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TYE TEST REORT FOR Uninterruptible ower Systems Model: EA200 series (2000VA, 2200VA, 2500VA, 2600VA, 3000VA, 3500VA) repared for : GUAGDOG EAST OWER CO., LTD. O.6 ORTHER IDUSTRY ROAD, SOGSHA LAKE SCI&TECH IDUSTRY ARK, DOGGUA,.R.CHIA Tel: +86-769-22897777 Fax: +86-769-22898866 repared By : (SHEZHE) CO., LTD. 12B, West Tower, Aidi Building, o.5003 Binhe Rd, Futian District, Shenzhen 518045, China Tel: +86-755-83551033 Fax: +86-755-83552400 Date of Test: ovember 11, 2010 to December 6, 2010 Date of Report: January 20, 2011 Report umber: WT10114471A1-S-S-L

page 1 of 27 TEST REORT E 62040-1:2008 Uninterruptible power systems (US) art 1: General and safety requirements for US Report reference o....: WT10114471A1-S-S-L Compiled by (+ signature)...: Wing Ye Approved by (+ signature)...: Oren Yang... Date of issue...: January 20, 2011 Contents...: 27 pages and 8 pages photo documents Testing Laboratory ame...: Waltek Services... Address...: 12B, West Tower, Aidi Building, o. 5003 Binhe Rd, Futian District, Shenzhen, China Testing location...: 1/F, Fukangtai Building, Baima Rd., Songgang Street, Baoan District, Shenzhen 518105, China. Applicant's ame...: GUAGDOG EAST OWER CO., LTD. Address...: O.6 ORTHER IDUSTRY ROAD, SOGSHA LAKE SCI&TECH IDUSTRY ARK, DOGGUA,.R.CHIA Standard...: E 62040-1:2008 Test Report Form o...: E62040_1_1A TRF originator...: SGS Fimko Ltd Master TRF...: dated 2003-03 Copyright blank test report...: The bodies participating in the Committee of Certification Bodies (CCB) and/or the bodies participating in the CEELEC Certification Agreement (CCA). Test procedure... : CCA-scheme rocedure deviation... :.A on-standard test method... :.A Type of test object...: Trademark...:.A Uninterruptible ower Systems Manufacturer...: GUAGDOG EAST OWER CO., LTD. Model and/or type reference...: EA200 series (2000VA, 2200VA, 2500VA, 2600VA, 3000VA, 3500VA) Serial number...: Engineer sample, no serial number Rating(s)...: See model list roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 2 of 27 General descriptions: The subject models are the Uninterruptible ower Systems. All tests were performed on provided test samples and found that they complied with the requirements of the standards. Tests are performed on models 2200VA and 3000VA to indicate the other models. Model difference: lace Model 2000VA, 2200VA, 2600VA 2500VA, 3000VA, 3500VA Battery 3-12V8AH 4-12V8AH Transformer Dimension W*H* D CB layout EI 133 X 65 420 145 215 355 145 215 (H) EI 150 X 70 475 200 337 All models using the same CB layout Copy of marking plate GUAGDOG EAST OWER CO., LTD Uninterruptible ower Systems Model o: 2200VA Input: 220-240V~, 50/60Hz, 10A Output: 200-240V~, 50/60Hz, 5.4A, 1φ with neutral Made in China GUAGDOG EAST OWER CO., LTD Uninterruptible ower Systems Model o: 3000VA Input: 220-240V~, 50/60Hz, 13.7A Output: 200-240V~, 50/60Hz, 8.2A, 1φ with neutral Made in China roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 3 of 27 articulars: test item vs. test requirements Equipment mobility...: Operating condition...: Tested for IT power systems...: IT testing, phase-phase voltage (V)...: Class of equipment...: Mass of equipment (kg)...: rotection against ingress of water...: Test case verdicts Test case does not apply to the test object : Test item does meet the requirement...: Test item does not meet the requirement...: Testing Movable Continuous o /A Class I 17.8 kg for model 2200VA 26.2 kg for model 3000VA IX0 (.A) (ass) F(ail) Date of receipt of test item...: ovember 10, 2010 Date(s) of performance of test...: ovember 11, 2010 to December 6, 2010 General remarks The test result presented in this report relate only to the object(s) 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. Standard E 62040-1:2008 is to be used in conjunction with E 60950-1:2006+A11:2009, which is referred to in this TRF by "RD". Model list Model Rated Rated Rated Input Input output voltage(v) current(a) voltage(v) Rated Input frequency (Hz) Rated Input apparent power(va) Rated output frequency (Hz) Rated output current (A) 2000VA 220-240 50/60 2000 9.1 200-240 50/60 5.4 2200VA 220-240 50/60 2200 10 200-240 50/60 6.0 2600VA 220-240 50/60 2200 10 200-240 50/60 6.0 2500VA 220-240 50/60 2500 11.4 200-240 50/60 6.8 3000VA 220-240 50/60 3000 13.7 200-240 50/60 8.2 3500VA 220-240 50/60 3000 13.7 200-240 50/60 8.2 roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 4 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 4 GEERAL CODITIOS FOR TESTS 4.5 Components 1.5.1/RD General Comply with IEC 60950-1 or relevant component standard All safety critical components are certified, all components are used within their rating, plastic materials, CBs and wiring material are UL listed, non-certified components were tested according to this standard. (See appended table 4.3) 1.5.2/RD Evaluation and testing of components 1.5.4/RD Transformers Transformer complies with the relevant requirements of the standard and particularly with Annex C/RD. 1.5.5/RD Interconnecting cables 1.5.6/RD Capacitors in primary circuits... 