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1 Issue Date: Page 1 of 1 Report Reference # E A46-CB-4 COVER PAGE FOR TEST REPORT Test Item Description: Personal Computer Model/Type Reference: MS-6289, MS-6410xxxxxx, Hetis 945xxxxxx, Hetis 915xxxxxx, MS-6415xxxxxx, Hetis 800xxxxxx, AE510, ishared mini, MS-6439XX, Hetis 900, MS-6441XX, Hetis 965XX, MS-6470XX, Heits G31XX, MS-6618XXXX and Heits G41XXXX (where x and X = A-Z, 0-9 or blank, and no impact any critical safety components and constructions) Rating(s): Vac / Vac, 6 A / 3 A, Hz Standards: :2001, First Edition and/or EN :2001 Applicant Name and Address: MICRO-STAR INTERNATIONAL CO LTD 69 LI-DE ST CHUNG HO TAIPEI HSIEN 235 TAIWAN Factory Location(s): 1. MSI ELECTRONICS (KUNSHAN) CO LTD 88 E QUANJIN RD, KUNSHAN JIANGSU , CHINA 2. MSI COMPUTER (SHENZHEN) CO LTD LONGMA INFORMATION TECHNOLOGY IND PARK, TANGTOU VILLAGE SHIYAN TOWN, BAO'AN DISTRICT, SHENZHEN GUANGDONG, CHINA 3. MICRO-STAR INTERNATIONAL CO LTD 69 LI-DE ST, CHUNG HO TAIPEI HSIEN 235, TAIWAN 4. NETWORK ENGINES INC 25 DAN RD, CANTON, MA 02021, UNITED STATES This Report includes the following parts, in addition to this cover page: 1. Specific Technical Criteria 2. Clause Verdicts 3. Critical Components 4. Test Results 5. Enclosures a. National Differences b. Marking Plate c. Photographs d. Diagrams e. Manuals f. Miscellaneous g. Licenses All applicable tests according to the above standard(s) have been carried out. Test results are valid only for the tested equipment. This Test Report can be reproduced only in whole. Amendments and corrections can be reproduced only with the original CB Test Report. Written permission from is required if the test report is copied in part. Copyright 2002

2 Issue Date: Page 1 of 94 Report Reference # E A46-CB-4 Report Reference No... : Test Report issued under the responsibility of: TEST REPORT,First Edition Information technology equipment-safety Part 1:General Requirements E A46-CB-4 Date of issue... : Total number of pages...: 223 CB Testing Laboratory... : Underwriters Laboratories Taiwan Co., Ltd. Address... : 260 Da-Yeh Road, 112 Peitou Taipei City, Chinese Taipei Applicant's name... : Address... : MICRO-STAR INTERNATIONAL CO LTD 69 LI-DE ST CHUNG HO TAIPEI HSIEN 235 TAIWAN Test specification: Standard... : :2001, First Edition Test procedure... : CB Scheme Non-standard test method... : Test Report Form No.... : IEC60950_1B Test Report Form originator... : SGS Fimko Ltd Master TRF... : dated Copyright 2005 IEC System for Conformity Testing and Certification of Electrical Equipment (IECEE), Geneva, Switzerland. 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 is used by non-iecee members, the IECEE/IEC logo 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. TRF No.: IEC B

3 Issue Date: Page 2 of 94 Report Reference # E A46-CB-4 Test item description... : Trade Mark... : Model/Type reference... : Manufacturer... : Rating... : Personal Computer MSI MS-6289, MS-6410xxxxxx, Hetis 945xxxxxx, Hetis 915xxxxxx, MS- 6415xxxxxx, Hetis 800xxxxxx, AE510, ishared mini, MS-6439XX, Hetis 900, MS-6441XX, Hetis 965XX, MS-6470XX, Heits G31XX, MS-6618XXXX and Heits G41XXXX (where x and X = A-Z, 0-9 or blank, and no impact any critical safety components and constructions) SAME AS APPLICANT Vac / Vac, 6 A / 3 A, Hz TRF No.: IEC B

4 Issue Date: Page 3 of 94 Report Reference # E A46-CB-4 Testing procedure and testing location: [ ] CB Testing Laboratory Testing location / address... : [ ] Associated CB Test Laboratory Testing location / address... : Tested by (name + signature)... : Approved by (+ signature)... : [ ] Testing Procedure: TMP Tested by (name + signature)... : Approved by (+ signature)... : Testing location / address... : [x] Testing Procedure: WMT Tested by (name + signature)... : Emma Chuang Witnessed by (+ signature)... : Reon Tsai Approved by (+ signature)... : Frank Liu Testing location / address... : [ ] Testing Procedure: SMT Tested by (name + signature)... : Approved by (+ signature)... : Supervised by (+ signature)... : Testing location / address... : [ ] Testing Procedure: RMT Tested by (name + signature)... : Approved by (+ signature)... : Supervised by (+ signature)... : Testing location / address... : Micro-Star International Co Ltd / 69 LI-DE ST, CHUNG HO TAIPEI HSIEN 235, TAIWAN. TRF No.: IEC B

5 Issue Date: Page 4 of 94 Report Reference # E A46-CB-4 Summary of Testing: Unless otherwise indicated, all tests were conducted at Micro-Star International Co Ltd / 69 LI-DE ST, CHUNG HO TAIPEI HSIEN 235, TAIWAN.. Tests performed (name of test and test clause) Testing location / Comments End Product Reference Page General Guidelines Input: Single-Phase (1.6.2) Limited Power Source Measurements (2.5) Stability (4.1) Lithium Battery Reverse Current Measurement (4.3.8) Heating (4.5.1, , ) Abnormal Operation ( ) Overload of Operator Accessible Connector (5.3.6) Summary of Compliance with National Differences: AR, AT, AU, BE, CA, CH, CN, CZ, DE, DK, EU, FI, FR, GB, GR, HU, IL, IN, IT, JP, KE, KR, MY, NL, NO, NZ, PL, SE, SG, SI, SK, US Copy of Marking Plate - Refer to Enclosure titled Marking Plate for copy. TRF No.: IEC B

6 Issue Date: Page 5 of 94 Report Reference # E A46-CB-4 Test item particulars : Equipment mobility...: Operating condition...: movable continuous Mains supply tolerance (%)...: +6%, -10% Tested for IT power systems...: IT testing, phase-phase voltage (V)...: Class of equipment...: Mass of equipment (kg)...: Protection against ingress of water...: Possible test case verdicts: No IT, 230 V (for Norway) Class I (earthed) 8 (for motherboard/ MS-7137), (for motherboard/ MS-7231) and 8 (for motherboard/ MS and MS-7331), 8.2 (for motherboard/ MS-7334), 8.24 (for motherboard/ MS-7407), and 8.24 (for motherboard/ MS-7430) IP X0 - 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(s) of receipt of test item...: Date(s) of Performance of tests...: , 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 point is used as the decimal separator. Refer to the Cover Page For Test Report for a list of all Factory Locations. GENERAL PRODUCT INFORMATION: Report Summary All applicable tests according to the referenced standard(s) have been carried out. Product Description Consist of power supply, RTC Battery, DC fans, HDD, CD-ROM/ DVD-ROM and electronic components mounted on PWB, and housed in metallic enclosure, secured together by screws. TRF No.: IEC B

7 Issue Date: Page 6 of 94 Report Reference # E A46-CB-4 Model Differences - Models MS-6410xxxxxx, MS-6415xxxxxx, Hetis 800xxxxxx, Hetis 945xxxxxx and Hetis 915XXXXX, where X and x = A-Z, 0-9 or blank, are identical to MS-6289 except for l designation and Mainboard type. - Model AE510 is identical to Model Hetis 915XXXXX except for l designation. - Model ishared mini is identical to Model Hetis 915XXXXX except for l designation. - Models MS-6439XX and Hetis 900 are identical to Model MS-6410 except for l designation. - Models MS-6441XX and Hetis 965XX are similar to Model MS-6410 except for l designation and Mainboard type. - Model MS-6441XX is identical to Model Hetis 965XX except for l designation. - Models MS-6470XX and Heits G31XX are identical to Model Hetis 965XX except for l designation and Mainboard type. - Models MS-6618XXXX and Heits G41XXXX are similar to Model MS-6470XX except for l designation and Mainboard type. - Model Heits G41XXXX is similar to Model MS-6618XXXX except for l designation. Additional Information - Models MS-6415xxxxxx and Hetis 800xxxxxx are for Mainboard MS Models MS-6410xxxxxx and Hetis 945xxxxxx are for Mainboard MS Models MS-6289, Hetis 915XXXXX, AE510 and ishared mini are for Mainboard MS Models MS-6439XX and Hetis 900 are for Mainboard MS Models MS6441XX and Hetis 965XX are for Mainboard MS Models MS-6470XX and Heits G31XX are for Mainboard MS Models MS-6618XXXX and Heits G41XXXX are for Mainboard MS For project 07CA46287: - Revised main board connecter circuit of MSI., P/N MS For project 07CA50270: - Revised main board connecter circuit of MSI., P/N MS For project 07CA62891: -Alternate metal enclosure For report issue 4, re-issue, included below revision: 01, add new ls MS-6618XXXX and Heits G41XXXX; 02, alternate mainboard type MS for ls MS-6618XXXX and Heits G41XXXX only. TRF No.: IEC B

8 Issue Date: Page 7 of 94 Report Reference # E A46-CB-4 For CB, 08CA59344: This report is re-issued from E A46-CB-3 with Amendment 3 issued , with CB Certificate No. (DK A4, DK A3, DK A3), issued due to modify below items: (01). Add new ls MS-6618XXXX and Heits G41XXXX (where x and X = A-Z, 0-9 or blank, and no impact any critical safety components and constructions). (02). Alternate mainboard type MS for ls MS-6618XXXX and Heits G41XXXX. (03). Delete the trademark NETWORK ENGINES, INC and PACKETEER, INC. (04). Revise the address of factory NETWORK ENGINES INC from 25 DAN RD, CANTON, MA 02021, USA to 25 DAN RD, CANTON, MA 02021, United States. - Only the following tests were deemed necessary: INPUT TEST: SINGLE-PHASE Test Limited Power Source Measurements Test. 4.1-Stability Test Lithium Battery Reverse Current Measurement Test , , Heating Test , Abnormal Operation Test Overload of operator Accessible Connector Test. Technical Considerations The product was submitted and tested for use at the maximum ambient temperature (Tma) permitted by the manufacturer s specification of: 40 C The means of connection to the mains supply is: Detachable power cord, Pluggable A The product is intended for use on the following power systems: IT, TN The equipment disconnect device is considered to be: Appliance inlet The class of laser product is: Class 1 (I), applied on R/C CD-Rom and/or DVD-Rom., The product was investigated to the following additional standards: EN : A11:2004 (which includes all European national differences, including those specified in this test report)., U.S. Code of Federal Regulations, 21 CFR 1040 and IEC , The following circuit locations (with circuit/schematic designation) were investigated as a limited power source (LPS): USB ports, PS/2 ports, IEEE1394 ports. The power supply in this equipment was: Investigated to an earlier edition/amendment of IEC As part of the investigation of this product, the power supply and its test report were reviewed and found to comply with. TRF No.: IEC B

9 Issue Date: Page 8 of 94 Report Reference # E A46-CB-4 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 Certified components are used in accordance with their ratings, certifications and they comply with applicable parts of this Standard. Components not certified are used in accordance with their ratings and they comply with applicable parts of IEC and the relevant component Standard. Components, for which no relevant IEC Standard exist, have been tested under the conditions occurring in the equipment, using applicable parts of Thermal controls Transformers Evaluated as part of power supply Interconnecting cables Interconnecting cables comply with the relevant requirements of this standard Capacitors in primary circuits... : Evaluated as part of power supply Double insulation or reinforced insulation bridged by components Evaluated as part of power supply General Bridging capacitors Bridging resistors Accessible parts Components in equipment for IT power systems Considered. Y-capacitors are certified components rated min. 250 V (for Norway). Pass Pass Pass Pass TRF No.: IEC B

10 Issue Date: Page 9 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 1.6 Power interface Pass AC power distribution systems TN and IT power system at 230 V (for Norway) 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 Pass TRF No.: IEC B

11 Issue Date: Page 10 of 94 Report Reference # E A46-CB-4 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 / Vac Symbol for nature of supply, for d.c. only... : Rated frequency or rated frequency range (Hz)... : Hz Rated current (ma or A)... : 6/3 A Manufacturer's name or trademark or identification mark... : Micro-Star International Co., Ltd. / MSI/ E Type/l or type reference... : See cover page "Models and Ratings" for detail. Symbol for Class II equipment only... : Unit is Class I. Other symbols... : Additional symbols may be provided when submitted for National Approval. Certification marks... : UL, C-UL Safety instructions Operating/safety instructions made available to the user Short duty cycles Supply voltage adjustment... : The means of adjustment is a simple control near the inlet. Voltage selector selects between 115 V and 230 V Power outlets on the equipment... : Fuse identification... : Evaluated as part of power supply Wiring terminals Pass Protective earthing and bonding terminals... : Appliance Inlet provided. Pass Terminal for a.c. mains supply conductors Terminals for d.c. mains supply conductors Controls and indicators Pass Identification, location and marking... : Colours... : Only functional indicators use color Symbols according to IEC : Switch located on Power Supply "I" for "ON" and circle Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass TRF No.: IEC B

12 Issue Date: Page 11 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict "O" for "OFF" ( IEC-5007 and IEC-5008). The push-push stand-by switch in the plastic cover is marked with the correct symbol ( IEC-5009) Markings using figures... : Isolation of multiple power sources... : IT power distribution systems Shall be provided when submitted for national approval (for Norway) Thermostats and other regulating devices Language... : May be provided in other languages upon request from the manufacturer Durability The marking(s) withstood the required test Removable parts Replaceable batteries The required warning is placed in both the operation and service manuals. Language... : Reviewed only English markings/instructions. May be provided in other languages upon request from the manufacturer Operator access with a tool... : All other compartments containing a hazard are properly marked with the electric shock hazard symbol (ISO 3864, No. 5036) Equipment for restricted access locations... : - Pass Pass - Pass TRF No.: IEC B

13 Issue Date: Page 12 of 94 Report Reference # E A46-CB-4 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 Pass Access to energized parts The operator has access to bare parts of SELV CIRCUITS and LPS CIRCUIT. Test by inspection... : All accessible circuits are SELV circuits. Test with test finger... : The test finger was unable to contact bare hazardous parts, basic insulation, or ELV circuits. Test with test pin... : The test pin was unable to contact bare hazardous parts. Test with test probe... : Battery compartments... : Access to ELV wiring Working voltage (V); minimum distance (mm) through insulation... : Access to hazardous voltage circuit wiring No internal wiring accessible to the user Energy hazards... : No openings is the unit that will allow the test finger to enter Manual controls Discharge of capacitors in equipment Evaluated as part of power supply. Time-constant (s); measured voltage (V)... : Protection in service access areas Protection in restricted access locations Pass Pass Pass Pass - Pass Pass TRF No.: IEC B

