
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Federal Communications Commission Equipment Approval Services P.O.Box 358315 Pittsburgh, PA 15251-5315 Subject:Affidavit for Cellular Mobile Telephone e--. _ _. ._~_ _ ._~_. -_ _ __...= mIc Gentlemen: I hereby certify that the Transceiver FCC ID:’ CJ6DCE34608A manufactured by TOSHIBA Corporation complies with Section 2.1093 of the FCC Rules. :. -%” ._ j .;> J7 Y ~~()gi&H~~~fi .I ~IEIA CORPDRATION t+lre~~ WORKS PH& @~&&,f’ .i l-l, ASAHIGAOKA 3-CHQME. HINO CtTX n TOKYO 191-9555 JAPAN TYPE: CJ6DCE34608A FCi: ID: CJ6DCE34608A -~ ‘j_ - ~_* Yours faithfully, Senior Manager Land Mobile Radio Communications Department
;JQ%&&~~--~f- i ~&$&&&&on, i ., . ,743 Oakland Mills RoadL;~ -C:olmbi.a, MD 22G&~-p ~~; ‘:: _- : " _ I __ ~. _. -. it i 3X &,.'.. _-' -." ^~ i---.-- ~___ _ .. Subject: Application for .Cer@fic&in’- of 8 . Handheld ,Portable Cellular Telephone, FCC ID: I CJ6DCE3$608A r If you have any qyes$ions, please &+a& with Mr. l% &eon; of Toshiba America Information sysiem% : Inc. (94~-53~~?,3~.~:.~~x:-(949-583~~~~4). : .. -’ ‘- . :r 1 ‘T : .” - _ _ We wou~ wpreciate yowr proeee;d;ihg with %be above investigation-at your,earIiest’aanvenience. , I -5. %( 2 , : -~- . . Yours’vg-rY.+uly , :.. .- I (I_ .?<i “X4-..> ,,.‘,r ..,. *“p *;-.: y~qy -~~~~~~~~.~~~~;;~~.~~.~‘~~ ;+.; ~~~~~~~~;~~~‘,~~~~~~~~~~~~?~ .‘p;-y .-y ‘L . . x~ ‘. . ...<e, _. : .,% . ..-$2~- >$* .7#-.’ .‘.,.“*“‘*;‘~F:: ,: .i ,,.&d:g7-“, > -‘,;,:“.-, ,”_. /’ -*=cg: :.*,‘;.f _x .” . ^ ^_ ., ; :q_- ‘=,-’ :’ ;., _‘ . _. ; I, . *; : .’ , ._ _’ ,- , _ . -.. .. .; ‘:; <.a, I /:. ,, .,. ‘_ TO~HEEA VANBN ::; &&?&f,_ ;, ,“. j j -:, \.. 1< : ,-__ I , l-1, ASAktW@KA 3%%4@ME; HIP@ ; ‘/ : I ‘:: a .: TUKYO 191 -kh JAPAN . 12 TRANSCEIVER TYPE: ’ C36DCE34608A .’ Federal Communications, Commission Equipment Approval Services_ P.O.Box 358315 Pittsburgh, PA 152515315 k Subject: Affidavit for Cellular h$ol$e Telephone, ReQ,lsst f& C&i&&i&~ ,& Sensitive lkamznts FCC ID: C~6~~~34~~~A Gentlemen: I hereby certify that the Transceiver FCC ID: Cf6DCE34603A manufa@ured .by TCSIIIBA . Corporation cumplies with all Requirements of OST Bulletin 53 as referenqedin’S%ction 221933 of the FCC Rulesand all technical/test data enclosed with this applitzation are true and aorrect, _. *I, ,11*, .ci 8 fi -4 2. EXIIIBIT No.10 Schematic Diagram. slf”Tkxkeiver RF@,B EXHIBITNo.%& Tune-up Procedure J ‘., : ~ EXHIBIT l&.2-8 BSN Protection Yours faithfully, % -’ _- i. . .._. .‘, ‘, ‘; . ..: ‘.+ _I. i .’ -,- ; . _; I _v- \ .L. ~- -. ^. ,. : : ;,. I Senior Manager .; Land MobileRadio Communications I. j Depzktment . . I ‘. ,,: .j _ .