TEST REPORT IEC Information technology equipment Safety Part 1: General requirements

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1 Test Report issued under the responsibility of TEST REPORT IEC Information technology equipment Safety Part 1: General requirements Report Number....: Date of issue...: Total number of pages pages Applicant s name...: TDK-Lambda Corp. Address...: Settaya-machi, Nagaoka-shi, Niigata-ken , Japan Test specification: Standard...: IEC :2005 (Second Edition) + Am 1: Am 2:2013 Test procedure...: Non-standard test method...: CB Scheme N/A Test Report Form No...: Test Report Form(s) Originator...: IEC60950_1F SGS Fimko Ltd Master TRF...: Dated Copyright 2014 IEC System of Conformity Assessment Schemes for Electrotechnical Equipment and Components (IECEE System). All rights reserved. This publication may be reproduced in whole or in part for non-commercial purposes as long as the IECEE is acknowledged as copyright owner and source of the material. IECEE takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. If this Test Report Form is used by non-iecee members, the IECEE/IEC logo and the reference to the CB Scheme procedure shall be removed. This report is not valid as a CB Test Report unless signed by an approved CB Testing Laboratory and appended to a CB Test Certificate issued by an NCB in accordance with IECEE 02. General disclaimer: The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the Issuing CB Testing Laboratory. The authenticity of this Test Report and its contents can be verified by contacting the NCB, responsible for this Test Report. This Test Report, when bearing the Nemko name and logo is only valid when issued by a Nemko laboratory, or by a laboratory having special agreement with Nemko.

2 Page 2 of 101 Report No Test item description... : DC/DC Converter Trade Mark... : Manufacturer... : Same as Applicant Model/Type reference... : CC15- -E (. : see Details of Nomenclature of General Product Information) Ratings... : See General Product Information or

3

4 Page 4 of 101 Report No List of Attachments (including a total number of pages in each attachment): Photos (20 pages) European Group Differences and National Differences (A11+A1+A12) (19 pages) Australian/New Zealand differences (8 pages) Canadian differences (5 pages) US differences (6 pages) Chinese differences (6 pages) Israeli differences (4 pages) Japanese differences (11 pages) Korean differences (1 page) Singapore differences (6 pages) Circuit Diagram for CC E and CC E (1 page) Circuit Diagram for CC E and CC E (1 page) Pattern Trace Layout for CC E (6 pages) Pattern Trace Layout for CC E (6 pages) Pattern Trace Layout for CC E (6 pages) Pattern Trace Layout for CC E (6 pages) Pattern Trace Layout for CC E (6 pages) Pattern Trace Layout for CC E (6 pages) Pattern Trace Layout for CC E (6 pages) Pattern Trace Layout for CC E (6 pages)

5 Page 5 of 101 Report No Summary of testing: Tests performed (name of test and test clause): <Report No > Cl Cl Cl. 2.2 Cl Cl. 4.5 Cl Power Interface Energy Hazard Measurements SELV Circuits Working Voltage Measurements Thermal Requirements Component Failure Test Testing location: Cosmos Corporation Matsusaka lab. 319 Akeno, Obata-cho, Ise-shi, Mie-ken Japan <Report No > Cl Power Interface Cosmos Corporation Matsusaka lab. 319 Akeno, Obata-cho, Ise-shi, Mie-ken Japan

6 Page 6 of 101 Report No Summary of testing (Continued) : General Equipment for building-in Connection to supply Cl Clearance and creepage distance Cl Thermal requirements Cl Component Failure Test This is standard upgrade from IEC :2005, A1: 2009 /EN :2006, A11:2009, A1: 2010, A12: 2011 to IEC : Am 1: Am 2:2013 (2nd Edition) /EN :2006, A11:2009, A1:2010, A12:2011, A2:2013 Tests are performed in report No and Tests are not performed in this report. This full revise is partly based on previous handling on report No , , and Compliance with requirements regarding buildingin, protection against electric shock and fire hazard must be checked in the end use. The models CC E is intended to be supplied from a secondary circuit (SELV) separated from primary circuit by reinforces or double insulation. The models CC E is intended to be supplied from Secondary circuit which is separated from primary circuits with reinforced insulation in the equipment, the output was complied with SELV circuits, see Cl Not intended for direct connection to an a.c. and d.c. mains supply. The insulation between input and output is functional insulation only. Installation condition was evaluated at horizontal place in this report. The limit of transformer T1 is 130 C based on PWB rating. Overcurrent device shall be provided outside the equipment. The rating of overcurrent device: Min. 72Vdc, Max. 10A for CC E Min. 125Vdc, Max. 10A for CC E Following overcurrent devices are considered for this application. 1. SOC Corp., Type 25RF, rated 250Vac or 125Vdc, max. 10A (UL Listed) * 1 ) 2. SOC Corp., Type 25CF, rated 125Vac or 150Vdc max. 10A (UL Recognized Component) * 1 ) 3. KOA Corp., Type CCF, rated 125Vac or 60Vdc, max. 10A (UL Recognized Component) * 1 ): The test was performed with Type 25RF and 25CF.

