12a031902e-c adavantech uno-4683 series emc test … · 2.1 induced disturbances 2 iec 61000-4-6...

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Report No.: 12A031902E-C Page 1 of 107 Interocean EMC Technology Corp. Test Report Test Report IEC 61850-3: 2002 IEC/TS 61000-6-5: 2001 (EMC Test) IEEE 1613: 2003 (Control Power Inputs and Insulation Test) ProductRackmount Computer Trade NameAdvantech Model NumberUNO-4683; UNO-4683XXXXXXXXXXXXXXXX; UNO-4673A; UNO-4673AXXXXXXXXXXXXXXXX (‘’X’’ may be any alphanumeric character, ‘’-‘’ or blank) Prepared for Advantech Co., Ltd NO. 1, Alley 20, Lane 26, Rueiguang Road, Neihu District, Taipei 11491, Taiwan, R. O. C TEL.+886 2 2218 4567 FAX.+886 2 2218 3650 Prepared by Interocean EMC Technology Corp. 244 No.5-2, Lin 1, Tin-Fu Tsun, Lin-Kou Hsiang, Taipei County, Taiwan, R.O.C. TEL.: +886 2 2600 6861 FAX.: +886 2 2600 6859 RemarkThe test report consists of 107 pages in total. It shall not be reproduced except in full, without the written approval of IETC. This document may be altered or revised by IETC only, and shall be noted in the revision section of the document. The test result in the report is only subjected to the test sample.

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Page 1: 12A031902E-C Adavantech UNO-4683 series EMC Test … · 2.1 Induced disturbances 2 IEC 61000-4-6 Meet Criterion A 2.7 Power frequency magnetic field 2 IEC 61000-4-8 Meet Criterion

Report No.: 12A031902E-C Page 1 of 107

Interocean EMC Technology Corp. Test Report

Test Report

IEC 61850-3: 2002 IEC/TS 61000-6-5: 2001

(EMC Test)

IEEE 1613: 2003 (Control Power Inputs and Insulation Test)

Product: Rackmount Computer

Trade Name: Advantech

Model Number: UNO-4683; UNO-4683XXXXXXXXXXXXXXXX; UNO-4673A; UNO-4673AXXXXXXXXXXXXXXXX (‘’X’’ may be any alphanumeric character, ‘’-‘’ or blank)

Prepared for

Advantech Co., Ltd NO. 1, Alley 20, Lane 26, Rueiguang Road, Neihu District, Taipei 11491,

Taiwan, R. O. C

TEL.: +886 2 2218 4567

FAX.: +886 2 2218 3650

Prepared by

Interocean EMC Technology Corp. 244 No.5-2, Lin 1, Tin-Fu Tsun, Lin-Kou Hsiang,

Taipei County, Taiwan, R.O.C. TEL.: +886 2 2600 6861 FAX.: +886 2 2600 6859

Remark: The test report consists of 107 pages in total. It shall not be reproduced except in full, without the written approval of IETC. This document may be altered or revised by IETC only, and shall be noted in the revision section of the document. The test result in the report is only subjected to the test sample.

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Report No.: 12A031902E-C Page 2 of 107

Interocean EMC Technology Corp. Test Report

Table of Contents 1 General Information 5 1.1 Description of Equipment Under Test 5 1.2 Model Type List 6 1.3 Summary of Test Results 7 1.4 Details of Tested Supporting System 9 1.5 Test Facility 11 1.6 Measurement Uncertainty 12 1.7 Measured Mode 13 1.8 Configuration of EUT Setup 13 1.9 Test Step of EUT 14 1.10 GENERAL PERFORMANCE CRITERIA 15

2 IEC 61850-3 & IEC/TS 61000-6-5 (Electromagnetic Compatibility (EMC)) 16 2.1 Induced disturbances (IEC 61000-4-6) 16 2.2 Surges (IEC 61000-4-5) 19 2.3 Oscillatory waves (IEC 61000-4-18) 23 2.4 Fast transients (IEC 61000-4-4) 26 2.5 Radiated electromagnetic disturbances (IEC 61000-4-3) 28 2.6 Test for immunity to conducted, common mode disturbances in the frequency range 0Hz to 150kHz (IEC 61000-4-16) 32 2.7 Power frequency magnetic field (IEC 61000-4-8) 36 2.8 Damped Oscillatory Magnetic Field Immunity (IEC 61000-4-10) 38 2.9 Conducted emission 40 Conducted emission (power supply lines) 40 Conducted emission (control lines) 50 2.10 Radiated emission (EN 55022A) 73 2.11 Ripple on DC input power port immunity (IEC 61000-4-17) 83 2.12 Voltage dips, short interruptions and voltage variations on d.c. input power port immunity (IEC 61000-4-29) 85 2.13 Electrostatic Discharge Immunity test (IEC 61000-4-2) 87 2.14 Voltage dips, short interruptions and voltage variations immunity tests (IEC 61000-4-11) 89

3 IEEE 1613 (Control Power Inputs) 91 3.1 DC rated control power inputs (IEEE C37.90) 91 3.2 Allowable AC component in dc control voltage supply (IEEE C37.90) 93 3.3 AC Rated Control Power Inputs (IEEE C37.90) 95

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4 IEEE 1613 (Insulation) 97 4.1 Dielectric strength (IEEE C37.90) 97 4.2 Impulse Voltage (IEEE C37.90) 99

5 Photographs of Test 101 5.1 Conducted Emission Measurement 101 5.2 Radiated Emission Measurement 102 5.3 Electrostatic Discharge Test Point 103

6 Photographs of EUT 104 6.1 Model No.: UNO-4683 104 6.2 Model No.: UNO-4673A 106

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Report No.: 12A031902E-C Page 4 of 107

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Statement of Compliance Applicant: Advantech Co., Ltd

Manufacturer: Advantech Co., Ltd

Product: Rackmount Computer

Model No.: UNO-4683; UNO-4683XXXXXXXXXXXXXXXX; UNO-4673A; UNO-4673AXXXXXXXXXXXXXXXX (‘’X’’ may be any alphanumeric character, ‘’-‘’ or blank)

Tested Power Supply: AC 230V, 50Hz; DC 110V

Date of Final Test: Apr. 03, 2012

Revision of Report: Rev. 01

Compliance Standards:

IEC 61850-3: 2002 for EMC Test IEEE 1613: 2003 for Power Inputs and Insulation Test IEC/TS 61000-6-5: 2001 for EMC immunity in substation environments

The measurement results in this test report were performed at Interocean EMC Technology Corp. The responsibility of measurement result is only subjected to the test sample. This report shows the EUT is technically compliance with the above official standards. This report shall not be partial reproduced without written approval by Interocean EMC Technology Corporation.

Report Issued: 2012/04/13

Project Engineer: Approved: Roy Chiang Benson Tsai

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Report No.: 12A031902E-C Page 5 of 107

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1 General Information

1.1 Description of Equipment Under Test Product : Rackmount Computer

Model Number : UNO-4683; UNO-4683XXXXXXXXXXXXXXXX; UNO-4673A; UNO-4673AXXXXXXXXXXXXXXXX (‘’X’’ may be any alphanumeric character, ‘’-‘’ or blank)

Applicant : Advantech Co., Ltd NO. 1, Alley 20, Lane 26, Rueiguang Road, Neihu District, Taipei 11491, Taiwan, R. O. C

Manufacturer : Advantech Co., Ltd NO. 1, Alley 20, Lane 26, Rueiguang Road, Neihu District, Taipei 11491, Taiwan, R. O. C

Power Supply : AC 230V; DC 110V

Date of Test : Mar. 21 ~ Apr. 03, 2012

Additional Description : 1.) The variations in models included in this report are as Section 1.2 Model Type List.

2.) The construction on variables contained in model number as below: Model No.: UNO-4683XXXXXXXXXXXXXXXX;

UNO-4673AXXXXXXXXXXXXXXXX ‘’X’’ may be any alphanumeric character, ‘’-‘’ or blank for marketing purpose and no impact safety related critical components and constructions.

3.) The Model Numbers “UNO-4683 and UNO-4673A” are representative selected in the test and included in this report.

4.) The difference for “UNO-4683 and UNO-4673A” are as follow: Model No. UNO-4683 UNO-4673A

Display DVI-I VGA Memory DDR3 4GB DDR2 2GB

CPU Core i7 620LE 2.0GHz

ATOM D510 1.66GHz

5.) For more detail specification about EUT, please refer to the user’s manual.

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1.2 Model Type List

Model No. Description

UNOP-1624D 4-port Iso. RS-232/422/485 and IRIG B card

UNOP-1628D 8-port Iso. RS-232/422/485

UNOP-1514C 4-port Fiber Optic LAN card

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1.3 Summary of Test Results

1.3.1 Test program according to IEC 61850-3 Communication networks and systems in substations-Part 3: General requirements

Report Clause Phenomenon

IEC 61850-3Reference Clause(s)

Reference standard Result

2 Electromagnetic Compatibility (EMC)

2.1 Induced disturbances 5.7.1.1 IEC 61000-4-6 Meet Criterion A

2.2 Surges 5.7.1.2 IEC 61000-4-5 Meet Criterion A

2.3 Oscillatory waves 5.7.1.3 IEC 61000-4-18 Meet Criterion A

2.4 Fast transients 5.7.1.4 IEC 61000-4-4 Meet Criterion A

2.5 Radiated electromagnetic disturbances 5.7.2 IEC 61000-4-3 Meet Criterion A

2.6

Test for immunity to conducted, common mode disturbances in the frequency range 0Hz to 150kHz

5.7.3 IEC 61000-4-16 Meet Criterion A

2.7 Power frequency magnetic field 5.7.3 IEC 61000-4-8 Meet Criterion A

2.8 Damped Oscillatory Magnetic Field Immunity 5.7.3 IEC 61000-4-10 Meet Criterion A

Conducted emission (power supply lines) 2.9 Conducted emission (control lines)

5.8 EN 55022A Under Limit

2.10 Radiated emission 5.8 EN 55022A Under Limit

2.11 Ripple on DC input power port immunity 6 IEC 61000-4-17 Meet Criterion A

2.12 Voltage dips, short interruptions and voltage variations on d.c. input power port immunity

6 IEC 61000-4-29 Meet Criterion A

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1.3.2 Test program according to IEC/TS 61000-6-5 Electromagnetic compatibility (EMC)-Part 6-5: Generic standards – Immunity for power station and substation environments

Report Clause Phenomenon

IEC/TS 61000-6-5Reference Clause(s)

Reference standard Result

2.13 Electrostatic Discharge Immunity test 2 IEC 61000-4-2 Meet Criterion A

2.5 Radiated electromagnetic disturbances 2 IEC 61000-4-3 Meet Criterion A

2.4 Fast transient 2 IEC 61000-4-4 Meet Criterion A

2.2 Surges 2 IEC 61000-4-5 Meet Criterion A

2.1 Induced disturbances 2 IEC 61000-4-6 Meet Criterion A

2.7 Power frequency magnetic field 2 IEC 61000-4-8 Meet Criterion A

2.14 Voltage dips, short interruptions and voltage variations immunity tests

2 IEC 61000-4-11 Meet Criterion B

2.6

Test for immunity to conducted, common mode disturbances in the frequency range 0 Hz to 150kHz

2 IEC 61000-4-16 Meet Criterion A

1.3.3 Test program according to IEEE 1613 IEEE Standard Environmental and Testing Requirements for Communications Networking Devices in Electric Power Substations

Report Clause

Phenomenon IEEE 1613 Reference Clause(s)

Reference standard Result

3 Control Power Inputs

3.1 DC rated control power inputs 5.1 IEEE C37.90 Meet Criterion A

3.2 Allowable AC component in DC control voltage supply 5.2 IEEE C37.90 Meet Criterion A

3.3 AC Rated Control Power Inputs 5.3 IEEE C37.90 Meet Criterion A

4 Insulation

4.1 Dielectric strength 6.2 IEEE C37.90 PASS

4.2 Impulse Voltage 6.3 IEEE C37.90 PASS

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1.4 Details of Tested Supporting System