‘. _- -*;,,*; “’ ; , ‘7 (. .i. j ,j ;- ;- “&F * ..:“. $ j; ‘\ _ : ^/ ‘. ,;,- ,i* / -h’ .A., . _. . _,a,, ” ___ _. : :‘ , z 1~, ~~: ;. ‘J- ,l_ ), .2, i-‘y*,$ -i ,” g>,; -1;::, .:” ““‘:I -:..~*.:r ..e*“:v I - SUB J&CT:SUB J&CT:EA93382 / CJ6DCE34608AEA93382 / CJ6DCE34608A LISTOFATTACIXMENTSANDCORI&SPONDINGE~~IBi'r~LISTOFATTACIXMENTSANDCORI&SPONDINGE~~IBi'r~ F~LEDUNDERSUBJECTELECTR~NICFILINGF~LEDUNDERSUBJECTELECTR~NICFILING ii 1.1.Attestation Statement - Exhibit 1Attestation Statement - Exhibit 1 2.2.Block Diagram -Exhibit 6 (Confi &nf;al)Block Diagram -Exhibit 6 (Confi &nf;al) 3.3.Cover Letter - Confidentiality - Exhibit 1Cover Letter - Confidentiality - Exhibit 1 4.4.‘External Photos - Exhibit 19, Exhibit 20‘External Photos - Exhibit 19, Exhibit 20 5.5.ID Label / Lot. Info -Exhibit 26, Exhibit 27ID Label / Lot. Info -Exhibit 26, Exhibit 27 6.6.Internal Photos - Exhibit’21, Exhibit 22, Exhibit 23, Exhibit 24,Internal Photos - Exhibit’21, Exhibit 22, Exhibit 23, Exhibit 24,Exhibit 25Exhibit 25 7.7.Operational Description 1 - Exhibit 2Operational Description 1 - Exhibit 2 Operational Description 2 - Exhibit 28 (Conf.)Operational Description 2 - Exhibit 28 (Conf.) 8.8.User’s Manual - Exhibit 11User’s Manual - Exhibit 11 9.9.Tune-up Procedures - Exhibit 12 (Conf.)Tune-up Procedures - Exhibit 12 (Conf.) 10.10.RF Exposure (SAR) -Exhibit 18RF Exposure (SAR) -Exhibit 18 11.11.Test Report (Toshiba) - Exhibit 2, Exhibit 3, Exhibit 4, ExhibitTest Report (Toshiba) - Exhibit 2, Exhibit 3, Exhibit 4, Exhibit 13, Exhibit13, Exhibit14,14, Exhibit 15, Exhibit 16Exhibit 15, Exhibit 16 12.12.Schematics - Exhibit 5, Exhibit 10 [ Csn C ; &nt; a\ )Schematics - Exhibit 5, Exhibit 10 [ Csn C ; &nt; a\ ) 13.13.Test Reports (JQA) - Exhibit 17Test Reports (JQA) - Exhibit 17
,- . APPLICANT: TOSHIBA CORPORATION TRANSCEIVER TYPE: CJ6DCE34608A _ _.__ ,-i-T I I I I I I I I I MODEL: lb SEftlAL: A Namenlate of this tvoe or one similar to this will be affixed to everv Transceiver. It will be placed on the outside of the Handheld Portable Telephone as shown in the EXHIBIT No. 20. For Units for which manufacture or final assembly is performed in the United States, the words MADE IN JAPAN may remain or may be changed to ASSEMBLED IN USA FROM JAPANESE COMPONENTS or a similar expression depending upon how much of the process is done in the United States and an analysis of the requirements of U.S. Customs Law under those circumstances. For Units for which manufacture or final assembly is performed in China, the words MADE IN JAPAN will be changed to MADE IN CHINA or ASSEMBLED IN CHINA.
