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AEZSCP-6KSingle Band PCS Phone (CDMA)

Sanyo Electric Co Ltd
Single Band PCS Phone (CDMA) - FCC ID AEZSCP-6K - Sanyo Electric Co Ltd
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Application Details

Equipment Class
PCE - PCS Licensed Transmitter held to ear
Date of Grant
Feb 05, 2001
Application Purpose
Original Equipment
Date of Application
Jan 25, 2001
Equipment Note
Single Band PCS Phone (CDMA)
Frequency Range
1851.25000000 - 1908.75000000
Company
Sanyo Electric Co Ltd
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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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Operational Description

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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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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

© 2001 PCTEST Lab ATTACHMENT O – USER'S MANUAL

Cover Letter(s)

© 2001 PCTEST Lab ATTACHMENT A – COVER LETTER(S) January 22, 2001 Federal Communications Commission Equipment Approval Services 7435 Oakland Mills Road Columbia, MD 21046 SUBJECT: SANYO Electric Co., Ltd. FCC ID: AEZSCP-6K Part 24 Certification Gentlemen: Attached herewith, on behalf of SANYO Electric Co., Ltd., is an application for Part 24 Certification of the following Single-Band PCS phone: FCC ID: AEZSCP-6K TRADE / MODEL: SANYO SCP-6000 EUT TYPE: Single-Band PCS Phone (CDMA) Tx Freq. Range: 1851.25 – 1908.75 MHz (CDMA) Max. RF Output Power: 0.372 Watts EIRP - PCS CDMA (25.707 dBm) Attached is the applicant’s Letter of Authorization, Confidentiality Request, ESN Affidavit, 911 compliance statement, measurement report data and plots, RF Exposure measurement report and data, FCC ID label and location, test setup photographs, internal and external photographs, block diagram (confidential), schematic diagrams (confidential), operational description, parts list & tune-up procedure, and the user's manual. Should you have any questions or comments concerning the above, please contact the undersigned. cc: Mr. Koichi Takahashi Vice President, Marketing SANYO Fisher (USA) Corp.

External Photos

© 2001 PCTEST Lab ATTACHMENT G – EXTERNAL PHOTOGRAPHS © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA)

ID Label/Location Info

© 2001 PCTEST Lab ATTACHMENT E – FCC ID LABEL / LOCATION © 2000 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)

Internal Photos

© 2001 PCTEST Lab ATTACHMENT H – INTERNAL PHOTOGRAPHS © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA)

Operational Description

© 2001 PCTEST Lab ATTACHMENT K – OPERATIONAL DESCRIPTION Operational Description FCC ID:AEZSCP-6K Model:SCP-6000 SANYO SCP-6000 is a Singlel-Band PCS Only Mode digital CDMA phone. It is designed to comply with Part 15 and Part 24 of the CFR. PCS Band (CDMA): TX Frequencies: 1851.25MHz - 1908.75MHz RX Frequencies: 1931.25MHz - 1988.75MHz LO Frequencies: 1720.87MHz - 1778.37MHz TCXO Frequency: 19.68MHz CDMA Max. Conducted Output Power : +23.7dBm (0.235W) Battery voltage: 3.7V Nominal, 3.4 Min., V Li-ion (Supplied with phone) Frequency Stabilization A voltage controlled temperature compensated crystal oscillator (VCTCXO) is utilized as a frequency reference for all of the transceiver local oscillators. This crystal oscillator is specified to a frequency stability of +/- 2.5ppm over temperature and voltage variations. The synthesizer lock status is constantly monitored by the microprocessor and transmission is disabled whenever an out of lock condition is detected. The mobile is locked to the base station during operation. The mobile receiver constantly monitors the received signal from the base station and makes necessary frequency adjustments on the VCTCXO to correct any frequency errors between the mobile and he base station. Suppression of Spurious Radiation Spurious and harmonic suppression is achieved by proper design with various filters and sufficient use of EMI shields. Rigorous testing at the factory ensures continuous compliance. Limiting Power Each mobile is individually calibrated at the factory to ensure Max. power of no more than +25.2dBm for PCS CDMA and +24.9dBm for AMPS by employing a proper frequency and temperature compensation schemes for both the TX and RX automatic gain control (AGC) amplifiers. There are also hardware circuitries to monitor TX power and software reset limits to limit maximum TX power. Limiting Modulation The audio input is sampled, digitally limited, and then filtered to amplitude and frequency limit the signal applied to the modulator. The device supports AMPS standards and ANSI J-STD-008 for CDMA operation. The device has an operating temperature range of –30 to +60C. The functions include Compandor, PLL lock detector for received SAT, filtering of received data, and audio signal filtering for signals.

