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AEZC304SASingle-Mode Cellular Phone (CDMA)

Sanyo Electric Co Ltd
Single-Mode Cellular Phone (CDMA) - FCC ID AEZC304SA - Sanyo Electric Co Ltd
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Application Details

Equipment Class
TNE - Licensed Non-Broadcast Transmitter Held to Ear
Date of Grant
Jun 12, 2000
Application Purpose
Original Equipment
Date of Application
Apr 30, 2000
Equipment Note
Single-Mode Cellular Phone (CDMA)
Frequency Range
824.70000000 - 848.31000000
Company
Sanyo Electric Co Ltd
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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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.

Attestation Statements

SANYO Electric Co., Ltd. Multimedia Company Tel: +81-72-870-6288 Personal Telecommunication DivisionFax: +81-72-870-6084 April 18, 2000 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 In re:SANYO Electric Co., Ltd. FCC ID: AEZC304SA Cellular Phone (CDMA) Request for Confidentiality Gentlemen: In accordance with 0.459 of CFR 47, Sanyo Electric Co., Ltd. hereby requests confidentiality of the Block Diagram (Attachment I) and Schematic Diagrams (Attachment J) in the attached test report. These documents contain detailed system and equipment description and related information about the product which Sanyo Electric Co., 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, Sanyo Corporation considers this information to be of benefit to its competitors, and that the disclosure of the information in these documents would give competitors an unfair advantage in the market. Sincerely, Hiromu Tokumatsu Manager Technical Engineering Department Personal Telecommunication division Multimedia Company SANYO Electric Co., Ltd.

Cover Letter(s)

April 24, 2000 Federal Communications Commission Equipment Approval Services 7435 Oakland Mills Road Columbia, MD 21046 SUBJECT:SANYO ELECTRIC CO., LTD FCC ID: AEZC304SA Part 22 Certification Gentlemen: Attached herewith, on behalf of SAMSUNG ELECTRONICS CO., LTD. is an application for Part 22.901(d) Certification of the following Single Mode Cellular CDMA Phone: FCC ID:AEZC304SA TRADE / MODEL(s):SANYO AEZC304SA EUT TYPE:Licensed Portable Transmitter Held to Ear (PCE) Tx Freq. Range:824.70 – 848.31 MHz (CDMA) Rx Freq. Range:869.70 – 893.31 MHz (CDMA) Max. RF Output Power:0.322 W ERP CDMA (25.08 dBm) Attached is the applicant’s Letter of Authorization, Confidentiality Request, measurement report data and plots, RF Exposure measurement report, FCC ID label and location, test setup photographs, internal and external photographs, block diagrams (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 V.P. Marketing SANYO Fisher (USA) Corporation

Cover Letter(s)

Attachment Submission FormPage 1 of 1 https://gullfoss.fcc.gov/prod/oet/forms/blobs/comload.cgi05/12/2000 Mail your comments or suggestions (To: [email protected]) FCC - Federal Communications Commission - Confirmation Number: EA97490 FCC ID: AEZC304SA Fri May 12 17:33:33 EDT 2000 Status File Size (bytes) File DescriptionExhibit TypeFile Format OK 235647 Test Report Test Report Adobe Acrobat PDF OK 567360 Test Plots Test Report Adobe Acrobat PDF OK 65422 FCC ID Sample Label and Location ID Label/Location Info Adobe Acrobat PDF OK 1894217 Users Manual Users Manual Adobe Acrobat PDF OK 546097 SAR Test Report RF Exposure Info Adobe Acrobat PDF OK 289790 Head SAR Test Data RF Exposure Info Adobe Acrobat PDF OK 406539 Head SAR Test Photos RF Exposure Info Adobe Acrobat PDF OK 364770 Body SAR Test Data RF Exposure Info Adobe Acrobat PDF OK 406673 Body SAR Test Photos RF Exposure Info Adobe Acrobat PDF OK 9225 RF Users Manual Warning Statement RF Exposure Info Adobe Acrobat PDF Send More Exhibits

External Photos

© 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd.

ID Label/Location Info

© 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

© 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd. © 2000 PCTEST Lab FCC ID: AEZC304SA NVLAP Lab Code: 100431-0 SANYO Electric Co., Ltd.