14 Issue Date: Page 13 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 2.2 SELV circuits Pass General requirements Pass Voltages under normal conditions (V)... : All accessible voltages are less than 42.4 Vp or 60 V dc and are classified as SELV Voltages under fault conditions (V)... : Under fault conditions voltage never exceed 71 Vp and 120 Vdc and do not exceed 42.4 Vp or 60 Vdc for more than 0.2 sec Separation by double insulation or reinforced insulation (method 1) Evaluated as part of power supply Separation by earthed screen (method 2) Protection by earthing of the SELV circuit (method 3) Connection of SELV circuits to other circuits... : The SELV circuits are not connected to circuits other than protective earth and other SELV circuits. Pass Pass Pass 2.3 TNV circuits Limits Type of TNV circuits... : Separation from other circuits and from accessible parts Insulation employed... : Separation from hazardous voltages Insulation employed... : Connection of TNV circuits to other circuits Insulation employed... : Test for operating voltages generated externally TRF No.: IEC B

15 Issue Date: Page 14 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 2.4 Limited current circuits General requirements Limit values Frequency (Hz)... : - Measured current (ma)... : - Measured voltage (V)... : - Measured capacitance (mf)... : Connection of limited current circuits to other circuits TRF No.: IEC B

16 Issue Date: Page 15 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 2.5 Limited power sources Pass Inherently limited output Impedance limited output Overcurrent protective device limited output Regulating network limited output under normal operating and single fault condition Regulating network limited output under normal operating conditions and overcurrent protective device limited output under single fault condition Output voltage (V), output current (A), apparent power (VA):... : Approved PTC devices used for LPS compliance. For IEEE1394: Uoc = 12 V, Isc = 2.7 A, VA = W. For USB: Uoc = 5 V, Isc = 4.41 A, VA = W. For Mouse and Keyboard port: Uoc = 5 V, Isc = 4.3 A, VA = W. ======================= Alternate motherboard, MSI/MS-7231 For PS/2 (Keyboard) port: Uoc = 5.12 V, Isc = 3.82 A, VA = VA. For PS/2 (Mouse) port: Uoc = V, Isc = 3.9 A, VA = 16.4 VA. For USB(rear1): Uoc = 5.12 V, Isc = 3.85 A, VA = VA. For USB(rear2): Uoc = 5.12 V, Isc = 3.72 A, VA = VA. For USB(rear3): Uoc = 5.12 V, Isc = 3.8 A, VA = VA. For USB(rear4): Uoc = 5.12 V, Isc = 3.8 A, VA = VA. For USB(front1): Uoc = V, Isc = 4.3 A, VA = VA. For USB(front2): Uoc = V, Isc = 4 A, VA = VA. For VGA port: Uoc = 5.11 V, Isc = 1.9 A, VA = 8.1 VA. For IEEE1394(big): Uoc = V, Isc = 2.75 A, VA = Pass Pass - TRF No.: IEC B

17 Issue Date: Page 16 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 28.6 VA. For IEEE1394(small): = 3.3 V, Isc = 0 A, VA = 0 VA. ======================= - Alternate motherboard, MSI/MS-7259: For PS/2 (Keyboard) port: Uoc = 5.09 V, Isc = 4.6 A, VA = VA. For PS/2 (Mouse) port: Uoc = 5.09 V, Isc = 4.6 A, VA = VA. For USB(Front 1): Uoc = 5.09 V, Isc = 4.4 A, VA = VA. For USB(Front 2): Uoc = 5.09 V, Isc = 4.4 A, VA = VA. For USB(Lan_USBIA Up): Uoc = 5.08 V, Isc = 4.6 A, VA = VA. For USB(Lan_USBIA Down): Uoc = 5.08 V, Isc = 4.6 A, VA = VA. For USB(1394_USBIA Up): Uoc = 5.09 V, Isc = 4.7 A, VA = VA. For USB(1394_USBIA Down): Uoc = 5.08 V, Isc = 4.7 A, VA = VA. For IEEE1394(big): Uoc = V, Isc = 2.5 A, VA = VA; For IEEE1394(small): = 3.30 V, Isc = 0 A. ======================= - Alternate motherboard, MSI/MS-7331: For PS/2 port: maximum Uoc = 5 V, maximum Isc = 4.7 A, maximum VA = VA. For USB: maximum Uoc = 5.01 V, maximum Isc = 4.6 A, maximum VA = VA. ======================= TRF No.: IEC B

18 Issue Date: Page 17 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict - Alternate motherboard, MS USB Port 0,1(Marked LAN_USB1A): Uoc = 5 V, Isc = 3.2 A, VA = VA; 2. USB Port 2,3 (Marked I1394_USB1A, I1394+USB*2): Uoc = 5 V, Isc = 3.2 A, VA = VA; 3. USB Port 4,5 (Marked USB1, USB2): Uoc = 5.02 V, Isc = 4.2 A, VA = VA; 4. PS/2 Connectors (Mouse & Keyboard): Uoc = 5 V, Isc = 3.2 A, VA = VA; 5. IEEE1394 Port (Rear 1394 Port): Uoc = V, Isc = 2.5 A, VA = VA. 6. IEEE1394 Port (Front): Uoc = 3.36 V, no output current. ======================= = - Alternate motherboard, MS- 7407: 1. USB Ports: Maximum Uoc = V, Isc = 4.8 A, VA = VA; 2. PS/2 Connectors (Mouse & Keyboard): Maximum Uoc = V, Isc = 2.3 A, VA = 7.52 VA; 3. IEEE1394 Port (CNN3): Maximum Uoc = V, Isc = 2.6 A, VA = VA. 4. IEEE1394 Port (CNN4): Maximum Uoc = 3.3 V, no output current. ======================= = - For report E A46-4, re-issue: see Enclosures-Miscellaneous 7-05, append tests table for detail. Current rating of overcurrent protective device (A) : - TRF No.: IEC B

19 Issue Date: Page 18 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 2.6 Provisions for earthing and bonding Pass Protective earthing Accessible conductive parts are earthed Functional earthing Pass Protective earthing and protective bonding Pass conductors General Pass Size of protective earthing conductors Power supply cord earthing conductor complies with Table 3B. Rated current (A), cross-sectional area (mm2), AWG... : Pass Pass Maximum 6 A, 18 AWG Size of protective bonding conductors Protective bonding conductors evaluated based on Rated current (A), cross-sectional area (mm2), AWG... : Resistance (Ohm) of earthing conductors and their terminations, test current (A)... : Pass Maximum 6 A, 18 AWG. - Test current = 25 A.: Voltage Drop=0.275 V;Resistance = ohm. Test current = 40 A.: Voltage Drop=0.48 V;Resistance = ohm. Alternate Power,FSP, FSP250-50MSP: Test current = 25 A.: Voltage Drop=0.275 V;Resistance = ohm. Test current = 40 A.: Voltage Drop=0.47 V;Resistance = ohm Colour of insulation... : Evaluated as part of power supply Terminals Appliance inlet used. Pass General Pass Protective earthing and bonding terminals Evaluated as part of power supply. Rated current (A), type and nominal thread diameter (mm)... : Evaluated as part of power supply. Pass Pass Pass - TRF No.: IEC B

20 Issue Date: Page 19 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict Separation of the protective earthing conductor from protective bonding conductors Integrity of protective earthing Pass Interconnection of equipment Components in protective earthing conductors and protective bonding conductors No switches or fuses in earthing conductors Disconnection of protective earth Pass Parts that can be removed by an operator An appliance coupler used. Pass Parts removed during servicing Pass Corrosion resistance Screws for protective bonding Reliance on telecommunication network or cable distribution system Pass 2.7 Overcurrent and earth fault protection in primary circuits Basic requirements Evaluated as part of power supply. Instructions when protection relies on building installation Faults not covered in Short-circuit backup protection Number and location of protective devices... : Protection by several devices Warning to service personnel... : TRF No.: IEC B

21 Issue Date: Page 20 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 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 2.9 Electrical insulation Pass Properties of insulating materials Natural rubber, materials containing asbestos and hygroscopic materials are not used as insulation Humidity conditioning Electric strength test was conducted after the humidity treatment. Humidity (%)... : 93% - Temperature ( C)... : 25 degree C Grade of insulation Pass Pass Pass TRF No.: IEC B

22 Issue Date: Page 21 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 2.10 Clearances, creepage distances and distances through insulation Pass General Evaluated as part of power supply Determination of working voltage Clearances General Clearances in primary circuit Clearances in secondary circuits Measurement of transient voltage levels Creepage distances CTI tests... : Solid insulation Minimum distance through insulation Thin sheet material Number of layers (pcs)... : - Electric strength test... : Printed boards Distance through insulation Electric strength test for thin sheet insulating material... : Number of layers (pcs)... : Wound components Number of layers (pcs)... : Two wires in contact inside wound component; angle between 45 and : Coated printed boards General Sample preparation and preliminary inspection Thermal cycling Thermal ageing ( C)... : Electric strength test... : - Pass - TRF No.: IEC B

23 Issue Date: Page 22 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict Abrasion resistance test Electric strength test... : Enclosed and sealed parts... : Temperature T1=T2 = Tma - Tamb +10K ( C)... : Spacings filled by insulating compound... : Electric strength test... : Component external terminations Insulation with varying dimensions 3 WIRING, CONNECTIONS AND SUPPLY Pass 3.1 General Pass Current rating and overcurrent protection All wires/conductors possess adequate cross-sectional areas for their intended application and Internal wiring are adequately insulated Protection against mechanical damage The wires are routed away from sharp edges and parts which could damage insulation Securing of internal wiring Pass Insulation of conductors Beads and ceramic insulators Screws for electrical contact pressure Pass Insulating materials in electrical connections Self-tapping and spaced thread screws Termination of conductors All conductors are reliable secured. 10 N pull test Sleeving on wiring Pass Pass Pass TRF No.: IEC B

24 Issue Date: Page 23 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 3.2 Connection to an a.c. mains supply or a d.c. mains supply Pass Means of connection The unit is provided with an appliance inlet Connection to an a.c. mains supply Pass Connection to a d.c. mains supply Multiple supply connections Permanently connected equipment Number of conductors, diameter (mm) of cable and conduits... : Appliance inlets The appliance inlet complies with IEC The power cord can be inserted without difficulties and does not support the unit Power supply cords Power supply cord suitable for application and subject to country's national code and regulations to be provided by the manufacturer AC power supply cords (See appended table 1.5.1) Pass Type... : SVT, SPT-2. - Rated current (A), cross-sectional area (mm²), AWG... : Pass - Pass Pass Maximum 6 A, 18 AWG DC power supply cords Cord anchorages and strain relief Mass of equipment (kg), pull (N)... : - Longitudinal displacement (mm)... : Protection against mechanical damage No parts under this unit likely to damage the power supply cord Cord guards The equipment does not use a nondetachable power supply cord. D (mm); test mass (g)... : - Radius of curvature of cord (mm)... : Supply wiring space TRF No.: IEC B

25 Issue Date: Page 24 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 3.3 Wiring terminals for connection of external conductors Wiring terminals Connection of non-detachable power supply cords Screw terminals Conductor sizes to be connected Rated current (A), cord/cable type, cross-sectional - area (mm²)... : Wiring terminal sizes Rated current (A), type and nominal thread - diameter (mm)... : Wiring terminals design Grouping of wiring terminals Stranded wire 3.4 Disconnection from the mains supply Pass General requirement The appliance inlet is considered to be the disconnect device Disconnect devices Pass Permanently connected equipment Parts which remain energized Switches in flexible cords Single-phase equipment and d.c. equipment Disconnect device disconnects both poles simultaneously Three-phase equipment Switches as disconnect devices Plugs as disconnect devices Interconnected equipment No interconnection of hazardous voltages Multiple power sources One power source only. Pass Pass Pass TRF No.: IEC B

26 Issue Date: Page 25 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 3.5 Interconnection of equipment Pass General requirements Pass Types of interconnection circuits... : Interconnection circuits are SELV CIRCUITS ELV circuits as interconnection circuits Pass 4 PHYSICAL REQUIREMENTS Pass 4.1 Stability Pass Angle of 10 Test: force (N)... : This unit is of a stable mechanical construction and does not overbalance when tilted to an angle of 10 degrees from its normal upright position. Pass TRF No.: IEC B

27 Issue Date: Page 26 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 4.2 Mechanical strength Pass General Pass Steady force test, 10 N Evaluated as part of power supply Steady force test, 30 N Evaluated as part of power supply Steady force test, 250 N 250N applied to all outer enclosure. No energy or other hazards Impact test No hazard as result from impact test. Fall test Swing test Drop test Stress relief test Cathode ray tubes Picture tube separately certified... : High pressure lamps Wall or ceiling mounted equipment; force (N)... : Pass Pass Pass TRF No.: IEC B

28 Issue Date: Page 27 of 94 Report Reference # E A46-CB-4 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 Handles and manual controls; force (N)... : Adjustable controls Investigated during separate certification of power supply Securing of parts Electrical and mechanical connections can be expected to withstand usual mechanical stress. For the protection, solder pins, cable ties and heat shrunk tubing are used Connection of plugs and sockets The equipment does not have any interchangeable plugs/sockets Direct plug-in equipment Dimensions (mm) of mains plug for direct plug-in. : Torque and pull test of mains plug for direct plug-in; torque (Nm); pull (N)... : Heating elements in earthed equipment Batteries Approved battery used. For RTC battery Non- Rechargeable. Reverse current protection provided by blocking diode (D5) and resister(r65). ====================== Alternate motherboard, MSI/MS-7231 RTC battery is protected against charging current by blocking diode (D4) ====================== Alternate motherboard, MSI/MS-7259: RTC battery is protected against charging current by blocking diode (D4) with a 1 K ohm resistor (R47). Pass Pass Pass Pass Pass TRF No.: IEC B

29 Issue Date: Page 28 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict ====================== Alternate motherboard, MSI/MS-7331: RTC battery is protected against charging current by blocking diode (D1) with a 1 K ohm resistor (R236). ====================== Alternate motherboard, MSI/MS-7334: RTC battery is protected against charging current by blocking diode (D8) with a 1 K ohm resistor (R258). ====================== Alternate motherboard, MS- 7407: RTC battery is protected against charging current by blocking diode (D9, D10) with a 1 K ohm resistor (R143). ====================== Alternate motherboard, MS- 7430: RTC battery is protected against charging current by blocking diode (D10) with a 1 K ohm resistor (R143) Oil and grease Dust, powders, liquids and gases Containers for liquids or gases Flammable liquids... : Quantity of liquid (l)... : Flash point ( C)... : Radiation; type of radiation Pass General Ionizing radiation Measured radiation (pa/kg)... : - TRF No.: IEC B

30 Issue Date: Page 29 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict Measured high-voltage (kv)... : - Measured focus voltage (kv)... : - 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) Pass Laser class... : Approval CD-ROM provided Other types... : 4.4 Protection against hazardous moving parts Pass General Pass Protection in operator access areas Pass Protection in restricted access locations Protection in service access areas Pass 4.5 Thermal requirements Pass Maximum temperatures The equipment and its component parts did not attain excessive temperatures during normal operation. (See appended table 4.5) Normal load condition per Annex L... : Resistance to abnormal heat Pass TRF No.: IEC B