1.5.7/RD Double insulation or reinforced insulation bridged by components o such components 1.5.7.1/RD General 1.5.7.2/RD Bridging capacitors o such capacitors 1.5.7.3/RD Bridging resistors o such resistors 1.5.8/RD Components in equipment for IT power systems ot for IT power systems 4.6 ower interface 1.6.1/RD AC power distribution systems T power system 1.6.2/RD Input current (see appended table 4.4) 1.6.4/RD eutral conductor eutral is identified in the equipment. Basic insulation for rated voltage between earthed parts and primary phases. 4.7 Marking and instructions 4.7.1 General 4.7.2 ower rating Input rated voltage/range (V)... 220-240 Input rated current/range (A)... See model list Input symbol for nature of supply (d.c.)... AC supply Input rated frequency/range (Hz)... 50/60 Output rated voltage/range (V)... 200-240 Output rated current/range (A)... See model list roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 5 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict umber of output phases (1φ - 3φ) 1φ with neutral with/without neutral... Output rated active power (W)... Output rated apparent power (VA)... Output symbol for nature of supply (d.c.) AC supply... Rated frequency or rated frequency range (Hz): 50/60 Max. ambient operating temperature 25 range ( C)... Manufacturer s name or trademark or GUAGDOG EAST OWER CO., LTD identification mark... Type/model or type reference... EA200 series (2000VA, 2200VA, 2500VA, 2600VA, 3000VA, 3500VA) Symbol for Class II equipment only... Class I Other symbols... Certification marks... Instructions for units with automatic o separated bypass. bypass/maintenance bypass, additional input a.c. supply, or external batteries, having text "See installation instructions before connecting to the supply"... 4.7.3 Safety instructions Guidance for installation for operator and User manual service person... Warning label with text "Isolate uninterruptible power supply (US) before working on this circuit" luggable type A, not permanently connected US without internal automatic backfeed isolation 4.7.4 Main voltage adjustment... o such device 1.7.4/RD Supply voltage adjustment... 4.5.5 1.7.5/RD 4.5.6 1.7.6/RD 4.5.7 1.7.7/RD 1.7.7.1/RD Methods and means of adjustment; reference to installation instructions... ower outlets... The maximum apparent and active power of the standard appliance outlets is indicated on the rear of the enclosure adjacent to the appliance outlets. Conforming to IEC 60083. Fuse identification (marking, special art of appliance inlet, or fuse holder, VDE fusing characteristics, cross-reference)... approved Wiring terminals rotective earthing and bonding terminals... roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 6 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 1.7.7.2/RD 1.7.7.3/RD Terminal for a.c. mains supply conductors... Terminals for d.c. mains supply conductors... 4.7.8 Battery terminals... olarity is indicated (+ and -) on the batteries. 4.7.9 1.7.8/RD Controls and indicators 1.7.8.1/RD Identification, location and marking... Front panel 1.7.8.2/RD Colours... Green, yellow and red of indicator are just for function purpose. 1.7.8.3/RD Symbols according to IEC 60417... 1.7.8.4/RD Markings using figures... 4.7.10 1.7.9/RD Isolation of multiple power sources... Only one supply from the mains. 4.7.11 IT power systems 1.7.2.4/RD IT power distribution systems 4.7.12 rotection in building installations luggable equipment type A. 4.7.13 5.1/RD 4.7.14 1.7.10/RD 4.7.15 1.7.2.1/RD 4.7.16 1.7.11/RD 4.7.17 1.7.12/RD 4.7.18 1.7.13/RD 4.7.19 1.7.2.5/RD High leakage current (ma)... RS232 connector: max. 0.022 Enclosure: max. 1.722 Front enclosure with foil: max. 0.021 Thermostats and other regulating devices Language(s)... English Durability of markings o thermostats or regulating devices used. After rubbing test by water and petroleum spirit, the label still easily discernible, indelible and legible. Removable parts o removable parts. Replaceable batteries Irreplaceable Operator access with a tool... 4.7.20 Battery luggable type A, US battery is located in battery compartment. See Model difference Clearly legible information... On battery cell Battery type... Lead-acid ominal voltage of total battery (V)... See Model difference ominal capacity of total battery See Model difference (optional)... roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 7 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict Warning label... On battery compartment Instructions... User manual 4.7.21 Installation instructions Sufficient information 5 FUDAMETAL DESIG REQUIREMETS 5.1 rotection against electric shock and energy hazards -- 2.1.1.2/RD Battery compartments... ot access to TV circuit 2.1.1.4/RD Access to hazardous voltage circuit wiring o such wiring 2.1.1.5/RD Energy hazards... o energy hazard in operator area. 2.1.1.6/RD Manual controls o knob, handle, lever etc 5.1.1 Operator access Only openings in sides of the enclosure. Circuits are not touchable by test pin through the openings. 