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AXATR-393-A2Cellular/PCS Portable Terminal

HARRIS CORPORATION
Cellular/PCS Portable Terminal - FCC ID AXATR-393-A2 - HARRIS CORPORATION
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Application Details

Equipment Class
PCE - PCS Licensed Transmitter held to ear
Date of Grant
Sep 21, 1999
Application Purpose
Original Equipment
Date of Application
Jul 20, 1999
Equipment Note
Cellular/PCS Portable Terminal
Frequency Range
1850.00000000 - 1910.00000000
Company
HARRIS CORPORATION
Country
United States

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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Parts List/Tune Up Info

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RF Exposure Info

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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.

Users Manual

0RELOH3KRQH $G 'XDOEDQG7ULPRGH IRU7'0$6\VWHPV 8VHU∑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‹ ( ULF VVRQ, QF  3 XEO LF DWLRQQX PEH U  /= 7 5 3UL QWH GLQ86$ Table of Contents 1 Document Conventions . . . . . . . . . . . . . . . . 3Guidelines for Safe and Efficient Use . . . . . 4Safety . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4Driving . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6Product Care and Operation . . . . . . . . . . . . . . . . . . . . . . . 6Battery Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7Getting Started. . . . . . . . . . . . . . . . . . . . . . . . 9Connecting and Removing Your Battery . . . . . . . . . . . . . 9Charging Your Battery . . . . . . . . . . . . . . . . . . . . . . . . . . . 9Learning About Your Mobile Phone. . . . . . 11Highlights of Your Mobile Phone . . . . . . . . . . . . . . . . . . 11Key Functions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12Phone Display Icons . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13Display Messages . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 Basic Operations. . . . . . . . . . . . . . . . . . . . . 15Summary of Basic Operations   Turning Your Phone On and Off . . . . . . . . . . . . . . . . . . 15Making Calls . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15Answering Calls . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17Low Battery Power Alert . . . . . . . . . . . . . . . . . . . . . . . . . 18Setting the Display Language . . . . . . . . . . . . . . . . . . . . . 18Setting the Ring Sound . . . . . . . . . . . . . . . . . . . . . . . . . . 18Setting the Ring Volume . . . . . . . . . . . . . . . . . . . . . . . . . 18Emergency Calls . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19International Calls . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19Security Code . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19Problem Solving . . . . . . . . . . . . . . . . . . . . . 21Problems and Possible Solutions . . . . . . . . . . . . . . . . . . . 21Displayed Messages and Explanations . . . . . . . . . . . . . . . 21 Table of Contents 2 Document Conventions ‡ Menu names are shown in the following typeface: 0(186 . ‡ Submenu names are shown in the following type- face: 6XEPHQX1DPHV ‡ Keys names are shown in the following typeface: CLR . ‡ Text that is seen in the phone’s display is shown in the following typeface: displays . ‡ When this guide instructs you to press a key, press and release the key. ‡ When this guide instructs you to press and hold a key, press and hold the key for one to two seconds. ‡ Press the down arrow when you see this symbol (  ). ‡ Press the up arrow when you see this symbol (  ). ‡ Your phone is at the Standby screen when it is powered On and a call is not in progress. Document Conventions 6 The quick access shortcuts to your phone menu and settings are identified using the hourglass symbol. Guidelines for Safe and Efficient Use 3 Since its introduction in the mid 1980s the mobile phone is one of the most exciting and innovative products ever developed. Your phone can help you to stay in touch with your office, your home, emergency services and others. Safety Exposure to Radio Frequency EnergyYour wireless handheld portable telephone is a low power radio transmitter and receiver. When it is ON, it receives and also sends out radio frequency (RF) signals.In August, 1996, the Federal Communications Com-mission (FCC) adopted RF exposure guidelines with safety levels for handheld wireless phones. Those guide-lines are consistent with the safety standards previously set by both US and international standards bodies: ‡ ANSI C95.1 (1992)* ‡ NCRP Report 86 (1986)* ‡ ICNIRP (1996)* Those standards were based on comprehensive and peri-odic evaluations of the relevant scientific literature. For example, over 120 scientists, engineers, and physicians from universities, government health agencies, and industry reviewed the available body of research to develop the ANSI Standards (C95.1).The design of your phone complies with the FCC guide-lines (and those standards).* American National Standards Institute: National Coun-cil on Radiation Protection and Measurements; Interna-tional Commission on Non-Ionizing Radiation Protection. Posted FacilitiesTurn your phone OFF in any facility where posted notices so require.AircraftFCC regulations prohibit using your phone while in the air. Switch OFF your phone before boarding an aircraft.Electronic DevicesMost modern electronic equipment, for example equip-ment in hospitals and cars, is shielded from RF energy. However, certain electronic equipment may not be shielded against RF signals from your wireless phone.PacemakersThe Health Industry Manufacturers Association recom-mends that a minimum separation of six (6”) inches be maintained between a handheld wireless phone and a Guidelines for Safe and Efficient Use 4 Guidelines for Safe and Efficient Use pacemaker to avoid potential interference with the pace-maker. These recommendations are consistent with the independent research by and recommendations of Wire-less Technology Research.Persons with pace…