1.4.1 Link PC PC25 Model Number : ASUS-BM5320 CPU Speed : Intel Core2 Duo E5200 EMC Compliance : BSMI R31018 Manufacturer : ASUS RAM : Anya 1G DDR2 800 Hard Disk Driver : Seagate ST32500310AS 250G Switching Power Supply : Detal GPS-300AB C 300W Power Cord : Non-shielded, Detachable, 1.8m, w/o core RJ45 Cable : Shielded, Detachable, 3.0m, w/o core PC30 Model Number : SGH017PFW0 CPU Speed Intel Core 2 Duo E5400 RAM : 2GB DDR3 1333MHz EMC Compliance : CE, TUV, NCC, BSMI: R33275 Hard Disk Driver : 250GB Serial ATA2 3.0Gb/s 7200rpm Manufacturer : HP Switching Power Supply : LiteOn, PS-4321-9HP, 320W Power Cord : Non-shielded, Detachable, 1.8m, w/o core RJ45 Cable : Shielded, Detachable, 3.0m, w/o core

1.4.2 Monitor

MT27 Model Number : CMV 92GH 19” Serial Number : 92GHAGCN9120262 EMC Compliance : FCC, CE, BSMI: R31374, UL, TUV Manufacturer : CHIMEI Power Cord : Non-shielded, Detachable, 1.8m, w/o core DVI Cable : Non-shielded, Detachable, 1.8m, with core D-Sub Cable : Non-shielded, Detachable, 1.8m, with core

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1.4.3 Keyboard KB18 Model Number : Y-SM48 Serial Number : SY506U67239 EMC Compliance : FCC DoC, CE, C-Tick, BSMI T51160, VCCI Manufacturer : LOGITECH Data Cable : Shielded, Un-detachable, 1.5m

1.4.4 Mouse

MS29 Model Number : M-SBF83 Serial Number : HCA51802202 EMC Compliance : UL, BSMI R41126 Manufacturer : Logitech Data Cable : Shielded, Un-detachable, 1.8m

1.4.5 HDD

HDD *5 USB Hard Disk Drive : Buffalo DriveStation USB HDD Storage Model Number : HX-1.0TU3.0 Serial Number : 45564800601155; 45564801002296;

45564801002487; 45564801001442; 45564801002685

EMC Compliance : CE, FCC Doc, IC, C-TECK, BSMI D33093 Manufacturer : Buffalo Data Cable : USB Cable: Shielded, Detachable, 1.6m, w/o core Hard Disk : BUFFALO 1T HD

1.4.6 Earphone

EAR06 Model Number : MIC-04 Serial Number : N/A Manufacturer : Shyaro Chi Enterprise Co., Ltd. Data Cable : Non-shielded, detachable, 1.8m

1.4.7 Test cable

RJ45 Cable *4 : Shielded, Detachable, 1.0m, w/o core Fiber Cable *4 : Non-shielded, Detachable, 3.0m, w/o core BNC Cable *1 : Shielded, Detachable, 3.0m, w/o core RS232 Cable *7 : Shielded, Detachable, 1.0m, w/o core Power Cord*1 Non-shielded, Detachable, 1.8m, w/o core

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1.5 Test Facility

Site Description : Conduction 2 OATS 2 EMS Site

Name of Firm : Interocean EMC Technology Corp.

Company web : http://www.ietc.com.tw Site 1, 2, 3 Location : No.5-2, Lin 1, Tin-Fu Tsun, Lin-Kou Hsiang,

Taipei County, Taiwan, R.O.C.

Site Filing : Federal Communication Commissions – USA Registration No.: 96399 (OATS 1 & 2) Registration No.: 518958 (OATS 3) Designation No.: TW1020

Voluntary Control Council for Interference by Information Technology Equipment (VCCI) – Japan Member No.: 1349 Registration No. (Conducted Room): C-1094 Registration No. (Conducted Room): T-1562 Registration No. (OATS 1): R-1040; G-274 Registration No. (OATS 2): R-1041

Industry Canada (IC) OUR FILE: 46405-4437 Submission: 145171 Registration No. (OATS 1): Site# 4437A-1

Registration No. (OATS 2): Site# 4437A-2 Registration No. (OATS 3): Site# 4437A-3

Site Accreditation : Bureau of Standards and Metrology and Inspection (BSMI) – Taiwan, R.O.C. Accreditation No.: SL2-IN-E-0026 for CNS13438 / CISPR22 SL2-R1-E-0026 for CNS13439 / CISPR13 SL2-R2-E-0026 for CNS13439 / CISPR13 SL2-A1-E-0026 for CNS13783-1 / CISPR14-1 SL2-L1-E-0026 for CNS 14115 / CISPR 15

Taiwan Accreditation Foundation (TAF) Accrditation No.: 1113

TüV NORD Certificate No: TNTW0801R-04

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1.6 Measurement Uncertainty

Item Value Conduction 1:

Power Line Conducted Emission (9kHz~30MHz) 2.4 dB Telecom. Port Conducted Emission / ISN-T4 (150kHz~30MHz) 2.6 dB Telecom. Port Conducted Emission / ISN-T8 (150kHz~30MHz) 2.6 dB Telecom. Port Conducted Emission / Current Probe (150kHz~30MHz) 2.8 dB Radiated Electromagnetic disturbance / Loop Antenna (9kHz~30MHz) 4.8 dB

Conduction 2: Power Line Conducted Emission (9kHz~30MHz) 2.4 dB Telecom. Port Conducted Emission / ISN-T4 (150kHz~30MHz) 2.6 dB Telecom. Port Conducted Emission / ISN-T8 (150kHz~30MHz) 2.6 dB Telecom. Port Conducted Emission / Current Probe (150kHz~30MHz) 2.8 dB Disturbance Power Emission (30MHz~300MHz) 3.1 dB Click disturbances Emission (150kHz~30MHz) 2.4 dB

OATS 1: Radiated Emission Test (30MHz~1GHz) 4.2 dB Radiated Emission Test (1GHz~6GHz) 3.2 dB

OATS 2: Radiated Emission Test (30MHz~1GHz) 4.2 dB Radiated Emission Test (1GHz~6GHz) 3.2 dB

OATS 3: Radiated Emission Test (30MHz~1GHz) 4.2 dB Radiated Emission Test (1GHz~6GHz) 3.2 dB

Conducted Immunity Room: Conducted Immunity Test / CDN-M2 1.3 dB Conducted Immunity Test / CDN-M3 1.3 dB Conducted Immunity Test / EM Clamp 3.2 dB

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1.7 Measured Mode

1.7.1 The test modes for preliminary test are as following: Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Mode 2: UNO-4683 (1280*800) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Mode 3: UNO-4683 (800*600) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Mode 5: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Mode 6: UNO-4673A (1280*800) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Mode 7: UNO-4673A (800*600) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Mode 8: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

1.7.2 After preliminary test, EUT was selected the worst-case for the final testing. The test modes are: For Emission tests: Mode 1, 4, 5 & 8 For the other tests: Mode 1 & 4

1.7.3 For Telecommunication Ports Conducted Emission Measurement, the test modes for final test are as following: Mode 1: UNO-4683 (1920*1080) (AC 230V) (GbE1: 1G/100M/10Mbps) Mode 2: UNO-4683 (1920*1080) (DC 110V) (GbE1: 1G/100M/10Mbps) Mode 3: UNO-4673A (1920*1080) (AC 230V) (GbE1: 1G/100M/10Mbps) Mode 4: UNO-4673A (1920*1080) (DC 110V) (GbE1: 1G/100M/10Mbps) Mode 5: UNO-4683 (1920*1080) (AC 230V) (LAN 1: 100M/10Mbps) Mode 6: UNO-4683 (1920*1080) (DC 110V) (LAN 1: 100M/10Mbps) Mode 7: UNO-4673A (1920*1080) (AC 230V) (LAN 1: 100M/10Mbps) Mode 8: UNO-4673A (1920*1080) (DC 110V) (LAN 1: 100M/10Mbps)

1.8 Configuration of EUT Setup

Connected to mains

RJ45 Cable

EUT Monitor

MouseKeyboard Earphone

HDD HDD HDD

HDD HDD

Link PC2Link PC1 RJ45 Cable

DIV or D-Sub Cable

RJ45 Cable *4

Fiber Cable *4 RS232

Cable *7

BNC Cable*1

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1.9 Test Step of EUT

1.9.1 Setup the EUT and peripheral as above.

1.9.2 Turn on the power of all equipment.

1.9.3 An executive program, EMC software under Windows OS, which generates a complete line of continuously repeating "H" pattern was used.

1.9.4 The program were executed as follows: a. The PC reads the test program from the hard disk drive and runs it. b. The PC sends "H" messages to the internal hard disk, and the hard disk reads and

writes the message. c. The PC sends "H" messages to the monitor, and the monitor displays "H" patterns on

the screen. d. The PC sends "H" messages to HDD, Keyboard and Mouse. e. Repeat the steps from b to d.

1.9.5 At the same time, the following programs were executed: -Executed "Windows Media Player" to play music. -Executed programs "COM Examine.exe", "shortcut to IRIGTimer.exe", "BurnIntest.exe" and "EMC test.exe". -Fiber port, RS232 port and BNC port are all loop back. -One of the Link PC ping GbE1 port, the other ping LAN1 port.

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1.10 GENERAL PERFORMANCE CRITERIA

Criterion Description A The apparatus shall continue to operate as intended during and after the test. No

degradation of performance or loss of function is allowed below a performance level specified by the manufacturer, when the apparatus is used as intended. The performance level may be replaced by a permissible loss of performance. If the minimum performance level or the permissible performance loss is not specified by the manufacturer, either of these may be derived from the product description and documentation, and from what the user may reasonably expect from the apparatus if used as intended.

B The apparatus shall continue to operate as intended after the test. No degradation ofperformance or loss of function is allowed below a performance level specified by themanufacturer, when the apparatus is used as intended. The performance level may be replaced by a permissible loss of performance. During the test, degradation of performance is however allowed. No change of actual operating state or stored data is allowed. If the minimum performance level or the permissible performance loss is not specified by the manufacturer, either of these may be derived from the product description and documentation, and from what the user may reasonably expect from the apparatus if used as intended.

C Temporary loss of function is allowed, provided the function is self-recoverable or can be restored by the operation of the controls.

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2 IEC 61850-3 & IEC/TS 61000-6-5 (Electromagnetic Compatibility (EMC))

2.1 Induced disturbances (IEC 61000-4-6)

2.1.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Signal Generator R&S SMY02 829846/013 2012/08/25

Power Amplifier Frankonia CIT-10 162D1278 2013/02/09

Attenuator SCHAFFNER ATN6075 22300 2013/02/09

C.D.N FCC FCC-801-M3-25A 2045 2013/02/09

C.D.N SCHAFFNER M216 16394 2013/02/09

EM Injection Clamp SCHAFFNER KEMZ 801 17037 2013/02/09

Note: The above equipments are within the valid calibration period.

2.1.2 Block Diagram of Test Configuration For Power Ports.

For Signal/Telecommunication Ports.

50 Ω terminator

10 cm

Metal Ground Plane

30 cm

EUTMain Power

Signal Generator PC Controller

6dB Attenuator

Power Amplifier

AE C.D.N.

C.D.N.

50 Ω terminator

Cable>3m 30 cm

Metal Ground Plane

30 cm EUTC.D.N.

Main Power

Signal Generator PC Controller

6dB Attenuator

Power Amplifier

AE C.D.N.

EM InjectionClamp

50 Ω terminator

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2.1.3 Test Requirement

According to IEC 61850-3 clause 5.7.1.1;

According to IEC/TS 61000-6-5 table 2: Signal ports

table 3: A.C. input / output ports

table 4: D.C. input / output ports

table 5: Functional earth port

Frequency range: 0.15 to 80 MHz, Field strength: 10 V, 80% AM (1kHz) A.C. input ports. D.C. input ports. Signal ports. Functional earth port. Performance criterion: B

2.1.4 Configuration of Measurement (1.) The EUT was placed on a table of is 0.1 m height. In Semi-Anechoic chamber A Ground

reference plane was placed on the table and a 0.1meter insulating support was inserted between the EUT and Ground reference plane.

(2.) The EUT was connected to the power mains through a Coupling and Decoupling Networks (CDN).

(3.) The test was performed with the test generator connected to each of the coupling and decoupling devices in turn while the other non-excited RF input ports of the coupling devices were terminated by a 50 W terminator.

(4.) The frequency range was swept from 150kHz to 80MHz.using the signal levels established during the setting process, and without the disturbance signal 80% amplitude modulated with a 1 kHz sine wave, pausing to adjust the RF signal level or to switch coupling devices as necessary. The rate of sweep was less than 1.5×10-3 decades/s. And the step size of the frequency sweep was also less than 1% of the start and thereafter 1% of the preceding frequency value. The dwell time at each frequency was more than the time necessary for the EUT to be excited, and able to respond.