5.1.2 2.1.1.3/RD category a) category b) Inaccessible to ELV wiring Access to ELV wiring o ELV wiring in operator accessible area. Working voltage (Vpeak or Vrms); minimum distance (mm) through insulation 5.1.3 Discharge of capacitors in the primary circuit 2.1.1.7/RD Discharge of capacitors in equipment o X-Cap. Time-constant (s); measured voltage (V). 5.1.4 Backfeed protection (see appended table 5.1.4) Description of the construction... all-pole isolation relay 5.1.5 Emergency switching (disconnect) device 5.2 Requirements for auxiliary circuits 5.2.1 2.2/RD Safety extra low voltage circuits SELV 42.4V peak or 60V d.c. are not exceeded in SELV circuit under normal operation. 5.2.2 Telephone network voltage circuits 2.3/RD TV o TV circuit 5.2.3 2.4/RD Limited current circuits Frequency (Hz)... Measured current (ma)... Measured voltage (V)... roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 8 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 5.2.4 3.5/RD 5.2.5 2.5/RD Measured capacitance (μf)... External signalling circuits SELV circuit only Limited power source 5.3 rotective earthing and bonding 5.3.1 General 2.6/RD 5.3.2 rotective earthing 5.3.3 rotective bonding 5.4 AC and d.c. power isolation 5.4.1 3.4/RD General 5.4.2 Disconnect devices 5.5 Overcurrent and earth fault protection 5.5.1 General 2.7.3/RD Short-circuit backup protection luggable equipment type A. The building installation is considered as providing shortcircuit backup protection. 2.7.4/RD umber and location of protective devices...: One protective device current fuse is located in Line. 2.7.5/RD rotection by several devices Only one used 2.7.6/RD Warning to service personnel..: o service work necessary. 5.5.2 Basic requirements 5.5.3 Battery circuit protection... 5.5.3.1 Overcurrent and earth fault protection Installed inside with a protective device DC Fuse 5.5.3.2 Location of protective devices Fixing in CB 5.5.3.3 Rating of protective devices Comply 8.3 5.6 rotection of personnel Safety interlocks 5.6.1 2.8/RD Operator protection... o such device roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 9 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 5.6.2 Service person protection 5.6.2.1 Introduction 5.6.2.2 Covers 5.6.2.3 Location and guarding of parts 5.6.2.4 arts on doors 5.6.2.5 Component access 5.6.2.6 Moving parts 5.6.2.7 Capacitor banks 5.6.2.8 Internal batteries 5.7 2.10/RD Clearances, creepage distances and distances through insulation 2.10.1/RD General 2.10.1.1/RD 2.10.1.2/RD Frequency.. : ollution degrees... : ollution Degree 2 2.10.1.3/RD Reduced values for functional insulation 2.10.1.4/RD Intervening unconnected conductive parts 2.10.1.5/RD Insulation with varying dimensions 2.10.1.6/RD Special separation requirements 2.10.1.7/RD Insulation in circuits generating starting pulses 2.10.2/RD Determination of working voltage 2.10.2.1/RD General (See appended table 5.7) 2.10.2.2/RD RMS working voltage 2.10.2.3/RD eak working voltage 2.10.3/RD Clearances (See appended table 5.7) 2.10.3.1/RD General 2.10.3.2/RD Mains transient voltages a) AC mains supply..: b) Earthed d.c. mains supplies..: c) Unearthed d.c. mains supplies..: d) Battery operation.. : 2500Vp roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 10 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 2.10.3.3/RD Clearances in primary circuits (See appended table 5.7) 2.10.3.4/RD Clearances in secondary circuits 2.10.3.5/RD 2.10.3.6/RD 2.10.3.7/RD 2.10.3.8/RD Clearances in circuits having starting pulses Transients from a.c. mains supply.....: Transients from d.c. mains supply. : Transients from telecommunication networks and cable distribution systems..: 2.10.3.9/RD Measurement of transient voltage levels a) Transients from a mains supply For an a.c. mains supply : For a d.c. mains supply..: b) Transients from a telecommunication network 2.10.4/RD Creepage distances (See appended table 5.7) 2.10.4.1/RD General 2.10.4.2/RD Material group and comparative tracking index CTI tests....: Material group IIIb are assumed to be used 2.10.4.3/RD Minimum creepage distances (See appended table 5.7) 2.10.5/RD Solid insulation 2.10.5.1/RD General 2.10.5.2/RD Distances through insulation 2.10.5.3/RD Insulating compound as solid insulation 2.10.5.4/RD Semiconductor devices 2.10.5.5/RD Cemented joints 2.10.5.6/RD Thin sheet material - General 2.10.5.7/RD Separable thin sheet material umber of layers (pcs).: 2 layers 2.10.5.8/RD on-separable thin sheet material 2.10.5.9/RD Thin sheet material standard test procedure Electric strength test roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 11 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 2.10.5.10/RD Thin sheet material alternative test procedure Electric strength test 2.10.5.11/RD Insulation in wound components 2.10.5.12/RD