Operational Description

© 2001 PCTEST Lab ATTACHMENT N – ANTENNA SPECS Applicant; SANYO Electric Co., Ltd.Transmitter Type: AEZSCP-6K FCC TEST MODE Operation Manual Antenna Gain (Peak Value) BandExtended (Whip) Retracted (Helical) PCS1.9-2.2 (Unit:dBi)

Parts List/Tune Up Info

© 2001 PCTEST Lab ATTACHMENT L – PARTS LIST

Parts List/Tune Up Info

© 2001 PCTEST Lab ATTACHMENT M – TUNE UP PROCEDURE SCP-6000 Adjustment Discription for Mass production. APPROVECHECK ISSUE 1-163-293-00 SCP-6000S/H.US Eng. Section Personal Telecommunication Division Technical Engineering Department RF Group NAME T-Taniguchi No. Contents 1 Set-Up for Tune-Up and Adjustment of Transmitter 2 Alignment Procedure 3 Adjust Value 4 Measurement Specification of Adjustment Minor Change Version PAGE 2 2Alignment Procedure (1)Adjustment Procedure Controller(Personal Computer) SETUP I PCS Adjustment Mode SCP-6000 Handset Connect,Power ON Rx-RASRAM ADJ. Division of NG I PCS Adjustment Mode Rx-Frequency ADJ. Adjustment/Adjustment Value Setting LNA ADJ. NG NV Value Compare with Specification Tx-RASRAM,LIMIT ADJ. OK Write Value to EEPROM Tx Frequency ADJ. Limit Frequency ADJ. END END POWER OFF Get Out SCP-6000 Handset PAGE 3 (2)Measurement Procedure Controller(Personal Computer) SETUP I PCS Measurement mode SCP-6000 Handset Connect,Power ON Single Tone Desens. PCS Measurement System SETUP AWGN Division of NG I PCS Measurement Mode Frquency ERR. Rate Measurement Mode Setup and Mesurement Open-Loop Power NG Adjustment Value Compare with Specification Closed-Loop Power OK POWER OFF Get Out SCP-6000 Handset Minimum Cntl.Power END Receiver Sensitivity Maximum Output Power Conducted Spurious END 3.Adjustment Value PAGE 4 1.PCS RX Adjustment ITEM Sub-ITEM Handset Setup(Internal Setup) HP8924 Setup Adj. Value Accuracy of NV-Value Rx-RASRAM Table 1 Normal Mode CDMA Ch=563 :SG LV=-106.0dBm -106.0dBm Adjustment Table 2 OFF Line Mode SG LV=-100.6dBm -100.6dBm Table 3 SG LV=-95.3dBm -95.3dBm Table 4 SG LV=-90.0dBm -90.0dBm Table 5 SG LV=-84.7dBm -84.7dBm Table 6 SG LV=-79.4dBm -79.4dBm Table 7 SG LV=-74.1dBm -74.1dBm Table 8 SG LV=-68.8dBm -68.8dBm Table 9 SG LV=-63.5dBm -63.5dBm Table 10 SG LV=-58.1dBm -58.1dBm Table 11 SG LV=-52.8dBm -52.8dBm Table 12 SG LV=-47.5dBm -47.5dBm Table 13 SG LV=-42.2dBm -42.2dBm Table 14 SG LV=-36.9dBm -36.9dBm Table 15 SG LV=-31.6dBm -31.6dBm Table 16 SG LV=-26.3dBm -26.3dBm Table 17 SG LV=-21.0dBm -21.0dBm RX AGC Frequency Bk 0=38ch Normal Mode RF INPUT(SG) LV=-63.5dBmAGC DIFF. Adjustment Bk 1=113ch Reference ch :563ch Change to Channel 16 Time. AGC DIFF. Bk 2=188ch Deference of Center ch AGCsym. AGC DIFF. Bk 3=263ch Change to Channel 16 Time. AGC DIFF. Bk 4=338ch OFF Line Mode AGC DIFF. Bk 5=413ch AGC DIFF. Bk 6=488ch AGC DIFF. Bk 7=563ch Center CH Bk 8=638ch AGC DIFF. Bk 9=713ch AGC DIFF. Bk10=788ch AGC DIFF. Bk11=863ch AGC DIFF. Bk12=938ch AGC DIFF. Bk13=1013ch AGC DIFF. Bk14=1088ch AGC DIFF. Bk15=1163ch AGC DIFF. PAGE 5 2.PCS TX & TX-LIMIT Adjustment ITEM Sub-ITEM Handset Setup(Internal Setup) HP8924 Setup Adj. Value Accuracy of NV-Value Tx-RASRAM Nomal Test ModePCS Ch=1163ch +23.7dBm Adjustment SG level is ccording to the transmission -50.0dBm power level of MS & TOTAL:36Parametor Symbol -50.0dBm +23.7dBm Tx-Limit Table 1 PCS Ch=1163ch +8.75dBm Adjustment Table 2 +10.1dBm Table 3 +11.4dBm Table 4 +12.7dBm Table 5 +14.1dBm Table 6 +15.4dBm Table 7 +16.7dBm Table 8 +18.1dBm Table 9 +19.4dBm Table 10 +20.7dBm Table 11 +22.1dBm Table 12 +23.4dBm Table 13 +23.7dBm Table 14 Table 15 Table 16 OFFSET Offset : 16.7dB(Table 7) SPN Spn : 26.0dBm(Table 14) +23.7dBm PAGE 6 3.Tx AGC Frequency Adjustment and Tx Limit Frequency Adjustment. TX AGC Frequency Bk 0=38ch Nomal Test Mode RF INPUT(SG) LV=-92.0dBm Tx-Pow diff. Adjustment Bk 1=113ch Reference ch :1163ch Change to Channel 16 Time. Tx-Pow diff. Bk 2=188ch Difference of Center ch AGCsym. Tx-Pow diff. Bk 3=263ch Change to Channel 16 Time. Tx-Pow diff. Bk 4=338ch Tx-Pow diff. Bk 5=413ch Tx-Pow diff. Bk 6=488ch Tx-Pow diff. Bk 7=563ch Tx-Pow diff. & Bk 8=638ch Tx-Pow diff. Bk 9=713ch Tx-Pow diff. Bk10=788ch Tx-Pow diff. Bk11=863ch Tx-Pow diff. Bk12=938ch Tx-Pow diff. Bk13=1013ch Tx-Pow diff. Bk14=1088ch Tx-Pow diff. Bk15=1163ch REF. CH TX Limit Frequency Bk 0=38ch Nomal Test Mode RF INPUT(SG) LV=-92.0dBm * Adjustment Bk 1=113ch Reference ch :1163ch Change to Channel 16 Time. * Bk 2=188ch Difference of Center ch AGCsym. * Bk 3=263ch Change to Channel 16 Time. * Bk 4=338ch * Bk 5=413ch * Bk 6=488ch * Bk 7=563ch 12Symb=1.0dB * Bk 8=638ch * Bk 9=713ch * Bk10=788ch * Bk11=863ch * Bk12=938ch * Bk13=1013ch * Bk14=1088ch * Bk15=1163ch REF. CH *TX-Power Diffrencial + ADC Diffrencial×Limit Table Value PAGE 7 4.Measurement Specification of Adjustment 1. PCS Measurement Specification Measurement Item Standard Item IS98C Standard Spec Measurement Spec Measurement Condition Measurement Channel Others RTC Demod. of FW.ch TIA/EIA-98-C Rateset2 SVC opt9 3.3.3 AWGN Test10(Eb/Nt=4.1) 1%(0.010) 1%(0.010) 7200(TEST10) 25ch Waveform Quality TIA/EIA-98-C Rateset2 SVC opt9 RHO 4.3.2 >0.944 >0.944 14400bps 25ch Frequency Err Rate 4.1.1 ±150Hz ±150Hz 25ch Time Offset 4.3.1 ±1uS ±1uS 25ch TTC Range of Openloop TIA/EIA-98-C dBm dBm Rateset2 SVC opt9 Openloop Power Test1 4.4.1 -51±9.5(CLASS II) -51±9.5(CLASS II) 14400bps 25ch Openloop Power Test2 -11±9.5(CLASS II) -11±9.5(CLASS II) 25ch Openloop Power Test3 20±9.5(CLASS II) 20±9.5(CLASS II) 25ch TTC Range of Closedloop TIA/EIA-98-C Rateset2 SVC opt9 Closedloop Full Power 4.4.4 RF Output = -13dBm -14±3dBm 14400bps 25ch Closedloop Max Power >+24dB >+24dB Closedloop Min Power <-24dB <-24dB TTC Min.Controlled Pow TIA/EIA-98-C Rateset2 SVC opt9 Minimum Controlled Pow 4.4.6 -50dBm/1.23MHz -50dBm/1.23MHz 14400bps 25ch RTC Receiver Sensitivity TIA/EIA-98-C 0.5%(Confidence95%) 1.0%(Confidence95%) Rate2 Full -106.8dBm 600ch, 1175ch Receiver Sensitivity FER 3.4.1 0.5%(Confidence95%) 1.0%(Confidence95%) Rate2 Full -106.0dBm 25ch Single Tone Desens. TIA/EIA-98-C 1.0%(Confidence95%) 1.0%(Confidence95%) Rate2 Full -101.0dBm 1175ch(+) Sensitivity FER 3.4.2 Undesired>-30dBm 1175ch(-) TTC Max RF Output Pow TIA/EIA-98-C 23.0dBm~30.0dBm 21.5dBm~23.5dBm 25ch Max Power Output 4.4.5 (EIRP) 21.5dBm~23.5dBm 600ch 21.5dBm~23.5dBm 1175ch TTC Conducted Spurious TIA/EIA-98-C SCV Opt9(14400) >1.25MHz 3.5.1 <-42dBc <…

