PSC Product Safety Consultant Inc.

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3 age : 2 of 52 Operating condition...: Mains supply tolerance (%)...: Tested for IT power systems...: IT testing, phase-phase voltage (V) : Mass of equipment (kg)...: rotection against ingress of water.: continuous No direct mains connection. No 2.3Kg IX0 Number of pages (Report)... : 52 Number of pages (Attachments)... : Attachments: Appendix I Appendix II Appendix III Appendix IV Appendix V Appendix VI Appendix VII Label Schematic Diagram EuT CB Layout EuT hotographs BOM list Instrument list Others/Specifications See Attachments 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 testing laboratory. The test services for SC are capable of performing services in compliance with the requirements of ISO 17025, EN , IEC General Comment: 1. The subject equipment is a desk-top equipment. The unit was configured as follows: External switching power adaptor, LCD panel, SELV, TNV-3 and LCC circuit in plastic enclosure. 2. The equipment is rated by the manufacturer for use in a maximum ambient temperature of 40 Deg C. 3. Highest load for this equipment is to play a video CD. Adjust LCD panel with max. brightness and speaker with max. volume. Add dummy loads of 2.5W for each USB ports (Total 4 USB ports). Charging an empty battery pack. CU information: Intel / T7300 / 2.0GHz. If no other specified, tests were performed on model MS-1641XX to represent other models. 4. Model different: a. The equipment models MS-1641XX and MS-1642XX (X can be 0-9, A-Z or blank) are Notebook for general office use. Model MS-1641XX is similar to MS-1642XX except with an independent VGA chipset on the main board. b. Models NEC VERSA 570, NEC VERSA F570are similar to model MS-1641XX; NEC VERSA M370, NEC VERSA FM370 are similar to model MS-1642XX, only trademark and model designation are different. 5. External power adapter and battery pack are CB approved products, see appended table for details.

4 age : 3 of 52 1 GENERAL 1.5 Components General See below Comply with IEC or relevant component See appended table standard Evaluation and testing of components Components, which are certified to IEC and/or national standards, are used correctly within their ratings. Components not covered by IEC standards are tested under the conditions present in the equipment Thermal controls No thermal control Transformers Transformers used are suitable for their intended application and comply with the relevant requirements of the standard Interconnecting cables No interconnection cable Capacitors in primary circuits.. : Equipment is not directly connected to the AC mains supply Double insulation or reinforced insulation bridged Class III equipment. by components General Bridging capacitors Bridging resistors Accessible parts Components in equipment for IT power systems Equipment is not directly connected to the AC mains supply. 1.6 ower interface AC power distribution systems Equipment is not directly connected to the AC mains supply Input current Highest load for this equipment is to play a video CD. Adjust LCD panel with max. brightness and speaker with max. volume. Add dummy loads of 2.5W for each USB ports (total 4 USB ports), charging an empty battery pack. (See appended table) Voltage limit of hand-held equipment This appliance is a not hand held equipment Neutral conductor Equipment is not directly connected to the AC mains supply.

5 age : 4 of Marking and instructions ower rating See below. Rated voltage(s) or voltage range(s) (V)...: 19V (no direct connection to the mains supply) Symbol for nature of supply, for d.c. only... : d.c. symbol used. Rated frequency or rated frequency range (Hz) : No direct connection to the mains supply. Rated current (ma or A) : 4.74A (no direct connection to the mains supply) Manufacturer s name or trademark or identification mark..: 1) MSI 2) NEC Type/model or type reference..: 1) MS-1641XX, MS-1642XX (X can be 0-9, A-Z or blank) 2) NEC VERSA 570, NEC VERSA F570, NEC VERSA M370, NEC VERSA FM370 Symbol for Class II equipment only : Class III equipment. Other symbols : Additional symbols or markings do not give rise to misunderstanding. Certification marks.: See copy of marking plates Safety instructions Safety instructions are provided in user s manual Short duty cycles Equipment designed for continuous operation Supply voltage adjustment...: No voltage/frequency setting. Methods and means of adjustment; reference to installation instructions..: ower outlets on the equipment..: No outlets Fuse identification (marking, special fusing No fuses. characteristics, cross-reference).: Wiring terminals No direct connection to mains supply rotective earthing and bonding terminals.: Terminal for a.c. mains supply conductors Terminals for d.c. mains supply conductors Controls and indicators See below Identification, location and marking.: The marking of the stand-by switch is located that indication of function clearly Colours : No safety relevant control and indicator Symbols according to IEC : Marking for stand-by type switch according IEC , No (line half inside circle used) Markings using figures..: None Isolation of multiple power sources.: No direct connection to mains supply IT power distribution systems No direct connection to mains supply.

6 age : 5 of Thermostats and other regulating devices No such devices Language(s) : Marking label and User s manual are in English. Versions in other languages will be provided when national certificate approval Durability The label was subjected to the permanence of marking test. The label was rubbed with cloth soaked with water for 15s and then again for 15s with the cloth soaked with petroleum spirit. After this test there was no damage to the label. The marking on the label did not fade. There was neither curling nor lifting of the label edge Removable parts No required markings placed on removable parts Replaceable batteries The Lithium type RTC battery and battery pack are exchangeable. Warning text provided in user s manual. Language(s) : English. Versions in other languages will be provided when national certificate approval Operator access with a tool..: No operator access with a tool Equipment for restricted access locations.: No restricted access location.

7 age : 6 of 52 2 ROTECTION FROM HAZARDS 2.1 rotection from electric shock and energy hazards rotection in operator access areas See below Access to energized parts See below. Test by inspection..: The equipment is supplied from an approved power adaptor or battery pack that provides only SELV. The test probe can not touch TNV-3 circuit through any seams within the equipment. Test with test finger...: See above. Test with test pin : See above. Test with test probe...: See above Battery compartments...: TNV circuits are not accessible when replace battery pack Access to ELV wiring No ELV wiring in operator accessible area. Working voltage (Vpeak or Vrms); minimum distance (mm) through insulation Access to hazardous voltage circuit wiring No hazardous voltage wiring in operator accessible area Energy hazards..: No energy hazard in operator access area. The connectors on the backside of the equipment below 240VA Manual controls No controls connected to TNV circuit Discharge of capacitors in equipment Time-constant (s); measured voltage (V)..: rotection in service access areas rotection in restricted access locations The unit is not intended to use in restricted locations. 2.2 SELV circuits General requirements The equipment is supplied from an approved power adaptor that provides only SELV. No higher voltages generated Voltages under normal conditions (V) : See Voltages under fault conditions (V).: See Separation by double insulation or reinforced Class III equipment. insulation (method 1) Separation by earthed screen (method 2) Class III equipment rotection by earthing of the SELV circuit Class III equipment. (method 3) Connection of SELV circuits to other circuits : See 2.2.2, 2.2.3, 2.3 and 2.4. No direct connection between SELV and any primary circuits.

