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The test result refers exclusively to the model tested. This report must not be copied without the written authorization by the lab. Registration number: DGA-PL-224/95-03 IEC 60950-1 and/or EN 60950-1 (2 nd Edition) Information technology equipment Safety 110423-AU02+S01 Quantum Glass Saint Gobain France switching power supply SMPS 110VAC-S 80VA U Customer: Quantum Glass Saint Gobain - France 4, Passage Sainte Avoye / 8 rue Rambuteau 75003 Paris France

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Page 1: IEC 60950-1 and/or EN 60950-1 Edition) Information ... · PDF fileIEC 60950-1 and/or EN 60950-1 (2nd Edition) ... identification mark Schiederwerk X Model identification or type reference

The test result refers exclusively to the model tested.

This report must not be copied without

the written authorization by the lab.

Registration number: DGA-PL-224/95-03

IEC 60950-1 and/or EN 60950-1 (2nd Edition)

Information technology equipment

– Safety –

110423-AU02+S01

Quantum Glass – Saint Gobain – France

switching power supply

SMPS 110VAC-S 80VA U

Customer:

Quantum Glass – Saint Gobain - France 4, Passage Sainte Avoye / 8 rue Rambuteau

75003 Paris France

Page 2: IEC 60950-1 and/or EN 60950-1 Edition) Information ... · PDF fileIEC 60950-1 and/or EN 60950-1 (2nd Edition) ... identification mark Schiederwerk X Model identification or type reference

EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 2 of 65

TEST REPORT

IEC 60950-1 and/or EN 60950-1 (2nd Edition) / A11:2009 / A1:2010

Information technology equipment – Safety – Part 1: General requirements

Report reference No . ..................... : 110423-AU02+S01

Tested by (printed name and signature) .......... :

Richard Gierl

.....................................................

Approved by (printed name and signature) .......... :

Alexander Fischer

.....................................................

Date of issue ................................... : 2012-07-18

Testing Laboratory Name ............. : EMV Testhaus GmbH

Address ........................................... :

Gustav-Hertz-Straße 35 D-94315 Straubing Germany

Telephone: ...... +49 (0)9421-56868-0

Fax: ................. +49 (0)9421-56868-100

Applicant's Name .......................... : Quantum Glass – Saint Gobain - France

Address ........................................... : 4, Passage Sainte Avoye / 8 rue Rambuteau

.......................................................... : 75003 Paris

France

Test specification

Standard ........................................... : IEC 60950-1:2005 (2nd

Edition); Am 1:2009 and/or EN 60950-1:2006 / A11:2009 / A1:2010

Test procedure ................................ : CE conformity test

Non-standard test method ............... :

Test item description .................... : Switching Power Supply

Trademark ....................................... : Quantum Glass – Saint Gobain - France

Manufacturer ................................... : SCHIEDERWERK GmbH & Co.KG

Model and/or type reference ........... : SMPS 110VAC-S 80VA U

Serial number .................................. : *00015*

Rating(s) ........................................... : Voltage: 110-240VAC / Frequency: 50-60 Hz / Current: 1.1-0.5 A

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EMV TESTHAUS GmbH

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Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 3 of 65

General product information:

The EUT is a class I power supply unit. Equipment is single-phase alternating current supplied.

Output voltage of PSU: 100V AC (secondary circuit with hazardous voltages)

Equipment is for building-in.

Copy of marking plate:

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Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 4 of 65

Summary of testing:

Clause 1.5 Components ............................................................... : Pass Fail N/A N/T

Clause 1.6 Power interface .......................................................... : Pass Fail N/A N/T

Clause 1.7 Markings and instructions .......................................... : Pass Fail N/A N/T

Clause 2.1 Protection from electric shock and energy hazards ... : Pass Fail N/A N/T

Clause 2.2 SELV circuits .............................................................. : Pass Fail N/A N/T

Clause 2.3 TNV circuits ................................................................ : Pass Fail N/A N/T

Clause 2.4 Limited current circuits ............................................... : Pass Fail N/A N/T

Clause 2.5 Limited power sources ............................................... : Pass Fail N/A N/T

Clause 2.6 Provisions for earthing and bonding .......................... : Pass Fail N/A N/T

Clause 2.7 Overcurrent and earth fault protection in primary circuits ........................................................................ :

Pass Fail N/A N/T

Clause 2.8 Safety interlocks ......................................................... : Pass Fail N/A N/T

Clause 2.9 Electrical insulation .................................................... : Pass Fail N/A N/T

Clause 2.10 Clearances, creepage distances and distances through insulation ....................................................... :

Pass Fail N/A N/T

Clause 3.1 Wirings ....................................................................... : Pass Fail N/A N/T

Clause 3.2 Connection to an a.c. mains supply or a d.c. mains supply ......................................................................... :

Pass Fail N/A N/T

Clause 3.3 Wiring terminals for connection of external conductors .................................................................. :

Pass Fail N/A N/T

Clause 3.4 Disconnection from the mains supply ........................ : Pass Fail N/A N/T

Clause 3.5 Interconnection of equipment ..................................... : Pass Fail N/A N/T

Clause 4.1 Stability ....................................................................... : Pass Fail N/A N/T

Clause 4.2 Mechanical strength ................................................... : Pass Fail N/A N/T

Clause 4.3 Design and construction............................................. : Pass Fail N/A N/T

Clause 4.4 Protection against hazardous moving parts ............... : Pass Fail N/A N/T

Clause 4.5 Thermal requirements ................................................ : Pass Fail N/A N/T

Clause 4.6 Openings in enclosures.............................................. : Pass Fail N/A N/T

Clause 4.7 Resistance to fire ....................................................... : Pass Fail N/A N/T

Clause 5.1 Touch current and protective conductor current ........ : Pass Fail N/A N/T

Clause 5.2 Electric strength ......................................................... : Pass Fail N/A N/T

Clause 5.3 Abnormal operating and fault conditions .................... : Pass Fail N/A N/T

Clause 6 Connection to telecommunication networks .............. : Pass Fail N/A N/T

Clause 7 Connection to cable distribution systems ................... : Pass Fail N/A N/T

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Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 5 of 65

Summary of testing (remarks):

The product is in compliance with the requiremts of IEC/EN 60950-1.

Particulars: test item vs. test requirements

Equipment mobility ..................................... : Stationary Equipment

Operating condition ..................................... : continuous

Mains supply tolerance (%) ......................... : +6% / -10%

Tested for IT power systems ...................... : Tested for TN system

IT testing, phase-phase voltage (V) ........... : - -

Class of equipment ..................................... : Class I Equipment

Mass of equipment (kg) ............................... : 780g

Protection against ingress of water ............ : IP20

Test case verdicts

Test clause not tested ................................ : N/T

Test case does not apply to the test object : N/A

Test item does meet the requirement ........ : P(ass)

Test item does not meet the requirement .. : F(ail)

Testing

Date of receipt of test item ......................... : 2012-06-05

Date(s) of performance of test ................... : 2012 week 27

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Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 6 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

1 GENERAL X

1.5 Components X

1.5.1 General X

Comply with IEC 60950-1 or relevant component standard

See appendend table X

1.5.2 Evaluation and testing of components X

1.5.3 Thermal controls No Thermal control used X

1.5.4 Transformers (See Annex C) X

1.5.5 Interconnecting cables No interconnecting cables used X

1.5.6 Capacitors bridging insulation PrimSec / 2x Y2 / D or R (C215,C216)

Prim/Earth Y2 / B or S

(C104, C105)

Sec/Earth

(CS308, CS309, CS507, CS508, CS500, CS506)

X

1.5.7 Resistors bridging insulation No such components X

1.5.7.1 Resistors bridging functional, basic or supplementary insulation

X

1.5.7.2 Resistors bridging double or reinforced insulation between a.c. mains and other circuits

X

1.5.7.3 Resistors bridging double or reinforced insulation between a.c. mains and antenna or coaxial cable

X

1.5.8 Components in equipment for IT power systems

X

1.5.9 Surge suppressors See annex Q X

1.5.9.1 General R1 X

1.5.9.2 Protection of VDRs VDR is protected by F1and F2 X

1.5.9.3 Bridging of functional insulation by a VDR VDR is bridging functional insulation

X

1.5.9.4 Bridging of basic insulation by a VDR No bridging of a basic insulation X

1.5.9.5 Bridging of supplementary, double or reinforced insulation by a VDR

No bridging of supplementary, double or reinforced insulation

X

1.6 Power interface X

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switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 7 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

1.6.1 AC power distribution systems TN system is used. X

1.6.2 Input current see appended table 1.6.2. X

1.6.3 Voltage limit of hand-held equipment Equipment is not hand-held. X

1.6.4 Neutral conductor Functional insulation is used. X

1.7 Marking and instructions X

1.7.1 Power rating and identification markings X

1.7.1.1 Power rating marking X

Multiple mains supply connections ............ : No multiple mains supply connections.

X

Rated voltage(s) or voltage range(s) (V) .. : 110-240 VAC X

Symbol for nature of supply, for d.c. only .. : No d.c. supply. X

Rated frequency or rated frequency range (Hz) ........................................................... :

50-60 Hz X

Rated current (mA or A) ........................... : 1,1-0,4A X

1.7.1.2 Identification markings X

Manufacturer’s name or trade-mark or identification mark

Schiederwerk X

Model identification or type reference SMPS 110VAC-S 80VAU. X

Symbol for Class II equipment only Class I equipment. X

Other markings and symbols : Considered X

1.7.2 Safety instructions and marking X

1.7.2.1 General Precautions in instruction. X

1.7.2.2 Disconnect devices Has to be considered in end product.

X

1.7.2.3 Overcurrent protective device Overcurrent protection by F1, F2 X

1.7.2.4 IT power distribution systems TN-System used. X

1.7.2.5 Operator access with a tool Symbol Nr. 5036 is used X

1.2.7.6 Ozone No generation of ozone X

1.7.3 Short duty cycles Continuous rating. X

1.7.4 Supply voltage adjustment ..................... : No voltage adjustment. Full range input.

X

Methods and means of adjustment; reference to installation instructions ........ :

X

1.7.5 Power outlets on the equipment .............. : No Power outlets on the equipment.

X

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Germany

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switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 8 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

1.7.6 Fuse identification (marking, special fusing characteristics, cross-reference) ............ :

F1, F2 on PCB (T 1,6A, 250V) X

1.7.7 Wiring terminals X

1.7.7.1 Protective earthing and bonding terminals Symbol IEC 60417-5019 is used. X

1.7.7.2 Terminals for a.c. mains supply conductors Symbol N is used. X

1.7.7.3 Terminals for d.c. mains supply conductors Equipment is not connected to d.c. mains supply.

X

1.7.8 Controls and indicators No such controls and indicators. X

1.7.8.1 Identification, location and marking ......... : X

1.7.8.2 Colours .................................................... : X

1.7.8.3 Symbols according to IEC 60417 ............ : X

1.7.8.4 Markings using figures ............................. : X

1.7.9 Isolation of multiple power sources ......... : Only one power source. X

1.7.10 Thermostats and other regulating devices ........... : No Thermostats on the equipment.

X

1.7.11 Durability The markings withstands the required tests.

X

1.7.12 Removable parts No removable parts (only with tools).

X

1.7.13 Replaceable batteries .............................. : No batteries on the equipment. X

Language(s) ............................................ : X

1.7.14 Equipment for restricted access locations: Equipment is not intended for use in r.a.l.

X

2 PROTECTION FROM HAZARDS X

2.1 Protection from electric shock and energy hazards

X

2.1.1 Protection in operator access areas X

2.1.1.1 Access to energized parts See below. X

Test by inspection ................................... : Equipment is for building-in. X

Test with test finger (Figure 2A) ............. : Applied on enclosure. No access to hazardous voltage parts.

X

Test with test pin (Figure 2B) .................. : Equipment is for building-in. X

Test with test probe (Figure 2C) ............. : No TNV circuits. X

2.1.1.2 Battery compartments No battery compartments. X

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switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 9 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

2.1.1.3 Access to ELV wiring No ELV wiring. X

Working voltage (Vpeak or Vrms); minimum distance through insulation (mm)

X

2.1.1.4 Access to hazardous voltage circuit wiring No hazardous voltage wiring. Only PCB traces.

X

2.1.1.5 Energy hazards ....................................... : No energy hazards in operator access area.

X

2.1.1.6 Manual controls No manual controls X

2.1.1.7 Discharge of capacitors in equipment X

Measured voltage (V); time-constant (s) . : Primary under 60 V in 40ms, secondary under 60 V in 260ms.