Wire in wound components 2.10.5.13/RD 2.10.5.14/RD Working voltage : a) Basic insulation not under stress..: b) Basic, supplementary, reinforced insulation : c) Compliance with Annex U..: Two wires in contact inside wound components; angle between 45 o and 90 o : Wire with solvent-based enamel in wound components Electric strength test Routine test Additional insulation in wound components Working voltage : - Basic insulation not under stress.: - Supplementary, reinforced insulation.: 2.10.6/RD Construction of printed boards 2.10.6.1/RD Uncoated printed boards 2.10.6.2/RD Coated printed boards 2.10.6.3/RD 2.10.6.4/RD Insulation between conductors on the same inner surface of a printed board Insulation between conductors on different layers of a printed board Distance through insulation umber of insulation layers (pcs)..: 2.10.7/RD Component external terminations 2.10.8/RD Tests on coated printed boards and coated components roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 12 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 2.10.8.1/RD Sample preparation and preliminary inspection 2.10.8.2/RD Thermal conditioning 2.10.8.3/RD Electric strength test 2.10.8.4/RD Abrasion resistance test 2.10.9/RD Thermal cycling 2.10.10/RD 2.10.11/RD Test for ollution Degree 1 environment and insulating compound Tests for semiconductor devices and cemented joints 2.10.12/RD Enclosed and sealed parts: o hermetically sealed components. 6 Wiring, connections and supply 6.1 Introduction 6.1.2 Dimensions and ratings of busbars and insulated conductors 6.2 Connection to power 6.2.1 General provisions for connection to power roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A A non-detachable power supply cord or a detachable power supply cord for an appliance inlet 3.2.2/RD Multiple supply connections Single supply connection. 3.2.3/RD ermanently connected equipment ot permanently connected equipment. umber of conductors, diameter of cable and conduits (mm)...: 3.2.4/RD Appliance inlets 3.2.5/RD ower supply cords 3.2.5.1/RD AC power supply cords Type....: Rated current (A), cross-sectional area (mm 2 ), AWG.: 3.2.5.2/RD DC power supply cords 3.2.6/RD Cord anchorages and strain relief Mass of equipment (kg), pull ()... : Longitudinal displacement (mm)...: 3.2.7/RD rotection against mechanical damage 3.2.8/RD Cord guards

page 13 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict Diameter or minor dimension D (mm); test mass (g)...: Radius of curvature of cord (mm).. : 6.2.2 Means of connection luggable US type A Detachable power supply cord 6.3 Wiring terminals for external power conductors 3.3/RD Wiring terminals for connection of external conductors 3.3.1 Wiring terminals 3.3.2 Connection of non-detachable power supply cords 3.3.3 Screw terminals 3.3.4 Conductor sizes to be connected Rated current (A), cord/cable type, cross-sectional area (mm2) : 3.3.5 Wiring terminal sizes Rated current (A), type, nominal thread diameter (mm)...: 3.3.6 Wiring terminals design 3.3.7 Grouping of wiring terminals 3.3.8 Stranded wire 7 hysical requirements 7.1 Enclosure o carry current 7.2 4.1/RD 7.3 4.2/RD Stability 10, no tip Mechanical strength 250, 5s 4.2.1/RD General 4.2.2/RD Steady force test, 10 4.2.3/RD Steady force test, 30. 4.2.4/RD Steady force test, 250 Enclosure, 5s, no damage 4.2.5/RD Impact test 1.3m Fall test For top enclosure Swing test roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A For right side, left side, front side and back side

page 14 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 4.2.6/RD Drop test; height (mm).: 4.2.7/RD Stress relief test 70 C, 7 hours 4.2.8/RD Cathode ray tubes o CRT. icture tube separately certified.: 4.2.9/RD High pressure lamps o high pressure lamps. 4.2.10/RD Wall or ceiling mounted equipment; force () : ot wall or ceiling mounted equipment. 7.4 Construction details 7.4.1 Introduction 4.3.1/RD Edges and corners Edges and corners of the enclosure are rounded. 4.3.2/RD Handles and manual controls; force () : o handles or manual controls. 4.3.3/RD Adjustable controls o adjustable controls. 4.3.4/RD Securing of parts 4.3.5/RD Connection by plugs and sockets 4.3.7/RD Heating elements in earthed equipment 4.3.11/RD Containers for liquids or gases 4.4/RD rotection against hazardous moving o moving part parts 4.4.1/RD General 4.4.2/RD rotection in operator access areas 4.4.3/RD rotection in restricted access locations 4.4.4/RD rotection in service access areas 7.4.2 Openings For side opening, no hazardous and energy hazard parts are located in projection area, which vertically, or within a 5 degree angle from the edges of the openings. 7.4.3 Gas concentration See 7.6 7.4.4 Equipment movement 7.5 4.7/RD Resistance to fire roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A Electrical parts not likely to ignite nearby materials and the fire enclosures used 4.7.2/RD Conditions for a fire enclosure All components located in a fire enclosure and metal enclosure.