Operational Description

Applicant; SANYO Electric Co., Ltd.Transmitter Type: AEZC304SA Antenna Gain (Peak Value) Extended (Whip) Retracted (Helical) CDMA+1.9+1.0 (Unit:dBd)

Parts List/Tune Up Info

C304SA RF BLOCK PARTS LISTPage1 LOCATIONPARTS CODEDESCRIPTIONQUANTITY C1101CC1H3R0CGQCNGCERAMIC 3P C 50V1 C1102CC1H101JMNCNGCERAMIC 100P J 50V1 C1103CC1H101JMNCNGCERAMIC 100P J 50V1 C1104CC1H101JMNCNGCERAMIC 100P J 50V1 C1105CC1H101JMNCNGCERAMIC 100P J 50V1 C1106CK1H102KMNBNGCERAMIC 1000P K 50V1 C1107CK1H102KMNBNGCERAMIC 1000P K 50V1 C1108CC1H101JMNCNGCERAMIC 100P J 50V1 C1110CC1H101JMNCNGCERAMIC 100P J 50V1 C1121CC1H101JMNCNGCERAMIC 100P J 50V1 C1200CC1HR50CMNCNGCERAMIC 0.5P C 50V1 C1201CC1H560JMNCNGCERAMIC 56P J 50V1 C1202CK1H102KMNBNGCERAMIC 1000P K 50V1 C1203CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1204CK1H102KMNBNGCERAMIC 1000P K 50V1 C1205CC1H1R5CMNCNGCERAMIC 1.5P C 50V1 C1206CK1H102KMNBNGCERAMIC 1000P K 50V1 C1207CC1H101JMNCNGCERAMIC 100P J 50V1 C1208CC1H101JMNCNGCERAMIC 100P J 50V1 C1209CC1H220JMNCNGCERAMIC 22P J 50V1 C1210CC1H1R5CMNCNGCERAMIC 1.5P C 50V1 C1211CC1H120JMNCNGCERAMIC 12P J 50V1 C1212CK1H102KMNBNGCERAMIC 1000P K 50V1 C1213CK1H102KMNBNGCERAMIC 1000P K 50V1 C1214CC1H560JMNCNGCERAMIC 56P J 50V1 C1216CC1H5R5CMNCNGCERAMIC 5.5P C 50V1 C1219CC1H1R0CMNCNGCERAMIC 1P C 50V1 C1220CC1H120JMNCNGCERAMIC 12P J 50V1 C1221CC1H120JMNCNGCERAMIC 12P J 50V1 C1241CC1H101JMNCNGCERAMIC 100P J 50V1 C1301CK1H102KMNBNGCERAMIC 1000P K 50V1 C1302CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1303CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1304CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1305CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1306CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1307CK1A224KGQBNGCERAMIC 0.22U K 10V1 C1308CK1A104KMTBNGCERAMIC 0.1U K 10V1 C1309CK1A104KMTBNGCERAMIC 0.1U K 10V1 C1310CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1311CK1H102KMNBNGCERAMIC 1000P K 50V1 C1312CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1401CK1H102KMNBNGCERAMIC 1000P K 50V1 C1402CK1H102KMNBNGCERAMIC 1000P K 50V1 C1403CTXAD0J100PPGTA-SOLID 10U M 6.3V1 C1404CK1H102KGQBNGCERAMIC 1000P K 50V1 C1405CK1E333KGABNGCERAMIC 0.033U K 25V1 C1406CK1H122KGQBNGCERAMIC 1200P K 50V1 C1407CC1H101JMNCNGCERAMIC 100P J 50V1 C1408CK1H102KMNBNGCERAMIC 1000P K 50V1 C304SA RF BLOCK PARTS LISTPage2 C1409CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1410CTXAD0J100PPGTA-SOLID 10U M 6.3V1 C1411CK1H272KGQBNGCERAMIC 2700P K 50V1 C1412CK1E473KGABNGCERAMIC 0.047U K 25V1 C1413CK1H471KMNBNGCERAMIC 470P K 50V1 C1414CC1H8R0DMNCNGCERAMIC 8P D 50V1 C1415CC1H390JMNCNGCERAMIC 39P J 50V1 C1416CC1H390JMNCNGCERAMIC 39P J 50V1 C1418CC1H101JMNCNGCERAMIC 100P J 50V1 C1419CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1420CC1H101JMNCNGCERAMIC 100P J 50V1 C1421CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1424CK1H102KMNBNGCERAMIC 1000P K 50V1 C1425CK1H102KMNBNGCERAMIC 1000P K 50V1 C1426CC1HR75BMNCNGCERAMIC 0.75P B 50V1 C1427CK1H102KMNBNGCERAMIC 1000P K 50V1 C1501CC1H101JMNCNGCERAMIC 100P J 50V1 C1502CK0J105KMABNGCERAMIC 1U K 6.3V1 C1503CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1601CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1602CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1603CK1H102KMNBNGCERAMIC 