X

2.1.1.8 Energy hazards – d.c. mains supply No d.c. mains supply. X

a) Capacitor connected to the d.c. mains supply ..................................................... :

X

b) Internal battery connected to the d.c. mains supply ........................................... :

X

2.1.1.9 Audio amplifiers ...................................... : No audio amplifiers. X

2.1.2 Protection in service access areas Considered X

2.1.3 Protection in restricted access locations Equipment is not for use in r.a.l X

2.2 SELV circuits No SELV circuits. X

2.2.1 General requirements X

2.2.2 Voltages under normal conditions (V) .... : X

2.2.3 Voltages under fault conditions (V) ......... : X

2.2.4 Connection of SELV circuits to other circuits ..................................................... :

X

2.3 TNV circuits No TNV circuits. X

2.3.1 Limits X

Type of TNV circuits ................................ : X

2.3.2 Separation from other circuits and from accessible parts

X

2.3.2.1 General requirements X

2.3.2.2 Protection by basic insulation X

2.3.2.3 Protection by earthing X

2.3.2.4 Protection by other constructions ........... : X

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Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 10 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

2.3.3 Separation from hazardous voltages X

Insulation employed ................................. : X

2.3.4 Connection of TNV circuits to other circuits

X

Insulation employed ................................. : X

2.3.5 Test for operating voltages generated externally

X

2.4 Limited current circuits No limited current circuits. X

2.4.1 General requirements X

2.4.2 Limit values X

Frequency (Hz) ........................................ : X

Measured current (mA) ............................ : X

Measured voltage (V) .............................. : X

Measured circuit capacitance (nF or µF) . : X

2.4.3 Connection of limited current circuits to other circuits

X

2.5 Limited power sources No limited power sources. X

a) Inherently limited output X

b) Impedance limited output X

c) Regulating network limited output under normal operating and single fault condition

X

d) Overcurrent protective device limited output

X

Max. output voltage (V), max. output current (A), max. apparent power (VA) ... :

X

Current rating of overcurrent protective device (A)

X

Use of integrated circuit (IC) current limiters

X

2.6 Provisions for earthing and bonding X

2.6.1 Protective earthing Parts witch are seperated from hazardous voltages are connected to protective bonding

X

2.6.2 Functional earthing No functional earhing X

2.6.3 Protective earthing and protective bonding conductors

X

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Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 11 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

2.6.3.1 General X

2.6.3.2 Size of protective earthing conductors No protective earthing conductors provided.

X

Rated current (A), cross-sectional area (mm

2), AWG ............................................ :

X

2.6.3.3 Size of protective bonding conductors No wiring. Only PCB traces. X

Rated current (A), cross-sectional area (mm

2), AWG ............................................ :

X

Protective current rating (A), cross-sectional area (mm²), AWG ..................... :

X

2.6.3.4 Resistance of earthing conductors and

their terminations; resistance (), voltage drop (V), test current (A), duration (min) . :

Max.: 0,02 Ohm, 32 A, 120s X

2.6.3.5 Colour of insulation .................................. : No wiring. X

2.6.4 Terminals X

2.6.4.1 General X

2.6.4.2 Protective earthing and bonding terminals Spring terminals used. X

Rated current (A), type, nominal thread diameter (mm) ......................................... :

X

2.6.4.3 Separation of the protective earthing conductor from protective bonding conductors

Only protective earthing. X

2.6.5 Integrity of protective earthing X

2.6.5.1 Interconnection of equipment X

2.6.5.2 Components in protective earthing conductors and protective bonding conductors

No components in protective earthing and bonding conductors.

X

2.6.5.3 Disconnection of protective earth X

2.6.5.4 Parts that can be removed by an operator No operator removable parts. X

2.6.5.5 Parts removed during servicing X

2.6.5.6 Corrosion resistance Considered X

2.6.5.7 Screws for protective bonding No self-tapping screws used. X

2.6.5.8 Reliance on telecommunication network or cable distribution system

No connection to a telecommunication network or cable distribution system.

X

2.7 Overcurrent and earth fault protection in primary circuits

X

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switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 12 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

2.7.1 Basic requirements Overcurrent and earth fault protection in primary circuits warrented by F1 and F2.

X

Instructions when protection relies on building installation

X

2.7.2 Faults not simulated in 5.3.7 X

2.7.3 Short-circuit backup protection Considered X

2.7.4 Number and location of protective devices .................................................... :

Two fuses are used in the equipment after mains input terminals.

X

2.7.5 Protection by several devices Considered X

2.7.6 Warning to service personnel .................. : No hazard after opening the enclosure (Disconnection of wiring necessary before you can open the enclosure).

X

2.8 Safety interlocks No safety interlocks. X

2.8.1 General principles X

2.8.2 Protection requirements X

2.8.3 Inadvertent reactivation X

2.8.4 Fail-safe operation X

Protection against extreme hazard X

2.8.5 Moving parts X

2.8.6 Overriding X

2.8.7 Switches, relays and their related circuits X

2.8.7.1 Separation distances for contact gaps and their related circuits (mm) ....................... :

X

2.8.7.2 Overload test X

2.8.7.3 Endurance test X

2.8.7.4 Electric strength test X

2.8.8 Mechanical actuators X

2.9 Electrical insulation X

2.9.1 Properties of insulating materials No natural rubber nor hygroscopic materials or asbestos is used.

X

2.9.2 Humidity conditioning No hydroscopic materials used. X

Relative humidity (%), temperature (°C) . : X

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switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 13 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

2.9.3 Grade of insulation Double insulation between primary circuit and secondary circuit. Basic insulation between primary circuit and protective conductor. Basic insulation between secondary circuit and protective conductor.

X

2.9.4 Separation from hazardous voltages Considered X

Method(s) used ....................................... : Method 2 X

2.10 Clearances, creepage distances and distances through insulation

X

2.10.1 General X

2.10.1.1 Frequency ............................................... : Frequency < 30KHz. X

2.10.1.2 Pollution degrees .................................... : PD II, PDI for inner layer of PCB. X

2.10.1.3 Reduced values for functional insualtion See clause 5.3.4 c). X

2.10.1.4 Intervening unconnected conductive parts Considered X

2.10.1.5 Insulation with varying dimensions No such insulation. X

2.10.1.6 Special separation requirements No special separation requirements.

X

2.10.1.7 Insulation in circuits generating starting pulses

No such components. X

2.10.2 Determination of working voltage X

2.10.2.1 General X

2.10.2.2 RMS working voltage See appended table 2.10.3 / 2.10.4.

X

2.10.2.3 Peak working voltage See appended table 2.10.3 /2.10.4.

X

2.10.3 Clearances X

2.10.3.1 General X

2.10.3.2 Mains transient voltages X

a) AC mains supply ................................ : 2500V X

b) Earthed d.c. mains supplies ............... : X

c) Unearthed d.c. mains supplies ........... : X

d) Battery operation ................................ : X

2.10.3.3 Clearances in primary circuits See appended table 2.10.3 / 2.10.4.

X

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switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 14 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

2.10.3.4 Clearances in secondary circuits See appended table 2.10.3 / 2.10.4

X

2.10.3.5 Clearances in circuits having starting pulses

No circuits with starting pulses. X

2.10.3.6 Transients from a.c. mains supply .......... : 2500V X

2.10.3.7 Transients from d.c. mains supply .......... : X

2.10.3.8 Transients from telecommunication networks and cable distribution systems :

Equipment is not connectet to an telecommunication networks and cable distribution systems.

X

2.10.3.9 Measurement of transient voltage levels X

a) Transients from a mains suplply X

For an a.c. mains supply ........................ : X

For a d.c. mains supply .......................... : X

b) Transients from a telecommunication network :

X

2.10.4 Creepage distances X

2.10.4.1 General X

2.10.4.2 Material group and comparative tracking index

Material group IIIb assumed. X

CTI tests .................................................. : X

2.10.4.3 Minimum creepage distances See appended table. X

2.10.5 Solid insulation X

2.10.5.1 General X

2.10.5.2 Distances through insulation See appended table. X

2.10.5.3 Insulating compound as solid insulation Not used. X

2.10.5.4 Semiconductor devices Only approved optocoupler used IEC 60747-5-2 (US201, US202).

X

2.10.5.5. Cemented joints No cemented joints. X

2.10.5.6 Thin sheet material – General Considered X

2.10.5.7 Separable thin sheet material X

Number of layers (pcs) ............................ : Three layers used in TR1. X

2.10.5.8 Non-separable thin sheet material X

2.10.5.9 Thin sheet material – standard test procedure

Used on insulated winding wire in TR1, Foil on heat sink, Foil between clamps on heat sink and components

X

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Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 15 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

Electric strength test X

2.10.5.10 Thin sheet material – alternative test procedure

See appended table. X

Electric strength test 2layers: 4200VAC X

2.10.5.11 Insulation in wound components X

2.10.5.12 Wire in wound components X

Working voltage ...................................... : 270VAC / 555V peak. X

a) Basic insulation not under stress ....... : X

b) Basic, supplemetary, reinforced insulation ................................................. :

X

c) Compliance with Annex U .................. : Wires according to annex U are used for the primary windings.

X

Two wires in contact inside wound

component; angle between 45 and 90 :

X

2.10.5.13 Wire with solvent-based enamel in wound components

X

Electric strength test X

Routine test X

2.10.5.14 Additional insulation in wound components

No such insulation. X

Working voltage ...................................... : X

- Basic insulation not under stress .......... : X

- Supplemetary, reinforced insulation ..... : X

2.10.6 Construction of printed boards See below X

2.10.6.1 Uncoated printed boards Considered X

2.10.6.2 Coated printed boards No coated printed boards. X

2.10.6.3 Insulation between conductors on the same inner surface of a printed board

Pollution degree 1 assumed. X

2.10.6.4 Insulation between conductors on different layers of a printed board

Only basic insulation between different layers. No requirements to distance through insulation.

X

Distance through insulation X

Number of insulation layers (pcs) ............ : X

2.10.7 Component external terminations No components with external terminations.

X

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Germany

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110423-AU02+S01 Page 16 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

2.10.8 Tests on coated printed boards and coated components

No coated printed boards or components.

X

2.10.8.1 Sample preparation and preliminary inspection

X

2.10.8.2 Thermal conditioning X

2.10.8.3 Electric strength test X

2.10.8.4 Abrasion resistance test X

2.10.9 Thermal cycling X

2.10.10 Test for Pollution Degree 1 environment and insulating compound

Pollution degree 1 assumed in the inner layers of PCB

X

2.10.11 Tests for semiconductor devices and cemented joints

X

2.10.12 Enclosed and sealed parts No such parts. X

3 WIRING, CONNECTIONS AND SUPPLY X

3.1 General X

3.1.1 Current rating and overcurrent protection Adequate dimension of PCB traces.

X

3.1.2 Protection against mechanical damage No wiring. X

3.1.3 Securing of internal wiring No wiring. X

3.1.4 Insulation of conductors X

3.1.5 Beads and ceramic insulators No beads and ceramic insulators.

X

3.1.6 Screws for electrical contact pressure Considered X

3.1.7 Insulating materials in electrical connections

No contact pressure through insulating material.

