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O2MISEElectric Ballast

ISE Telecommunication Co Ltd
Electric Ballast - FCC ID O2MISE - ISE Telecommunication Co Ltd
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Application Details

Equipment Class
8CC - Part 18 Consumer Device
Date of Grant
Jun 01, 2000
Application Purpose
Original Equipment
Date of Application
May 24, 2000
Equipment Note
Electric Ballast
Frequency Range
0.04300000 - 0.04300000
Company
ISE Telecommunication Co Ltd
Country
South Korea

Documents & Files

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Block Diagram

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External Photos

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ID Label/Location Info

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Internal Photos

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Schematics

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Test Report

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

External Photos

< Front View > < Rear View >

ID Label/Location Info

< LABEL> FCC ID. : O2MISE

Test Report

KTL Korea Testing Laboratory Page 1 of 11 TEST REPORT This test report only responds to the tested sample and shall not be reproduced except in full without written approval of the Korea Testing Laboratory. Tested and reported by Reviewed by Jeong-Min Kim , Senior Engineer Seok-Jin Kim , EMC Team Leader KOREA TESTING LABORATORY FG101-01-02-00 222-13, Guro-Dong Guro-Gu Seoul Korea 152-053 http://www.ktl.re.kr Ref. Report No. 00-341-023 Name and address of the applicant ISE TELECOMMUNICATION CO., LTD. 276-18, Eunhang-Dong, Shiheung-Shi, Kyonggi-Do, Korea 429-060 Standard / Test regulation FCC Part 18 Test result Pass Incoming date : April 25, 2000 Test item( s) ; RF Lighting Devices – Consumer Equipme nt (Electronic Ballast) Model/type ref. ; WMB-920E Manufacturer ; ISE TELECOMMUNICATION CO., LTD. Additional information ; -Re quire d Aut ho riz atio n : Ce rtificatio n -FCC ID. : O2MISE Test date : May 16, 2000Issue date : May 25, 2000 Ref. Report No. 00 - 341 – 023 2 Page of 11 TABLE O F CONTENTS I. GENERAL INFORMATION ............................................................................................................ 3 1. Grantee’s Name and Mailing Address 2. Manufacturer's Name and Mailing Address 3. Equipment Descriptions 4. Rules and Regulations 5. Measuring Procedure 6. Date of Measurement Ξ±. CONDUCTED EMISSION MEASUREMENT (Section 18.307) .......................................................4-7 1. Test Procedure 2. Photograph for the worst case configuration 3. Sample Calculation 4. Measurement Data Ξ². RADIATED EMISSION MEASUREMENT (Section 18.305) .......................................................8-10 1. Test Procedure 2. Photograph for the worst case configuration 3. Sample Calculation 4. Measurement Data Ο‡. TEST EQUIPMENTS USED FOR MEASUREMENT..................................................................11 Ref. Report No. 00 - 341 – 023 3 Page of 11 . GENERAL INFORMATION 1. Applicant’s Name and : ISE TELECOMMUNICATION CO., LTD. Mailing Address 276-18, Eunhang-Dong, Shiheung-Shi, Kyonggi-Do, Korea, 429-060 2. Manufacturer's Name and: ISE TELECOMMUNICATION CO., LTD. Mailing Address276-18, Eunhang-Dong, Shiheung-Shi, Kyonggi-Do, Korea, 429-060 3. Equipment Descriptions 3.1 Input Voltage: AC 120 V, 60 Hz 3.2 Oscillation Frequency:43 kHz 3.3 Lamp Wattage : 48 W 4. Rules and Regulations: FCC Part 18 5. Measuring Procedure: FCC / OET MP-5 (1986) 6. Date of Measurement 6.1 Conducted Emission: May 16, 2000 6.2 Radiated Emission : May 16, 2000 Ref. Report No. 00 - 341 – 023 4 Page of 11 . CONDUCTED EMISSION MEASUREMENT (Section 18.307) 1. Test Procedure The EUT was installed with fluorescent