VCCI TEST REPORT. for. Communication Appliance

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1 VCCI TEST REPORT for Communication Appliance MODEL: ODS-VL2-8; ODS-VL2-8-2AC; ODS-VL2-8-DC; ODS-VL2-8-2DC; ODS-VL2-XL-8; ODS-VL2-XL-8-2A; ODS-VL2-XL-8-DC; ODS-VL2-XL-8-2D; ODS-VL2-16; ODS-VL2-16-2AC; ODS-VL2-16-DC; ODS-VL2-16-2DC; ODS-VL2-XL-16; ODS-VL2-XL-16-2A; ODS-VL2-XL-16-DC; ODS-VL2-XL-16-2D; ODS-VL2-32; ODS-VL2-32-2AC; ODS-VL2-32-DC; ODS-VL2-32-2DC; ODS-VL2-XL-32; ODS-VL2-XL-32-2A; ODS-VL2-XL-32-DC; ODS-VL2-XL-32-2D; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -6G; Alteon -NG 5208 XL -6G dual AC; Alteon -NG 5208 XL -6G DC; Alteon -NG 5208 XL-6G dual DC; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -12G; Alteon -NG 5208 XL -12G dual AC; Alteon -NG 5208 XL -12G DC; Alteon -NG 5208 XL -12G dual DC; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -26G; Alteon -NG 5208 XL -26G dual AC; Alteon -NG 5208 XL -26G DC; Alteon -NG 5208 XL -26G dual DC Test Report Number: T160602D03-V Issued to: Radware Ltd. 22 Raoul Wallenberg St. Tel Avivi 69710, Israel Issued by: Compliance Certification Services Inc. Xindian Lab. No.163-1, Jhongsheng Rd., Xindian Dist., New Taipei City, Taiwan. TEL: FAX: Issued Date: June 3, 2016 Note: This report shall not be reproduced except in full, without the written approval of Compliance Certification Services Inc. This document may be altered or revised by Compliance Certification Services Inc. personnel only, and shall be noted in the revision section of the document. The client should not use it to claim product endorsement by TAF, A2LA, NVLAP, NIST or any government agencies. The test results in the report only apply to the tested sample. Page 1 / 31

2 Revision History Rev. Issue Date Revisions Effect Page Revised By 00 May 29, 2014 Initial Issue ALL Linda Wu 01 June 3, 2016 Update Standard ALL Linda Wu Page 2 / 31

3 TABLE OF CONTENTS 1 TEST RESULT CERTIFICATION EUT DESCRIPTION TEST METHODOLOGY DECISION OF FINAL TEST MODE EUT SYSTEM OPERATION SETUP OF EQUIPMENT UNDER TEST DESCRIPTION OF SUPPORT UNITS CONFIGURATION OF SYSTEM UNDER TEST FACILITIES AND ACCREDITATIONS FACILITIES ACCREDITATIONS MEASUREMENT UNCERTAINTY ANTENNA BEAM WIDTH (w) CONDUCTED EMISSION MEASUREMENT LIMITS OF CONDUCTED EMISSION MEASUREMENT TEST INSTRUMENTS TEST PROCEDURES TEST SETUP DATA SAMPLE TEST RESULTS CONDUCTED EMISSION MEASUREMENT AT TELECOMMUNICATION PORTS LIMITS TEST INSTRUMENTS TEST PROCEDURES TEST SETUP DATA SAMPLE TEST RESULTS RADIATED EMISSION MEASUREMENT LIMITS OF RADIATED EMISSION MEASUREMENT TEST INSTRUMENTS TEST PROCEDURES TEST SETUP DATA SAMPLE TEST RESULTS PHOTOGRAPHS OF THE TEST CONFIGURATION...29 APPENDIX 1 - PHOTOGRAPHS OF EUT... A1-1 Page 3 / 31

