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FFMLGC500WDual Mode Cellular Phone (AMPS/CDMA)

LG Electronics, Inc.
Dual Mode Cellular Phone (AMPS/CDMA) - FCC ID FFMLGC500W - LG Electronics, Inc.
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Application Details

Equipment Class
TNE - Licensed Non-Broadcast Transmitter Held to Ear
Date of Grant
Oct 26, 1999
Application Purpose
Original Equipment
Date of Application
Aug 18, 1999
Equipment Note
Dual Mode Cellular Phone (AMPS/CDMA)
Frequency Range
824.04000000 - 848.97000000
Company
LG Electronics, Inc.
Country
South Korea

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

LGC500W Operator’s Guide July 8, 1999 Terminal Research Institute Software Development Sector Jong-sung Park Terminal Development Center 1 LGIC Call Status Functions 1. Scratch Pad (Menu Soft Key 1 + 1) * Function to store a telephone number while calling l Select Menu + 1 and enter the telephone number to store. l Press Store (Soft Key 2) key. (Name is not stored) 2. Send Own No. (Menu Soft Key 1 + 2) * Function to transmit her/his own number while calling l You can transmit your own number while calling by pressing menu Soft Key 1 + 2. 3. Volume Control (Soft Key2) * Function to control the volume while calling l You can control the volume by pressing Soft Key 2. Select the volume using the v(center soft key) or V/#’button or Side Key 4. Mute Feature (the bottom of center soft key) * Function to mute the speech voice while calling l If you press the bottom of center soft key(Á), the speech tone is muted immediately. If you want to deactivate this mute function, press the bottom of center soft key again. Terminal Development Center 2 LGIC Stand-by Status Menu Set-up and Its Functions 1. PIM [Menu + 1] * Phone Book / Scheduler / Alarm / Call Reserve / World Time 1.1 Phone Book [Menu + 1 + 1 ] 1.1.1 New Entry [Menu + 1 + 1 + 1 ] 1.1.2 Find Entry [Menu + 1 + 1 + 2 ] 1.1.3 Delete Entry [Menu + 1 + 1 + 3 ] - You can navigate these menus by follow soft_key direction. 1.2 Schedule Management Secretary [Menu + 1 + 2 ] - You can navigate these menus by follow soft_key direction. ¢— Time display is not serviced in a ANALOG system and can’t guarantee any functions with regard to time including above menu. 1.3 Alarm Secretary [Menu + 1 + 3 ] Alarm Time * User can set an alarm to the desired time. l Select Menu + 1 + 3. l Select one of ‘OFF / EVERY DAY / ONCE’. l If you select ‘OFF’, it becomes the state of stand-by. In case an alarm time was set previously, that setting time will be deleted. l When ‘EVERYDAY / ONCE’ is selected, you just enter the alarm time in the order of hour and minute. l In case the alarm time has been set already, the set alarm time and the soft keys of EDIT/OK are displayed. - If you select EDIT here, the soft key 1 of EDIT is displayed in ‘AM’ or ‘PM” mode for editing the input. l ‘AM’ and ‘PM’ mode can be switched with Soft Key1[AM/PM] l You can edit the entered contents using the bottom of center soft key (Á) l Press OK key to store the entered alarm time. ¢— Note: The alarm bell is triggered at the set alarm time with the message of “Alarming Now” displayed on the display. ¢— Note: In case ‘Once’ is selected, if the END key is pressed or 1minute is passed, the alarm time is deleted. Terminal Development Center 3 