31 Issue Date: Page 30 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 4.6 Openings in enclosures Pass Top and side openings Openings do not exceed 1 mm in width or do not exceed 5 mm in any dimension. Dimensions (mm)... : Nemourous openings provid. Front Side: each 3.28 mm diameter, covering an area overall 99 by 43.5 mm. Top Side: each 3.45 mm by 3.45 mm, covering two area, overall 98 by 98 mm (near CPU) and by 34.5 mm. Side near Fan: each 3.45 mm by 3.45 mm, covering an area, overall 66.5 by 66.5 mm. Side near CD-ROM: each 3.45 mm by 3.45 mm, covering an area, overall 89 by 66 mm. See Enclosure 4-01 for detail Bottoms of fire enclosures No openings. Construction of the bottom... : Doors or covers in fire enclosures Openings in transportable equipment Adhesives for constructional purposes Conditioning temperature ( C)/time (weeks)... : - Pass - TRF No.: IEC B

32 Issue Date: Page 31 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 4.7 Resistance to fire Pass Reducing the risk of ignition and spread of flame Method 1: Selection and application of components and materials which minimize the possibility of ignition and spread of flame. 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 A fire enclosure covers all parts Parts requiring a fire enclosure See Pass Parts not requiring a fire enclosure Materials Pass General Pass Materials for fire enclosures Metal is used for fire enclosure Materials for components and other parts outside fire enclosures Materials for components and other parts inside fire enclosures HB decorative part. Connectors are made of materials of Class V-2 minimum. All internal materials are rated V-2 or better or are mounted on a PWB rated V-1 or better. Internal wiring is UL Recognized, marked VW-1 or FT-1 and strapped by individual cable ties (where needed) Materials for air filter assemblies Materials used in high-voltage components Pass Pass Pass Pass Pass Pass TRF No.: IEC B

33 Issue Date: Page 32 of 94 Report Reference # E A46-CB-4 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 Equipment under test (EUT) Equipment designed for connection to only one power source Test circuit Single phase equipment intended only for connection to star TN or TT system Application of measuring instrument Test made to 10X20 cm metal foil in contact with accessible non-conductive part Test procedure Pass Test measurements The touch current was measured from primary to enclosure and front panel with foil. Test voltage (V)... : 254 Vac, 60 Hz. - Measured touch current (ma)... : 0.14 ma for earthed part, and less than 0.01 ma for nonearthed conductive part. Alternate Power,FSP, FSP250-50MSP: 1.0 ma for earthed part, and less than ma for nonearthed conductive part. Max. allowed touch current (ma)... : 3.5 ma for earthed conductive - part, 0.25 ma for non-earthed conductive part. Measured protective conductor current (ma)... : - Max. allowed protective conductor current (ma)... : Equipment with touch current exceeding 3.5 ma.. : Touch currents to and from telecommunication networks and cable distribution systems and from telecommunication networks Limitation of the touch current to a telecommunication network and a cable distribution system Test voltage (V)... : - Pass Pass Pass Pass - TRF No.: IEC B

34 Issue Date: Page 33 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict Measured touch current (ma)... : - Max. allowed touch current (ma)... : Summation of touch currents from telecommunication networks... : 5.2 Electric strength Pass General (See appended table 5.2) Pass Test procedure No insulation breakdown detected during the test. Pass 5.3 Abnormal operating and fault conditions Pass Protection against overload and abnormal operation (See appended table 5.3) Motors Approved DC fans used. Pass Transformers Evaluated as port of power supply Functional insulation... : Functional insulation complies with the requirements (c). See Electromechanical components Simulation of faults Pass Unattended equipment Compliance criteria for abnormal operating and fault conditions No fire, emission of molten metal or deformation was noted during the tests. Pass Pass Pass TRF No.: IEC B

35 Issue Date: Page 34 of 94 Report Reference # E A46-CB-4 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 Test 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... : - TRF No.: IEC B

36 Issue Date: Page 35 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 7 CONNECTION TO CABLE DISTRIBUTION SYSTEMS 7.1 Protection of cable distribution system service persons, and users of other equipment connected to the system, from hazardous voltages in the equipment 7.2 Protection of equipment users from overvoltages on the cable distribution system 7.3 Insulation between primary circuits and cable distribution systems General Voltage surge test Impulse test 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 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)... : - TRF No.: IEC B

37 Issue Date: Page 36 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 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 A.2.3 Mounting of samples A.2.4 Test flame 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. 4, 8 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 A.3.3 Compliance criterion TRF No.: IEC B

38 Issue Date: Page 37 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict B Annex B, MOTOR TESTS UNDER ABNORMAL CONDITIONS(see and 5.3.2) B.1 General requirements Approved d.c. fans. Pass Position... : Only d.c. motors in - SECONDARY CIRCUITS. Manufacturer... : (See appended table 1.5.1) - Type... : (See appended table 1.5.1) - Rated values... : (See appended table 1.5.1) - 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.7 Locked-rotor overload test for d.c. motors in secondary circuits Pass B.7.1 Test procedure (See appended table 5.3) Pass B.7.2 Alternative test procedure; test time (h)... : B.7.3 Electric strength test B.8 Test for motors with capacitors B.9 Test for three-phase motors B.10 Test for series motors Operating voltage (V)... : - Pass TRF No.: IEC B

39 Issue Date: Page 38 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict C Annex C, TRANSFORMERS (see and 5.3.3) Position... : - Manufacturer... : - Type... : - Rated values... : - Method of protection... : - C.1 Overload test Evaluated as part of power supply. C.2 Insulation Protection from displacement of windings... : D Annex D, MEASURING INSTRUMENTS FOR TOUCH-CURRENT TESTS Pass D.1 Measuring instrument Pass D.2 Alternative measuring instrument E Annex E, TEMPERATURE RISE OF A WINDING F Annex F, MEASUREMENT OF CLEARANCES AND CREEPAGE DISTANCES (see 2.10) TRF No.: IEC B

40 Issue Date: Page 39 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict G Annex G, ALTERNATIVE METHOD FOR DETERMINING MINIMUM CLEARANCES G.1 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 DC mains supply G.3 Determination of telecommunication network transient voltage (V) :... : G.4 Determination of required withstand voltage (V)... : G.5 Measurement of transient levels (V)... : G.6 Determination of minimum clearances... : H ANNEX H, IONIZING RADIATION (see ) J Annex J, TABLE OF ELECTROCHEMICAL POTENTIALS (see ) Metal used... : - K ANNEX K, THERMAL CONTROLS (see and 5.3.7) K.1 Making and breaking capacity K.2 Thermostat reliability; operating voltage (V)... : K.3 Thermostat endurance test; operating voltage (V) : K.4 Temperature limiter endurance; operating voltage (V)... : K.5 Thermal cut-out reliability K.6 Stability of operation TRF No.: IEC B

41 Issue Date: Page 40 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict L Annex L, NORMAL LOAD CONDITIONS FOR SOME TYPES OF ELECTRICAL BUSINESS EQUIPMENT (see and 4.5.1) 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 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 , , and clause G.5) N.1 ITU-T impulse test generators N.2 IEC impulse test generator TRF No.: IEC B

42 Issue Date: Page 41 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict P Annex P, NORMATIVE REFERENCES Pass Q Annex Q, BIBLIOGRAPHY Pass 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)... : - U Annex U, INSULATED WINDING WIRES FOR USE WITHOUT INTERLEAVED INSULATION (see )... : - TRF No.: IEC B

43 Issue Date: Page 42 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict TABLE: list of critical components Pass object/part No. 2. Power supply cord (Optional) 3. Metal Enclosure 3a. Metal Enclosure (Alternate) manufacturer/ trademark type/l technical data standard mark(s) of conformity 1 ) Detachable, Type SVT or SPT-2, 125/250 V min., 18 AWG min., 4.5 m long max., one end with, grounding type, NEMA 5-15P/ NEMA 6-15P. Other end with appliance coupler Consists of two parts, secured together by physical fit and screw, Overall 330 by 320 by 94 mm, 0.8 mm thick minimum for both parts, see enclosure Consists of two parts, secured together by physical fit and screw, Overall 330 by 320 by 94 mm, 0.8 mm thick minimum for both parts, see enclosure Plastic Panel HB minimum, overall 320 by 94 by 44 mm, 2.5 mm thickness minimum, secured to enclosure by screws. 5A. Connectors and Receptacles -- Metal/Plastic Copper alloy pins housed in UL62, UL498, or UL817 UL, , , -- UL94 UL, -- UL94 UL, -- TRF No.: IEC B

44 Issue Date: Page 43 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict (Secondary ELV/SELV circuits) 5B. Connectors and Receptacles (Secondary ELV/SELV circuits) 5C. Connectors, (for network) 6. Built-in Power Supply 06a. Built-in Power Supply (Alternate) (For l MS- 6415xxxxxx, Hetis 800xxxxxx, MS-6410xxxxxx, Hetis 945xxxxxx with main board MS-7231, MS- 7259, MS- 6439XX and Hetis 900) (Also for Model MS-6441XX, Hetis 965XX with main board MS- 7334) (Also for Model MS-6470XX, Hetis G31XX with main board MS-7407) (Also for Models MS-6618XXXX and Heits G41XXXX with main board MS- 7430) bodies of plastic rated V-2 min UL498, UL1977. UL, Type RJ-45 UL1863 UL, -- Delta Electronics Inc. DPS-250AB-7 XX I/P: Vac/7 A, Vac/4 A, Hz, O/P: DC +3.3 V/16.0 A, +5 V/16.0 A, +12 V/16.0 A, +5 Vsb/2 A, -12 V/0.8 A. Class I. FSP Group Inc. FSP250-50MSP I/P: / Vac, 60/50 Hz, 6/3 A. O/P: DC +3.3 V/16.0 A, +5 V/16.0 A, +12 V/16.0 A, +5 Vsb/2 A, -12 V/0.8 A V & +5 V & +12 V = 234 W maximum, +3.3 V & +5 V = 110 W maximum, Total output power = 250 W maximum. Class I. UL60950, IEC : 2001, EN : UL60950, IEC : 2001, EN : UL, TUV Rheinland, Certificate No. JPTUV , Test Report Reference No UL, TUV (Certificate No. JPTUV , Test Report Reference No ) TRF No.: IEC B

45 Issue Date: Page 44 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 7. Plastic Stand Base 8. System Fan Sunonwealth Electric Machine Industry Co., Ltd. 8a. System Fan (Alternate) 8-1. Metal mesh for system fan 9A. Hard Disk (Optional) 9B. Hard Disk (Optional) 10. Card Reader (Optional) 11A. DVD-ROM Drive (Optional) 11B. DVD-ROM (Optional) 12. Insulating tubing/sleeving 13. Wiring, internal secondary ELV/SELV Various Various Minimum HB, 60 degree C, 0.175Kg, dimension see diagram 4-10 for detail. Delta Electronics Inc. KDE1206PHV2 AFB0612MC One provided, rated 12 Vdc, 0.09 A, 18 CFM 12 Vdc, 0.17 A maximum CFM Metal, secured to enclosure by screw, dimension see diagram 4-13 for detail. Seagate Technology Hitachi Global Storage Technology ST3XXYY-XX Rated 5 Vdc, 1.5 A maximum; 12Vdc, 1.5A maximum HDS7225nnVLA Tnn (n:0-9) Rated 5 Vdc, 1.5 A maximum; 12 Vdc, 2.0 A maximum Connected to connector JFP1 (USB) on mainboard. Micro-Star International Co., Ltd. Pioneer Corporation MS-8448M Rated 5 Vdc/ 12 Vdc, 1.6 A max., Laser Class 1 DVR-107DB Rated 5 Vdc, 1.1 A; 12 Vdc, 0.8 A, Laser Class FEP, PTFE, PVC, TFE, neoprene, polyimide or marked VW-1; 105 degree C, 300 V, provided with F FEP, PTFE, PVC, TFE, neoprene, polyimide or UL498, UL1977. UL, -- UL507, UL, CAS, TUV EN : 2001 UL507 UL, , -- UL , EN60950 UL , EN , -- UL, TUV UL, TUV UL UL, -- UL UL, -- UL224 UL, -- UL758 UL, UL TRF No.: IEC B

46 Issue Date: Page 45 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict circuits 14. Interconnecting Cable (Optional) marked VW-1; min 30 V, 80 degree C degree C UL758 UL, -- min., 60 V min., 3.05 m long max., jacketed except for USB, IEEE 1394 and PS/2 cable, VW- 1 or FT V-2 min. UL94 UL, ohm, 1 W -- --, , PWB V-0 or better, min. 105 degree C 02a. CPU Fan Delta Electronics Inc. 02b. CPU Fan (alternate) 03a. RTC Lithium Battery 03b. RTC Lithium Battery (Alternate) 03c. RTC Lithium Battery (Alternate) 03d. RTC Lithium Battery (Alternate) 03e. RTC Lithium Battery Delta Electronics Inc. Sony Fukushima Corp. Toshiba Battery Co., Ltd. Mitsubishi Electric Corp. Vic-Dawn (KTS) Enterprise Co., Ltd. Matsushita Electric Industrial 15. Internal Plastic Part Materials 16. Speaker (Optional) Motherboard, MSI, type MS AFB0712HHB- 5B25 AFB0812HD CR2032 CR2032 CR2032 CR2032 CR2032 One provided, rated 12 Vdc, 0.45 A, CFM One provided, rated 12 Vdc, 0.27 A, CFM. 3.0 Vdc, 210 ma Max. Abnormal Charging Current 10 ma. 3.0 Vdc, 210 ma Max. Abnormal Charging Current 10 ma. 3.0 Vdc, 210 ma Max. Abnormal Charging Current 10 ma. 3.0 Vdc, 220 ma Max. Abnormal Charging Current 10 ma. 3.2 Vdc, 220 ma Max. Abnormal UL796 UL, -- UL507, EN : 2001 UL507, EN : 2001 UL 1642 UL, -- UL 1642 UL, -- UL 1642 UL, -- UL 1642 UL, -- UL 1642 UL, -- UL, CAS, VDE UL, CAS, VDE TRF No.: IEC B

47 Issue Date: Page 46 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict (Alternate) Co Ltd (Panasonic) Charging Current 10 ma. 04. Diode (D5) Min. 30 V, , -- ma. 05a-01. Polytronics SMD1812P260T 6 Vdc, 2.6 A, UL1434 UL, -- Polyswitch (FS1, FS2) Technology Corp S provided for PS2 and USB 05a-02. Polyswitch (FS1, FS2) (Alternate) 05a-03. Polyswitch (FS1, FS2) (Alternate) 05b. Polyswitch (FS4) 06. CPU Heatsink 07. Heatsink (above 915 chipset) 08. Heatsink (above ICH6 chipset) Tyco Electronics Corp. Raychem Circuit Protection Div Tyco Electronics Corp. Raychem Circuit Protection Div Tyco Electronics Corp Raychem Circuit Protection Div connectors. minismdm260 6 Vdc, 2.6 A, provided for PS2 and USB connectors. minismdc260 6 Vdc, 2.6 A, provided for PS2 and USB connectors. minismdm150/2 4 PTC, 24 Vdc, 1.5 A, provided for IEEE 1394 connectors Consist of Aluminum part and copper part. Overall 95 by 90 by 46 mm, copper part diameter 44 mm, thickness 0.5mm on bottom. Total 33 fins provided, the fin s thickness 0.65 mm, gap between fins 1.9 mm. See enclosure 3-06 & 3-07 for reference Aluminum, overall 42.5 mm by 42.5 mm by 20.8 mm, see Enclosure 4-03 for details Aluminum, overall 37.5 mm by 37.5 mm by 6 mm, see UL1434 UL, -- UL1434 UL, -- UL1434, EN UL, , , , -- TRF No.: IEC B

