Alternate) Elytone Electronic Co., Ltd. Long Sail Electronic Co., Ltd. TF-2107 (for Y=3.3), TF-2108 (for Y=5), TF (for Y=7.5), TF-2110 (for Y=12), TF-2111 (for Y=15), TF (for Y=24), TF-2113 (for Y=36), TF-2114 (for Y=48) TF-2107 (for Y=3.3), TF-2108 (for Y=5), TF (for Y=7.5), TF-2110 (for Y=12), TF-2111 (for Y=15), TF (for Y=24), TF-2113 (for Y=36), TF-2114 (for Y=48) Class B (130 degree C) Insulation System, Type SBI4.2. Class B (130 degree C) Insulation System, Type SBI4.2. OBJY2 UL 7-02 OBJY2 UL 7-03 Core (T1) Various Various Ferrite, overall 45 by 39 by mm. Coil (T1) Various Various Rated minimum 130 degree C. OBMW2 UL Primary Copper foil (T1) Various Various Measured overall 20 mm by mm thick. Provided with insulation tape minimum 3.0 mm from both edge of copper foil. Bobbin (T1) Sumitomo Bakelite Co Ltd. PM-9820 Phenolic, rated V-0, 150 degree C, minimum 0.71 mm thick QMFZ2 Bobbin (T1) (Alternate) Sumitomo Bakelite PM-9630 Phenolic, rated V-0, 150 QMFZ2 UL UL TRF No. IECEN60950_1C

60 Issue Date: Page 49 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Co Ltd. degree C, minimum 0.71 mm thick. Insulating Tape (T1) 3M Co. 1350F-1, 1350T-1 Polyester tape, rated 130 degree C. OANZ2 UL Insulating Tape (T1) Symbio Inc Y, Polyester tape, rated 130 OANZ2 UL (Alternate) degree C. Insulating Tape (T1) Bondtec Pacific Co., 370S Polyester tape, rated 130 OANZ2 UL (Alternate) Ltd. degree C. Varnish (T1) John C Dolph Co. BC-346A Rated minimum 130 degree C. OBOR2 UL Varnish (T1) (Alternate) Hitachi Chemical Co., WP-2952F-2G Rated minimum 130 degree C. OBOR2 UL Ltd. Varnish (T1) (Alternate) Elantas Electrical 468-2(x) Rated minimum 130 degree C. OBOR2 UL Insulation Elantas Pdg Inc (Ripley Resin Engineering Co., Inc.) Varnish (T1) (Alternate) KYOCERA TVB-2180T++ Rated minimum 130 degree C. OBOR2 UL CHEMICAL CORP Varnish (T1) (Alternate) P D V1630FS Rated minimum 130 degree C. OBOR2 UL GEORGE/VIKING Tubing (T1) Great Holding TFL, TFT Rated minimum 200 degree C. YDPU2 UL Industrial Co., Ltd. Provided on all exit leads. Tubing (T1) (Alternate) Zeus Industrial TFE-TW-300, Rated minimum 200 degree C. YDPU2 UL Products Inc. TFE-LW-150 Provided on all exit leads. Margin Tape (T1) 3M Co. 44D-A, 44T-A Polyester tape, rated 130 OANZ2 UL degree C, measured min. 3.0 mm width on both side of bobbin. Margin Tape (T1) (Alternate) Symbio Inc , 35660, 35660Y Polyester tape, rated 130 degree C, measured min. 3.0 mm width on both side of OANZ2 UL Margin Tape (T1) (Alternate) Bondtec Pacific Co., Ltd. bobbin. 201 Polyester tape, rated 130 degree C, measured min. 3.0 mm width on both side of OANZ2 UL TRF No. IECEN60950_1C

61 Issue Date: Page 50 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Transformer (T900) (Provided when Optional Control Board is provided) Transformer (T900) (Provided when Optional Control Board is provided) (Alternate) Transformer (T900) (Provided when Optional Control Board is provided) (Alternate) Long Sail Electronic Co., Ltd. Jet Signal Industries Co., Ltd. Elytone Electronic Co., Ltd. bobbin. TF-1593 Class B (130 degree C) Insulation System, Type SBI4.2. TF-1593 Class B (130 degree C) Insulation System, Type SBI4.2. TF-1593 Class B (130 degree C) Insulation System, Type SBI4.2. Core (T900) Various Various Ferrite, measured overall 15 by 15 by 4.65 mm. Bobbin (T900) Sumitomo Bakelite PM-9820 Phenolic. Rated V-0, 150 Co., Ltd. degree C, minimum 0.71 mm OBJY2 UL 7-06 OBJY2 UL 7-04 OBJY2 UL QMFZ2 thick. Bobbin (T900) Sumitomo Bakelite PM-9630 Phenolic. Rated V-0, 150 C, QMFZ2 UL (Alternate) Co., Ltd. minimum 0.71 mm thick. Coils (T900) Various Various Rated minimum 130 degree C. OBMW2 UL Primary copper foil (T900) Various Various Measured overall 8 mm by mm thick Insulating Tape (T900) 3M Co. 1350F-1, 1350T-1 Polyester tape, rated 130 degree C. OANZ2 UL Insulating Tape (T900) Symbio Inc , 35660Y Polyester tape, rated 130 OANZ2 UL (Alternate) degree C. Insulating Tape (T900) Bondtec Pacific Co., 370S Polyester tape, rated 130 OANZ2 UL (Alternate) Ltd. degree C. Margin Tape (T900) 3M Co. 44D-A, 44T-A Polyester tape, rated 130 OANZ2 UL degree C, measured min. 3.3 mm width on both side of bobbin. Margin Tape (T900) Symbio Inc Polyester tape, rated 130 OANZ2 UL UL TRF No. IECEN60950_1C