LGIC 1.4 Call Reservation Secretary [Menu + 1 + 4 ] Call Reserve * Function to originate a call to the reserved number automatically at the reserved time. l Select Menu + 1+ 4. l Enter the reservation time in the order of “Hour : Minute”. l ‘AM’ and ’PM’ mode can be switched with Soft Key 1[AM/PM]. l Press OK key to store the entered reserved call time. l Enter the reservation telephone number. [Up to 32 characters acceptable] l Store the entered telephone number using OK key. ¢— Note: Telephone rings at the reserved time with the message of “ Reserve Time” on the display. ¢— Note: If the END key is pressed or one minute is passed, the reserved call time is automatically deleted and stored in the last call list. 1.5 World Time secretary [Menu + 1 + 5] World Time * Function to confirm the standard time of major cities in the world based on GPC time. This function is available in CDMA mode only. l Select Menu + 1 + 5. l Select the city you want to check using ’v( center soft_key)’ or ‘V/#’ key and press OK key. Then, the international standard time of the selected city is appeared. ¢— Cities applicable ABU DHABI / AMSTERDAM / ANCHORAGE / ATHENS / AZORES / BANGKOK / BEIJING / BEIRUT / BERLIN / BOSTON / BUENOS AIRES / CAIRO / CARACAS / CHICAGO / COLOMBO / DACCA / DALLAS / DELHI / DENVER / DETROIT / GUAM / HANOI / HELSINKI / HONG KONG / HONOLULU / JAKARTA / JEDDA / KABUL / KUWAIT / LISBON / LONDON / LOS ANGELES / MADRID / MANILA / MEXICO CITY / MONTREAL / MOSCOW / NEW YORK / OAKLAND / PARIS / RIO DE JANEIRO / ROME / SEATTLE / SINGAPORE / SYDNEY / TAIPEI / TEHERAN TOKYO / VIENNA / WASHINGTON Terminal Development Center 4 LGIC 2.Volume Control [Menu + 2] * Function to control Ringer / Key Beep /EarPiece 2.1 Ringer control[3step+SILENT] l Select Menu + 2 + 1. l Select the volume using ’v( center soft_key)’ l Or select the volume you want using V/# keys. l Store the selected volume using the Soft Key2(SELECT). 2.2 Key Beep Volume Control [3-step + Mute] l Select Menu + 2 + 2. l Select the volume using ’v( center soft_key)’ l Or select the volume you want using V/# key. l Store the selected volume using the Soft Key2(SELECT). 2.3 Volume Control [8-step + Low] l Select Menu + 2 + 3. l Select the volume using ’v( center soft_key).’ l Or select the volume you want using V/# key. l Store the selected volume using the Soft Key2(SELECT). 3. Bell Selection [Menu +3 ] * Function to select the bell type for the incoming call. 3.1 Types of Bell [Ring / Vibration / Vibration + Ring] l Select Menu + 3 + 1. l Select the bell type using’v(center soft_key)’ l Or select the type of bell you want using V/# key. l Store the selected status using the Soft Key2(SELECT). 3.2 Bell Selection (12 types) [Sound 1~12] l Select Menu + 3 + 2 l Select the type of bell using the ’v( center soft_key)’. l Or select the bell you want using V/# key. l Store the selected status using the Soft Key2(SELECT) Terminal Development Center 5 LGIC 4. Call Info [Menu + 4] * Function to verify the record on the call time 4.1 Last Call Time * Function to show the last call time l Select Menu + 4 + 1. l Press OK key to return to the stand-by state. 4.2 HomeCalls * Function to show the total number and time of all calls made while in the home system. l Select Menu+4+2 l If you select OK key , it returns to the stand-by …