APPLICANT: TOSHIBA CORPORATION TRANSCEIVER TYPE: CJ6DCE34608A Subsection 2383 kiL APPLICANT: TOSHIBA Corporation ADDRESS: l-l, Shibaura 1-Chome, Minato-ku, Tokyo, 1058001 JAPAN Subsection W83 61. Subsection 2.983 !cL Subsection 83ta MANUFACTURER: TOSHIBA Corporation/ Toshiba America Information Systems, Inc.1 Welco China Limited ADDRESS: l-l, Shibaura 1-Chome, Minato-ku, Tokyo, 1058001 JAPAN/ 9740 Irvine Boulevard, Irvine, California 92618-1697 m Man Fung Industrial Estate, Shajing, PO On, Shenzhen, Guang Dong Province, s Rem&&c of Clslnzl FCC ID: CJ6DCE34608A QUANTITY: Quantity Production is planned Type of Emissions: 40KOF8W, 40KOFlD, lM25F9W Technical Descriptions: This Transmitter has been specifically designed for the Domestic Public Cellular Radiotelephone Communications Service. The rated maximum Power Output of the Transmitter is O.GWatts ERP with the Capability of reducing the Maximum Power in Five Steps of 4dB each on Command from a Land Station. Each Power Level is maintained within OdB/-4dB of its Nominal Level over Temperature Range from -20 degrees Celsius to +60degrees Celsius and +/-lo% Change of the Supply Voltage, accumulative. This Transmitter operates in the Frequency Range of 824 to 849MHz. The Frequencies are generated by Phase Locked Loop Frequency Synthesizer designated by the closest Land Station in the System. The Transmitter is equipped with a 2:l Syllabic Compressor, a Pre- Emphasis Audio Circuit having a GdB/octave Response, an Instantaneous Deviation Limiter to limit Deviation to +/-12kHz, a Post Deviation Limiter Filter having better than -36dB/octave Response above 3,OOOHz and a Frequency Stabilizing circuit of the Carrier which is maintained within +/-2.5ppm (+/-0.00025%). This transmitter is available as a dual mode phone. Namely, this transmitter is designed to operate under both CDMA (Code Division Multiple Access) digital cellular system and AMPS analog cellular system. The maximum Power Output ofthe Transmitter is 0.3Watts ERP unde r digital mode and it is-O.BWaxERP und$r~-naI~g mod&The maximum - ~-.-~ ~’ ~- PowerOutput of the Transmitter is mai~~~i~~~~iithlin-0~Watts to 0.3Watts under digital mode and it is maintained within OdB/-4dB under analog mode of its maximum rated power (0.6watts) over Temperature Range from -20 degrees Celsius to +6Odegrees Celsius and +/-lo% Change of the Supply Voltage. The Power Amplifier Circuit has a AGC (Automatic Gain Control function) performed with IF AGC Amplifier and a Power Control Circuit. The Microwave Power Amplifier Module amplifies the 5milliwatt Input from the Modulator Circuit and provides about 0.95Watts Output when the rated Maximum Power is requested by Land Station. The Power Amplifier Output is then led to the Antenna Terminal through RF Band Pass Filter. I PAGE 1 OF EXHIBIT No.2 APPLICANT: TRANSCEIVER TYPE: TOSHIBA CORPORATION CJ6DCE34608A The 130.38MHz IF signal is amplified, frequency up-converted and led to Power Amplitier Module. The input power level to the Power Amplifier Module is controlled by the voltage controlled IF Amplifier. The Power Amplifier Circuit has about 80dB of dynamic range in output power under the Digital Mode operation. Therefore it is available to send out power from less than -50dBm up to about 24.7dBm (0.3watts) at the Antenna Terminal which is requested by the Land Station with good linearity. And meantime, the Power Amplifier circuit has about 20 dB of dynamic range in output power under the Analog Mode operation. Therefore it is also available to send out power from 7.8dBm up to 27.8dBm(0.6watts) at the Antenna Terminal which is requested by the Land Station with good linearity. A peak Detector at the Power Amplifier output provides a Carrier Power Indication Signal. This Signal level is compared with limited maximum power (setting for this transmitter is about 0.5watts) by the CPU. And the CPU controls maximum power within the maximum set power of 0.5watts of this transmitter. The power Amplifier output (about lwatts) is led to the antenna terminal through the RF Band Pass Filter etc.. An insertion Loss of these RF Components is approximately 3.0dB, then the Effective Radiated Power from the. Antenna will be 0.5watts including Antenna Gain. of OdBI That .