CE EMC TEST REPORT - DANUBE SERIES/CLE_CE_Test... · Report No.:T110407401-E ... No.255 , Fengren...
Transcript of CE EMC TEST REPORT - DANUBE SERIES/CLE_CE_Test... · Report No.:T110407401-E ... No.255 , Fengren...
Reference No.: 91209406-E Report No.:T110407401-E
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CE EMC TEST REPORT
For
DC/DC LED Driver
Model : CLE Series
Brand: DANUBE
Test Report Number: T110407401-E
Issued for
Danube Enterprise Co.,Ltd.
A2 , No.255 , Fengren Rd ., Renwu District Kaohsiung City 814 , Taiwan(R.O.C)
Issued by
COMPLIANCE CERTIFICATION SERVICES INC. TAINAN LABORATORY
No. 8, Jiu Ceng Ling, Jiaokeng Village, Sinhua Township, Tainan Hsien 712, Taiwan (R.O.C.)
TEL: 886-6-580-2201 FAX: 886-6-580-2202
Issued Date: May 18, 2011
Note: This report shall not be reproduced except in full, without the written approval of Compliance Certification Services Inc. This document may be altered or revised by Compliance Certification Services Inc. personnel only, and shall be noted in the revision section of the document. The client should not use it to claim product endorsement by TAF, NIST or any government agencies. The test results in the report only apply to the tested sample.
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Revision History
Rev. Issue Date Revisions Effect Page Revised By
00 May 11, 2011 Initial Issue All Page Eva Lin
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TABLE OF CONTENTS TITLE PAGE NO. 1. TEST REPORT CERTIFICATION................................................................................ 4
2. EUT DESCRIPTION..................................................................................................... 5
3. DESCRIPTION OF TEST MODES............................................................................... 6
4. TEST METHODOLOGY............................................................................................... 6
5. FACILITIES AND ACCREDITATION .......................................................................... 6
5.1 FACILITIES............................................................................................................ 6
5.2 EQUIPMENT ......................................................................................................... 6
5.3 TABLE OF ACCREDITATIONS AND LISTINGS ................................................... 7
6. CALIBRATION AND UNCERTAINTY ......................................................................... 9
6.1 MEASURING INSTRUMENT CALIBRATION........................................................ 9
6.2 MEASUREMENT UNCERTAINTY......................................................................... 9
7. SETUP OF EQUIPMENT UNDER TEST ..................................................................... 10
8. EMISSION TEST.......................................................................................................... 11
8.1 RADIATED ELECTROMAGNETIC DISTURBANCES........................................... 11
8.2 DISTURBANCE VOLTAGES................................................................................. 20
8.3 HARMONIC CURRENT EMISSION ...................................................................... 23
8.4 VOLTAGE FLUCTUATION AND FLICKER ........................................................... 26
9. IMMUNITY TEST ......................................................................................................... 27
9.1 ELECTROSTATIC DISCHARGE (ESD) ................................................................ 28
9.2 RADIATED SUSCEPTIBILITY (RS)....................................................................... 32
9.3 ELECTRICAL FAST TRANSIENT/BURST (EFT) .................................................. 35
9.4 SURGE .................................................................................................................. 38
9.5 INJECTED CURRENTS (CS) ................................................................................ 40
9.6 POWER FREQUENCY MAGNETIC FIELDS (PFMF) ........................................... 43
9.7 VOLTAGE DIPS & VOLTAGE INTERRUPTIONS (DIP)........................................ 45
APPENDIX SETUP PHOTOS.......................................................................................... 47
APPENDIX PHOTOS OF EUT……………………….…………………………….…………..A1
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2. EUT DESCRIPTION
Product DC/DC LED Driver
Model CLE Series
Brand Name DANUBE
Applicant Danube Enterprise Co.,Ltd.
Manufacture Danube Enterprise Co.,Ltd.
Identify Number T110407401
Received Date April 7, 2011
EUT Power Rating For model: CLE-48-1.00D (I/P:9-56Vdc, O/P: 2-52Vdc,1000mA, 52W)
Note: 1. Client consigns two model samples to test (Model Number: CLE-48-1.00D). Therefore, the testing Lab.
just guarantees the unit, which has been tested. 2. For more details, please refer to the User’s manual of the EUT. 3. To add a PARTNUMBES STRUCTURE
Series Coding scheme CLE Series CLE-x1-x.x2y1y2HSJzzz
CLE =Series Name x1 = Input voltage x.x2 =Output current y1 = Package Style(D=PINS;S=SMD,W=WIRED) y2 = Dimming control HS = With Heat Sink J = PIN Length 3.5 mm zzz = 0~9,A~Z or blank for market purpose.
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3. DESCRIPTION OF TEST MODES
The EUT (CLE-48-1.00D) has been tested under normal operating condition.
Test Mode: Normal operation.
4. TEST METHODOLOGY
The tests documented in this report were performed in accordance with EN 55015:2006+A1:2007, EN 61547:1995+A1:2000.
5. FACILITIES AND ACCREDITATION
5.1 FACILITIES All measurement facilities used to collect the measurement data are located at CCS Hsinchu Lab.
NO. 989-1 Wen Shan Rd., Shang Shan Village, Qionglin Shiang Hsinchu County 30741, Taiwan, R.O.C. CCS Tainan Lab.
No. 8, Jiu Ceng Ling, Jiaokeng Village,Sinhua Township, Tainan Hsien 712, Taiwan (R.O.C.)
The sites are constructed in conformance with the requirements of ANSI C63.7, ANSI C63.4 : 2003 and CISPR Publication 22.