7 Page 7 of 101 Report No Summary of compliance with National Differences: List of countries addressed All CENELEC members as listed in EN :2006, A11:2009, A1:2010, A12:2011, A2: The following CB member countries as listed in the IECEE Online Bulletin. The below national differences listed in the CB Bulletin are covered by the National Differences and Group Differences for Europe (Common Modifications, Special National Conditions). IEC ed.2 according to ONLINE CB BULLETIN (Last modification date, *)) - Canadian differences IEC ed.2 according to ONLINE CB BULLETIN (Last modification date, *)) - US differences IEC ed.2 according to ONLINE CB BULLETIN (Last modification date, *)) - Korean differences IEC ed.2 according to ONLINE CB BULLETIN (Last modification date, *)) - Israeli differences IEC ed.2 according to ONLINE CB BULLETIN (Last modification date, *)) - Australian differences IEC ed.2 according to ONLINE CB BULLETIN (Last modification date, *)) - Chinese differences IEC ed.1 according to ONLINE CB BULLETIN (Last modification date, *)) - Japanese differences IEC ed.1 according to safety authority website ref. Singapore Consumer Protection (Safety Requirements) - SINGAPORE *) The last modified date indicates the last time the standard reference / attachment for this standard was modified. The product fulfils the requirements of IEC :2005 (2nd Edition) + Am 1: Am 2:2013 and/or EN :2006, A11:2009, A1:2010, A12:2011, A2:2013.

8 Page 8 of 101 Report No Copy of marking plate:

9 Page 9 of 101 Report No Copy of marking plate (continued):

10 Page 10 of 101 Report No Copy of marking plate (continued):

11 Page 11 of 101 Report No Copy of marking plate (continued): <Rating Label for Trademark >

12 Page 12 of 101 Report No Test item particulars...: Equipment mobility...: For building-in Connection to the mains...: Not directly connected to the mains Operating condition...: Continuous Loaded to rated output Access location...: Operator accessible Over voltage category (OVC)...: OVC II Mains supply tolerance (%) or absolute mains supply values...: N/A Tested for IT power systems...: N/A IT testing, phase-phase voltage (V)...: N/A Class of equipment...: For building-in Considered current rating of protective device as part of the building installation (A)...: N/A Pollution degree (PD)...: PD 2 IP protection class...: IP X0 Altitude during operation (m)...: < 2000m Altitude of test laboratory (m)...: < 2000m Mass of equipment (kg)...: Approx. 12g (with Case) Approx. 8g (without Case) Dimensions with Case: (DIP type) 38.4mm (W) by 29.6mm (D) by 10.3mm (H) (SMD type) 39.9mm (W) by 29.6mm (D) by 6.8mm (H) Dimensions without Case: (DIP type) 37.9mm (W) by 27.6mm (D) by 8.5mm (H) (SMD type) 39.9mm (W) by 27.6mm (D) by 5.0mm H) Possible test case verdicts: - test case does not apply to the test object...: N/A - test object does meet the requirement...: P (Pass) - test object does not meet the requirement...: F (Fail) Testing...: Date of receipt of test item...: (Report No. : ) (Report No. : ) (Report No. : ) No testing conducted. (Report No. : ) No testing conducted. (Report No. : ) No testing conducted. Date (s) of performance of tests...: (Report No. : ) to (Report No. : ) to (Report No. : ) No testing conducted. (Report No. : ) No testing conducted. (Report No. : ) No testing conducted.

13 Page 13 of 101 Report No General remarks: The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the Issuing testing laboratory. "(See Enclosure #)" refers to additional information appended to the report. "(See appended table)" refers to a table appended to the report. Throughout this report a comma / point is used as the decimal separator. Manufacturer s Declaration per sub-clause of IECEE 02: The application for obtaining a CB Test Certificate includes more than one factory location and a declaration from the Manufacturer stating that the sample(s) submitted for evaluation is (are) representative of the products from each factory has been provided...: Yes Not applicable When differences exist; they shall be identified in the General product information section. Name and address of factory (ies)... : TDK Yuri-Honjo Corporation, Head Office/Honjo Factory Aza-Yamanokami, Ishiwaki, Yuri-Honjo-shi, Akita-ken , Japan

14 Page 14 of 101 Report No General product information: The equipment under tests is DC/DC Converter, Model CC15- -E for building-in. Rating(s): For models CC E Model Input Rated Voltage (Vdc) Input Current (A) (Typical of 24V) Output Voltage (Vdc) Output Current (A) Output Wattage (W) Derating Pattern **) CC SFP-E *) CC SFP-E *) CC SFP-E *) CC SFP-E *) CC SRP-E CC SRP-E CC SRP-E CC SRP-E CC SFH-E CC SFH-E CC SFH-E CC SFH-E CC SRH-E CC SRH-E CC SRH-E CC SRH-E *): Unless otherwise stated in data tables, the test was performed on these models as the respresentative for all models. **): Refer to Derating Pattern on page 17 and 18.