page 15 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 7.6 Battery location 7.6.1 Battery location and installation Installed inside 7.6.2 Accessibility and maintainability 7.6.3 Distance Ventilation 7.6.4 Case insulation 7.6.5 Wiring 7.6.6 Electrolyte spillage VRLA battery 7.6.7 Ventilation 7.6.8 Charging voltages 7.7 Temperature rise Maximum temperatures (see appended table 7.7) 4.5.2/RD Resistance to abnormal heat Ball pressure test (see appended table 7.7) 8 ELECTRICAL REQUIREMETS AD SIMULATED ABORMAL CODITIOS 8.1 5.1.1/RD General 5.1.2/RD Equipment under test (EUT) 5.1.7/RD Equipment with touch current exceeding See 4.7.13 3.5 ma... 8.2 Electric strength 5.2.1/RD General (see appended table 5.7) 5.2.2/RD Test procedure (see appended table 5.7) 8.3 Abnormal operating and fault conditions 5.3.1/RD rotection against overload and abnormal operation (see appended table 8.3) 5.3.2/RD Motors o motor 5.3.3/RD Transformers (see appended Annex C) 5.3.4/RD Functional insulation... 5.3.5/RD Electromechanical components 5.3.8/RD Compliance criteria for abnormal operating and fault conditions (see appended table 8.3) 8.3.1 Simulation of faults (see appended table 8.3) 8.3.2 Conditions for tests 9 COECTIO TO TELECOMMUICATIO ETWORKS roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 16 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict 6.1/RD rotection of telecommunication network service persons, and users of other equipment connected to the network, from hazards in the equipment -- 6.1.1/RD rotection from hazardous voltages 6.1.2/RD Separation of the telecommunication network from earth 6.1.2.1/RD Requirements Test voltage (V)... Current in the test circuit (ma)... 6.1.2.2/RD Exclusions... 6.2/RD rotection of equipment users from overvoltages on telecommunication networks 6.2.1/RD Separation requirements 6.2.2/RD Electric strength test procedure 6.2.2.1/RD Impulse test 6.2.2.2/RD Steady-state test 6.2.2.3/RD Compliance criteria 6.3/RD rotection of the telecommunication wiring system from overheating Max. output current (A)....A Current limiting method....a 1.4.8/RD ormal operating voltages... 1.4.11/RD ower from a telecommunication network... 2.1.1/RD rotection in operator access areas 2.1.1.1/RD Access to energized parts Test by inspection... Test with test finger... Test with test pin... Test with test probe... 2.1.1.2/RD Battery compartments... 2.1.3/RD rotection in restricted access locations 2.3/RD TV circuits 2.3.1/RD Limits 2.3.2/RD Type of TV circuits....a Separation from other circuits and from accessible parts Insulation employed....a 2.3.3/RD Separation from hazardous voltages roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 17 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict Insulation employed....a 2.3.4/RD 2.3.5/RD Connection of TV circuits to other circuits Insulation employed....a Test for operating voltages generated externally 2.6.1/RD rotective earthing 2.6.5.8/RD Reliance on telecommunication network or cable distribution system 2.9.3/RD Grade of insulation 2.10.3.3/RD Clearances in secondary circuits 2.10.3.4/RD Measurement of transient voltage levels 2.10.4/RD Creepage distances 3.5/RD Interconnection of equipment 3.5.1/RD General requirements 3.5.2/RD Types of interconnection circuits... M/RD AEX M, CRITERIA FOR TELEHOE RIGIG SIGALS (see 2.3.1) M.1/RD Introduction M.2 /RD Method A M.3/RD Method B M.3.1/RD Ringing signal M.3.1.1/RD Frequency (Hz)....A M.3.1.2/RD Voltage (V)....A M.3.1.3/RD Cadence; time (s), voltage (V)....A M.3.1.4/RD Single fault current (ma)....a M.3.2/RD Tripping device and monitoring voltage... M.3.2.1/RD Conditions for use of a tripping device or a monitoring voltage M.3.2.2/RD Tripping device M.3.2.3/RD Monitoring voltage (V)... A/RD AEX A, TESTS FOR RESISTACE TO HEAT AD FIRE A.1/RD Flammability test for fire enclosures of movable equipment having a total mass exceeding 18 kg, and of stationary equipment (see 4.7.3.2) A.1.1/RD Samples....A Wall thickness (mm)....a roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 18 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict A.1.2/RD Conditioning of samples; temperature ( C)... A.1.3/RD Mounting of samples... A.1.4/RD Test flame (see IEC 60695-11-3) Flame A, B, C or D....A A.1.6/RD Compliance criteria Sample 1 burning time (s)....a Sample 2 burning time (s)....a Sample 3 burning time (s)....a A.2/RD 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 4.7.3.2 and 4.7.3.4) A.2.1/RD Samples, material... Metal enclosure Wall thickness (mm)....a A.2.2/RD Conditioning of samples A.2.3/RD Mounting of samples A.2.4/RD Test flame (see IEC 60695-11-4) Flame A, B or C....A A.2.5/RD