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RF Exposure Info

© 2001 PCTEST Lab ATTACHMENT P – SAR MEASUREMENT REPORT © 2001 PCTEST Engineering Lab., Inc. PCTEST Engineering Laboratory, Inc. 66606660--B Dobbin Road B Dobbin Road •• Columbia, MD 21045 Columbia, MD 21045 •• U.S.A. U.S.A. TEL (410) 290TEL (410) 290--6652 6652 •• FAX (410) 290 FAX (410) 290--66546654 http://www.pctestlab.comhttp://www.pctestlab.com CERTIFICATE OF COMPLIANCE (SAR EVALUATION) SANYO ELECTRIC CO., LTD. Dates of Tests: January 22-23, 2001 c/o Sanyo Sales & Supply (USA) Corp. Test Report S/N: SAR.210122025.AEZ 900 North Arlington Heights Road, Suite 300 Test Site: PCTEST Lab, Columbia, MD USA Itasca, IL 60143-2844 Attn: Mr. Koichi Takahashi, V.P. Marketing SANYO Fisher (USA) Corporation FCC ID AEZSCP-6K APPLICANT SANYO ELECTRIC CO., LTD. EUT Type: Single-Band PCS Only Phone (CDMA) Tx Frequency: 1851.25 – 1908.75 MHz (PCS CDMA) Rx Frequency: 1931.25 – 1988.75 MHz (PCS CDMA) Max. RF Output Power: 0.372 W EIRP PCS CDMA (25.707 dBm) Max. SAR Measurement: 1.280W/kg (1g) PCS CDMA Head SAR; 1.050W/kg (1g) PCS CDMA Body SAR; Trade Name/Model(s): SANYO SCP-6000 FCC Classification: Licensed Portable Transmitter Held to Ear (PCE) Application Type: Certification Serial Number: n/a (pre production) FCC Rule Part(s): 2.1093; ET Docket 96.326; 24(E) 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. 862. 210122025.AEZ SAR Measurement Report FCC Part 24 Certification © 2001 PCTEST Lab i Table of Contents 1.1 SCOPE 1 2.1 INTRODUCTION / SAR DEFINITION 2 3.1 SAR MEASUREMENT SET-UP 3 4.1 E-FIELD PROBE SYSTEM 4 5.1 E-FIELD PROBE CALIBRATION PROCESS 5-6 6.1 PHANTOM, HOLDER, & EQUIVALENT TISSUE 7 7.1 SYSTEM SPECIFICATIONS 8 8.1 MEASUREMENT PROCESS 9 9.1 TEST POSITION OF THE PHONE 10 10.1 BODY SAR TEST SETUP 11 11.1 ANSI/IEEE C95.1 RF EXPOSURE LIMITS 12 12.1 MEASUREMENT UNCERTAINTIES 13 13.1 TEST DATA SUMMARY 14-15 14.1 SAR TEST EQUIPMENT LIST 16 15.1 CONCLUSION 17 16.1 REFERENCES 18 Test Report S/N: SAR.210122025.AEZ SAR Measurement Report Test Date(s): January 22-23, 2001 FCC Part 24 Certification SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) © 2001 PCTEST Lab Single-Band PCS Only Phone (CDMA) 1 SAR MEASUREMENT REPORT 1.1 Scope Environmental evaluation measurements of specific absorption rate 1 (SAR) distributions in simulated human head and body 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: SANYO ELECTRIC CO., LTD. c/o Sanyo Sales & Supply (USA) Corp. Address: 900 North Arlington Heights Road, Suite 300 Itasca, IL 60143-2844 Attention: Koichi Takahashi, V.P. Marketing SANYO Fisher (USA) Corporation • EUT Type: Single-Band PCS Only Phone • Trade Name: SANYO • Model(s): SCP-6000 • FCC IDENTIFIER: AEZSCP-6K • S/N: Pre-production • Tx Frequency: 1851.25 – 1908.75 MHz (PCS CDMA) • Rx Frequency: 1931.25 – 1988.75 MHz (PCS CDMA) • Application Type: Certification • FCC Classification: Licensed Portable Transmitter Held to Ear (PCE) • Modulation(s): CDMA • FCC Rule Part(s): § 2.1093, Docket 96-326; § 24(E) • Max. SAR Measurement: 1.280W/kg (1g) PCS CDMA Head SAR 1.050W/kg PCS CDMA Body SAR • Max. RF Output Power: 0.372 EIRP PCS CDMA (25.707 dBm) • Antenna Type: Helical • Antenna Dimensions: 4.7 cm. (Length) • Dates of Tests: January 22-23, 2001 • Place of Tests: PCTEST Engineering Lab. Columbia, MD, U.S.A. • Report Serial No.: SAR.210122025.AEZ 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.210122025.AEZ SAR Measurement Report Test Date(s): January 22-23, 2001 FCC Part 24 Certification SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) © 2001 PCTEST Lab Single-Band PCS Only Phone (CDMA) 2 2.1 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 E…