62 Issue Date: Page 51 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict (Alternate) degree C, measured min. 3.3 mm width on both side of bobbin. Margin Tape (T900) (Alternate) Bondtec Pacific Co., Ltd. 201 Polyester tape, rated 130 degree C, measured min. 3.3 mm width on both side of bobbin. OANZ2 Varnish (T900) John C Dolph Co. BC-346A Rated minimum 130 degree C. OBOR2 UL Varnish (T900) (Alternate) Varnish (T900) (Alternate) Varnish (T900) (Alternate) Varnish (T900) (Alternate) Tubing (T900) Tubing (T900) (Alternate) Thermal Switches Leads of Thermal Switches Hitachi Chemical Co., WP-2952F-2G Rated minimum 130 degree C. OBOR2 UL Ltd. Elantas Electrical , 468-2, Rated minimum 130 degree C. OBOR2 UL Insulation Elantas 486-2FC PDG Inc. Kyocera Chemical TVB-2180T Rated minimum 130 degree C. OBOR2 UL Corp. PD George / Vinking V1630FS Rated minimum 130 C. OBOR2 UL Great Holding Industrial Co., Ltd. TFL, TFT Rated minimum 200 degree C. Provided on all exit leads. YDPU2 Zeus Industrial TFE-TW-300, Rated minimum 200 degree C. YDPU2 Products Inc. TFE-LW-150 Provided on all exit leads. Seki Controls Co., ST-22 Two provided. Rated 125/250 XAPX2 Ltd. Vac, degree C. Provided with lead wires and connected to connectors TSW1 and TSW2. One secured on L100 choke and the other one secured on HS1 above Q1 and Q2 via a Heat Sink by a screw. Various Various Minimum 300 V, PVC AVLV2 insulated, minimum 0.2 mm thick minimum 22 AWG, 125 deg C, marked with VW-1. Heat Sink (HS1) Various Various Copper, minimum 1.5 mm UL UL UL UL UL TRF No. IECEN60950_1C

63 Issue Date: Page 52 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Considered earthed Heat Sink (HS2) Considered earthed Heat Sink (HS3) Considered secondary Heat Sink (HS4) Considered earthed Heat Sink (for Thermal Switch) Insulation Sheets (Provided between PWBs traces and bottom Chassis) Insulation Sheets (Provided between PWBs traces and bottom Chassis) (Alternate) Insulation Sheets (Provided on Top chassis above C5 and L3) Insulation Sheets (Provided on Top chassis above C5 and L3) (Alternate) Insulation Sheets (Provided on Top chassis near L100) thick. See Enclosure for detailed dimensions. Various Various Aluminum, minimum 1.5 mm thick. See Enclosure for detailed dimensions. Various Various Copper, minimum 1.0 mm thick. See Enclosure for detailed dimensions. Various Various Copper, minimum 1.5 mm thick. See Enclosure for detailed dimensions. Various Various Aluminum, minimum 1.5mm thick. See enclosure for detailed dimensions Formex,Div of Formex GK Mylar, minimum V-2, minimum ILLIONIS TOOL 105 degree C, minimum 0.2 WORKS INC mm thick. See Enclosure for Sabic Innovative Plastics Formex,Div of ILLIONIS TOOL WORKS INC Sabic Innovative Plastics Formex,Div of ILLIONIS TOOL WORKS INC FR700 Formex GK FR700 Formex GK detailed dimensions. Mylar, minimum V-2, minimum 105 degree C, minimum 0.2 mm thick. See Enclosure for detailed dimensions. Mylar, minimum V-2, minimum 105 degree C, minimum 0.2 mm thick. See Enclosure for detailed dimensions. Mylar, minimum V-2, minimum 105 degree C, minimum 0.2 mm thick. See Enclosure for detailed dimensions. Mylar, minimum V-2, minimum 105 degree C, minimum 0.2 mm thick. See Enclosure for detailed dimensions QMFZ2 UL 4-13 QMFZ2 UL QMFZ2 UL 4-12 QMFZ2 UL QMFZ2 UL 4-11 TRF No. IECEN60950_1C

64 Issue Date: Page 53 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Insulation Sheets (Provided on Top chassis near L100) (Alternate) Silicone Rubber Insulators (Provided for Q1, Q2, Q3, Q4, D1) Silicone Rubber Insulators (Provided for Q1, Q2, Q3, Q4, D1) (Alternate) Adhesive Glue (Provided for C10, T2, Thermal Switches, fly lead FL1A of T900) Sabic Innovative Plastics FR700 Mylar, minimum V-2, minimum 105 degree C, minimum 0.2 mm thick. See Enclosure for detailed dimensions. SIX PHASE CO LTD 610 Minimum V-2, minimum 105 degree C, minimum 0.2 mm thick. PIONEER MATERIAL PRECISION TECH PMP-P-400, PMP-P-100 Minimum V-2, minimum 150 degree C, minimum 0.2 mm thick. Various Various Rated minimum V-2, min. 105 degree C QMFZ2 QMFZ2 QMFZ2 QMFZ2 Label Various Various Rated minimum 70 degree C. PGDQ2 UL UL UL UL UL TRF No. IECEN60950_1C

65 Issue Date: Page 54 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict TABLE: electrical data (in normal conditions) Pass U (V) I (A) I rated (A) P (W) Fuse # I fuse (A) condition/status Model HRPG FS V/90A / 50Hz FS V/90A / 50Hz FS V/90A / 50Hz FS V/90A / 50Hz FS V/90A / 50Hz FS V/90A / 60Hz FS V/90A / 60Hz FS V/90A / 60Hz FS V/90A / 60Hz FS V/90A / 60Hz Model HRPG FS V/37.5A/ 50Hz FS V/37.5A/ 50Hz FS V/37.5A/ 50Hz FS V/37.5A/ 50Hz FS V/37.5A/ 50Hz FS V/37.5A/ 60Hz FS V/37.5A/ 60Hz FS V/37.5A/ 60Hz FS V/37.5A/ 60Hz FS V/37.5A/ 60Hz Model HRPG FS V/18.8A/ 50Hz FS V/18.8A/ 50Hz FS V/18.8A/ 50Hz FS V/18.8A/ 50Hz FS V/18.8A/ 50Hz FS V/18.8A / 60Hz FS V/18.8A / 60Hz FS V/18.8A / 60Hz FS V/18.8A / 60Hz FS V/18.8A / 60Hz Model HRPG FS V/9.5A/ 50Hz FS V/9.5A/ 50Hz FS V/9.5A/ 50Hz TRF No. IECEN60950_1C