(5.) The EUT was fully excised during the testing and all the selected excise modes were fully interrogated for susceptibility.

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2.1.5 Test Result

PASS. Frequency range: 0.15 to 80 MHz, Field strength: 10 V, 80% AM (1kHz), Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

A.C. input port. Performance criterion: A B C

Signal port: LAN 1 Performance criterion: A B C

Signal port: GbE1 Performance criterion: A B C

Signal port: RS232 Performance criterion: A B C

Signal port: BNC Performance criterion: A B C

Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

D.C. input port. Performance criterion: A B C

Signal port: LAN 1 Performance criterion: A B C

Signal port: GbE1 Performance criterion: A B C

Signal port: RS232 Performance criterion: A B C

Signal port: BNC Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 21.6 ; Humidity: 42 %; Atm pres: 101 Kpa; Test Engineer: Roy

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2.2 Surges (IEC 61000-4-5)

2.2.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

EMC Pro Systems KeyTek EMC Pro 0003234 2013/03/28

Note: The above equipments are within the valid calibration period.

2.2.2 Block Diagram of Test Configuration

2.2.3 Test Requirement According to IEC 61850-3 clause 5.7.1.2; According to IEC/TS 61000-6-5 table 2: Signal ports table 3: A.C. input / output ports table 4: D.C. input / output ports According to IEC/TS 61000-6-5 table 1~5.

A.C. input ports: Line to Neutral: ±2kV (peak), 1.2/50 (8/20) Tr/Th us, impedance 2Ω+18μF Line (Neutral) to earth: ±4kV (peak), 1.2/50 (8/20) Tr/Th us, impedance 12Ω+9μF

D.C. input ports: Line to Neutral: ±2kV (peak), 1.2/50 (8/20) Tr/Th us,impedance 2Ω+18μF Line (Neutral) to earth: ±4kV (peak), 1.2/50 (8/20) Tr/Th us, impedance 12Ω+9μF

Signal ports: Line (Neutral) to earth: ±4kV (peak), 1.2/50 (8/20) Tr/Th us, impedance 42Ω+0.5μF

Performance criterion: B

2.2.4 Configuration of Measurement (1.) The EUT and support units were located on a wooden table 0.8m away from ground floor. (2.) The EUT was connected to the power mains through a coupling device that directly

couples the Surge interference signal. The surge noise was applied synchronized to the voltage phase at the zero crossing and the peak value of the AC voltage wave (positive and negative).

(3.) The surges were applied line to line and line(s) to earth. When testing line to earth the test voltage was applied successively between each of the lines and earth. Steps up to the test level specified increased the test voltage. All lower levels including the selected test level were tested. The polarity of each surge level included positive and negative test pulses.

Surge GeneratorEUT

Controller Computer

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2.2.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) A.C. input port

±0.5 kV (peak): Line to Neutral Performance criterion: A B C

±1.0 kV (peak): Line to Neutral Performance criterion: A B C

±2.0 kV (peak): Line to Neutral Performance criterion: A B C

±0.5 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

±1.0 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

±2.0 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

±4.0 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

Signal port: LAN 1 ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

Signal port: GbE1 ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

Temperature: 22.0 ; Humidity: 41 %; Atm pres: 101 Kpa; Test Engineer: Roy

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Signal port: RS232 ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

Signal port: BNC ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) D.C. input port

±0.5 kV (peak): Line to Neutral Performance criterion: A B C

±1.0 kV (peak): Line to Neutral Performance criterion: A B C

±2.0 kV (peak): Line to Neutral Performance criterion: A B C

±0.5 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

±1.0 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

±2.0 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

±4.0 kV (peak): Line (Neutral) to earth (ground) Performance criterion: A B C

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Signal port: LAN 1 ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

Signal port: GbE1 ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

Signal port: RS232 ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

Signal port: BNC ±0.5 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±1.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±2.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C ±4.0 kV (peak), 1.2/50 (8/20) Tr/Th us Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

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2.3 Oscillatory waves (IEC 61000-4-18)

2.3.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Oscillatory wave generator EMC PARTNER MIG-OS-OS1 819 2012/04/27

Note: The above equipments are within the valid calibration period.

2.3.2 Block Diagram of Test Configuration

2.3.3 Test Requirement According to IEC 61850-3 clause 5.7.1.3; According to IEC/TS 61000-6-5 table 2: Signal ports table 3: A.C. input / output ports table 4: D.C. input / output ports

Damped oscillatory wave (100KHz): 2.5kV common mode Damped oscillatory wave (100KHz): 1kV differential mode Damped oscillatory wave (1MHz): 2.5kV common mode Damped oscillatory wave (1MHz): 1kV differential mode Performance criterion: B

2.3.4 Configuration of Measurement (1.) The EUT were place on a wood table of 0.1m heights above GRP only. The size of ground

plane is greater than 1m×1m and project beyond the EUT by at least 0.1m on all sides. The ground plane is connected to the protective earth. The length of power cord between the coupling device and the EUT was at less long than 1 meter long.

(2.) The EUT was connected to the power mains through a coupling device that directly couples test generator interference signal. The noise was applied to the voltage phase at the peak value of the AC voltage wave (positive and negative).

(3.) The generator was applied line to line and line(s) to earth for main power. Oscillatory waves except data communications and signal circuits shall be tested in common mode.

Metal Ground

Grounding cable Metal Ground Plane

EUT Oscillatory wave generator

Insulation support

10cm

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2.3.5 Test Result

PASS. The minimum time interval between two successive tests: 60 sec.

Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) A.C. input port

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (100kHz): 1.0kV differential mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV differential mode Performance criterion: A B C

Signal port: LAN 1

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Signal port: GbE1

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Signal port: RS232

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Signal port: BNC

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 21.6 ; Humidity: 39 %; Atm pres: 101 Kpa; Test Engineer: Roy

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Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) D.C. input port

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (100kHz): 1.0kV differential mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV differential mode Performance criterion: A B C

Signal port: LAN 1

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Signal port: GbE1

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Signal port: RS232

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

Signal port: BNC

Damped oscillatory wave (100kHz): 2.5kV common mode Performance criterion: A B C

Damped oscillatory wave (1MHz): 2.5kV common mode Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no

degradation of performance or loss of function.

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2.4 Fast transients (IEC 61000-4-4)

2.4.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

EMC Pro System KeyTek EMC Pro 0003231 2012/04/14

Injection Clamp KeyTek PRO-CCL-C 0003198 N. C. R.

Note: The above equipments are within the valid calibration period.

2.4.2 Block Diagram of Test Configuration

For Power Ports.

For Signal/Telecommunication Ports.

2.4.3 Test Requirement According to IEC 61850-3 clause 5.7.1.4;

±2 kV A.C. input ports, repetition rate: 5kHz ±2 kV D.C. input ports, repetition rate: 5kHz ±2 kV Signal ports, repetition rate: 5kHz

According to IEC/TS 61000-6-5 table 2: Signal ports table 3: A.C. input / output ports table 4: D.C. input / output ports table 5: Functional earth port

±4 kV A.C. input ports, repetition rate: 5kHz ±4 kV D.C. input ports, repetition rate: 5kHz ±4 kV Signal ports, repetition rate: 2.5kHz ±4 kV Functional earth port, repetition rate: 5kHz

Performance criterion: B

Bounding

Injection Clamp

Grounding cable

Metal Ground Plane

Ground PlaneBurst Generator

Insulation support

10cm

EUT

To AE Comm. Line ≧ 3 m

Bounding

Grounding cable

Metal Ground Plane

Ground Plane

EUT

Burst Generator

Insulation support

10cm

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2.4.4 Configuration of Measurement (1.) The EUT and the auxiliary equipment were placed on a wooden table of 0.8 meters height.

The size of ground plane is greater than 1m×1m and project beyond the EUT by at least 0.1m on all sides. The ground plane is connected to the protective earth.

(2.) The EUT was connected to the power mains through a coupling device that directly couples the EFT interference signal. Each of the Line, Neutral and Protective Earth (PE) conductors was impressed with burst noise for 1 minute. Both the voltage polarities were applied for each test level. The length of the signal and power lines between the coupling device and the EUT shall be 0,5m ± 0,05m.

2.4.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) ±4 kV A.C. input port: Line + Neutral + PE Performance criterion: A B C ±4 kV Signal port: LAN 1

Performance criterion: A B C ±4 kV Signal port: GbE1

Performance criterion: A B C ±4 kV Signal port: RS232

Performance criterion: A B C ±4 kV Signal port: BNC

Performance criterion: A B C Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) ±4 kV D.C. input port: Line + Neutral + PE Performance criterion: A B C ±4 kV Signal port: LAN 1

Performance criterion: A B C ±4 kV Signal port: GbE1

Performance criterion: A B C ±4 kV Signal port: RS232

Performance criterion: A B C ±4 kV Signal port: BNC

Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 21.5 ; Humidity: 40 %; Atm pres: 101 Kpa; Test Engineer: Roy

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2.5 Radiated electromagnetic disturbances (IEC 61000-4-3)

2.5.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Signal Generator R&S SM300 101279 2012/10/18

RF Power Amplifier Frankonia FLG-200B 1038 2013/02/19

RF Power Amplifier Frankonia FLG-50C 1013 2013/02/19

Bilog Antenna Frankonia BTA-M 06012M 2013/02/19

Note: The above equipments are within the valid calibration period.

2.5.2 Block Diagram of Test Configuration

2.5.3 Test Requirement According to IEC 61850-3 clause 5.7.2;

According to IEC/TS 61000-6-5 table 1: Enclosure port

Frequency range: 80 to 3000 MHz, Field strength: 10 V/m, 80%AM (1kHz) Performance criterion: A According to special request by client. Frequency range: 80 to 1000 MHz, Field strength: 35 V/m (after modulation), 80%AM (1kHz) Performance criterion: A

80 cm

RF Cable

Chamber

EUT

3m

PC Controller

1 m

Signal Generator

RF Power Amplifier

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2.5.4 Configuration of Measurement (1.) Before testing, the intensity of the established field strength was checked by placing the

field sensor at a calibration grid point, and with the field generating antenna and cables in the same positions as used for the calibration, the forward and reverse power were measured. The forward power needed to give the calibrated field was evaluated.

(2.) The EUT was placed on a non-metallic table 0.8m above the reference ground plane (RGP) and was operated according to its specified operating mode.

(3.) Ferrite tiles/ absorbers were placed on the RGP between the EUT and the antenna to reduce the reflections from the RGP. The EUT and its cables were exposed for the electromagnetic field for 1.5m vertically and 1.5m horizontally.

(4.) The distance between antenna and EUT is 3 meter. (5.) During the test EUT performance has been monitoring by CCD camera.

2.5.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Antenna polarity: Vertical

Frequency range: 80 to 1000 MHz, Field strength: 35 V/m (after modulation), 80% AM (1kHz) EUT azimuth: 0°

Performance criterion: A B C EUT azimuth: 90°

Performance criterion: A B C EUT azimuth: 180°

Performance criterion: A B C EUT azimuth: 270°

Performance criterion: A B C Antenna polarity: Horizontal

Frequency range: 80 to 1000 MHz, Field strength: 35 V/m (after modulation), 80% AM (1kHz) EUT azimuth: 0°

Performance criterion: A B C EUT azimuth: 90°

Performance criterion: A B C EUT azimuth: 180°

Performance criterion: A B C EUT azimuth: 270°

Performance criterion: A B C

Temperature: 20.9 ; Humidity: 40 %; Atm pres: 101 Kpa; Test Engineer: Roy

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Antenna polarity: Vertical Frequency range: 1000 to 3000 MHz, Field strength: 10 V/m (after modulation), 80% AM (1kHz)

EUT azimuth: 0° Performance criterion: A B C

EUT azimuth: 90° Performance criterion: A B C

EUT azimuth: 180° Performance criterion: A B C

EUT azimuth: 270° Performance criterion: A B C

Antenna polarity: Horizontal Frequency range: 1000 to 3000 MHz, Field strength: 10 V/m (after modulation), 80% AM (1kHz)

EUT azimuth: 0° Performance criterion: A B C

EUT azimuth: 90° Performance criterion: A B C

EUT azimuth: 180° Performance criterion: A B C

EUT azimuth: 270° Performance criterion: A B C

Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Antenna polarity: Vertical

Frequency range: 80 to 1000 MHz, Field strength: 35 V/m (after modulation), 80% AM (1kHz) EUT azimuth: 0°

Performance criterion: A B C EUT azimuth: 90°

Performance criterion: A B C EUT azimuth: 180°

Performance criterion: A B C EUT azimuth: 270°

Performance criterion: A B C Antenna polarity: Horizontal

Frequency range: 80 to 1000 MHz, Field strength: 35 V/m (after modulation), 80% AM (1kHz) EUT azimuth: 0°

Performance criterion: A B C EUT azimuth: 90°

Performance criterion: A B C EUT azimuth: 180°

Performance criterion: A B C EUT azimuth: 270°

Performance criterion: A B C

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Antenna polarity: Vertical Frequency range: 1000 to 3000 MHz, Field strength: 10 V/m (after modulation), 80% AM (1kHz)

EUT azimuth: 0° Performance criterion: A B C

EUT azimuth: 90° Performance criterion: A B C

EUT azimuth: 180° Performance criterion: A B C

EUT azimuth: 270° Performance criterion: A B C

Antenna polarity: Horizontal Frequency range: 1000 to 3000 MHz, Field strength: 10 V/m (after modulation), 80% AM (1kHz)

EUT azimuth: 0° Performance criterion: A B C

EUT azimuth: 90° Performance criterion: A B C

EUT azimuth: 180° Performance criterion: A B C

EUT azimuth: 270° Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

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2.6 Test for immunity to conducted, common mode disturbances in the frequency range 0Hz to 150kHz (IEC 61000-4-16)

2.6.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Power Amplifier SCHAFFNER PA5840-75 581-0010 2012/11/29

Function Generator SCHAFFNER FG5620-750-0051-00 52 2012/11/29

Note: The above equipments are within the valid calibration period.