8 age : 7 of TNV circuits Limits The telecommunication network is considered as TNV-3 circuit. Type of TNV circuits..: See above Separation from other circuits and from Basic insulation between TNV-3 accessible parts and SELV circuits provided. Insulation employed..: See above Separation from hazardous voltages TNV circuit is separated to primary by reinforced or double insulation in the approved adaptor. Insulation employed..: See above Connection of TNV circuits to other circuits TNV circuit is separated to LCC and SELV circuits by basic insulation and separated to primary by reinforced or double insulation in the approved adaptor. Insulation employed..: See above Test for operating voltages generated externally 2.4 Limited current circuits General requirements See below Limit values See below. Frequency (Hz)..: See appended table Measured current (ma).: See appended table Measured voltage (V) : 1.15kV (for DC/AC inverter: Sampo / YIVNMS0018D11--) 1.11kV (for DC/AC inverter: Taiwan Sumida / IV14080/T-LF) Measured capacitance (µf).: 270pF (for DC/AC inverter: Sampo / YIVNMS0018D11--) Connection of limited current circuits to other circuits 68pF (for DC/AC inverter: Taiwan Sumida / IV14080/T-LF) Complied. 2.5 Limited power sources Inherently limited output Impedance limited output USB ports are limited by poly switch. Overcurrent protective device limited output Regulating network limited output under normal IEEE 1394 port is limited by operating and single fault condition regulation network. 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 See appended table. power (VA)..: Current rating of overcurrent protective device (A)

9 age : 8 of rovisions for earthing and bonding rotective earthing Functional earthing rotective earthing and protective bonding conductors General Size of protective earthing conductors Rated current (A), cross-sectional area (mm 2 ), AWG : Size of protective bonding conductors Rated current (A), cross-sectional area (mm 2 ), AWG : Resistance (Ω) of earthing conductors and their terminations, test current (A) : Colour of insulation : Terminals General rotective earthing and bonding terminals Rated current (A), type and nominal thread diameter (mm) : Separation of the protective earthing conductor from protective bonding conductors Integrity of protective earthing Interconnection of equipment Components in protective earthing conductors and protective bonding conductors Disconnection of protective earth arts that can be removed by an operator arts removed during servicing Corrosion resistance Screws for protective bonding Reliance on telecommunication network or cable distribution system 2.7 Overcurrent and earth fault protection in primary circuits Basic requirements Instructions when protection relies on building installation Faults not covered in Short-circuit backup protection Number and location of protective devices : rotection by several devices Warning to service personnel..: 2.8 Safety interlocks General principles rotection requirements Inadvertent reactivation Fail-safe operation Moving parts Overriding Switches and relays Contact gaps (mm) :

10 age : 9 of Overload test Endurance test Electric strength test Mechanical actuators 2.9 Electrical insulation roperties of insulating materials Natural rubber, asbestos or hygroscopic material is not used Humidity conditioning Test for 48hrs. Humidity (%)..: 93% R.H. Temperature ( C)..: 25 C Grade of insulation The adequate levels of safety insulation is provided and maintained to comply with the requirements of this standard Clearances, creepage distances and distances through insulation General See , , Determination of working voltage Working voltage is considered to be within the TNV-3 parameters with V d.c. =120V Clearances see below and advantage of annex G is not considered General See below Clearances in primary circuits Class III equipment Clearances in secondary circuits See appended table and Measurement of transient voltage levels No transient voltage across the clearance lower than due or normal Creepage distances See appended table and CTI tests..: CTI rating for all materials of min Solid insulation The modem card was covered by 2 layers mylar sheet. TNV insulated wire wrapped by tube. Each layer of insulation was subjected to electric strength test Minimum distance through insulation See Thin sheet material See Number of layers (pcs).: Electric strength test rinted 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 90..:

11 age : 10 of Coated printed boards General Sample preparation and preliminary inspection Thermal cycling Thermal ageing ( C)..: Electric strength test Abrasion resistance test Electric strength test Enclosed and sealed parts..: Temperature T 1 =T 2 + T ma T amb +10K ( C)..: Spacings filled by insulating compound.: Electric strength test Component external terminations Insulation with varying dimensions

12 age : 11 of 52 3 WIRING, CONNECTIONS AND SULY 3.1 General Current rating and overcurrent protection All internal wires are UL recognized wiring which is VC insulated, rated VW-1, minimum 80 C. Internal wiring gauge is suitable for current intended to be carried rotection against mechanical damage Wires do not touch sharp edges, which could damage the insulation Securing of internal wiring Internal wires are secured reliable so that a loosening of the terminal connetion is unlikely Insulation of conductors The insulation of the individual conductors is suitable for the application and the working voltage. For the insulation material see Beads and ceramic insulators Not used Screws for electrical contact pressure No such screws Insulating materials in electrical connections All current carrying connections are metal to metal Self-tapping and spaced thread screws No self-tapping or spaced thread screws used Termination of conductors All conductors are reliably secured. 10 N pull test Applied and passed Sleeving on wiring No sleeving used for supplementary insulation 3.2 Connection to an a.c. mains supply or a d.c. mains supply Means of connection.: Connection to an a.c. mains supply Connection to a a.c. mains supply Multiple supply connections ermanently connected equipment Number of conductors, diameter (mm) of cable and conduits..: Appliance inlets ower supply cords AC power supply cords Type.: Rated current (A) cross-sectional area (mm 2 ), AWG : DC power supply cords Cord anchorages and strain relief Mass of equipment (kg), pull (N).: Longitudinal displacement (mm).: rotection against mechanical damage

13 age : 12 of Cord guards D (mm); test mass (g)...: Radius of curvature of cord (mm)...: Supply wiring space 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, crosssectional area (mm 2 ). : 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 General requirement Disconnect devices ermanently connected equipment arts which remain energized Switches in flexible cords Single-phase equipment and d.c. equipment Three-phase equipment Switches as disconnect devices lugs as disconnect devices Interconnected equipment Multiple power sources 3.5 Interconnection of equipment General requirements See below Types of interconnection circuits.: SELV, LCC and TNV circuits ELV circuits as interconnection circuits No ELV interconnection.