X

3.1.8 Self-tapping and spaced thread screws No self-tapping and spaced thread screws.

X

3.1.9 Termination of conductors X

10 N pull test X

3.1.10 Sleeving on wiring No wiring X

3.2 Connection to a mains supply X

3.2.1 Means of connection See below.. X

3.2.1.1 Connection to an a.c. mains supply Considered X

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110423-AU02+S01 Page 17 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

3.2.1.2 Connection to a d.c. mains supply No connection to a d.c. mains supply.

X

3.2.2 Multiple supply connections No multiple connections. X

3.2.3 Permanently connected equipment X

Number of conductors, diameter of cable and conduits (mm) .................................. :

X

3.2.4 Appliance inlets No appliance inlets. X

3.2.5 Power supply cords No power supply cords. X

3.2.5.1 AC power supply cords X

Type ........................................................ : X

Rated current (A), cross-sectional area (mm

2), AWG .......................................... :

X

3.2.5.2 DC power supply cords X

3.2.6 Cord anchorages and strain relief No power supply cords (Cord anchorage existing).

X

Mass of equipment (kg), pull (N) ........... : X

Longitudinal displacement (mm) ............. : X

3.2.7 Protection against mechanical damage X

3.2.8 Cord guards No cord guards existing. X

Diameter or minor dimension D (mm); test mass (g) .................................................. :

X

Radius of curvature of cord (mm) ............ : X

3.2.9 Supply wiring space X

3.3 Wiring terminals for connection of external conductors

Spring clambs used. X

3.3.1 Wiring terminals X

3.3.2 Connection of non-detachable power supply cords

Temperature see table 4.5. X

3.3.3 Screw terminals No screw terminals. X

3.3.4 Conductor sizes to be connected X

Rated current (A), cord/cable type, cross-sectional area (mm

2) ................................ :

24A / 0,25-1,5 flexible cords, 0,25-2,5 other cords.

X

3.3.5 Wiring terminal sizes Spring terminals used. X

Rated current (A), type, nominal thread diameter (mm) ........................................ :

X

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Germany

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110423-AU02+S01 Page 18 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

3.3.6 Wiring terminal design Considered X

3.3.7 Grouping of wiring terminals Considered X

3.3.8 Stranded wire Cable end sleeves have to be used. See instruction manual.

X

3.4 Disconnection from the mains supply X

3.4.1 General requirement Has to be considerd in end-product.

X

3.4.2 Disconnect devices X

3.4.3 Permanently connected equipment X

3.4.4 Parts which remain energized X

3.4.5 Switches in flexible cords X

3.4.6 Number of poles – single-phase and d.c. equipment

X

3.4.7 Number of poles – three-phase equipment

X

3.4.8 Switches as disconnect devices X

3.4.9 Plugs as disconnect devices X

3.4.10 Interconnected equipment X

3.4.11 Multiple power sources X

3.5 Interconnection of equipment X

3.5.1 General requirements No SELV or TNV circuits. X

3.5.2 Types of interconnection circuits ............ : Considered X

3.5.3 ELV circuits as interconnection circuits No ELV circuits. X

3.5.4 Data ports for additional equipment No data ports. X

4 PHYSICAL REQUIREMENTS X

4.1 Stability Equipment is for building in. X

Angle of 10 X

Test force (N) .......................................... : X

4.2 Mechanical strength X

4.2.1 General X

Rack-mounted equipment. X

4.2.2 Steady force test, 10 N Applied on internal parts, no hazard during the test.

X

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110423-AU02+S01 Page 19 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

4.2.3 Steady force test, 30 N Applied on the enclosure and side cover.(clearance 3,2 mm).

X

4.2.4 Steady force test, 250 N Equipment is for building in. X

4.2.5 Impact test Equipment is for building in. X

Fall test X

Swing test X

4.2.6 Drop test; height (mm) ............................ : Equipment is for building in. X

4.2.7 Stress relief test No pastic enclosure. X

4.2.8 Cathode ray tubes No cathode ray tubes. X

Picture tube separately certified ............. : X

4.2.9 High pressure lamps No high pressure lamps. X

4.2.10 Wall or ceiling mounted equipment; force (N) ........................................................... :

Equipment maybe wall mounted

Tested with 50 N.

X

4.2.11 Rotating solid media No rotating solid media. X

Test to cover on the door ......................... : X

4.3 Design and construction X

4.3.1 Edges and corners Considered X

4.3.2 Handles and manual controls; force (N) .. : No handles and manual controls. X

4.3.3 Adjustable controls No adjustable controls. X

4.3.4 Securing of parts Considered X

4.3.5 Connection by plugs and sockets No connection by plugs and sockets.

X

4.3.6 Direct plug-in equipment No direct plug-in equipment. X

Torque .................................................... : X

Compliance with the relevant mains plug standard:

X

4.3.7 Heating elements in earthed equipment No heating elements. X

4.3.8 Batteries No batteries. X

- Overcharging of a rechargeable battery X

- Unintentional charging of a non-rechargeable battery

X

- Reverse charging of a rechargeable battery

X

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Germany

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110423-AU02+S01 Page 20 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

- Excessive discharging rate for any battery

X

4.3.9 Oil and grease No oil and grease. X

4.3.10 Dust, powders, liquids and gases No dust, powders, liquids and gases.

X

4.3.11 Containers for liquids or gases No containers for liquids or gases.

X

4.3.12 Flammable liquids ................................... : No flammable liquids. X

Quantity of liquid (l) ................................. : X

Flash point (C) ....................................... : X

4.3.13 Radiation X

4.3.13.1 General See clause 4.3.13.5 X

4.3.13.2 Ionizing radiation No ionizing radiation. X

Measured radiation (pA/kg) ... ........... .... : X

Measured high-voltage (kV) . ................. : X

Measured focus voltage (kV) .................. : X

CRT markings ......................................... : X

4.3.13.3 Effect of ultraviolet (UV) radiation on materials

No UV radiation. X

Part, property, retention after test, flammability classification ....................... :

X

4.3.13.4 Human exposure to ultraviolet (UV) radiation .................................................. :

No UV radiation. X

4.3.13.5 Lasers (including laser diodes) and LEDs Only diffuse LED. X

4.3.13.5.1 Lasers (including laser diodes) X

Laser class .............................................. : X

4.3.13.5.2 Light emitting diodes (LEDs) Only duffuse LED X

4.3.13.6 Other types ............................................. : X

4.4 Protection against hazardous moving parts

No moving parts. X

4.4.1 General X

4.4.2 Protection in operator access areas ....... : X

Household and home/office document/media shredders

X

4.4.3 Protection in restricted access locations : X

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Germany

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switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 21 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

4.4.4 Protection in service access areas X

4.4.5 Protection against moving fan blades X

4.4.5.1 General X

Not considered to cause pain or injury. A) : X

Is considered to cause pain, not injury. B) : X

Considered to cause injury. .................. C) : X

4.4.5.2 Protection for users X

Use of symbol or warning ........................ : X

4.4.5.3 Protection for service persons X

Use of symbol or warning X

4.5 Thermal requirements X

4.5.1 General X

4.5.2 Temperature tests Considered X

Normal load condition per Annex L ........ : Output power 80W X

4.5.3 Temperature limits for materials See appended table X

4.5.4 Touch temperature limits See appended table.

Symbol IEC60417-1-5041 used.

X

4.5.5 Resistance to abnormal heat .................. : Approved materials used. X

4.6 Openings in enclosures Equipment is for building-in. Must be considered in the end-product.

X

4.6.1 Top and side openings X

Dimensions (mm) .................................... : X

4.6.2 Bottoms of fire enclosures Equipment is for building-in. Must be considered in the end-product.

X

Construction of the bottomm, dimensions (mm) ....................................................... :

X

4.6.3 Doors or covers in fire enclosures Not used X

4.6.4 Openings in transportable equipment No transportable equipment. X

4.6.4.1 Constructional design measures X

Dimensions (mm) .................................... : X

4.6.4.2 Evaluation measures for larger openings X

4.6.4.3 Use of metallized parts X

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110423-AU02+S01 Page 22 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

4.6.5 Adhesives for constructional purposes No adhesives for constructional purposes.

X

Conditioning temperature (C), time (weeks) .................................................... :

X

4.7 Resistance to fire Fire enclosure must be considered in the end product. Equipment is for building-in.

X

4.7.1 Reducing the risk of ignition and spread of flame

X

Method 1, selection and application of components wiring and materials

Method 1 is used X

Method 2, application of all of simulated fault condition tests

X

4.7.2 Conditions for a fire enclosure X

4.7.2.1 Parts requiring a fire enclosure Fire enclosure must be considered in the end product.

X

4.7.2.2 Parts not requiring a fire enclosure X

4.7.3 Materials X

4.7.3.1 General X

4.7.3.2 Materials for fire enclosures Enclosure is metal. Equipment must be considered in end-product.

X

4.7.3.3 Materials for components and other parts outside fire enclosures

No fire enclosure. X

4.7.3.4 Materials for components and other parts inside fire enclosures

PCB is V-0 material. X

4.7.3.5 Materials for air filter assemblies No air filter assemblies. X

4.7.3.6 Materials used in high-voltage components

No high-voltage components. X

5 ELECTRICAL REQUIREMENTS AND SIMULATED ABNORMAL CONDITIONS

X

5.1 Touch current and protective conductor current

X

5.1.1 General X

5.1.2 Configuration of equipment under test (EUT)

X

5.1.2.1 Single connection to an a.c. mains supply Single connection. X

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Germany

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

5.1.2.2 Redundant multiple connections to an a.c. mains supply

No redundant multiple connections to an a.c. mains supply.

X

5.1.2.3 Simultaneous multiple connections to an a.c. mains supply

No simultaneous multiple connection to an a.c. mains supply.

X

5.1.3 Test circuit Figure 5A Test circuit. X

5.1.4 Application of measuring instrument Messuring instrumentation according to annex D.1.

X

5.1.5 Test procedure X

5.1.6 Test measurements See below. X

Supply voltage (V) .................................. : 244 V, 60 Hz X

Measured touch current (mA) ................. : Max.: 0,088 mA X

Max. allowed touch current (mA) ............ : 0,25 mA X

Measured protective conductor current (mA) ........................................................ :

Max.: 1,7 mA X

Max. allowed protective conductor current (mA) ......................................................... :

3,5 mA X

5.1.7 Equipment with touch current exceeding 3,5 mA

X

5.1.7.1 General ................................................... : X

5.1.7.2 Simultaneous multiple connections to the supply

X

5.1.8 Touch currents to telecommunication networks and cable distribution systems and from telecommunication networks

No telecommunication networks and cable distribution systems.

X

5.1.8.1 Limitation of the touch current to a telecommunication network or to a cable distribution system

X

Supply voltage (V) .................................. : X

Measured touch current (mA) ................. : X

Max. allowed touch current (mA) ............ : X

5.1.8.2 Summation of touch currents from telecommunication networks

X

a) EUT with earthed telecommunication ports ........................................................ :

X

b) EUT whose telecommunication ports have no reference to protective earth

X

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Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 24 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

5.2 Electric strength X

5.2.1 General X

5.2.2 Test procedure Test voltage: 1500V X

5.3 Abnormal operating and fault conditions X

5.3.1 Protection against overload and abnormal operation

See appended table. X

5.3.2 Motors No motors used. X

5.3.3 Transformers X

5.3.4 Functional insulation ................................ : Considered. X

5.3.5 Electromechanical components No such components. X

5.3.6 Audio amplifiers in ITE ............................ : No audio amplifiers. X

5.3.7 Simulation of faults See appended table. X

5.3.8 Unattended equipment X

5.3.9 Compliance criteria for abnormal operating and fault conditions

No hazards during and after the tests.

X

5.3.9.1 During the tests X

5.3.9.2 After the tests X

6 CONNECTION TO TELECOMMUNICATION NETWORKS X

6.1 Protection of telecommunication network service persons, and users of other equipment connected to the network, from hazards in the equipment

No connection to telecommunication networks

X

6.1.1 Protection from hazardous voltages X

6.1.2 Separation of the telecommunication network from earth

X

6.1.2.1 Requirements X

Supply voltage (V) .................................. : X

Current in the test circuit (mA) .............. : X

6.1.2.2 Exclusions ............................................... : X

6.2 Protection of equipment users from overvoltages on telecommunication networks

X

6.2.1 Separation requirements X

6.2.2 Electric strength test procedure X

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Germany

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110423-AU02+S01 Page 25 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

6.2.2.1 Impulse test X

6.2.2.2 Steady-state test X

6.2.2.3 Compliance criteria X

6.3 Protection of the telecommunication wiring system from overheating

X

Max. Output current (A) .......................... : X

Current limiting method .......................... : X

7 CONNECTION TO CABLE DISTRIBUTION SYSTEMS X

7.1 General No connection to cable distribution systems

X

7.2 Protection of cable distribution system service persons, and users of other equipment connected to the system, from hazardous voltages in the equipment

X

7.3 Protection of equipment users from overvoltages on the cable distribution system

X

7.4 Insulation between primary circuits and cable distribution systems

X

7.4.1 General X

7.4.2 Voltage surge test X

7.4.3 Impulse test X

A ANNEX A, TESTS FOR RESISTANCE TO HEAT AND FIRE X

A.1 Flammability test for fire enclosures of movable equipment having a total mass exceeding 18 kg, and of stationary equipment (see 4.7.3.2)

Equipment is for building in. Fire enclosure must be considered in the end product.