1000P K 50V1 C1604CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1605CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1606CK1H102KMNBNGCERAMIC 1000P K 50V1 C1607CK1A224KGQBNGCERAMIC 0.22U K 10V1 C1608CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1609CK1C472KRFHNGCERAMIC 4700P K 16V1 C1610CK1E683KGABNGCERAMIC 0.068U K 25V1 C1611CK1H821KMNBNGCERAMIC 820P K 50V1 C1615CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1616CK1H102KMNBNGCERAMIC 1000P K 50V1 C1617CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1618CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1620CC1H220JMNCNGCERAMIC 22P J 50V1 C1621CC1H9R0DMNCNGCERAMIC 9P D 50V1 C1622CC1H220JMNCNGCERAMIC 22P J 50V1 C1701CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1702CK1H102KMNBNGCERAMIC 1000P K 50V1 C1703CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1704CK1H102KMNBNGCERAMIC 1000P K 50V1 C1705CK1H102KMNBNGCERAMIC 1000P K 50V1 C1706CC1H5R0CMNCNGCERAMIC 5P C 50V1 C1707CC1H101JMNCNGCERAMIC 100P J 50V1 C1708CC1H470JMNCNGCERAMIC 47P J 50V1 C1709CC1H1R0CMNCNGCERAMIC 1P C 50V1 C1710CC1H101JMNCNGCERAMIC 100P J 50V1 C1711CK1H102KMNBNGCERAMIC 1000P K 50V1 C1712CK1H102KMNBNGCERAMIC 1000P K 50V1 C1713CK1H102KMNBNGCERAMIC 1000P K 50V1 C1714CK1H102KMNBNGCERAMIC 1000P K 50V1 C304SA RF BLOCK PARTS LISTPage3 C1715CC1H3R0CMNCNGCERAMIC 3P C 50V1 C1716CC1H101JMNCNGCERAMIC 100P J 50V1 C1717CK1H103KGQBNGCERAMIC 0.01U K 50V1 C1718CK1H103KGQBNGCERAMIC 0.01U K 50V1 C1719CK1H102KMNBNGCERAMIC 1000P K 50V1 C1722CC1H101JMNCNGCERAMIC 100P J 50V1 C1723CK1C103KMNBNGCERAMIC 0.01U K 16V1 C1724CK1A104KMTBNGCERAMIC 0.1U K 10V1 C1725CC1H101JGQCNGCERAMIC 100P J 50V1 C1800CC1H101JMNCNGCERAMIC 100P J 50V1 C1801CTXAD0J100PPGTA-SOLID 10U M 6.3V1 C1802CK1A104KMTBNGCERAMIC 0.1U K 10V1 C1803CK0J105KMABNGCERAMIC 1U K 6.3V1 C1804CTXAD0R100UAGTA-SOLID 10U M 7V1 C1805CK0J105KMABNGCERAMIC 1U K 6.3V1 C1806CTXAD0J100PPGTA-SOLID 10U M 6.3V1 C1807CK1A104KMTBNGCERAMIC 0.1U K 10V1 C1808CK0J105KMABNGCERAMIC 1U K 6.3V1 C1809CK1A104KMTBNGCERAMIC 0.1U K 10V1 C1901CK1H102KMNBNGCERAMIC 1000P K 50V1 C1902CK1H102KMNBNGCERAMIC 1000P K 50V1 C1903CK1H102KMNBNGCERAMIC 1000P K 50V1 C1904CK1H102KMNBNGCERAMIC 1000P K 50V1 C1905CK1H102KMNBNGCERAMIC 1000P K 50V1 C1906CK1H102KMNBNGCERAMIC 1000P K 50V1 CN1011AV4J10B0900GPLUG COAXIAL CABLE 1 CN1021AV4J11CU600GSOCKET PWB-PWB 60P 1 D1401DAHVC306A---GVARACTOR DI HVC306A-TR 1 D1402DAHVC306A---GVARACTOR DI HVC306A-TR 1 D1603DAHVC306A---GVARACTOR DI HVC306A-TR 1 D1604DAHVC306A---GVARACTOR DI HVC306A-TR 1 D1701DDHSC88-----GDIODE HSC88-TRF 1 D1702DDHSC88-----GDIODE HSC88-TRF 1 IC111QCXG1077TN--PIC CXG1077TN-T2 1 IC112QTC7SU04FU--PIC TC7SU04FU-TE85L 1 IC121QGN01096B0--GIC GN01096B0-L 1 IC122QGN02037B---GIC GN02037B 1 IC131QXXADIFR300BJIC IFR3000-47BCCF-TR 1 IC141QLMX2339LSLBPIC LMX2339LSLB 1 IC142QUPC8128TB--PIC UPC8128TB-E3 1 IC161QXXADIFT300BJIC IFT3000-48BCCF-TR 1 IC171QCMY211-----GIC CMY211-GEG 1 IC172QTC75S51FU--PIC TC75S51FU-TE85L 1 IC173QUPG2114TB--PIC UPG2114TB-E3 1 IC174QUG6E-3F1---GIC UG6E-3F12 1 IC175QTC75S51FU--PIC TC75S51FU-TE85L 1 IC181QTK11230BMC-PIC TK11230BMC-L 1 IC182QR1121N301B-PIC R1121N301B-TR 1 IC183QTK11130SC--PIC TK11130SC-L 1 IC191QS8110ANPDSBPIC S-8110ANP-DSB-T2 1 IC192QTC75S51FU--PIC TC75S51FU-TE85L 1 C304SA RF BLOCK PARTS LISTPage4 L11011AV4L2F512NJ…