14 age : 13 of 52 4 HYSICAL REQUIREMENTS 4.1 Stability Angle of 10 This equipment does not overbalance when tilted to an angle of 10 from its normal upright position with and without LCD screen open conditions. Test: force (N) : Equipment is not a floor-standing unit. 4.2 Mechanical strength General See below. After tests, unit comply with 2.1.1, 2.10 and Steady force test, 10 N 10N applied to components other than parts serving as an enclosure Steady force test, 30 N 30N applied to internal enclosure when removed battery pack. No energy or other hazards Steady force test, 250 N 250N applied to outer enclosure. No energy or other hazards Impact test Transportable equipment. Fall test Transportable equipment. Swing test Transportable equipment Drop test No hazards from drop test Stress relief test After 7hrs for Notebook Computer at 78 C and cooling down to room temperature, no shrinkage, distortion or loosing of enclosure was noticeable on this equipment Cathode ray tubes No CRTs. icture tube separately certified..: High pressure lamps No high pressure lamps Wall or ceiling mounted equipment; force (N)..: 4.3 Design and construction Edges and corners Edges and corners of the enclosure are rounded Handles and manual controls; force (N) : No handles or controls provided Adjustable controls None that would cause hazard Securing of parts Electrical and mechanical connections can be expected to withstand usual mechanical stress Connection of plugs and sockets Mismatch of connectors were prevented by incompatible form or location.

15 age : 14 of Direct plug-in equipment Not direct plug-in type. Dimensions (mm) of mains plug for direct plug-in : Torque and pull test of mains plug for direct plugin; torque (Nm); pull (N) : Heating elements in earthed equipment No heating elements Batteries For results see appended table Oil and grease No oil or grease Dust, powders, liquids and gases The equipment in intended use not considered to be exposed to dust, powers, liquids and gases Containers for liquids or gases No container for liquid or gas Flammable liquids.: No flammable liquid. Quantity of liquid (l)...: Flash point ( C)..: Radiation; type of radiation..: See below General See below lonizing radiation No ionizing radiation. Measured radiation (pa/kg)..: Measured high-voltage (kv).: Measured focus voltage (kv)...: CRT markings....: Effect of ultraviolet (UV) radiation on materials No UV radiation. art, property, retention after test, flammability classification..: Human exposure to ultraviolet (UV) radiation..: Laser (including LEDs) For optional optical drive, which was approved component and evaluated according to relevant standard for laser product. Others are indicating LEDs used. Laser class.: Laser Class Other types.: No other radiations. 4.4 rotection against hazardous moving parts General The rotating part of the build-in DC fan is protected by the enclosure. Other motors only used in approved components and are not accessible to the user rotection in operator access areas No DC Fan in operator access areas rotection in restricted access locations Not limited for restricted access locations rotection in service access areas Unintentional contact with the moving parts of the DC fan is unlikely during servicing operation.

16 age : 15 of Thermal requirements Maximum temperatures See appended table Normal load condition per Annex L.: See Resistance to abnormal heat 4.6 Openings in enclosures Top and side openings Transportable equipment. Dimensions (mm)..: Bottoms of fire enclosures Transportable equipment. Construction of the bottom...: Doors or covers in fire enclosures No doors or covers in fire enclosure Openings in transportable equipment See appended table Adhesives for constructional purposes Test for mesh with adhesive. Conditioning temperature ( C)/time (weeks).: 100 C / 1 week 4.7 Resistance to fire Reducing the risk of ignition and spread of flame See below. Method 1, selection and application of Use of materials with the components wiring and materials required flammability classes. Method 2, application of all of simulated fault Method 1 used. condition tests Conditions for a fire enclosure See below arts requiring a fire enclosure With having the following pars: - Components in secondary (not supplied by LS) - Insulated wiring The fire enclosure is required arts not requiring a fire enclosure See clause Materials General See appended table for CB Materials for fire enclosures See appended table for enclosure material Materials for components and other parts outside No components outside fire fire enclosures enclosure Materials for components and other parts inside Internal components except fire enclosures small parts are V-2 or better Materials for air filter assemblies No air filter assemblies Materials used in high-voltage components No high voltage component.

17 age : 16 of 52 5 ELECTRICAL REQUIREMENTS AND SIMULATED ABNORMAL CONDITIONS 5.1 Touch current and protective conductor current General See below Equipment under test (EUT) Test circuit Using figure 5A Application of measuring instrument Test procedure Test measurements See Test voltage (V)..: See Measured touch current (ma)..: See Max. allowed touch current (ma) : See Measured protective conductor current (ma) : Max. allowed protective conductor current (ma)..: Equipment with touch current exceeding 3.5mA..: Touch currents to and from telecommunication See below. networks and cable distribution systems and from telecommunication networks Limitation of the touch current to a telecommunication network and a cable distribution system See below. Test voltage (V)..: See appended table Measured touch current (ma)..: See appended table Max. allowed touch current (ma) : Summation of touch currents from telecommunication networks : 5.2 Electric strength General See below Test procedure See appended table 5.2.

18 age : 17 of Abnormal operating and fault conditions rotection against overload and abnormal See below. operation Motors Used DC fan is an approved component. Other motors are used in appliance with are certified optical drive device such as HDD and Optical drive. See appended table Transformers Functional insulation..: Functional insulation within the equipment evaluated for compliance according to c). Results see appended table Electromechanical components No electromechanical component Simulation of faults Results see appended table Unattended equipment No thermostat, temperature limiter or thermal cut-out Compliance criteria for abnormal operating and No fire occurred. No molten fault conditions metal was emitted.