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Users Manual

LGIC LG Information & Communications, Ltd. CDMA PORTABLE CELLULAR PHONE LGC-500W SERVICE MANUAL LGC-500W 1 LGIC LG Information & Communications, Ltd. Table of Contents General Introduction .............................................................................................................................................................. 2 CHAPTER 1. System Introduction 1. System Introduction ...................................................................................................................................... 2. Features and Advantages of CDMA Mobile Phone (For AMPS as well) ..................................................... 3. Structure and Functions of CDMA Mobile Phone (For AMPS as well) ....................................................... 4. Specification .................................................................................................................................................. 5. Installation ..................................................................................................................................................... CHAPTER 2. NAM Input Method(Inputting of telephone numbers included) 1. Telephone Number and NAM Programming Method ................................................................................... CHAPTER 3. Circuit Description 1. RF Transmit/Receive Part ............................................................................................................................. 2. Digital/Voice Processing Part ....................................................................................................................... Appendix ................................................................................................................................................. 1. Assembly and Disassembly Diagram 2. Block & Circuit Diagram 3. Component Layout 4. Part List 5. Accessories - Desktop Charger - Travel Charger - Cigar Lighter Charger - Hands Free Kit 6. WLPST ( LGIC Product Support Tool For Win95 ) LGC-500W 2 LGIC LG Information & Communications, Ltd. The LGC-500W cellular phone functions as both analog cellular phone worked in AMPS (Advanced Mobile Phone Service) mode and digital cellular phone worked in CDMA (Code Division Multiple Access) mode. CDMA mode applies the DSSS (Direct Sequence Spread Spectrum) technique that has been used in military. This technique enable to share one frequency channel with many users in the same specific area. As a result, that it increases the capacity 10 times more compared with that in the analog mode (AMPS) currently used. Soft/Softer Handoff, Hard Handoff, and Dynamic RF power Control technologies are combined into this phone to reduce the call being interrupted in a middle of talking over phone. CDMA digital cellular network consists of MSC (Mobile Switching Office), BSC (Base Station Controller), BTS (Base station Transmission System), and MS (Mobile Station). Communication between MS and BTS is designed to meet the specification of IS-95A (Common Air Interface). MS meets the specifications of the below : - IS-95A (Common Air Interface) : Protocol between MS and BTS - IS-96A (Vocoder) : Voice signal coding - IS-98 : Basic MS functions - IS-126 : Voice loopback - IS-99 : Short Message Service, Asynchronous Data Service, and G3 Fax Service LGC-500W is composed of a transceiver, a desktop charger, two Li-Ion Batteries (1650mAh), a h ands-free kit, a travel charger. In digital mode, the hands-free kit is designed to operate in full duplex. General Introduction LGC-340/345W LGIC LG Information & Communications, Ltd. 1. Introduction to the Cellular System 1.1 Basic Concept for the Cellular System The design objective of early mobile radio systems was to achieve a large coverage area by using a single, very high powered transmitter with antenna mounted on the tall tower. While this approach achieved very good coverage, it also meant that it was impossible to reuse those same frequency throughout the system. But the increasing demand for mobile service required the radio telephone system to achieve high capacity with limited radio spectrum, while at the same time covering very large areas. The cellular concept was a major breakthrough in sloving the problem of spectral congestion and user capacity. The cellular concept ,which starts from the frequency reuse technique, is a system level idea which calls for replacing a single, high power transmitter (large cell) with many low power transmitter(small cells), each providing coverage to only a small portion of the service area. Each base station is allocated a portion of the total number of channels available to the entire system, and nearby base stations are assigned different groups of channels so that all the available channels are assigned to a relative small number of neighboring base stations. Neighboring base stations are assigned different groups of channels so that the interference between base stations (and the mobile users under their control) is minimized. This technique is called channel assignment stategy. In the cellular system, the channel handoff operation is inevitably needed to keep a call while a user moves one cell to another. This function not only involves identifying a new base station, but also eruires that the voice and control signals be allocated to channel associated with new base station. The handoff between different swithcing systems is called roaming. It is call state can be maintained continuously by the information exchange between switching systems when the busy subscriber moves from one cellular system area to the other cellular system area. 1.2 Multiple Access Techniques for the Cellular System In cellualr systems, it is often desirable to allow the subscriber to send simultaneously infoermation to the base station while receiving information from the base station. This is called deplexing. Duplexing is done using frequency or time domain rechniques. Frequency Divi…

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Cover Letter(s)