2.6.2 Block Diagram of Test Configuration

2.6.3 Test Requirement According to IEC 61850-3 clause 5.7.3; According to IEC/TS 61000-6-5 table 2: Signal ports table 4: D.C. input / output ports According to IEC 61000-4-16

30V r.m.s. continuous (Mains frequency 50Hz) 300V r.m.s. for 1 s.(Mains frequency 50Hz) Continuous disturbance: 30V to 3V r.m.s. (Mains frequency range 15Hz~150Hz) Continuous disturbance: 3V r.m.s. (Mains frequency range 150Hz~1.5kHz) Continuous disturbance: 3V to 30V r.m.s. (Mains frequency range 1.5kHz~15kHz) Continuous disturbance: 30V r.m.s. (Mains frequency range 15kHz~150kHz)

Performance criterion: B

EUT

Function Generator

Power Amplifier CDN

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2.6.4 Configuration of Measurement (1.) The levels are given for the tests at the main frequency and in the frequency range

between15Hz to 150kHz. (2.) The test voltage shall be applied in common mode to power supply, control, signal and

communication ports. (3.) Place the EUT on the GRP and connect EUT to the ground. (4.) The CM voltage via the CDN (#257) coupling to the power supply, input/output and

communication ports. (5.) The test level at mains frequency:

Table 1 – Levels for continuous disturbance Level Open circuit test voltage

V (r.m.s.) 1 2 3 4 x

1 3

10 30

Special Note x is an open level. This level may be defined in the product standard.

Table 2 – Levels for short duration disturbance Level Open circuit test voltage

V (r.m.s.) 1 2 3 4 x

10 30 100 300

Special Note x is an open level. This level may be defined in the product standard.

(6.) The level in the frequency range 15Hz~150kHz

Table 3 – test levels in the frequency range 15Hz-150kHz

Level Profile of the test voltage (open circuit) V (r.m.s.)

15Hz-150Hz 150Hz-1.5kHz 1.5kHz-15kHz 15kHz-150kHz1 2 3 4 x

1-0.1 3-0.3 10-1 30-3

x

0.1 0.3 1 3 x

0.1-1 0.3-3 1-10 3-30

x

1 3

10 30 x

NOTE x is an open level. This level can be given in the product specification.

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2.6.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Main port:

30V r.m.s. continuous (Mains frequency 50Hz) Performance criterion: A B C

300V r.m.s. for 1 s.(Mains frequency 50Hz) Performance criterion: A B C

Continuous disturbance: 30V to 3V r.m.s. (Mains frequency range 15Hz~150Hz) Performance criterion: A B C

Continuous disturbance: 3V r.m.s. (Mains frequency range 150Hz~1.5kHz) Performance criterion: A B C

Continuous disturbance: 3V to 30V r.m.s. (Mains frequency range 1.5kHz~15kHz) Performance criterion: A B C

Continuous disturbance: 30V r.m.s. (Mains frequency range 15kHz~150kHz) Performance criterion: A B C

Signal ports: LAN 1, GbE1, RS232, BNC

30V r.m.s. continuous (Mains frequency 50Hz) Performance criterion: A B C

300V r.m.s. for 1 s.(Mains frequency 50Hz) Performance criterion: A B C

Continuous disturbance: 30V to 3V r.m.s. (Mains frequency range 15Hz~150Hz) Performance criterion: A B C

Continuous disturbance: 3V r.m.s. (Mains frequency range 150Hz~1.5kHz) Performance criterion: A B C

Continuous disturbance: 3V to 30V r.m.s. (Mains frequency range 1.5kHz~15kHz) Performance criterion: A B C

Continuous disturbance: 30V r.m.s. (Mains frequency range 15kHz~150kHz) Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 22.6 ; Humidity: 41 %; Atm pres: 101 Kpa; Test Engineer: Roy

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Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Main port:

30V r.m.s. continuous (Mains frequency 50Hz) Performance criterion: A B C

300V r.m.s. for 1 s.(Mains frequency 50Hz) Performance criterion: A B C

Continuous disturbance: 30V to 3V r.m.s. (Mains frequency range 15Hz~150Hz) Performance criterion: A B C

Continuous disturbance: 3V r.m.s. (Mains frequency range 150Hz~1.5kHz) Performance criterion: A B C

Continuous disturbance: 3V to 30V r.m.s. (Mains frequency range 1.5kHz~15kHz) Performance criterion: A B C

Continuous disturbance: 30V r.m.s. (Mains frequency range 15kHz~150kHz) Performance criterion: A B C

Signal ports: LAN 1, GbE1, RS232, BNC

30V r.m.s. continuous (Mains frequency 50Hz) Performance criterion: A B C

300V r.m.s. for 1 s.(Mains frequency 50Hz) Performance criterion: A B C

Continuous disturbance: 30V to 3V r.m.s. (Mains frequency range 15Hz~150Hz) Performance criterion: A B C

Continuous disturbance: 3V r.m.s. (Mains frequency range 150Hz~1.5kHz) Performance criterion: A B C

Continuous disturbance: 3V to 30V r.m.s. (Mains frequency range 1.5kHz~15kHz) Performance criterion: A B C

Continuous disturbance: 30V r.m.s. (Mains frequency range 15kHz~150kHz) Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

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2.7 Power frequency magnetic field (IEC 61000-4-8)

2.7.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Magnetic field generator PMM PMM1008 0000J00301 2012/09/09

Note: The above equipments are within the valid calibration period.

2.7.2 Block Diagram of Test Configuration

2.7.3 Test Requirement According to IEC 61850-3 clause 5.7.3;

According to IEC/TS 61000-6-5 table 1: Enclosure port

Magnetic field strength: 100 A/m Magnetic field strength: 1000 A/m (short duration: 1~3 sec)

Performance criterion: B

2.7.4 Configuration of Measurement (1.) The equipment is configured and connected to satisfy its functional requirements. It shall

be placed on the GRP (1m x 1m) with the interposition of a 0.1m thickness insulating support.

(2.) All cables shall be exposed to the magnetic field for 1m of their length. (3.) Different induction coils may be selected for testing in the different orthogonal directions as

shown in section 13.2. (4.) Induction coils used in the vertical position (horizontal polarization of the field) can be

bonded directly to the ground plane.

10cm InsulatingSupportSafety earth

1/2 Dimension of EUT EUT

Ground Plane (Copper)

Magnetic field generator

Induction coil

Non-Conducted Table

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2.7.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

Power frequency is 50Hz, Magnetic field strength: 100A/m Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

Power frequency is 50Hz, Magnetic field strength: 1000A/m (short duration: 3 sec) Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Power frequency is 50Hz, Magnetic field strength: 100A/m Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

Power frequency is 50Hz, Magnetic field strength: 1000A/m (short duration: 3 sec) Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 22.1 ; Humidity: 41 %; Atm pres: 101 Kpa; Test Engineer: Roy

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2.8 Damped Oscillatory Magnetic Field Immunity (IEC 61000-4-10)

2.8.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Oscillatory wave generator EMC PARTNER MIG-OS-OS1 819 2012/04/27

Note: 1. “*”: Coil factor=0.87; Coil inductance=2.5Μh 2. The above equipments are within the valid calibration period.

2.8.2 Block Diagram of Test Configuration

2.8.3 Test Requirement According to IEC 61850-3 clause 5.7.3; According to special request by client.

Repetition rate: at least 40 transients/s at 0.1 MHz Damped oscillatory magnetic field strength: 30 A/m

Repetition rate: at least 400 transients/s at 1 MHz Damped oscillatory magnetic field strength: 30 A/m

Performance criterion: B

2.8.4 Configuration of Measurement (1.) The EUT is configured and connected to satisfy it functional requirements. Place the EUT

on 0,1 m thickness insulating support above GRP(1m x 1m). All cables connect to EUT at less 1m lengths exposed to the magnetic field.

(2.) The induction coil places in different orthogonal directions for the test and 0.1m away the EUT. Induction coil used in the vertical position (horizontal polarization of the field) can be bonded directly to the ground plane.

80cm10cm InsulatingSupportSafety earth

1/2 Dimension of EUT EUT

Ground Plane (Copper)

Oscillatory wave generator

Induction coil

Non-Conducted Table

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2.8.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

Repetition rate: at least 40 transients/s at 0.1 MHz Damped oscillatory magnetic field strength: 30 A/m

Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

Repetition rate: at least 400 transients/s at 1 MHz Damped oscillatory magnetic field strength: 30 A/m

Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Repetition rate: at least 40 transients/s at 0.1 MHz

Damped oscillatory magnetic field strength: 30 A/m Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

Repetition rate: at least 400 transients/s at 1 MHz Damped oscillatory magnetic field strength: 30 A/m

Direction X: Performance criterion: A B C Direction Y: Performance criterion: A B C Direction Z: Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 22.1 ; Humidity: 41 %; Atm pres: 101 Kpa; Test Engineer: Roy

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2.9 Conducted emission

Conducted emission (power supply lines)

2.9.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

EMI Test Receiver Rohde & Schwarz ESCS30 100134 2012/08/16

RF Cable HARBOUR RG-58/U CBL39 2012/11/09

L.I.S.N. Schaffner MN2050D 1597 2013/06/20

L.I.S.N. Rohde & Schwarz ESH3-Z5 829996/016 2013/01/02

Note: The above equipments are within the valid calibration period.

2.9.2 Block Diagram of Test Configuration

0.1m

0.4 m

EUT Peripheral 0.8 m to ground plane

Bonded to horizontal ground plane

Non-conductive table Rear of EUT to be flush with rear of table top

0.4 m to vertical ground reference plane

Vertical ground reference plane

LISN

EMI Test Receiver

RF Cable

Power Cord

0.8 m

Bonded to horizontal ground plane

LISN

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2.9.3 Test Requirement According to IEC 61850-3 clause 5.8 (EN 55022 Class A);

Frequency (MHz)

Q.P. (Quasi-Peak)

A.V. (Average)

0.15 ~ 0.50 79 66 0.50 ~ 5.0 73 60 5.0 ~ 30 73 60

2.9.4 Instrument configuration (1.) Set the EMI test receiver frequency range from 150 kHz to 30 MHz. (2.) Set the EMI test receiver bandwidth at 9kHz. (3.) Set the EMI test receiver detector as Quasi-Peak (Q.P.) and Average (AV).

2.9.5 Configuration of Measurement (1.) The EUT was placed on a non-conductive table whose total height equaled 80cm and

vertical conducting plane located 40cm to the rear of the EUT. (2.) The EUT was connected to the main power through Line Impedance Stabilization

Networks (LISN). This setup provided a 50ohm / 50mH coupling impedance for the measuring equipment. The auxiliary equipment was also connected to the main power through a LISN that provided a 50ohm/50mH coupling impedance with 50ohm termination. (Refer to the block diagram of the test setup and photographs.)