19 age : 18 of 52 6 CONNECTION TO TELECOMMUNICATION NETWORKS 6.1 rotection of telecommunication network service persons, and users of other equipment connected to the network, from hazards in the equipment rotection from hazardous voltages Separation of the telecommunication network from earth Requirements Basic insulation provided between TNV-3 and SELV circuits. Test voltage (V)..: See appended table 5.2. Current in the test circuit (ma)..: See appended table Exclusions..: 6.2 rotection of equipment users from overvoltages on telecommunication networks Separation requirements Adequate electrical separation between TNV-3 to: - Keyboard - Enclosure with foil - SELV circuits Electric strength test procedure See below Impulse test Impuse test for Australian national deviation. a) 2.5KV for keyboard b) c) 1.5KV for enclosure and SELV connectors. After the test, insulation resistance not less than 2MΩ Steady-state test See appended table Compliance criteria No isolation breakdown. 6.3 rotection of telecommunication wiring system from overheating Max. output current (A).: Current limiting method.:

20 age : 19 of 52 7 CONNECTION TO CABLE DISTRIBUTION SYSTEMS 7.1 rotection of cable distribution system service persons, and users of other equipment connected to the system, from hazardous voltages in the equipment 7.2 rotection 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

21 age : 20 of 52 A ANNEX A, TESTS FOR RESISTANCE TO HEAT AND FIRE A.1 Flammability test for fire enclosures of movable equipment having a total mass exceeding 18 kg, and of stationary equipment (see ) A.1.1 Samples..: Wall thickness (mm).: A.1.2 Conditioning of samples; temperature ( C)...: A.1.3 Mounting of samples.: A.1.4 Test flame (see IEC ) Flame A, B, C or D : A.1.5 Test procedure A.1.6 Compliance criteria Sample 1 burning time (s) : Sample 2 burning time (s) : Sample 3 burning time (s) : A.2 Flammability test for fire enclosures of movable equipment having a total mass not exceeding 18 kg, and for material and components located inside fire enclosures (see and ) A.2.1 Samples, material.; Wall thickness (mm).: A.2.2 Conditioning of samples A.2.3 Mounting of samples.: A.2.4 Test flame (see IEC ) Flame A, B or C.: A.2.5 Test procedure A.2.6 Compliance criteria Sample 1 burning time (s) : Sample 2 burning time (s) : Sample 3 burning time (s) : A.2.7 Alternative test acc. to IEC , cl. 4 and 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 B ANNEX B, MOTOR TESTS UNDER ABNORMAL CONDITIONS (see and 5.3.2) B.1 General requirements Approved DC fan used, other motors are used in approved components. osition : Manufacturer..: Type.: Rated values..: B.2 Test conditions B.3 Maximum temperatures B.4 Running overload test B.5 Locked-rotor overload test Test duration (days)..:

22 age : 21 of 52 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 B.7.1 Test procedure 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) : C ANNEX C, TRANSFORMERS (see and 5.3.3) osition.: Manufacturer : Type..: Rated values : Method of protection...: C.1 Overload test C.2 Insulation rotection from displacement of windings...: D ANNEX D, MEASURING INSTRUMENTS FOR TOUCH-CURRENT TESTS (see 5.1.4) D.1 Measuring instrument Complied. D.2 Alternative measuring instrument E ANNEX E, TEMERATURE RISE OF A WINDING (see ) F ANNEX F, MEASUREMENT OF CLEARANCES AND CREEAGE DISTANCES (see 2.10) 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 OTENTIALS (see ) Metal used..:

23 age : 22 of 52 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 L ANNEX L, NORMAL LOAD CONDITIONS FOR SOME TYES OF ELECTRICAL BUSINESS EQUIMENT (see and 4.5.1) L.1 Typewriters L.2 Adding machines and cash registers L.3 Erasers L.4 encil sharpeners L.5 Duplicators and copy machines L.6 Motor-operated files L.7 Other business equipment See M ANNEX M, CRITERIA FOR TELEHONE 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, IMULSE TEST GENERATORS (see , , and clause G.5) N.1 ITU-T impulse test generators N.2 IEC impulse test generator ANNEX, NORMATIVE REFERENCES Q ANNEX Q, BIBLIOGRAHY S ANNEX S, ROCEDURE FOR IMULSE TESTING (see ) S.1 Test equipment S.2 Test procedure S.3 Examples of waveforms during impulse testing T ANNEX T, GUIDANCE ON ROTECTION AGAINST INGRESS OF WATER (see 1.1.2)

24 age : 23 of 52 U ANNEX U, INSULATED WINDING WIRES FOR USE WITHOUT INTERLEAVED INSULATION (see ) V ANNEX V, AC OWER DISTRIBUTION SYSTEMS (see 1.6.1) V.1 Introduction V.2 TN power distribution systems V.3 TT power systems V.4 IT power systems W ANNEX W, SUMMATION OF TOUCH CURRENTS W.1 Touch current from electronic circuits W.1.2 Earthed circuits W.2 Interconnection of several equipments W.2.1 Isolation W.2.2 Common return, isolated from earth W.2.3 Common return, connected to protective earth X ANNEX X, MAXIMUM HEATING EFFECT IN TRANSFORMER TESTS (see clause C.1) X.1 Determination of maximum input current X.2 Overload test procedure Y ANNEX Y, ULTRAVIOLET LIGHT CONDITIONING TEST (see ) Y.1 Test apparatus...: Y.2 Mounting of test samples.: Y.3 Carbon-arc light-exposure apparatus : Y.4 Xenon-are light-exposure apparatus.:

25 age : 24 of TABLE: list of critical components Object/part No. Manufacturer/ trademark Type/model Technical data Standard mark(s) of conformity 1. AC Adaptor Lite-On Technology Corp. Li Shin International Enterprise Corp. Delta Electronics Inc. lastic Enclosure GE lastics acific A (.Can be 0-9, A-Z or blank) LSE0202C1990 AD-90SB BB I/: Vac, 50/60Hz, 1.5A; O/: 19Vdc, 4.74A, 40 degree C, Class I. I/: Vac, 50/60Hz, 1.5A; O/: 19Vdc, 4.74A, 40 degree C, Class I. I/: Vac, 50/60Hz, 1.5A; O/: 19Vdc, 4.74A, 40 degree C, Class I. C7230 V-0 min, 85 degree C, min. 1.2 mm thickness. EN/IEC :2001 EN/IEC :2001 EN/IEC :2001 UL 94 LCD anel samsung LTN1541-L , TFT LCD samsung LTN154XA-L , TFT LCD samsung LTN154X3-L , TFT LCD AU Optronics Inc. B154EW , TFT LCD Quanta Display QD15AL , TFT LCD Inc. Quanta Display QD15AL , TFT LCD Inc. Chi Mei N154I1-L , TFT LCD Chi Mei N154I2-L , TFT LCD Chi Mei N154I1-L , TFT LCD DC/AC inverter Sampo Corp. YIVNMS0018D11-- I/: 14.4Vdc, 740mA max; O/: 1400Vrms, 6.5mA max. - Inverter Transformer (T1) Yao Sheng Electronic Co., Ltd. TÜV, CB by Nemko (Report No ) TÜV, CB by TÜV/RH (Certificate No. JTUV ) TÜV, CB by TÜV UL YCVT-1619ID-Z-A 105 C Darfon YCVT-1619ID-Z-F 105 C Electronics Corp. Taiwan Thick- YCVT-1619ID-Z-E 105 C Film Ind. Corp. - Inverter Max. 270pF, Capacitor (C13) minimum 2KV. - CB Min. V-1, UL 94 UL minimum 105 C. DC/AC inverter Taiwan Sumida Electronics Inc. IV14080/T-LF I/: 14.4Vdc, 387mA; O/: 1400Vrms, 6.4mA. - Inverter C Transformer (T1)

26 age : 25 of 52 - Inverter Max. 68pF, Capacitor (C24) minimum 2KV. - CB Min. V-1, minimum 105 C. UL 94 UL DC/AC inverter Mitac Technology DA-1A08-MS01L I/: 14.4Vdc, Corp 440mA max; O/: 1600Vrms, 6.5mA max. - Inverter Yao Sheng YS C Transformer (T1) - Inverter Max. 100pF, Capacitor (C3) minimum 2KV. - CB Min. V-1, UL 94 UL minimum 105 C. DC/AC inverter Taiwan Sumida TWS I/: 14.4Vdc, mA max; O/: 1600Vrms, 6.5mA max. - Inverter Taiwan Sumida CL-14080TDZ-LF 105 C Transformer (T1) - Inverter Max. 100pF, Capacitor (C14) minimum 2KV. - CB Min. V-1, UL 94 UL DC/AC inverter Sampo YIVNMS0018D11- A - Inverter Transformer (T1) - Inverter Capacitor (C13) minimum 105 C. I/: 14.4Vdc, 740mA max; O/: 1400Vrms, 6.5mA max Yao Sheng YCVT-1619ID-Z-A 105 C Max. 100pF, minimum 2KV. - CB Min. V-1, UL 94 UL minimum 105 C. -DC/AC inverter V-2 min. UL, UL 746C UL mylar sheet Speaker (Two Max 3.5Ω, max rovided) 5W CB V-1 minimum, UL 94 UL 105 C. RTC Battery (Lithium) CR2032 UL 1642 UL Matsushita Electric Industrial Co. Ltd. (anasonic Corp of North America.) Sony Energy Devices Corp. Toshiba Battery Co. Ltd. CR2032 CR2032 3Vdc, 210mAh, maximum reverse current 10mA. 3Vdc, 220mAh, maximum reverse current 10mA. 3Vdc, 220mAh, maximum reverse current 10mA. UL 1642 UL 1642 UL UL

27 age : 26 of 52 oly switch for USB port (FB1) Modem Card - Modem Card Mylar sheet Vic-Dawn Enterprise Co. Ltd. CR2032 3Vdc, 220mAh, maximum reverse current 10mA. UL 1642 SMD TF 1.5A, 6Vdc. IEC/EN minismdc150f 1.5A, 6Vdc. IEC/EN olytronics Technology Corp. Tyco Electronics (Raychem) Littelfuse Inc. 1812L150RT 1.5A, 6Vdc. IEC/EN (test accordance with IEC cl.15, J15, 17,J17) Bourns Inc. MF-MSMF A, 6Vdc. IEC/EN Agere Systems D Vdc, 500mA. IEC/EN Inc : V-2 minimum, minimum 0.08mm thickness. UL 94 Modem Card Motorola Inc. ML Vdc, Class III. IEC/EN :2001 IEC/EN :2001/A11:20 04 Hard Disk Drive (HDD) Fujitsu Ltd. Seagate or equivalent Toshiba Hitachi MHW2xxxBy (x=0-9 or any alphabetic character; y=a, H, J, K or S) ST9 (will be followed by suffixes indicated storage capacity) or equivalent HDD2yyyx (x=a-z; y=0-9 or A-Z) HTS5410nnx9AT0 0 (n=0-9; x=a-z or 0-9) 5Vdc, 0.6A. 5Vdc, 1.5A max. 5Vdc, 1.1A. 5Vdc, 1.0A. IEC/EN :2001 IEC/EN :2001+A11, IEC :2001 IEC/EN 60950:2000 IEC/EN 60950:2000 UL TÜV, UL TÜV, UL TÜV, UL TÜV, UL TÜV, CB by TÜV/S (Ref. Report No ). UL TÜV, CB TÜV CB by Demko (Ref. Certif. No. US/9366/UL), TÜV TÜV TÜV