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Attestation Statements

APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 2 Index for Exhibit Exhibit #Description 2AProtection Against Unauthorized ESN and Firmware Upgrades 2BCertification of Data APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. As per 22.919, Electronic Seal Numbers Protection Against Unauthorized ESN and Firmware Upgrades The Electronic Serial Number (ESN) bits in this phone are encoded and spread over various non- sequential memory locations in order to prevent detection and modification. Once the factory has programmed the ESN, the mobile firmware cannot overwrite or alter the ESN memory locations. Both the ESN host and operation systems components are permanently mounted to the mobile in order to prevent removal and misuse. Unauthorized attempts to alter the mobile’s firmware will cause the unit to become inoperable.

Cover Letter(s)

July 21, 1999 Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Attention: Equipment Authorization Branch Subject:Type Acceptance for FCC ID:AXATR-393-A2 Gentlemen, Ericsson Inc. requests a grant for Certification for the above mentioned FCC Identifier. This portable transceiver is designed for use in the AMPS/DAMPS cellular telephone system. The mobile operates in the 800 MHz Domestic Public Cellular Radiotelephone Communications Services per Subpart H of Part 22 and operating in the 1900 MHz Domestic Public Cellular Radiotelephone Communications Services, as per Part 24. When operating in the 1900 MHz range, DAMPS technology will be employed. It meets the requirements of IS-137A for operation in cellular systems. Documents governing DAMPS was used as a guide. This portable transceiver is quite similar to previously type accepted FCC ID: AXATR-392-A2. Measurements and calculations for SAR have been made on this radio. This unit complies with IEEE C95.1-1991 (ANSI/IEEE C95.1-1992). Ericsson Inc. requests confidentiality under 47 CFR 0.459 for the following exhibit listed: Exhibit 4Block Diagrams Exhibit 5Circuit Diagrams Exhibit 12Operational Description Justification of this request is that in order to facilitate the circuit miniaturization of the AXATR- 393-A2, certain proprietary techniques were implemented to reduce the board space required for the RF circuitry layout. The Operational Description exhibit provides unique information regarding Service/Alignment Codes. To protect Ericsson’s competitive advantage on these proprietary techniques and alignment codes, we request the above listed exhibits be held as confidential and withheld from the Public Information File. Sincerely, Jim Sponsler Staff Engineer, Regulatory Services Tel No:(919) 472-6460 Research Triangle Park, NCFax No:(919) 472-7452

External Photos

APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 3 Index for Exhibit Exhibit #Description 3AFront external photo 3BSide and back external photo APPLICANT:Exhibit 3 FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. APPLICANT:Exhibit 3 FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc.

External Photos

APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 3 Index for Exhibit Exhibit #Description 3AFront external photo 3BSide and back external photo APPLICANT:Exhibit 3 FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. APPLICANT:Exhibit 3 FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc.