66 Issue Date: Page 55 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict FS V/9.5A/ 50Hz FS V/9.5A/ 50Hz FS V/9.5A / 60Hz FS V/9.5A / 60Hz FS V/9.5A / 60Hz FS V/9.5A / 60Hz FS V/9.5A / 60Hz supplementary information: Maximum Normal load: Loaded to output rating and TABLE: clearance and creepage distance measurements Pass Clearance (cl) and creepage distance (cr) at/of/between: U peak (V) U r.m.s. (V) Required cl (mm) cl (mm) Required cr (mm) cr (mm) (Measured on Main PWB) Line to Neutral before Fuse <420 < FS1 (FI) Under Fuse FS1 (BI) <420 < L and N trace to FG trace (RI) <420 < Between C31 Pri. to Sec Trace <420 < (RI) Under T1 (RI) 480 < (with PWB slots bypassed) Under optical Isolator (U2, U3, U4) (RI) <420 < (with PWB slots bypassed) Optical Isolator Body (U2, U3, <420 < U4) (Measured on Control PWB) Under optical U901 <420 < Under T (Measured on product) C5 to Top Chassis (BI) <420 < (no creepage path) (Measured on T1) Core is considered floating, maintains BI to primary and SI to secondary. Core is TRF No. IECEN60950_1C

67 Issue Date: Page 56 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Primary winding to secondary winding (RI) Primary winding to secondary terminals (RI) Secondary winding to primary terminal (RI) wrapped with two layers of Insulation Tape 480 < (3.0mm margin tape is provided on both sides of each winding) 480 < (measured min. 2.5mm from terminal pin to inner edge of bobbin) 480 < (measured min. 3.0mm from terminal pin to inner edge of bobbin) Secondary winding to core (SI) 480 < (margin tape) Secondary terminal to core (SI) 480 < (measured on bobbin) Primary winding to core (BI) 480 < (margin tape) Primary terminal to core (BI) 480 < (measured on bobbin) (Measured on T900) Core is considered floating, maintains BI to primary and SI to secondary. Core is wrapped with TRF No. IECEN60950_1C

68 Issue Date: Page 57 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Primary winding to secondary winding (RI) Primary winding to secondary terminals (RI) Secondary winding to primary terminal (RI) insulated tape (primary margin tape + secondary margin tape) (bend around tape along bobbin surface) (bend around tape along bobbin surface) Secondary winding to core (SI) (margin tape) Secondary terminal to core (SI) (bobbin bottom terminals board) Primary winding to core (BI) (margin tape) Primary terminal to core (BI) (bobbin bottom terminal board) supplementary information: 1) The following wiring is sleeved with tubing minimum 0.4 mm thick: DC fan leads, leads of thermal switch on L100 (except the portion on primary side) 2) The following components are sleeved: RTH1, D1, R4, R5, Q1, Q2, Q3, Q4 3) The following components were tested with 10N: T2, C31, C18, C5, L3 4) Slots are provided on both Main board and control board. See Enclosure PWBs layouts for details. 5) The following components are secured with adhesive: C10, T2, Thermal Switches, fly lead FL1A of T900. 6) Transformer (T900) core is entirely wrapped by two layers of insulation tape TABLE: distance through insulation measurements Pass Distance through insulation (DTI) at/of: U peak (V) Urms (V) Test voltage (V) Required DTI (mm) DTI (mm) TRF No. IECEN60950_1C

69 Issue Date: Page 58 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict supplementary information: See Critical Component List TABLE: Batteries The tests of are applicable only when appropriate battery data is not available. Is it possible to install the battery in a reverse polarity position? Non-rechargeable batteries Discharging Unintentional charging Rechargeable batteries Charging Discharging Reversed charging Meas. current Manuf. specs. Meas. current Manuf. specs. Meas. current Manuf. specs. Meas. current Manuf. specs. Max. current during normal operation Max. current during fault operation Test results: Verdict - Chemical leaks - Explosion of the battery - Emission of flame or expulsion of molten metal - Electric strength tests of equipment after completion of tests supplementary information: 4.5 TABLE: Thermal requirements Pass Supply voltage (V)... : See below See below See below See below -- TRF No. IECEN60950_1C

70 Issue Date: Page 59 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Ambient Tmin ( C)... : Ambient Tmax ( C)... : See below See below See below See below See below See below See below See below Maximum measured temperature T of part/at: T ( C) allowed Tmax ( C) Model HRPG V / 60Hz 90V / 60Hz normali zed to 50 degree C ambien t 264V / 60Hz 264V / 60Hz normali zed to 50 degree C ambien t - - TB1 body C24 body ( Y-cap.) C1 body ( X-cap.) ZNR1 body LF1 coil C2 body ( X-cap.) LF2 coil C3 body ( Y-cap.) RY1 body PCB under RTH C30 body ( Y-cap.) HS near Q L3 coil C5 body (Bulk cap.) T2 coil HS near Q T1 Primary coil T1 secondary coil T1 Core C31 body (Bridging-cap.) U4 body (photocouple) L100 coil T900 top-side coil T900 bottom-side coil T900 core U901 body (photocouple) Metal ecclosure Ambient air Test time (h:m) -- 1: : Model HRPG V / 60Hz 90V / 60Hz 264V / 60Hz 264V / 60Hz - - TRF No. IECEN60950_1C

71 Issue Date: Page 60 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict normali zed to 50 degree C ambien t normali zed to 50 degree C ambien t ZNR1 body C2 body ( X-cap.) LF2 coil PCB under RTH C30 body ( Y-cap.) HS near Q L3 coil T1 Primary coil T1 secondary coil T1 Core C31 body (Bridging-cap.) T900 top-side coil T900 bottom-side coil T900 core Metal ecclosure Ambient air Test time (h:m) -- 1: : Model HRPG V / 60Hz 90V / 60Hz normali zed to 50 degree C ambien t 264V / 60Hz 264V / 60Hz normali zed to 50 degree C ambien t - - ZNR1 body C2 body ( X-cap.) LF2 coil PCB under RTH C30 body ( Y-cap.) HS near Q L3 coil T1 Primary coil T1 secondary coil T1 Core C31 body (Bridging-cap.) T900 top-side coil T900 bottom-side coil T900 core Metal ecclosure TRF No. IECEN60950_1C

72 Issue Date: Page 61 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Ambient air Test time (h:m) -- 1: : Model HRPG V / 60Hz 264V / 60Hz V / 60Hz normali zed to 50 degree C ambien t 264V / 60Hz normali zed to 50 degree C ambien t ZNR1 body C2 body ( X-cap.) LF2 coil PCB under RTH C30 body ( Y-cap.) HS near Q L3 coil T1 Primary coil T1 secondary coil T1 Core C31 body (Bridging-cap.) T900 top-side coil T900 bottom-side coil T900 core Metal ecclosure Ambient air Test time (h:m) -- 1: : temperature T of winding: t 1 ( C) R 1 (Ω) t 2 ( C) R 2 ( Ω) T ( C) allowed T max ( C) supplementary information: insulation class The temperatures were measured under worst-case normal mode defined in and as described in at voltages as described in As per for Non-temperature dependent equipment, T shall not exceed (Tmax + Tamb - Tma) Tma = 45 degree C (the maximum ambient temperature permitted by the manufacturer's specification) Tmax (Transformers, T1, T900), class B = 110 degree C Tmax (LF1, LF2, L3, T2) = 130 degree C Tmax (L100) = 105 degree C Tmax (PWB) = 105 degree C Tmax (Y-Capacitors, C3, C30) = 125 degree C Tmax (X-Capacitors, C1, C2) = 85 degree C Tmax (Electrolytic Capacitor, C5) = 85 degree C Tmax (Bridge Capacitor, C31) = 125 degree C User accessible area: TRF No. IECEN60950_1C