4 1 TEST RESULT CERTIFICATION Product: Model: Brand: Applicant: Manufacturer: Communication Appliance ODS-VL2-8; ODS-VL2-8-2AC; ODS-VL2-8-DC; ODS-VL2-8-2DC; ODS-VL2-XL-8; ODS-VL2-XL-8-2A; ODS-VL2-XL-8-DC; ODS-VL2-XL-8-2D; ODS-VL2-16; ODS-VL2-16-2AC; ODS-VL2-16-DC; ODS-VL2-16-2DC; ODS-VL2-XL-16; ODS-VL2-XL-16-2A; ODS-VL2-XL-16-DC; ODS-VL2-XL-16-2D; ODS-VL2-32; ODS-VL2-32-2AC; ODS-VL2-32-DC; ODS-VL2-32-2DC; ODS-VL2-XL-32; ODS-VL2-XL-32-2A; ODS-VL2-XL-32-DC; ODS-VL2-XL-32-2D; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -6G; Alteon -NG 5208 XL -6G dual AC; Alteon -NG 5208 XL -6G DC; Alteon -NG 5208 XL-6G dual DC; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -12G; Alteon -NG 5208 XL -12G dual AC; Alteon -NG 5208 XL -12G DC; Alteon -NG 5208 XL -12G dual DC; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -26G; Alteon -NG 5208 XL -26G dual AC; Alteon -NG 5208 XL -26G DC; Alteon -NG 5208 XL -26G dual DC Radware Radware Ltd. 22 Raoul Wallenberg St. Tel Avivi 69710, Israel Radware Ltd. 22 Raoul Wallenberg St. Tel Avivi 69710, Israel Tested: May 27, 2014 & May 28, 2014 EMISSION Standard Item Result Remarks Conducted (Power Port) PASS Meet Class A limit V-2/ & V-3/ Conducted (Telecom port) PASS Meet Class A limit Radiated PASS Meet Class A limit Note: 1. The statements of test result on the above are decided by the request of test standard only; the measurement uncertainties are not factored into this compliance determination. 2. The information of measurement uncertainty is available upon the customer s request. Deviation from Applicable Standard None The above equipment has been tested by Compliance Certification Services Inc., and found compliance with the requirements set forth in the technical standards mentioned above. The results of testing in this report apply only to the product/system, which was tested. Other similar equipment will not necessarily produce the same results due to production tolerance and measurement uncertainties. Page 4 / 31

5 2 EUT DESCRIPTION Product Brand Name Model Applicant Housing material Identify Number Communication Appliance Radware ODS-VL2-8; ODS-VL2-8-2AC; ODS-VL2-8-DC; ODS-VL2-8-2DC; ODS-VL2-XL-8; ODS-VL2-XL-8-2A; ODS-VL2-XL-8-DC; ODS-VL2-XL-8-2D; ODS-VL2-16; ODS-VL2-16-2AC; ODS-VL2-16-DC; ODS-VL2-16-2DC; ODS-VL2-XL-16; ODS-VL2-XL-16-2A; ODS-VL2-XL-16-DC; ODS-VL2-XL-16-2D; ODS-VL2-32; ODS-VL2-32-2AC; ODS-VL2-32-DC; ODS-VL2-32-2DC; ODS-VL2-XL-32; ODS-VL2-XL-32-2A; ODS-VL2-XL-32-DC; ODS-VL2-XL-32-2D; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -6G; Alteon -NG 5208 XL -6G dual AC; Alteon -NG 5208 XL -6G DC; Alteon -NG 5208 XL-6G dual DC; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -12G; Alteon -NG 5208 XL -12G dual AC; Alteon -NG 5208 XL -12G DC; Alteon -NG 5208 XL -12G dual DC; Alteon -NG G; Alteon -NG G dual AC; Alteon -NG G DC; Alteon -NG G dual DC; Alteon -NG 5208 XL -26G; Alteon -NG 5208 XL -26G dual AC; Alteon -NG 5208 XL -26G DC; Alteon -NG 5208 XL -26G dual DC Radware Ltd. Metal case T140524D02 Received Date May 24, 2014 EUT Power Rating AC Power During Test VAC, 50-60Hz, 5-3A -36~-72VDC, 12-6A 100VAC / 60Hz I/O PORT I/O PORT TYPES Q TY TESTED WITH 1. USB Port LAN Port Console Port Fiber Port 2 2 Note: Client consigns only one model sample to test (Model Number: ODS-VL2-XL-32-2A). Page 5 / 31