5.2 EQUIPMENT Radiated emissions are measured with one or more of the following types of linearly polarized antennas: tuned dipole, biconical, log periodic, bi-log, and/or ridged waveguide, horn. Spectrum analyzers with preselectors and quasi-peak detectors are used to perform radiated measurements. Conducted emissions are measured with Line Impedance Stabilization Networks and EMI Test Receivers. Calibrated wideband preamplifiers, coaxial cables, and coaxial attenuators are also used for making measurements. All receiving equipment conforms to CISPR Publication 16-1, “Radio Interference Measuring Apparatus and Measurement Methods.”
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5.3 TABLE OF ACCREDITATIONS AND LISTINGS CCS Hsinchu Lab.
Country Agency Scope of Accreditation Logo
USA FCC 3/10 meter Open Area Test Sites to perform FCC Part 15/18 measurements
90585, 90584
Taiwan TAF
FCC Method-47 CFR Part 15 Subpart C,D,E CISPR 11, FCC METHOD-47 CFR Part 18, EN 55011, CNS 13803, CISPR 13, CNS 13439, FCC Method-47 CFR Part 15 Subpart B, CISPR 14-1, EN 55014-1, CNS 13783-1, EN 55015, CNS 14115, CISPR 22, EN 55022, VCCI CNS 13438, EN 61000-4-2/3/4/5/6/8/11
Taiwan BSMI CNS 13803, CNS 13438, CNS 13439, CNS 13783-1, CNS 14115
SL2-IS-E-0002 SL2-IN-E-0002 SL2-A1-E-0002 SL2-R1-E-0002 SL2-R2-E-0002 SL2-L1-E-0002
* No part of this report may be used to claim or imply product endorsement by TAF or any agency of the US Government.
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CCS Tainan Lab. Country Agency Scope of Accreditation Logo
USA FCC 3/10 meter Open Area Test Sites to perform FCC Part 15/18 measurements
TW-1037
Taiwan TAF
CISPR 11, FCC METHOD-47 CFR Part 18, EN 55011, EN 60601-1-2, CISPR 22, CNS 13438, EN 55022, EN 55024, AS/NZS CISPR 22 CISPR 14, EN 55014-1, EN 55014-2, CNS 13783-1, CISPR 22, CNS 13439, EN 55013, FCC Method-47 CFR Part 15 Subpart B, IC ICES-003, VCCI V-3 & V-4 FCC Method-47 CFR Part 15 Subpart C and ANSI C63.4, LP 0002 EN / IEC 61000-4-2 / -3 / -4 / -5 / -6 / -8 / -11 EN 61000-3-2, EN 61000-3-3 EN 61000-6-3, EN 61000-6-1, AS/NZS 4251.1, EN 61000-6-4, EN 61000-6-2, AS/NZS 4251.2, EN 61204-3, EN 50130-4, EN 62040-2, EN 50371, EN 50385, AS/NZS 4268, ETSI EN 300 386 ETSI EN 300 328, ETSI EN 301 489-1/-3/-9/-17 ETSI EN 301 893, ETSI EN 300 220-2/-1 ETSI EN 300 440-2/-1 ETSI EN 301 357-2/-1 RSS-310, RSS-210 Issue 7, RSS-Gen Issue 2
Taiwan BSMI CNS 13438, CNS 13783-1, CNS13439 SL2-IN-E-0039
SL2-R1/R2-0039 SL2-A1-E-0039
Canada Industry Canada RSS210, Issue 7
IC 2324H-1 * No part of this report may be used to claim or imply product endorsement by TAF or any agency of the US Government.
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6. CALIBRATION AND UNCERTAINTY
6.1 MEASURING INSTRUMENT CALIBRATION The measuring equipment utilized to perform the tests documented in this report has been calibrated in accordance with the manufacturer’s recommendations, and is traceable to recognized national standards.
6.2 MEASUREMENT UNCERTAINTY The following table is for the measurement uncertainty, which is calculated as per the document CISPR 16-4.
Measurement Frequency Uncertainty
Power Line Conducted Emission 9kHz~30MHz ±2.90dB
30 MHz ~200 MHz ±3.76dB Test Site : OATS-5
200 MHz ~1000 MHz ±3.73dB
30 MHz ~200 MHz ±3.60dB Test Site : OATS-6
200 MHz ~1000 MHz ±3.70dB
30 MHz ~200 MHz ±3.99dB
Radiated Emission (10m)
Test Site : OATS-7200 MHz ~1000 MHz ±3.31dB
30 MHz ~200 MHz ±3.38dB Test Site : OATS-5
200 MHz ~1000 MHz ±3.27dB
30 MHz ~200 MHz ±3.59dB Test Site : OATS-6
200 MHz ~1000 MHz ±3.27dB
Radiated Emission (3m)
Test Site : OATS-6 1000 MHz ~6000 MHz ±3.20dB This uncertainty represents an expanded uncertainty expressed at approximately the 95% confidence level using a coverage factor of k=2.
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7. SETUP OF EQUIPMENT UNDER TEST
SUPPORT EQUIPMENT Peripherals Devices:
No. Product Manufacturer Model No. Certify No. Signal cable
1 DC power supply LOKO DPS-5050 DOC Power cable, unshd, 1.6m
No. Signal cable description
A DC Power Unshielded, 0.03 m, 2 pcs.
Note: 1) All the equipment/cables were placed in the worst-case configuration to maximize the emission during the
test. 2) Grounding was established in accordance with the manufacturer’s requirements and conditions for the
intended use.