15 Page 15 of 101 Report No General product information (continued): For models CC E Model Input Rated Voltage (Vdc) Input Current (A) (Typical of 48V) Output Voltage (Vdc) Output Current (A) Output Wattage (W) Derating Pattern **) CC SFP-E *) CC SFP-E *) CC SFP-E *) CC SFP-E *) CC SRP-E CC SRP-E CC SRP-E CC SRP-E CC SFH-E CC SFH-E CC SFH-E CC SFH-E CC SRH-E CC SRH-E CC SRH-E CC SRH-E *): Unless otherwise stated in data tables, the test was performed on these models as the representative for all models. **): Refer to Derating Pattern on page 17 and 18.

16 Page 16 of 101 Report No General product information (Continued): Details of Nomenclature: The symbol differences are not affect the safety. Please see below. I: Series Type CC Series CC S F P # E I II III IV V VI VII VIII IX II: Output Wattage 15: 15W III: Input Rated Voltage 24: 18-36V 48: 36-76V IV: Output Voltage 03, 3R3, 3.3: 3.3V 05, 5R0, 5.0: 5.0V 12, 12R: 12.0V 15, 15R: 15.0V V: Output Number S: 1 output VI: Terminal Construction F: Flow type (DIP) R: Reflow type (SMD) VII: Case P: with Case H: without Case VIII: Identification Blank: Standard A Z: Identification for sales to manufacturer IX: Internal Control Number not affecting safety E: The fifth generation

17 Page 17 of 101 Report No General product information (Continued): Derating Pattern: Pattern 1 Pattern 2 Patten 3 Patten 4

18 Page 18 of 101 Report No General product information (Continued): Derating Pattern (continued): Pattern 5 Pattern 6 Patten 7

19 Page 19 of 101 Report No General product information (Continued): Model differences: Model differences in CC15 series are model designation, electrical rating, dimensions, weight and some minor components. For models CC E (supply voltage 18-36Vdc), the equipment is supplied from SELV. For models CC E (supply voltage 36-60Vdc), the equipment is supplied from SELV. For models CC E (supply voltage more than 60V-76Vdc), the equipment is supplied from secondary hazardous circuits (secondary high voltage). Secondary high voltage circuit. Maximum recommended ambient (Tma): Refer to the attached model lists Page and the attached Derating Pattern on Page Connection to the supply: Building-in equipment Not intended for direct connection to an a.c. and d.c. mains supply. Circuit characteristics: The equipment contains secondary (SELV) circuits for models CC E (supply voltage 18-36Vdc). The equipment contains secondary (SELV) circuits for models CC E (supply voltage 36-60Vdc). The equipment contains secondary hazard circuits (secondary high voltage) for models CC E (supply voltage more than 60V-76Vdc). Secondary high voltage circuit. The models CC E is intended to be supplied from a secondary circuit (SELV) separated from primary circuit by reinforces or double insulation. The models CC E is intended to be supplied from Secondary circuit which is separated from primary circuits with reinforced insulation in the equipment, the output was complied with SELV circuits, see Cl Overcurrent device shall be provided outside the equipment. The rating of overcurrent device: Min. 72Vdc, Max. 10A for CC E Min. 125Vdc, Max. 10A for CC E Following overcurrent devices are considered for this application. 1. SOC Corp., Type 25RF, rated 250Vac or 125Vdc, max. 10A (UL Listed) * 1 ) 2. SOC Corp., Type 25CF, rated 125Vac or 150Vdc max. 10A (UL Recognized Component) * 1 ) 3. KOA Corp., Type CCF, rated 125Vac or 60Vdc, max. 10A (UL Recognized Component) * 1 ): The test was performed with Type 25RF and 25CF. The change concern 1) Standard Upgrade: From: To: IEC : 2005, A1: 2009 and EN : 2006, A11: 2009, A1: 2010, A12: 2011 IEC : 2005, A1: 2009, A2: 2013 and EN : 2006, A11: 2009, A1: 2010, A12: 2011, A2: 2013 After review of above described change concern, additional relevant tests and evaluation were considered with the following sub-clauses in this report.

20 Page 20 of 101 Report No General product information (Continued): Additional requirements: Exposure to extreme temperatures, excessive dust, moisture or vibration; to flammable gases; to corrosive or explosive atmospheres: This equipment is intended to operate in a "normal" environment (Offices and homes). Electromedical equipment connected to the patient: This equipment is not an electromedical equipment intended to be physically connected to a patient. Equipment used in vehicles, ships or aircrafts, in tropical countries, or at elevations > 2000m: This equipment is intended to operate in a "normal" environment (Offices and homes) and in tropical countries. Abbreviations used in the report: - normal conditions N.C. - single fault conditions S.F.C - functional insulation OP - basic insulation BI - double insulation DI - supplementary insulation SI - between parts of opposite polarity BOP - reinforced insulation RI Indicate used abbreviations (if any)

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