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RF Exposure Info

© 2001 PCTEST Lab ATTACHMENT Q – SAR TEST DATA SANYO FCC ID:AEZSCP-6K -- PCS Head SAR Generic Twin Phantom; Right Hand Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Brain: σ = 1.82 mho/m ε r = 40.4 ρ = 1.00 g/cm 3 ; Antenna Position -- In; Crest Factor 1.0 SAR (1g): 1.28 mW/g, SAR (10g): 0.653 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0025 [1851.25MHz] Conducted Power = 23.7dBm Test Date -- 01-23-2001 SAR Tot [mW/g] 1.20E-1 3.60E-1 6.00E-1 8.39E-1 1.08E+0 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Head SAR Generic Twin Phantom; Right Hand Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Brain: σ = 1.82 mho/m ε r = 40.4 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 1.0 SAR (1g): 1.27 mW/g, SAR (10g): 0.681 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0025 [1851.25MHz] Conducted Power = 23.7dBm Test Date -- 01-23-2001 SAR Tot [mW/g] 1.21E-1 3.62E-1 6.03E-1 8.44E-1 1.09E+0 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Head SAR Generic Twin Phantom; Right Hand Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Brain: σ = 1.82 mho/m ε r = 40.4 ρ = 1.00 g/cm 3 ; Antenna Position -- In; Crest Factor 1.0 SAR (1g): 0.918 mW/g, SAR (10g): 0.472 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0600 [1880.00MHz] Conducted Power = 23.7dBm Test Date -- 01-23-2001 SAR Tot [mW/g] 9.42E-2 2.83E-1 4.71E-1 6.59E-1 8.48E-1 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Head SAR Generic Twin Phantom; Right Hand Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Brain: σ = 1.82 mho/m ε r = 40.4 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 1.0 SAR (1g): 1.16 mW/g, SAR (10g): 0.636 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0600 [1880.00MHz] Conducted Power = 23.7dBm Test Date -- 01-23-2001 SAR Tot [mW/g] 1.07E-1 3.21E-1 5.35E-1 7.49E-1 9.63E-1 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Head SAR Generic Twin Phantom; Right Hand Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Brain: σ = 1.82 mho/m ε r = 40.4 ρ = 1.00 g/cm 3 ; Antenna Position -- In; Crest Factor 1.0 SAR (1g): 1.05 mW/g, SAR (10g): 0.522 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.1175 [1908.75MHz] Conducted Power = 23.7dBm Test Date -- 01-23-2001 SAR Tot [mW/g] 1.02E-1 3.05E-1 5.09E-1 7.13E-1 9.16E-1 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Head SAR Generic Twin Phantom; Right Hand Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Brain: σ = 1.82 mho/m ε r = 40.4 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 1.0 SAR (1g): 1.16 mW/g, SAR (10g): 0.618 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.1175 [1908.75MHz] Conducted