Test procedure A.2.6/RD Compliance criteria Sample 1 burning time (s)....a Sample 2 burning time (s)....a Sample 3 burning time (s)....a A.2.7/RD Alternative test acc. to IEC 60695-2-2, cl. 4 and 8 Sample 1 burning time (s)....a Sample 2 burning time (s)....a Sample 3 burning time (s)....a A.3/RD Hot flaming oil test (see 4.6.2) A.3.1/RD Mounting of samples A.3.2/RD Test procedure A.3.3/RD Compliance criterion B/RD AEX B, MOTOR TESTS UDER ABORMAL CODITIOS (see 4.7.2.2 and 5.3.2) B.1/RD General requirements o motor osition....a Manufacturer....A roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 19 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict Type....A Rated values....a B.2/RD Test conditions B.3/RD Maximum temperatures B.4/RD Running overload test B.5/RD Locked-rotor overload test Test duration (days)....a Electric strength test: test voltage (V)....A B.6/RD Running overload test for d.c. motors in secondary circuits B.7/RD Locked-rotor overload test for d.c. motors in secondary circuits B.7.1/RD Test procedure B.7.2/RD Alternative test procedure; test time (h)....a B.7.3/RD Electric strength test B.8/RD Test for motors with capacitors B.9/RD Test for three-phase motors B.10/RD Test for series motors Operating voltage (V)....A C/RD AEX C, TRASFORMERS (see 1.5.4 and 5.3.3) Transformer is designed for operational insulation only. o safety isolation transformers used.separating transformer is CE approved osition... T1 Manufacturer... See table 4.3 Type... See model difference Rated values... Class B Method of protection... C.1/RD Overload test C.2/RD Insulation rotection from displacement of Bobbin and tapes windings... D/RD AEX D, MEASURIG ISTRUMETS FOR TOUCH-CURRET TESTS (see 5.1.4) D.1/RD Measuring instrument D.2/RD Alternative measuring instrument E/RD AEX E, TEMERATURE RISE OF A WIDIG (see 1.4.13) roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 20 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict F/RD AEX F, MEASUREMET OF CLEARACES AD CREEAGE DISTACES (see 2.10) G/RD AEX G, ALTERATIVE METHOD FOR DETERMIIG MIIMUM CLEARACES G.1/RD G.2/RD Summary of the procedure for determining minimum clearances Determination of mains transient voltage (V)... G.2.1/RD AC mains supply G.2.2/RD DC mains supply G.3/RD G.4/RD Determination of telecommunication network transient voltage (V)... Determination of required withstand voltage (V)... G.5/RD Measurement of transient levels (V)... G.6/RD Determination of minimum clearances... H AEX H, GUIDACE O ROTECTIO AGAIST IGRESS OF WATER AD FOREIG OBJECTS (see IEC 60529) J/RD AEX J, TABLE OF ELECTROCHEMICAL OTETIALS (see 2.6.5.6) Metal used....a K/RD AEX K, THERMAL COTROLS (see 1.5.3 and 5.3.7) K.1/RD Making and breaking capacity K.2 /RD Thermostat reliability; operating voltage (V)... K.3/RD K.4/RD Thermostat endurance test; operating voltage (V)... Temperature limiter endurance; operating voltage (V)... K.5/RD Thermal cut-out reliability K.6/RD Stability of operation L AEX L, BACKFEED ROTECTIO TEST L.1 General luggable equipment type A L.2 Test for pluggable equipment type A or pluggable equipment type B US L.3 Test for permanently connected US roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 21 of 27 E 62040-1:2008 Clause Requirement Test Result Remark Verdict L.4 Single-fault conditions M AEX M, EXAMLES OF REFERECE LOAD CODITIOS M.1 General M.2 Reference resistive load M.3 Reference inductive-resistive load M.4 Reference capacitive-resistive loads M.5 Reference non-linear load M.5.1 Test method M.5.2 Connection of the non-linear reference load AEX, VETILATIO OF BATTERY COMARTMETS.1 General Hermetic.2 Hydrogen concentration.3 Blocked conditions.4 Overcharge test O Guidance for disconnection of batteries during shipment O.1 Applicable products O.2 Battery disconnection O.3 ackage labelling/marking O.4 Damage inspection O.5 The importance of safe handling procedures roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 22 of 27 4.3 TABLE: list of critical components All safety critical components should be approved, like power cord and sets, appliance inlet, X-cap, varistor, opto coupler, relay, CB, internal wire etc object/part o. Front panel enclosure manufacturer/ trademark type/model technical data standard mark(s) of conformity 1 ) Various Various 80 C, V-1 UL 746 UL Socket Various Various 10A, 250V E 60320-1 VDE Appliance inlet Various Various 10A 250V~ E 60320-1 VDE Fuse Various Various 250V, 10A 250V, 15A E 60127-1 Fuse holder Various Various AC250V, 16A E 60127-6 VDE Battery Various Various 12V, 8AH, 12V, 7AH Relay Various Various 6A 250VAC 12VDC (alternative) Various Various 10A 240VAC 12VDC IEC 62133 E 60255 E 60255 