(3.) The conducted disturbance was measured between the phase lead and the reference ground, and between the neutral lead and reference ground. The initial testing identified the frequency that has the highest disturbance relative to the limit while operating the EUT in typical modes of operation and cable positions in a test setup representative of typical system configuration.

(4.) The identification of the frequency of highest disturbance with respect to the limit was found by investigating disturbances at a number of significant frequencies. The probable frequency of maximum disturbance had been found and that the associated cable and EUT configuration and mode of operation had been identified.

2.9.6 Test Result PASS. The final test data is shown as following pages.

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY: Line

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/24

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.150 0.20 48.26 35.80 48.46 36.00 79.00 66.00 -30.54 -30.00

0.209 0.17 48.32 46.12 48.49 46.29 79.00 66.00 -30.51 -19.71

0.416 0.17 41.52 35.26 41.69 35.43 79.00 66.00 -37.31 -30.57

0.482 0.17 40.61 37.31 40.78 37.48 79.00 66.00 -38.22 -28.52

5.431 0.31 32.39 27.45 32.70 27.76 73.00 60.00 -40.30 -32.24

15.834 0.83 33.26 28.47 34.09 29.30 73.00 60.00 -38.91 -30.70

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY: Neutral

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/25

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.154 0.25 45.02 36.66 45.27 36.91 79.00 66.00 -33.73 -29.09

0.205 0.22 50.35 46.59 50.57 46.81 79.00 66.00 -28.43 -19.19

0.416 0.21 39.07 33.03 39.28 33.24 79.00 66.00 -39.72 -32.76

0.619 0.21 31.31 26.87 31.52 27.08 73.00 60.00 -41.48 -32.92

5.431 0.33 30.69 26.07 31.02 26.40 73.00 60.00 -41.98 -33.60

15.314 0.79 34.53 25.65 35.32 26.44 73.00 60.00 -37.68 -33.56

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY: Line

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/23

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.205 0.17 50.42 49.83 50.59 50.00 79.00 66.00 -28.41 -16.00

0.279 0.17 39.86 39.66 40.03 39.83 79.00 66.00 -38.97 -26.17

0.498 0.17 43.83 43.30 44.00 43.47 79.00 66.00 -35.00 -22.53

0.689 0.17 36.45 36.33 36.62 36.50 73.00 60.00 -36.38 -23.50

5.435 0.31 31.88 29.30 32.19 29.61 73.00 60.00 -40.81 -30.39

15.224 0.81 34.03 18.29 34.84 19.10 73.00 60.00 -38.16 -40.90

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY: Neutral

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/22

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.205 0.22 48.80 48.01 49.02 48.23 79.00 66.00 -29.98 -17.77

0.275 0.22 40.86 40.65 41.08 40.87 79.00 66.00 -37.92 -25.13

0.494 0.21 42.52 42.05 42.73 42.26 79.00 66.00 -36.27 -23.74

0.689 0.21 35.06 34.92 35.27 35.13 73.00 60.00 -37.73 -24.87

6.056 0.36 29.52 29.26 29.88 29.62 73.00 60.00 -43.12 -30.38

25.806 1.01 32.17 28.66 33.18 29.67 73.00 60.00 -39.82 -30.33

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY: Line

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/6

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.248 0.22 38.49 34.50 38.71 34.72 79.00 66.00 -40.29 -31.28

4.607 0.28 34.52 27.40 34.80 27.68 73.00 60.00 -38.20 -32.32

6.904 0.39 30.76 19.92 31.15 20.31 73.00 60.00 -41.85 -39.69

9.404 0.56 35.73 25.33 36.29 25.89 73.00 60.00 -36.71 -34.11

11.197 0.64 38.88 28.38 39.52 29.02 73.00 60.00 -33.48 -30.98

13.752 0.74 39.47 29.79 40.21 30.53 73.00 60.00 -32.79 -29.47

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 5: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY: Neutral

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/7

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.248 0.17 38.21 34.50 38.38 34.67 79.00 66.00 -40.62 -31.33

4.365 0.23 32.38 25.27 32.61 25.50 73.00 60.00 -40.39 -34.50

7.502 0.39 42.34 29.97 42.73 30.36 73.00 60.00 -30.27 -29.64

10.923 0.63 34.90 24.65 35.53 25.28 73.00 60.00 -37.47 -34.72

13.752 0.75 38.40 28.62 39.15 29.37 73.00 60.00 -33.85 -30.63

20.002 1.00 29.55 18.57 30.55 19.57 73.00 60.00 -42.45 -40.43

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 5: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY: Line

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/20

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.154 0.20 42.17 34.93 42.37 35.13 79.00 66.00 -36.63 -30.87

0.248 0.17 39.67 35.79 39.84 35.96 79.00 66.00 -39.16 -30.04

0.498 0.17 45.00 44.66 45.17 44.83 79.00 66.00 -33.83 -21.17

5.423 0.31 25.04 20.59 25.35 20.90 73.00 60.00 -47.65 -39.10

11.759 0.66 24.44 20.72 25.10 21.38 73.00 60.00 -47.90 -38.62

19.873 0.99 25.20 19.93 26.19 20.92 73.00 60.00 -46.81 -39.08

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 8: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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Power Line Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY: Neutral

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/21

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµV) Emission Level (dBµV) Limits (dBµV) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.154 0.25 42.08 34.87 42.33 35.12 79.00 66.00 -36.67 -30.88

0.244 0.22 37.30 30.19 37.52 30.41 79.00 66.00 -41.48 -35.59

0.498 0.21 44.71 44.27 44.92 44.48 79.00 66.00 -34.08 -21.52

5.349 0.33 24.68 19.11 25.01 19.44 73.00 60.00 -47.99 -40.56

18.748 0.90 32.43 31.68 33.33 32.58 73.00 60.00 -39.67 -27.42

26.552 1.00 32.58 29.05 33.58 30.05 73.00 60.00 -39.42 -29.95

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 8: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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Conducted emission (control lines)

2.9.7 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

EMI Test Receiver Rohde & Schwarz ESCS30 100134 2012/08/16

RF Cable HARBOUR RG-58/U CBL39 2012/11/09

L.I.S.N. Schaffner MN2050D 1597 2013/06/20

L.I.S.N. Rohde & Schwarz ESH3-Z5 829996/016 2013/01/02

Current Probe SCHAFFNER SMZ11 18009 2012/12/01

Note: The above equipments are within the valid calibration period.

2.9.8 Block Diagram of Test Configuration

Bonded to horizontal ground plane

Bonded to horizontal ground plane

RF Cable

0.1m

0.4 m

EUT Peripheral 0.8 m to ground plane

LISN

AE

0.8 m

Non-conductive table Rear of EUT to be flush with rear of table top

0.4 m to vertical ground reference plane

Vertical ground reference plane

LISN

EMI Test Receiver

Power Cord

Telecommunication Cable

Current Probe

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2.9.9 Test Requirement According to IEC 61850-3 clause 5.8 (EN 55022 Class A);

Voltage Limits Current Limits

Voltage Limits (dBμV)

Current Limits (dBμA) Frequency range

(MHz) Q.P. (Quasi-Peak)

A.V. (Average)

Q.P. (Quasi-Peak)

A.V. (Average)

0.15 ~ 0.50 97 to 87 84 to 74 53 to 43 40 to 30 0.50 ~ 30 87 74 43 30

NOTE 1 – The limits decrease linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz.

NOTE 2 – The current and 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 telecommunication port under test (conversion factor is 20 log10 150 1 = 44 dB.

2.9.10 Instrument configuration (1.) Set the EMI test receiver frequency range from 150 kHz to 30 MHz. (2.) Set the EMI test receiver bandwidth at 9kHz. (3.) Set the EMI test receiver detector as Quasi-Peak (Q.P.) and Average (AV).

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2.9.11 Configuration of Measurement (1.) Measurement is made at telecommunication ports using ISNs with longitudinal conversion

losses (LCL) as defined in EN 55022. (2.) The manufacturer shall demonstrate that the equipment does not exceed the Conducted

limits of Telecommunication ports when tested with the ISN according to the cable category specified by the equipment documentation provided to the user.

(3.) In order to make reliable emission measurements representative of high LAN utilization it is only necessary to create a condition of LAN utilization in excess of 10% and sustain that level for a minimum of 250ms. The content of the test traffic should consist of both periodic and pseudo-random messages in order to emulate realistic types of data transmission (e.g. random: files compressed or encrypted; periodic: uncompressed graphic files, memory dumps, screen updates, disk images).

a) Voltage measurement at balanced telecommunication ports intended for connection to unscreened balanced pairs. (See EN 55022)

b) Current measurements at balanced telecommunication ports intended for connection to unscreened balanced pairs. (See EN 55022)

c) Voltage measurements at telecommunication ports intended for connection to screened cables or to coaxial cables. (See EN 55022)

d) Current measurements at telecommunication ports intended for connection to screened cables or to coaxial cables. (See EN 55022)

e) Measurements at telecommunication ports intended for connection to cables containing more than four balanced pairs or to unbalanced cables. (See EN 55022)

(4.) Recording of measurements Of those disturbances above (L-20dB), where L is the limit level in logarithmic units, record at least the disturbance levels and the frequencies of the six highest disturbances from each mains port and each telecommunication port, which comprise the EUT. For the mains port, the current-carrying conductor for each disturbance shall be identified.

2.9.12 Test Result PASS. The final test data is shown as following pages.

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/49

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

2.970 0.36 11.41 10.28 11.77 10.64 43.00 30.00 -31.23 -19.36

6.494 0.45 12.42 10.96 12.87 11.41 43.00 30.00 -30.13 -18.59

7.670 0.47 13.18 11.27 13.65 11.74 43.00 30.00 -29.35 -18.26

10.416 0.56 12.42 10.89 12.98 11.45 43.00 30.00 -30.02 -18.55

14.470 0.54 12.98 11.17 13.52 11.71 43.00 30.00 -29.48 -18.29

19.138 0.51 13.01 11.28 13.52 11.79 43.00 30.00 -29.48 -18.21

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 1: UNO-4683 (1920*1080) (AC 230V) (GbE1: 1Gbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/48

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

4.201 0.42 11.46 10.36 11.88 10.78 43.00 30.00 -31.12 -19.22

6.533 0.45 12.58 11.00 13.03 11.45 43.00 30.00 -29.97 -18.55

7.365 0.46 12.99 11.26 13.45 11.72 43.00 30.00 -29.55 -18.28

8.783 0.51 12.58 10.86 13.09 11.37 43.00 30.00 -29.91 -18.63

13.244 0.55 13.68 11.65 14.23 12.20 43.00 30.00 -28.77 -17.80

15.033 0.54 14.58 12.41 15.12 12.95 43.00 30.00 -27.88 -17.05

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 1: UNO-4683 (1920*1080) (AC 230V) (GbE1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/47

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

6.709 0.45 12.79 11.01 13.24 11.46 43.00 30.00 -29.76 -18.54

8.345 0.49 12.50 10.88 12.99 11.37 43.00 30.00 -30.01 -18.63

12.013 0.55 12.66 11.10 13.21 11.65 43.00 30.00 -29.79 -18.35

15.443 0.54 13.78 11.55 14.32 12.09 43.00 30.00 -28.68 -17.91

17.795 0.52 13.68 11.55 14.20 12.07 43.00 30.00 -28.80 -17.93

21.302 0.49 12.51 11.06 13.00 11.55 43.00 30.00 -30.00 -18.45

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 1: UNO-4683 (1920*1080) (AC 230V) (GbE1: 10Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/44

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.162 1.04 13.57 10.87 12.53 9.83 52.36 39.36 -39.83 -29.53

1.189 0.38 10.79 9.99 11.17 10.37 43.00 30.00 -31.83 -19.63

5.783 0.45 12.14 10.70 12.59 11.15 43.00 30.00 -30.41 -18.85

8.994 0.52 12.32 10.81 12.84 11.33 43.00 30.00 -30.16 -18.67

12.505 0.55 15.20 13.20 15.75 13.75 43.00 30.00 -27.25 -16.25

20.068 0.50 12.84 11.17 13.34 11.67 43.00 30.00 -29.66 -18.33

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 2: UNO-4683 (1920*1080) (DC 110V) (GbE1: 1Gbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/45

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.427 0.20 11.07 10.11 11.27 10.31 44.31 31.31 -33.04 -21.00