6 Model Differences Model Name Different PSU Memory size XL / Non XL Tested (Check) ODS-VL2-8 AC ODS-VL2-8-2AC AC Redundant ODS-VL2-8-DC DC Non XL ODS-VL2-8-2DC DC Redundant ODS-VL2-XL-8 AC 8GB ODS-VL2-XL-8-2A AC Redundant ODS-VL2-XL-8-DC DC Non XL ODS-VL2-XL-8-2D DC Redundant ODS-VL2-16 AC ODS-VL2-16-2AC AC Redundant ODS-VL2-16-DC DC Non XL ODS-VL2-16-2DC DC Redundant ODS-VL2-XL-16 AC 16GB ODS-VL2-XL-16-2A AC Redundant ODS-VL2-XL-16-DC DC XL ODS-VL2-XL-16-2D DC Redundant ODS-VL2-32 AC ODS-VL2-32-2AC AC Redundant ODS-VL2-32-DC DC Non XL ODS-VL2-32-2DC DC Redundant ODS-VL2-XL-32 AC 32GB ODS-VL2-XL-32-2A AC Redundant ODS-VL2-XL-32-DC DC XL ODS-VL2-XL-32-2D DC Redundant Alteon -NG G AC Alteon -NG G dual AC AC Redundant Alteon -NG G DC DC Non XL Alteon -NG G dual DC DC Redundant Alteon -NG 5208 XL -6G AC 8GB Alteon -NG 5208 XL -6G dual AC AC Redundant Alteon -NG 5208 XL -6G DC DC XL Alteon -NG 5208 XL-6G dual DC DC Redundant Alteon -NG G AC Alteon -NG G dual AC AC Redundant Alteon -NG G DC DC Non XL Alteon -NG G dual DC DC Redundant Alteon -NG 5208 XL -12G AC 16GB Alteon -NG 5208 XL -12G dual AC AC Redundant Alteon -NG 5208 XL -12G DC DC XL Alteon -NG 5208 XL -12G dual DC DC Redundant Alteon -NG G AC Alteon -NG G dual AC AC Redundant Alteon -NG G DC DC Non XL Alteon -NG G dual DC DC Redundant Alteon -NG 5208 XL -26G AC 32GB Alteon -NG 5208 XL -26G dual AC AC Redundant Alteon -NG 5208 XL -26G DC DC XL Alteon -NG 5208 XL -26G dual DC DC Redundant Page 6 / 31

7 3 TEST METHODOLOGY 3.1. DECISION OF FINAL TEST MODE The EUT was tested together with the below additional components, and a configuration, which produced the worst emission levels, was selected and recorded in this report. The test configuration modes are as the following: Conduction Modes (Power port): 1 AC Power Left Mode 2 AC Power Right Mode 3 DC Power Left Mode 4 DC Power Right Mode Conduction Modes (Telecom port): 1 LAN 1 ISN Mode 2 LAN 8 Radiation Modes: AC Mode 1 AC Mode / 1-6GHz 2 DC Mode Worst: Conduction (Power port): Mode 2 Conduction (Telecom port): Mode 1 Radiation: Mode EUT SYSTEM OPERATION 1. EUT console port connects Notebook. 2. Set Putty to 19200, press the sure to test. Note: Test program is self-repeating throughout the test. Page 7 / 31