SETUP DIAGRAM FOR TESTS
EUT & peripherals setup diagram is shown in appendix setup photos.
EUT OPERATING CONDITION
All the equipment/cables were placed in the worst-case configuration to maximize the emission during the test. Grounding was established in accordance with the manufacturer’s requirements and conditions for the intended use.
1. Setup whole system for test as shown on diagram.
2. Power on all equipments.
3. All of the functions are under run.
4. Start test.
E.U.T. DC power supply
A Load
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8. EMISSION TEST
8.1 RADIATED ELECTROMAGNETIC DISTURBANCES
LIMITS
(1) Frequency Range 9 kHz to 30 MHz Limits for loop diameter (dBμA) a
Frequency range 2 m 3 m 4 m
9 kHz to 70kHz 88 81 75
70 kHz to 150 kHz 88 to 58 b 81 to 51 b 75 to 45 b
150 kHz to 3 MHz 58 to 22 b 51 to 15 b 45 to 9 b
3 MHz to 30 MHz 22 15 to 16 c 9 to 12 c
Remark: (a) At the transition frequency, the lower limit applies. (b) Decreasing linearly with the logarithm of the frequency. For electrodeless lamps and
luminaries, the limit in the frequency range of 2.2 MHz to 3.0 MHz is 58 dB(μA) for 2 m, 51 dB(μA) for 3 m and 45 dB(μA) for 4 m loop diameter.
(c) Increasing linearly with the logarithm of the frequency. (2) Frequency Range 30 MHz to 300 MHz
Frequency range (MHz)
Quasi-peak limits (dBμV/m)
Distance (meters)
30 to 230 30 10
230 to 300 37 10 Remark: The lower limit shall apply at the transition frequency.
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TEST EQUIPMENT CCS Hsinchu Lab. Radiated Electromagnetic Disturbance / Lighting Test Site
Name of Equipment Manufacturer Model Serial Number Calibration Due
Triple-Loop Antenna Rohde & Schwarz HM 020 841965/003 SEP. 01, 2011
EMI Test Receiver Rohde & Schwarz ESCS 30 835418/008 OCT. 24, 2011
Pulse Limit Rohde & Schwarz ESH3-Z2 100117 SEP. 17, 2011
Bnc Cable MIYAZAKI 5D-FB 01 SEP. 06, 2011
Control Unit Rohde & Schwarz BG 020 841480/001 N.C.R
Remark: 1. Each piece of equipment is scheduled for calibration once a year.
2. N.C.R = No Calibration Request.
CCS Tainan Lab. Radiated Electromagnetic Disturbance / OATS 7
Open Area Test Site # 7
Name of Equipment Manufacturer Model Serial Number Calibration Due
TEST RECEIVER Rohde & Schwarz ESCS30 100343 DEC. 06, 2011
TYPE N COAXIAL CABLE SUHNER RG_214_U/2X 7 NOV. 24, 2011
BILOG ANTENNA Sunol sciences JB1 A013105-1 OCT. 07, 2011
Test Software EMI e-3 / AUDIX (5.04211c)
Remark: 1. Each piece of equipment is scheduled for calibration once a year. 2. N.C.R = No Calibration Request.
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TEST SETUP
The diagram below shows the test setup that is utilized to make the measurements for emission from 9 kHz to 30 MHz.
The diagram below shows the test setup that is utilized to make the measurements for emission from below 1GHz.
EMI Receiver
10m
1~4m
1mTurntable
EUT
0.8m
Antenna tower
Reference ground plane
Bi-log antenna
Pre-amp
Coaxial Cable
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TEST PROCEDURE The magnetic component is measured by means of a triple-loop antenna. The EUT is
placed in the centre of the antenna. The induced current in the loop antenna is measured
by means of a current probe (1V/A) and the measuring receiver.
Radiated emissions were investigated over the frequency range from 0.009 MHz to 30
MHz using a receiver, where the resolution bandwidth of the receiver is set as 200 Hz at
frequency range from 0.009 MHz to 0.15 MHz and set as 9 kHz at frequency range from
0.15 MHz to 30MHz.
The EUT were placed on a turn table top 0.8 meter above ground. The table was rotated
360 degrees to determine the position of the maximum emission level. EUT is set 10
meters from the interference receiving antenna which is mounted on the top of a variable
height mast. The antenna height is varied between one meter and four meters above
ground to find the maximum emission level, both horizontal and vertical polarization of the
antenna is set on the measurement.
Radiated emissions were invested over the frequency range from 30 MHz to 300 MHz
using a receiver bandwidth of 120 kHz.
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TEST RESULTS
Below 30MHz Tested from CCS Hsinchu Lab.
Product Name DC/DC LED Driver Test By Bell Huang Model CLE-48-1.00D Test Date 2011/05/09
Test Mode Normal operating TEMP & Humidity 28°C, 48%
X Axis
Remark: 1. Correction Factor = cable loss 2. Margin value = Emission level – Limit value
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Product Name DC/DC LED Driver Test By Bell Huang Model CLE-48-1.00D Test Date 2011/05/09
Test Mode Normal operating TEMP & Humidity 28°C, 48%
Y Axis
Remark: 1. Correction Factor = cable loss 2. Margin value = Emission level – Limit value
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Product Name DC/DC LED Driver Test By Bell Huang Model CLE-48-1.00D Test Date 2011/05/09
Test Mode Normal operating TEMP & Humidity 28°C, 48%
Z Axis
Remark: 1. Correction Factor = cable loss 2. Margin value = Emission level – Limit value
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Above 30MHz Tested from CCS Tainan Lab.