ID Label/Location Info

APPLICANT:Exhibit 1 FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc.

Internal Photos

APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 9 Index for Exhibit Exhibit #Description 9AInside of front shell and front of circuit board 9BInside of back shell and back of circuit board APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 9A APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 9B

Parts List/Tune Up Info

APPLICANT: ERICSSON INC. FCC ID NUMBER: AXATR-393-A2 EXHIBIT 10 COMPONENT DESIGNATIONPRODUCT NAME D300/PROD. ADAPT. CIRCUIT, ASIC D401/MICROCIRCUIT, SRAM D403/MICROCIRCUIT, EEPROM D501/FUNCTIONAL CIRCUIT, DSP D700/PROD. ADAPT. CIRCUIT, ASIC D900/MICROCIRCUIT AND GATE D901/MICROCIRCUIT AND GATE N1001/MICROCIRCUIT, RX FRONT END N1100/MICROCIRCUIT, RX BACK-END IC(AMS) N1200/MICROCIRCUIT, RFIC, JACE II N1201/OSCILLATOR, VCO N1302/MICROCIRCUIT, MIXER/AMPL. N1400/MICROCIRCUIT, RF, mmic, PA, 800mhz N1401/MICROCIRCUIT, SPDT,900 Mhz N1402/MICROCIRCUIT, PA, MMIC, mesFet N1500/FILTER, DIPLEXER N1501/FILTER, DUPLEXER N1502/SW,2GHZ N650/PROD. ADAPT. CIRCUIT, ASIC Z1000/FILTER Z1001/FILTER Z1002/QUARTZ CRYSTAL FILTER, BANDPASS, LIN PHS Z1200/QUARTZ CRYSTAL UNIT, SMD CERAMIC PKG Z1301/SAW FILTER, TX Z1302/QUARTZCRYSTAL FILTER, SAW, FILTER Z1303/QUARTZCRYSTAL FILTER, SAW, FILTER Z1304/SAW FILTER Z1400/ISOLATOR, 836 MHZ Z1401/ISOLATOR, 1880 MHZ Z300/QUARTZ CRYSTAL UNIT, 32768 HZ DESCRIPTION OF ACTIVE DEVICES