28 age : 27 of 52 O.D.D (CD- RW/DVD Rom Drive) Western Digital Technology Inc. Hitachi-LG Data Storage Hitachi-LG Data Storage Hitachi-LG Data Storage Lite-on Toshiba Toshiba WDUUUUXZ- YYXXYY (WD= Western Digital; UUUU=Identifies formatted capacity in GigaBytes (Can be 2 to 4 digits, last digit indicates U GB); X=Identifies RM/Buffer Size; Z=Identifies IDE interface (Alpha characters A to E) of ( to Z); YY=Identifies Customer number; XX=Identifies SELV circuit options; YY= Identifies Customer configuration code GCC-4244N******* (where * can be any alphanumeric character symbol, blank indicating different marketing area of brand name) G*A-4082N (where * can be S, W, M, C, R or D denoting different supported media) GSA-T20* (The * in the model designation can be F, C, N, L, V or A denoting logic circuits) SSx-xxx5xxxxxx (x=alphanumeric or blank) TS-L462. (Can be any alphanumeric character or blank) TS-L532* ( * =A-Z, 0, 1 or blank) 5Vdc, 1.0A. 5Vdc, 1.8A or 2.8A, Laser Class 1. 5Vdc, 1.5A, Laser Class 1. 5Vdc, 1.5A, Laser Class 1. 5Vdc, 1.5A, Laser Class 1 5Vdc, 1.5A, Laser Class 1 5Vdc, 2.5A, Laser Class 1 IEC/EN :2001 IEC/EN :2001, IEC/EN /A2: 2001 IEC/EN :2001, IEC/EN /A2: 2001 IEC/EN :2001, IEC/EN /A2: 2001 IEC/EN :2001, IEC / 1994+A1+A2 IEC/EN :2001, EN / 1994+A1+A2 IEC/EN :2001, IEC / 1994+A1+A2 TÜV CB by Semko (Ref. Certif. No. SE-40202), TÜV CB by Semko (Ref. Certif. No. SE-40430), TÜV TÜV CB by TÜV (Ref. Certif. No. JTUV ), TÜV CB by TÜV (Ref. Certif. No. JTUV ), TÜV TÜV

29 age : 28 of 52 DC Fan (inside for CU) Battery ack Toshiba TS-L802# (# =A-Z or blank) 5Vdc, 1.9A max., Laser Class 1 anasonic UJDA780 5Vdc, 1.8A max, Laser Class 1 anasonic UJ-870 5Vdc, 1.5A, Laser Class 1 Sony NEC Optiarc Forcecon Tech. Co., Ltd. Forcecon Tech. Co., Ltd. Simplo Technology Co., Ltd. Simplo Technology Co., Ltd. Simplo Technology Co., Ltd. Simplo Technology Co., Ltd. Clelxpert Energy Corp. AD-7530B or equivalent DFB531405MC0T DFS531405MC0T SQU-706 SQU-524 SQU-528 SQU-718 BTY-MXX (X=0-9, A-Z or blank) 5Vdc, 1.5A, Laser Class 1 Rated 5Vdc, 0.5A, 6.2CFM. Rated 5Vdc, 0.5A, 6.2CFM. 11.1Vdc or 10.8Vdc, 5200mAh. 11.1Vdc or 10.8Vdc, 4400mAh, Lithium-Ion type. 45, Class III. 11.1Vdc or 10.8Vdc, 4800mAh, Lithium-Ion type. 45, Class III. 11.1Vdc or 10.8Vdc, 7800mAh, Lithium-Ion type. 45, Class III. 11.1Vdc, 4400mAh, Lithium-Ion type. 45, Class III. IEC/EN :2001, IEC / 1994+A1+A2 IEC/EN :2001, IEC / 1994+A1+A2 IEC/EN :2001, IEC /EN /A2 IEC/EN :2001, IEC / 1994+A1+A2 IEC/EN :2001 IEC/EN :2001 IEC/EN :2001 EN :2001+A11 IEC : 2001 EN :2001+A11 IEC : 2001 EN :2001+A11 IEC : 2001 IEC : 2001 EN /A11:2004 TÜV CB by TÜV (Ref. Certif. No. JTUV ), TÜV TÜV CB by TÜV (Ref. Certif. No. JTUV ), TÜV TÜV TÜV CB by TÜV/S (Ref. Certif. No. DE ), TÜV CB by TÜV/SUD (Ref. Certif. No. DE ), TÜV/SUD CB by TÜV/SUD (Ref. Certif. No. DE ), TÜV/SUD CB by TÜV/SUD (Ref. Certif. No. DE ), TÜV/SUD TÜV/SUD

30 age : 29 of 52 Battery ack Clelxpert Energy Corp. STL Technology Co., Ltd. STL Technology Co., Ltd. CBILXX (X=0-9, A-Z or blank) BTY-M66 BTY-M Vdc, 4400, 4800, 7200mAh, Lithium-Ion type. IEC : 2001 EN CB by TÜV/SUD (Ref. Certif. 45 1/A11:2004 No. DE ),, TÜV/SUD Class III. 10.8Vdc, 4800mAh, Lithium-Ion type. 50, Class III. 10.8~11.1Vdc, 5200mAh maximum, Lithium-Ion type. 50, Class III. IEC : 2001 EN /A11: CB Various Various V-1 minimum, UL 94 UL 105 C minimum -Battery cell SAMSUNG ICR * Six cells -- UL provided, 12Vdc, 2600mAh. Glue material for Ginway Industrial G in UL 969 UL Adhesive Corp. thickness Mesh material General Electric FR700, FR7+ V-0 UL 94 UL Co Note(s): 1. An asterisk indicates a mark that assures the agreed level of surveillance. CB by TÜV/SUD (Ref. Certif. No. DE ), TÜV/SUD

31 age : 30 of TABLE: electrical data (in normal conditions) Fuse # Irated (A) U (V) (W) I (A) Ifuse (A) Condition/status Test for model MS-1641XX with DC/AC inverter: Sampo / YIVNMS0018D DC Max. normal load. Test for model MS-1641XX with DC/AC inverter: Taiwan Sumida / IV14080/T-LF DC Max. normal load. Test for model MS-1642XX with DC/AC inverter: Sampo / YIVNMS0018D DC Max. normal load. Test for model MS-1642XX with DC/AC inverter: Taiwan Sumida / IV14080/T-LF DC Max. normal load. Test with DC/AC inverter: Sample / YIVNMS0018D11-A DC Max. normal load. Test with DC/AC inverter: Taiwan Sumida / TWS DC Max. normal load. Test with DC/AC inverter: Mitac / DA-1A08-MS01L DC Max. normal load. Note(s): TABLE: limited current circuit measurement Location Voltage (V) Current (ma) Freq. (khz) Limit (ma) Comments Test for DC/AC inverter: Sampo / YIVNMS0018D11-- Normal condition CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Fault condition (C13 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth Fault condition (Q1 pin 2-6 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth Unit shut down immediately. T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Unit shut down immediately. Fault condition (D6 pin 1-3 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth Unit shut down immediately. T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Unit shut down immediately. Fault condition (R8 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth

32 age : 31 of 52 T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Fault condition (R9 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth Unit shut down immediately. T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Unit shut down immediately. Fault condition (Q1 pin 2-6 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth Unit shut down immediately. Test for DC/AC inverter: Taiwan Sumida / IV14080/T-LF Normal condition CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth T1 pin 7 to pin Unit shut down immediately. T1 pin 7 to earth Unit shut down immediately. T1 pin 6 to earth Fault condition (C24 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth T1 pin 7 to pin Unit shut down immediately. T1 pin 7 to earth Unit shut down immediately. T1 pin 6 to earth Fault condition (R20 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth Unit shut down immediately. T1 pin 7 to pin Unit shut down immediately. T1 pin 7 to earth Unit shut down immediately. T1 pin 6 to earth Unit shut down immediately. Fault condition (C22 short) CON2 pin 1 to pin Unit shut down immediately. CON2 pin 1 to earth Unit shut down immediately. CON2 pin 2 to earth Unit shut down immediately. T1 pin 7 to pin Unit shut down immediately. T1 pin 7 to earth Unit shut down immediately. T1 pin 6 to earth Unit shut down immediately. Fault condition (C17 short) T1 pin 7 to pin Unit shut down immediately. T1 pin 7 to earth Unit shut down immediately. T1 pin 6 to earth Test for DC/AC inverter: Sampo / YIVNMS0018D11-A Normal condition CN2 pin 1 to pin CN2 pin 1 to earth Unit shut down immediately.

33 age : 32 of 52 CN2 pin 2 to earth T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Fault condition (C13 short) CN2 pin 1 to pin CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Fault condition (R9 short) CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Unit shut down immediately. Fault condition (Q1 in 2-6 short) CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Unit shut down immediately. T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Unit shut down immediately. Fault condition (U1 in9 open) CN2 pin 1 to pin CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Fault condition (C11 short) T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Unit shut down immediately. Fault condition (D6 in 1-3 short) T1 pin 5 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 6 to earth Test for DC/AC inverter: Taiwan Sumida / TWS Normal condition CN2 pin 1 to pin CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth T1 pin 4 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 4 to earth Fault condition (C14 short) CN2 pin 1 to pin CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Fault condition (R9 short) CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Unit shut down immediately. Fault condition (Q3 in 2-6 short) CN2 pin 1 to pin Unit shut down immediately.

34 age : 33 of 52 CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Unit shut down immediately. T1 pin 4 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 4 to earth Unit shut down immediately. Fault condition (U1 in9 open) CN2 pin 1 to pin CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth T1 pin 4 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 4 to earth Fault condition (C13 short) T1 pin 4 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 4 to earth Unit shut down immediately. Fault condition (D1 in 1-3 short) T1 pin 4 to pin Unit shut down immediately. T1 pin 5 to earth Unit shut down immediately. T1 pin 4 to earth Test for DC/AC inverter: Mitac / DA-1A08-MS01L Normal condition CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth T1 pin 3 to pin Unit shut down immediately. T1 pin 3 to earth Unit shut down immediately. T1 pin 4 to earth Fault condition (C3 short) CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Fault condition (R15 short) CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Fault condition (U1 in 2-6 short) CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth Unit shut down immediately. T1 pin 3 to pin Unit shut down immediately. T1 pin 3 to earth Unit shut down immediately. T1 pin 4 to earth Unit shut down immediately. Fault condition (U2 in9 open) CN2 pin 1 to pin Unit shut down immediately. CN2 pin 1 to earth Unit shut down immediately. CN2 pin 2 to earth T1 pin 3 to pin Unit shut down immediately. T1 pin 3 to earth Unit shut down immediately. T1 pin 4 to earth Fault condition (C16 short) T1 pin 3 to pin Unit shut down immediately.

35 age : 34 of 52 T1 pin 3 to earth Unit shut down immediately. T1 pin 4 to earth Fault condition (D1 in 1-3 short) T1 pin 3 to pin Unit shut down immediately. T1 pin 3 to earth Unit shut down immediately. T1 pin 4 to earth Note(s): 2.5 TABLE: limited power source measurement 1. According to Table 2B under normal operating conditions, for USB1 Output Voltage (Voc) Output Current (Isc) VA V ac V dc Measured Max Allowed Measured Max Allowed Measured X Voc= According to Table 2B under normal operating conditions, for USB2 Output Voltage (Voc) Output Current (Isc) VA V ac V dc Measured Max Allowed Measured Max Allowed Measured X Voc= According to Table 2B under normal operating conditions, for USB3 Output Voltage (Voc) Output Current (Isc) VA V ac V dc Measured Max Allowed Measured Max Allowed Measured X Voc= According to Table 2B under normal operating conditions, for USB4 Output Voltage (Voc) Output Current (Isc) VA V ac V dc Measured Max Allowed Measured Max Allowed Measured X Voc= According to Table 2B under normal operating conditions, for IEEE1394, (Unit Shutdown) Output Voltage (Voc) Output Current (Isc) VA V ac V dc Measured Max Allowed Measured Max Allowed Measured X Voc= According to Table 2B under single fault conditions with U26 in E10-A16 shorted, for IEEE1394 Output Voltage (Voc) Output Current (Isc) VA V ac V dc Measured Max Allowed Measured Max Allowed Measured X Voc= and TABLE: clearance and creepage distance measurements Clearance cl and creepage distance dcr at/of: Up (V) U r.m.s. (V) Required cl (mm) cl (mm) Required dcr (mm) dcr (mm) SELV components to TNV See below 1.5 See below components (on main board top side) RJ45 pin to MDC1 pad RJ45 pin to RJ11 pin SELV trace to TNV wire connected to MDC1 SELV components to TNV See below 1.5 See below components (on main board bottom side) RJ45 pin to EML7, EML H25 pad to FJ11 pin Note(s):