8 4 SETUP OF EQUIPMENT UNDER TEST 4.1. DESCRIPTION OF SUPPORT UNITS The EUT has been tested as an independent unit together with other necessary accessories or support units. The following support units or accessories were used to form a representative test configuration during the tests. EUT Devices: No. Equipment Model No. Brand Name 1 CPU (3.3GHz) E3-1230V2 Intel 2 Mother board COB-G501 CASWELL 3 Memory (8GB) X4 N/A WARIS 4 HDD (500GB) N/A HGST 5 Power Supply YH-5301K DC 3Y POWER 6 YH-5301E AC 3Y POWER 7 Security Adapter CNN NHB-2.0-G CAVIUM INC 8 CNN NHB-2.0-G CAVIUM INC 9 Finisar FTLX8571D3BCL-RW 10 Finisar FTLX1471D3BCL-RW 11 Transceivers Sanoc SI8512-X5ATO-3C 12 Sanoc SI ATO 13 Sanoc SI ATO 14 Methode DM7041-R-L Peripherals Devices: No. Equipment Model No. Serial No. FCC ID / BSMI ID Brand Name Data Cable Power Cord 1 USB Flash Disk N/A N/A N/A ADATA N/A N/A 2 LAN Loop N/A N/A N/A N/A 3 Fiber Loop N/A N/A N/A N/A 4 Console Cable N/A N/A N/A N/A Unshielded, 3.0m x4 Unshielded, 0.5m Unshielded, 1.5m N/A N/A N/A Note: 1) All the equipment/cables were placed in the worst-case configuration to maximize the emission during the test. 2) Grounding was established in accordance with the manufacturer s requirements and conditions for the intended use. Page 8 / 31

9 4.2. CONFIGURATION OF SYSTEM UNDER TEST EUT 4 AC Power Page 9 / 31

10 5 FACILITIES AND ACCREDITATIONS 5.1. FACILITIES All measurement facilities used to collect the measurement data are located at CCSrf Taiwan Xindian Lab. at No.163-1, Jhongsheng Rd., Xindian Dist., New Taipei City, Taiwan. The sites are constructed in conformance with the requirements of ANSI C63.4 and CISPR Publication 22. All receiving equipment conforms to CISPR , CISPR , CISPR , CISPR and CISPR ACCREDITATIONS Our laboratories are accredited and approved by the following accreditation body according to ISO/IEC Taiwan TAF USA A2LA The measuring facility of laboratories has been authorized or registered by the following approval agencies. Canada Industry Canada Norway Nemko Japan VCCI Taiwan BSMI USA FCC Copies of granted accreditation certificates are available for downloading from our web site, Page 10 / 31

11 5.3. MEASUREMENT UNCERTAINTY Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the EUT as specified in CISPR : Measurement Frequency Uncertainty Conducted emissions (Power port) 0.15MHz ~ 30MHz 1.56 Conducted emissions (Telecom port) 0.15MHz ~ 30MHz 2.19 Radiated emissions 30MHz ~ 1000MHz MHz ~ 6000MHz 3.23 This uncertainty represents an expanded uncertainty expressed at approximately the 95% confidence level using a coverage factor of k=2. Consistent with industry standard (e.g. CISPR 22: 2005, clause 11, Measurement Uncertainty) determining compliance with the limits shall be base on the results of the compliance measurement. Consequently the measure emissions being less than the maximum allowed emission result in this be a compliant test or passing test. The acceptable measurement uncertainty value without requiring revision of the compliance statement is base on conducted and radiated emissions being less than U CISPR which is 3.6dB and 5.2dB respectively. CCS values (called U Lab in CISPR ) is less than U CISPR as shown in the table above. Therefore, MU need not be considered for compliance ANTENNA BEAM WIDTH (w) Frequency Frequency 3 db d=3m GHz GHz 3 db d=3m E-plane w w H-plane ( ) m ( ) m Formula: w = 2d x tan(0.5 x 3 db) Page 11 / 31