- . - . . \ mean& (j,SGgtts c;f 6titti.t .po&er at the gtertiha;ge ~~~.anector~-i~~giv,,.~~~watti ER$ ~~~~~~-~~~~~~~~~--- m;*‘r‘r:;.m , -.-- -.-- .-:.=-:;,, _ - -= .- =. , - ,:r,;&~“ ;~~~~~~:~~‘~, _ zr__. _ . . ..~.-. ._ -‘If PowerUutput is detected in spite of the CARRIER ON command is not enabled by the LOGIC Circuitry, the Transmitter will be deactivated through independent action to the Control Regulator. 1 : ;” ). *‘. ,i, a j :, i &I.. i ’ , s’ i 1 I ; ; -‘: : PAGE 2 OF EXHIBIT No.2 APPLICANT: b TRANSCEIVER TYPE: I TOSHIBA CORPORATION CJ6DCE34608A Subsection 2.983 (d)lfr2.DC Voltage and Current-into the Final Amplifier Module: Supply Voltage = 3.7Vdc Collector Voltage = 3.5Vdc Collector Current= 0.7 - O.lAmp: o(6).Function of Semi-conductors and Active Circuit Devices in the Audio and RF Circuitry of the Transmitter. > Base-Band CIRCUIT DBP (Digital Baseband Processor) MSM-3000 ABP (Analog Baseband Processor) _~ (PAGE 2 of EXHIBIT No.5) - . -- ----------- _- MODULATOR CIRCUIT Synthesizer MB 15FO2(PAGE 6 of EXHIBIT No.5) AGC AmplifierTA31194FN(PAGE 8 of EXHIBIT No.5) Mixer uPC8106TB(PAGE 9 of EXHIBIT No.5) SYNTHESIZER CIRCUIT ’ ” SynthesizerMB15F02 (PAGE 6 of EXHIBIT No.5) VCTCXO DSA751HAC (PAGE 10 of EXHIBIT No.5) gA3355A(PAGE 12 of EXHIBIT No.5) POWER AMPLIFIER CIRCUIT Power AmpIifier ModuleUN0231COOlTH(PAGE 13 of EXHIBIT No.5) Amplifier ’ GNOllOOBOL(PAGE 14 of EXHIBIT No.5) o(7).List of Schematics: Schematic Diagram of HANDHELD PORTABLE TRANSCEIVER RF/BB (EXHIBIT No. 10) PAGE 3 OF EXHIBIT No.2 -- -- . . : APPLICANT: TRANSCEIVER TYPE: 7 TOSHIBA CORPORATION CJ6DCE34608A (&h&h Instruction Book: Operating Instruction (EXHIBIT No. 11) \ o&l. Tune-up Procedure: Tune-up Procedure (EXHIBIT No. 12) (d)o. Means for Freq…
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” :* . 132 PRWWCT COMPLIANCJZ TEST REPORT W.........~..“....~~.......~........~..~......~..“...~..~.~~.~.~...~..*.....~~.~ 4 .. 2.1 #za.mmms c~~~u~“,-~-~**~*~~-.--.~-- esmwM..“--...o-..+5 ~XXIIONOFTE~T ................................................................................................................................................ 5 2.2 ~~~~~~~~~~~A~Q~~ LI.UUYUîU.ìUUUî~~~-..-.ì~ì~.~î ........ 5 2.5 smTER TPSSUE .t.H..“UU.“UI...........~....~.~.....~................*.“......~.~“..~“.~..~“.“.*~“.*....“~”...-..~.~.““.~ 6 .. l?U%%RATlON ....................................................................................................................................................... 7 2.6 MEA!SRE~ OF EX.JZcTRIcAz, CEARACmmCS QF f%WLATEB TIsSUE ..w..w .........7 ~~N~~$ ~~~~A~E ............................................................................................ 8 27 SySfiM IBESC~QN “......u~..~ruru.“.......~~...~.~~~~~...”.~**...~..~~...~~........~..-~...*“...~~...“.*“~..~ . 9 2.8 DATA BXTRAPOUmON WN..UUIYUUI......U..~-.~...“........”...”....”....“~“.......”.~..~.~......~~.~.~..” ... 10 2.11 J!Wl’TI~NING OF B.U.T. ..“.“U”~~UU.~....~~..*.....~....~....”.”..~...*.*““...-......~..-~..-.-..~.-.....~......*.- . 11 3.1DATA,........ ......~..*YUIUIUI..IUU~.~..~.........~.~...~...”...~~~.-“..~..“...”~~~...“.“~..“~~“...“~~.~ . 13 ANTENNAQUT ................................................................................................................................................... - ~~~~~N ........................................................................................................................... .................- Arniwu~mo~TvERsus Dm SCAN ................................................................................................................... - ~A~~~~ ............................................................................................................................... - 32) ~TOF~~~G~ ........................................................................................................................ - WHNAI~V ..................................................................................................................................................... ..