48 Issue Date: Page 47 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 09. Heatsink (HS1, HS2, HS3) Motherboard, MSI, type MS Printed Wiring Board 02a. RTC Battery (BT2) 02b. RTC Battery (BT2) (Alternate) 02c. RTC Battery (Alternate) 02d. RTC Battery (Alternate) 02e. RTC Battery Enclosure 4-04 for detail Aluminum, -- --, -- overall 55 mm by 24.7 mm by 18 mm, see Enclosure 4-05 for detail , V-1 or better, Minimum 105 degree C KTS (VIC- DAWN) Mitsubishi Electric Corp. Matsushita Electric Industrial Co Ltd (Panasonic) Sony Fukushima Corp. Toshiba Battery Co., Ltd. (Alternate) 03. CPU Fan Delta Electronics Inc. 04a-01. Polyswitch (FS4) (for VGA port) 04a-02. Polyswitch (FS4)(for VGA port) (alternate) 04b-01. Polyswitch (FS2) (for 1394 port) 04b-02. Polyswitch (FS2) (for 1394 port) (alternate) CR2032 CR2032 CR2032 CR2032 CR Vdc, maximum abnormal charge current 10 ma 3 Vdc, maximum abnormal charge current 10 ma 3 Vdc, maximum abnormal charge current 10 ma 3 Vdc, maximum abnormal charge current 10 ma 3 Vdc, maximum abnormal charge current 10 ma AFB0812HHD 12 Vdc, 0.24 A, (max. 0.4 A) CFM, max W UL796 UL, -- UL1642 UL, -- UL1642 UL, -- UL1642 UL, -- UL1642 UL, -- UL1642 UL, -- UL507,EN UL, VDE Bourns Inc MF-USMF A, 6 Vdc UL 1434 UL, -- Tyco Electronics Corp. Raychem Circuit Protection Div Polytronics Technology Tyco Electronics Corp. Raychem Circuit Protection Div MicroSMD A, 6 Vdc EN UL 1434 SMD1812P150T /24 minismdc150/ A, 24 Vdc EN UL A, 24 Vdc EN UL 1434 UL, TUV UL, TUV UL, TUV TRF No.: IEC B

49 Issue Date: Page 48 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 04c-01. Polyswitch (FS1, FS3) (FS1 for rear USB) (FS3 for front USB) 04c-02. Polyswitch (FS1, FS3) (FS1 for rear USB) (FS3 for front USB) (alternate) 05. CPU Heatsink 05a. CPU Heatsink (Alternate) 06. Heatsink (for south bridge) 07. Heatsink (for noruth bridge) 08. Heatsink (HS1, HS2, HS3) 09. Resistor (R66) For Main Board, MSI, type MS- 7259: 01. Heat sink for CPU used 01a. Heat sink for CPU used (Alternate) 02. R.T.C. Battery (JBAT2) Tyco Electronics Corp. Raychem Circuit Protection Div Tyco Electronics Corp. Raychem Circuit Protection Div SMD1812P260T F minismdc260f A, 6 Vdc EN UL A, 6 Vdc EN UL Aluminum part and copper part. Overall 85 by 85 by 40.5 mm Aluminum part. Overall 85 by 85 by 40.5 mm Aluminum, overall 42.5 mm by 42.5 mm by 20.8 mm details Aluminum, overall 37.5 mm by 37.5 mm by 6 mm Aluminum, overall 25 mm by 24.7 mm by 18 mm -- --, , , , , Rated 1 K ohm -- --, , Aluminum part. Overall 85 by 85 by 40.5 mm Aluminum part and copper part. Overall 85 by 85 Vic-Dawn Enterprise Co., Ltd CR2032 by 40.5 mm 3 Vdc, 160 mah, maximum abnormal charge current 10 ma. The reverse current -- --, , -- UL, TUV UL, TUV UL1642 UL, -- TRF No.: IEC B

50 Issue Date: Page 49 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 02a. R.T.C. Battery (JBAT2) (Alternate) 02b. R.T.C. Battery (JBAT2) (Alternate) 02c. R.T.C. Battery (JBAT2) (Alternate) 02d. R.T.C. Battery (JBAT2) (Alternate) Mitsubishi Electric Corp. Matsushita Electric Industrial Co., Ltd. Sony Energy Devices Corp. Toshiba Battery Co., Ltd. protection is accomplished by series circuit of a diode (D4) with a 1 K ohm resistor (R47) CR Vdc, 200 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a diode (D4) with a 1 K ohm resistor (R47) CR Vdc, 220 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a diode (D4) with a 1 K ohm resistor (R47). CR Vdc, 240 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a diode (D4) with a 1 K ohm resistor (R47). CR Vdc, 220 mah, maximum abnormal charge current 10 ma. The reverse current UL1642 UL, -- UL1642 UL, -- UL1642 UL, -- UL1642 UL, -- TRF No.: IEC B

51 Issue Date: Page 50 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 03. Polyswitch (FS1 for PS/2 and rear USB), (FS3 for front USB) 03a. Polyswitch (FS1 for PS/2 and rear USB), (FS3 for front USB) (Alternate) 03b. Polyswitch (FS1 for PS/2 and rear USB), (FS3 for front USB) (Alternate) 04. Polyswitch (FS2 for IEEE1394) 4a. Polyswitch (FS2 for IEEE1394) (Alternate) Tyco Electronics Corp Raychem Circuit Protection Div Polytronics Technology Corp. Polytronics Technology Corp. Polytronics Technology Corp. Tyco Electronics Corp Raychem Circuit Protection Div 05. CPU Fan Delta Electronics Inc. 05a. CPU Fan (Alternate) Main board, MSI. Type MS-7331: 01. Heat sink for CPU used 01a. Heat sink for CPU used (Alternate) 02. R.T.C. Battery (VBAT1) minismdc260 SMD1812P260T S SMD1812P260T F SMD1812P150T F/24 minismdc150/2 4 protection is accomplished by series circuit of a diode (D4) with a 1 K ohm resistor (R47) SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. SMD type. Rated 24 Vdc. Ih: 1.5 A. It: 3.0 A. SMD type. Rated 24 Vdc. Ih: 1.5 A. It: 3.0 A. AFB0812HHD 12 Vdc, 0.24 A, (max. 0.4 A) CFM, max W AFB0812HD 12 Vdc, 0.27 A, CFM UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL507,EN UL, VDE Delta Electronics UL507 UL, -- Inc , Aluminum part. Overall 85 by 85 by 40.5 mm Aluminum part and copper part. Overall 85 by 85 Vic-Dawn Enterprise Co., Ltd CR2032 by 40.5 mm 3 Vdc, 160 mah, maximum abnormal charge current 10 ma. The reverse -- --, , -- UL1642 UL, -- TRF No.: IEC B

52 Issue Date: Page 51 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 02a. R.T.C. Battery (VBAT1) (Alternate) 02b. R.T.C. Battery (VBAT1) (Alternate) 02c. R.T.C. Battery (VBAT1) (Alternate) 03. Polyswitch (FS3 for PS/2 and rear USB), (FS4 for front USB) Mitsubishi Electric Corp. Sony Energy Devices Corp. Toshiba Battery Co., Ltd. Tyco Electronics Corp. Raychem Circuit Protection Div. current protection is accomplished by series circuit of a diode (D1) with a 1 K ohm resistor (R236) CR Vdc, 200 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a diode (D1) with a 1 K ohm resistor (R236) CR Vdc, 240 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a diode (D1) with a 1 K ohm resistor (R236). CR Vdc, 220 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a diode (D1) with a 1 K ohm resistor minismdc260 (R236) SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. UL1642 UL, -- UL1642 UL, -- UL1642 UL, -- UL1434 UL, -- TRF No.: IEC B

53 Issue Date: Page 52 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 03a. Polyswitch (FS3 for PS/2 and rear USB), (FS4 for front USB) (Alternate) 03b. Polyswitch (FS3 for PS/2 and rear USB), (FS4 for front USB) (Alternate) 03c. Polyswitch (FS3 for PS/2 and rear USB), (FS4 for front USB) (Alternate) 03d. Polyswitch (FS3 for PS/2 and rear USB), (FS4 for front Polytronics Technology Corp. Polytronics Technology Corp. SMD1812P260T F SMD1812P260T S SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. Littelfuse Inc. 1812L260MR SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. Tyco Electronics Corp. Raychem Circuit Protection Div USB) (Alternate) 04. CPU Fan Delta Electronics Inc. 04a. CPU Fan (Alternate) Main board, MSI. Type MS- 7334: [DVI connector is optionally provided.] 1. R.T.C. Battery (BAT1) 1a. R.T.C. Battery (BAT1) (Alternate) minismdc260f- 2 SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. AFB0812HHD 12 Vdc, 0.24 A (maximum 0.4 A), CFM AFB0812HD 12 Vdc, 0.27 A, CFM UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL507 UL, -- Delta Electronics UL507 UL, -- Inc , -- Matsushita Electric Industrial Co Ltd Panasonic Corp Of North America Vic-Dawn Enterprise Co., Ltd CR Vdc, 220 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a blocking diode (D8) with a 1 K ohm resistor (R258). CR Vdc, 160 mah, maximum abnormal charge current 10 ma. UL1642 UL, -- UL1642 UL, -- TRF No.: IEC B

54 Issue Date: Page 53 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 1b. R.T.C. Battery (BAT1) (Alternate) 1c. R.T.C. Battery (BAT1) (Alternate) 2. Polyswitch for PS/2 and rear USB (FS1, FS2) 2a. Polyswitch for PS/2 and rear USB (FS1, FS2) (Alternate) 2b. Polyswitch for PS/2 and rear USB (FS1, FS2) (Alternate) 2c. Polyswitch for PS/2 and rear FDK Energy Co Ltd Mitsubishi Electric Corp. Polytronics Technology Corp. The reverse current protection is accomplished by series circuit of a blocking diode (D8) with a 1 K ohm resistor (R258). CR Vdc, 220 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a blocking diode (D8) with a 1 K ohm resistor (R258). CR Vdc, 200 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of a blocking diode (D8) with a 1 K ohm resistor (R258). SMD1812P150T (+) SMD type. Rated 6 Vdc. Ih: 1.5 A. It: 3.0 A. Littelfuse Inc 1812X150PRT SMD type. Rated 6 Vdc. Ih: 1.5 A. It: 3.0 A. Bourns Inc MF-MSMF150 SMD type. Rated 6 Vdc. Ih: 1.5 A. It: 3.0 A. Tyco Electronics Corp Raychem minismdc150 (15) SMD type. Rated 6 Vdc. Ih: 1.5 A. UL1642 UL, -- UL1642 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- TRF No.: IEC B

55 Issue Date: Page 54 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict USB (FS1, FS2) (Alternate) 3. Polyswitch for front USB (FS3) 3a. Polyswitch for front USB (FS3) (Alternate) 3b. Polyswitch for front USB (FS3) (Alternate) 4. Polyswitch for rear IEEE1394 (FS4) 4a. Polyswitch for rear IEEE1394 (FS4) (Alternate) Circuit Protection Div Polytronics Technology Corp. Tyco Electronics Corp Raychem Circuit Protection Div Littelfuse Inc Polytronics Technology Corp. Tyco Electronics Corp Raychem Circuit Protection Div 5. CPU Fan Delta Electronics Inc. 5a. CPU Fan (Alternate) 6. Heat sink for CPU used 6a. Heat sink for CPU used (Alternate) Main board type MS-7407: (For Models MS- 6470XX and Heits G31XX only) 01. RTC Battery (BAT1) SMD1812P260T (+) minismdc260 (26) It: 3.0 A. SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. 1812X260MR++ SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. SMD1812P150T F/24 minismdc150/2 4 SMD type. Rated 24 Vdc. Ih: 1.5 A. It: 3.0 A. SMD type. Rated 24 Vdc. Ih: 1.5 A. It: 3.0 A. AFB0812HHD 12 Vdc, 0.24 A (maximum 0.4 A), CFM AFB0812HD 12 Vdc, 0.27 A, Delta Electronics Inc CFM Aluminum part. Overall 85 by 85 by 40.5 mm, the fin approx. 0.4 mm thickness minimum Aluminum part and copper part. Overall 85 by 85 by 40.5 mm, the fin approx. 0.4 mm thickness minimum. UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL507 UL, -- UL507 UL, , , , -- Matsushita Electric Industrial Co Ltd Panasonic Corp Of North CR Vdc, 220 mah, maximum abnormal charge current 10mA. The reverse UL1642 UL, -- TRF No.: IEC B

56 Issue Date: Page 55 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 01a. RTC Battery (BAT1) (Alternate) 01b. RTC Battery (BAT1) (Alternate) 01c. RTC Battery (BAT1) (Alternate) 02. Polyswitch for PS/2 (F3) 02a. Polyswitch for PS/2 (F3) America VIC-Dawn Enterprise Co Ltd FDK Energy Co Ltd Mitsubishi Electric Corp Polytronics Technology Corp. Tyco Electronics Corp Raychem current protection is accomplished by series circuit of diode (D9, D10) with a 1 K ohm resistor (R143) CR Vdc, 160 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of diode (D9, D10) with a 1 K ohm resistor (R143) CR Vdc, 220 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of diode (D9, D10) with a 1 K ohm resistor (R143) CR Vdc, 200 mah, maximum abnormal charge current 10 ma. The reverse current protection is accomplished by series circuit of diode (D9, D10) with a 1 K ohm SMD1210P110T F microsmd110 resistor (R143) SMD type. Rated 6 Vdc. Ih: 1.1 A. It: 2.2 A. SMD type. Rated 6 Vdc. Ih: 1.1 A. UL1642 UL, -- UL1642 UL, -- UL1642 UL, -- UL1434 UL, -- UL1434 UL, -- TRF No.: IEC B

57 Issue Date: Page 56 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict (Alternate) 02b. Polyswitch for PS/2 (F3) (Alternate) 03. Polyswitch for USB (F1, F5) 03a. Polyswitch for USB (F1, F5) (Alternate) 03b. Polyswitch for USB (F1, F5) (Alternate) 04. Polyswitch for rear 1394 (F2) 04a. Polyswitch for rear 1394 (F2) (Alternate) Circuit Protection It: 2.2 A. Div Bourns Inc MF-MSMF110 SMD type. Rated UL1434 UL, -- 6 Vdc. Ih: 1.1 A. It: 2.2 A. Polytronics SMD1812P260T SMD type. Rated UL1434 UL, -- Technology F 6 Vdc. Ih: 2.6 A. Corp. It: 5.2 A. Tyco Electronics Corp Raychem Circuit Protection Div minismdc260 SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. Littelfuse Inc 1812X260 SMD type. Rated 6 Vdc. Ih: 2.6 A. It: 5.2 A. Polytronics Technology Corp. Tyco Electronics Corp Raychem Circuit Protection Div 05. CPU Fan Delta Electronics Inc. 05a. CPU Fan (Alternate) 06. Heat sink for CPU used 06a. Heat sink for CPU used (with insert copper) (Alternate) Maniboard (for ls MS- 6618XXXX and Heits G41XXXX) Delta Electronics Inc. SMD1812P150T F/24 minismdm150/2 4 SMD type. Rated 24 Vdc. Ih: 1.5 A. It: 3.0 A. SMD type. Rated 24 Vdc. Ih: 1.5 A. It: 3.0 A. AFB0812HHD 12Vdc, 0.24A (maximum 0.4A), CFM AFB0812HD 12Vdc, 0.2A (maximum 0.27A), CFM, Aluminum part. Overall 85 by 85 by 40 mm. See Enclosure Diagrams for details Aluminum part and copper part. Overall 85 by 85 by 40.5 mm. See Enclosure Diagrams for details. Micro-Star International Co., Ltd. 01. RTC Battery Matsushita Electric Industrial MS-7430 See photo 3-26, 3-27, 3-28, 3-29 CR2032 Rated 3 V, maximum UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL1434 UL, -- UL507 UL, -- UL507 UL, , , , -- UL 1642 UL, -- TRF No.: IEC B