73 Issue Date: Page 62 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Tmax (metal enclosure) = 70 degree C TABLE: Ball pressure test of thermoplastic parts Pass allowed allowed impression diameter (mm)... : 2.0 part test temperature ( C) impression diameter (mm) Terminal Block TB1, Switchlab, T35 series supplementary information: TABLE: resistance to fire Pass part manufacturer of material type of material thickness (mm) flammability class supplementary information: See Critical Component List Evidence 5.2 TABLE: electric strength tests, impulse tests and voltage surge tests Pass Test voltage applied between: Voltage shape (AC, DC, impulse, surge) Test voltage (V) One layer of insulation, thickness 0.05mm * AC 3000 No T1 primary to secondary AC 3000 No T1 primary to core AC 1707 No T1 secondary to core AC 1707 No T900 primary to secondary AC 3000 No T900 primary to core AC 1707 No T900 secondary to core AC 1707 No Primary to SELV DC 4242 No Primary to Earth DC 3000 No Insulation Sheet (Type Formex GK from Formex; Type FR700 from Sabic) AC 1500 No supplementary information: * Tape tested: 3M Co.: 1350F-1, 1350T-1 Symbio Inc.: 35660, 35660Y Bondtec Pacific Co., Ltd.: 370S Breakdown Yes / No TRF No. IECEN60950_1C

74 Issue Date: Page 63 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 5.3 TABLE: fault condition tests Pass ambient temperature ( C)... : -- Power source for EUT: Manufacturer, model/type, output rating... : -- Component No. Fault Supply voltage (V) Test time Fuse # Fuse current (A) Observation Model HRPG Fan Stalled 240 1:42 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:112 degree C T900 coil:69 degree C, U4 body:73 degree C, Amb:26.4 degree C, Ventilation openings I/P: 0.13~2.21A Blocked 240 1:32 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:107 degree C, T900 coil:70 degree C, U4 body:74 degree C, Amb:25.3 degree C, I/P: 0.13~2.21A +5V Transformer (T1) overload Before J111 +5V Transformer (T1) overload after D150 +5V Transformer (T1) overload after D ;10 FS1 8 CT at 25 A, (output load 90 A, total load : 115 A), increased to 30 A, Unit shutdown, NT, NB, NC, I/P: (3.05 A), T1 coil:138 degree C, T900 coil: 65 degree C, U4 body:71 degree C, Amb:25.8 degree C 240 4:53 FS1 8 CT at 1 A, increased to 2 A, Unit shutdown, NT, NB, NC, I/P: (2.43 A), T1 coil:127 degree C, T900 coil: 69 degree C, U4 body:75 degree C, Amb:25.1 degree C 240 4:58 FS1 8 CT at 1.5A, increased to 2.5 A, Unit shutdown, NT, NB, NC, I/P: (2.39 A), T1 coil:94 degree C, T900 coil: 54 degree C, U4 body:55 degree C, Amb:23.5 degree C TRF No. IECEN60950_1C

75 Issue Date: Page 64 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict +5V Transformer overload after D :24 FS1 8 CT at 0.5A, increased to 1 A, Unit shutdown, NT, NB, NC, I/P: (2.35 A), T1 coil:82 degree C, T900 coil: 48 degree C, U4 body:48 degree C, Amb:24.0 degree C +5V - RTN Short 240Vac 30 min FS1 8 Unit shutdown, NT, NC, NB, I/P:0.25A, +5V Overload 240Vac 7:14 FS1 8 CT at 105 A, increased to 110 A, Unit shutdown, NT, NB, NC, I/P: ( 2.76 A), T1 coil:107 degree C, T900 coil: 40 degree C, U4 body:61 degree C, Amb:26.1 degree C Model HRPG Fan Stalled 240 2:06 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:102 degree C, T900 coil:71 degree C, U4 body:74 degree C, Amb:27.3 degree C, I/P: 0.13~2.21A Ventilation openings Blocked 240 2:40 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:99 degree C, T900 coil:75 degree C, U4 body:80 degree C, Amb:25.6 degree C, I/P: 0.13~2.21A +12V Transformer (T1) overload Before J V Transformer (T1) overload after D :21 FS1 8 CT at 12A, (output load 37.5A) total load :49.5A) increased to 14A Unit shutdown, NT, NB, NC, I/P: (2.88A) T1 coil:78 degree C T900 coil: 41 degree C U4 body:43 degree C, Amb:28.2 degree C :00 FS1 8 CT at 4 A, increased to 5 A, Unit shutdown, NT, NB, NC, I/P: (2.37 A), T1 coil:84 degree C, T900 coil: 41 degree C, TRF No. IECEN60950_1C

76 Issue Date: Page 65 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict U4 body:46 degree C, Amb:23.7 degree C 240 8:14 FS1 8 CT at 2 A, increased to 2.5 A, Unit shutdown, NT, NB, NC, I/P: (2.34 A), T1 coil:70 degree C, T900 coil: 42 degree C, U4 body:53 degree C, Amb:24.7 degree C Short 240Vac 30 min FS1 8 Unit shutdown, NT, NC, NB, I/P:0.25A, +12V Transformer (T1) overload after D V - RTN +12V Overload 240Vac 5:14 FS1 8 CT at 43 A, increased to 45 A, Unit shutdown, NT, NB, NC, I/P: (2.50 A), T1 coil: 60 degree C, T900 coil:30 degree C, U4 body:39 degree C, Amb:25.1 degree C Model HRPG (+24V / 18.8A) T1 pin 6-8 Short sec FS1 8 IP(FS1) *, CD(Q3,Q4), NT, NB, NC, I/P:0A T1 pin 9-10 Short sec FS1 8 CD(T1), NT, NB, NC, I/P:0.14A, Repeat 2 times, T1 pin FL1 - FL2 Model HRPG (+12V / 37.5A) result were same Short sec FS1 8 IP(FS1) *, CD(Q1,Q2,Q3,Q4), NT, NB, NC, I/P:0A T1 pin 6-8 Short sec FS1 8 IP(FS1) *, CD(Q3,Q4), NT, NB, NC, I/P:0A T1 pin 9-10 Short sec FS1 8 CD(T1), NT, NB, NC, I/P:0.14A,Repeat 2 times T1 pin FL1 - FL2 Model HRPG (+5V / 90A),result were same Short sec FS1 8 IP(FS1) *, CD(Q1,Q2,Q3,Q4), NT, NB, NC, I/P:0A T1 pin 6-8 Short sec FS1 8 IP(FS1) *, CD(Q3,Q4), NT, NB, NC, I/P:0A TRF No. IECEN60950_1C