Internal wire Various Various 12AWG 600V UL 758 UL (Battery used) (alternative) Various Various 12AWG, 600V, 105 C UL 758 UL DC Fuse Various Various 50V, 30A E 60127-1 VDE Transformer --Thermal protectors --Insulating Tape --aper Insulating Tape Guangdong East ower Co.,Ltd. EI Class:B -- Various Various 5-15A 250V~ 150 Various Various Various Various E60730-1 E60730-2-2 VDE IEC TUV TUV Test with appliance TUV 130 C UL510 E165111 180 C UL510 E326305 --Bobbin Various Various 125 C UL 746 E116324 --Magnet wire Various Various 130 C UL1446 E215691 --Down-lead Various Various 105 C, 18AWG UL758 E204893 1 ) an asterisk indicates a mark which assures the agreed level of surveillance roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 23 of 27 4.4 TABLE: electrical data (in normal conditions) fuse # Irated (A) U (V) ower (W) I (A) Ifuse (A) condition/status Model: 2200VA FUSE -- 198/50Hz 1520 7.54 7.54 Maximum normal load FUSE 10 220/50Hz 1489 6.53 6.53 Maximum normal load FUSE 10 240/50Hz 1565 6.46 6.46 Maximum normal load FUSE -- 254/50Hz 1647 6.48 6.48 Maximum normal load FUSE -- 198/60Hz 1522 7.51 7.51 Maximum normal load FUSE 10 220/60Hz 1505 6.55 6.55 Maximum normal load FUSE 10 240/60Hz 1542 6.41 6.41 Maximum normal load FUSE -- 254/60Hz 1632 6.48 6.48 Maximum normal load Model: 3000VA FUSE -- 198/50Hz 2010 10.2 10.2 Maximum normal load FUSE 13.7 220/50Hz 1916 8.5 8.5 Maximum normal load FUSE 13.7 240/50Hz 2008 8.3 8.3 Maximum normal load FUSE -- 254/50Hz 2034 8.38 8.38 Maximum normal load FUSE -- 198/60Hz 2019 10.4 10.4 Maximum normal load FUSE 13.7 220/60Hz 1934 8.6 8.6 Maximum normal load FUSE 13.7 240/60Hz 2040 8.45 8.45 Maximum normal load FUSE -- 254/60Hz 2019 8.29 8.29 Maximum normal load 5.1.2 TABLE: distance through insulation measurements distance through insulation di at/of: Up (V) test voltage (V) required di (mm) -- -- -- -- -- di (mm) 5.1.4 TABLE: Backfeed protection test Condition Voltage measured (V) Comments L- L-G -G o load 0.03 13.30 13.27 Test on model: 2200VA Full load 0.28 13.28 13.26 Test on model: 2200VA o load 0.03 3.63 3.63 Test on model: 3000VA Full load 0.30 3.42 3.41 Test on model: 3000VA 5.3 and 2.4/RD TABLE: limited current circuit measurement Location Voltage (V) Current (ma) Freq. (Hz) Limit (ma) -- -- -- -- -- -- Comments roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 24 of 27 Output measured with a 2 KΩ resistor as under backup mode. 5.7 and 9 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) Live part to metal enclosure 340 240 2.0 4.5 2.5 4.5 Live part to SELV circuit 340 240 4.0 6.5 5.0 7.0 dcr (mm) 5.7, 6, 8.2 and 9 TABLE: electric tests, impulse tests and voltage surge tests test voltage applied between: Model: 1600VA test voltage (V) a.c. / d.c. breakdown Yes / o Live parts to earthed pin of inlet 1500VAC o Live parts to metal enclosure 1500VAC o Live parts to front panel with metal foil 3000VAC o Live parts to SELV circuit 3000VAC o 7.5 TABLE: resistance to fire part manufacturer of material type of material thickness (mm) flammability class Front panel Various Various 2.0 V-1 roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 25 of 27 7.5 and 8.3 component o. TABLE: fault condition tests ambient temperature ( C)... : 26.6 model/type of power supply... : See below manufacturer of power supply... : -- rated markings of power supply... : -- fault test voltage (V) test time fuse o. fuse current (A) result Output Short circuit 240 1 s. FUSE 6.46 to 0 Fuse opened immediately. o hazards. Test on model: 2200VA Output Short circuit 240 1 s. FUSE 8.45 to 0 Fuse opened immediately. o hazards. Test on model: 3000VA Output Overload 240 5 h. FUSE 6.46 to 7.64 to 8.66 to 10.63 to 0 Output Overload 240 5 h. FUSE 8.45 to 10.8 to 12.3 to 14.4 to 16.1 to 0 Fuse opened. Max. output current: 11.5A, T1 winding temperature: 95.3 C, ambient temperature: 28.9 C. o hazards. Test on model: 2200VA Fuse opened. Max. output current: 17.5A, T1 winding temperature: 88.3 C, ambient temperature: 28.0 C. o hazards. Test on model: 3000VA Openings Block 240 3 h. FUSE 6.46 to 6.46 T1 winding temperature: 87.5 C, Ambient temperature: 28.1 C, unit normal operation. o hazards. Test on model: 2200VA Openings Block 240 3 h. FUSE 8.45 to 8.45 T1 winding temperature: 82.8 C, Ambient temperature: 29.1 C, unit normal operation. o hazards. Test on model: 3000VA Q23 pin D and pin G Short circuit Battery mode 10 min. F1, F2 -- F1 & F2 opened, Q1, Q2 and Q3 damaged, no hazard. Test on model: 3000VA roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 26 of 27 component o. Q23 pin D and pin S Q23 pin S and pin G fault Short circuit Short circuit test voltage (V) Battery mode Battery mode test time fuse o. 10 min. F1, F2 10 min. F1, F2 fuse current (A) C18 Short circuit 240 10 min. FUSE 8.45 to 5.4 to 0 Remark: 1) In charging mode ; 2) In discharging mode result -- F1 & F2 opened, Q1, Q2 and Q3 damaged, no hazard. Test on model: 3000VA -- Unit shutdown immediately, recoverable after the fault removed. o hazards. Test on model: 3000VA ormal operation, F1, F2 opened, discharge mode invalidation. o hazards. 