Parts List/Tune Up Info

To: Joe DiChosoFrom: Jim Sponsler FCC Application Processing BranchDate: 9-20-99 Applicant:Ericsson Inc Re:FCC ID AXATR-393-A2 Correspondence Reference Number:9641 731 Confirmation Number:EA94900 Date of Original E-Mail:09/15/99 (08/26/99) This is in response to Kwok Chan’s query on August 26, 1999 and your Correspondence 9641. I have included Kwok’s email for your reference. From your email concerning: AXATR-393-A2/ EA94900: Joe: This is a dual band, dual mode, Ericsson handset in the SAR queue, EA 94900 - 1. The 731 form (or on EAS) is requesting 400 mW ERP for AMPS and TDMA in the cellular band, and 400 mW EIRP in the PCS band. The radiated measurements indicate maximum outputs of 220 mW ERP for AMPS and TDMA modes in the cellular band and 546 mW EIRP in the PCS band (estimated antenna gain is about -1 dBi). Maximum peak conducted outputs in the SAR report are around 462 mW for AMPS, 407 mW for cellular TDMA and 398 mW for PCS/TDMA. The radiated outputs will go on the grant and ERP/EIRP will be indicated in grant comments. 2. The tune-up procedure for AMPS mode calls for +1.0/-1.5 dB tolerance for the high and low channels. Low channel SAR for the AMPS mode is 1.35 W/kg. A +1.0 dB tolerance will put SAR for this channel above the 1.6 W/kg limit. Please clarify how should this be resolved - reduce tolerance or lowering output etc. Our response: 1. The power declared on the grant should be 220mW for the 800 band and 546mW for the 1900 band as detailed in your comments. 2. We have updated our tune-up procedure to reflect a +/- 0.5 dB tolerance on power levels 0, 1 and 2. For your reference I have sent in an up dated page for tune-up procedure. If you have any questions, feel free to contact me. Have a good day. Jim Sponsler [email protected] 919-472-6460 APPLICANT: FCC ID NO:AXATR-393-A2 ERICSSON INC ©1999 Ericsson Inc. EXHIBIT 12B ALIGNMENT PROCEDURE PARA. 2.1033( c) (9) Alignment Procedures: Due to the high accuracy of the I/O, the modulation, transmit voice, DTMF, SAT and data deviations are all preset in the DSP software and are not normally set in production and /or field. These procedures give the test method to verify the phone has proper deviations. 1.0 RADIO TUNE/TEST INSTRUCTIONS 1.1 800 MHz and 1900 MHz FILTERING SAW and fixed ceramic elements, therefore no tuning is required at 800 MHz or 1900 MHz. REFERENCE FREQUENCY ADJUSTMENT TEST SETUP Testing of the VCTCXO circuit is temperature dependent and should be carried out at an ambient room temperature of +23°C to +27°C. Any frequency adjustments should be made 1.0 hour after re-flow soldering to allow for relaxation of thermal stress. Additionally, the adjustment accuracy depends on having the transceiver completely closed up in the case. If this is not possible at board level with some kind of fixture or the fixture is suspect, this test must be re-done (checked) at final test. Terminate ANT (X301) into a frequency counter with a 50Ω input impedance. Enter the following