77 Issue Date: Page 66 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict T1 pin 9-10 T1 pin FL1 - FL2 Model HRPG Short sec FS1 8 CD(T1), NT, NB,NC, I/P:0.14A, Repeat 2 times, result were same Short sec FS1 8 IP(FS1) *, CD(Q1,Q2,Q3,Q4), NT, NB, NC, I/P:0A Fan Stalled 240 2:16 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:104 degree C, T900 coil:69 degree C, U4 body:71 degree C, Amb:27.1 degree C, I/P: 0.13~2.21A, Ventilation openings Blocked 240 2:07 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:104 degree C, T900 coil:72 degree C, U4 body:74 degree C, Amb:27.1 degree C, I/P: 0.13~2.21A, +24V Transformer (T1) overload Before J V Transformer (T1) overload after D V Transformer (T1) overload after D ;02 FS1 8 CT at 8 A, (output load 18.8 A, total load :26.8A), increased to 10 A, Unit shutdown, NT, NB, NC, I/P: (3.11 A), T1 coil:96 degree C, T900 coil: 42 degree C, U4 body:44 degree C, Amb:26.0 degree C 240 5:35 FS1 8 CT at 1 A, increased to 2 A, Unit shutdown, NT, NB, NC, I/P: (2.25 A), T1 coil:120 degree C, T900 coil: 70 degree C, U4 body:80 degree C, Amb:24.1 degree C 240 7:02 FS1 8 CT at 2 A, increased to 2.5 A, Unit shutdown, NT, NB, NC, I/P: (2.26 A), T1 coil:85 degree C, T900 coil: 42 degree C, U4 body:48 degree C, Amb:25.3 degree C +24V - Short 240Vac 30 min FS1 8 Unit shutdown, NT, NC, NB, RTN I/P:0.25A, +24V Overload 240Vac 4:29 FS1 8 CT at 22A, increased to 24 TRF No. IECEN60950_1C

78 Issue Date: Page 67 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict Model HRPG A, Unit shutdown, NT, NB, NC, I/P: ( 2.56 A), T1 coil:55?, T900 coil: 34 degree C, U4 body:42 degree C, Amb:28.9 degree C Fan Stalled 240 3:08 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:119?, T900 coil:72 degree C, U4 body:80 degree C, Amb:27.1 degree C, I/P: 0.13~2.21A, Ventilation openings Blocked 240 2:47 FS1 8 Unit Cycle protection, NT, NC, NB T1 coil:112 degree C, T900 coil:75 degree C, U4 body:81 degree C, Amb:27.3 degree C, I/P: 0.13~2.21A, +48V Transformer (T1) overload Before J V Transformer (T1) overload after D V Transformer (T1) overload after D V - RTN :37 FS1 8 CT at 5 A, (output load 9.5 A, total load :14.5A), increased to 6 A, Unit shutdown, NT, NB, NC, I/P: (3.3 A), T1 coil:118 degree C, T900 coil: 41 degree C, U4 body:44 degree C, Amb:25.1 degree C 240 5:31 FS1 8 CT at 1 A, increased to 2 A, Unit shutdown, NT, NB, NC, I/P: (2.29 A), T1 coil:120 degree C T900 coil: 67 degree C, U4 body:76 degree C, Amb:24.4 degree C 240 6:38 FS1 8 CT at 2 A, increased to 2.5 A, Unit shutdown, NT, NB, NC, I/P: (2.27 A), T1 coil:78 degree C, T900 coil: 38 degree C, U4 body:44 degree C, Amb:25.5 degree C Short 240Vac 30 min FS1 8 Unit shutdown, NT, NC, NB, I/P:0.25A, TRF No. IECEN60950_1C

79 Issue Date: Page 68 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict +48V Overload 240Vac 8:18 FS1 8 CT at 12.5A, increased to 13.5 A, Unit shutdown, NT, NB, NC, I/P: ( 2.6A), T1 coil:72 degree C, T900 coil: 45 degree C, U4 body:50 degree C, Amb:24.4 degree C Model HRPG (+48V / 9.5A) U2 Sec- Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, U2 Pri- Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, U2 Pin 1 Open min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, U3 Sec- Short 240 2h:57m FS1 8 Unit Normal operation, NT, NC, NB T1= 57.5 degree C, T900= 27.9 degree C, U4= 46.2 degree C, Amb=25.1 degree C, I/P:2.17 A U3 Pri- Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, U3 Pin 1 Open 240 2h:54m FS1 8 Unit Normal operation, NT, NC, NB T1= 59.8 degree C, T900= 29.8 degree C, U4= 48.0 degree C, Amb=26.9 degree C, I/P:2.17 A U4 Sec- Short 240 2h:46m FS1 8 Unit Normal operation, NT, NC, NB T1= 57.1 degree C, T900= 27.5 degree C, U4= 46.0 degree C, Amb= 24.8 degree C, I/P: :2.17A U4 Pri- Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, U4 Pin 1 Open 240 2h:28m FS1 8 Unit Normal operation, NT, NC, NB T1= 55.1 degree C, T900=25.2 degree C, U4= 43.5 degree C, Amb=23.3 degree C, I/P:2.17A T1 pin 6-8 Short sec FS1 8 IP(FS1) *, CD(Q3,Q4), NT, NB,NC, I/P:0A T1 pin 9 - Short sec FS1 8 CD(T1), NT, NB, NC, TRF No. IECEN60950_1C