- TEST INI~XMA~~N .......................................................................................................................................... ..- A~A~~~D~~~................................................................................................................... . i4FtxA~ANmNTo~m............................................................................................................................... . 3DPWTCW BEAK ........................................................................................................................ . smmnm .......................................................................................................................................... .- s~Tl?DmsuETEsTmRT ....................................................................................................................... - PAGE 2 OF EXHIBIT NO.18 .-. AoDlT\mJA’-- WFo QECWLSTE~ %‘f .’ SAR Test Report 1 KWOK CM TbzAudiovox Date 01/22/99 k 10023 Radio information Conditions RadioType :Cellular Phone I Robot 6AG.s Model Number :CDM4000 ScanType :SAR Serial Number : 1280000003 Measured Field :E FrequencyB=N@W 800 Measured Power(W): 0.495 (Conducted) Frequency Tested(MKz) 837 PhamomType :head Nominal Output Power:(W) 0.600 pk I av Phantom Position: right ear AntennaType :% Wave Room Tempemtllre “C: 25 Antenna Position : IN Distance AntennaSheR: 30 mm SignalType : cw Dutycycle : - Probe ProbeName :E Simulated Tissue Probe Orientation: - Probe ofTset(3.0 Type of Tissue : brain Sensor Factor : Measured Dielectric Constant: 45.8 10.8 Conversion Factor: 0.63 Measured Conductivity :0.88 Calibration Date :S/13/98 Results Maximum Fields Location:x:5 Y: -45 Peak Voltage (mv):22.59 “3 lcm Voltage (mv): 11.80 SAR (averaged over 1 gram of tissue) W/kg:1.00 Comments @ 824 MHz, Power 0.514 W = SAR 0.85 @ S49 MHz, Power 0.440 W = SAR 0.84 Insertion loss of adapter cable = 1.4 dD (Measured by manufacturer) Power measurements are compensated for cable/adapter loss. PAGE3 of ExHIB(Tib Name : signed : NO.18 The Guidelines of the following documents were considmad in the prformmce of this ted : 1) NCIU? report 19Sci, 2) ANSI C95.1 - 1982, 3) IEEE c95.1 - 1991, 4)FCC rules 96 - 326 5) OET Bulletin 65 uftc3t PAGE 5 OF EXHIBiT w,1.8 . 2.3 Test Description InthesAR~~, the positioning of themust be perkxmed with sufikient able measuremetltts inpresence of rapid spatial attenuation positioning of the EXeld probe is ~~~ by using a high pre&ion robot.The robot can be taught to position the probe sensor following a specific pattern of points.In a fkst sweep, the sensor is positioned as c&e as possible to the inter&q with the sensor enclosure touching the inside of the f&wglass shell . The SAR is measured on a grid of points which covers the curved surfke of the p~~rn in an area larger than the size of the DUT.After the initial scan, a high resolution grid is used to locate the absolute maximum measured energy pointAt this location, an attenuation versus depth scan will be accdmpfished by the measurement system to calculate the SAR value. 2.4 Phtlntom The phantom used in the evaluatio the user of the wireless device is a clear fibergks enclosure 1.5 mm~~r~~~~~tha mixture fiimulating the dielectric character-iof the brain muscle or other types tissue. Thenzzkmum width of the cranial 4 is 17 cm, the cepha,lc k&x is 0. crown &cumfbrence of the cranial model is 61 cm, The ear is 6 mm above the outer surface of the shell. 2.5 Simuhted Tissue I)Simulated Tissue : Suggested in a paper inUniversity of Ottawa Ref : Ekelao e Hartsgrove and colleagues l Table. Example of composition of simulated tissue. This simulated t&&e is mainly composed of water, sugar and salt. At higher frequencies, in order to ac…