X

A.1.1 Samples ................................................... : X

Wall thickness (mm) ................................ : X

A.1.2 Conditioning of samples; temperature (C) ................................................................. :

X

A.1.3 Mounting of samples .............................. : X

A.1.4 Test flame (see IEC 60695-11-3) X

Flame A, B, C or D .................................. : X

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110423-AU02+S01 Page 26 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

A.1.5 Test procedure X

A.1.6 Compliance criteria X

Sample 1 burning time (s) ....................... : X

Sample 2 burning time (s) ....................... : X

Sample 3 burning time (s) ....................... : X

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 4.7.3.2 and 4.7.3.4)

Approved materials used. Additional tests not required.

X

A.2.1 Samples, material .................................... : X

Wall thickness (mm) ................................ : X

A.2.2 Conditioning of samples; temperature (°C) ................................................................. :

X

A.2.3 Mounting of samples .............................. : X

A.2.4 Test flame (see IEC 60695-11-4) X

Flame A, B or C ...................................... : X

A.2.5 Test procedure X

A.2.6 Compliance criteria X

Sample 1 burning time (s) ....................... : X

Sample 2 burning time (s) ....................... : X

Sample 3 burning time (s) ....................... : X

A.2.7 Alternative test acc. To IEC 60695-11-5, cl. 5 and 9

X

Sample 1 burning time (s) ....................... : X

Sample 2 burning time (s) ....................... : X

Sample 3 burning time (s) ....................... : X

A.3 Hot flaming oil test (see 4.6.2) X

A.3.1 Mounting of samples X

A.3.2 Test procedure X

A.3.3 Compliance criterion X

B ANNEX B, MOTOR TESTS UNDER ABNORMAL CONDITIONS (see 4.7.2.2 and 5.3.2)

X

B.1 General requirements No motors. X

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110423-AU02+S01 Page 27 of 65

IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

Position ................................................... : X

Manufacturer ........................................... : X

Type ........................................................ : X

Rated values .......................................... : X

B.2 Test conditions X

B.3 Maximum temperatures X

B.4 Running overload test X

B.5 Locked-rotor overload test X

Test duration (days) ................................ : X

Electric strength test: test voltage (V) ..... : X

B.6 Running overload test for d.c. motors in secondary circuits

X

B.6.1 General X

B.6.2 Test procedure X

B.6.3 Alternative test procedure X

B.6.4 Electric strength test; test voltage (V) ..... : X

B.7 Locked-rotor overload test for d.c. motors in secondary circuits

X

B.7.1 General X

B.7.2 Test procedure X

B.7.3 Alternative test procedure X

B.7.4 Electric strength test; test voltage (V) ..... : X

B.8 Test for motors with capacitors X

B.9 Test for three-phase motors X

B.10 Test for series motors X

Operating voltage (V) ............................. : X

C ANNEX C, TRANSFORMERS (see 1.5.4 and 5.3.3) X

Position ................................................... : TR1 X

Manufacturer ........................................... : Kaschke Components GmbH X

Type ........................................................ : PFC 360µH X

Rated values .......................................... : X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

Method of protection ................................ : Regulated circuit in the primary and secondary circuit.

X

C.1 Overload test Considered. (see also appended table 5.3)

X

C.2 Insulation Double insulation between primary and secondary.

X

Protection from displacement of windings: Triple insulated wires used. Protection not requied.

X

Note:

D ANNEX D, MEASURING INSTRUMENTS FOR TOUCH-CURRENT TESTS (see 5.1.4)

X

D.1 Measuring instrument IEC 60990 figure 4 X

D.2 Alternative measuring instrument X

E ANNEX E, TEMPERATURE RISE OF A WINDING (see 1.4.13) X

F ANNEX F, MEASUREMENT OF CLEARANCES AND CREEPAGE DISTANCES (see 2.10 and Annex G)

X

G ANNEX G, ALTERNATIVE METHOD FOR DETERMINING MINIMUM CLEARANCES

X

G.1 Clearances X

G.1.1 General X

G.1.2 Summary of the procedure for determining minimum clearances

X

G.2 Determination of mains transient voltage (V)

X

G.2.1 AC mains supply ..................................... : X

G.2.2 Earthed d.c. mains supplies ................... : X

G.2.3 Unearthed d.c. mains supplies ............... : X

G.2.4 Battery operation .................................... : X

G.3 Determination of telecommunication network transient voltage (V) .................. :

X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

G.4 Determination of required withstand voltage (V)

X

G.4.1 Mains transients and internal repetitive peaks ...................................................... :

X

G.4.2 Transients from telecommunication networks ................................................. :

X

G.4.3 Combination of transients X

G.4.4 Transients from cable distribution systems

G.5 Measurement of transient voltages (V) X

a) Transients from a mains supply X

For an a.c. mains supply X

For a d.c. mains supply X

b) Transients from a telecommunication network

X

G.6 Determination of minimum clearances ... : X

H ANNEX H, IONIZING RADIATION (see 4.3.13) X

J ANNEX J, TABLE OF ELECTROCHEMICAL POTENTIALS (see 2.6.5.6) X

Metal(s) used .......................................... : Al 80 Zi, 20 Zk X

K ANNEX K, THERMAL CONTROLS (see 1.5.3 and 5.3.8) X

K.1 Making and breaking capacity X

K.2 Thermostat reliability; operating voltage (V) ........................................................... :

X

K.3 Thermostat endurance test; operating voltage (V) ............................................. :

X

K.4 Temperature limiter endurance; operating voltage (V) .............................................. :

X

K.5 Thermal cut-out reliability X

K.6 Stability of operation X

L ANNEX L, NORMAL LOAD CONDITIONS FOR SOME TYPES OF ELECTRICAL BUSINESS EQUIPMENT (see 1.2.2.1 and 4.5.2)

X

L.1 Typewriters X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

L.2 Adding machines and cash registers X

L.3 Erasers X

L.4 Pencil sharpeners X

L.5 Duplicators and copy machines X

L.6 Motor-operated files X

L.7 Other business equipment X

M ANNEX M, CRITERIA FOR TELEPHONE RINGING SIGNALS (see 2.3.1) X

M.1 Introduction X

M.2 Method A X

M.3 Method B X

M.3.1 Ringing signal X

M.3.1.1 Frequency (Hz) ....................................... : X

M.3.1.2 Voltage (V) .............................................. : X

M.3.1.3 Cadence; time (s), voltage (V) ................ : X

M.3.1.4 Single fault current (mA) ......................... : X

M.3.2 Tripping device and monitoring voltage .. : X

M.3.2.1 Conditions for use of a tripping device or a monitoring voltage

X

M.3.2.2 Tripping device X

M.3.2.3 Monitoring voltage (V) ............................ : X

N ANNEX N, IMPULSE TEST GENERATORS (see 1.5.7.2, 1.5.7.3, 2.10.3.9, 6.2.2.1, 7.3.2, 7.4.3 and Clause G.5)

X

N.1 ITU-T impulse test generators X

N.2 IEC 60065 impulse test generator X

P ANNEX P, NORMATIVE REFERENCES X

Q ANNEX Q, Voltage dependent resistors (VDRs) (see 1.5.9.1) X

VDR is in compliance with annex Q (according to datasheet). X

a) Preferred climatic categories .............. : X

b) Maximum continuous voltage ............. : X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

c) Pulse current ....................................... : X

R ANNEX R, EXAMPLES OF REQUIREMENTS FOR QUALITY CONTROL PROGRAMMES

X

R.1 Minimum separation distances for unpopulated coated printed boards (see 2.10.6.2)

X

R.2 Reduced clearances (see 2.10.3) X

S ANNEX S, PROCEDURE FOR IMPULSE TESTING (see 6.2.2.3) X

S.1 Test equipment X

S.2 Test procedure X

S.3 Examples of waveforms during impulse testing

X

T ANNEX T, GUIDANCE ON PROTECTION AGAINST INGRESS OF WATER (see 1.1.2)

X

See separate test report X

U ANNEX U, INSULATED WINDING WIRES FOR USE WITHOUT INTERLEAVED INSULATION (see 2.10.5.4)

X

Approved insulated winding

wires used. Additional tests not

performed.

Insulated winding wires are used

in TR1. See also list of

critical components.

X

V ANNEX V, AC POWER DISTRIBUTION SYSTEMS (see 1.6.1) X

V.1 Introduction X

V.2 TN power distribution systems X

W ANNEX W, SUMMATION OF TOUCH CURRENTS X

W.1 Touch current from electronic circuits X

W.1.1 Floating circuits X

W.1.2 Earthed circuits X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

W.2 Interconnection of several equipments X

W.2.1 Isolation X

W.2.2 Common return, isolated from earth X

W.2.3 Common return, connected to protective earth

X

X ANNEX X, MAXIMUM HEATING EFFECT IN TRANSFORMER TESTS (see clause C.1)

X

X.1 Determination of maximum input current X

X.2 Overload test procedure X

Y ANNEX Y, ULTRAVIOLET LIGHT CONDITIONING TEST (see 4.3.13.3) X

Y.1 Test apparatus ........................................ : X

Y.2 Mounting of test samples ........................ : X

Y.3 Carbon-arc light-exposure apparatus ..... : X

Y.4 Xenon-arc light exposure apparatus ....... : X

Z ANNEX Z, OVERVOLTAGE CATEGORIES (see 2.10.3.2 and Clause G.2) X

AA ANNEX AA, MANDREL TEST (see 2.10.5.8) X

BB ANNEX BB, CHANGES IN THE SECOND EDITION X

CC ANNEX CC, Evaluation of integrated circuit (IC) current limiters X

CC.1 General X

CC.2 Test program 1 X

CC.3 Test program 2 X

DD ANNEX DD, Requirements for the mounting means of rack-mounted equipment

X

DD.1 General X

DD.2 Mechanical strength test, variable N………………..:

X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

DD.3 Mechanical strength test, 250N, including end stops………………………………:

X

DD.4 Compliance X

EE ANNEX EE, Household and home/office document/media shredders X

EE.1 General X

EE.2 Markings and instructions X

Use of markings or symbols…………………………:

X

Information of user instructions, maintenance and/or servicing instructions…………………………:

X

EE.3 Inadvertent reactivation test : X

EE.4 Disconnection of power to hazardous moving parts:

X

Use of markings or symbols…: X

EE.5 Protection against hazardous moving parts

X

Test with test finger (Figure 2A) : X

Test with wedge probe (Figure EE1 and EE2) ……:

X

NC EN 60950-1:2006/A11:2009/A1:2010 – CENELEC COMMON MODIFICATIONS

X

ZA NORMATIVE REFERENCES TO INTERNATIONAL PUBLICATIONS WITH THEIR CORRESPONDING EUROPEAN PUBLICATIONS

X

ZB SPECIAL NATIONAL CONDITIONS X

1.2.4.1 In Denmark, certain types of Class I appliances (see 3.2.1.1) may be provided with a plug not establishing earthing conditions when inserted into Danish socket-outlets.

X

1.2.13.14 In Norway and Sweden, for requirements see 1.7.2.1 and 7.3 of this annex. X

1.5.7.1 In Finland, Norway and Sweden, resistors bridging BASIC INSULATION in CLASS I PLUGGABLE EQUIPMENT TYPE A must comply with the requirements in 1.5.7.1. In addition when a single resistor is used, the resistor must withstand the resistor test in 1.5.7.2.

X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

1.5.8 In Norway, due to the IT power system used (see annex V, Figure V.7), capacitors are required to be rated for the applicable line-to-line voltage (230 V).

X

1.5.9.4 In Finland, Norway and Sweden, the third dashed sentence is applicable only to equipment as defined in 6.1.2.2 of this annex.