Product Name DC/DC LED Driver Test By Taiyu Chu Model CLE-48-1.00D Test Date 2011/04/28
Test Mode Normal operating TEMP & Humidity 31°C, 60%
Horizontal
Remark: 1. Correction Factor = cable loss 2. Margin value = Emission level – Limit value
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Product Name DC/DC LED Driver Test By Taiyu Chu Model CLE-48-1.00D Test Date 2011/04/28
Test Mode Normal operating TEMP & Humidity 31°C, 60%
Vertical
Remark: 1. Correction Factor = cable loss 2. Margin value = Emission level – Limit value
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8.2 DISTURBANCE VOLTAGES
LIMITS
(1) Disturbance voltage limits at mains terminals Conducted limit (dBμV)a
Frequency of emission Quasi-peak Average
9 kHz to 50 kHz 110 --
50 kHz to 150 kHz 90 to 80 b -
150 kHz to 0.5 MHz 66 to 56 b 56 to 46 b 0.5 MHz to 5.0 MHz 56 c 46 c 5.0 MHz to 30.0 MHz 60 50
Remark: (a) At the transition frequency, the lower limit applies. (b) Decreasing linearly with the logarithm of the frequency. (c) For electrodeless lamps and luminaries, the limit in the frequency range of 2.51 MHz to
3.0 MHz is 73 dB(μV) quasi-peak and 63 dB(μV) average.
(2) Disturbance voltage limits at load terminals
limit (dBμV) a Frequency of emission (MHz) Quasi-peak Average
0.15 to 0.50 80 70 0.50 to 30 74 64
Remark: (a) At the transition frequency, the lower limit applies.
(3) Disturbance voltage limits at control terminals
limit (dBμV) Frequency of emission (MHz) Quasi-peak Average
0.15 to 0.50 84 to 74 74 to 64 0.50 to 30 74 64
Remark: 1. The limits decrease linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz.
2. The voltage disturbance limits are derived for use with an impedance stabilization network (ISN) which presents a common mode (asymmetric mode) impedance of 150Ω to the control terminal.
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TEST EQUIPMENT
Conducted Emission room #1 Name of
Equipment Manufacturer Model Serial Number Calibration Due
L.I.S.N. SCHWARZBECKNNLK
8121 8121-308 MAR. 09, 2012
TEST RECEIVER Rohde & Schwarz ESCS 30 100348 JUL. 13, 2011
BNC COAXIAL CABLE CCS BNC50 11 OCT. 04, 2011
Test S/W e-3 (5.04211c)
R&S (2.27)
Remark: 1. Each piece of equipment is scheduled for calibration once a year. 2. N.C.R = No Calibration Request.
TEST SETUP
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TEST PROCEDURE The test procedure is performed in a 4m × 3m × 2.4m (L×W×H) shielded room.
The EUT along with its peripherals were placed on a 1.0m (W) × 1.5m (L) and 0.8m in
height wooden table and the EUT was adjusted to maintain a 0.4 meter space from a
vertical reference plane.
The EUT was connected to power mains through a line impedance stabilization network
(LISN) which provides 50 ohm coupling impedance for measuring instrument and the
chassis ground was bounded to the horizontal ground plane of shielded room. All
peripherals were connected to the second LISN and the chassis ground also bounded to
the horizontal ground plane of shielded room.
The EUT is located so that the distance between the boundary of the EUT and the closest
surface of the LISN is 0.8 m. Where a mains flexible cord is provided by the manufacturer
shall be 1 m long, or if in excess of 1 m, the excess cable is folded back and forth as far as
possible so as to form a bundle not exceeding 0.4 m in length.
Ground connections shall be connected to the reference ground point of the network and,
where not otherwise provided or specified by the manufacturer, shall be 1 m long and run
parallel to the mains connection at a distance of not more than 0.1 m.
Conducted emission were investigated over the frequency range from 0.009 MHz to 30
MHz using a receiver, where the resolution bandwidth of the receiver is set as 200 Hz at
frequency range from 0.009 MHz to 0.15 MHz and set as 9 kHz at frequency range from
0.15 MHz to 30 MHz.
TEST RESULTS
This EUT do not connect to AC Source directly. Not applicability for this test.※
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8.3 HARMONIC CURRENT EMISSION
LIMITS
(1) Limits For Class A Equipment Disturbance Voltage Limits At Mains Terminals
Harmonic Order (n)
Maximum Permissible Harmonic Current
(A) Odd Harmonics
3 2.30 5 1.14 7 0.77 9 0.40
11 0.33 13 0.21
15 N 39≦ ≦ 0.15*15/N Even Harmonics
2 1.08 4 0.43 6 0.30
8 ≦ n ≦ 40 0.23*8/n
(2) Limits for Class B equipment
For Class B equipment, the harmonic of the input current shall not exceed the
maximum permissible values given in table that is the limit of Class A multiplied by a
factor of 1.5.
(3) Limits For Class C Equipment
Harmonic order (n)
Maximum permissible harmonic currentexpressed as a percentage of the input
current at fundamental frequency (%)
Odd Harmonics 2 2 3 30*λ* 5 10 7 7 9 5
11 ≦ n ≦ 39 3 ( odd harmonics only )
Remark: *λ is the circuit power factor
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(4) Limits For Class D Equipment
Harmonic order (n)
Maximum permissible harmonic current per watt
(mA/W)
Maximum permissible Harmonic current
(A) 3 3.4 2.30 5 1.9 1.14 7 1.0 0.77 9 0.5 0.40 11 0.35 0.33
13 ≦ n ≦ 39 3.85/n See Table 1 ( odd harmonics only )
Remark: *λ is the circuit power factor TEST EQUIPMENT
Power Harmonic & Voltage Fluctuation/Flicker Measurement (EN 61000-3-2&-3-3)
Name of Equipment Manufacturer Model Serial Number Calibration Due
Harmonics Analyzer TTI HA1600 198202 DEC. 29, 2011
Test S/W H/F HA 1600 PC LINK Field Probe
Remark: Each piece of equipment is scheduled for calibration once a year.