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Parts List/Tune Up Info

Restricted Distribution Apr. 12, 2000 C304SA Adjustment Description for Mass Production. Model Code No.1-163-280-00 Model No.C304SA ENG. Section Personal Telecommunication Division Technical Engineering Department RF Section. Name Y.Sasaki No.Content 1.Set-Up for Tune-Up and Adjustment of Mobile Station 2.Alignment Procedure 3.Adjustment Value 4.Mesurement Specification of Adjustment Minor Change Version NO.Draw/Change History Draw/Change Contents Ver.1.0Apr. 12, 2000NEW SANYO Electric Co.,Ltd. Restricted DistributionApr.12, 2000 1. Set-Up for Tune-Up and Adjustment of TransmitterPage 1 PC-OUT/POWER-SUPPLY <-RF Cable *HP8924 need to Calibrate before Adjustment. 1: Poweron and Setup to Config Menu(Shift + Test Key). 2: Setup to Service Menu and Change to "TEMP_SENSE" of Voltmeter Connection. 3: after poweron 30 min., Check of TEMP_SENSE Metor is Stabilization or 0.5V(50degree C). 4: Setup to Protocol is "IS-95A & TSB-74" and RF chan std is "MS AMPS" . C304SA Mobile Station5: Change to CDMA Scrns and Change AVG Power mode to Chan Power mode. <- Shield Box6: Starting Calibration(About 3 minutes : Transmitter tester calibration). 7: Next time,Return to Config Menu and Starting Rf gen Lvl Calibration(few Seconds). <- GPIB Cotrol Cable DC-Power HP8924 CDMA Mobile Station Controller PC SANYO Electric Co.,Ltd. Restricted DistributionApr. 12, 2000 2Alignment ProcedurePage 2 (1) Adjustment Procedure <Adjustment Mass Production Line> Controller (Personal Computer) SETUPCDMA Adjustment Mode C304SA Mobile Station ConnectC304SA Mobile Station Connect, Power ON Rx-RASRAM ADJ. Adjustment Start(Push Start switch)CDMA Adjustment ModeRx-Frequency ADJ. NG RetryAdjustment Adjustment Value SettingLNA ADJ. NV Value Compare with SpecificationTx-RASRAM, LIMIT ADJ. OK Judgement ”Pass or Fail”NGWrite Value to EEPROMTx Frequency ADJ. Limit Frequency ADJ. ENDEND END Get Out C304SA Mobile StationPOWEROFF Get Out C304SA Mobile Station <Adjustment Process><Adjustment Item> SANYO Electric Co.,Ltd? Restricted DistributionApr. 12, 2000 Page 3 (2) Measurement Procedure <Measurement Mass Production Line> HewlettPackard Auto Measurement System SETUPCDMA Measurement Mode C304SA Mobile Station ConnectC304SA Mobile Station Connect, Power ON AWGN Open-Loop Power Measurement StartCDMA Measurement Mode Closed-Loop Power Measurement Mode Setup and MesurementMinimum Cntl.Power NG Judgement ”Pass or Fail”NGMaximum Output Power Measurement Value Compare with Specification OKOKReceiver Sensitivity END POWER OFF: Get Out C304SA Mobile Station Waveform Quality: Roa Get Out C304SA Mobile Station END Single Tone Desens. Frequency Accuracy Time OFFSET END <Measurement Process><Measurement Item> SANYO Electric Co.,Ltd? Restricted DestributionApr. 