X

1.7.2.1 In Finland, Norway and Sweden, 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 in the applicable countries shall be as follows:

In Finland: ”Laite on liitettävä suojakoskettimilla varustettuun pistorasiaan”

In Norway: “Apparatet må tilkoples jordet stikkontakt”

In Sweden: “Apparaten skall anslutas till jordat uttag”

In Norway and Sweden, the screen of the cable distribution system is normally not earthed at the entrance of the building and there is normally no equipotential bonding system within the building. Therefore the protective earthing of the building installation need to be isolated from the screen of a cable distribution system.

It is however accepted to provide the insulation external to the equipment by an adapter or an interconnection cable with galvanic isolator, which may be provided by e.g. a retailer.

The user manual shall then have the following or similar information in Norwegian and Swedish language respectively, depending on in what country the equipment is intended to be used in:

“Equipment connected to the protective earthing of the building installation through the mains connection or through other equipment with a connection to protective earthing – and to a cable distribution system using coaxial cable, may in some circumstances create a fire hazard. Connection to a cable distribution system has therefore to be provided through a device providing electrical isolation below a certain frequency range (galvanic isolator, see EN 60728-11).”

X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

NOTE In Norway, due to regulation for installations of cable distribution systems, and in Sweden, a galvanic isolator shall provide electrical insulation below 5 MHz. The insulation shall withstand a dielectric strength of 1,5 kV r.m.s., 50 Hz or 60 Hz, for 1 min.

Translation to Norwegian (the Swedish text will also be accepted in Norway):

“Utstyr som er koplet til beskyttelsesjord via nettplugg og/eller via annet jordtilkoplet

utstyr – og er tilkoplet et kabel-TV nett, kan forårsake brannfare. For å unngå dette skal det ved tilkopling av utstyret til kabel-TV nettet installeres en galvanisk isolator mellom utstyret og kabel- TV nettet.”

Translation to Swedish:

”Utrustning som är kopplad till skyddsjord via jordat vägguttag och/eller via annan

utrustning och samtidigt är kopplad till kabel-TV nät kan i vissa fall medfőra risk főr

brand. Főr att undvika detta skall vid anslutning av utrustningen till kabel-TV nät

galvanisk isolator finnas mellan utrustningen och kabel-TV nätet.”

X

1.7.5 In Denmark, socket-outlets for providing power to other equipment shall be in accordance with the Heavy Current Regulations, Section 107-2-D1, Standard Sheet DK 1-3a, DK 1-5a or DK 1-7a, when used on Class I equipment. For STATIONARY EQUIPMENT the socket-outlet shall be in accordance with Standard Sheet DK 1-1b or DK 1-5a.

For CLASS II EQUIPMENT the socket outlet shall be in accordance with Standard Sheet DKA 1-4a.

X

2.2.4 In Norway, for requirements see 1.7.2.1, 6.1.2.1 and 6.1.2.2 of this annex. X

2.3.2 In Finland, Norway and Sweden there are additional requirements for the insulation. See 6.1.2.1 and 6.1.2.2 of this annex.

X

2.3.4 In Norway, for requirements see 1.7.2.1, 6.1.2.1 and 6.1.2.2 of this annex.

2.6.3.3 In the United Kingdom, the current rating of the circuit shall be taken as 13 A, not 16 A.

X

2.7.1 In the United Kingdom, to protect against excessive currents and short-circuits in the PRIMARY CIRCUIT of DIRECT PLUG-IN EQUIPMENT, tests according to 5.3 shall be conducted, using an external protective device rated 30 A or 32 A. If these tests fail, suitable protective devices shall be included as integral parts of the DIRECT PLUG-IN EQUIPMENT, so that the requirements of 5.3 are met.

X

2.10.5.13 In Finland, Norway and Sweden, there are additional requirements for the insulation, see 6.1.2.1 and 6.1.2.2 of this annex.

X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

3.2.1.1 In Switzerland, supply cords of equipment having a RATED CURRENT not exceeding 10 A shall be provided with a plug complying with SEV 1011 or IEC 60884-1 and one of the following dimension sheets:

SEV 6532-2.1991 Plug Type 15 3P+N+PE 250/400 V, 10 A SEV 6533-2.1991 Plug Type 11 L+N 250 V, 10 A SEV 6534-2.1991 Plug Type 12 L+N+PE 250 V, 10 A

In general, EN 60309 applies for plugs for currents exceeding 10 A. However, a 16 A plug and socket-outlet system is being introduced in Switzerland, the plugs of which are according to the following dimension sheets, published in February 1998:

SEV 5932-2.1998 Plug Type 25 3L+N+PE 230/400 V, 16 A SEV 5933-2.1998 Plug Type 21 L+N 250 V, 16 A SEV 5934-2.1998 Plug Type 23 L+N+PE 250 V, 16 A

X

3.2.1.1 In Denmark, supply cords of single-phase equipment having a rated current not exceeding13 A shall be provided with a plug according to the Heavy Current Regulations, Section 107-2-D1.

CLASS I EQUIPMENT provided with socket-outlets with earth contacts 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 Regulations, Section 107-2-D1 or EN 60309-2.

X

3.2.1.1 In Spain, supply cords of single-phase equipment having a rated current not exceeding 10 A shall be provided with a plug according to UNE 20315:1994.

Supply cords of single-phase equipment having a rated current not exceeding 2,5 A shall be provided with a plug according to UNE-EN 50075:1993.

CLASS I EQUIPMENT provided with socket-outlets with earth contacts 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 UNE 20315:1994.

If poly-phase equipment is provided with a supply cord with a plug, this plug shall be in accordance with UNE-EN 60309-2.

X

3.2.1.1 In the United Kingdom, 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 1768:1994 – The Plugs and Sockets etc. (Safety) Regulations 1994, unless exempted by those regulations.

NOTE ‘Standard plug’ is defined in SI 1768:1994 and essentially means an approved plug conforming to BS 1363 or an approved conversion plug.

X

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IEC 60950-1 and/or EN 60950-1 (2nd

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TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

3.2.1.1 In Ireland, apparatus which is fitted with a flexible cable or cord and is designed to be connected to a mains socket conforming to I.S. 411 by means of that flexible cable or cord and plug, shall be fitted with a 13 A plug in accordance with Statutory Instrument 525:1997 – National Standards Authority of Ireland (section 28) (13 A Plugs and Conversion Adaptors for Domestic Use) Regulations 1997.

X

3.2.4 In Switzerland, for requirements see 3.2.1.1 of this annex. X

3.2.5.1 In the United Kingdom, a power supply cord with conductor of 1,25 mm2 is allowed for equipment with a rated current over 10 A and up to and including 13 A.

X

3.3.4 In the United Kingdom, 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 mm

2 nominal cross-sectional area.

X

4.3.6 In the United Kingdom, the torque test is performed using a socket outlet complying with BS 1363 part 1:1995, including Amendment 1:1997 and Amendment 2:2003 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, 12.13, 12.16 and 12.17, except that the test of 12.17 is performed at not less than 125 °C. Where the metal earth pin is replaced by an Insulated Shutter Opening Device (ISOD), the requirements of clauses 22.2 and 23 also apply.

X

4.3.6 In Ireland, DIRECT PLUG-IN EQUIPMENT is known as plug similar devices. Such devices shall comply with Statutory Instrument 526:1997 – National Standards Authority of Ireland (Section 28) (Electrical plugs, plug similar devices and sockets for domestic use) Regulations, 1997.

X

5.1.7.1 In Finland, Norway and Sweden TOUCH CURRENT measurement results exceeding 3,5 mA r.m.s. are permitted only for the following equipment:

• STATIONARY PLUGGABLE EQUIPMENT TYPE A that ○ is intended to be used in a RESTRICTED ACCESS LOCATION where equipotential bonding has been applied, for example, in a telecommunication centre; and ○ has provision for a permanently connected PROTECTIVE EARTHING CONDUCTOR; and ○ is provided with instructions for the installation of that conductor by a SERVICE PERSON;

• STATIONARY PLUGGABLE EQUIPMENT TYPE B;

• STATIONARY PERMANENTLY CONNECTED EQUIPMENT.

X

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IEC 60950-1 and/or EN 60950-1 (2nd

Edition)

TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

6.1.2.1 In Finland, Norway and Sweden, add the following text between the first and second paragraph of the compliance clause:

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.

Alternatively for components, there is no distance through insulation requirements 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 2.10.11 with an electric strength test of 1,5 kV multiplied by 1,6 (the electric strength test of 2.10.10 shall be performed using 1,5 kV), and

- is subject to ROUTINE 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 EN 60384-14:2005, subclass Y2.

A capacitor classified Y3 according to

EN 60384-14:2005, may bridge this insulation under the following conditions:

– the insulation requirements are satisfied by having a capacitor classified Y3 as defined by EN 60384-14, which in addition to the Y3 testing, is tested with an impulse test of 2,5 kV defined in EN 60950-1:2006, 6.2.2.1;

– the additional testing shall be performed on all the test specimens as described in EN 60384-14;

– the impulse test of 2,5 kV is to be performed before the endurance test in EN 60384-14, in the sequence of tests as described in EN 60384-14.

X

6.1.2.2 In Finland, Norway and Sweden, the exclusions are applicable for PERMANENTLY CONNECTED EQUIPMENT, 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.

X

7.2 In Finland, Norway and Sweden, for requirements see 6.1.2.1 and 6.1.2.2 of this annex.

The term TELECOMMUNICATION NETWORK in 6.1.2 being replaced by the term CABLE DISTRIBUTION SYSTEM.

X

7.3 In Norway and Sweden, for requirements see 1.2.13.14 and 1.7.2.1 of this annex.

X

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TEST REPORT

No. Clause Remark Verdict

P F N/A N/T

ZC A-DEVIATIONS (informative) X

Zx (A12) Protection against excessive sound pressure of portable sound systems X

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1.5.1 TABLE: list of critical components P

object/part No. manufacturer/

trademark type/model technical data standard

mark(s) of conformity

1)

PCB Material B&B Sachsen-elektronik GmbH

M1 V-0 / 130°C UL94 UL E167418

X1 Wago 804-303 V-0 / 105°C

320V / 24A

IEC/EN 60664-1

UL94

UL

X2 Wago 804-303 V-0 / 105°C

320V / 24A

IEC/EN 60664-1

UL94

UL

C104/C105 Vishay WY03332 MCMFOK

250V / 85°C / Y2 VDE 0565-1Y

UL1414

46845 BI.2

UL E100682

alternative muRata DE2EKY332MN3AM02

250V / 85°C / Y2 VDE 0565-1Y

UL1414

46845 BI.2

UL E100682

C215/C216 Vishay WY03332 MCMFOK

250V / 85°C / Y2 VDE 0565-1Y

UL1414

46845 BI.2

UL E100682

alternative muRata DE2EKY332MN3AM02

250V / 85°C / Y2 VDE 0565-1Y

UL1414

46845 BI.2

UL E100682

F1/F2 Littlefuse 021501.6MXP or

021501.6XP

250V / 1,6A / 125°C

VDE / UL248 40013521

UL E10480

C101/C102 Kemet R46 KN 4100 JH P1 M

300V / 110°C / X2

UL 1414 / 1283 E 97797

UL E85238

L101 Rossmann 975 762000227 Class B 130°C IEC 60454

UL94

IEC 317

UL E93622

UL E174210

UL E125649

L102 Siemens-Matsuhita

B82734-R2142-B30

250V, V-0 UL94 UL

C207 Epcos B32652-A4474-K 289

V-0 / 105°C UL94 UL

US201-A/B US 202-A/B

Toshiba TLP621 (GR) LF2) 100°C, 5300V IEC 60747-5-2

EN 60950

UL, VDE

alternative Isocom SFH 615A-3SM

SFH 615A-4SM

100°C, 5300V IEC 60747-5-2

EN 60950

UL, VDE

Vishay SFH6156-3T

SFH6156-4T

100°C, 5300V IEC 60747-5-2

EN 60950

UL, VDE

L301/L302 Schmelzer MS-5396 Class B (UL Class A), 130°C

EN 60950-1 Tested in the appliance

alternative Kaschke 095656-a Class B (UL Class A), 130°C

EN 60950-1 Tested in the appliance

Pulse PMPE-CC25-L003 Index A

Class B (UL Class A), 130°C

EN 60950-1 Tested in the appliance

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object/part No. manufacturer/

trademark type/model technical data standard

mark(s) of conformity

1)