TEST SETUP
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TEST SETUP The EUT was placed on the top of a wooden table 0.8 meters above the ground and
operated to produce the maximum harmonic components under normal operating
conditions for each successive harmonic component in turn.
The classification of EUT is according to section 5 of EN 61000-3-2.
The EUT is classified as follows:
Class A: Balanced three-phase equipment, Household appliances excluding equipment as
Class D, Tools excluding portable tools, Dimmers for incandescent lamps, audio
equipment, equipment not specified in one of the three other classes.
Class B: Portable tools; Arc welding equipment which is not professional equipment.
Class C: Lighting equipment.
Class D: Equipment having a specified power less than or equal to 600 W of the following
types: Personal computers and personal computer monitors and television receivers.
The correspondent test program of test instrument to measure the current harmonics
emanated from EUT is chosen. The measure time shall be not less than the time
necessary for the EUT to be exercised.
TEST RESULTS
This EUT do not connect to AC Source directly. Not applicability for this test.※
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8.4 VOLTAGE FLUCTUATION AND FLICKER LIMITS
Test item Limit Remark Pst 1.0 Pst means short-term flicker indicator. Plt 0.65 Plt means long-term flicker indicator.
Tdt (ms) 500 Tdt means maximum time that dt exceeds 3.3 %. dmax (%) 4% dmax means maximum relative voltage change.
dc (%) 3.3% dc means relative steady-state voltage change
TEST EQUIPMENT
Name of Equipment Manufacturer Model Serial Number Calibration Due
Harmonics Analyzer TTI HA1600 198202 DEC. 29, 2011
Remark: Each piece of equipment is scheduled for calibration once a year. TEST SETUP
TEST SETUP The EUT was placed on the top of a wooden table 0.8 meters above the ground and operated to produce the most unfavorable sequence of voltage changes under normal operating conditions. During the flick measurement, the measure time shall include that part of whole operation cycle in which the EUT produce the most unfavorable sequence of voltage changes. The observation period for short-term flicker indicator is 10 minutes and the observation period for long-term flicker indicator is 2 hours.
TEST RESULTS ※ This EUT do not connect to AC Source directly. Not applicability for this test.
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9. IMMUNITY TEST
PERFORMANCE CRITERIA DESCRIPTION
Criterion A During the test no change of the luminous intensity shall be observed and the regulating control, if any, shall operate during the test as intended.
Criterion B
During the test the luminous intensity may change to any value. After the test the luminous intensity shall be restored its initial value within 1 min. Regulating controls need not function during the test, but after the test the mode of the control shall be the same as before the test provided that during the test no mode changing commands were given.
Criterion C
During and after the test any change of the luminous intensity is allowed and the lamp(s) may be extinguished. After the test, within 30 min, all functions shall return to normal if necessary by temporary interruption of the mains supply and/or operating the regulating control. Additional requirement for lighting equipment incorporating a starting device: After the test the lighting equipment is switched off. After half an hour it is switched on again. The lighting equipment shall start and operate as intended.
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9.1 ELECTROSTATIC DISCHARGE (ESD)
TEST SPECIFICATION
Product Standard EN 61547:1995+A1:2000
Basic Standard IEC 61000-4-2:2008 Discharge Impedance 330 ohm / 150 pF Discharge Voltage Air Discharge: 2, 4, 8 kV (Direct) Polarity Positive & Negative
Number of Discharge Min. 10 times at single test point for each negative and positive polarity
Discharge Mode Single Discharge 1 second minimum
TEST EQUIPMENT
ESD Test Site (IEC/EN 61000-4-2)
Name of Equipment Manufacturer Model Serial Number Calibration Due
ESD Simulator NoiseKen ESS-2002 ESS04Z3762 OCT. 10, 2011
Remark: Each piece of equipment is scheduled for calibration once a year.
TEST SETUP
Reference No.: 91209406-E Report No.:T110407401-E
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TEST SETUP The basic test procedure was in accordance with IEC 61000-4-2 The EUT was located 0.1 m minimum from all side of the HCP (dimensions 1.6m x 0.8m). The support units were located another table 30 cm away from the EUT, but direct support unit was/were located at same location as EUT on the HCP and keep at a distance of 10 cm with EUT. The time interval between two successive single discharges was at least 1 second. Contact discharges were applied to the non-insulating coating, with the pointed tip of the generator penetrating the coating and contacting the conducting substrate. Air discharges were applied with the round discharge tip of the discharge electrode approaching the EUT as fast as possible (without causing mechanical damage) to touch the EUT. After each discharge, the ESD generator was removed from the EUT and re-triggered for a new single discharge. The test was repeated until all discharges were complete. At least ten single discharges (in the most sensitive polarity) were applied at the front edge of each HCP opposite the center point of each unit of the EUT and 0.1 meters from the front of the EUT. The long axis of the discharge electrode was in the plane of the HCP and perpendicular to its front edge during the discharge. At least ten single discharges (in the most sensitive polarity) were applied to the center of one vertical edge of the Vertical Coupling Plane (VCP) in sufficiently different positions that the four faces of the EUT were completely illuminated. The VCP (dimensions 0.5m x 0.5m) was placed vertically to and 0.1 meters from the EUT.