lamp in accordance with the manufacturer’s instruction and operated in a manner that is the representative of the typical usage for equipment. Conducted emission measurements on the EUT were performed by "Conducted Powerline Measurement" procedure as per MP-5. The EUT w as set up on a w ooden table 0.8 meters height, 1.0 by 1.5 meters in size, placed in the shielded enclosed with a side of wall of which constituted a vertical conducting surface of 2.2 m x 3.1 m in size to maintain 0.4 meters from the rear of EUT LISN's(Line Impedance Stabilization Network, EMCO, 3825/2, 50 ohm / 50 ∝H) were installed and electrically boned to the conducting ground plane. The EUT was connected to the LISN. One of two 50 ohm output terminals of the LISN was connected to the Spectrum Analyzer(HP, 8566B, 10 kHz to 22 GHz) with the Quasi-Peak Adapter (HP, 85650A, 10 kHz to 1.0 GHz) and the other was terminated in 50 ohms. Measurements w ere again performed after interchanging such a connection oppositely. The frequency range from 450 kHz to 30 MHz was examined and the peak values that are within 6 dB of the limit would be compared to quasi-peak values using the Quasi-Peak instrument (ROHDE & SCHWARZ, ESH3, 9 kHz to 30 MHz : Detector Function CISPR Quasi-Peak) or HP Quasi-Peak adapter(85650A, 10 kHz to 1.0 GHz) The voltage developed across the 50 ohms port in LISN was measured by the Spectrum Analyzer and graphed by the Plotter(HP, 7470A). The 6 dB bandwidth of the Spectrum Analyzer and Quasi-Peak Adapter was set to 9 kHz with no post detector video filter. The position of connecting cables of the EUT was changed to find the w orst case configuration during measurements. The maximum emission level from the EUT occurred in such configuration as shown in the following photograph. Ref. Report No. 00 - 341 – 023 5 Page of 11 2. Photograph for the worst case configuration 3. Sample Calculation The emission level measured in decibels above one microvolt (dBβˆ‚) was converted into microvolt (βˆ‚) as show n in following sample calculation. For example : Measured Value at 0.45 MHz 44.5 dBβˆ‚ + Cable Losses * 0.0 dB βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’βˆ’ = Conducted Emission 44.5 dBβˆ‚ ( = 167.9 βˆ‚ ) * In case of RG214/ RF cable 15 Ft, the loss is about 0.17 dB at the frequency of 30 MHz which is negligible. Ref. Report No. 00 - 341 – 023 6 Page of 11 4. Measurement Data - Resolution Bandwidth : x Peak (6dB Bandwidth : 9kHz) x CISPR Quasi-Peak (6dB Bandwidth : 9kHz) Measured Value Emission Level Power Lead Tested Frequency (MHz) Peak (dBβˆ‚) Q-Peak (dBβˆ‚) (dBβˆ‚) (βˆ‚) Limit (βˆ‚) (*) Margin (dB) 0.45 46.0 44.5 44.5 167.9 250 - 3.5 0.52 46.6 41.4 41.4 117.5 250 - 6.6 0.56 46.4 42.0 42.0 125.9 250 - 6.0 0.68 45.1 41.0 41.0 112.2 250 - 7.0 3.76 36.5 32.2 32.2 40.7 250 -15.8 - - - - - - - Live to Ground 0.45 41.9 36.4 36.4 66.1 250 -11.6 0.55 40.1 33.3 33.3 46.2 250 -14.7 0.73 39.4 33.0 33.0 44.7 250 -15.0 0.91 39.5 34.5 34.5 53.1 250 -13.5 3.94 33.2 26.2 26.2 20.4 250 -21.8 - - - - - - - Neutral to Ground Note : The noise floor level of the spectrum analyzer was observed in 22dBβˆ‚. Refer to measured graphs on next page. * Margin(dB) : Emission Level (dB) - Limit (dB) Ref. Report No. 00 - 341 – 023 7 Page of 11 Ref. Report No. 00 - 341 – 023 8 Page of 11 . RADIATED EMISSION MEASUREMENT (Section 18.305) …

Text truncated - open the document above for the full version.

Contact Information

Applicant

Jang-Seo Park(Manager)
[email protected]82-32-354-1748Fax: 82-32-354-1749

Test Firm

Korea Testing LaboratoryJeong-Min Kim
[email protected]82-2-860-1462Fax: 82-2-860-1468

Technical Specifications

#Rule PartsFrequency RangePower Output
1180.043 MHz - 0.043 MHz-

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