EMEI EF15P9M2.214-00 Rev.:00

Class B (UL Class A), 130°C

EN 60950-1 Tested in the appliance

CS308/CS209 muRata GA352QR7GF102KW01

250V, X1, Y2 UL 1414

IEC 60384-14

UL, VDE

C306/C307 Arcotronics R60IR 5100 CK 4-M

R60IR 5100 AA 4-M

R60IR 5100 CK 4-J

R60IR 5100 AA 4-J

125°C UL94

IEC 60068-1

UL

CS507/CS508 muRata GA342QR7GF101KW01L

250V, X1, Y2 UL 1414

IEC 60384-14

UL, VDE

CS500/CS506 muRata GA352QR7GF471KW01L

250V, X1, Y2 UL 1414

IEC 60384-14

UL, VDE

C206 WIMA MKP1G031004D00MSC9

V-0 UL 94 UL

alternative WIMA MKP1G031004D00MYC9

V-0 UL 94 UL

WIMA MKP1G031004D00MD

V-0 UL 94 UL

WIMA MKP1G031004D00MI

V-0 UL 94 UL

Insulating layer transistor clamp

CMC 10160 Class B UL 510 UL E93622

alternative Du Pont Teijin Films

Mylar Typ A VTM-2, 105°C UL 1694 UL E93687

Mitsubishi Hostaphan RN 105°C UL 94 UL E53895

L303 Epcos B82791 G/H V-0 UL 94 UL

R1 CNR CNR-14D471K

CNR-14V471K

V-0, 125°C UL 94

IEC 60068-1

UL, VDE

alternative Epcos S14K300E2 B72214S2301K101

V-0 125°C UL 94

IEC 60068-1

UL, VDE

Thermal foil KK Bergquist Sil-Pad 900S V-0 UL 94 UL

alternative Kerafol Keratherm V-0 UL UL

Bergquist Hi-Flow 300P V-0 UL 94 UL

Bergquist Sil Pad A2000 V-0 UL 94 UL

C103 muRata DE2E3KH222MN3A

250V, X1, Y2,

V-0

UL 94 UL E37921

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object/part No. manufacturer/

trademark type/model technical data standard

mark(s) of conformity

1)

alternative Vishay WKO 222 M CP CJO K

250V, X1, Y2,

V-0

UL 94 UL E37921

TR 1 Kaschke Components

PFC Trafo 360µH 125°C According to manufacturer data sheet

Insulation between windings

Klebetechnik GmbH

CMC 10260

CMC 10262

130°C, Class B, VTM-2

130°C, Class B, VTM-2

UL94

IEC 60454

UL E93622, VDE

Coil Base insulation DU PONT Rynite FR530 155°C, Class F, V-0

UL94

IEC 216

UL E41938, VDE

Layer insulation Klebetechnik GmbH

CMC 10260 130°C, Class B, VTM-2

UL94

IEC 60454

UL E93622, VDE

Impregnation substances

DU PONT Voltatex 4001 155°C, Class F, V-0

UL94

IE216

UL E101752, VDE

Windings insulation Heermann Heersolit V155 155°C, Class F MW79

IEC 317

UL E174210, VDE

Windings insulation Elektrisola Polysol 155 155°C, Class F MW79

IEC 317

UL E331840, VDE

Windings insulation Furukawa TEX-E 130°C, Class B UL1959 / UL 1411

IEC 217

UL E206440, VDE

Windings insulation Rudolf Pack Rupalit Safety 130°C, Class B UL1950

IEC 60950

1) an asterisk indicates a mark which assures the agreed level of surveillance

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1.5.1 TABLE: Opto Electronic Devices P

Manufacturer Toshiba / Isocom / Vishay

Type TLP621 (GR) LF2) / SFH 615A-3SM, SFH 615A-4SM /

SFH6156-3T, SFH6156-4T

Separately tested IEC 60747-5-2 / IEC 60747-5-5

EN 60950-1

Bridging insulation Double insulation

External creepage distance Min.: 8mm

Internal creepage distance - -

Distance through insulation Min.: 0,4mm

Tested under the following conditions

Input

Output

Supplementary information

1.6.2 TABLE: electrical data (in normal conditions) P

U (V) I (A) Irated (A) P (W) Fuse # Ifuse (A) Condition/status

99 1,0 1,2 98 F1, F2 T 1,6 Rated max. output power 80W

110 0,9 1,2 95 F1, F2 T 1,6 Rated max. output power 80W

230 0,43 0,4 93 F1, F2 T 1,6 Rated max. output power 80W

253 0,4 0,4 93 F1, F2 T 1,6 Rated max. output power 80W

2.1.1.5 c) 1)

TABLE: max. V, A, VA test N/A

Voltage (rated) (V) Current (rated) (A) Voltage (max.)

(V) Current (max.)

(A) VA (max.) (VA)

Supplementary information

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2.1.1.5 c) 1)

TABLE: stored energy N/A

Capacitance C (µF) Voltage U (V) Energy E (J)

Supplementary information

2.10.3 / 2.10.4

TABLE: clearance and creepage distance measurements P

Clearance (cl) and creepage distance (cr) at/of/between:

U peak (V)

U r.m.s. (V)

Required cl (mm)

cl (mm)

Required cr (mm)

cr (mm)

X3: mainsPE (B) 340 240 2,0 3,9 2,4 3,9

F1: mainsPE (B) 340 240 2,0 4,8 2,4 4,8

C104: mainsPE (B) 340 240 2,0 5,5 2,4 5,5

X3: mainssecondary (D) 340 240 4,0 6,8 4,8 6,8

C200: mainssecondary (D) 555 270 4,4 9,6 5,4 9,6

US202: mainssecondary (D) 555 270 4,4 8,2 5,4 8,2

CS203: mainssecondary (D) 555 270 4,4 9,2 5,4 9,1

TR1: mainssecondary (D) 555 270 4,4 12,8 5,4 12,8

C215: Pin 1Pin 2 (B) 555 270 2,2 5,5 2,7 5,5

C216: Pin 1Pin 2 (B) 555 270 2,2 5,5 2,7 5,5

X3: mainsPE (B) 340 240 2,0 3,9 2,4 3,9

F1: mainsPE (B) 340 240 2,0 4,8 2,4 4,8

C104: mainsPE (B) 340 240 2,0 5,5 2,4 5,5

X3: mainssecondary (D) 340 240 4,0 6,9 4,8 6,9

C200: mainssecondary (D) 555 270 4,4 11,2 5,4 11,2

C200: mainssecondary (D) 555 270 4,4 11,8 5,4 11,8

RS209: mainssecondary D) 555 270 4,4 11,6 5,4 11,6

TR1: mainssecondary (D) 555 270 4,4 14,0 5,4 14,0

C215: Pin 1Pin 2 (B) 555 270 2,2 5,5 2,7 5,5

C216:Pin 1Pin 2 (B) 555 270 2,2 5,5 2,7 5,5

LN before fuse (X3) (F) 340 240 1,5 3,7 2,4 3,7

F1/F2: Pin 1Pin 2 (F) 340 240 1,5 6,8 2,4 6,8

LN before fuse (X3) (F) 340 240 1,5 3,7 2,4 3,7

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Clearance (cl) and creepage distance (cr) at/of/between:

U peak (V)

U r.m.s. (V)

Required cl (mm)

cl (mm)

Required cr (mm)

cr (mm)

F1/F2: Pin 1Pin 2 (F) 340 240 1,5 6,8 2,4 6,8

V101(+): mainsPE (B) 555 270 2,2 4,7 2,7 4,7

F2: mainsPE (B) 340 240 2,0 8,9 2,4 8,9

V101(+): mainsPE (B) 555 270 2,2 4,7 2,7 4,7

F2: mainsPE (B) 340 240 2,0 8,9 2,4 8,9

X3: LN before fuse (F) 340 240 1,5 3,7 0,6 3,7

F1/F2: LN before fuse (F) 340 240 1,5 2,4 0,6 2,4

F1/F2: Pin 1Pin 2 (F) 340 240 1,5 6,8 0,6 6,8

X3: mainsPE (B) 340 240 2,0 3,7 0,6 3,7

F1: mainsPE (B) 340 240 2,0 6,2 0,6 6,2

C104/C105: mainsPE (B) 340 240 2,0 5,5 0,6 5,5

F2: mainsPE (B) 340 240 2,0 8,9 0,6 8,9

V101(+): mainsPE (B) 555 270 2,2 4,7 0,7 4,7

C215/C216: Pin 1Pin 2 (B) 555 270 2,2 5,2 0,7 5,2

X3: mainssecondary (D) 340 240 4,0 8,3 1,2 8,3

Mains (GND)secondary (GND) (D)

555 270 4,4 8,0 1,4 8,0

X3:LN before fuse (F) 340 240 1,5 1,8 0,6 1,8

F1/F2: Pin 1Pin 2 (F) 340 240 1,5 6,8 0,6 6,8

X3: mainsPE (B) 340 240 2,0 3,9 0,6 3,9

F1: mainsPE (B) 340 240 2,0 6,5 0,6 6,5

F2: mainsPE (B) 340 240 2,0 8,0 0,6 8,0

C104/C05: mainsPE (B) 340 240 2,0 5,5 0,6 5,5

V101(+): mainsPE (B) 555 270 2,2 3,9 0,7 3,9

C215/C216: Pin 1Pin 2 (B) 555 270 2,2 5,5 0,7 5,5

X3: mainssecondary (D) 340 240 4,0 8,0 1,2 8,0

C200: mainssecondary (D) 555 270 4,4 1,04 1,4 10,4

TR1: mainssecondary (D) 555 270 4,4 13,9 1,4 13,9

X2: secondaryPE (B) 142 100 1,0 2,2 1,4 2,2

CS308/CS309: secondaryPE (B) 504 205 2,1 3,9 2,1 3,9

IC501: secondaryPE (B) 504 205 2,1 4,3 2,1 4,3

T300: secondaryPE (B) 504 205 2,1 4,0 2,1 4,0

CS508: secondaryPE (B) 504 205 2,1 3,1 2,1 3,1

CS506: secondaryPE (B) 504 205 2,1 3,9 2,1 3,9

CS506: secondaryPE (B) 504 205 2,1 3,5 2,1 3,5

X2: secondaryPE (B) 142 100 1,0 2,2 1,4 2,2

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Clearance (cl) and creepage distance (cr) at/of/between:

U peak (V)

U r.m.s. (V)

Required cl (mm)

cl (mm)

Required cr (mm)

cr (mm)

IC501: secondaryPE (B) 504 205 2,1 4,3 2,1 4,3

T304: secondaryPE (B) 504 205 2,1 4,5 2,1 4,5

T302: secondaryPE (B) 504 205 2,1 4,5 2,1 4,5

T300: secondaryPE (B) 504 205 2,1 4,0 2,1 4,0

TRS501: secondaryPE (B) 504 205 2,1 5,6 2,1 5,6

GND: secondaryPE (B) 504 205 2,1 3,6 0,5 3,6

X2: secondaryPE (B) 142 100 1,0 2,2 0,3 2,2

GND: secondaryPE (B) 504 205 2,1 4,2 0,5 4,1

T300: secondaryPE (B) 504 205 2,1 4,0 0,5 4,0

X2: secondaryPE (B) 142 100 1,0 2,2 0,3 2,2

IC501: secondaryPE (B) 504 205 2,1 4,2 0,5 4,2

T300: secondaryPE (B) 504 205 2,1 4,0 0,5 4,0

Supplementary information

2.10.5 TABLE: distance through insulation measurements P

distance through insulation di at/of: Ueff (V)

test voltage (V)

required di (mm)

di (mm)

Triple Isulation Wire 270 5000 Annex U

Insulating tape on heat sink 270 3000 0,229mm

Insulating tape between transistors and clamps 270 3000 0,17mm

Insulating between layer 2layer 3 270 1850 0,71mm

Insulating between BSLayer 2 270 1850 0,36mm

Insulation between LS Layer3 270 1850 0,36mm

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4.3.8 TABLE: Batteries N/A

The tests of 4.3.8 are applicable only when appropriate battery data is not available

Is it possible to install the battery in a reverse polarity position? Yes No

Non-rechargeable batteries Rechargeable batteries

Discharging Un-intentional charging

Charging Discharging Reversed charging

Meas. Current

Manuf. Specs.