August 19, 1999 Federal Communications Commission Equipment Approval Services 7435 Oakland Mills Road Columbia, MD 21046 SUBJECT:LG Information & Communications, Ltd. FCC ID: FFMLGC500W Part 22 Certification Gentlemen: Submitted herewith, on behalf of LG Information & Communications Ltd., is an application for Part 22 Certification of the following dual-mode cellular phone: FCC ID:FFMLGC500W TRADE/MODEL(s):LGIC LGC-500W EUT TYPE:Dual-Mode Cellular Phone (AMPS/CDMA) Tx Freq. Range(s):824.04 – 848.97 MHz (AMPS) 824.64 – 848.37 MHz (CDMA) Max. Output Power(s):0.5 W ERP (AMPS) / 0.45 W ERP (CDMA) Attached is the applicant’s Letter of Authorization, Confidentiality Request, ESN Affidavit, measurement report test data and plots, RF Exposure measurement report and data, FCC ID label and location, test setup photographs, internal and external photographs, block diagrams (confidential), schematic diagrams (confidential), operational description (confidential), parts list & tune-up procedure (confidential), and the user's manual. Should you have any questions or comments concerning the above, please contact the undersigned. cc:Mr. Harris Ahn Principal Engineer Communication Terminal Research Lab

Cover Letter(s)

AUTHORITY TO ACT AS AGENT TO THE FEDERAL COMMUNICATIONS COMMISSION Date : July 25, 1999 Federal Communications Commission Authorization and Evaluation Division Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MID 21046 U.S.A. Dear Sir: We, the undersigned, hereby authorize PCTEST Engineering Laboratory Inc. to act on our behalf in all matters relating to applications for equipment authorization, including the signing of all documents relating to these matters. Any and all acts carried out by PCTEST Engineering Laboratory Inc., on our behalf shall have the same effect as acts of our own. We also certify that no party to the applications authorized hereunder is subject to benefits, including FCC benefits, Pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988,21 USC 853(a). Sincerely yours, D.S.KIM / Quality Engineering Dept. LG Information & Communications, Ltd. 73, Hyangjeong-dong, Hungduk-gu Cheongju, 361-480, Korea Telephone : 82-431-279-1470~2 Fax : 82-431-279-1473 LG Information & Communications, Ltd. LGIC

Cover Letter(s)

LGIC LG Information & Communications, Ltd. 459-9, Kasan-dong, Kemchun-ku Seoul 153-023, Korea Tel : 82-2-850-3850 Fax : 82-2-850-3861 http:l/[email protected] July 28, 1999 Federal Communication Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 In re : LG Information & Communication, Ltd. FCC ID: FFMLGC500W Dual - Mode Cellular Phone (AMPSKDMA) Part 22 Certification Request for Confidentiality Gentlemen: In accordance with 0.459 of CFR 47, LG Information & Communications, Ltd. hereby requests confidentiality of the Block Diagrams attachment, Circuit Diagrams & Description attachment, Operational Description attachment, and Parts List/Tune-Up Procedure attachment for the above-referenced Certification application. These documents contain detailed system and equipment description and related information about the product which LG Information & Communications, Ltd. Considers to be proprietary, confidential, and a custom design and, otherwise, would not release to the general public. Since this design is a basis from which future technological products will evolve, LG Information& Communications, Ltd. considers this information to be of benefit to its competitors, such that the disclosure of the information in these documents would give competitors an unfair advantage in the market. PrincipalEngineer Communication Terminal Research Lab LG Inform&on & Communications, Ltd.

Cover Letter(s)

October 6, 1999 Federal Communications Commission Equipment Approval Services 7435 Oakland Mills Road Columbia, MD 21046 Attn: Frank Coperich / Kwok Chan SUBJECT:LG Information & Communications, Ltd. FCC ID: FFMLGC500W 731 Confirmation Number: EA95192 Dear Frank / Kwok: Submitted herewith, on behalf of LG Information & Communications, Ltd., is an amendment to the above referenced application to amend the following: 1. Dielectric Constant and Conductivity reported on the SAR Test Data Summary page. Please find attached the resubmitted SAR Test Data Summary page with the correct Dielectric Constant and Conductivity corresponding with the SAR test plots. Should you have any questions, please do not hesitate to contact us. Thank you. Sincerely,

External Photos

Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA)