test commands: **** The same channel should be used for all parts of this test **** @2705(read thermistor A/D from Patti) check result 1 @80(initialize the transceiver- carrier off and audio muted) @6502(AFC off) @E11401FF(center DAC3) @3Czzxxxx(select a MID-CHANNEL PCS BAND) @840A(set the transmitter power level 10) @81(turn the transmitter on) check result 2 TEST RESULTS 1. Verify that the returned value is in the range 41 to 54 hex. (A higher temperature corresponds to a lower reading). 2. Wait until output is stable (<±42Hz variation in frequency). Log output frequency and calculate error in Hz. Verify that the transmitter frequency is <±100Hz of the channel frequency. If necessary, adjust DAC3 with the commands @E1140xxx where xxx is 000 to 3FF (each step is approx. 48Hz) to achieve a transmitter frequency that is <±100Hz of the channel frequency plus 0.35ppm. DAC3 calibration limits are 110h and 300h. END OF TEST @80(carrier off and audio muted) 1.3 SET TRANSMIT RF POWER TEST SETUP Before testing, provide the antenna (TP1) with a 50 ohm load capable of dissipating 1 W (average power). APPLICANT: FCC ID NO:AXATR-393-A2 ERICSSON INC ©1999 Ericsson Inc. Exhibit 12B ALIGNMENT PROCEDURE PARA. 2.983 TEST SETUP Before testing, provide the antenna (X301) with a 50Ω load capable of dissipating 1W (average power). Use 4.8 V at battery terminals Enter the following test commands: @6502(set DCTCXO control voltage) @3C000383(tune to MID-CHANNEL CELLULAR BAND, CHAN 383) @81(turn on carrier output) For each power level, 0 through 10, repeat the following setup and adjust the power level to comply with the Calibration Goal Mid-Channel column of the table in test results below: @840x(x is power level to be set, 0=pl 2, 3=pl3,..., A=pl 10) @3900yyy(yyy is hex setting corresponding to power level as follows:) Each hex setting is approx. 0.15dB. Record the VGA hex setting for power levels 0 - 10. @222D(store power level value) NOTE: you MUST store a value here, EVEN if it’s the same as the initial guess. Levels 0, 1 & 2 are set when level 0 is set. For Power Levels 0 - 10 with Low and High Channel, verify that output power meets Low and High Channel Power Limits column of the table in test results below. NOTE: Before changing channels the carrier is to be turned off using the @82 command. After tuning to the desired channel using the @3C00xxxx command, turn on the carrier output using @81. TEST RESULTS Verify that the power levels for each of the setup settings is within the tolerance shown below. Use Calibration Goal Mid-Channel for calibration of levels 0 through 10. POWER LEVELPOWER OUTPUTCalibration Goal Mid-Channel Low and High Channel Power Limits 0,1,2+26.0dBm ±0.5dB +0.5dB/-0.5dB 3+22.5dBm ±0.5dB +2.0dB/-2.0dB 4+19.0dBm ±0.5dB +2.0dB/-2.5dB 5+15.5dBm ±0.5dB +2.0dB/-3.0dB 6+12.0dBm ±0.5dB +1.5dB/-3.5dB 7+ 8.0dBm ±0.5dB +1.5dB/-3.5dB 8+ 4.0dBm ±0.25dB±2.5dB 9 +0.0dBm ±0.25dB±5.5dB 10- 4.0dBm ±0.25dB±8.5dB END OF TEST @82(turn carrier off) Repeat for MID-CHANNEL…