12 6 CONDUCTED EMISSION MEASUREMENT 6.1. LIMITS OF CONDUCTED EMISSION MEASUREMENT FREQUENCY (MHz) Class A Class B Quasi-peak Average Quasi-peak Average NOTE: (1) The lower limit shall apply at the transition frequencies. (2) The limit decreases in line with the logarithm of the frequency in the range of 0.15 to 0.50 MHz. (3) All emanations from a class A/B digital device or system, including any network of conductors and apparatus connected thereto, shall not exceed the level of field strengths specified above TEST INSTRUMENTS Conducted Emission room # B Name of Equipment Manufacturer Model Serial Number Calibration Due TEST RECEIVER R&S ESCI /10/2014 LISN (EUT) SCHWARZBECK NSLK /10/2014 LISN SCHWARZBECK NSLK /07/2015 BNC CABLE EMCI CFD300-NL BNC B4 03/13/2015 Pulse Limiter R&S ESH3-Z /08/2015 THERMO- HYGRO METER Test S/W WISEWIND 201A No /10/2014 EZ-EMC NOTE: 1. The calibration interval of the above test instruments is 12 months and the calibrations are traceable to NML/ROC and NIST/USA. 2. N.C.R = No Calibration Request. 3. Mains port conducted EMI measurement facility: C-4352 Page 12 / 31

13 6.3. TEST PROCEDURES (please refer to measurement standard or CCS SOP PA-031) Procedure of Preliminary Test The EUT and Support equipment, if needed, was set up as per the test configuration to simulate typical usage per the user s manual. When the EUT is a tabletop system, a wooden table with a height of 0.8 meters is used and is placed on the ground plane as per V-3 (see Test Facility for the dimensions of the ground plane used). When the EUT is a floor standing equipment, it is placed on the ground plane, which has a 15 cm non-conductive covering to insulate the EUT from the ground plane. All I/O cables were positioned to simulate typical actual usage as per V-3. The test equipment EUT installed received AC main power, through a Line Impedance Stabilization Network (LISN), which supplied power source and was grounded to the ground plane. All support equipment power received from a second LISN. The EUT test program was started. Emissions were measured on each current carrying line of the EUT using an EMI Test Receiver connected to the LISN powering the EUT. The Receiver scanned from 150kHz to 30MHz for emissions in each of the test modes. During the above scans, the emissions were maximized by cable manipulation. The test mode(s) described in Item 3.1 were scanned during the preliminary test. After the preliminary scan, we found the test mode described in Item 3.1 producing the highest emission level. The EUT configuration and cable configuration of the above highest emission levels were recorded for reference of the final test. Procedure of Final Test EUT and support equipment were set up on the test bench as per the configuration with highest emission level in the preliminary test. A scan was taken on both power lines, Line 1 and Line 2, recording at least the six highest emissions. Emission frequency and amplitude were recorded into a computer in which correction factors were used to calculate the emission level and compare reading to the applicable limit. The test data of the worst-case condition(s) was recorded. Page 13 / 31

14 6.4. TEST SETUP Vert. reference plane EMI receiver 40cm EUT 80cm LISN Reference ground plane For the actual test configuration, please refer to the related item Photographs of the Test Configuration DATA SAMPLE Freq. (MHz) Reading Factor Result Limit Margin Detector (P/Q/A) Line (L1/L2) x.xx Q L1 Freq. Reading Factor Result Limit Margin P Q A L1 L2 = Emission frequency in MHz = Uncorrected Analyzer/Receiver reading = Insertion loss of LISN + Cable Loss + Pulse Limit = Reading + Factor = Limit stated in standard = Reading in reference to limit = Peak Reading = Quasi-peak Reading = Average Reading = Hot side = Neutral side Calculation Formula Margin = Result Limit Page 14 / 31

15 6.6. TEST RESULTS Model No. ODS-VL2-XL-32-2A 6dB Bandwidth 9 khz Environmental Conditions 24 o C, 60% RH Test Mode Mode 2 Tested by Andy Lin Phase L1 Standard VCCI CLASS A Freq. (MHz) Frequency Range Investigated Reading Conducted Emission Readings Factor Result Limit 150 khz to 30 MHz Margin Detector (P/Q/A) Line (L1/L2) P L P L P L P L P L P L1 Note: L1 = Line One (Live Line) / L2 = Line Two (Neutral Line). Page 15 / 31

16 Model No. ODS-VL2-XL-32-2A 6dB Bandwidth 9 khz Environmental Conditions 24 o C, 60% RH Test Mode Mode 2 Tested by Andy Lin Phase L2 Standard VCCI CLASS A Freq. (MHz) Frequency Range Investigated Reading Conducted Emission Readings Factor Result Limit 150 khz to 30 MHz Margin Detector (P/Q/A) Line (L1/L2) P L P L P L P L P L P L2 Note: L1 = Line One (Live Line) / L2 = Line Two (Neutral Line). Page 16 / 31