ID Label/Location Info

© 1999 PCTEST Lab FCC ID SAMPLE LABEL & LOCATION LABELLING REQUIREMENTS PER §§ 2.925 The Label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time of purchase. (SEE NEXT PAGE) LG Information & Communication LG Information & Communications, Ltd. LGIC Model No. : LGC-500W FCC ID : FFMLGC500W S/N : Made in Korea

Internal Photos

Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA) Test Report S/N: 22.990802468.FFMFCC Part 22 Test Date(s): August 16-20, 1999Certification © 1999 PCTEST Lab FCC ID: FFMLGC500W (Tx 824-849MHz) NVLAP Lab Code: 100431-0 LGIC Dual-Mode Cellular Phone (AMPS/CDMA)

RF Exposure Info

© 1999 PCTEST Engineering Lab., Inc. PCTEST Engineering Laboratory, Inc. 6660-B 6660-B DobbinDobbin Road Road •• Columbia, MD 21045 Columbia, MD 21045 •• U.S.A. U.S.A. TEL (410) 290-6652 TEL (410) 290-6652 •• FAX (410) 290-6654 FAX (410) 290-6654 http://www.pctestlab.comhttp://www.pctestlab.com CERTIFICATE OF COMPLIANCE (SAR EVALUATION) LG Information & Communications, Ltd. Date(s) of Tests: August 16-20, 1999 Communication Terminal Research LabTest Report S/N: SAR.990802469.FFM 60-39, Kasan-dong, Keumchun-kuTest Site: PCTEST Lab, Columbia, MD USA Seoul 153-023, KOREA Attn: Mr. Harris Ahn, Principal Engineer Communication Terminal Research Lab FCC ID FFMLGC500W APPLICANT LG INFORMATION & COMMUNICATIONS, LTD. EUT Type:Dual-Mode Cellular Phone (AMPS/CDMA) Tx Frequency:824.04 – 848.97 MHz (AMPS) / 824.70 – 848.31 MHz (CDMA) Rx. Frequency:869.04 – 893.97 MHz (AMPS) / 869.70 – 893.31 MHz (CDMA) Max Output Power:0.5 W ERP (AMPS) / 0.45 W ERP (CDMA) Trade Name/Model(s):LGIC LGC-500W FCC Classification:Non-Broadcast Transmitter held to ear (TNE) Application Type:Certification Serial Number:n/a (pre production) FCC Rule Part(s):2.1093; ET Docket 96.326; 22(H) This wireless portable device has been shown to be capable of compliance for localized specific absorption rate (SAR) for uncontrolled environment/general population exposure limits specified in ANSI/IEEE Std. C95.1-1992 and had been tested in accordance with the measurement procedures specified in ANSI/IEEE Std. C95.3-1992. (See Test Report). I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. NVLAP accreditation does not constitute any product endorsement by NVLAP or any agency of the United States Government. PCTEST certifies that no party to this application has been denied the FCC benefits pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a) 990802469.FFM SAR Measurement ReportFCC Part 22 Certification © 1999 PCTEST Labi Table of Contents SCOPE 1 INTRODUCTION / SAR DEFINITION 2 SAR MEASUREMENT SET-UP 3 E-FIELD PROBE SYSTEM 4 E-FIELD PROBE CALIBRATION PROCESS 5 DATA EXTRAPOLATION 6 PHANTOM, HOLDER & BRAIN EQUIVALENT TISSUE 7 SYSTEM SPECIFICATIONS 8 MEASUREMENT PROCESS 9 TEST POSITION OF THE PHONE 10 ANSI/IEEE C95.1 RF EXPOSURE LIMITS 11 MEASUREMENT UNCERTAINTIES 12 TEST DATA SUMMARY 13 SAR TEST EQUIPMENT LIST 14 CONCLUSION 15 REFERENCES 16 APPENDIX A – PROBE CALIBRATION DATA17 APPENDIX B – DIPOLE VALIDATION DATA18 Test Report S/N: SAR.990802469.FFMSAR Measurement Report Test Date(s): August 16-20, 1999FCC Part 22 Certification LGIC Dual-Mode Cellular Phone (AMPS/CDMA) © 1999 PCTEST LabFCC ID: FFMLGC500W (Tx 824-849 MHz)1 SAR MEASUREMENT REPORT Scope - Environmental evaluation measurements of specific absorption rate 1 (SAR) distributions in simulated human head tissues exposed to radiofrequency (RF) radiation from wireless portable devices for compliance with the rules and regulations of the U.S. Federal Communications Commission (FCC). 