80 Issue Date: Page 69 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict 10 I/P:0.14A, Repeat 2 times, result were same T1 pin FL1 - FL2 Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, T900 pin 1-2 Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, T900 pin FL1A - 4 Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, T900 pin 5,6-7,8 Short 240 1h:53m FS1 8 Unit Normal operation, NT, NC, NB T1=55.2 degree C, T900= 25.4 degree C, U4= 43.7 degree C, Amb= 23.3 degree C, I/P:2.17A Q1 (G-S) Short 240 2h:9m FS1 8 Unit Normal operation, NT, NC, NB T1= 56.3 degree C, T900=26.2 degree C, U4= 44.6 degree C, Amb= 24.6 degree C, I/P:2.17A Q1 (G-D) Short sec FS1 8 IP(FS1) *, CD(Q1,Q2), NT, NB, NC, I/P:0A Q1 (D-S) Short sec FS1 8 IP(FS1) *,CD(Q1,Q2), NT, NB, NC, I/P:0A Q2 (G-S) Short 240 3h:0m FS1 8 Unit Normal operation, NT, NC, NB T1=57.3 degree C, T900= 27.7 degree C, U4= 46.0 degree C, Amb=26.1 degree C, I/P: 2.17A Q2 (G-D) Short sec FS1 8 IP(FS1) *, CD(Q1,Q2), NT, NB, NC, I/P:0A Q2 (D-S) Short sec FS1 8 IP(FS1) *, CD(Q1, Q2), NT, NB, NC, I/P:0A Q3 (G-S) Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, Q3 (G-D) Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, Q3 (D-S) Short sec FS1 8 IP(FS1) *,CD(Q3), NT, NB, NC, I/P:0A Q4 (G-S) Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, Q4 (G-D) Short min FS1 8 Unit shutdown, NT, NB, NC, I/P:0.15A, Q4 (D-S) Short sec FS1 8 IP(FS1) *, CD(Q4), NT, NB, NC, I/P:0A BD1 (L-+) Short sec FS1 8 IP(FS1) *, CD(Q1,Q2), NT, NB, NC, I/P:0A C5 Short sec FS1 8 IP(FS1) *, CD(Q1,Q2), NT, TRF No. IECEN60950_1C

81 Issue Date: Page 70 of 70 Report Reference # E A123-UL-1 IEC :2005 Clause Requirement + Test Result - Remark Verdict supplementary information: NB, NC, I/P:0A Results Key: IP = Internal protection operated (component indicated) CT = Constant temperatures were obtained TW = Transformer winding opened CD = Components damaged (damaged components indicated) NB = No indication of dielectric breakdown YB = Dielectric breakdown (time and location indicated) NC = Cheesecloth remained intact YC = Cheesecloth charred or flamed NT = Tissue paper remained intact YT = Tissue paper charred or flamed * : Test repeated with the following fuses, results were the same: Type UBM from Conquer Electronics; Type 216 from Littelfuse; Type 5HF from Bel Fuse; Type FSC from Walter Electronic TRF No. IECEN60950_1C

82 Issue Date: Page 1 of 10 Report Reference # E A123-UL-1 Enclosure National Differences USA / Canada

83 Issue Date: Page 2 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict USA / Canada - Differences to IEC :2005, Second Edition 1.1 Equipment able to be installed in accordance with the National Electrical Code ANSI/NFPA 70 and the Canadian Electrical Code, Part1, and when applicable, the National Electrical Safety Code, IEEE C Equipment able to be installed in accordance with ANSI/NFPA 75 and NEC Art. 645 unless intended for use outside of computer room and provided with such instructions Equipment in wire-line communication facilities serving high-voltage electric power stations operating at greater than 1kV are excluded Special requirements apply to equipment intended for use outdoors For Pluggable Equipment Type A, the protection in the installation is assumed to be 20 A All IEC standards for components identified in Annex P.1 replaced by the relevant requirements of CSA and UL component standards in Annex P All IEC standards for components identified in Annex P.2 alternatively satisfied by the relevant requirements of CSA and UL component standards in Annex P Interconnecting cables acceptable for the application regarding voltage, current, temperature, flammability, mechanical serviceability and the like For other than limited power and TNV circuits, the type of output circuit identified for output connector External cable assemblies that exceed 3.05 m in length to be types specified in the NEC and CEC Detachable external interconnecting cables 3.05 m or less in length and provided with equipment marked to identify the responsible organization and the designation for the cable Building wiring and cable for use in ducts, plenums and other air handling space subject to special requirements and excluded from scope Telephone line and extension cords and the like comply with UL 1863 and CSA C22.2 No Equipment intended for connection to a d.c. power (mains) distribution system is subject to special To be evaluated in end product. Pass Pass Pass Pass

84 Issue Date: Page 3 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict circuit classification requirements (e.g., TNV -2) Earthing of d.c. powered equipment provided. 1.7 Lamp replacement information indicated on lampholder in operator access area Special marking format for equipment intended for use on a supply system with an earthed neutral and more than one phase conductor Equipment voltage rating not higher than rating of the plug except under special conditions Special fuse replacement marking for operator accessible fuses Identification of terminal connection of the equipment earthing conductor Connectors and field wiring terminals for external Class 2 or Class 3 circuits provided with marking indicating minimum Class of wiring to be used Marking located adjacent to terminals and visible during wiring Bare TNV conductive parts in the interior of equipment normally protected against contact by a cover intended for occasional removal are exempt provided instructions include directions for disconnection of TNV prior to removal of the cover b b b Other telecommunication signaling systems (e.g., message waiting) than described in 2.3.1(b) are subject to M.4. For TNV-2 and TNV-3 circuits with other than ringing signals and with voltages exceeding 42.4 Vp or 60 V d.c., the maximum current limit through a 2000 Ohm or greater resistor with loads disconnected is 7.1 ma peak or 30 ma d.c. under normal conditions. Limits for measurements across 5000 ohm resistor in the event of a single fault are replaced after 200 ms with the limits of M In the event of a single fault, the limits of apply to SELV circuits and accessible conductive parts Enamel coating on signal transformer winding wire allowed as an alternative to Basic insulation in specific telecommunication applications when subjected to special construction requirements and Not used. To be evaluated in end product. To be evaluated in end product.