12, 2000 3. Adjustment ValuePage 4 1. CDMA RX Adjustment ITEMSub-ITEMHandset Setup(Internal Setup)HP8924 SetupAdj. ValueAccuracy of NV-Value Rx-RASRAMTable 1Normal Modecdma Ch=358 : SG LV=-106.0dBm-106.0dBm AdjustmentTable 2OFF Line Mode SG LV=-100.6dBm-100.6dBm Table 3 SG LV=-95.3dBm-95.3dBm Table 4SG LV=-90.0dBm-90.0dBm Table 5SG LV=-84.7dBm-84.7dBm Table 6SG LV=-79.4dBm-79.4dBm Table 7SG LV=-74.1dBm-74.1dBm Table 8SG LV=-68.8dBm-68.8dBm Table 9SG LV=-63.5dBm-63.5dBm Table 10SG LV=-58.1dBm-58.1dBm Table 11SG LV=-52.8dBm-52.8dBm Table 12SG LV=-47.5dBm-47.5dBm Table 13SG LV=-42.2dBm-42.2dBm Table 14SG LV=-36.9dBm-36.9dBm Table 15SG LV=-31.6dBm-31.6dBm Table 16SG LV=-26.3dBm-26.3dBm Table 17SG LV=-21.0dBm-21.0dBm RX AGC FrequencyBk 0=1017chNormal ModeRF INPUT(SG) LV=-63.5dBmAGC DIFF. AdjustmentBk 1=46chReference ch: 358chChange to Channel 16 TimeAGC DIFF. Bk 2=98chDeference of Center ch AGCsym.AGC DIFF. Bk 3=150chChange to Channel 16 Time.AGC DIFF. Bk 4=202chOFF Line ModeAGC DIFF. Bk 5=254chAGC DIFF. Bk 6=306chAGC DIFF. Bk 7=358chCenter CH Bk 8=410chAGC DIFF. Bk 9=462chAGC DIFF. Bk10=514chAGC DIFF. Bk11=566chAGC DIFF. Bk12=618chAGC DIFF. Bk13=670chAGC DIFF. Bk14=722chAGC DIFF. Bk15=774chAGC DIFF. SANYO Electric Co.,Ltd. Restricted DestributionApr. 12, 2000 Page 5 ITEMSub-ITEMHandset Setup (Internal Setup)HP8924 SetupAdj. ValueAccuracy of NV-Value LNALNAOffsetLNA Gain Active Point SettingReference ch : 358ch Adjustment LNASlopeLNA Gain Slope Setting LNAMINLNA vs Rfin Active Point LNAMAXLNA Active SPAN Setting SANYO Electric Co.,Ltd. Restricted Destribution Apr. 12, 2000 2. CDMA TX & TX-Limit Adjustment Page 6 ITEM Sub-ITEM Handset Setup(Internal Setup) HP8924 Setup Adj. Value Accuracy of NV-Value Tx-RASRAM Nomal Test Mode CDMA Ch=358ch +23.0dBm Adjustment 1-1. Set AGC Register=195 /Store SG LEVEL according to the transmission measurement of Tx-Power. LEVEL of MS. -53.0dBm 1-2. Set AGC Register=195-30stp(-165,-135,...) 1-3. Store measurement of Tx-Power Repeat 1-2,1-3 until the value exceeds +6dBm. 2-1. Set AGC Register=195 /Store measurement of Tx-Power. 2-2. Set AGC Register=195+30stp (225,255,...) & 2-3. Store measurement of Tx-Power. 2-4. Repeat 2-2,2-3 until the above value is <-53 dBm or the Register value is 345. 2-5. When the value is <-53 dBm or Register = >345, 2-6. Set AGC Register=+15stp 2-7. Store measurement of Tx-Power. 2-8. Draw the approximate curve by the setting value of AGC Register and measurement of Tx-Power -53dBm 24dBm Tx-Limit Table 1 According to the above approximate CDMA Ch=358ch +11.75dBm Adjustment Table 2 curve, each AGC register value +13.1dBm Table 3 corresponded to Tx-limit levels are +14.4dBm Table 4 registered. +15.7dBm Table 5 +17.1dBm Table 6 +18.4dBm Table 7 +19.7dBm Table 8 +21.1dBm Table 9 +22.4dBm Table 10 +23.7dBm Table 11 +25.1dBm Table 12 +26.4dBm Table 13 +27.7dBm Table 14 +29.0dBm Table 15 +30.4dBm Table 16 +31.7dBm OFFSET Offset : 18.4dB (Table 6) +19.7dBm SPN Spn : 26.4dBm (Table 12) +29.0dBm Symbol SANYO Electric Co.,Ltd. Restricted DestributionApr. 12, 2000 3.Tx AGC Frequency Adjustment and Tx Limit Frequency Adjustment.Page 7 TX AGC FrequencyBk 0=1017chNomal Test ModeRF INPUT(SG) LV=-95.4dBmTx-Pow diff. AdjustmentBk 1=46chReference ch : 358chChange to…