Power = 23.7dBm Test Date -- 01-23-2001 SAR Tot [mW/g] 1.06E-1 3.17E-1 5.28E-1 7.40E-1 9.51E-1 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Body SAR Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Muscle: σ = 1.85 mho/m ε r = 54.2 ρ = 1.00 g/cm 3 ; Antenna Position -- In; Crest Factor 1.0 SAR (1g): 0.179 mW/g, SAR (10g): 0.0833 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0025 [1851.25MHz] Conducted Power = 23.7dBm; Spacing = 1.5cm from flat phantom to antenna, no beltclip or holster Test Date -- 01-22-2001 SAR Tot [mW/g] 1.09E-2 3.27E-2 5.45E-2 7.63E-2 9.81E-2 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Body SAR Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Muscle: σ = 1.85 mho/m ε r = 54.2 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 1.0 SAR (1g): 0.717 mW/g, SAR (10g): 0.406 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0025 [1851.25MHz] Conducted Power = 23.7dBm; Spacing = 1.5cm from flat phantom to antenna, no beltclip or holster Test Date -- 01-22-2001 SAR Tot [mW/g] 5.91E-2 1.77E-1 2.95E-1 4.14E-1 5.32E-1 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Body SAR Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Muscle: σ = 1.85 mho/m ε r = 54.2 ρ = 1.00 g/cm 3 ; Antenna Position -- In; Crest Factor 1.0 SAR (1g): 0.0987 mW/g, SAR (10g): 0.0608 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0600 [1880.00MHz] Conducted Power = 23.7dBm; Spacing = 1.5cm from flat phantom to antenna, no beltclip or holster Test Date -- 01-22-2001 SAR Tot [mW/g] 8.70E-3 2.61E-2 4.35E-2 6.09E-2 7.83E-2 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Body SAR Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Muscle: σ = 1.85 mho/m ε r = 54.2 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 1.0 SAR (1g): 0.921 mW/g, SAR (10g): 0.508 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.0600 [1880.00MHz] Conducted Power = 23.7dBm; Spacing = 1.5cm from flat phantom to antenna, no beltclip or holster Test Date -- 01-22-2001 SAR Tot [mW/g] 7.27E-2 2.18E-1 3.63E-1 5.09E-1 6.54E-1 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Body SAR Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz Muscle: σ = 1.85 mho/m ε r = 54.2 ρ = 1.00 g/cm 3 ; Antenna Position -- In; Crest Factor 1.0 SAR (1g): 0.113 mW/g, SAR (10g): 0.0620 mW/g SANYO PCS Single-Band Model:SCP-6000 PCS Mode, Ch.1175 [1908.75MHz] Conducted Power = 23.7dBm; Spacing = 1.5cm from flat phantom to antenna, no beltclip or holster Test Date -- 01-22-2001 SAR Tot [mW/g] 9.80E-3 2.94E-2 4.90E-2 6.86E-2 8.82E-2 PCTEST Engineering Laboratory, Inc. SANYO FCC ID:AEZSCP-6K -- PCS Body SAR Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 02/00 Med. Parameters 1900 MHz…