85 Issue Date: Page 4 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict routine testing. 2.5 Overcurrent protection device required for Class 2 and Class 3 limiting in accordance with the NEC, or for a Limited Power Source, not interchangeable with devices of higher ratings if operator replaceable. 2.6 Equipment having receptacles for output a.c. power connectors generated from an internal separately derived source have the earthed (grounded) circuit conductor suitably bonded to earth For Pluggable Equipment Type A, if a) b) or c) are not applicable, the current rating of the circuit is taken as 20 A Capacity of connection between earthing terminal and parts required to be earthed subject to special conditions based on the current rating of the circuit Protective bonding conductors and their terminals of non-standard constructions (e.g. PWB traces) evaluated to limited short-circuit test of CSA C22.2 No Field wiring terminals for earthing conductors suitable for wire sizes (gauge) used in US and Canada Data for selection of special external branch circuit overcurrent devices marked on the equipment Standard supply outlets protected by overcurrent device in accordance with the NEC, and CEC, Part Overcurrent protection for individual transformers that distribute power to other units over branch circuit wiring Additional requirements for overcurrent protection apply to equipment provided with panelboards Non-motor-operated equipment requiring special overcurrent protective device marked with device rating Multi-layer winding wire subject to UL component wire requirements in addition to and Annex U. To be evaluated in end product. PWB traces are not evaluated to limited short-circuit test of CSA C22.2 No Proper bonding to the end-product main protective earthing termination is required Permissible combinations of internal wiring/external Pass

86 Issue Date: Page 5 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict cable sizes for overcurrent and short circuit protection All interconnecting cables protected against overcurrent and short circuit. 3.2 Wiring methods permit connection of equipment to primary power supply in accordance with the NEC and CEC, Part Permitted use for flexible cords and plugs Flexible cords provided with attachment plug rated 125% of equipment current rating Any Class II equipment provided with 15 or 20 A standard supply outlets, Edison-base lampholders or single pole disconnect device provided with a polarized type attachment plug Equipment intended for connection to DC mains supply power systems complies with special wiring requirements (e.g., no permanent connection to supply by flexible cord) Equipment with one pole of the DC mains supply connected to both the equipment mains input terminal and the main protective earthing terminal provided with special instructions and construction provisions for earthing Equipment with means for connecting supply to earthing electrode conductor has no switches or protective devices between supply connection and earthing electrode connection Special markings and instructions for equipment with provisions to connect earthed conductor of a DC supply circuit to earthing conductor at the equipment Special markings and instructions for equipment with earthed conductor of a DC supply circuit connected to the earthing conductor at the equipment Terminals and leads provided for permanent connection of DC powered equipment to supply marked to indicate polarity if reverse polarity may result in a hazard Permanently connected equipment has provision for connecting and securing a field wiring system (i.e. conduit, or leads etc.) per the NEC and CEC, To be evaluated in end product. Pass

87 Issue Date: Page 6 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict Part Permanently connected equipment may have terminals or leads not smaller than No. 18 AWG (0.82 mm²) and not less than 150 mm in length for connection of field installed wiring If supply wires exceed 60 C, marking indicates use of 75 C or 90 C wiring for supply connection as appropriate Equipment compatible with suitable trade sizes of conduits and cables Length of power supply cord limited to between 1.5 and 4.5 m unless shorter length used when intended for a special installation Conductors in power supply cords sized according to NEC and CEC, Part I Power supply cords and cord sets incorporate flexible cords suitable for the particular application Strain relief provided for non-detachable interconnecting cables not supplied by a limited power source Adequate wire bending space and volume of field wiring compartment required to properly make the field connections Equipment intended solely for installation in Restricted Access Locations using low voltage d.c. systems may not need provision for connecting and securing a field wiring system. A method of securing wiring or instructions provided to ensure the wiring is protected from abuse. 3.3 Field wiring terminals provided for interconnection of units for other then LPS or Class 2 circuits also comply with Interconnection of units by LPS or Class 2 conductors may have field wiring connectors other than those specified in 3.3 if wiring is reliably separated Terminals for the connection of neutral conductor identified by a distinctive white marking or other equally effective means Wire binding screw terminal permitted for connection of No. 10 AWG (5.3 mm²) or smaller conductor if provided with upturned lugs, cupped To be evaluated in end product. Pass

88 Issue Date: Page 7 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict washer or equivalent retention Terminals accept wire sizes (gauge) used in the U.S. and Canada Terminals accept current-carrying conductors rated 125% of the equipment current rating Field wiring terminals marked to indicate the material(s) of the conductor appropriate for the terminals used Connection of an aluminum conductor not permitted to terminal for equipment earthing conductor Field wiring connections made through the use of suitable pressure connectors (including set screw type), solder lugs or splices to flexible leads Separate motor control device(s) required for cordconnected equipment rated more than 12 A, or with motor rated more than 1/3 hp or more than 120 V Vertically mounted disconnect devices oriented so up position of handle is "on" For computer-room applications, equipment with battery systems capable of supplying 750 VA for 5 min require battery disconnect means Special opening restrictions for enclosures around CRTs with face dimension of 160 mm or more Compartment housing high-pressure lamp marked to indicate risk of explosion For equipment intended for mounting on racks and provided with slide/rails allowing the equipment to slide away from the rack for installation, service and maintenance, additional construction, performance and marking requirements are applicable to determine the adequacy of the slide/rails Loading test for equipment with handle(s) used to support more than 9 kg tested at four times the weight of the unit In addition to the IEC requirements, Direct Plug-in Equipment complies with UL 1310 or CSA 223 mechanical assembly requirements The maximum quantity of flammable liquid stored in equipment complies with ANSI/NFPA 30(Table NAE.6). To be evaluated in end product. Pass Pass

89 Issue Date: Page 8 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict Equipment using replenishable liquids marked to indicate type of liquid to be used Equipment that produces x-radiation and does not comply with under all conditions of servicing marked to indicate the presence of radiation where readily visible Requirements contained in the applicable national codes and regulations apply to lasers (21 CFR 1040 and REDR C1370). 4.7 Automated information storage equipment intended to contain more than 0.76 m³ of combustible media requires provision for automatic sprinklers or a gaseous agent extinguishing system Equipment for use in environmental air space other than ducts or plenums provided with metal enclosure or with non-metallic enclosure having adequate fire-resistance and low smoke producing characteristics. Low smoke-producing characteristics evaluated according to UL Equipment for installation in space used for environmental air as described in Sec (c) of the NEC provided with instructions indicating suitability for installation in such locations Flame spread rating for external surface of combustible material with exposed area greater than 0.93 m² or a single dimension greater than 1.8 m; 50 or less for computer room applications or 200 or less for other applications Wire marked "VW-1" or "FT-1" considered equivalent Special earthing provisions and instructions for equipment with high touch current due to telecommunication network connections Touch current due to ringing voltage for equipment containing telecommunication network leads Overloading of SELV connectors and printed wiring board receptacles accessible to the operator Tests interrupted by opening of a component repeated two additional times Test interrupted by opening of wire or trace subject to certain conditions. 6 Specialized instructions provided for telephones that may be connected to a telecommunications Pass Pass Pass