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RF Exposure Info

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 6 of 8 ET3DV5 SN:1370 Dynamic Range f(SAR brain ) ( TEM-Cell:ifi110 ) 1.E+0 1.E+1 1.E+2 1.E+3 1.E+4 1.E+5 1.E+6 1.E+7 0.00010.0010.010.11.10.100. mW/cm 3 μ V not compensatedcompensated -3 -2 -1 0 1 0.00010.0010.010.1110100 mW/cm 3 errror[dB] not compensated diode characteristic compensated relative accuracy Page 7 of 8 ET3DV5 SN:1370 Conversion Factor Assessment Receiving Pattern (φ) ( in brain tissue, z = 5 mm ) -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] 900 MHz1800 MHz f = 900 MHz, WG R9 0.00 0.05 0.10 0.15 0.20 0.25 0.30 0204060 z[mm] SAR[mW/cm 3 ] / W AnalyticalMeasuremets f = 1800 MHz, WG R22 0.00 0.50 1.00 1.50 2.00 2.50 020…

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RF Exposure Info

Validation Dipole D835V2 SN:406, d = 15mm Frequency: 835 MHz; Antenna Input Power: 250 [mW] Generic Twin Phantom; Flat Section; Grid Spacing: Dx = 20.0, Dy = 20.0, Dz = 10.0 Probe: ET3DV5 - SN1342/DAE3; ConvF(5.75,5.75,5.75); Brain 835 MHz: σ = 0.79 mho/m ε r = 41.9 ρ = 1.00 g/cm 3 Cubes (2): Peak: 3.17 mW/g ± 0.03 dB, SAR (1g): 2.11 mW/g ± 0.03 dB, SAR (10g): 1.41 mW/g ± 0.04 dB, (Worst-case extrapolation) Penetration depth: 13.4 (12.3, 14.9) [mm] Powerdrift: -0.01 dB SAR Tot [mW/g] 2.50E-1 5.00E-1 7.50E-1 1.00E+0 1.25E+0 1.50E+0 1.75E+0 2.00E+0 2.25E+0 2.50E+0 Validation SN406 Schmid & Partner Engineering AG, Zürich Switzerland 835MHz Brain Dipole Validation Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 2/00 Medium Parameters 835MHz: σ = 0.86 mho/m ε r = 42.5 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 1.0 SAR (1g): 2.13 mW/g, SAR (10g): 1.26 mW/g 835MHz Brain Dipole Validation (D835V2 S/N: 406) Frequency: 835 MHz; Antenna Input Power: 250 [mW] PCTEST Brain Tissue Simulating Liquid SAR Tot [mW/g] 2.43E-1 5.39E-1 1.43E+0 1.32E+0 1.70E+0 PCTEST Engineering Laboratory, Inc. 835MHz Muscle Dipole Validation Generic Twin Phantom; Flat Section; Probe: ET3DV5 - SN1370 -- Probe Cal Date 2/00 Medium Parameters 835 Muscle: σ = 0.95 mho/m ε r = 56.2 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 1.0 SAR (1g): 2.17 mW/g, SAR (10g): 1.32 mW/g 835MHz Muscle Dipole Validation (D835V2 S/N: 406) Frequency: 835 MHz; Antenna Input Power: 250 [mW] PCTEST Muscle Tissue Simulating Liquid SAR Tot [mW/g] 1.87E-1 7.21E-1 1.24E+0 1.39E+0 2.04E+0 PCTEST Engineering Laboratory, Inc.

RF Exposure Info