1.002 0.38 10.89 9.95 11.27 10.33 43.00 30.00 -31.73 -19.67

1.654 0.37 10.90 10.04 11.27 10.41 43.00 30.00 -31.73 -19.59

3.263 0.37 11.26 10.21 11.63 10.58 43.00 30.00 -31.37 -19.42

7.166 0.46 12.95 11.18 13.41 11.64 43.00 30.00 -29.59 -18.36

11.865 0.55 12.60 11.04 13.15 11.59 43.00 30.00 -29.85 -18.41

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 2: UNO-4683 (1920*1080) (DC 110V) (GbE1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/46

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

3.541 0.39 11.17 10.26 11.56 10.65 43.00 30.00 -31.44 -19.35

5.291 0.45 11.85 10.58 12.30 11.03 43.00 30.00 -30.70 -18.97

7.330 0.46 13.24 11.29 13.70 11.75 43.00 30.00 -29.30 -18.25

9.931 0.56 12.46 10.88 13.02 11.44 43.00 30.00 -29.98 -18.56

12.771 0.55 14.10 12.07 14.65 12.62 43.00 30.00 -28.35 -17.38

23.193 0.47 12.78 11.05 13.25 11.52 43.00 30.00 -29.75 -18.48

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 2: UNO-4683 (1920*1080) (DC 110V) (GbE1: 10Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/50

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.673 0.28 11.03 10.09 11.31 10.37 43.00 30.00 -31.69 -19.63

0.959 0.37 10.90 10.08 11.27 10.45 43.00 30.00 -31.73 -19.55

1.119 0.38 11.60 10.31 11.98 10.69 43.00 30.00 -31.02 -19.31

3.935 0.41 11.37 10.35 11.78 10.76 43.00 30.00 -31.22 -19.24

7.923 0.48 13.20 11.45 13.68 11.93 43.00 30.00 -29.32 -18.07

16.966 0.52 13.72 11.61 14.24 12.13 43.00 30.00 -28.76 -17.87

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 3: UNO-4673A (1920*1080) (AC 230V) (GbE1: 1Gbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/51

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.775 0.31 10.93 10.07 11.24 10.38 43.00 30.00 -31.76 -19.62

1.853 0.36 10.97 10.07 11.33 10.43 43.00 30.00 -31.67 -19.57

3.416 0.38 11.34 10.27 11.72 10.65 43.00 30.00 -31.28 -19.35

7.084 0.46 12.82 11.22 13.28 11.68 43.00 30.00 -29.72 -18.32

10.830 0.56 12.45 10.95 13.01 11.51 43.00 30.00 -29.99 -18.49

18.017 0.52 13.77 11.71 14.29 12.23 43.00 30.00 -28.71 -17.77

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 3: UNO-4673A (1920*1080) (AC 230V) (GbE1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/52

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.357 0.06 16.16 15.30 16.22 15.36 45.80 32.80 -29.58 -17.44

1.142 0.38 11.16 10.10 11.54 10.48 43.00 30.00 -31.46 -19.52

4.334 0.42 11.79 10.52 12.21 10.94 43.00 30.00 -30.79 -19.06

7.459 0.46 13.02 11.27 13.48 11.73 43.00 30.00 -29.52 -18.27

13.228 0.55 13.13 11.39 13.68 11.94 43.00 30.00 -29.32 -18.06

16.302 0.53 14.91 12.80 15.44 13.33 43.00 30.00 -27.56 -16.67

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 3: UNO-4673A (1920*1080) (AC 230V) (GbE1: 10Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/55

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

1.545 0.37 21.59 10.13 21.96 10.50 43.00 30.00 -21.04 -19.50

1.787 0.37 11.08 10.19 11.45 10.56 43.00 30.00 -31.55 -19.44

3.236 0.37 11.37 10.31 11.74 10.68 43.00 30.00 -31.26 -19.32

7.025 0.46 12.83 11.23 13.29 11.69 43.00 30.00 -29.71 -18.31

10.591 0.56 12.73 11.01 13.29 11.57 43.00 30.00 -29.71 -18.43

13.943 0.54 13.51 11.67 14.05 12.21 43.00 30.00 -28.95 -17.79

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 4: UNO-4673A (1920*1080) (DC 110V) (GbE1: 1Gbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/56

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

3.236 0.37 11.33 10.31 11.70 10.68 43.00 30.00 -31.30 -19.32

7.025 0.46 12.99 11.18 13.45 11.64 43.00 30.00 -29.55 -18.36

10.591 0.56 12.61 10.95 13.17 11.51 43.00 30.00 -29.83 -18.49

13.943 0.54 13.99 11.86 14.53 12.40 43.00 30.00 -28.47 -17.60

18.505 0.51 12.77 11.16 13.28 11.67 43.00 30.00 -29.72 -18.33

23.451 0.47 12.96 11.17 13.43 11.64 43.00 30.00 -29.57 -18.36

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 4: UNO-4673A (1920*1080) (DC 110V) (GbE1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/57

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

4.537 0.43 11.82 10.57 12.25 11.00 43.00 30.00 -30.75 -19.00

5.486 0.45 12.12 10.77 12.57 11.22 43.00 30.00 -30.43 -18.78

7.822 0.47 13.30 11.43 13.77 11.90 43.00 30.00 -29.23 -18.10

10.306 0.56 12.52 11.10 13.08 11.66 43.00 30.00 -29.92 -18.34

12.576 0.55 14.40 11.96 14.95 12.51 43.00 30.00 -28.05 -17.49

19.712 0.50 13.16 11.45 13.66 11.95 43.00 30.00 -29.34 -18.05

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 4: UNO-4673A (1920*1080) (DC 110V) (GbE1: 10Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/40

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

1.197 0.38 10.57 9.82 10.95 10.20 43.00 30.00 -32.05 -19.80

2.248 0.35 10.98 9.84 11.33 10.19 43.00 30.00 -31.67 -19.81

2.666 0.35 10.97 9.97 11.32 10.32 43.00 30.00 -31.68 -19.68

7.205 0.46 12.68 11.00 13.14 11.46 43.00 30.00 -29.86 -18.54

8.998 0.52 11.96 10.59 12.48 11.11 43.00 30.00 -30.52 -18.89

22.025 0.48 12.73 11.06 13.21 11.54 43.00 30.00 -29.79 -18.46

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 5: UNO-4683 (1920*1080) (AC 230V) (LAN 1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/41

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.396 0.18 10.94 10.22 11.12 10.40 44.94 31.94 -33.82 -21.54

0.705 0.29 10.74 10.21 11.03 10.50 43.00 30.00 -31.97 -19.50

1.935 0.37 10.90 10.01 11.27 10.38 43.00 30.00 -31.73 -19.62

3.685 0.40 11.11 10.14 11.51 10.54 43.00 30.00 -31.49 -19.46

7.509 0.46 13.13 11.16 13.59 11.62 43.00 30.00 -29.41 -18.38

11.814 0.55 12.42 10.88 12.97 11.43 43.00 30.00 -30.03 -18.57

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 5: UNO-4683 (1920*1080) (AC 230V) (LAN 1: 10Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/43

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.853 0.33 10.86 10.21 11.19 10.54 43.00 30.00 -31.81 -19.46

4.341 0.42 11.78 10.42 12.20 10.84 43.00 30.00 -30.80 -19.16

7.427 0.46 13.04 11.15 13.50 11.61 43.00 30.00 -29.50 -18.39

10.416 0.56 12.34 10.79 12.90 11.35 43.00 30.00 -30.10 -18.65

14.494 0.54 12.58 10.96 13.12 11.50 43.00 30.00 -29.88 -18.50

24.314 0.47 12.77 11.08 13.24 11.55 43.00 30.00 -29.76 -18.45

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 6: UNO-4683 (1920*1080) (DC 110V) (LAN 1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/42

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

0.556 0.24 10.87 10.05 11.11 10.29 43.00 30.00 -31.89 -19.71

1.681 0.36 10.93 10.21 11.29 10.57 43.00 30.00 -31.71 -19.43

2.244 0.35 11.00 10.32 11.35 10.67 43.00 30.00 -31.65 -19.33

4.795 0.44 11.73 10.41 12.17 10.85 43.00 30.00 -30.83 -19.15

7.142 0.46 12.97 11.11 13.43 11.57 43.00 30.00 -29.57 -18.43

13.681 0.55 12.76 11.00 13.31 11.55 43.00 30.00 -29.69 -18.45

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 6: UNO-4683 (1920*1080) (DC 110V) (LAN 1: 10Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/53

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

3.115 0.36 11.38 10.32 11.74 10.68 43.00 30.00 -31.26 -19.32

4.232 0.42 11.54 10.48 11.96 10.90 43.00 30.00 -31.04 -19.10

6.677 0.45 12.60 11.14 13.05 11.59 43.00 30.00 -29.95 -18.41

9.525 0.54 12.52 10.93 13.06 11.47 43.00 30.00 -29.94 -18.53

14.634 0.54 14.21 12.08 14.75 12.62 43.00 30.00 -28.25 -17.38

23.763 0.47 12.96 11.19 13.43 11.66 43.00 30.00 -29.57 -18.34

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode7: UNO-4673A (1920*1080) (AC 230V) (LAN 1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/54

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

1.451 0.37 11.01 10.11 11.38 10.48 43.00 30.00 -31.62 -19.52

2.814 0.35 11.27 10.18 11.62 10.53 43.00 30.00 -31.38 -19.47

6.013 0.45 11.98 10.61 12.43 11.06 43.00 30.00 -30.57 -18.94

6.810 0.45 12.29 10.87 12.74 11.32 43.00 30.00 -30.26 -18.68

12.572 0.55 12.42 10.91 12.97 11.46 43.00 30.00 -30.03 -18.54

19.654 0.50 13.79 11.69 14.29 12.19 43.00 30.00 -28.71 -17.81

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 7: UNO-4673A (1920*1080) (AC 230V) (LAN 1: 10Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/58

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

1.537 0.37 11.10 10.13 11.47 10.50 43.00 30.00 -31.53 -19.50

2.865 0.35 11.16 10.25 11.51 10.60 43.00 30.00 -31.49 -19.40

5.041 0.45 11.91 10.69 12.36 11.14 43.00 30.00 -30.64 -18.86

6.959 0.45 13.05 11.23 13.50 11.68 43.00 30.00 -29.50 -18.32

7.998 0.48 13.24 11.50 13.72 11.98 43.00 30.00 -29.28 -18.02

13.470 0.55 14.46 12.27 15.01 12.82 43.00 30.00 -27.99 -17.18

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 8: UNO-4673A (1920*1080) (DC 110V) (LAN 1: 100Mbps)

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Telecommunication Ports Conducted Test Data EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 20.2

Humidity: 46 %

POLARITY:

DISTANCE:

Serial No.:

FILE/DATA#: Advantech.emi/59

OPERATOR: Roy

TEST SITE: Conduction 2

Frequency Factor Meter Reading (dBµA) Emission Level (dBµA) Limits (dBµA) Margin (dB)

(MHz) (dB) Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average Quasi-Peak Average

2.181 0.35 11.07 10.24 11.42 10.59 43.00 30.00 -31.58 -19.41

3.838 0.40 11.62 10.42 12.02 10.82 43.00 30.00 -30.98 -19.18

5.423 0.45 12.16 10.81 12.61 11.26 43.00 30.00 -30.39 -18.74

7.978 0.48 13.35 11.49 13.83 11.97 43.00 30.00 -29.17 -18.03

13.689 0.55 13.70 11.61 14.25 12.16 43.00 30.00 -28.75 -17.84

17.052 0.52 12.75 11.11 13.27 11.63 43.00 30.00 -29.73 -18.37

Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable Loss.

Test Mode: Mode 8: UNO-4673A (1920*1080) (DC 110V) (LAN 1: 10Mbps)

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2.10 Radiated emission (EN 55022A)

2.10.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

EMI Test Receiver Rohde & Schwarz ESCI 100836 2012/08/24

Biconical Antenna Schwarzbeck BBA 9106 VHA 9103-2419 2013/03/28

Log Antenna Schwarzbeck UHALP 9108 A 0739 2013/03/28

Pre-Amplifier SCHAFFNER CPA9231A 3349 2012/08/02

RF Cable IETC 8DFB CBL14 2012/07/13

Note: The above equipments are within the valid calibration period.