7.7 TABLE A: maximum temperatures test voltage (V)... AC198 AC254 Battery discharge t amb1 ( C)... See below See below See below t amb2 ( C)... See below See below See below maximum temperature T of part/at:: Model: 2200VA T( o C) Measureed T( o C) Measureed T( o C) Measureed allowed dtmax ( o C) 1. Input AC Socket 61.8 54.5 53.9 80 2. Internal wire 65.6 59.5 99.8 105 3. Fuse box 72.2 62.1 61.5 80 4. Transformer coil 88.7 79.1 90.9 110 5. Transformer core 86.7 77.0 79.2 110 6. CT1 coil 74.9 66.4 66.6 110 7. CT1 core 76.9 67.8 68.1 110 8. Relay J1 body 87.9 74.6 76.8 90 9. C24 body 66.7 58.6 60.1 105 10. C15 body 90.7 82.0 88.9 105 11. CB under Q20 63.7 65.2 127.2 130 12. CB under Q10 68.2 63.2 124.0 130 13. C18 near R57 71.3 64.9 105.5 105 14. C19 near R65 65.6 60.2 104.4 105 15. Battery near Q2 59.3 53.9 66.1 80 16. Output AC Socket 50.7 47.2 47.6 80 17. Metal enclosure outside 46.1 42.5 63.2 70 18. Front enclosure inside 36.8 35.4 37.6 95 roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

page 27 of 27 maximum temperature T of part/at:: T( o C) Measureed T( o C) Measureed T( o C) Measureed allowed dtmax ( o C) 19. Front enclosure outside 34.8 33.7 34.7 95 20. Ambient 29.0 29.0 29.0 -- Model: 3000VA 1. Input AC Socket 45.7 41.4 33.8 80 2. Internal wire 49.2 46.1 71.1 105 3. Fuse box 66.5 59.0 35.4 80 4. Transformer coil 68.3 61.3 91.3 110 5. Transformer core 65.1 58.5 77.4 110 6. CT1 coil 59.6 54.2 42.1 110 7. CT1 core 63.2 57.1 42.9 110 8. Relay J1 body 64.4 54.5 42.9 90 9. C24 body 60.2 55.1 40.9 105 10. C15 body 77.4 71.7 50.2 105 11. CB under Q20 60.4 64.9 92.6 130 12. CB under Q10 55.6 53.8 83.8 130 13. C18 near R57 51.4 48.0 55.9 105 14. C19 near R65 51.0 48.6 56.7 105 15. Battery near Q2 40.2 37.8 43.3 80 16. Output AC Socket 41.7 41.7 34.8 80 17. Metal enclosure outside 39.7 39.1 37.2 70 18. Front enclosure inside 33.6 35.2 30.0 95 19. Front enclosure outside 29.1 31.9 26.7 95 20. Ambient 27 25 25.2 -- 7.7 TABLE B: ball pressure test of thermoplastic parts allowed impression diameter (mm)... : 2 mm part test temperature ( C) impression diameter (mm) Bobbin of transformer 125 0.8 C1 125 0.7 ----------------------------------ED---------------------------------- roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L TRF o.: E62040_1_1A

age 1 of 8 ATTACHMET- hoto Documentation hoto 1 View: front rear right side left side top bottom internal Model: 2200VA hoto 2 View: front rear right side left side top bottom internal Model: 2200VA roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L

age 2 of 8 ATTACHMET- hoto Documentation hoto 3 View: front rear right side left side top bottom internal Model: 2200VA hoto 4 View: front rear right side left side top bottom internal Model: 2200VA roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L

age 3 of 8 ATTACHMET- hoto Documentation hoto 5 View: front rear right side left side top bottom internal Model: 3000VA hoto 6 View: front rear right side left side top bottom internal Model: 3000VA roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L

age 4 of 8 ATTACHMET- hoto Documentation hoto 7 View: front rear right side left side top bottom internal Model: 3000VA hoto 8 View: front rear right side left side top bottom internal Model: 3000VA roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L

age 5 of 8 ATTACHMET- hoto Documentation hoto 9 View: front rear right side left side top bottom internal All models hoto 10 View: front rear right side left side top bottom internal All models roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L

age 6 of 8 ATTACHMET- hoto Documentation hoto 11 View: front rear right side left side top bottom internal Model: 2200VA hoto 12 View: front rear right side left side top bottom internal Model: 3000VA roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L

age 7 of 8 ATTACHMET- hoto Documentation hoto 13 View: front rear right side left side top bottom internal All models hoto 14 View: front rear right side left side top bottom internal All models roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L

age 8 of 8 ATTACHMET- hoto Documentation hoto 15 View: front rear right side left side top bottom internal All models roject Engineer: Wing Ye Reference o.: WT10114471A1-S-S-L