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APPLICANT TOSHIBA CORPORATION TRANSCEVER TYPE: CJ6DCE34608A 7 L LIST,OF EXHIBITS EXHIBIT No. DESCRIPTION Affidavit Descriptive Information Graph: Frequency Stability-Temperature Variation Graph: Frequency Stability-Voltage Variation Integrated Circuit Diagrams Block Diagram of Handheld Portable Telephone Transceiver Block Diagram of Modulator ------ Included in EXHIBIT No.6 Block Diagram of Synthesizer ----------------- ditto - Block Diagram of Power Amplifier --:-------- ditto - Schematic Diagram of Transceiver RFiBB Operating Instructions Tune-up Procedure Graph: Audio Response Graph: Modulation Limiting (Compandor ON) Occupied Bandwidth (Photograph) Graph: Transmitter Conducted Spurious Emissions JQ,A Report of Measurement (Analog Mode) (REPORT OF MESURMENT JQ,A APPLICATION NO.: 8080824) SAR Report of Measurement (Product Compliance Test Report Reference no.: 10023) a 11 12 13 14 15 16 17 18 19 Photograph: General Appearance 20 Photograph: Inside View (Showing FCC ID Nameplate) 21 Photograph: TR Board (With Shield Cover) 22 Photograph: TR Board (Front Side) 23 Photograph: TR Board (Back Side) 24 Photograph: CU Board (Front Side) 25 Photograph: CU Board (Back Side) 26 FCC ID Nameplate 27 Manufacturing Location 28 ESN Protection (3 Pages) (16Pages) (2Pages) (2Pages) (14Pages) (4Pages) (9Pages) (8Pages) (lOPages) (2Pages) (lOPages) (26Page) (2Pages) (2Pages) (6Pages) APPLICANT: TOSHIBA CORPORATION Subsection 2383 !e?. Subsection 83 Q Subsection CJ6DCE34608A TRANSCEIVER TYPE: ‘6 Standard Test Conditions: The following Conditions and Procedures were applied during Testing of this Transmitter. Room Temperature = 23 - 27degrees Celsius Room Humidity = 30 - 50percent Supply Voltage = 3.7-V Prior to Testing, the Unit should be tuned-up according to the Manufacturer’s Alignment Procedure. Equipment Identification: Equipment’s Identification label and its intended Location are as shown in EXHIBIT No.26 (FCC ID Nameplate), and in EXHIBIT No.20 (Photograph of inside) Photographs: A complete set of the Photographs showing External and Internal Views of Circuit Details and Construction are provided by from EXHIBIT No.19. PAGE 5 OF EXHIBIT No.2 Page 1 of 1 file:NC:\WINDOWS\TEMP\page6ofexhibitno2.jpg 3126199 APPLICANT: TOSHIBA CORPORATION TRANSCEIVER TYPE: /L CJ6DCE34608A PONSE Subsection 2.987. The Test Set-up for the TRANSMITTER FREQUENCY RESPONSE is as per PAGE 8 of EXHIBIT No.2 (Using HP8901B Modulation Meter). With the Audio SG adjusted to 1,000 Hz, and +/-l.OkHz Deviation, the OdB Reference Level was determined. With Input Levels held constant and below Limiting at all Frequencies, the Audio SG was varied from 100 to 5,OOOHz. The Response in dB, relative to 1,OOOHz was measured. ‘The results are shown in EXHIBIT No. 13. MODULB23ION LIMITING Subsection 87 @A The Test Set-up for the MODULATION LIMITING is as per PAGE 8 of EXHIBIT No.2 The ‘Deviation is to be observed by varying the Input Voltage. Test has been performed for three Different Modulation Frequencies. The results are shown in EXHIBIT No. 14. PAGE 7 OF EXHIBIT No.2 APPLICANT: TOSHIBA CORPORATION T SET-UP (I.) This Test Set-up is for: A.Modulation Capability B.Audio Frequency Response C.Response of Low Pass Filter D. Modulation Limiting External Connectors . . . . . . . . . . . . . . . . I AFRF A Test Equipment . . . . . . . . . . . Handheld Portable (Test Sample) I Circulator TRANSCEIVER TYPE: ‘j CJ6DCE34608A t RF out RF Signal Generator (HP8665A) PAGE 8 OF EXHIBIT No.2 APPLICANT: TOSHIBA CORPORATION TRANSCEIVER TYPE: /f CJ6DCE34608A DCCJJWUANDWID’I’H Subsection 2,989 !clw The Test Set-up for the OCCUPIED BANDWIDTH is Figure in SPURIOUS EMISSIONS AT ANTENNA TERMINALS, PAGE 11 of EXHIBIT No.2. Analog mode: The Audio SG was adjusted to the Frequency of Maximum Response. The Output Level was set to +/-6kHz Deviation. With Level constant, the Frequency was set to 2,500Hz. Then the Audio Signal level was increased by 16dB. The measurements ware made by Spectrum Analyzer, and the results are shown on the attached Photographs. In addition, Occupied Bandwidth Data was obtained for the SAT (Supervisory Audio Tone) and ST (Signaling Tone). The results are also shown