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Parts List/Tune Up Info

To: Joe DiChoso From: Jim Sponsler FCC Application Processing Branch Date: 9-20-99 Applicant: Ericsson Inc Re: FCC ID AXATR-393-A2 Correspondence Reference Number: 9708 (9641) 731 Confirmation Number: EA94900 Date of Original E-Mail: 09/15/99 (08/26/99) This is in response to Kwok Chan’s query on August 26, 1999 and your Correspondence 9641. I have included Kwok’s email for your reference. From your email concerning: AXATR-393-A2/ EA94900: Joe: This is a dual band, dual mode, Ericsson handset in the SAR queue, EA 94900 - 1. The 731 form (or on EAS) is requesting 400 mW ERP for AMPS and TDMA in the cellular band, and 400 mW EIRP in the PCS band. The radiated measurements indicate maximum outputs of 220 mW ERP for AMPS and TDMA modes in the cellular band and 546 mW EIRP in the PCS band (estimated antenna gain is about -1 dBi). Maximum peak conducted outputs in the SAR report are around 462 mW for AMPS, 407 mW for cellular TDMA and 398 mW for PCS/TDMA. The radiated outputs will go on the grant and ERP/EIRP will be indicated in grant comments. 2. The tune-up procedure for AMPS mode calls for +1.0/-1.5 dB tolerance for the high and low channels. Low channel SAR for the AMPS mode is 1.35 W/kg. A +1.0 dB tolerance will put SAR for this channel above the 1.6 W/kg limit. Please clarify how should this be resolved - reduce tolerance or lowering output etc. Our response: 1. The power declared on the grant should be 220mW for the 800 band and 546mW for the 1900 band as detailed in your comments. 2. We have updated our tune-up procedure to reflect a +/- 0.5 dB tolerance on power levels 0, 1 and 2. For your reference I have sent in an up dated page for tune-up procedure. If you have any questions, feel free to contact me. Have a good day. Jim Sponsler [email protected] 919-472-6460 APPLICANT: FCC ID NO:AXATR-393-A2 ERICSSON INC ©1999 Ericsson Inc. EXHIBIT 12B ALIGNMENT PROCEDURE PARA. 2.1033( c) (9) Alignment Procedures: Due to the high accuracy of the I/O, the modulation, transmit voice, DTMF, SAT and data deviations are all preset in the DSP software and are not normally set in production and /or field. These procedures give the test method to verify the phone has proper deviations. 1.0 RADIO TUNE/TEST INSTRUCTIONS 1.1 800 MHz and 1900 MHz FILTERING SAW and fixed ceramic elements, therefore no tuning is required at 800 MHz or 1900 MHz. REFERENCE FREQUENCY ADJUSTMENT TEST SETUP Testing of the VCTCXO circuit is temperature dependent and should be carried out at an ambient room temperature of +23°C to +27°C. Any frequency adjustments should be made 1.0 hour after re-flow soldering to allow for relaxation of thermal stress. Additionally, the adjustment accuracy depends on having the transceiver completely closed up in the case. If this is not possible at board level with some kind of fixture or the fixture is suspect, this test must be re-done (checked) at final test. Terminate ANT (X301) into a frequency counter with a 50Ω input impedance. Enter the following test commands: **** The same channel should be used for all parts of this test **** @2705(read thermistor A/D from Patti) check result 1 @80(initialize the transceiver- carrier off and audio muted) @6502(AFC off) @E11401FF(center DAC3) @3Czzxxxx(select a MID-CHANNEL PCS BAND) @840A(set the transmitter power level 10) @81(turn the transmitter on) check result 2 TEST RESULTS 1. Verify that the returned value is in the range 41 to 54 hex. (A higher temperature corresponds to a lower reading). 2. Wait until output is stable (<±42Hz variation in frequency). Log output frequency and calculate error in Hz. Verify that the transmitter frequency is <±100Hz of the channel frequency. If necessary, adjust DAC3 with the commands @E1140xxx where xxx is 000 to 3FF (each step is approx. 48Hz) to achieve a transmitter frequency that is <±100Hz of the channel frequency plus 0.35ppm. DAC3 calibration limits are 110h and 300h. END OF TEST @80(carrier off and audio muted) 1.3 SET TRANSMIT RF POWER TEST SETUP Before testing, provide the antenna (TP1) with a 50 ohm load capable of dissipating 1 W (average power). APPLICANT: FCC ID NO:AXATR-393-A2 ERICSSON INC ©1999 Ericsson Inc. Exhibit 12B ALIGNMENT PROCEDURE PARA. 2.983 TEST SETUP Before testing, provide the antenna (X301) with a 50Ω load capable of dissipating 1W (average power). Use 4.8 V at battery terminals Enter the following test commands: @6502(set DCTCXO control voltage) @3C000383(tune to MID-CHANNEL CELLULAR BAND, CHAN 383) @81(turn on carrier output) For each power level, 0 through 10, repeat the following setup and adjust the power level to comply with the Calibration Goal Mid-Channel column of the table in test results below: @840x(x is power level to be set, 0=pl 2, 3=pl3,..., A=pl 10) @3900yyy(yyy is hex setting corresponding to power level as follows:) Each hex setting is approx. 0.15dB. Record the VGA hex setting for power levels 0 - 10. @222D(store power level value) NOTE: you MUST store a value here, EVEN if it’s the same as the initial guess. Levels 0, 1 & 2 are set when level 0 is set. For Power Levels 0 - 10 with Low and High Channel, verify that output power meets Low and High Channel Power Limits column of the table in test results below. NOTE: Before changing channels the carrier is to be turned off using the @82 command. After tuning to the desired channel using the @3C00xxxx command, turn on the carrier output using @81. TEST RESULTS Verify that the power levels for each of the setup settings is within the tolerance shown below. Use Calibration Goal Mid-Channel for calibration of levels 0 through 10. POWER LEVELPOWER OUTPUTCalibration Goal Mid-Channel Low and High Channel Power Limits 0,1,2+26.0dBm ±0.5dB +0.5dB/-0.5dB 3+22.5dBm ±0.5dB +2.0dB/-2.0dB 4+19.0dBm ±0.5dB +2.0dB/-2.5dB 5+15.5dBm ±0.5dB +2.0dB/-3.0dB 6+12.0dBm ±0.5dB +1.5dB/-3.5dB 7+ 8.0dBm ±0.5dB +1.5dB/-3.5dB 8+ 4.0dBm ±0.25dB±2.5dB 9 +0.0dBm ±0.25dB±5.5dB 10- 4.0dBm ±0.25dB±8.5dB END OF TEST @82(turn carrier off) Repeat f…