Meas. Current

Manuf. Specs.

Meas. Current

Manuf. Specs.

Meas. Current

Manuf. Specs.

Max. current during normal condition

Max. current during fault condition

Test results: Verdict

- Chemical leaks

- Explosion of the battery

- Emission of flame or expulsion of molten metal

- Electric strength tests of equipment after completion of tests

Supplementary information:

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4.5 TABLE: maximum temperatures P

test voltage (V) .............................................. : 99V NC 99V NC 230V FC

230V FC

253V NC

253V NC

tamb1 (C) ........................................................ : 23,0 60,0 24,0 60,0 24,0 60,0

tamb2 (C) ........................................................ :

maximum temperature T of part/at:: T (C) allowed

Tmax

(C)

C101 54,059 91,059 45,799 81,799 52,827 88,827 110

C102 53,385 90,385 46,017 82,017 52,313 88,313 110

L102 66,705 103,705 50,676 86,676 65,597 101,597 125

L101 52,001 89.001 44,672 80,672 50,897 86,897 125

C105 46,826 83,826 45,33 81,33 45,894 81,894 125

C215 62,989 99,989 67,39 103,39 60,232 96,232 125

US201 51,765 88,765 57,061 93,061 54,124 90,124 100

TR1 69,742 106,742 78,137 114,137 69,478 105,478 120

C307 47,689 84,689 55,133 91,133 47,987 83,987 125

L301 71,185 108,185 93,463 129,463 71,595 107,595 130

L302 63,866 100,866 83,402 119,402 64,584 100,584 130

C212 54,194 91,194 61,725 97,725 54,141 90,141 105

K.K. primary 48,96 85,96 49,164 85,164 48,988 84,988 100

K.K. secondary 42,751 79,751 47,296 83,296 42,804 78,804 100

X1 36,552 73,552 36,552 72,552 35,608 71,608 85

X2 39,479 74,479 43,495 79,495 39,598 75,598 85

Enclosure left 44,803 81,803 46,018 82,018 44,804 80,804 100

Enclosure right 40,691 77,691 45,412 81,412 40,487 76,487 100

Enclosure middle 42,926 79,926 46,751 82,751 42,647 78,647 100

temperature T of winding: R1 () R2 () T (C) allowed

Tmax (C)

insulation class

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temperature T of winding: R1 () R2 () T (C) allowed

Tmax (C)

insulation class

99V NC

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temperature T of winding: R1 () R2 () T (C) allowed

Tmax (C)

insulation class

253V NC

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4.5.5 TABLE: ball pressure test of thermoplastic parts P

allowed impression diameter (mm) ..................... : 2 mm

part test temperature (C) impression diameter (mm)

Wiring terminals 125°C << 2mm

4.7 TABLE: resistance to fire P

part manufacturer of material type of material thickness (mm)

flammability class

Evidence

PCB Various Various 1,8 mm V-0 UL

enclosure Various aluminium 1-2 mm metal

5.2 TABLE: electric strength tests, impulse tests and voltage surge tests P

test voltage applied between: Voltage shape (AC, DC,

impulse, surge)

test voltage (V) breakdown Yes / No

Mains and secondary AC 3000V No

Mains and enclosure (PE) AC 1850V No

Secondary and enclosure (PE) AC 1780V No

supplementary information

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5.3 TABLE: fault condition tests P

ambient temperature (C) ................................... : 25°C

Power source for EUT: Manufacturer, model/type, output rating ........................................................ :

Chroma programmable AC source

component No.

fault supply voltage

(V)

test time fuse No.

fuse current

(A)

Observation

TR1 (C212) overload 230 F1 / F2

1,6AT Input 200W, no hazard, see measure of temperature below. EUT defect.

100V output overload 230 F1 / F2

1,6AT Output 125W, no hazard, see table 4.5 (FC)

C206 Short-cut 230 F1 / F2

1,6AT No hazard, F1, F2 switch off, TL01 defect

TL01 Short-cut

Source

Drain

230 F1 / F2

1,6AT No hazard, F1, F2 switch off, RS214, RS222 defect

V101 Short-cut

+ ~

230 F1 / F2

1,6AT No hazard, F1,F2 switch off

100V output Short-cut 230 F1 / F2

1,6AT No hazard, output switch off

C103 Short-cut 230 F1 / F2

1,6AT No hazard, F1 and F2 cut off

T200 Short-cut SD

230 F1 / F2

1,6AT No hazard.

DS203 Short-cut 230 F1 / F2

1,6AT No hazard, input power: 35W

C200 Short-cut 230 F1 / F2

1,6AT No hazard, output switch off

T200 + output

Short-cut SD

230 F1 / F2

1,6AT No hazard. (short-cut of T200 SD and short-cut of output)

T303 Short-cut SD

230 F1 / F2

1,6AT No hazard, equipment shut down.

supplementary information

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Measure of temperature: fault condition test (overload TR1)

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Photo report

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Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 55 of 65

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Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 56 of 65

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Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 57 of 65

NATIONAL CONDITIONS (US)

Clause Requirement + Test Result - Remark Verdict

SPECIAL NATIONAL CONDITIONS BASED ON FEDERAL REGULATIONS

1.1.1 All equipment is to be designed to allow installation in accordance with the National Electrical Code (NEC), ANSI/NFPA 70, and when applicable, the National Electrical Safety Code, IEEE C2. Also, unless marked or otherwise identified, installation is allowed per the Standard for the Protection of Electronic Computer/Data-Processing Equipment, ANSI/NFPA 75.

Considered. P

1.4.14 For Pluggable Equipment Type A, the protection in the installation is assumed to be 20A.

Permanently connected equipment used.

N/A

1.5.5 For lengths exceeding 3.05 m, external interconnecting flexible cord and cable assemblies are required to be a suitable cable type specified in the NEC. For lengths 3.05 m or less, external interconnecting flexible cord and cable assemblies that are not types specified in the NEC are required to have special construction features and identification markings.

Power supply cable not submitted.

N/A

1.7.1 Equipment for use on a.c. mains supply systems with a neutral and more than one phase conductor (e.g. 120/240 V, 3-wire) require a special marking format for electrical ratings.

Single phase equipment.

N/A

2.5 Where a fuse is used to provide Class 2, Limited Power Source, or TNV current limiting, it shall not be operator-accessible unless it is not interchangeable.

Not operator-accessible. P

2.7.1 Suitable NEC branch circuit protection rated at the maximum circuit rating is required for all standard supply outlets and receptacles (such as supplied in power distribution units) if the supply branch circuit protection is not suitable. Power distribution transformers distributing power at 100 volts or more, and rated 10 kVA or more, require special transformer overcurrent protection.

N/A

3.2 Wiring methods (terminals, leads, etc.) used for the connection of the equipment to the mains shall be in accordance with the NEC.

Considered. N/A

3.2.1 Power supply cords are required to have attachment plugs rated not less than 125 percent of the rated current of the equipment.

Power supply cord not provided.

N/A

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EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 58 of 65

NATIONAL CONDITIONS (US)

3.2.1.2 Equipment connected to a centralized d.c. power system, and having one pole of the DC mains input terminal connected to the main protective earthing terminal in the equipment, is required to comply with special earthing, wiring, marking and installation instruction requirements.

No DC power input N/A

3.2.3 Permanent connection of equipment to the mains supply by a power supply cord is not permitted, except for certain equipment, such as ATMs.

No power supply cord used, directly connection to mains.

P

3.2.5 Power supply cords are required to be no longer than 4.5 m in length and minimum length shall be 1.5 m. Flexible power supply cords are required to be compatible with Article 400 of the NEC.

Power supply cord not provided.

N/A

3.2.9 Permanently connected equipment must have a suitable wiring compartment and wire bending space.

Equipment is for building in. N/A

3.3.3 Wire binding screws are not permitted to attach conductors larger than 10 AWG (5.3 mm2).

Spring clamps used .Till AWG 12.

P

3.3.4 Terminals for permanent wiring, including protective earthing terminals, must be suitable for U.S wire gauge sizes, rated 125 percent of the equipment rating, and be specially marked when specified (1.7.7).

Max input current: 1,1A

Terminals for AWG 12, 2,5mm

2.

P

3.4.2 Motor control devices are required for cord-connected equipment with a motor if the equipment is rated more than 12 A, or if the motor has a nominal voltage rating greater than 120 V, or is rated more than 1/3 hp (locked rotor current over 43 A).

Not used. N/A

3.4.8 Vertically-mounted disconnect switches and circuit breakers are required to have the "on" position indicated by the handle in the up position.

No vertically mounted switch. N/A

3.4.11 For computer room applications, equipment with battery systems capable of supplying 750 VA for five minutes are required to have a battery disconnect means that may be connected to the computer room remote power-off circuit.

No battery system. N/A

4.3.12 The maximum quantity of flammable liquid stored in equipment is required to comply with NFPA 30.

No flammable liquids. N/A

4.3.13.5 Equipment with lasers is required to meet the Code of Federal Regulations 21 CFR 1040.

No lasers. N/A

4.7 For computer room applications, automated information storage systems with combustible media greater than 0.76 m3 (27 cu ft) are required to have a provision for connection of either automatic sprinklers or a gaseous agent extinguishing system with an extended discharge.

No such equipment. N/A

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EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 59 of 65

NATIONAL CONDITIONS (US)

4.7.3.1 For computer room applications, enclosures with combustible material measuring greater than 0.9 m2 (10 sq ft) or a single dimension greater than 1.8 m (6 ft) are required to have a flame spread rating of 50 or less. For other applications, enclosures with the same dimensions require a flame spread rating of 200 or less.

N/A

Annex H Equipment that produces ionizing radiation must comply with Federal Regulations, 21 CFR 1020

No ionizing radiation. N/A

OTHER NATIONAL DIFFERENCES (US)

1.5.1 Some components and materials associated with the risk of fire, electric shock, or personal injury are required to have component or material ratings in accordance with the applicable national (U.S. and Canadian) component or material requirements. These components include: attachment plugs, battery packs (rechargeable type, used with transportable equipment), cathode ray tubes, circuit breakers, communication circuit accessories, connectors (used for current interruption of non-LPS circuits), cord sets and power supply cords, direct plug-in equipment, enclosures (outdoor), flexible cords and cables, fuses (branch circuit), fuseholders, ground-fault current interrupters, industrial control equipment, insulating tape, interconnecting cables, lampholders, limit controls, printed wiring, protectors for communications circuits, receptacles, solid state controls, supplementary protectors, switches (including interlock switches), thermal cutoffs, thermostats, (multi-layer) transformer winding wire, transient voltage surge suppressors, tubing, wire connectors, and wire and cables.

All critical components are UL approved.

Materials in TR1 are UL approved.

P

1.6.1.2 A circuit for connection to the DC Mains Supply is classified as either a SELV Circuit, TNV-2 Circuit or Hazardous Voltage Circuit depending on the maximum operating voltage of the supply. This maximum operating voltage it to include consideration of the battery charging “float voltage” associated with the intended supply system, regardless of the marked power rating of the equipment.

No such circuits. N/A

2.3.1 For TNV-2 and TNV-3 circuits with other than ringing signals and with voltages exceeding 42.4 Vpeak or 60 Vd.c., the max. acceptable current through a 2000 ohm resistor (or greater) connected across the voltage source with other loads disconnected is 7.1 mA peak or 30 mA d.c. under normal operating conditions.

No TNV circuits. N/A

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EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 60 of 65

NATIONAL CONDITIONS (US)

Clause Requirement + Test Result - Remark Verdict

2.3.2.1 In the event of a single fault between TNV and SELV circuits, the limits of 2.2.3 apply to SELV Circuits and accessible conductive parts.

N/A

2.6.3.4 Protective bonding conductors of non-standard protective bonding constructions (e.g., printed circuit traces) may be subjected to the additional limited short circuit test conditions specified.

Considered. P

4.2.8.1 Enclosures around CRTs with a face diameter of 160 mm or more are required to reduce the risk of injury due to the implosion of the CRT.