58 Issue Date: Page 57 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 01a. RTC Battery (alternate) 02a-1.Poly Switch ( F2) (for rear side IEEE 1394 port) 02a-2.Poly Switch (F2) (for rear side IEEE 1394 port) (alternate) 03.Overcurrent Protector for USB and PS/2 (CONN2A, CONN3B, CONN5, CONN6) 04. Heat sink for CPU used 04a. Heat sink for CPU used Co. Ltd. Panasonic Corp Of North America Vic-Dawn Enterprise Co., Ltd. Polytronics Technology Corp Tyco Electronics Corp Raychem Circuit Protection Div. UPI Semiconductor Corp abnormal charging current 10mA. The reverse current protection is accomplished by series circuit of diode (D10) with a 1 K ohm resistor (R143) CR2032 Rated 3 V, maximum abnormal charging current 10mA. The reverse current protection is accomplished by series circuit of diode (D10) with a 1 K ohm SMD1812P150T F/24 minismdc150f/ 24-2 up7533 resistor (R143) 24V, 1.5 A, CA = 3 24V, 1.5 A, CA = 3 Voltage Range: Vdc, Maximum Continuous Current: 1.5A, Protective Current: 3.5A Aluminum part. Overall 85 by 85 by 40 mm. See Enclosure Diagrams for details Aluminum part and copper part. UL 1642 UL, -- UL 1434 UL, -- UL 1434 UL, -- UL Subject 2367 UL, , , -- TRF No.: IEC B

59 Issue Date: Page 58 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict (with insert copper) (Alternate) 05. Heatsink (HS1) 06. Heatsink (for Q15,Q 16,Q 11,Q 12,Q17,Q18,Q19,Q20,Q21,Q23,Q 31,Q32) 07. CPU Fan Delta Electronics Inc. 07a. CPU Fan (Alternate) Overall 85 by 85 by 40.5 mm. See Enclosure Diagrams for details Aluminum. See Enclosure Diagrams for details Aluminum. See Enclosure Diagrams for details. Delta Electronics Inc. AFB0812HHD 12Vdc, 0.24A (maximum 0.4A), CFM AFB0812HD 12Vdc, 0.2A (maximum 0.27A), CFM 1 ) an asterisk indicates a mark which assures the agreed level of surveillance -- --, , -- UL507 UL, -- UL507 UL, -- TRF No.: IEC B

60 Issue Date: Page 59 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict TABLE: electrical data (in normal conditions) Pass fuse # I rated (A) U (V) P (W) I (ma) I fuse (ma) condition/status /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load Alternat e motherb oard, MSI/MS /47Hz Maximum normal Load /63Hz Maximum normal Load /47Hz Maximum normal Load /63Hz Maximum normal Load /47Hz Maximum normal Load /63Hz Maximum normal Load /47Hz Maximum normal Load /63Hz Maximum normal Load /47Hz Maximum normal Load /63Hz Maximum normal Load /47Hz Maximum normal Load /63Hz Maximum normal Load /47Hz Maximum normal Load /63Hz Maximum normal Load /47Hz Maximum normal Load /63Hz Maximum normal Load Alternate Models MS-6415xxxxxx and Hetis 800xxxxxx, Mainboard, MS-7259; Switching power supply source, FSP Group Inc., type FSP250-50MSP: With TRF No.: IEC B

61 Issue Date: Page 60 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict power, Delta, DPS- 250AB- 7 XX, and main board MS F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA TRF No.: IEC B

62 Issue Date: Page 61 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /63Hz Maximum normal load with VGA With power, Delta, DPS- 250AB- 7 XX, and main board MS F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI TRF No.: IEC B

63 Issue Date: Page 62 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI With power FSP and main board MS F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA TRF No.: IEC B

64 Issue Date: Page 63 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA With power, FSP, FSP250-50MSP, and main board MS F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI TRF No.: IEC B

65 Issue Date: Page 64 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI With power, Delta, DPS- 250AB- 7 XX, and main board MS F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA TRF No.: IEC B

66 Issue Date: Page 65 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA With power, Delta, DPS- 250AB- 7 XX, and main board MS F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI TRF No.: IEC B

67 Issue Date: Page 66 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI With power, FSP, FSP250-50MSP, and main board MS F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA TRF No.: IEC B

68 Issue Date: Page 67 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA With power, FSP, FSP250-50MSP, and main board MS F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI TRF No.: IEC B

69 Issue Date: Page 68 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI Alternate Mainboard, MS-7331 for Models MS-6439XX and Hetis 900; CPU Fan source, Delta, type AFB0812HD, for Mainboard MS and MS-7331: Test With power, Delta, type DPS250AB-7XX and main board type MS-7331: F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA TRF No.: IEC B

70 Issue Date: Page 69 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA Test With power, Delta, type DPS250AB-7XX and main board type MS-7331: F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI TRF No.: IEC B

71 Issue Date: Page 70 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI Test with power FSP, type FSP250-50MSP, and main board MS-7331: F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA TRF No.: IEC B

72 Issue Date: Page 71 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA Test with power FSP, type FSP250-50MSP, and main board MS-7331: F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI TRF No.: IEC B

73 Issue Date: Page 72 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load with DVI F /63Hz Maximum normal load with DVI Test with power by FSP and main board MS-7334 F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA Alternate Mainboard source, Type TRF No.: IEC B

74 Issue Date: Page 73 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict MS-7407 for two new Models MS- 6470XX and Heits G31XX: (Test with power FSP and main board MS-7407) F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA F /47Hz Maximum normal load with VGA F /63Hz Maximum normal load with VGA Revised main board connecter circuit of MSI., P/N MS-7334 on project 07CA TRF No.: IEC B

75 Issue Date: Page 74 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load Revised main board connecter circuit of MSI, P/N MS-7407 on project 07CA50270 F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load F /47Hz Maximum normal load F /63Hz Maximum normal load For report E A46-4, reissue Alternate mainboard, MSI/MS- 7430, test with power FSP/FSP250-50MSP /47Hz Maximum normal load /63Hz Maximum normal load TRF No.: IEC B

76 Issue Date: Page 75 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load Alternate mainboard, MSI/MS- 7430, test with power Delta/ DPS- 250AB /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load /47Hz Maximum normal load /63Hz Maximum normal load supplementary information: -- Maximum normal load: Connected to rated input, and set up a soft program to force HDD, CD-ROM /DVD- ROM reading /writing, CPU loading to 100%. USB, PS/2 and IEEE 1394 outputs are loaded at rated load, and operated continuously. -- For Alternate Mainboard, MS-7331 for Models MS-6439XX and Hetis 900; CPU Fan source, Delta, type AFB0812HD, for Mainboard MS-7259 and MS-7331: Maximum normal load: Connected to TRF No.: IEC B

77 Issue Date: Page 76 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict rated input, and set up a soft program to force HDD, CD-ROM /DVD-ROM reading /writing, CPU loading to 100%. USB, PS/2 outputs are loaded at rated load, and operated continuously and clearance cl and creepage distance dcr at/of: TABLE: clearance and creepage distance measurements Up (V) U r.m.s. (V) required cl (mm) cl (mm) required dcr (mm) dcr (mm) supplementary information: TABLE: distance through insulation measurements distance through insulation di at/of: Up (V) test voltage (V) required di (mm) di (mm) supplementary information: 4.5 TABLE: temperature rise measurements Pass test voltage (V)... See below t1 ( C) t2 ( C) maximum temperature T of part/at: T ( C) allowed Tmax ( C) Test Voltage 90 V/ 135 V/ 180 V/ 254 V/ Hz 63 Hz 63 Hz 63 Hz 01. PFC Inductor FL2 coil T1 coil L1 coil (near CX1) FL1 coil (near CX3) HDD body Heatsink body of CPU (near mainboard) Heatsink body of U Heatsink body of Q Enclosure outside (metal) TRF No.: IEC B

78 Issue Date: Page 77 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 11. Enclosure outside (front panel) DVD-ROM body BAT (RTC) body (near mainboard) Ambient Alternate motherboard, MSI/MS Vac/4 7 Hz (Shift to 40) 90 V ac, 63 Hz (Shift to 40) 254 V ac, 47 Hz (shift to 40) 254 V ac, 63 Hz (shift to 40) PFC Inductor 42.1( 58.7) 43.2(61. 2) 39.5(56. 5) 39.7(57) FL2 coil 46.1( 45.2( ( ( ) 2) 6) 7) 03. T1 coil 24.3( 23.2( ( ( ) 2) 1) 1) 04. L1 coil (near CX1) 56.3( 57.2( ( ( ) 2) 1) 6) 05. FL1 coil (near CX3) 45.6( 46.2( ( ( ) 2) 8) 8) 06. HDD body 37.0( 36.6( ( ( ) 6) 5) 5) 07. Heatsink Body of CPU 34.5( 51.1) 33.8(51. 8) 33.6(50. 6) 34.1(51. 4) Heatsink body of SB 40.0( 56.6) 40(58) 39.4(56. 4) 40(57.3) Heatsink body of Q ( 37(55) 37.4( ( ) 4) 5) 10. Enclosure outside (metal) 29.4( 46) 28.1(46. 1) 28.6(45. 6) 28.2(45. 5) Enclosure outside (front panel) 29.1( 45.7) 26.7(44. 7) 29.1(46. 1) 28(45.3) DVD-Rom body 23.7( 22.1(40. 23(40) 22.9( ) 1) 2) 13. BAT (RTC) body 32.6( 49.2) 32.1(50. 1) 32.3(49. 3) 32.5(49. 8) PCB (near CPU&SB) 35.3( 34.6(52. 35(52) 35(52.3) ) 6) 15.Ambient 23.4( 40) 22(40) 23(40) 22.7(40) Test Duration 3.6 hrs 1.95 hrs 2.18 hrs 1.78 hrs Alternate Models MS-6415xxxxxx and Hetis 800xxxxxx, Mainboard, MS-7259; Switching power supply source, FSP Group Inc., type FSP250-50MSP: (Test with System Fan, Sunonwealth, KDE1206PHV2) With power Delta, main board MS-7231 and TRF No.: IEC B

79 Issue Date: Page 78 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict heat sink (Aluminum part and copper part) Orientation: Horizontal Test voltage:90vac, duration:1hr 90Va c 01.Ambient 26.4 (Meas ured) 264Vac -- 90Vac 264Vac (Shifted) PFC Inductor FL2 coil T1 coil L1 coil (near CX1) FL1 coil (near CX3) HDD body Heat sink body of CPU Heat sink body of SB Heat sink body of Q Enclosure outside (Metal) Enclosure outside (Front panel) DVD-ROM body BAT (RTC) body PWB near CPU and SB With power Delta, main board MS-7231 and heat sink (Aluminum part only) Orientation: Horizontal Test voltage:90v/264vac, duration:2 / 1hr 90Va c 01.Ambient 26.1 (Meas ured) Vac -- 90Vac 264Vac (Measur ed) (Shifted) 40.0 (Shifted) 02.PFC Inductor FL2 coil T1 coil L1 coil (near CX1) FL1 coil (near CX3) HDD body Heat sink body of CPU Heat sink body of SB Heat sink body of Q Enclosure outside (Metal) Enclosure outside (Front panel) DVD-ROM body BAT (RTC) body PWB near CPU and SB With power Delta, main board MS-7231 and heat sink (Aluminum part only) Orientation: Vertical Test voltage:90v/264vac, duration:1 / 1hr 90Va 264Vac -- 90Vac 264Vac TRF No.: IEC B

80 Issue Date: Page 79 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict c 01.Ambient 26.4 (Meas ured) 26.6 (Measur ed) (Shifted) 40.0 (Shifted) 02.PFC Inductor FL2 coil T1 coil L1 coil (near CX1) FL1 coil (near CX3) HDD body Heat sink body of CPU Heat sink body of SB Heat sink body of Q Enclosure outside (Metal) Enclosure outside (Front panel) DVD-ROM body BAT (RTC) body PWB near CPU and SB With power FSP, main board MS-7231 and heat sink (Aluminum part only) Orientation: Horizontal Test voltage:90v/264vac, duration:1.5 / 1hr 90Va c 01.Ambient 27.5 (Meas ured) Vac -- 90Vac 264Vac (Measur ed) (Shifted) 40.0 (Shifted) 02.Inlet (Line) CY1 body CX1 body FL1 coil FL2 coil CY2 body FL3 coil CX2 body PWB under BD CY3 body C1 body Heat sink near Q T1 Primary coil T1 Secondary coil T1 core T2 Primary coil T2 Secondary coil T2 core T3 Primary coil T3 Secondary coil T3 core TRF No.: IEC B

81 Issue Date: Page 80 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 23.IC2 body Heat sink near BD L1 coil L3 coil PFC coil HDD body Heat sink body of CPU Heat sink body of SB Heat sink body of Q Enclosure outside (Metal) Enclosure outside (Front panel) DVD-ROM body BAT (RTC) body PWB near CPU and SB With power FSP, main board MS-7231 and heat sink (Aluminum part only) Orientation: Vertical Test voltage:90v/264vac, duration:1 / 1hr 90Va 264Vac -- 90Vac 264Vac -- c 01.Ambient 26.9 (Meas ured) 27.1 (Measur ed) (Shifted) 40.0 (Shifted) 02.Inlet (Line) CY1 body CX1 body FL1 coil FL2 coil CY2 body FL3 coil CX2 body PWB under BD CY3 body C1 body Heat sink near Q T1 Primary coil T1 Secondary coil T1 core T2 Primary coil T2 Secondary coil T2 core T3 Primary coil T3 Secondary coil T3 core IC2 body Heat sink near BD L1 coil L3 coil TRF No.: IEC B

82 Issue Date: Page 81 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 27.PFC coil HDD body Heat sink body of CPU Heat sink body of SB Heat sink body of Q Enclosure outside (Metal) Enclosure outside (Front panel) DVD-ROM body BAT (RTC) body PWB near CPU and SB Alternate Mainboard, MS-7331 for Models MS- 6439XX and Hetis 900; CPU Fan source, Delta, type AFB0812HD, for Mainboard MS and MS-7331: Test With power, Delta, type DPS250AB-7XX; main board MS-7259; DC Fan Delta (AFB0812HD) and heat sink (Aluminum part and copper part) duration: 2hr Orient ation: Vertic al 90Va c Ambient 22.9 (Meas ured) Orientati on: Horizont al Vac -- 90Vac 90Vac (Shifted) (Measur ed) 40.0 (Shifted) For Main board: PWB near U PWB near U PWB near BIOS PWB near CPU HDD DVD-ROM body BAT (RTC) body For Power board: AC Inlet PFC coil FL2 coil T1 coil L1 coil FL1 coil For other parts: Enclosure outside near power (Metal) Enclosure outside (Plastic) Test With power, Delta, type DPS250AB-7XX; main board MS-7259; DC Fan Delta (AFB0812HD) and heat sink (Aluminum part and copper part) duration: 2hr Orient ation: Vertic al 264V ac Orientati on: Horizont al Vac Vac 264Vac -- TRF No.: IEC B