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RF Exposure Info

APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 11 Index for Exhibit Page #Description 1Test Equipment list 21 - Introduction 2 - Device Under Test (D.U.T.) 3 - Measurement System 3.1 - Specification for the E-Field Probe 33.2 – Brain Tissue Simulating Liquid Data 3.3 – Calibration 3.4 – Validation 3.5 – Measurement Tolerance 4 – Test Procedure 44.1 – Positioning of the Device Under Test 4.2 – Peak SAR Determination Procedure 5 – Test Results 5References 6-8Appendix 1 – SAR distribution plots 9-10Appendix 2 – Photographs of the Device Under Test 11Appendix 3 – Position of device on generic twin phantom Confidential REPORT 1(11) Prepared (also subject responsible if other)No. RT/EUS/TR/X Mark Douglas919-472-6334 EUS/TR/X-99:1039 ApprovedCheckedDateRevFile EUS/TR/X Mark DouglasMGD1999-06-16A C:\WINDOWS\TEMP\A1228d (Ditto Linda 30mm stub).doc EN SAR Assessment Measurements Test Report for the Ericsson A1228d Triple Mode Telephone Electromagnetic Near Field and Radio Frequency Dosimetry Laboratory Research Triangle Park, NC, USA Test Equipment: DescriptionAsset NumberDue Date DASY3 DAE V1s/n 3459909 E-field probe ETDV5s/n 13370003 Dielectric probe kit HP 85070Binv. 557339908 Network analyzer HP 8752Cinv. 572489907 Power meter HP 437Binv. 492929909 Power sensor HP 8482Hinv. 8210-33869909 Radio Comm. Analyzer Anritsu MT8801Bs/n MB124779909 Dipole Validation Kit, D900V2s/n 0350003 Dipole Validation Kit, D1800V2s/n 2170001 Test approved: Mark Douglas, Ph.D. Confidential REPORT 2(11) Prepared (also subject responsible if other)No. RT/EUS/TR/X Mark Douglas919-472-6334 EUS/TR/X-99:1039 ApprovedCheckedDateRevFile EUS/TR/X Mark DouglasMGD1999-06-16A C:\WINDOWS\TEMP\A1228d (Ditto Linda 30mm stub).doc EN 1. Introduction In this test report, Specific Absorption Rate (SAR) measurements for the Ericsson A1228d portable telephone are presented. The measurements were conducted at the dosimetry laboratory at Ericsson, Inc. in Research Triangle Park, North Carolina, USA. The report describes the test procedures that were used and the test results that were recorded. 2. Device Under Test (D.U.T.) • Antenna Description: Type 30mm dual band stub Location Back and left length30 mm Dimensions diameter at base10 mm Configuration Fixed helix • Portable Telephone Description: Device name A1228d Serial number UA201007TC Certification Number AXATR-393-A2 Mode AMPS D-AMPS 800D-AMPS 1900 Multiple Access Scheme FDMA TDMATDMA Duty Cycle 1 1 / 31 / 3 Peak Power Nominal 26.25 dBm 26.25 dBm26.25 dBm Center Frequency 837 MHz 837 MHz1880 MHz 3. Measurement System The measurements were made with the Dosimetric Assessment System, DASY, from Schmid & Partner AG (SPEAG) in Zurich, Switzerland. This system was developed by Professor Niels Kuster and his team at the Swiss Federal Institute of Technology (ETH) in Zurich, Switzerland [II]. The system uses the implantable E-field probe technique to evaluate the SAR inside the generic twin phantom. The E-field is automatically scanned inside the phantom filled with a brain tissue simulating liquid [III]. The positioning of the E-field probe inside the left phantom head is done by a high-precision 6 axis robot. A computer is used to control the robot and to collect the measured data. 3.1 Specification for the E-Field probe The following is a summary of the technical data for the E-field probe that is used for the measurements. • Sensitivity in tissue simulating liquid:1 μW/g to 100 mW/g • Linearity:< ± 0.2 dB • Deviation from isotropy in tissue, • Normal to probe axis:± 0.2 dB Confidential REPORT 3(11) Prepared (also subject responsible if other)No. RT/EUS/TR/X Mark Douglas919-472-6334 EUS/TR/X-99:1039 ApprovedCheckedDateRevFile EUS/TR/X Mark DouglasMGD1999-06-16A C:\WINDOWS\TEMP\A1228d (Ditto Linda 30mm stub).doc EN • In all planes, all polarizations:± 0.8 dB • Spatial resolution of SAR measurements:< 0.125 cm 3 • Reproducibility of probe positioning:< ± 0.2 mm A more detailed description of the system is given in references [I] and [II]. 3.2 Brain tissue simulating liquid data The electrical data used for the brain tissue simulating liquid are according to the data provided by C. Gabriel. The liquid is prepared using the recipe [V] for the brain tissue simulating liquid. The electrical parameters of the brain tissue simulating liquid are measured at room temperature by the HP 85070B dielectric probe kit from Hewlett Packard. This probe kit uses an open-ended coaxial probe and a network analyser to measure the electrical data for the liquid. The following values were measured for the relative permittivity (εε r ) and conductivity (σσ) for the liquids that were used during the SAR measurements. f ( MHz ) 8351800 εε r 43.440.1 σσ ( S/m ) 0.771.67 The depth of the brain tissue simulating liquid was 14.5cm. The SAR measurements were performed at a room temperature of 24.0 °C. 3.3 Calibration The system is calibrated at fixed time intervals by the supplier of the system (SPEAG). The E-field probes are calibrated every 12 months by the supplier. A detailed description of probe calibration is found in reference [IV]. 3.4 Validation Immediately before measuring the SAR of the device under test, the measurement system was validated by measuring the SAR of a standard dipole antenna located a set distance underneath a flat phantom. The measured results are compared with expected values that are recorded in reference documents. The results are given below. 1 gram averaged SAR (W/kg) DipoleOutput Power (W) ExpectedMeasured difference (%) D900V219.529.242.94 D1800V2112.9012.751.16 3.5 Measurement Tolerance The total measurement uncertainty is estimated to be ±25% [II]. 4. Test Procedure The dosimetric assessment measurements are made according to the operating manual for the DASY3 system from SPEAG. A base station simulator was used to control the phone during the SAR measurements. The phone was supplied with a fully-charged battery for the tests. The SAR is measured at thre…