36 age : 35 of TABLE: temperature rise measurements test voltage (V)..: A) DC 19 B) Supply by battery pack t1 ( C)..: -- t2 ( C)..: -- temperature rise dt of part/at: T ( C) allowed T max ( C) Test Voltage A) B) -- CB near U CB near U CB near CLK HDD. body ODD body CR2032 body CB near DDR chip CU heatsink body T1 coil (Sampo s DC/AC inverter) lastic enclosure inside near CU lastic enclosure outside near CU lastic enclosure inside near DC/AC inverter lastic enclosure outside near DC/AC inverter Battery pack body Tma (Tamb) 40.0 (24.1) 40.0 (27.4) -- temperature rise dt of winding: R 1 (W) R 2 (W) T ( C) Maximum allow temperatur e ( C) Note: insulation class TABLE: temperature rise measurements test voltage (V)..: A) DC 19 B) Supply by battery pack t1 ( C)..: -- t2 ( C)..: -- temperature rise dt of part/at: T ( C) allowed T max ( C) Test with DC/AC inverter: Sampo / YIVNMS0018D11-A Test Voltage A) B) -- WB near U WB near U WB near CLK HDD body CD-ROM body CR2030 body WB near DDR chip CU heat-sink body T1 coil lastic enclosure inside near CU lastic enclosure outside near CU lastic enclosure inside near DC/AC inverter

37 age : 36 of 52 lastic enclosure outside near DC/AC inverter Battery pack body Tma (Tamb) 40.0(24.2) 40.0(27.2) -- Test with DC/AC inverter: Taiwan Sumida / TWS Test Voltage A) -- T1 coil Tma (Tamb) 40.0(24.3) -- Test with DC/AC inverter: Mitac / DA-1A08-MS01 L Test Voltage A) -- T1 coil Tma (Tamb) 40.0(24.9) -- temperature rise dt of winding: R 1 (W) R 2 (W) T ( C) Maximum allow temperatur e ( C) Note: insulation class 4.6.1, TABLE: enclosure openings Location Size(mm) Comments Top None -- Side 12 rectangle openings and internal Max. 8.0X5.0 heat-sink considered as internal barrier with 1.0mm in width. Inside (for speaker) Numerous circle openings above 1.0 speakers at two areas, each 14.9mm X 4.9mm. Bottom Between centre lines: 1.5mm Wire diameter: 0.6mm Between centre lines: 2.0mm Wire diameter: 0.45mm Max x 1.0 Max x 1.0 Mesh provide for the openings under HDD (openings size 7.0mm x 1.1mm with an area 16.0mm x 33.7mm) Mesh provide for the openings under DC Fan. Numerous rectangle openings near battery pack connector at an area 54.0mm x 25.6mm. Numerous rectangle openings near memory at an area 109.6mm x 16.0mm TABLE: touch current measurement Condition L terminal A N terminal A Limit comments (ma) (ma) (ma) System on To RJ11 Tip&Ring, switch e opened. (For all sources of adapter) Note(s):

38 age : 37 of TABLE: electric strength tests and impulse tests Test voltage applied between: Test voltage (V) Breakdown Test for unit VC of TNV insulated wire AC 1500 No Tube of TNV insulated wire AC 1500 No Test for modem card: Agere / D40 TNV to keyboard AC 3000 No TNV to User accessible connectors AC 1500 No TNV to SELV circuits AC 1500 No One layer of mylar sheet AC 1500 No Test for modem card: Motoroal Inc. / ML3054 TNV to SELV circuits AC 1500 No TNV to Keyboard with foil AC 3000 No TNV to lastic enclosure with foil AC 1500 No One layer of mylar sheet AC 1500 No Note(s):

39 age : 38 of TABLE: fault condition tests ambient temperature ( C) : See below. model/type of power supply : -- manufacturer of power supply : -- rated markings of power supply.: -- No.. Component Fault Test voltage Test time Fuse Fuse current Result no. (V) no. (A) 01 CU Fan locked DC 19 2hrs Unit shutdown, max. temp. at CB near U19 = 77.9 C, ambient= 24.9 C, no damaged, no hazards. 02 Ventilation openings blocked DC 19 2hrs Unit shutdown, max. temp. at CB near CLK = 61.9 C, ambient= 25.5 C, no damaged, no hazards. 03 DT1 shorted DC For RTC battery, abnormal charging current= 3.01mA. 04 R339 shorted DC For RTC battery, no abnormal charging current. Test with DC/AC inverter: Sampo / YIVNMS0018D11-A 05 CU Fan locked DC hrs Unit shutdown, max. temp. at CU heat-sink body=79.8 C, ambient= 24.4 C, no damaged, no hazards. 06 Ventilation openings blocked DC 19 4hrs Unit shutdown, max. temp. at CU heat-sink body=78.9 C, ambient= 24.5 C, no damaged, no hazards. Test with battery pack: STL Technology Co., Ltd.BTY-M66 (5200mAh) 07 ABUSIVE Overcharge test for battery pack -- DC hrs15mi ns 08 Abnormal charging test for battery pack 09 Short current test Note(s): -- DC hrs30mi ns No Fire, no damaged, no hazards No Fire, no damaged, no hazards mins Maximum short current for 9.5A, no fire, no damaged, no hazards.

40 age : 39 of 52 Appendix I Label

41 age : 40 of 52 Appendix II - Schematic Diagram

42 age : 41 of 52 Appendix III - EuT CB Layout

43 age : 42 of 52 Appendix IV - EuT hotographs age 1 of 8

44 age : 43 of 52 Appendix IV - EuT hotographs age 2 of 8

45 age : 44 of 52 Appendix IV - EuT hotographs age 3 of 8

46 age : 45 of 52 Appendix IV - EuT hotographs age 4 of 8

47 age : 46 of 52 Appendix IV - EuT hotographs age 5 of 8

48 age : 47 of 52 Appendix IV - EuT hotographs age 6 of 8

49 age : 48 of 52 Appendix IV - EuT hotographs age 7 of 8

50 age : 49 of 52 Appendix IV - EuT hotographs age 8 of 8

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