83 Issue Date: Page 82 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict Ambient 23.3 (Meas ured) 40.0 (Shifted) (Measur ed) 40.0 (Shifted) For Main board: PWB near U PWB near U PWB near BIOS PWB near CPU HDD DVD-ROM body BAT (RTC) body For Power board: AC Inlet PFC coil FL2 coil T1 coil L1 coil FL1 coil For other parts: Enclosure outside near power (Metal) Enclosure outside (Plastic) Test with power FSP, type FSP250-50MSP, main board MS-7259, DC Fan Delta (AFB0812HD) and heat sink (Aluminum part only) Orient ation: Vertic al duration: 2hr 90Va c Ambient 24.9 (Meas ured) Orientati on: Horizont al Vac -- 90Vac 90Vac (Shifted) (Measur ed) 40.0 (Shifted) For Main board: PWB near U PWB near U PWB near BIOS PWB near CPU HDD DVD-ROM body BAT (RTC) body For Power board: AC Inlet FL1 coil FL2 coil FL3 coil T1 coil T1 core T2 coil T2 core TRF No.: IEC B

84 Issue Date: Page 83 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict T3 coil T3 core For other parts: Enclosure outside near power (Metal) Enclosure outside (Plastic) Test with power FSP, type FSP250-50MSP, main board MS-7259, DC Fan Delta (AFB0812HD) and heat sink (Aluminum part only) Orient ation: Vertic al Duration: 2hr 264V ac Ambient 24.8 (Meas ured) Orientati on: Horizont al Vac Vac 264Vac (Shifted) (Measur ed) 40.0 (Shifted) For Main board: PWB near U PWB near U PWB near BIOS PWB near CPU HDD DVD-ROM body BAT (RTC) body For Power board: AC Inlet FL1 coil FL2 coil FL3 coil T1 coil T1 core T2 coil T2 core T3 coil T3 core For other parts: Enclosure outside near power (Metal) Enclosure outside (Plastic) Alternate Mainboard source, Type MS-7407 for two new Models MS-6470XX and Heits G31XX: (Test With Power: FSP, Main Board: MS-7407 and Heat Sink: Aluminum Part without copper part) Test Voltage and Condition Va c, Vertic al (Test) 90Vac, Vertical (Shift) 90Vac, Horizont al (Test) 90Vac, Horizont al (Shift) Ambient TRF No.: IEC B

85 Issue Date: Page 84 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict PWB under CPU PWB under U PWB under U PWB under U RTC battery body HDD body DVD-ROM body CHOKE 3 coil Hear sink G19 body Metal enclosure outside near Power Plastic enclosure inside near USB Plastic enclosure outside near USB AC inlet CY1 body CX1 body FL1 coil FL2 coil CY2 body FL3 coil CX2 body PWB near BD CY3 body C1 body Heat sink near Q T1 coil T1 core T2 coil T2 core T3 coil T3 core IC2 body Hear sink near BD L1 coil L3 coil PFC coil (Test With Power: FSP, Main Board: MS-7407 and Heat Sink: Aluminum Part without copper part) Test Voltage and Condition 140V ac, Horiz ontal (Test) 140Vac, Horizont al (Shift) 140Vac, Vertical (Test) 140Vac, Vertical (Shift) Ambient PWB under CPU PWB under U PWB under U TRF No.: IEC B

86 Issue Date: Page 85 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict PWB under U RTC battery body HDD body DVD-ROM body CHOKE 3 coil Hear sink G19 body Metal enclosure outside near Power Plastic enclosure inside near USB Plastic enclosure outside near USB AC inlet CY1 body CX1 body FL1 coil FL2 coil CY2 body FL3 coil CX2 body PWB near BD CY3 body C1 body Heat sink near Q T1 coil T1 core T2 coil T2 core T3 coil T3 core IC2 body Hear sink near BD L1 coil L3 coil PFC coil (Test With Power: FSP, Main Board: MS-7407 and Heat Sink: Aluminum Part without copper part) Test Voltage and Condition 180V ac, Vertic al (Test) 180Vac, Vertical (Shift) 180Vac, Horizont al (Test) 180Vac, Horizont al (Shift) Ambient PWB under CPU PWB under U PWB under U PWB under U RTC battery body HDD body TRF No.: IEC B

87 Issue Date: Page 86 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict DVD-ROM body CHOKE 3 coil Hear sink G19 body Metal enclosure outside near Power Plastic enclosure inside near USB Plastic enclosure outside near USB AC inlet CY1 body CX1 body FL1 coil FL2 coil CY2 body FL3 coil CX2 body PWB near BD CY3 body C1 body Heat sink near Q T1 coil T1 core T2 coil T2 core T3 coil T3 core IC2 body Hear sink near BD L1 coil L3 coil PFC coil (Test With Power: FSP, Main Board: MS-7407 and Heat Sink: Aluminum Part without copper part) Test Voltage and Condition 264V ac, Horiz ontal (Test) 264Vac, Horizont al (Shift) 264Vac, Vertical (Test) 264Vac, Vertical (Shift) Ambient PWB under CPU PWB under U PWB under U PWB under U RTC battery body HDD body DVD-ROM body CHOKE 3 coil Hear sink G19 body TRF No.: IEC B

88 Issue Date: Page 87 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict Metal enclosure outside near Power Plastic enclosure inside near USB Plastic enclosure outside near USB AC inlet CY1 body CX1 body FL1 coil FL2 coil CY2 body FL3 coil CX2 body PWB near BD CY3 body C1 body Heat sink near Q T1 coil T1 core T2 coil T2 core T3 coil T3 core IC2 body Hear sink near BD L1 coil L3 coil PFC coil For Report E A46-4 Re-issue, alternate mainboard, MSI, MS Orientation: Horizontal (for PSU: FSP/ FSP250-50MSP) 90 V, 47 Hz, durati on: 1hr 58min s 90 V, 47 Hz, duration: 1hr 58mins (Shift 40 degree C) 264V, 63Hz, duration: 2hrs 35mins 264V, 63Hz, duration: 2hrs 35mins (Shift 40 degree C) Ambient PSU CY PSU T1 coil PSU T2 coil PSU T3 coil Enclosure outside near power(metal) PSU FL1 body PWB near U HDD Enclosure outside near USB (Plastic) TRF No.: IEC B

89 Issue Date: Page 88 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 21.RTC body PWB near CPU DVD-ROM body PWB near U PWB near U Orientation: Vertical (for PSU: FSP/ FSP250-50MSP) 90 V, 47 Hz, durati on: 1hr 57min s 90 V, 47 Hz, duration: 1hr 57mins (Shift 40 degree C) Ambient PSU CY PSU T1 coil PSU T2 coil PSU T3 coil Enclosure outside near power(metal) PSU FL1 body PWB near U HDD Enclosure outside near USB (Plastic) RTC body PWB near CPU DVD-ROM body PWB near U PWB near U Orientation: Horizontal (for PSU: Delta/ DPS-250AB-7B) 90 V, 47 Hz, durati on: 1hr 57min s 90 V, 47 Hz, duration: 1hr 57mins (Shift 40 degree) Ambient PSU PFC PSU T1 coil PSU FL2 coil PSU L1 coil Enclosure outside near power(metal) PSU FL1 body PWB near U HDD Enclosure outside near USB (Plastic) RTC body TRF No.: IEC B

90 Issue Date: Page 89 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 22.PWB near CPU DVD-ROM body PWB near U PWB near U temperature T of winding: R 1 (Ω) R 2 ( Ω) T ( C) allowed Tmax ( C) supplementary information: insulation class - The actually measured ambient: 90 V/ 63Hz =>30 C; 135 V/ 63Hz =>29.4 C. 180 V/ 63Hz =>27.3 C; 254 V/ 63Hz =>28.6 C. - The temperatures were measured under worst case normal as described in at voltages described in The worst case normal is defined with full rated dc-load (at constant power output). - The installation manual defines 40 C maximum ambient temperatures; therefore, the max. temperature listed as follows: Winding components: (In R/C Power Supply, Delta Electronics Inc., Type DPS-250AB-7 XX) - Class B (T1) =>Tmax = 120 C - 10 C =110 C. Components with: - Tmax = 130 C, Inductor ( FL1, FL2, L1). - Tmax = 110 C, PFC Inductor. - Tmax =105 C: PWB. - Tmax =95 C, user's accessible plastic cover. - Tmax =70 C, user's accessible metal chassis. - when no class of insulation is given, min. insulation 105 C assumed. Alternate Models MS-6415xxxxxx and Hetis 800xxxxxx, Mainboard, MS-7259; Switching power supply source, FSP Group Inc., type FSP250-50MSP: (Test with System Fan, Sunonwealth, KDE1206PHV2) Winding components: -With Power (Delta, Type DPS-250AB-7 XX): - Tmax 110 degree C (PFC Inductor, T1) - Tmax 130 degree C (FL2, L1, FL1) - Tmax 105 degree C (Heat sink, PWB) - With Power (FSP, type FSP250-50MSP): - Tmax 70 degree C (Inlet) - Tmax 85 degree C (CY1, CX1, CY2, CX2, CY3, C1) - Tmax 105 degree C (FL1, FL2, FL3, L1, L3) - Tmax 130 degree C (PWB, Heat sink, PFC) - Tmax 110 degree C (T1, T2, T3) - Tmax 100 degree C (IC2) - With main board MS Tmax 70 degree C (Metal enclosure outside) - Tmax 95 degree C (Plastic enclosure outside) TRF No.: IEC B

91 Issue Date: Page 90 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict - Tmax 105 degree C (Heat sink, RTC battery, PWB) Alternate Mainboard source, Type MS-7407 for two new Models MS-6470XX and Heits G31XX: (Test With Power: FSP, Main Board: MS-7407 and Heat Sink: Aluminum Part without copper part) - With Power (FSP): - Tmax 70 degree C (Inlet) - Tmax 85 degree C (CY1, CX1, CY2, CX2, CY3, C1) - Tmax 100 degree C (IC2) - Tmax 105 degree C (FL1, FL2, FL3, L1, L3) - Tmax 110 degree C (T1, T2, T3) - Tmax 130 degree C (PWB, Heat Sink, PFC) - - With main board MS Tmax 70 degree C (Metal enclosure outside) - Tmax 95 degree C (Plastic enclosure outside) - Tmax 100 degree C (RTC battery) - Tmax 105 degree C (Heat Sink, PWB, CHOKE 3) TABLE: ball pressure test of thermoplastics allowed impression diameter (mm)... : part test temperature ( C) impression diameter (mm) supplementary information: 4.7 TABLE: resistance to fire Pass part manufacturer of material type of material thickness(mm) flammability class Enclosure -- Metal supplementary information: 5.2 TABLE: electric strength tests, impulse tests and voltage surge tests Pass test voltage applied between: test voltage (V) a.c./d.c. Primary to secondary accessible connector 4242 Vdc No Primary to Metal Enclosure (Earthed) 2877 Vdc No breakdown Yes / No TRF No.: IEC B

92 Issue Date: Page 91 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict Alternate Power, FSP, type FSP250-50MSP: Primary and Secondary 4242 Vdc No Primary and Ground 3000 Vdc No Alternate Mainboard, MS-7331 for Models MS-6439XX and Hetis 900; CPU Fan source, Delta, type AFB0812HD, for Mainboard MS-7259 and MS-7331; Alternate Mainboard, MS for Models MS-6441XX and Hetis 965XX. Primary and Secondary 4242 Vdc No Primary and Ground 3000 Vdc No Alternate Mainboard source, Type MS-7407 for two new Models MS-6470XX and Heits G31XX: Primary to SELV 4242 Vdc No Primary to Plastic Enclosure with metal foil 4242 Vdc No Primary to Metal Enclosure 3000 Vdc No Revised main board connecter circuit of MSI., P/N MS-7334 on project 07CA Primary to SELV 4242 Vdc No Primary and Ground 3000 Vdc No Primary to Plastic Enclosure with metal foil 4242 Vdc No Revised main board connecter circuit of MSI, P/N MS-7407 on project 07CA50270 Primary to SELV 4242 Vdc No Primary and Ground 3000 Vdc No Primary to Plastic Enclosure with metal foil 4242 Vdc No For Report E A46-4 Re-issue, alternate mainboard, MSI, MS Primary to SELV 4242 Vdc No Primary and Ground 3000 Vdc No Primary to Plastic Enclosure with metal foil 4242 Vdc No supplementary information: - The test was conducted immediately after the Abnormal Operator Test and Connectors overload test. 5.3 TABLE: fault condition tests Pass component No. ambient temperature ( C)... : See below l/type of power supply... : DPS-250AB-7 XX manufacturer of power supply... : Delta Electronics Inc rated markings of power supply... : Vac / Vac, 6 A / 3 A, 47/63 Hz fault test voltage (V) test time fuse No. fuse current (A) Before tests please see Enclosure-Miscellaneous 7- result TRF No.: IEC B

93 Issue Date: Page 92 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict 07 for detail For Report E A46-4 Re-issue, alternate mainboard, MSI, MS Abnormal Operation Test System FAN Stalled 240 Vac 204 min NB, NC, NT. No hazard. No damage. Maximum temperature of PSU FL1 body=58.7 degree C, PSU T1coil=49.6, PSU T2coil=46.4, PSU T3 coil =49.0 degree C, PSU CY3 coil =43.4 degree C, Ambient =27.2 degree C CPU FAN Stalled 240 Vac 187 min NB, NC, NT. No hazard. No damage. Unit shut down after 10 min. Maximum temperature of PWB near U10 =68 degree C. PSU FL1 body=37.5 degree C, PSU T1coil=38.0, PSU T2coil=41.8, PSU T3 coil =48.6 degree C, PSU CY3 coil =36.5 degree C, Ambient =26.9 degree C PSU FAN Stalled 240 Vac 254 min NB, NC, NT. No hazard. No damage. Maximum temperature PSU FL1 body=129.8 degree C, PSU T1coil=99.3, PSU T2coil=46.4, PSU T3 coil =49.0 degree C, PSU CY3 coil =43.4 degree C, Ambient =26.9 degree C Opening Blocked 240 Vac 167 min NB, NC, NT. No hazard. No damage. Maximum temperature PSU FL1 body=79.5 degree C, PSU T1coil=68.2, PSU T2coil=66.7, PSU T3 coil =68.4 degree C, PSU CY3 coil =60.5 degree C, Ambient =26.2 degree C Overload of Operator Accessible Connector Test Audio Port A, B, Overload 240 Vac Open circuit 0V, Max, available current 0mA; TRF No.: IEC B