on the attached Photographs. Digital mode: Modulate the transmitter with OQPSE modulation, using pseudo random date. List of Photographs: Occupied Bandwidth (No Modulation) (PAGE 2 OF EXHIBIT No.15) Occupied Bandwidth (Audio) (PAGE 3 OF EXHIBIT No.15) Occupied Bandwidth (SAT) (PAGE 4 OF EXHIBIT No.15) Occupied Bandwidth (Audio + SAT) (PAGE 5 OF EXHIBIT No.15) Occupied Bandwidth (DTMF + SAT) (PAGE 6 OF EXHIBIT No.15) Occupied Bandwidth (WBD)(PAGE 7 OF EXHIBIT No.15) Occupied Bandwidth (ST) (PAGE 8 OF EXHIBIT No.15) Occupied Bandwidth (SAT + ST) (PAGE 9 OF EXHIBIT No.15) Occupied Bandwidth (Digital mode) (PAGE 10 OF EXHIBIT No.15) PAGE 9 OF EXHIBIT No.2 APPLICANT:TRANSCEIVER TYPE: CJ6DCE34608A u ONS AT ANTENNA TOSHIBA CORPORATION Subsection The Test Set-up for the SPURIOUS EMISSION AT ANTENNA TERMINALS is as per Figure in SPURIOUS EMISSIONS AT ANTENNA TERMINALS, PAGE 11 of EXHIBIT No.2. The Level of the Carrier and the various Conducted Spurious and Harmonic Frequencies were measured by means of a Calibrated Receiving System used to compare the Output of the Transmitter with than of a Standard Signal Generator at the Spurious Frequency. The Spectrum was scanned from the Lowest Frequency generated in the Equipment to 1OGHz. Harmonics 2nd 3rd Modulation Spurious Level Below Carrier (dBc) -74.0 c-80 I 4th I C-80 I 5th I <-SO 6th 7th to 11th Limit: -(43+10 log 0.6) dBc = -40.8dBc. x-80 c-80 Analog mode: Carrier Frequency of 824.04, 836.49, 848.97MHz and Power Output of 0.6, O.OOGWatts were measured, and the results were the same as those shown above. Digital mode: 0.095, Carrier Frequency of 824.70, 836.49, 848.31MHz and Power Output of 0.3, 0.00000001Watts were measured, and the results were the same as those shown above. Transmitter Type : CJ6DCE34608A Data : Jan. 25, 1999 Signature Kuniy…
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JAPAN QUALITY ASSURANCE dRGANlZATlON 21-25, KINUTA I-CHOME, SETACAYA-KU, TOKYO 157 JAPAN PHONE (03) 3416-0111, TELEX 242-2531 JqA J FAX (03) 3416-9691 REPORT OF MEASUREMENT JQA APPLICATION NO.: 80-80824 Date: February 15, 1999 Issued in: Tokyo, Japan Applicant Manufacturer Description of : TOSHIBA CORPORATION HINO WORKS : l-1 Asahigaoka 3-chome, Hino City : Tokyo 191-8555, Japan : TOSHIBA CORPORATION HINO WORKS : l-l Asahigaoka 3-chome, Hino City : Tokyo 191-8555, Japan Device: Handheld Portable Telephone Transmitter :for Cellular Radio Telephone System Trade Name : TOSHIBA CORPORATION Model No. ,f- : CDM-4000(Analogue Mode) FCC ID : CJ6DCE34608A Serial No. : 1280000005 Measurement Procedure Radiated Spurious Emissions generated from transmitter part of the device : Based on section 2.993(a) & 22.907(f) of the Commission's Rules and Regulations Place of Measurement : JQA EMC Engineering Department Measurement Results : The measurement results are given in the attached sheets. Assistant Manager Testing Division EMC Engineering Department PAGE 1 6F EXHIBIT N6317 JQA APPLICATION NO.: 80-80824 Sheet 2 of PO sheets ,( REPORT OF MEASUREMENT Manufacturer: TOSHIBA CORPORATION HINO WORKS Trade Name: TOSHIBA CQRPORATION Model No. : CDM-4UOO(Analogue Mode) FCC ID : CJ6DCE34608A Operating Range :824.040 MHz to -848.970 MHz Radiated Spurious Emissions a) Measurement Procedure: A receiving antenna was located at the distance of 3 meters and the interference signal derived from the antenna was fed to a spectrum analyzer. The measurement was carried out in accordance with TIA/EIA-603. The fixed antenna of the transmitter under test was-'pulled out for it"sle!ngth. It specifies the use of- a half-wavedipole antenna in order to determine ERP of the tran~~mktter~.un~e~~te~t, a log-periodic antenna,as a radiation antenna-was used and.the difference. between the gains of tti.,log-periodic antenna and a, half-wave dipole antennawas taken into consideration. (Refer to a document:i3ISPR)'B (Secretari.at): 25) b) Measurement Results: Refer to the following pages. '> p&E 2. OF E~&~:@$~ '@f /ij$&!