17 7 CONDUCTED EMISSION MEASUREMENT AT TELECOMMUNICATION PORTS 7.1. LIMITS For Class A Equipment FREQUENCY (MHz) Voltage Limit Current Limit (dbua) Quasi-peak Average Quasi-peak Average 0.15 ~ ~ ~ ~ ~ ~ NOTE: The limits decrease linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz. For Class B Equipment FREQUENCY (MHz) Voltage Limit Current Limit (dbua) Quasi-peak Average Quasi-peak Average ~ ~ ~ ~ NOTE: The limits decrease linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz TEST INSTRUMENTS Conducted Emission room # B Name of Equipment Manufacturer Model Serial Number Calibration Due TEST RECEIVER R&S ESCI /10/2014 LISN (EUT) SCHWARZBECK NSLK /10/2014 LISN SCHWARZBECK NSLK /07/2015 BNC CABLE EMCI CFD300-NL BNC B4 03/13/2015 Pulse Limiter R&S ESH3-Z /08/2015 THERMO- HYGRO METER WISEWIND 201A No /10/2014 ISN TESEQ ISN T /12/2014 Test S/W EZ-EMC NOTE: 1. The calibration interval of the above test instruments is 12 months and the calibrations are traceable to NML/ROC and NIST/USA. 2. N.C.R = No Calibration Request. 3. Telecommunication ports conducted EMI measurement facility: T-1838 Page 17 / 31

18 7.3. TEST PROCEDURES (please refer to measurement standard or CCS SOP PA-031) Selecting ISN for unscreened cable or a current probe for screened cable to take measurement. The port of the EUT was connected to the remote side support equipment through the ISN/Current Probe and communication in normal condition. Making a overall range scan by using the test receiver controlled by controller and record at least six highest emissions for showing in the test report. Emission frequency and amplitude were recorded into a computer in which correction factors were used to calculate the emission level and compare reading to the applicable limit. In case of measuring on the screened cable, the current limit shall be applied; otherwise the voltage limit should be applied. The following test mode was scanned during the preliminary test: Modes: 1 LAN 1 2 LAN 8 ISN Mode After the preliminary scan, we found the following test mode(s) producing the highest emission level and test data of the worst case was recorded. Mode: 1. Page 18 / 31

19 7.4. TEST SETUP For the actual test configuration, please refer to the related item Photographs of the Test Configuration DATA SAMPLE Freq. (MHz) Reading Factor Result Limit Margin Detector (P/Q/A) x.xx Q Freq. Reading Factor Result Limit Margin P Q A = Emission frequency in MHz = Uncorrected Analyzer/Receiver reading = Insertion loss of LISN + Cable Loss + Pulse Limit = Reading + Factor = Limit stated in standard = Reading in reference to limit = Peak Reading = Quasi-peak Reading = Average Reading Calculation Formula Margin = Result Limit Page 19 / 31

20 7.6. TEST RESULTS Model No. ODS-VL2-XL-32-2A 6dB Bandwidth 9 khz Environmental Conditions 24 o C, 60% RH Test Mode Mode 1 Tested by Andy Lin Standard VCCI CLASS A Freq. (MHz) Frequency Range Investigated Reading Conducted Emission Readings Factor Result Limit 150 khz to 30 MHz Margin Detector (P/Q/A) P P P P P P Page 20 / 31

21 8 RADIATED EMISSION MEASUREMENT 8.1. LIMITS OF RADIATED EMISSION MEASUREMENT Below 1GHz Above 1GHz FREQUENCY (MHz) dbuv/m (At 10m) Class A Class B 30 ~ ~ Frequency (MHz) Class A (dbuv/m) (At 3m) Class B (dbuv/m) (At 3m) Average Peak Average Peak 1000 ~ ~ NOTE: The lower limit shall apply at the transition frequencies. According to VCCI V-3/ clause 4.3.2, the measurement frequency range shown in the following table: Highest frequency generated or used within the EUT or on which the EUT operates or tunes (MHz) Upper frequency of measurement range (MHz) Less than Above times of the highest frequency or 6GHz, whichever is less Page 21 / 31