94 Issue Date: Page 93 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict D-F Audio Port C DVI Pin1-5, 8-13,15-24 DVI Pin6, 7 RS232(Up) Pin 1-9 RS232(Do wn) Pin 1-9 VGA Pin7 VGA Pin11, 14 VGA Pin1-6, 8-10,12,13 ESATA Pin1-7 Audio (front) Port A, B RJ45 Pin1-8 Comments: B Overload 240 Vac Open circuit 2.64V, Max, available current 0mA; Comments: C Overload 240 Vac Open circuit 0V, Max, available current 0mA; Comments: B Overload 240 Vac Open circuit 4.97V, Max, available current 0mA; Comments: C Overload 240 Vac Open circuit 0V, Max, available current 0mA; Comments: B Overload 240 Vac Open circuit 0V, Max, available current 0mA; Comments: B Overload 240 Vac 1 hrs Open circuit 5.02V, Max, available current 2670mA; Comments: NC, NB, NT Overload 240 Vac Open circuit 4.99V, Max, available current 0mA; Comments: C Overload 240 Vac Open circuit 0V, Max, available current 0mA; Comments: B Overload 240 Vac Open circuit 0V, Max, available current 0mA; Comments: B Overload 240 Vac Open circuit 0V, Max, available current 0mA; Comments: B Overload 240 Vac Open circuit 0V, Max, available current 0mA; Comments: B Lithium Battery Reverse Current Measurement Test D10 Pin Z to Pin X Short 240Vac Abnormal reverse current is 3.33 ma R143 Short 240 Vac Abnormal reverse current is 0 ma supplementary information: The following Electric Strength (ES) potentials were applied after fault condition were indicated for one minute: - A. Primary to Earth (Metal Frame)-> 2877 V dc. - B. Primary to SELV connectors -> 4242 V dc. Comments Key: - IP = Internal protection operated (component indicated), - CT = Constant temperatures were obtained, - CD = Components damaged (damaged components indicated), - NB = No indication of dielectric breakdown, - NC = Cheesecloth remained intact, - NT = Tissue paper remained intact, - B = Circuit measures less than 12 TRF No.: IEC B

95 Issue Date: Page 94 of 94 Report Reference # E A46-CB-4 Clause Requirement + Test Result - Remark Verdict ma. - C = Circuit measures O Volts For report E A46, Re-issue 4 The following Electric Strength (ES) potentials were applied after fault condition were indicated for one minute: - A. Primary to Earth (Metal Frame)-> 3000 V dc. - B. Primary to SELV connectors -> 4242 V dc. Comments Key: - CT = Constant temperatures were obtained, - CD = Components damaged (damaged components indicated), - NB = No indication of dielectric breakdown, - NC = Cheesecloth remained intact, - NT = Tissue paper remained intact, - C = Circuit measures less than 12 ma. - B = Circuit measures O Volts TRF No.: IEC B

96 Issue Date: Page 1 of 27 Report Reference # E A46-CB-4 Enclosure National Differences Argentina* Australia / New Zealand Austria** Belgium** China* Czech Republic** Denmark Finland France** Germany Greece** Group Hungary* India* Israel* Italy* Japan* Kenya* Korea Malaysia* Netherlands** Norway Poland* Singapore* Slovakia** Slovenia* Sweden Switzerland** USA / Canada United Kingdom * No National Differences Declared ** Only Group Differences

97 Issue Date: Page 2 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Australia / New Zealand - Differences to :2001, First Edition POTENTIAL IGNITION SOURCE Possible fault which can starts a fire if the opencircuit voltage measured across an interruption or faulty contact exceeds a value of 50 V (peak) a.c. or d.c. and the product of the peak value of this voltage and the measured r.m.s. current under normal operating conditions exceeds 15VA. Such a faulty contact or interruption in an electrical connection includes those which may occur in conductive patterns on printed boards. Note 201: An electronic protection circuit may be used to prevent such a fault from becoming a POTENTIAL IGNITION SOURCE Add to the first paragraph: "or the relevant Australian / New Zealand Standard" Add to the first and third dashed items after the words "IEC Component Standard": "or the relevant Australian / New Zealand Standard" Add: AC power distribution systems classified as TT or IT are not allowed Add to the first paragraph: All safety instructions and safety markings shall be in English Substitute for Table 3B: Sizes of Conductors Rated Nominal Current of cross-sectional Equipment area (A) (mm²) <= 3 0.5* 3 <= <= 10 (0.75) <= 16 (1,0) <= <= <= <= <= <= <= <= <= <= <= Pass Pass

98 Issue Date: Page 3 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict 260 <= <= <= <= * This nominal cross-sectional area is only allowed for Class II appliances if the length of the power supply cord, measured between the point where the cord or cord guard, enters the appliance, and the entry to the plug, does not exceed 2 m (0.5 mm² three-core supply flexible cords are not permitted; see Note 2 to Table 2.17 of AS/NZS 3191) Replace the third paragraph: Equipment with a plug portion, suitable for insertion into a 10 A 3-pin flat-pin socket-outlet complying with AS/NZS 3112, shall comply with the requirements in AS/NZS 3112 for equipment with integral pins for insertion into socket-outlets For the purpose of this standard compliance with AS/NZS is deemed to be compliance with IEC Add after the clause: For alternative resistance to fire tests, refer to Annex YY Replace item c) with: An SELV circuit, a TNV-2 circuit or a Limited Current Circuit provided for connection of other equipment. The requirement for separation applies whether or not this circuit is accessible Replace the first paragraph by: In Australia (not in New Zealand), compliance with is checked by the tests of both and Replace with: In Australia (not in New Zealand), the electrical separation is subjected to 10 impulses of alternating polarity, using the impulse test generator of Annex N for 10/700µs impulses. The interval between successive impulses is 60 s and the initial voltage, Uc is: - for 6.2.1a): 7.0 kv for hand-held telephones and for headsets; 2.5 kv for other equipment; for 6.2.1b) and 6.2.1c): 1.5 kv.

99 Issue Date: Page 4 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict NOTE 1 - The 7 kv impulse is to simulate lightning surges on typical rural and semi-rural network lines. NOTE 2 - The value of 2.5 kv for 6.2.1a) was chosen to ensure adequacy of the insulation concerned and does not necessarily simulate likely overvoltages Replace the first and second paragraphs of with: In Australia (not New Zealand), the electrical separation is subjected to an electric strength test according to The a.c. test voltage is: - for 6.2.1a) 3 kv - for 6.2.1b) and 6.2.1c) 1.5 kv NOTE 1 - Where there are capacitors across the insulation under test, it is recommended that d.c. test voltages are used. NOTE 2 - The 3 kv and 1.5 kv values have been determined considering the low frequency induced voltages from the power supply distribution system.

100 Issue Date: Page 5 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Denmark - Differences to :2001, First Edition Certain types of Class I appliances (see sub-clause ) may be provided with plug not establishing earthing continuity when inserted into Danish socket-outlets Supply cords of Class I equipment, which is delivered without a plug, must be provided with a visible tag with the following text: Pass "Vigtigt! Lederen med grøn/gul isolation må kun tilsluttes en klemme mærket (IEC 417, No. 5019) eller (IEC 417, No. 5017)." If essential for the safety of the equipment, the tag must in addition be provided with a diagram, which shows the connection of the other conductors, or be provided with the following text: "For tilslutning af de øvrige ledere, se medfølgende installationsvejledning" Socket-outlets for providing power to other equipment shall be in accordance with the Heavy Current Regulations, Section D1, Standard Sheet DK 1-3a, DK 1-5a or DK 1-7a, when used on Class I equipment. For stationary equipment, the socket0outlet shall be in accordance with Standard Sheet DK 1-1b or DK 1-5a Class II equipment shall not be fitted with socketoutlets for providing power to other equipment Supply cord of single-phase equipment having a rated current not exceeding 13 A shall be provided with a plug according to the Heavy Current Regulations, Section D1. Class I equipment provided with socket-outlets with earth contact or which are intended to be used in locations where protection against indirect contact is required according to the wiring rules shall be provided with a plug in accordance with standard sheet DK 2-1a or DK 2-5a. If poly-phase equipment and single-phase equipment having a rated current exceeding 13 A is provided with a supply cord with a plug, this plug shall be in accordance with the Heavy Current

101 Issue Date: Page 6 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Regulations, Section D1 or EN

102 Issue Date: Page 7 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Finland - Differences to :2001, First Edition Class I Pluggable Equipment Type A intended for connection to other equipment or a network shall, if safety relies on connection to protective earth or if surge suppressors are connected between the network terminals and accessible parts, have a marking stating that the equipment must be connected to an earthed mains socket-outlet. The marking text shall be: "Laite on liitettävä suojamaadoituskoskettimilla varustettuun pistorasiaan" Add the following text between the first and second paragraph: If this insulation is solid, including insulation forming part of a component, it shall at least consist of either - two layers of thin sheet material, each of which shall pass the electric strength test below, or - one layer having a distance through insulation of at least 0.4 mm, which shall pass the electric strength test below. If this insulation forms part of a semiconductor component (e.g. an optocoupler), there is no distance through insulation requirement for the insulation consisting of an insulating compound completely filling the casing, so that clearances and creepage distances do not exist, if the component passes the electric strength test in accordance with the compliance clause below and in addition: - passes the tests and inspection criteria of IEC , with an electric strength test of 1.5 kv multiplied by 1.6 (the electric strength test of shall be performed using 1.5 kv), and - is subject to routing testing for electric strength during manufacturing, using a test voltage of 1.5 kv. It is permitted to bridge this insulation with a capacitor complying with IEC :1993, subclass Y2. A capacitor classified Y3 according to IEC :1993, may bridge this insulation under the following conditions: - the insulation requirements are satisfied by having a capacitor classified Y3 as defined by IEC , which in addition to the Y3 testing, is tested with an impulse test of 2,5 kv defined in EN

103 Issue Date: Page 8 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict , subclause ; - the additional testing shall be performed on all the test specimens as described in IEC ; - the impulse test of 2,5 kv is to be performed before the endurance test in IEC , in the sequence of tests as described in IEC The exclusions are applicable for permanently connected equipment and pluggable equipment type B and equipment intended to be used in a restricted access location where equipotential bonding has been applied, e.g. in a telecommunication centre, and which has provision for a permanently connected protective earthing conductor and is provided with instructions for the installation of that conductor by a service person. 7.1 Requirements according to this annex, and apply with the term telecommunication network in being replaced by the term cable distribution system.

104 Issue Date: Page 9 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Germany - Differences to :2001, First Edition (Gesetz uber technische Arbeitsmittel (Garatesicherheitsgesetz) [Law of technical labour equipment {Equipment safety law}], of 23rd October 1992, Article 3, 3rd paragraph, 2nd sentence, together with the "Allgemeine Verwaltungsvorschrift zur Durchfuhrung des Zweiten Abschritts des Geratesicherheitsgesetzes" [General administrative regulation on the execution of the Second Section of the Equipment safety law], of 10th January 1996, article 2, the paragraph, item 2). Directions for use with rules to prevent certain hazards for (among others) maintenance of the technical labour equipment, also for imported technical labour equipment shall be written in the German language. NOTE: Of this requirement, rules for use even only by service personnel are not exempted. H (Regulation on protection against hazards by X- ray,of 8th January 1987, Article 5 [operation of X- ray emission source], clauses 1 to 4) a) A licence is required by those who operate an X-ray emission source. b) A licence in accordance with Cl. 1 is not required by those who operate an X-ray emission source on which the electron acceleration voltage does not exceed 20 kv if 1) the local dose rate at a distance of 0,1 m from the surface does not exceed 1 µsv/h and 2) it is adequately indicated on the X-ray emission source that i) X-rays are generated ii) the electron acceleration voltage must not exceed the maximum value stipulated by the manufacturer or importer. c) A licence in accordance with Cl. 1 is also not required by persons who operate an X-ray emission source on which the electron acceleration voltage exceeds 20 kv if 1) the X-ray emission source has been granted a type approval and 2) it is adequately indicated on the X-ray emission source that i) X-rays are generated ii) the device stipulated by the manufacturer or importer guarantees that the maximum Reviewed only English markings/instructions. May be provided in other languages when the equipment will be applied for other national certificated.

105 Issue Date: Page 10 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict permissible local dose rate in accordance with the type approval is not exceeded and iii) the electron acceleration voltage must not exceed the maximum value stipulated by the manufacturer or importer. d) Furthermore, a licence in accordance with Cl. 1 is also not required by persons who operate X-ray emission sources on which the electron acceleration voltage does not exceed 30 kv if 1) the X-rays are generated only by intrinsically safe CRTs complying with Enclosure III, No. 6, 2) the values stipulated in accordance with Enclosure III, No. 6.2 are limited by technical measures and specified in the device and 3) it is adequately indicated on the X-ray emission source that the X-rays generated are adequately screened by the intrinsically safe CRT.

106 Issue Date: Page 11 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Group - Differences to :2001, First Edition Replace the subclause as follows: Basic requirements To protect against excessive current, short-circuits and earth faults in primary circuits, protective devices shall be included either as integral parts of the equipment or as parts of the building installation, subject to the following, a), b) and c): a) except as detailed in b) and c), protective devices necessary to comply with the requirements of 5.3 shall be included as parts of the equipment; b) for components in series with the mains input to the equipment such as the supply cord, appliance coupler, r.f.i. filter and switch, short-circuit and earth fault protection may be provided by protective devices in the building installation; c) it is permitted for pluggable equipment type B or permanently connected equipment, to rely on dedicated overcurrent and short-circuit protection in the building installation, provided that the means of protection, e.g. fuses or circuit breakers, is fully specified in the installation instructions. If reliance is placed on protection in the building installation, the installation instructions shall so state, except that for pluggable equipment type A the building installation shall be regarded as providing protection in accordance with the rating of the wall socket outlet Void Replace the first line "(see also 1.4.7)" by "(see also 1.4.8)" Delete NOTE 1, and in table 3A delete the conduit sizes in parentheses Replace: "60245 IEC 53" by "H05 RR-F" "60227 IEC 52" by "H03 VV-F or H03 VVH2-F" "60227 IEC 53" by "H05 VV-F or H05 VVH2-F" In table 3B, replace the first four lines by the following: Up to and including ¹ Over 6 up to and including ² 1.0 Over 10 up to and including ³ 1.5 In the Conditions applicable to table 3B, delete the

107 Issue Date: Page 12 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict words "in some countries" in condition ¹. In Note 1, delete the second sentence In table 3D, delete the fourth line: conductor sizes for 10 to 13 A, and replace with the following: "Over 10 up to and including to to by 4" Delete the fifth line: conductor sizes for 13 to 16A Add the following note: NOTE - Attention is drawn to 1999/519/EC: Council Recommendation on the limitation of exposure of the general public to electromagnetic fields 0 Hz to 300 GHz. Standards taking into account this recommendation are currently under development. General Delete all the "country" notes in the reference document according to the following list: Note Note Note Note Note Note Note Note Note 2, 7, Note 1, Note 2, Note Note Note Note 1, Note Note 1, Note Note Note Note Note Note Note 7 Note Note G2.1 Note 1, 2 H Note 2 H Replace the last paragraph of this annex by: At any point 10 cm from the surface of the operator access area, the dose rate shall not exceed 1 µsv/h (0,1 mr/h) (see note). Account is taken of the background level. Replace the notes as follows: NOTE - These values appear in Directive 96/29/Euratom. Delete Note 2. P Replace the text of this annex by: See annex ZA Pass Q Replace the title of IEC by "Protection of persons and equipment by enclosures - Probes for verification". Add the following notes for the standards indicated: IEC NOTE Harmonized as EN Pass

108 Issue Date: Page 13 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict (Series) (not modified) IEC NOTE Harmonized as HD S4:2000 (modified) IEC NOTE Harmonized as EN 60529:1991 (not modified) IEC NOTE Harmonized as EN 61032:1998 (not modified) IEC NOTE Harmonized as EN 61140:2001 (not modified) ITU-T Recommendation K.31 NOTE in Europe, the suggested document is EN Korea - Differences to :2001, First Edition Addition: Plugs for the connection of the apparatus to the supply mains comply with the Korean requirement (KSC 8305). 7 Addition: EMC - The apparatus shall complies with the relevant CISPR standards.