No CRTs. N/A

4.2.11 For equipment intended for mounting on racks and provided with slide/rails allowing the equipment to slide away from the rack for installation, service and maintenance, additional construction, performance and marking requirements are applicable to determine the adequacy of the slide/rails.

Stationary equipment for built-in

N/A

4.3.2 Equipment with handles is required to comply with special loading tests.

Mass of equipment is less than 9kg.

N/A

5.1.8.3 Equipment intended to receive telecommunication ringing signals is required to comply with a special touch current measurement tests.

No such equipment. N/A

5.3.7 Internal (e.g., card cage) SELV circuit connectors and printed wiring board connectors that are accessible to the operator and that deliver power are to be overloaded. During abnormal operating testing, if a circuit is interrupted by the opening of a component, the test shall be repeated twice (three tests total) using new components as necessary.

No such accessible connectors.

P

6.4 Equipment intended for connection to telecommunication network outside plant cable is required to be protected against overvoltage from power line crosses in accordance with 6.4 and Annex NAC.

Equipment is not connected to a telecommunication network.

N/A

M.2 Continuous ringing signals up to 16 mA only are permitted if the equipment is subjected to special installation and performance restrictions.

N/A

Annex NAD

Equipment connected to a telecommunication and cable distribution networks and supplied with an earphone intended to be held against, or in the ear is required to comply with special acoustic pressure requirements.

Equipment is not connected to a cable distribution system or a telecommunication network.

N/A

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EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 61 of 65

NATIONAL CONDITIONS (US)

Clause Requirement + Test Result - Remark Verdict

Annex NAF Document (paper) shredders likely to be used in a home or home office (Pluggable Equipment Type A plug configuration) are required to comply with additional requirements, including markings/instructions, protection against inadvertent reactivation of a safety interlock, disconnection from the mains supply (via provision of an isolating switch), and protection against operator access (accessibility determined via new accessibility probe & probe/wedge).

No document shredder. N/A

SPECIAL NATIONAL CONDITIONS (CA)

1.1.1 All equipment is to be designed to allow installation in accordance with the National Electrical Code (NEC), ANSI/NFPA 70, the Canadian Electrical Code (CEC), Part I, CAN/CSA C22.1, and when applicable, the National Electrical Safety Code, IEEE C2. Also, unless marked or otherwise identified, installation is allowed per the Standard for the Protection of Electronic Computer/Data-Processing Equipment, ANSI/NFPA 75.

Considered. P

1.4.14 For Pluggable Equipment Type A, the protection in the installation is assumed to be 20A.

Permanently connected equipment.

N/A

1.5.5 For lengths exceeding 3.05 m, external interconnecting flexible cord and cable assemblies are required to be a suitable cable type /e.g., DP,CL2) specified in the CEC/NEC. For lengths 3.05 m or less, external interconnecting flexible cord and cable assemblies that are not types specified in the CEC are required to have special construction features and identification markings.

Cables not submitted. N/A

1.7.1 Equipment for use on a.c. mains supply systems with a neutral and more than one phase conductor (e.g.120/240 V, 3-wire) require a special marking format for electrical ratings.

A voltage rating that exceeds an attachment plug cap rating is only permitted if it does not exceed the extreme operating conditions in Table 2 of CAN/CSA C22.2 No. 235, and if it is part of a range that extends into the Table 2 "Normal Operating Conditions." Likewise, a voltage rating shall not be lower than the specified "Normal Operating Conditions," unless it is part of a range that extends into the "Normal Operating Conditions."

Single phase equipment.

N/A

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EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 62 of 65

NATIONAL CONDITIONS (CA)

Clause Requirement + Test Result - Remark Verdict

1.7.7 Wiring terminals intended to supply class 2 outputs in accordance to with CEC Part1 or NEC shall be marked with the voltage rating and „Class 2“ or equivalent. Marking shall be located adjacent to the terminals and shall be visible during wiring.

No class II outputs. N/A

2.5 Where a fuse is used to provide Class 2, Limited Power Source, or TNV current limiting, it shall not be operator-accessible unless it is not interchangeable.

Not operator-accessible.

P

2.7.1 Suitable NEC/CEC branch circuit protection rated at the maximum circuit rating is required for all standard supply outlets and receptacles (such as supplied in power distribution units) if the supply branch circuit protection is not suitable. Power distribution transformers distributing power at 100 volts or more, and rated 10 kVA or more, require special transformer overcurrent protection.

N/A

3.2 Wiring methods (terminals, leads, etc.) used for the connection of the equipment to the mains shall be in accordance with the NEC/CEC.

Considered. P

3.2.1 Power supply cords are required to have attachment plugs rated not less than 125 percent of the rated current of the equipment.

Power supply cord not submitted.

N/A

3.2.1.2 Equipment connected to a centralized d.c. power system, and having one pole of the DC mains input terminal connected to the main protective earthing terminal in the equipment, is required to comply with special earthing, wiring, marking and installation instruction requirements.

No DC power input. N/A

3.2.3 Permanent connection of equipment to the mains supply by a power supply cord is not permitted, except for certain equipment, such as ATMs.

Without power supply cord.

P

3.2.5 Power supply cords are required to be no longer than 4.5 m in length. Flexible power supply cords are required to be compatible with Article 400 of the NEC.

Power supply cord not provided.

N/A

3.2.9 Permanently connected equipment must have a suitable wiring compartment and wire bending space.

Equipment is for building in.

N/A

3.3 Wiring terminals and associated spacings for field wiring connections shall comply with CSA C22.2 No.0.

Considered. P

3.3.3 Wire binding screws are not permitted to attach conductors larger than 10 AWG (5.3 mm2).

Spring clamps used .Till AWG 12.

P

3.3.4 Terminals for permanent wiring, including protective earthing terminals, must be suitable for Canadian/U.S wire gauge sizes, rated 125 percent of the equipment rating, and be specially marked when specified (1.7.7).

Max input current: 1,1A

Terminals for AWG 12; 2,5mm²

P

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EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 63 of 65

NATIONAL CONDITIONS (CA)

Clause Requirement + Test Result - Remark Verdict

3.4.2 Motor control devices are required for cord-connected equipment with a motor if the equipment is rated more than 12 A, or if the motor has a nominal voltage rating greater than 120 V, or is rated more than 1/3 hp (locked rotor current over 43 A).

Not used. N/A

3.4.8 Vertically-mounted disconnect switches and circuit breakers are required to have the "on" position indicated by the handle in the up position.

No vertically mounted switch.

N/A

3.4.11 For computer room applications, equipment with battery systems capable of supplying 750 VA for five minutes are required to have a battery disconnect means that may be connected to the computer room remote power-off circuit.

No battery system. N/A

4.3.12 The maximum quantity of flammable liquid stored in equipment is required to comply with NFPA 30.

No flammable liquids. N/A

4.3.13.5 Equipment with lasers is required to meet the Canadian Radiation Emitting Devices Act, REDR C1370 and/or Code of Federal Regulations 21 CFR 1040, as applicable.

No lasers. N/A

4.7 For computer room applications, automated information storage systems with combustible media greater than 0.76 m3 (27 cu ft) are required to have a provision for connection of either automatic sprinklers or a gaseous agent extinguishing system with an extended discharge.

No such equipment. N/A

4.7.3.1 For computer room applications, enclosures with combustible material measuring greater than 0.9 m2 (10 sq ft) or a single dimension greater than 1.8 m (6 ft) are required to have a flame spread rating of 50 or less. For other applications, enclosures with the same dimensions require a flame spread rating of 200 or less.

N/A

Annex H Equipment that produces ionizing radiation must comply with Canadian Radiation Emitting Devices Act, REDR C1370 and/or Code of Federal Regulations 21 CFR 1040, as applicable.

No ionizing radiation. N/A

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EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 64 of 65

NATIONAL CONDITIONS (CA)

Clause Requirement + Test Result - Remark Verdict

1.5.1 Some components and materials associated with the risk of fire, electric shock, or personal injury are required to have component or material ratings in accordance with the applicable national (U.S. and Canadian) component or material requirements. These components include: attachment plugs, battery packs (rechargeable type, used with transportable equipment), cathode ray tubes, circuit breakers, communication circuit accessories, connectors (used for current interruption of non-LPS circuits), cord sets and power supply cords, direct plug-in equipment, enclosures (outdoor), flexible cords and cables, fuses (branch circuit), fuseholders, ground-fault current interrupters, industrial control equipment, insulating tape, interconnecting cables, lampholders, limit controls, printed wiring, protectors for communications circuits, receptacles, solid state controls, supplementary protectors, switches (including interlock switches), thermal cutoffs, thermostats, (multi-layer) transformer winding wire, transient voltage surge suppressors, tubing, wire connectors, and wire and cables.

All critical components are UL approved.

Materials in TR1 are UL approved.

P

1.6.1.2 A circuit for connection to the DC Mains Supply is classified as either a SELV Circuit, TNV-2 Circuit or Hazardous Voltage Circuit depending on the maximum operating voltage of the supply. This maximum operating voltage it to include consideration of the battery charging “float voltage” associated with the intended supply system, regardless of the marked power rating of the equipment.

No such circuits. N/A

2.3.1 For TNV-2 and TNV-3 circuits with other than ringing signals and with voltages exceeding 42.4 Vpeak or 60 Vd.c., the max. acceptable current through a 2000 ohm resistor (or greater) connected across the voltage source with other loads disconnected is 7.1 mA peak or 30 mA d.c. under normal operating conditions.

No TNV circuits. N/A

2.3.2.1 In the event of a single fault between TNV and SELV circuits, the limits of 2.2.3 apply to SELV Circuits and accessible conductive parts.

N/A

2.6.3.4 Protective bonding conductors of non-standard protective bonding constructions (e.g., printed circuit traces) may be subjected to the additional limited short circuit test conditions specified.

Considered. P

4.2.8.1 Enclosures around CRTs with a face diameter of 160 mm or more are required to reduce the risk of injury due to the implosion of the CRT.

No CRTs. N/A

Page 65: IEC 60950-1 and/or EN 60950-1 Edition) Information ... · PDF fileIEC 60950-1 and/or EN 60950-1 (2nd Edition) ... identification mark Schiederwerk X Model identification or type reference

EMV TESTHAUS GmbH

Gustav-Hertz-Strasse 35 94315 Straubing

Germany

Revision 1.0

Quantum Glass – Saint Gobain - France

switching power supply / SMPS 110VAC S 80VA U

110423-AU02+S01 Page 65 of 65

NATIONAL CONDITIONS (CA)

Clause Requirement + Test Result - Remark Verdict

4.2.11 For equipment intended for mounting on racks and provided with slide/rails allowing the equipment to slide away from the rack for installation, service and maintenance, additional construction, performance and marking requirements are applicable to determine the adequacy of the slide/rails.

No such equipment. N/A

4.3.2 Equipment with handles is required to comply with special loading tests.

Mass of equipment is less than 9kg.

N/A

5.1.8.3 Equipment intended to receive telecommunication ringing signals is required to comply with a special touch current measurement tests.

No such equipment. N/A

5.3.7 Internal (e.g., card cage) SELV circuit connectors and printed wiring board connectors that are accessible to the operator and that deliver power are to be overloaded. During abnormal operating testing, if a circuit is interrupted by the opening of a component, the test shall be repeated twice (three tests total) using new components as necessary.

No such accessible connectors.

N/A

6.4 Equipment intended for connection to telecommunication network outside plant cable is required to be protected against overvoltage from power line crosses in accordance with 6.4 and Annex NAC.

Equipment is not connected to a telecommunication network.

N/A

M.2 Continuous ringing signals up to 16 mA only are permitted if the equipment is subjected to special installation and performance restrictions.

N/A

Annex NAD Equipment connected to a telecommunication and cable distribution networks and supplied with an earphone intended to be held against, or in the ear is required to comply with special acoustic pressure requirements.

Equipment is not connected to a cable distribution system or a telecommunication network.

N/A

Annex NAF Document (paper) shredders likely to be used in a home or home office (Pluggable Equipment Type A plug configuration) are required to comply with additional requirements, including markings/instructions, protection against inadvertent reactivation of a safety interlock, disconnection from the mains supply (via provision of an isolating switch), and protection against operator access (accessibility determined via new accessibility probe & probe/wedge).

No document shredder. N/A