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Test Report

APPLICANT: FCC ID NO: ERICSSON INCAXATR-393-A2 ©1999 Ericsson Inc. Exhibit 6 INDEX OF TEST RESULTS Exhibit #Description 6A800 band/Part 22/AMPS: RF Power 6B800 band/Part 22/AMPS: Modulation Characteristics 6C800 band/Part 22/AMPS: Occupied bandwidth 6D800 band/Part 22/AMPS: Spurious Emissions (conducted) 6E800 band/Part 22/AMPS: Spurious Emissions (radiated) 6F800 band/Part 22/AMPS: Frequency Stability 6G800 band/Part 22/DAMPS: RF Power 6H800 band/Part 22/DAMPS: Modulation Characteristics 6I800 band/Part 22/DAMPS: Occupied bandwidth 6J800 band/Part 22/DAMPS: Spurious Emissions (conducted) 6K800 band/Part 22/DAMPS: Spurious Emissions (radiated) 6L800 band/Part 22/DAMPS: Frequency Stability 6M1900MHz/Part 24: RF Power 6N1900MHz/Part 24: Modulation Characteristics 6O1900MHz/Part 24: Occupied bandwidth 6P1900MHz/Part 24: Spurious Emissions (conducted) 6Q1900MHz/Part 24: Spurious Emissions (radiated) 6R1900MHz/Part 24: Frequency Stability APPLICANT: FCC ID NO: ERICSSON INC AXATR-393-A2 © 1999 Ericsson Inc. EXHIBIT 6A1 800 MHz AMPS RF POWER OUTPUT Para. 2.1033 (c,6,7), 2.1046 and 22.913 (a) The RF power measured at the output…

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Contact Information

Applicant

Thomas Camper, Jr.(Regulatory Manager)
[email protected]434-455-9367Fax: 434-455-6851

Technical Contact

Ericsson IncJim R Sponsler
((919) 472-6460

7001 Development Drive · RTP, North Carolina · United States

Non-Technical Contact

Ericsson IncJim R Sponsler
[email protected](919) 472-6460

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
424E1.85 GHz - 1.91 GHz546.00 mW30K0DXW2.5 ppm
Confidentiality
Long Term

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