109 Issue Date: Page 14 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Norway - Differences to :2001, First Edition Due to the IT power system used (see annex V, figure V.7), capacitors are required to be rated for the applicable phase-to-phase voltage (230 V) Class I Pluggable Equipment Type A intended for connection to other equipment or a network shall, if safety relies on connection to protective earth or if surge suppressors are connected between the network terminals and accessible parts, have a marking stating that the equipment must be connected to an earthed mains socket-outlet. The marking text shall be: "Apparatet må tilkoples jordet stikkontakt" Requirements according to this annex, and apply Requirements according to this annex, apply Requirements according to this annex, and apply Requirements according to this annex, and apply Due to the IT power distribution system used (see annex V, figure V.7), the A.C. mains supply voltage is considered to be equal to the line-to-line voltage, and will remain at 230 V in case of a single earth fault Add the following text between the first and second paragraph: Considered as part of power supply. Considered as part of power supply Pass Pass If this insulation is solid, including insulation forming part of a component, it shall at least consist of either - two layers of thin sheet material, each of which shall pass the electric strength test below, or - one layer having a distance through insulation of at least 0.4 mm, which shall pass the electric strength test below. If this insulation forms part of a semiconductor component (e.g. an optocoupler), there is no distance through insulation requirement for the insulation consisting of an insulating compound completely filling the casing, so that clearances and creepage distances do not exist, if the component passes the electric strength test in accordance with

110 Issue Date: Page 15 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict the compliance clause below and in addition: - passes the tests and inspection criteria of IEC , with an electric strength test of 1.5 kv multiplied by 1.6 (the electric strength test of shall be performed using 1.5 kv), and - is subject to routing testing for electric strength during manufacturing, using a test voltage of 1.5 kv. It is permitted to bridge this insulation with a capacitor complying with IEC :1993, subclass Y2. A capacitor classified Y3 according to IEC :1993, may bridge this insulation under the following conditions: - the insulation requirements are satisfied by having a capacitor classified Y3 as defined by IEC , which in addition to the Y3 testing, is tested with an impulse test of 2,5 kv defined in EN , subclause ; - the additional testing shall be performed on all the test specimens as described in IEC ; - the impulse test of 2,5 kv is to be performed before the endurance test in IEC , in the sequence of tests as described in IEC The exclusions are applicable for permanently connected equipment and pluggable equipment type B and equipment intended to be used in a restricted access location where equipotential bonding has been applied, e.g. in a telecommunication centre, and which has provision for a permanently connected protective earthing conductor and is provided with instructions for the installation of that conductor by a service person. 7.1 Requirements according to this annex, and apply with the term telecommunication network in being replaced by the term cable distribution system. G.2.1 Due to the IT power distribution system used (see annex V, figure V.7), the A.C. mains supply voltage is considered to be equal to the line-to-line voltage, and will remain at 230 V in case of a single earth fault.

111 Issue Date: Page 16 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Sweden - Differences to :2001, First Edition (Ordinance (1990:944)) Add NOTE: Switches containing mercury such as thermostats, relays and level controllers are not allowed Class I Pluggable Equipment Type A intended for connection to other equipment or a network shall, if safety relies on connection to protective earth or if surge suppressors are connected between the network terminals and accessible parts, have a marking stating that the equipment must be connected to an earthed mains socket-outlet. The marking text shall be: "Apparaten skall anslutas till jordat uttag" Add the following text between the first and second paragraph: If this insulation is solid, including insulation forming part of a component, it shall at least consist of either - two layers of thin sheet material, each of which shall pass the electric strength test below, or - one layer having a distance through insulation of at least 0.4 mm, which shall pass the electric strength test below. If this insulation forms part of a semiconductor component (e.g. an optocoupler), there is no distance through insulation requirement for the insulation consisting of an insulating compound completely filling the casing, so that clearances and creepage distances do not exist, if the component passes the electric strength test in accordance with the compliance clause below and in addition: - passes the tests and inspection criteria of IEC , with an electric strength test of 1.5 kv multiplied by 1.6 (the electric strength test of shall be performed using 1.5 kv), and - is subject to routing testing for electric strength during manufacturing, using a test voltage of 1.5 kv. It is permitted to bridge this insulation with a capacitor complying with IEC :1993, subclass Y2. A capacitor classified Y3 according to IEC :1993, may bridge this insulation under the following conditions: - the insulation requirements are satisfied by

112 Issue Date: Page 17 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict having a capacitor classified Y3 as defined by IEC , which in addition to the Y3 testing, is tested with an impulse test of 2,5 kv defined in EN , subclause ; - the additional testing shall be performed on all the test specimens as described in IEC ; - the impulse test of 2,5 kv is to be performed before the endurance test in IEC , in the sequence of tests as described in IEC The exclusions are applicable for permanently connected equipment and pluggable equipment type B and equipment intended to be used in a restricted access location where equipotential bonding has been applied, e.g. in a telecommunication centre, and which has provision for a permanently connected protective earthing conductor and is provided with instructions for the installation of that conductor by a service person. 7.1 Requirements according to this annex, and apply with the term telecommunication network in being replaced by the term cable distribution system.

113 Issue Date: Page 18 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict USA / Canada - Differences to :2001, First 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 Pass Pass Pass Pass Pass Pass Pass

114 Issue Date: Page 19 of 27 Report Reference # E A46-CB-4 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 Screw shell of Edison-base lampholder tied to the neutral conductor 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 Other telecommunication signaling systems (e.g., message waiting) than described in 2.3.1(b) are subject to M b 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 b Limits for measurements across 5000 ohm resistor in the event of a single fault are replaced after 200 ms with the limits of M 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 routine testing. Pass

115 Issue Date: Page 20 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict In the event of a single fault, the limits of apply to SELV circuits and accessible conductive parts. 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 neither a) or b) Pass are applicable, the current rating of the circuit is taken as 20 A Capacity of connection between earthing terminal Pass 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 Permissible combinations of internal wiring/external

116 Issue Date: Page 21 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict cable sizes for overcurrent and short circuit protection All interconnecting cables protected against overcurrent and short circuit. Interconnecting cables comply with the relevant requirements of this standard. 3.2 Wiring methods permit connection of equipment to Pass primary power supply in accordance with the NEC and CEC, Part Permitted use for flexible cords and plugs. Pass 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. Power supply cords have attachment plugs rated not less than 125% of the rated current of the equipment. Pass Pass

117 Issue Date: Page 22 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Permanently connected equipment has provision for connecting and securing a field wiring system (i.e. conduit, or leads etc.) per the NEC and CEC, Part Permanently connected equipment may have terminals or leads not smaller than No. 18 AWG (0.82 mm²) and not less than 152 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. Pass Pass Pass

118 Issue Date: Page 23 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict Wire binding screw terminal permitted for connection of No. 10 AWG (5.3 mm²) or smaller conductor if provided with upturned lugs, cupped 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 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) Equipment using replenishable liquids marked to indicate type of liquid to be used Equipment that produces x-radiation and does not

119 Issue Date: Page 24 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict 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. Internal wiring is UL Recognized, marked VW-1 or FT-1 and strapped by individual cable ties (where needed). (See appended table 5.3) Pass Pass

120 Issue Date: Page 25 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict 6 Specialized instructions provided for telephones that may be connected to a telecommunications network. 6 Marking identifying function of telecommunication type connectors not used for connection to a telecommunication network Special requirements for enameled wiring used as electrical separation provided between parts connected to telecommunication network and telecommunication circuitry intentionally isolated from network Digital line termination equipment (e.g., NCTE) subject to separation requirements. 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. 6.5 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. 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.

121 Issue Date: Page 26 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict M.4 Special requirements for message waiting and similar telecommunications signals. NAC Equipment intended for use with a generic secondary protector marked with suitable instructions. NAC Equipment intended for use with a specific primary or secondary protector marked with suitable instructions. 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 Provided with an isolating switch complying with 3.4.2, including 3 mm contact gap, with appropriate markings associated with the switch. NAF.4.4 Hazardous moving parts are not accessible to the user, as determined using the articulated accessibility probe (figure NAF.1) and the accessibility probe/wedge (figures NAF.2/NAF.3).

122 Issue Date: Page 27 of 27 Report Reference # E A46-CB-4 SubClause Difference + Test Result - Remark Verdict United Kingdom - Differences to :2001, First Edition The current rating of the circuit shall be taken as 13 A, not 16 A To protect against excessive currents and shortcircuits in the primary circuit of direct plug-in equipment, protective device shall be included as integral parts of the direct plug-in equipment Apparatus which is fitted with a flexible cable or cord and is designed to be connected to a mains socket conforming to BS 1363 by means of that flexible cable or cord and plug, shall be fitted with a "standard plug" in accordance with Statutory Instrument 1786: The Plugs and Sockets etc. (Safety) Regulations 1994, unless exempted by those regulations. NOTE: "Standard plug" is defined in SI 1786: 1994 and essentially means an approved plug conforming to BS 1363 or an approved conversion plug A power supply cord with conductor of 1.25 mm² is allowed for equipment with a rated current over 10A and up to and including 13A The range of conductor sizes of flexible cords to be accepted by terminals for equipment with a rated current of over 10 A up to and including 13 A is 1.25 mm² to 1.5 mm² nominal cross-sectional area The torque test is performed using a socket outlet complying with BS 1363 and the plug part of Direct Plug-In Equipment shall be assessed to BS 1363: Part 1, 12.1, 12.2, 12.3, 12.9, 12.11, 12.12, and 12.17, except that the test of is performed at not less than 125 C.

123 Issue Date: Page 1 of 12 Report Reference # E A46-CB-4 Enclosure Marking Plate Supplement Id Description Label for Model MS-6415xxxxxx Label for Model Hetis 800xxxxx Label Label for Model MS-6439XX Label for Model Hetis Label for Model MS-6441XX Label for Model Hetis 965XX Label for Model Hetis G31XX Label for Model MS-6470XX Label for Model MS-6618XXXX Label for Model Hetis G41XXXX

124 Issue Date: Page 2 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-01

125 Issue Date: Page 3 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-02

126 Issue Date: Page 4 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-04

127 Issue Date: Page 5 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-05

128 Issue Date: Page 6 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-06

129 Issue Date: Page 7 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-07

130 Issue Date: Page 8 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-08

131 Issue Date: Page 9 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-09

132 Issue Date: Page 10 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-10

133 Issue Date: Page 11 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-11

134 Issue Date: Page 12 of 12 Report Reference # E A46-CB-4 MarkingPlate ID 13-12

135 Issue Date: Page 1 of 29 Report Reference # E A46-CB-4 Enclosure Photographs Supplement Id Description 3-01 Overall View (1/2) 3-02 Overall View (2/2) 3-03 Interior View 3-04 Main Board Component Side View 3-05 Main Board Layout Side 3-06 CPU Heatsink Top View 3-07 CPU Heatsink Bottom View 3-08 Front View without Plastic Panel 3-09 Top view of motherboard(msi/ms-7231) 3-11 Front view of motherboard(msi/ms-7231) 3-12 Top view of motherboard(msi/ms-7259) 3-13 Bottom view of motherboard(msi/ms-7259) 3-14 Top View of Mainboard type MS Bottom View of Mainboard type MS Top View of Mainboard type MS (for Models MS-6441XX, Hetis 965XX) 3-17 Bottom View of Mainboard type MS (for Models MS-6441XX, Hetis 965XX) 3-18 Front View of Models MS-6441XX, Hetis 965XX 3-19 Back View of Models MS-6441XX, Hetis 965XX 3-20 Top view of Mainboard type MS Bottom view of Mainboard type MS Unit overview with alternate enclosure Unit overview with alternate enclosure Unit overview with alternate enclosure Plasitc Stand Base 3-26 Top view of Mainboard type MS Bottom view of Mainboard type MS Connectors view of Mainboard (type MS-7430) Connectors view of Mainboard (type MS-7430) -02

136 Issue Date: Page 2 of 29 Report Reference # E A46-CB-4 Photographs ID 3-01

137 Issue Date: Page 3 of 29 Report Reference # E A46-CB-4 Photographs ID 3-02

138 Issue Date: Page 4 of 29 Report Reference # E A46-CB-4 Photographs ID 3-03

139 Issue Date: Page 5 of 29 Report Reference # E A46-CB-4 Photographs ID 3-04

140 Issue Date: Page 6 of 29 Report Reference # E A46-CB-4 Photographs ID 3-05

141 Issue Date: Page 7 of 29 Report Reference # E A46-CB-4 Photographs ID 3-06

142 Issue Date: Page 8 of 29 Report Reference # E A46-CB-4 Photographs ID 3-07

143 Issue Date: Page 9 of 29 Report Reference # E A46-CB-4 Photographs ID 3-08

144 Issue Date: Page 10 of 29 Report Reference # E A46-CB-4 Photographs ID 3-09

145 Issue Date: Page 11 of 29 Report Reference # E A46-CB-4 Photographs ID 3-11

146 Issue Date: Page 12 of 29 Report Reference # E A46-CB-4 Photographs ID 3-12

147 Issue Date: Page 13 of 29 Report Reference # E A46-CB-4 Photographs ID 3-13

148 Issue Date: Page 14 of 29 Report Reference # E A46-CB-4 Photographs ID 3-14

149 Issue Date: Page 15 of 29 Report Reference # E A46-CB-4 Photographs ID 3-15

150 Issue Date: Page 16 of 29 Report Reference # E A46-CB-4 Photographs ID 3-16

151 Issue Date: Page 17 of 29 Report Reference # E A46-CB-4 Photographs ID 3-17

152 Issue Date: Page 18 of 29 Report Reference # E A46-CB-4 Photographs ID 3-18

153 Issue Date: Page 19 of 29 Report Reference # E A46-CB-4 Photographs ID 3-19

154 Issue Date: Page 20 of 29 Report Reference # E A46-CB-4 Photographs ID 3-20

155 Issue Date: Page 21 of 29 Report Reference # E A46-CB-4 Photographs ID 3-21

156 Issue Date: Page 22 of 29 Report Reference # E A46-CB-4 Photographs ID 3-22

157 Issue Date: Page 23 of 29 Report Reference # E A46-CB-4 Photographs ID 3-23

158 Issue Date: Page 24 of 29 Report Reference # E A46-CB-4 Photographs ID 3-24

159 Issue Date: Page 25 of 29 Report Reference # E A46-CB-4 Photographs ID 3-25

160 Issue Date: Page 26 of 29 Report Reference # E A46-CB-4 Photographs ID 3-26

161 Issue Date: Page 27 of 29 Report Reference # E A46-CB-4 Photographs ID 3-27

162 Issue Date: Page 28 of 29 Report Reference # E A46-CB-4 Photographs ID 3-28

163 Issue Date: Page 29 of 29 Report Reference # E A46-CB-4 Photographs ID 3-29

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