Reference No.: 91209406-E Report No.:T110407401-E
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TEST RESULTS
Tested from CCS Tainan Lab. Temperature 24 oC Humidity 35 % RH Pressure 1028 mbar Tested By Vision Chang Required Passing Performance Criterion B
Air Discharge Test Levels Results
Test Points ± 2 kV ± 4 kV ± 8 kV Pass Fail Performance Criterion
Front A B C Back A B C Left A B C Right A B C Top A B C Bottom A B C
Contact Discharge Test Levels Results
Test Points ± 2 kV ± 4 kV ± 6 kV Pass Fail Performance Criterion
Front A B C Back A B C Left A B C Right A B C Top A B C Bottom A B C Please refer to ESD test photo on next page for detail discharge point
Discharge To Horizontal Coupling Plane Test Levels Results
Side of EUT ± 2 kV ± 4 kV ±6 kV Pass Fail Performance
Criterion Front A B C Back A B C Left A B C Right A B C
Discharge To Vertical Coupling Plane Test Levels Results
Side of EUT ± 2 kV ± 4 kV ± 6 kV Pass Fail Performance
Criterion Front A B C Back A B C Left A B C Right A B C
Reference No.: 91209406-E Report No.:T110407401-E
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THE TESTED POINTS OF EUT
※ A:Air Discharge,
Reference No.: 91209406-E Report No.:T110407401-E
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9.2 RADIATED SUSCEPTIBILITY (RS)
TEST SPECIFICATION
Product Standard EN 61547:1995+A1:2000
Basic Standard IEC 61000-4-3:2006+A1: 2007 Frequency Range 80 MHz ~1000 MHz Field Strength 3 V/m Modulation 1kHz Sine Wave, 80%, AM Modulation Frequency Step 1 % of preceding frequency value Polarity of Antenna Horizontal and Vertical Test Distance 3 m Antenna Height 1.5m
TEST EQUIPMENT
Radiated Electromagnetic Field Immunity Test Site (IEC/EN 61000-4-3)
Name of Equipment Manufacturer Model Serial Number Calibration Due
Computer SYNNEX BTO -LMIW300 - GB A41202-0031 N.C.R.
LCD Monitor Acer AL1715sm ETL130719944302366RH01 N.C.R.
Keyboard SYNNEX 5211A G4430091266 N.C.R. Amplifier
Freq. Range :80MHz~1GHz
AR 150W1000M3 310037 N.C.R.
Amplifier Freq.
Range :0.8MHz~3GHzAR 60S1G3M3 310102 N.C.R.
Digital SIGNAL GENERATOR HP ESG-D3000A US36260655 DEC. 27, 2011
RF Power Meter BOONTON 4232A-01-02 122202 DEC. 28, 2011
Log – Periodic Antenna AR AT5080 309817 N.C.R. RF Communications
test set HP 8920A 3412A04298 DEC. 28, 2011
Test S/W RS SW1005 R1_4
Remark: 1. Each piece of equipment is scheduled for calibration once a year.
2.N.C.R = No Calibration Request.
Reference No.: 91209406-E Report No.:T110407401-E
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TEST SETUP
Probe
Camera
EUTSYSTEM
PowerAmplifer
SignalGenerator Data Processing
/Interface Unit
Monitor
ANECHOIC/SHIELDED ROOM 0.8m
3.0 m
ANTENNA
TEST SETUP The test procedure was in accordance with IEC 61000-4-3 The testing was performed in a fully anechoic chamber. The transmit antenna was located at a distance of 3 meters from the EUT. The frequency range is swept from 80 MHz to 1000 MHz, with the signal 80% amplitude modulated with a 1kHz sine-wave. The rate of sweep did not exceed 1.5 x 10 -3 decade/s, where the frequency range is swept incrementally, the step size was 1% of preceding frequency value. The dwell time at each frequency shall be not less than the time necessary for the EUT to be able to respond. The test was performed with the EUT exposed to both vertically and horizontally polarized fields on each of the four sides.
Reference No.: 91209406-E Report No.:T110407401-E
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TEST RESULTS
Tested from CCS Tainan Lab.
Temperature 24oC Humidity 35% RH Pressure 1028mbar Tested By Vision Chang Dwell Time 3 sec. Required Passing Performance Criterion A
Frequency (MHz) Polarity Azimuth Field Strength
(V/m) Result
80 ~ 1000 V&H 0 3 A PASS
80 ~ 1000 V&H 90 3 A PASS
80 ~ 1000 V&H 180 3 A PASS
80 ~ 1000 V&H 270 3 A PASS
Reference No.: 91209406-E Report No.:T110407401-E
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9.3 ELECTRICAL FAST TRANSIENT/BURST (EFT)
TEST SPECIFICATION
Product Standard EN 61547:1995+A1:2000
Basic Standard IEC 61000-4-4:2004 Test Voltage DC Power Port: 0.5kV Polarity Positive & Negative Impulse Frequency 5 kHz Impulse Wave-shape 5/50 ns Burst Duration 15 ms Burst Period 300 ms Test Duration Not less than 2 min.
TEST EQUIPMENT
Fast Transients/Burst Test Site (IEC/EN 61000-4-4)
Name of Equipment Manufacturer Model Serial Number Calibration Due
Computer IBM M/T 8183 - ICV 99BG137 N.C.R.