© 2000 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) SANYO ELECTRIC CO., LTD. Date(s) of Tests: April 18-21, 2000 c/o Sanyo Sales & Supply (USA) Corp.Test Report S/N: SAR.200418173.AEZ 900 North Arlington Heights Road, Suite 300Test Site: PCTEST Lab, Columbia, MD USA Itasca, IL 60143-2844 Attn: Mr. Koichi Takahashi, V.P. Marketing SANYO Fisher (USA) Corporation FCC IDAEZC304SA APPLICANT SANYO ELECTRIC CO., LTD. EUT Type:Single-Mode Cellular CDMA Phone Tx Frequency:824.70 – 848.31 MHz Rx Frequency:869.70 – 893.31 MHz Max. RF Output Power:0.322 W ERP (25.08 dBm) Trade Name/Model(s):SANYO C304SA 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 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. 200418173.AEZ SAR Measurement ReportFCC Part 22 Certification © 2000 PCTEST Labi 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 TISSUES 7 7.1 SYSTEM SPECIFICATIONS 8 8.1 MEASUREMENT PROCESS 9 9.1 TEST POSITION OF THE PHONE 10 10.1 BODY-WORN TEST SETUP11 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.200418173.AEZSAR Measurement Report Test Date(s): April 18-21, 2000FCC Part 22 Certification FCC ID: AEZC304SA (Tx 824-849 MHz) © 2000 PCTEST LabSANYO Single-Mode Cellular CDMA Phone1 SAR MEASUREMENT REPORT 1.1 Scope Environmental evaluation measurements of specific absorption rate 1 (SAR) distributions in simulated human 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:Mr. Koichi Takahashi, V.P. Marketing SANYO Fisher (USA) Corporation • EUT Type:Single-Mode Cellular CDMA Phone • Trade Name:SANYO • Model(s):C304SA • FCC IDENTIFIER:AEZC304SA • S/N:Pre-production • Tx Frequency:824.70 – 848.31 MHz • Rx Frequency:869.70 – 893.31 MHz • Application Type: Certification • FCC Classification:Non-Broadcast Transmitter Held to Ear (TNE) • FCC Rule Part(s):§2.1093, Docket 96-326 • Modulation(s):CDMA • Max. RF Output Power:0.322 W ERP (25.08 dBm) • Antenna Type:Helical (λ/2) • Antenna Dimensions:10.3 cm. (Length) • Dates of Tests:April 18-21, 2000 • Place of Tests:PCTEST Engineering Lab. Columbia, MD, U.S.A. • Report Serial No.:SAR.200418173.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.200418173.AEZSAR Measurement Report Test Date(s): April 18-21, 2000FCC Part 22 Certification FCC ID: AEZC304SA (Tx 824-849 MHz) © 2000 PCTEST LabSANYO Single-Mode Cellular CDMA Phone2 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 M…

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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
122.901(d)824.7 MHz - 848.31 MHz322.00 mW1M25F9W2.5000000000 ppm
Confidentiality
Long Term

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