22 8.2. TEST INSTRUMENTS Open Area Test Site # I Name of Equipment Manufacturer Model Serial Number Calibration Due MEASURE RECEIVER R&S ESCI /26/2014 ANTENNA SUNOL JB1 A /09/2014 AMPLIFIER SCHAFFNER CPA9231A /06/2014 CABLE EMCI 8Dr N-TYPE #I5 I6 02/04/2015 THERMO- HYGRO METER Test S/W SPECTRUM ANALYZER (9kHz-30GHz) SIGNAL ANALYZER (9kHz-44GHz) ANTENNA (1-18GHz) AMPLIFIER (1-26.5GHz) CABLE (1-40GHz) CABLE (1-40GHz) CABLE (1-26.5GHz) THERMO- HYGRO METER Test S/W WISEWIND 201A No /10/2014 Above 1GHz Used EZ-EMC R&S FSP /22/2014 Agilent N9010A MY /23/2014 ETS /31/2014 HP 8449B 3008A /15/2014 HUBER +SUHNER HUBER +SUHNER HUBER +SUHNER SUCOFLEX /2 12/15/2014 SUCOFLEX /2 12/15/2014 SUCOFLEX 104PEA 33960/4PEA 12/15/2014 WISEWIND 201A No /12/2015 EZ-EMC NOTE: 1. The calibration interval of the above test instruments is 12 months and the calibrations are traceable to NML/ROC and NIST/USA. 2. N.C.R = No Calibration Request. 3. Radiated EMI measurement below 1GHz facility: R Radiated EMI measurement above 1GHz facility: G-188 Page 22 / 31

23 8.3. TEST PROCEDURES (please refer to measurement standard or CCS SOP PA-031) Procedure of Preliminary Test The equipment was set up as per the test configuration to simulate typical usage per the user s manual. When the EUT is a tabletop system, a wooden turntable with a height of 0.8 meters is used which is placed on the ground plane. When the EUT is a floor standing equipment, it is placed on the ground plane which has a 15 cm non-conductive covering to insulate the EUT from the ground plane. Support equipment, if needed, was placed as per V-3. All I/O cables were positioned to simulate typical usage as per V-3. The EUT received AC power source from the outlet socket under the turntable. All support equipment power received from another socket under the turntable. The antenna was placed at 3 or 10 meters away from the EUT as stated in V-3. The antenna connected to the Spectrum Analyzer via a cable and at times a pre-amplifier would be used. The Analyzer / Receiver quickly scanned from 30MHz to 6000MHz. The EUT test program was started. Emissions were scanned and measured rotating the EUT to 360 degrees and positioning the antenna 1 to 4 meters above the ground plane, in both the vertical and the horizontal polarization, to maximize the emission reading level. The test mode(s) described in Item 3.1 were scanned during the preliminary test: After the preliminary scan, we found the test mode described in Item 3.1 producing the highest emission level. The EUT and cable configuration, antenna position, polarization and turntable position of the above highest emission level were recorded for the final test. Procedure of Final Test EUT and support equipment were set up on the turntable as per the configuration with highest emission level in the preliminary test. The Analyzer / Receiver scanned from 30MHz to 6000MHz. Emissions were scanned and measured rotating the EUT to 360 degrees, varying cable placement and positioning the antenna 1 to 4 meters above the ground plane, in both the vertical and the horizontal polarization, to maximize the emission reading level. Recorded at least the six highest emissions. Emission frequency, amplitude, antenna position, polarization and turntable position were recorded into a computer in which correction factors were used to calculate the emission level and compare reading to the applicable limit. Below 1GHz the Q.P. reading and above 1GHz the Peak and Average reading are presented. The test data of the worst-case condition(s) was recorded. Page 23 / 31