VGA Monitor Acer 1555 917160230584200572P5C431 N.C.R.
Keyboard HP KB - 0133 B69360MGAPEOK5 N.C.R.
EMC Pro IMMUNITY TEST SYSTEM KeyTek EMCpro 0312231 JAN. 13, 2012
Test S/W CE Ware 3.00b
Remark: 1. Each piece of equipment is scheduled for calibration once a year.
2. N.C.R = No Calibration Request.
Reference No.: 91209406-E Report No.:T110407401-E
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TEST SETUP
TEST SETUP The test procedure was in accordance with IEC 61000-4-4 The EUT is placed on a table that is 0.8 meter height. A ground reference plane is placed on the table, and uses a 0.1 m insulation between the EUT and ground reference plane. The minimum area of the ground reference plane is 1 m *1 m, and 0.65 mm thick min, and projected beyond the EUT by at least 0.1 m on all sides. Test on I/O and communication ports: The EFT/B interference signal is through coupling clamp device couples to the signal and control lines of the EUT with burst noise. Test on power supply ports: The EUT is connected to the power mains through a coupling device that directly couples the EFT/B interference signal. The length of the signal and power lines between the coupling device and the EUT is 0.5 m. Fast transient are carried out during 2 min with a positive polarity and during 2 min with negative polarity.
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TEST RESULTS Tested from CCS Tainan Lab.
Temperature 24 oC Humidity 35% RH Pressure 1028 mbar Tested By Vision Chang Required Passing Performance Criterion B POWER
Test Point Polarity Test Level (kV)
Performance Criterion
L +/- 0.5kV A B C
N +/- 0.5kV A B C
L+ N +/- 0.5kV A B C
SIGNAL
Test Point Polarity Test Level(kV)
Performance Criterion Observation Result
N/A
Reference No.: 91209406-E Report No.:T110407401-E
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9.4 SURGE
TEST SPECIFICATION
Product Standard EN 61547:1995+A1:2000
Basic Standard IEC 61000-4-5:2005
Wave-Shape Combination Wave 1.2/50 us Open Circuit Voltage 8/20 us Short Circuit Current
Test Voltage
AC Power Port Self-ballasted lamps and semi-luminaires ~ line to line: 0.5kV,
line to ground: 1kV Luminaires and independent auxiliaries (Input Power 25W)≦
~ line to line: 0.5kV, line to ground: 1kV
Luminaires and independent auxiliaries (Input Power 25W)≧
~ line to line: 1kV, line to ground: 2kV
Surge Input/Output: AC Power Port: L-N / L-PE / N-PE Generator Source Impedance
2 ohm between networks 12 ohm between network and ground
Polarity Positive/Negative Phase Angle 0 / 90 / 180 / 270 Pulse Repetition Rate 1 time / min. (maximum) Number of Tests 5 positive and 5 negative at selected points
TEST EQUIPMENT Surge Immunity Test Site (IEC/EN EN 61000-4-5)
Name of Equipment Manufacturer Model Serial Number Calibration Due
Computer IBM M/T 8183 - ICV 99BG137 N.C.R.
VGA Monitor Acer 1555 917160230584200572P5C431 N.C.R.
Keyboard HP KB - 0133 B69360MGAPEOK5 N.C.R.
EMC Pro IMMUNITY TEST SYSTEM KeyTek EMCpro 0312231 JAN. 13, 2012
Test S/W CE Ware 3.00b
Remark: 1. Each piece of equipment is scheduled for calibration once a year. 2.N.C.R = No Calibration Request.
Reference No.: 91209406-E Report No.:T110407401-E
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TEST SETUP
TEST SETUP The test procedure was in accordance with IEC 61000-4-5
The EUT and its load are placed on a table that is 0.8 meter above a ground reference
plane. The minimum area of the ground reference plane is 1 m *1 m, and 0.65 mm thick
min, and projected beyond the EUT by at least 0.1 m on all sides. The length of power
cord between the coupling device and the EUT shall be 2 m or less.
Test on Input AC Power ports: The EUT is connected to the power mains through a
coupling device that directly couples the Surge interference signal.
TEST RESULTS Tested from CCS Tainan Lab.
This EUT do not connect to AC Source directly. Not applicability for this test.※
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9.5 INJECTED CURRENTS (CS)
TEST SPECIFICATION
Product Standard EN 61547:1995+A1:2000
Basic Standard IEC 61000-4-6:2008 Frequency Range 0.15 MHz ~ 80 MHz Voltage Level 3 Vrms Modulation 1kHz Sine Wave, 80%, AM Modulation Frequency Step 1 % of preceding frequency value Dwell Time 3 seconds Coupled cable Power Mains, Unshielded
Coupling device CDN-M2 (2 wires) / CDN-M3 (3 wires) CDN-T2/CDN-T4/EM Clamp (signal and control lines)
TEST EQUIPMENT
CS Test Site (IEC/EN 61000-4-6)
Name of Equipment Manufacturer Model Serial Number Calibration Due
Computer HP d330 uT SGH3480LTH N.C.R.
VGA Monitor NEC JC-1572VMA 6600645RA N.C.R.
Keyboard IBM KB - 8923 1021424 N.C.R.
CS Frankonia EMVMess-System
Gmbh FRANKONIA CIT-10/75 102C3220 SEP. 30, 2011
FCC Coupling Decoupling Network
Freq. range : 150KHz~230MHz
FRANKONIA CDN M2+M3 A3011095 MAR. 09, 2012
FCC EM Injection Clamp ------------- F-203I-23mm 449 DEC. 02, 2011
Test S/W CS-EN61000-4-6
Remark: 1. Each piece of equipment is scheduled for calibration once a year. 2. N.C.R = No Calibration Request.