('~ JAPAN QUALITY AhJRANCE ORGANIZATION Operating Reference Frequency Carrier ERP Freq SubstitutedAttenuation (MHZ) - -uencyPower (dBm).Ratio (dBm) Power (WJ)* m-1 * Horiz. Vert.Horiz. Vert. 824.040 0.3784944.240 1648.Q80-55.8 -54.581.6,80.3 2472.120-32.0 -38.057.863.8 329-6.160‘-52.8~. -54.478.580.1 4120.208<;53.1 c-53.1'>78.9>78.9 C-58.7 <-58.7>84.4>84.4 5768,280-5l.:2 -49.376.975.0 .6592.320c-57.9 <-57.9 >83.6>83.6 7416.360-54,4 -53.680.279.4 8240,400-57.1 -53.082.978.8 ' ), Notes,: 1."*" Actually measured. 2. Specified Limits: 43 +'&O.log ,l-d c,g ..apH 1. 38.8. dB. for "824.040 MBztr 3. The spectrum was-.&k&& $ .*from 25 MBzup to. the tenth harmonic frequency. ,- 4. All emissions notlisted were found to be morethan 20 dB below t.he limit.. JQA APPLICATIOp5,‘NO.: ~80-,80834 Sheet 4 of 10 sheets .: ,' _, " ,,'a i __ , ..:,., -,.: : .'_ ,i j:._, ,I .:i I. / hacJiate‘d Spur,io& l%tissions FCC ID : “Cd§DCE346OBA ‘- Seri’al No. : ~~2EXKNXldO5 Carrier : 0.37’8 b!j at 824.640 [MHZ] t II ---tt- liar izantal 00 II ff II -10 --10 - FCC t.UKf!j -I,1 d&nFCC t.UKf!j -I,1 d&n ---x-i- Vertical---x-i- Vertical --.-----i-.---..----,------,,---,,,,,,__, ------..-- - _______- i .______________--.-----i-.---..----,------,,---,,,,,,__, ------..-- - _______- i .______________ -20 ’-20 ' JQA APPLICATION NO.: 80-80824 Sheet 5 of 10 sheets ' I OperatingReference SubstitutedAttenuation Frequency Carrier ERP Frequency Power (dBm) Ratio (dBm) (MHz) Power (W)* MHZ). Horiz.Vert.Horiz. Vert. 1672.980-53.7-54.880.281.3 2509.470-29.7-38.256.264.7 3345.960c-54.6c-54.6>81.1>81.1 4182.450e-52.9c-52.9>79.5>79.5 5018.940c-58.6c-58.6>.85.1>85.1 836.4900.448 5855.430-55.0-51.6 81.578.1 6691.920 c-57.9c-57.9 > 84.4 > 84.4 I 7528.410-59.3-52.4 85.979.0 I Notes: 1. F1*lv Actually measured. 2. 3. 8364.900 -55.3-53.281.8 79.7 Specified Limits: 43 + IO loglo(0.448) = 39.5 dB for "836.490 MHz" The spectrum was checked from 25: MHz up to the tenth harmonic frequency.A All emissions not listed were found to be more than 30-80824 “. Sheet 5 of 10 sheets " I Operating Reference Frequency Carrier ERP Frequency (MHz 1 Power (W)* (I Substituted Attenuation 7 Power (dBm> Ratio (dBm1 167: ,250 3341 418’ 836.490 0.448 ---. 5018.9-40 5855.430 -55.0-51.6 81.5 78.1 I 669' 1.920 c-57.9c-57.9 >84.4 >84.4 7528.410 -59.3-52.4 85.9 79.0 8364.900 -55.3-53.2 81.8 79.7 I Notes: 1. F1*ll Actually measured. 2. Specified Limits: Log,,(O..448) = 39.5.dB for "836,490 MHz" I 43 f 10 1 -- 3,Thespectrum,was I checked from 25 MHz up to the tenth harmonic frequency.. .! 4. All emissions no It listed were found to be more than -,-- - JQ-A +PPLI~ATION ~0.: 84-80‘824 Sheet 6 of 10 sheets ': , I _ -: : -..‘_ - *. .’ Radi,ated Spurious Ehissions FCC ID: CJ6fXE34608A Serial No. : 128OOc1;oOO5 Car-r ier : 0.448 [WI at 8316.490 [MHz] 0 IIIIII I TPP I TUTTP -10 - ru lblMlf3 -13 * -.*-----..-m b ..---------------------- ‘w__& - -20 -I II Itt 1. f 2 __.- 0.050.07.0.1-0.30.50.713 3 7IO Frequent-y in [GM] PAGE.6t~FE\Yikil'BiTNd.17 JAPAN QUALITY ASSURAF;ICE ORGANlZATlON Operating Reference Frequency Carrier EE; Substituted Attenuation (MHZ) - 1P FrequencyPower (dBm) Ratio (dBm) Power (W)* mHl2) Horiz. Vert,Horiz,Vert. I 848.970 0.359 504ia2 1697.940 '-52.2 -52.5 77.878.1 2546.910 .-33-a -37.1 59.462.7 3395.880 e-54.5 ~-54.5 >80.0>80.0 4244.850 e-52,.9 c-52.9 978.5L78.5 10c-58.6 c-58.6 >84.1>84.1 \ 5942.790 -51.6 -49.4 77.174.9 K7Ql 7c;f-J <-58.x c-58.x> 83.6> 83.6 LO-57.7 -52.6 83.278.1 8489.700 -51.8 -51.6 77.477.2 Notes: 1. "*It Actually measured,, 2. Specified Limits: 43 f 10 log10(0 .sg = 38.6 dB for 1~848.970 MHZ” 3. The spectrum.was checked fro& 25 MHz.,up. to the- tenth harmonic, frequency: 4. A11 emissions not listed were foundito be more than 20 dB bebow i5h~ FCC ID: CJ6DE34608A Serial No. : l2~QOOOOOS’ Carrier : 0.359 [WI at 848.970 EMXzl tII I,:.i1; ^_^ ’ I -II t, 0.025 0.050.070.1..a.30.50.7I-.,3…
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9740 Irvine Boulevard · Irvine, California · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 3 | 22.901(d) | 824 MHz - 849 MHz | 250.00 mW | 1M25F9W | 0.00025 % |

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