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RF Exposure Info

© 2001 PCTEST Lab ATTACHMENT R – SAR TEST SETUP PHOTOGRAPHS © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA) © 2001 PCTEST Lab SANYO FCC ID: AEZSCP-6K (Model: SCP-6000) NVLAP Lab Code: 100431-0 Single-Band PCS Only Phone (CDMA)

RF Exposure Info

© 2001 PCTEST Lab ATTACHMENT T – PROBE CALIBRATION Probe ET3DV5 SN:1370 Manufactured: February 1999 Calibrated: February 2000 Calibrated for System DASY3 Page 1 of 8 ET3DV5 SN:1370 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 μ V 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:1370 DASY3 - Parameters of Probe: ET3DV5 SN:1370 Sensitivity in Free Space NormX1.58μV/(V/m) 2 NormY1.64μV/(V/m) 2 NormZ1.80μV/(V/m) 2 Diode Compression DCP X96mV DCP Y96mV DCP Z96mV Sensitivity in Tissue Simulating Liquid 450 MHzConvF X6.5extrapolated ε r = 48 ± 5% ConvF Y6.5extrapolated σ =0.50 ± 10%mho/m ConvF Z6.5extrapolated(brain tissue simulating liquid) 900 MHz ConvF X6.0± 10% ε r = 42.5 ± 5% ConvF Y6.0± 10% σ =0.86 ± 10%mho/m ConvF Z6.0± 10%(brain tissue simulating liquid) 1500 MHz ConvF X5.4interpolated ε r = 41 ± 5% ConvF Y5.4interpolated σ =1.32 ± 10%mho/m ConvF Z5.4interpolated(brain tissue simulating liquid) 1800 MHz ConvF X5.1± 10% ε r = 41 ± 5% ConvF Y5.1± 10% σ =1.69 ± 10%mho/m ConvF Z5.1± 10%(brain tissue simulating liquid) Sensor Offset Probe Tip to Sensor Center2.7mm Surface to Probe Tip1.6 ± 0.2mm Page 3 of 8 ET3DV5 SN:1370 Receiving Pattern (φ), θ = 0° f = 30 MHz, TEM cell ifi110 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot f = 100 MHz, TEM cell ifi110 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot f = 300 MHz, TEM cell ifi110 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot f = 900 MHz, TEM cell ifi110 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot Page 4 of 8 ET3DV5 SN:1370 Isotropy Error (φ), θ = 0° -1.00 -0.80 -0.60 -0.40 -0.20 0.00 0.20 0.40 0.60 0.80 1.00 060120180240300360 error[dB] 30 MHz 100 MHz 300 MHz 900 MHz 1800 MHz 2500 MHz f = 1800 MHz, WG R22 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot f = 2500 MHz, WG R26 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot Page 5 of 8 ET3DV5 SN:1370 Frequency Response of E-Field ( TEM-Cell:ifi110, Waveguide R22, R26 ) 0.50 0.60 0.70 0.80 0.90 1.00 1.10 1.20 1.30 1.40 1.50 050010001500200025003000 f [MHz] frequency response TEMR22R26 Page…

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Contact Information

Applicant

Hideaki Mukaida
[email protected]818-998-7322Fax: 818-701-4192

Technical Contact

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

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

Non-Technical Contact

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

Test Firm

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

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
124E1.85 GHz - 1.91 GHz372.00 mW1M25F9W2.5000000000 ppm
Confidentiality
Long Term

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