Reference No.: 91209406-E Report No.:T110407401-E
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TEST SETUP
Reference No.: 91209406-E Report No.:T110407401-E
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TEST SETUP The test procedure was in accordance with IEC 61000-4-6
The EUT is placed on an insulating support of 0.1 m height above a ground reference
plane. All cables exiting the EUT shall be supported at a height at least 30 mm above the
ground reference plane.
Test on signal ports and telecommunication ports:
The disturbance signal is through a coupling and decoupling networks (CDN) or EM-clamp
device couples to the signal and telecommunication lines of the EUT.
Test on DC and AC ports: The EUT is connected to the power mains through a coupling
and decoupling networks for power supply lines. And directly couples the disturbances
signal into EUT.
TEST RESULTS Tested from CCS Tainan Lab.
Temperature 24 oC Humidity 35% RH Pressure 1028mbar Tested By Vision Chang Required Passing Performance Criterion A POWER
Frequency Band (MHz)
Field Strength (Vrms)
Cable Injection Method
Performance Criterion
0.15 ~ 80 3 DC Power
CDN- M2 M3 A B C
SIGNAL Frequency
Band (MHz)
Field Strength (Vrms)
Cable Injection Method
Performance Criterion Observation Result
N/A
Reference No.: 91209406-E Report No.:T110407401-E
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9.6 POWER FREQUENCY MAGNETIC FIELDS (PFMF)
TEST SPECIFICATION
Product Standard EN 61547:1995+A1:2000
Basic Standard IEC 61000-4-8:1993 + A1:2000 Frequency Range 50/60Hz Field Strength 3 A/m Observation Time 1 minute Inductance Coil Rectangular type, 1mx1m
TEST EQUIPMENT
Power Frequency Magnetic Field Immunity Test (IEC/EN 61000-4-8)
Name of Equipment Manufacturer Model Serial Number Calibration Due
Magnetic field generator Schaffner MFO 6501 154 JAN 20, 2012
Remark: Each piece of equipment is scheduled for calibration once a year.
TEST SETUP
Reference No.: 91209406-E Report No.:T110407401-E
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TEST SETUP The test procedure was in accordance with IEC 61000-4-8
The equipment was configured and connected to satisfy its functional requirements. It
shall be placed on the GRP with the interposition of a 0.1m-thick insulating support.
The cables supplied or recommended by the equipment manufacturer shall be used. 1
meter of all cables used shall be exposed to the magnetic field.
The equipment shall be subjected to the test magnetic field by using the induction coil of
standard dimension (1 m x 1 m). The induction coil shall then be rotated by 90 degrees in
order to expose the EUT to the test field with different orientations.
TEST RESULTS Tested from CCS Tainan Lab.
Power Frequency 50 Hz
Direction Field Strength A/m
Performance Criterion
X axis 3 A B C
Y axis 3 A B C
Z axis 3 A B C
Temperature 24 oC Humidity 35% RH Pressure 1028 mbar Tested By Vision Chang Required Passing Performance Criterion A
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9.7 VOLTAGE DIPS & VOLTAGE INTERRUPTIONS (DIP)
TEST SPECIFICATION
Product Standard EN 61547:1995+A1:2000
Basic Standard IEC 61000-4-11:2004 Test duration time Minimum three test events in sequence Interval between event Minimum 10 seconds Angle 0~360 degree Step 45 degree
TEST EQUIPMENT
Voltage Dips/Short Interruption and Voltage Variation Immunity Test Site (IEC/EN
61000-4-11) Name of Equipment Manufacturer Model Serial Number Calibration Due
Computer IBM M/T 8183 - ICV 99BG137 N.C.R.
VGA Monitor Acer 1555 917160230584200572P5C431 N.C.R.
Keyboard HP KB - 0133 B69360MGAPEOK5 N.C.R.
EMC Pro IMMUNITY TEST SYSTEM KeyTek EMCpro 0312231 JAN. 13, 2012
Test S/W CE Ware 3.00b
Remark: 1. Each piece of equipment is scheduled for calibration once a year.
2. N.C.R = No Calibration Request.
TEST SETUP
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TEST SETUP The test procedure was in accordance with IEC 61000-4-11
The EUT and its load are placed on a table that is 0.8 meter above a ground reference
plane. The minimum area of the ground reference plane is 1 m *1 m, and 0.65 mm thick
min, and projected beyond the EUT by at least 0.1 m on all sides. The cables supplied or
recommended by the equipment manufacturer shall be used.
The EUT shall be tested for 30% voltage dip of supplied voltage and duration 10 periods,
for 100% voltage reduction of supplied voltage and duration 0.5 periods with a sequence
of three voltage reduction with intervals of 10 seconds.
Voltage phase shifting are shall occur at 0, 45, 90, 135, 180, 225, 270, 315 degrees.
TEST RESULTS Tested from CCS Tainan Lab.
This EUT do not connect to AC Source directly. Not applicability for this test.※
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APPENDIX SETUP PHOTOS
RADIATED ELECTROMAGNETIC DISTURBANCES SETUP Below 30MHz
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Above 30MHz
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ELECTROSTATIC DISCHARGE SETUP
RADIATED SUSCEPTIBILITY SETUP
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ELECTRICAL FAST TRANSIENT/BURST SETUP
INJECTED CURRENTS SETUP
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POWER FREQUENCY MAGNETIC FIELDS SETUP