2.10.2 Block Diagram of Test Configuration Measurement Frequency under 1GHz

2.10.3 Test Requirement According to IEC 61850-3 clause 5.8 (EN 55022 Class A);

Frequency (MHz) Quasi-Peak dB(µV/m)

30 ~ 230 40.0 230 ~ 1000 47.0

2.10.4 Instrument configuration (1.) Set the EMI test receiver frequency range from 30 MHz to 1000 MHz. (2.) Set the EMI test receiver bandwidth at 120 kHz. (3.) Set the EMI test receiver detector as Quasi-Peak (Q.P.) and Average (AV).

1 m Test table & Turntable

4 m

80 cm

EUT

10 m

Ground Plane

RF Cable

EMI Test Receiver

Pre-Amplifier

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2.10.5 Configuration of Measurement (1.) The EUT was placed on a non-conductive table whose total height equaled 80cm. The

turntable can rotate 360 degree to determine the position of the maximum emission level. (2.) The EUT was set 10 meters away from the receiving antenna that was mounted on a

non-conductive mast. The antenna can move up and down between 1 to 4 meters to find out the maximum emission level.

(3.) The initial testing identified the frequency that has the highest disturbance relative to the limit while operating the EUT in typical modes of operation and cable positions in a test setup representative of typical system configuration.

(4.) The identification of the frequency of highest emission with respect to the limit was found by investigating emissions at a number of significant frequencies. The probable frequency of maximum emission had been found and that the associated cable and EUT configuration and mode of operation had been identified.

2.10.6 Test Result PASS. The final test data is shown as following pages.

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 18.4

Humidity: 78 %

POLARITY: Horizontal

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/30

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

166.600 ** -15.46 50.00 34.54 40.00 -5.46

171.000 ** -15.34 45.60 30.26 40.00 -9.74

205.300 ** -13.86 50.50 36.64 40.00 -3.36

300.000 ** -11.19 51.80 40.61 47.00 -6.39

366.600 ** -15.18 56.10 40.92 47.00 -6.08

500.000 ** -12.03 52.30 40.27 47.00 -6.73

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: 230V/50Hz

Temperature: 18.4

Humidity: 78 %

POLARITY: Vertical

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/29

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

151.840 ** -16.83 52.00 35.17 40.00 -4.83

172.000 ** -14.74 50.00 35.26 40.00 -4.74

177.480 ** -14.70 49.60 34.90 40.00 -5.10

206.800 ** -12.88 48.40 35.52 40.00 -4.48

300.000 ** -9.99 51.00 41.01 47.00 -5.99

366.600 ** -15.11 55.60 40.49 47.00 -6.51

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 18.4

Humidity: 78 %

POLARITY: Horizontal

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/32

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

177.760 ** -15.04 54.00 38.96 40.00 -1.04

204.215 ** -13.92 47.00 33.08 40.00 -6.92

366.692 ** -15.18 60.50 45.32 47.00 -1.68

500.018 ** -12.03 53.00 40.97 47.00 -6.03

640.010 ** -9.34 49.00 39.66 47.00 -7.34

746.683 ** -8.16 52.50 44.34 47.00 -2.66

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4683

RATING: DC 110V

Temperature: 18.4

Humidity: 78 %

POLARITY: Vertical

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/31

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

151.583 ** -16.86 53.50 36.64 40.00 -3.36

166.678 ** -15.02 52.00 36.98 40.00 -3.02

180.436 ** -14.57 50.10 35.53 40.00 -4.47

205.261 ** -12.88 50.50 37.62 40.00 -2.38

366.692 ** -15.11 58.00 42.89 47.00 -4.11

500.020 ** -12.23 52.00 39.77 47.00 -7.23

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 18.4

Humidity: 78 %

POLARITY: Horizontal

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/35

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

135.172 ** -17.23 48.50 31.27 40.00 -8.73

195.198 ** -14.23 52.73 38.50 40.00 -1.50

232.346 ** -13.53 53.50 39.97 47.00 -7.03

299.778 ** -11.20 51.80 40.60 47.00 -6.40

365.094 ** -15.20 56.50 41.30 47.00 -5.70

398.298 ** -14.06 53.20 39.14 47.00 -7.86

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 5: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: 230V/50Hz

Temperature: 18.4

Humidity: 78 %

POLARITY: Vertical

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/37

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

120.004 ** -18.04 52.50 34.46 40.00 -5.54

184.320 ** -14.30 50.70 36.40 40.00 -3.60

299.766 ** -10.01 53.00 42.99 47.00 -4.01

366.404 ** -15.11 59.30 44.19 47.00 -2.81

399.704 ** -13.39 59.10 45.71 47.00 -1.29

554.396 ** -10.67 52.20 41.53 47.00 -5.47

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 5: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V)

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 18.4

Humidity: 78 %

POLARITY: Horizontal

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/34

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

135.630 ** -17.19 47.00 29.81 40.00 -10.19

178.170 ** -15.04 52.00 36.96 40.00 -3.04

232.352 ** -13.53 57.00 43.47 47.00 -3.53

299.728 ** -11.20 52.00 40.80 47.00 -6.20

368.100 ** -15.15 56.70 41.55 47.00 -5.45

399.716 ** -13.99 50.00 36.01 47.00 -10.99

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 8: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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Radiated Emission Measurement Data

EUT: Rackmount Computer

CLIENT: Advantech Co., Ltd.

MODEL: UNO-4673A

RATING: DC 110V

Temperature: 18.4

Humidity: 78 %

POLARITY: Vertical

DISTANCE: 10 m

Serial No.:

FILE/DATA#: Advantech.emi/33

OPERATOR: Boris

TEST SITE: OATS 2

Frequency Factor Meter Reading Emission Level Limits Margin

(MHz) (dB) (dBµV) (dBµV/m) (dBµV/m) (dB)

135.170 ** -17.23 52.00 34.77 40.00 -5.23

159.750 ** -15.77 49.70 33.93 40.00 -6.07

299.776 ** -11.20 54.50 43.30 47.00 -3.70

366.404 ** -15.17 56.50 41.33 47.00 -5.67

399.714 ** -13.99 59.84 45.85 47.00 -1.15

433.026 ** -13.49 54.00 40.51 47.00 -6.49

Remark: 1. “ * ” Mark means readings are Peak Values. 2. “ ** “ Mark means readings are Quasi-Peak values. 3. Factor = Antenna Factor + Cable Loss – Pre-amplifier.

Test Mode: Mode 8: UNO-4673A (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

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2.11 Ripple on DC input power port immunity (IEC 61000-4-17)

2.11.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Power Amplifier SCHAFFNER PA5840-75 581-0010 2012/11/29

Function Generator SCHAFFNER FG5620-750-0051-00 52 2012/11/29

Ripple simulate IETC Ripple-01 IETC01 N.C.R.

Note: The above equipments are within the valid calibration period.

2.11.2 Block Diagram of Test Configuration

2.11.3 Test Requirement According to IEC 61850-3 clause 6; According to special request by client. DC input power: 10% Nominal DC voltage

Performance criterion: B

2.11.4 Configuration of Measurement (1.) Communications networking devices shall operate properly with an ripple of 5% peak

or less in the dc control voltage supply, provided the minimum instantaneous voltage is not less than 80% of rated voltage.

(2.) Place the EUT on 80cm table above RGP connect to DC power supply and confirm EUT operate function normally.

(3.) According by regulation and setup value as standard require, through to Power Amplifier and Function Generator connect to ripple simulate then start test.

(4.) During the test confirm EUT operate function normally.

Power Amplifier

Function Generator

EUTRipple simulate

To DC power supply

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2.11.5 Test Result

PASS. Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V)

Input Power: DC 110V DC input power: 10% Nominal DC voltage

Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 22.7 ; Humidity: 38 %; Atm pres: 101 Kpa; Test Engineer: Roy

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2.12 Voltage dips, short interruptions and voltage variations on d.c. input power port immunity (IEC 61000-4-29)

2.12.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

Power Amplifier SCHAFFNER PA5840-75 581-0010 2012/11/29

Function Generator SCHAFFNER FG5620-750-0051-00 52 2012/11/29

Note: The above equipments are within the valid calibration period.

2.12.2 Block Diagram of Test Configuration

2.12.3 Test Requirement According to IEC 61850-3 clause 6; According to special request by client. 30% reduction (Voltage Dips), 0.1 sec, Performance criterion: B 60% reduction (Voltage Dips), 0.1 sec, Performance criterion: B 100% reduction (Voltage Interruptions), 0.05 sec, Performance criterion: B

2.12.4 Configuration of Measurement (1.) DC power supplies and auxiliary circuits with dc voltage rating shall be able to continuously

withstand the maximum design voltage shown in Table 1. (2.) Power supplies with a wide dc voltage range (12 V to 250 V) are encouraged.

Rated voltage Maximum design voltage(V) (V) 12 14 24 28 48 56 110 123 125 140 220 246 250 280

EUTPower Amplifier

Function Generator

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(3.) Place the EUT on 80cm table above RGP connect to Power Amplifier with Function

Generator then adjust power source to DC and confirm EUT operate function normally. (4.) According by regulation setup to test max voltage and 85% voltage, then confirm EUT’s

function operate normally. (5.) Evaluated EUT after the test function normally.

2.12.5 Test Result

PASS. Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Input Power: DC 110V 30% reduction (Voltage Dips), 0.1 sec A B C

60% reduction (Voltage Dips), 0.1 sec A B C

100% reduction (Voltage Interruptions), 0.05 sec A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 21.9 ; Humidity: 39 %; Atm pres: 101 Kpa; Test Engineer: Roy

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2.13 Electrostatic Discharge Immunity test (IEC 61000-4-2)

2.13.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

ESD Simulator EMC PARTNER ESD3000 276 2013/03/01

Note: The above equipments are within the valid calibration period.

2.13.2 Block Diagram of Test Configuration

2.13.3 Test Requirement

According to IEC/TS 61000-6-5 table 1: Enclosure port Contact discharge: ±6 kV Air discharge: ±8 kV

Performance criterion: B According to special request by client.

Contact discharge: ±8 kV Air discharge: ±15 kV

Performance criterion: B

Metal Ground Plane

470kΩ Resister

470kΩ Resister

Insulation EUT

10 cm ESD GeneratorVertical

Coupling Plane

80 cm

Ground Connection (HCP)

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2.13.4 Configuration of Measurement (1.) Static electricity discharges shall be applied only to those points and surfaces of the EUT

which are expected to be touched during usual operation, including user access, as specified in the user manual, for example for ribbon and paper roll changes.

(2.) The discharges shall be applied in two ways: a) Contact discharges to the conductive surfaces and to coupling planes:

The EUT shall be exposed to at least 200 discharges, 100 each at negative and positive polarity, at a minimum of four test points (a minimum of 50 discharges at each point). One of the test points shall be subjected to at least 50 indirect discharges (contact) to the center of the front edge of the horizontal coupling plane (HCP), The remaining three test points shall each receive at least 50 direct contact discharges. If no direct contact test points are available, then at least 200 indirect discharges shall be applied in the indirect mode (see IEC 61000-4-2 for use of the Vertical Conducting Plane (VCP)). Tests shall be performed at a maximum repetition rate of one discharge per second.

b) Air discharge at slots and apertures, and insulating surfaces: On those parts of the EUT where it is not possible to perform contact discharge testing, the equipment should be investigated to identify user accessible points where breakdown may occur; examples are openings at edges of keys, or in the covers of keyboards and telephone handsets. Such points are tested using the air discharge method. See also IEC 61000-4-2 regarding painted surfaces. This investigation should be restricted to those areas normally handled by the user. A minimum of 10 single air discharges shall be applied to the selected test point for each such area.

(3.) The ESD generator (gun) was held perpendicular to the surface to which the discharge was applied. The application of electrostatic discharges to the contacts of open connectors is not required.

2.13.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Air discharge ±2 kV, ±4 kV, ±8 kV, ±15 kV: A B C Contact discharge ±2 kV, ±4 kV, ±6 kV, ±8 kV: A B C Indirect discharge (HCP) ±2 kV, ±4 kV, ±6 kV, ±8 kV: A B C Indirect discharge (VCP Front, Left, Back, Right) ±2 kV, ±4 kV, ±6 kV, ±8 kV:

A B C Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Air discharge ±2 kV, ±4 kV, ±8 kV, ±15 kV: A B C Contact discharge ±2 kV, ±4 kV, ±6 kV, ±8 kV: A B C Indirect discharge (HCP) ±2 kV, ±4 kV, ±6 kV, ±8 kV: A B C Indirect discharge (VCP Front, Left, Back, Right) ±2 kV, ±4 kV, ±6 kV, ±8 kV:

A B C

Temperature: 21.3 ; Humidity: 38 %; Atm pres: 101 Kpa; Test Engineer: Roy

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2.14 Voltage dips, short interruptions and voltage variations immunity tests (IEC 61000-4-11)

2.14.1 Instrument

Instrument Manufacturer Model Serial No. Next Cal. Date

EMC Pro System KeyTek EMC Pro 0003231 2012/04/14

Note: The above equipments are within the valid calibration period.