2 Company Name:LG Information & Communications, Ltd. Communication Terminal Research Lab Address:60-39, Kasan-dong, Keumchun-ku Seoul 153-023, KOREA Attention:Harris Ahn, Principal Engineer Communication Terminal Research Lab • EUT Type:Dual-Mode Cellular Phone • Trade Name:LGIC • Model(s):LGC-500W • FCC IDENTIFIER:FFMLGC500W • S/N:Pre-production • Tx Frequency:824.04 – 848.97 MHz (AMPS) 824.70 – 848.31 MHz (CDMA) • Rx Frequency:869.04 – 893.97 MHz (AMPS) 869.70 – 893.31 MHz (CDMA) • Application Type: Certification • FCC Classification:Non-Broadcast Transmitter Held to Ear (TNE) • FCC Rule Part(s):§ 2.1093, Docket 96-326; § 22(H) • Modulation(s):AMPS / CDMA • Max. Output Power:0.5W ERP (AMPS) / 0.45W ERP (CDMA) • Antenna:Helical (λ/2) • Antenna Dimensions:11.0 cm. (Length) • Date(s) of Tests:August 16-20, 1999 • Place of Tests:PCTEST Engineering Lab. Columbia, MD, U.S.A. • Report Serial No.:SAR.990802469.FFM 1 Specific Absorption Rate (SAR) is a measure of the rate of energy absorption due to exposure to an RF transmitting source (wireless portable device). 2 IEEE/ANSI Std. C95.1-1992 limits are used to determine compliance with FCC ET Docket 93-62. Fig. 1 SAR Test Setup Test Report S/N: SAR.990802469.FFMSAR Measurement Report Test Date(s): August 16-20, 1999FCC Part 22 Certification LGIC Dual-Mode Cellular Phone (AMPS/CDMA) © 1999 PCTEST LabFCC ID: FFMLGC500W (Tx 824-849 MHz)2 INTRODUCTION The FCC has adopted the guidelines for evaluating the environmental effects of radiofrequency radiation in ET Docket 93-62 on Aug. 6, 1996 to protect the public and workers from the potential hazards of RF emissions due to FCC-regulated portable devices.[1] The safety limits used for the environmental evaluation measurements are based on the criteria published by the American National Standards Institute (ANSI) for localized specific absorption rate (SAR) in IEEE/ANSI C95.1-1992 Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz. (c) 1992 by the Institute of Electrical and Electronics Engineers, Inc., New York, New York 10017.[2] The measurement procedure described in IEEE/ANSI C95.3-1992 Recommended Practice for the Measurement of Potentially Hazardous Electromagnetic Fields - RF and Microwave[3] is used for guidance in measuring SAR due to the RF radiation exposure from the Equipment Under Test (EUT). These criteria for SAR evaluation are similar to those recommended by the National Council on Radiation Protection and Measurements (NCRP) in Biological Effects and Exposure Criteria for Radiofrequency Electromagnetic Fields,” NCRP Report No. 86 (c) NCRP, 1986, Bethesda, MD 20814.[4] SAR is a measure of the rate of energy absorption due to exposure to an RF transmitting sourc…