24 8.4. TEST SETUP Below 1GHz Test table & Turntable 1m ~ 4m Power Cable EUT 0.8 m Coaxial Cable Filter To Power 10 m EMI Receiver Ground Plane Above 1GHz For the actual test configuration, please refer to the related item Photographs of the Test Configuration. Page 24 / 31

25 8.5. DATA SAMPLE Below 1GHz Freq. (MHz) Reading Factor (db/m) Result (dbuv/m) Limit (dbuv/m) Margin Detector (P/Q) Pol. (H/V) x.xx Q H Above 1GHz Freq. (MHz) Reading Factor (db/m) Result (dbuv/m) Limit (dbuv/m) Margin Detector (P/A) Pol. (H/V) x.xx A H Freq. Reading Factor Result Limit Margin P Q A H V = Emission frequency in MHz = Uncorrected Analyzer/Receiver reading = Antenna Factor + Cable Loss - Amplifier Gain = Reading + Factor = Limit stated in standard = Reading in reference to limit = Peak Reading = Quasi-peak Reading = Average Reading = Antenna Polarization: Horizontal = Antenna Polarization: Vertical Calculation Formula Margin = Result (dbuv/m) Limit (dbuv/m) Page 25 / 31

26 8.6. TEST RESULTS Below 1GHz Model No. ODS-VL2-XL-32-2A Test Mode Mode 1 Environmental Conditions 25 o C, 82% RH 6dB Bandwidth 120 khz Antenna Pole Vertical Antenna Distance 10m Detector Function Quasi-peak. Tested by Andy Lin Standard VCCI CLASS A Freq. (MHz) Frequency Range Investigated Reading Factor (db/m) Radiated Emission Readings Result (dbuv/m) Limit (dbuv/m) 30 MHz to 1000 MHz at 10m Margin Height (cm) Degree ( ) Detector (P/Q) Q V Q V Q V Q V Q V Q V Note: P= Peak Reading; Q= Quasi-peak Reading. Pol. (H/V) Page 26 / 31

27 Model No. ODS-VL2-XL-32-2A Test Mode Mode 1 Environmental Conditions 25 o C, 82% RH 6dB Bandwidth 120 khz Antenna Pole Horizontal Antenna Distance 10m Detector Function Quasi-peak. Tested by Andy Lin Standard VCCI CLASS A Freq. (MHz) Frequency Range Investigated Reading Factor (db/m) Radiated Emission Readings Result (dbuv/m) Limit (dbuv/m) 30 MHz to 1000 MHz at 10m Margin Height (cm) Degree ( ) Detector (P/Q) Q H Q H Q H Q H Q H Q H Note: P= Peak Reading; Q= Quasi-peak Reading. Pol. (H/V) Page 27 / 31

28 Above 1GHz Model No. ODS-VL2-XL-32-2A Test Mode Mode 1 Environmental Conditions 25 o C, 62% RH 6dB Bandwidth 1 MHz Antenna Pole Vertical / Horizontal Antenna Distance 3m Highest frequency generated or used 3300MHz Upper frequency 6000MHz Detector Function Peak and average. Tested by Andy Lin Standard VCCI CLASS A Frequency Range Investigated Freq. (MHz) Reading Radiated Emission Readings Factor (db/m) Result (dbuv/m) Limit (dbuv/m) Above 1GHz at 3m Margin Detector (P/A) P V P V P V P V P V P V Pol. (H/V) Frequency Range Investigated Freq. (MHz) Reading Radiated Emission Readings Factor (db/m) Result (dbuv/m) Limit (dbuv/m) Above 1GHz at 3m Margin Detector (P/A) P H P H P H P H P H P H Note: P= Peak Reading; A= Average Reading. Pol. (H/V) Page 28 / 31

29 9 PHOTOGRAPHS OF THE TEST CONFIGURATION CONDUCTED EMISSION TEST Page 29 / 31

30 CONDUCTED EMISSION TEST AT TELECOMMUNICATION PORTS RJ45 Telecom Port with ISN Page 30 / 31

31 RADIATED EMISSION TEST Page 31 / 31

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