2.14.2 Block Diagram of Test Configuration

2.14.3 Test Requirement

According to IEC/TS 61000-6-5 table 3: A.C. input ports

30% reduction (Voltage Dips), 1 period, Performance criterion: B 60% reduction (Voltage Dips), 50 period, Performance criterion: B 100% reduction (Voltage Interruptions), 5 period, Performance criterion: B 100% reduction (Voltage Interruptions), 50 period, Performance criterion: B

2.14.4 Configuration of Measurement (1.) The power cord was used as supplied by the manufacturer. The EUT was connected

to the line output of the Voltage Dips and Interruption Generator. (2.) According to IEC/TS 61000-6-5, the EUT was tested for (I) 30% voltage dip of

supplied voltage with duration of 1 period, (II) 60% voltage dip of supplied voltage with duration of 50 period. All of the dip tests were carried out for a sequence of three voltage dips with intervals of 10 seconds, (III) 100% voltage interruption of supplied voltage with duration of 5 period, (VI) 100% voltage interruption of supplied voltage with duration of 50 period, which was a sequence of three voltage interruptions with intervals of 10 seconds.

Bounding

Grounding cable

Metal Ground Plane

Ground Plane

EUT

EMC Pro System

Insulation support

10cm

AC Line

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2.14.5 Test Result

PASS. Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) 30% reduction (Voltage Dips), 1 period A B C 60% reduction (Voltage Dips), 50 period A B C 100% reduction (Voltage Interruptions), 5 period A B C 100% reduction (Voltage Interruptions), 50 period A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

* “B”: During the test period the function was abnormal, and restored automatically after the test.

Temperature: 20.6 ; Humidity: 42 %; Atm pres: 101 Kpa; Test Engineer: Roy

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3 IEEE 1613 (Control Power Inputs)

3.1 DC rated control power inputs (IEEE C37.90)

3.1.1 Instrument Instrument Manufacturer Model Serial No. Next Cal. Date

Function Generator SCHAFFNER FG5620-750-0051-00 52 2012/11/29

Power Amplifier SCHAFFNER PA5840-75 581-0010 2012/11/29

Note: The above equipments are within the valid calibration period.

3.1.2 Block Diagram of Test Configuration

3.1.3 Test Requirement According to IEEE 1613 clause 5.1; According to special request by client. DC power: 85% of rated voltage DC power: 100% of rated voltage DC power: Maximum design voltage

Performance criterion: B

3.1.4 Configuration of Measurement (1.) DC power supplies and auxiliary circuits with dc voltage rating shall be able to

continuously withstand the maximum design voltage shown in Table 1. (2.) Power supplies with a wide dc voltage range(12 V to 250 V) are encouraged.

Rated voltage Maximum design voltage(V) (V) 12 14 24 28 48 56 110 123 125 140 220 246 250 280

EUTPower Amplifier

Function Generator

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3.1.5 Test Procedure (1.) Place the EUT on 80cm table above RGP connect to Power Amplifier with Function

Generator then adjust power source to DC and confirm EUT operate function normally. (2.) According by regulation setup to test max voltage and 85% voltage, then confirm EUT’s

function operate normally. (3.) Evaluated EUT after the test function normally.

3.1.6 Test Result

PASS. Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) DC power: 85% of rated voltage (93.5VDC)

Performance criterion: A B C DC power: 100% of rated voltage (110VDC)

Performance criterion: A B C DC power: Maximum design voltage (123VDC)

Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 21.4 ; Humidity: 39 %; Atm pres: 101 Kpa; Test Engineer: Roy

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3.2 Allowable AC component in dc control voltage supply (IEEE C37.90)

3.2.1 Instrument Instrument Manufacturer Model Serial No. Next Cal. Date

Function Generator SCHAFFNER FG5620-750-0051-00 52 2012/11/29

Power Amplifier SCHAFFNER PA5840-75 581-0010 2012/11/29

Ripple simulate IETC Ripple-01 IETC01 N.C.R.

DC Power Supply GW GPC-6030D C691103 2013/04/12

Note: The above equipments are within the valid calibration period.

3.2.2 Block Diagram of Test Configuration

3.2.3 Test Requirement According to IEEE 1613 clause 5.2; According to special request by client. DC power: 5% peak (>80%UN) Performance criterion: B

3.2.4 Configuration of Measurement Communications networking devices shall operate properly with an ripple of 5% peak or less in the dc control voltage supply, provided the minimum instantaneous voltage is not less than 80% of rated voltage.

3.2.5 Test Procedure (1.) Place the EUT on 80cm table above RGP connect to DC power supply and confirm EUT

operate function normally. (2.) According by regulation and setup value as standard require, through to Power Amplifier

and Function Generator connect to ripple simulate then start test. (3.) During the test confirm EUT operate function normally.

Power Amplifier

Function Generator

EUTRipple simulate

To DC power supply

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3.2.6 Test Result

Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) DC power: 5% peak (>80%UN)

Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 22.2 ; Humidity: 39 %; Atm pres: 101 Kpa; Test Engineer: Roy

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3.3 AC Rated Control Power Inputs (IEEE C37.90)

3.3.1 Instrument Instrument Manufacturer Model Serial No. Next Cal. Date

Special Power System T-POWER TFC-1002S T-9B023-17 N.C.R.

Note: The above equipments are within the valid calibration period.

3.3.2 Block Diagram of Test Configuration

3.3.3 Test Requirement According to IEEE 1613 clause 5.3; According to special request by client.

AC power: 85% of rated supply voltage AC power: 100% of rated supply voltage AC power: 110% of rated supply voltage

Performance criterion: B

3.3.4 Configuration of Measurement (1.) Prepare a Programmable AC Power Supply for EUT AC source. (2.) AC voltage ratings shall be capable of operating successfully over a minimum range

of 85% to 110% of rated voltage and frequency. (3.) Evaluated EUT after the test function normally.

3.3.5 Test Procedure (1.) EUT connect to AC power source and place on 80cm height table above RGP.

Confirm EUT’s function operate normally. (2.) According IEEE1613 clause 5.3 requirements, adjust AC power source voltage to

85%, 100% and 110%. (3.) During 10 minutes test procedure record any phenomenon of EUT and written in the

list table.

EUT

Special Power System

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3.3.6 Test Result

PASS.

Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) AC power: 85% of rated supply voltage (195.5VAC)

Performance criterion: A B C AC power: 100% of rated supply voltage (230VAC)

Performance criterion: A B C AC power: 110% of rated supply voltage (253VAC)

Performance criterion: A B C

* “A”: The apparatus shall continue to operate as intended during and after the test, no degradation of performance or loss of function.

Temperature: 22.6 ; Humidity: 43 %; Atm pres: 101 Kpa; Test Engineer: Roy

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4 IEEE 1613 (Insulation)

4.1 Dielectric strength (IEEE C37.90)

4.1.1 Instrument Instrument Manufacturer Model Serial No. Next Cal. Date

Withstand Voltage / insulation tester EXTECH 7142 1344529 2012/12/22

Note: The above equipments are within the valid calibration period.

4.1.2 Block Diagram of Test Configuration

4.1.3 Test Requirement According to IEEE 1613 clause 6.2;

Un≦50V: Power supply input 0.5 kV (rms) Signal Port 0.5 kV (rms)

Un>50V: Power supply input 2.0 kV (rms) Signal Port 0.5 kV (rms)

For dc testing, the test voltages shall be 1.4 times the values given for ac tests. Performance criterion: PASS (<20mA)

4.1.4 Configuration of Measurement (1.) Un≦50V, Test voltage use 0.5kV or Un>50V, Test voltage use 2.0kV. (2.) Insulation test unit test between each independent circuit and the ground circuit. Each

independent circuit terminals can be merge together for the test. Independent circuit groups are to be defined by the manufacturer.

(3.) Dielectric tests are not required across contacts with surge-suppression components, or across solid-state output circuits.

(4.) During the testing, no input or auxiliary energizing quantity shall be applied to the device. (5.) Test voltage shall be applied directly to the device terminals. From this initial value, the test

voltage shall be raised to the specified value, in such a manner that no appreciable transients occur, and then maintained for 1 min.

Withstand Voltage/insulation

testerEUT

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4.1.5 Test Procedure (1.) EUT in power off state and place on 80cm height table above RGP then connect to

Insulation equipment. (2.) According IEEE1613 clause 6.2 requirements, setup insulation equipment to test each

EUT’s power and I/O ports. (3.) Record each test result and confirm it meet manufacture’s standard.

4.1.6 Test Result

Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Power To GND, Level: 2.0 kV (ac)

Performance criterion: PASS LAN 1 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS GbE1 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS RS232 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS BNC To GND, Level: 0.7 kV (dc)

Performance criterion: PASS PS2 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS DVI To GND, Level: 0.7 kV (dc)

Performance criterion: PASS

Mode 4: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (DC 110V) Power To GND, Level: 2.8 kV (dc)

Performance criterion: PASS LAN 1 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS GbE1 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS RS232 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS BNC To GND, Level: 0.7 kV (dc)

Performance criterion: PASS PS2 To GND, Level: 0.7 kV (dc)

Performance criterion: PASS DVI To GND, Level: 0.7 kV (dc)

Performance criterion: PASS

Temperature: 20.8 ; Humidity: 42 %; Atm pres: 101 Kpa; Test Engineer: Roy

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4.2 Impulse Voltage (IEEE C37.90)

4.2.1 Instrument Instrument Manufacturer Model Serial No. Next Cal. Date

EMC Pro Systems* KeyTek EMC Pro 0003234 2013/03/28

Note: 1. “*”: Output impendence 500Ω 2. The above equipments are within the valid calibration period.

4.2.2 Block Diagram of Test Configuration

4.2.3 Test Requirement According to IEEE 1613 clause 6.3; According to special request by client.

Power supply input 5 kV Performance criterion: PASS

4.2.4 Configuration of Measurement (1.) During the impulse testing, no input or auxiliary energizing quantity shall be applied to the

device. (2.) Test voltage shall be directly applied to the device terminals. The generator source

impedance shall match 500Ω ±10% (3.) Three positive and three negative impulses shall be applied. The interval between each

impulse shall be 1s or greater.

EMC Pro Systems EUT

Controller Computer

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4.2.5 Test Procedure (1.) EUT connect to AC power source and place on 80cm height table above RGP. Confirm

EUT’s function operate normally. (2.) According IEEE1613 clause 6.3 requirements, set insulation equipment to test EUT’s

power. (3.) Record each test result and confirm it meet regulation standard.

4.2.6 Test Result

Mode 1: UNO-4683 (1920*1080) (GbE1: 1Gbps + LAN 1: 100Mbps) (AC 230V) Power To GND, Level: 5 kV

Performance criterion: PASS LAN 1 To GND, Level: 5 kV

Performance criterion: PASS GbE1 To GND, Level: 5 kV

Performance criterion: PASS RS232 To GND, Level: 5 kV

Performance criterion: PASS BNC To GND, Level: 5 kV

Performance criterion: PASS

Mode 4: UNO-4683 (1920*1080) (DC 110V) Power To GND, Level: 5 kV

Performance criterion: PASS LAN 1 To GND, Level: 5 kV

Performance criterion: PASS GbE1 To GND, Level: 5 kV

Performance criterion: PASS RS232 To GND, Level: 5 kV

Performance criterion: PASS BNC To GND, Level: 5 kV

Performance criterion: PASS

Temperature: 20.5 ; Humidity: 40 %; Atm pres: 101 Kpa; Test Engineer: Roy

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5 Photographs of Test

5.1 Conducted Emission Measurement

Front View

Rear View

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5.2 Radiated Emission Measurement

Front View

Rear View

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5.3 Electrostatic Discharge Test Point

View of Discharge Point-1 (Red: Contact discharge)

View of Discharge Point-2 (Red: Contact discharge)

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6 Photographs of EUT

6.1 Model No.: UNO-4683

Front View of EUT

Rear View of EUT

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I/O Port-1

I/O Port-2

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6.2 Model No.: UNO-4673A

Front View of EUT

Rear View of EUT

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I/O Port-3

I/O Port-4