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RF Exposure Info

Probe ET3DV5 SN:1368 Manufactured:December 1998 Calibrated:February 1999 Calibrated for System DASY3 Page 1 of 8 ET3DV5 SN:1368 Introduction The performance of all probes is measured before delivery. This includes an assessment of the characteristic parameters, receiving patterns as a function of frequency, frequency response and relative accuracy. Furthermore, each probe is tested in use according to a dosimetric assessment protocol. The sensitivity parameters (NormX, NormY, NormZ), the diode compresion parameter (DCP) and the conversion factor (ConvF) of the probe and some of the measurement diagrams are given in the following. The performance of the individual probes varies slightly due to tolerances arising from the manufacturing process. Since the lines are highly resistive (several MOhms), the offset and noise problem is greatly increased if signals in the low μV range are measured. Accurate measurement below 10 μW/g are possible if the following precautions are taken. 1) check the current grounding with the multimeter 1 , i.e., low noise levels, 2) compensate the current offset 1 , 3) use long integration time (approx. 10 seconds), 4) calibrate 1 before each measurement, 5) persons should avoid moving around the lab while measuring. Since the field distortion caused by the supporting material and the sheath is quite high in the θ direction, the receiving pattern is poor in air. However, the distortion in tissue equivalent material is much less because of its high dielectricity. In addition, the fields induced in the phantoms by dipole structures close to the body are dominently parallel to the surface. Thus, the error due to non-isotropy is much better than 1 dB for dosimetric assessments. The probes are calibrated in the TEM cell ifi 110 although the field distribution in the cell is not very uniform and the frequency response is not very flat. To ensure consistency, a strict protocol is followed. The conversion factor (ConF) between this calibration and the measurement in the tissue simulation solution is performed by comparison with temperature measurements and computer simulations. This conversion factor is only valid for the specified tissue simulating liquids at the specified frequencies. If measurements have to be performed in solutions with other electrical properties or at other frequencies, the conversion factor has to be assessed by the same procedure. As the probes have been constructed with printed resistive lines on ceramic substrates (thick film technique), the probe is very delicate with respect to mechanical shocks. Attention: Do not drop the probe or let the probe collide with any solid object. Never let the robot move without first activating the emergency stop feature (i.e., without first turning the data acquisition electronics on). 1 Feature of the DASY Software Tool. Fig 1: Due to the field distortion caused by the supporting material, the probe has two charac- teristic directions, referred to as angle ψ and θ. Page 2 of 8 ET3DV5 SN:1368 DASY3 - Parameters of Probe: ET3DV5 SN:1368 Sensitivity in Free Space NormX1.35μV/(V/m) 2 NormY1.29μV/(V/m) 2 NormZ1.46μV/(V/m) 2 Diode Compression DCP X78mV DCP Y78mV DCP Z78mV Sensitivity in Tissue Simulating Liquid 450 MHzConvF X6.2extrapolated ε r = 48 ± 5% ConvF Y6.2extrapolated σ =0.50 ± 10%mho/m ConvF Z6.2extrapolated(brain tissue simulating liquid) 900 MHz ConvF X5.8± 10% ε r = 42.5 ± 5% ConvF Y5.8± 10% σ =0.86 ± 10%mho/m ConvF Z5.8± 10%(brain tissue simulating liquid) 1500 MHz ConvF X5.2interpolated ε r = 41 ± 5% ConvF Y5.2interpolated σ =1.32 ± 10%mho/m ConvF Z5.2interpolated(brain tissue simulating liquid) 1800 MHz ConvF X4.9± 10% ε r = 41 ± 5% ConvF Y4.9± 10% σ =1.69 ± 10%mho/m ConvF Z4.9± 10%(brain tissue simulating liquid) Sensor Offset Probe Tip to Sensor Center2.7mm Sur…

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Contact Information

Applicant

GeunChang Do
[email protected]+82-2-6915-1001Fax: +82-2-6915-1086

Technical Contact

PCTEST Engineering Laboratory, Inc.Randy Ortanez
[email protected]301-596-2120

6660-B Dobbin Road · Columbia, Maryland · United States

Non-Technical Contact

PCTEST Engineering Laboratory, Inc.Randy Ortanez
[email protected]301-596-2120

Test Firm

PCTEST Engineering Laboratory, Inc.Randy Ortanez
[email protected]410-290-6652Fax: 410-290-6654

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
322H824.04 MHz - 848.97 MHz500.00 mW40K0F1D2.5 ppm
Confidentiality
Long Term

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