90 Issue Date: Page 9 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict network. 6 Marking identifying function of telecommunication type connectors not used for connection to a telecommunication network. 6.3 Equipment remotely powered over telecommunication wiring systems provided with specialized markings adjacent to the connection. 6.3 Overcurrent protection incorporated into equipment to provide power over telecommunication wiring system not interchangeable with devices of higher ratings if operator replaceable. 6.4 Additional requirements for equipment intended for connection to a telecommunication network using cable subject to overvoltage from power line failures (Fig. 6C). 6.4 Where 26 AWG line cord required by Fig. 6C, either the cord is provided with the equipment or described in the safety instructions. 7 Equipment associated with the cable distribution system may need to be subjected to applicable parts of Chapter 8 of the NEC. H Ionizing radiation measurements made under single fault conditions in accordance with the requirements of the Code of Federal Regulations 21 CFR 1020 and the Canadian Radiation Emitting Devices Act, REDR C1370. M.2 Continuous ringing signals evaluated to Method A subjected to special accessibility considerations. M.4 Special requirements for message waiting and similar telecommunications signals. NAC NAC Equipment intended for use with a generic secondary protector marked with suitable instructions. Equipment intended for use with a specific primary or secondary protector marked with suitable instructions. NAD Acoustic pressure from an ear piece less than 136 dba for short duration disturbances, and less than 125 dba for handsets, 118 dba for headsets, and 121 dba for insert earphones, for long duration disturbances. NAD Equipment connected to a telecommunication and

91 Issue Date: Page 10 of 10 Report Reference # E A123-UL-1 IEC :2005 SubClause Difference + Test Result - Remark Verdict cable distribution networks and supplied with an earphone intended to be held against, or in the ear is required to comply with special acoustic pressure requirements. NAF Household/Home Office Document Shredders NAF.1.7 Markings and instructions alert the user to key safety considerations related to use of shredders, including not intended to be used by children, avoid touching document feed opening, avoid clothes and hair entanglement, and avoid aerosol products. NAF Safety interlock cannot be inadvertently activated by the articulated accessibility probe (figure NAF.1). NAF.3.4 NAF.4.4 Provided with an isolating switch complying with 3.4.2, including 3 mm contact gap, with appropriate markings associated with the switch. Hazardous moving parts are not accessible, as determined using the articulated accessibility probe (figure NAF.1) and the accessibility probe/wedge (figures NAF.2/NAF.3).

92 Issue Date: Page 1 of 11 Report Reference # E A123-UL-1 Enclosure Photographs Supplement Id Description 3-01 External View External View Internal View with Chassis Internal View with Chassis Main PWB Components 3-06 Main PWB Traces 3-07 Constrol PWB Components 3-11 Control PWB Traces 3-12 Small Secondary PWB Top 3-13 Small Secondary PWB Bottom

93 Issue Date: Page 2 of 11 Report Reference # E A123-UL-1 Photographs ID 3-01

94 Issue Date: Page 3 of 11 Report Reference # E A123-UL-1 Photographs ID 3-02

95 Issue Date: Page 4 of 11 Report Reference # E A123-UL-1 Photographs ID 3-03

96 Issue Date: Page 5 of 11 Report Reference # E A123-UL-1 Photographs ID 3-04

97 Issue Date: Page 6 of 11 Report Reference # E A123-UL-1 Photographs ID 3-05

98 Issue Date: Page 7 of 11 Report Reference # E A123-UL-1 Photographs ID 3-06

99 Issue Date: Page 8 of 11 Report Reference # E A123-UL-1 Photographs ID 3-07

100 Issue Date: Page 9 of 11 Report Reference # E A123-UL-1 Photographs ID 3-11

101 Issue Date: Page 10 of 11 Report Reference # E A123-UL-1 Photographs ID 3-12

102 Issue Date: Page 11 of 11 Report Reference # E A123-UL-1 Photographs ID 3-13

103 Issue Date: Page 1 of 11 Report Reference # E A123-UL-1 Enclosure Diagrams Supplement Id Description 4-01 Enclosure drawings 4-02 Heatsink drawing (HS1) 4-03 Heatsink drawing (HS2) 4-04 Heatsink drawing (HS3) 4-05 Heatsink drawing (HS4) 4-10 Heatsink drawing (for Thermal Switch) 4-11 Insulation Sheet on Top Chassis near L Insulation Sheet on Top Chassis above C5 and L Insulation Sheet between PWBs Traces and Bottom Chassis

104 Issue Date: Page 2 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-01

105 Issue Date: Page 3 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-01

106 Issue Date: Page 4 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-02

107 Issue Date: Page 5 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-03

108 Issue Date: Page 6 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-04

109 Issue Date: Page 7 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-05

110 Issue Date: Page 8 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-10

111 Issue Date: Page 9 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-11

112 Issue Date: Page 10 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-12

113 Issue Date: Page 11 of 11 Report Reference # E A123-UL-1 Diagrams ID 4-13

114 Issue Date: Page 1 of 19 Report Reference # E A123-UL-1 Enclosure Schematics + PWB Supplement Id Description 5-01 Schematics and Component Differences 5-02 PWBs layouts

115 Issue Date: Page 2 of 19 Report Reference # E A123-UL-1 Schematics ID 5-01

116 Issue Date: Page 3 of 19 Report Reference # E A123-UL-1 Schematics ID 5-01

117 Issue Date: Page 4 of 19 Report Reference # E A123-UL-1 Schematics ID 5-01

118 Issue Date: Page 5 of 19 Report Reference # E A123-UL-1 Schematics ID 5-01

119 Issue Date: Page 6 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

120 Issue Date: Page 7 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

121 Issue Date: Page 8 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

122 Issue Date: Page 9 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

123 Issue Date: Page 10 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

124 Issue Date: Page 11 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

125 Issue Date: Page 12 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

126 Issue Date: Page 13 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

127 Issue Date: Page 14 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

128 Issue Date: Page 15 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

129 Issue Date: Page 16 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

130 Issue Date: Page 17 of 19 Report Reference # E A123-UL-1 Schematics ID 5-02

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