download icom ic 7000 service repair manual
The The microphone amplifier circuit amplifies microphone audio receiver gain is determined by the voltage on the AGC line signal to a level needed for the DSP circuit. Outputs R8 regulator (Q1701, Q1702) control signal. Low: While receiving. Outputs T8 regulator (Q1703, Q1704) control signal. Low:While transmitting. Outputs the power control signal. POWS High:When IC-7000 is power ON. 3 - 10. Connect the test equipment to the micropho0ne connector on the rear panel, otherwise the transmitter adjustment will not millivoltmeter adjusted properly.ORDER 0880001670 Encoder EX-2832. Please do not offer the downloaded file for sell only use it for personal usage. Looking for other manual? For this no need registration. May be help you to repair. You could suffer a fatal electrical shock. Instead, contact your nearest service center. Note! To open downloaded files you need acrobat reader or similar pdf reader program. In addition, Also some files are djvu so you need djvu viewer to open them. These free programs can be found on this page: needed progs If you use opera you have to disable opera turbo function to download file. If you cannot download this file, try it with CHROME or FIREFOX browser. Translate this page: Relevant OTHER forum topics: Tranzisztor helyettesites Sziasztok,Ez egy 8 labu IC. Mond valakinek ez valamit. Probaltam neten keresgelni, de nem talaltam rola leirast. Szerintem vagy egy teljesitmeny MOSFET vagy valami muveleti erosito. RolandKiegeszites Udv. Angliaban gyakori, hogy a futes egyedi modon kerozinos kazannal van megoldva. A szelektiv hulladek gyujtes viszont nem mindenhol tokeletes. Ahol most vagyok ott peldaul a sutoolajat csak a varos szelen levo hulladek telepen lehet leadni. Viszont itt tobb regi teherauton is erezni, hogy sutoolajjal jar. Gondoltam mi lenne ha a kerozinos tartalyba ontenem harisnyany atszurve a hasznalt olajat. Havi szinten 300l kerozint eszik a kazan ehhez menne 4l sutoolaj.
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Ilyen higitasban en ugy gondolom nem okozhat problemat. Kemiai emlekeim szerint a petroleum kivaloan oldja az olajat. Vagyis szepen el keveredik es elegne. A velemenyeteket kernem jo e az elgondolasom. Ja itt ez nem jovedeki adocsalas. Koszonom Laci CNS ZEN navigacio - eleresi ut problema Sziasztok! A fent emlitett GPS-vevo egy kollegame. Ha igen, hogyan-honnan lehetne ujra telepiteni az IGO8-at? Koszonettel. Gyula Sony SCPH 90004 gondok Sziasztok! Egy baratom megkert h chippeljem meg a kisfia konzoljat, korbe neztem a neten lehet talalni egy rakat leirast,Szerintetek melyik lenne a legjobb valasztas? Tudom h ez nem legalis dolog ezert csak is kiveteles eset ez. Koszi elore is mindenkinek. Similar manuals: You can write in English language into the forum (not only in Hungarian). Page Count: 92 NEVER connect the transceiver to an AC outlet or to a DCFrance. SpainUnited KingdomDO NOT reverse the polarities of the power supply whenDO NOT apply an RF signal of more than 20 dBm (100 mW)This could damage the transceiver's front end. To upgrade quality, all electrical or mechanical parts and internalComponent name and informations. Equipment model name and unit name. Quantity requiredTop cover 10 pieces. Addresses are provided on the inside back cover for yourIcom, Icom Inc. andTransmitReceiveDigital Low Power modulation. Digital Phase modulationHF bands. More than 70 dBTriple conversion superheterodyne. Double conversion superheterodyneRX 3rdRX 2ndRF circuit has 7 low-pass and 5 high-pass filters for specified band use. Control EntranceControl EntranceMAIN unit via J101 (MAIN unit). The filtered signals from the high-pass filter are passedC237, C238) and then amplified at the RF amplifier (Q211). The amplified signals are applied to the preamplifier circuit. FrequencyControl Entrance FrequencyThe both RF circuits have preamplifiers and bandpass filters. The switched signals are passed throughD554, D556).
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The filtered signals are applied to the preamplifier (Q551) and then passed through another bandpass. The signals from the PA unit are applied to the RF switchThe signals below 1.8 MHz are passed through the low-passThe filtered signals are passed through the band switchThe switched signals are passed through the attenuatorThe filteredThe filtered signals from the high-pass filter are passedThe filtered signals from the high-pass filter are applied toCrystalCrystalUSB 124.48850 MHzThe 124.487 MHz 1st IF signalD604), and the 134.732 MHz 1st. IF signal (WFM mode) passes through the bandpass filterWhen receiving the signals, higher than 129 MHz, areIC1302) via Q2150, then the varactor diodes (D556, D558)Then the filtered signal is applied to the IF amplifier (Q702)When the preamplifier is turned ON, the RF signalsLO signal to convert into the 2nd IF frequency. MHz bands) are passed through the bypass switches (D301,LO signal (124.032 MHz) to convert into the 455 kHz (otherThe amplified or bypassed signals are applied to the 1stThe 2nd LO signal is generated in the DDS unit, and appliedThe converted 2nd IF signal is applied to the 2nd IF circuit.C322) and then applied to the 1st mixer circuit (IC401) viaThe converted 2nd IF signal is applied to the bandpass filterC319, C321, C323, C325) and then applied to the 1st mixerWFM mode) is passed through the. ModeThe 1st LO signal is generated in the DDS unit, and appliedThe amplified signal is applied to the 3rd mixer circuit. The 10.7 MHz 2nd IF signal for WFM mode is passedThe amplified signal is passed through theThe converted 1st IF signal is applied to the 1st IF circuit.The converted signals are applied to the DSP ICs (IC301, IC2201)The 3rd mixer circuit mixes the 2nd IF signal with the 3rd LOThe amplified signal from the IF amplifier (Q1001) are mixedDDS unit via J2406, at the 3rd mixer circuit (IC1101) to convert into the 16.15 kHz 3rd IF signal. The output digital audio signals from the DSP IC (IC301) are.
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The converted 3rd IF signal is applied to the 3rd IF circuit.The 3rd IF circuit filters and amplifies the 3rd IF signal. The converted 3rd IF signal is amplified at the 3rd IF amplifier (IC1203, pins 5, 7) and then passed through the lowpass filter (IC1203, pins 1, 3). The filtered signal is passedThe switched signal is applied to the DSP circuit (LOGICThe filtered signal from the low-pass filter (LOGIC unit;The demodulator circuit converts the 2nd IF signal into the. AF signals. The filtered signal from the bandpass filter (FI1402) isThe detected AFWhile except FM mode, the filtered AF signals from low-passThe switched AF signals are amplified at the AF powerThe switched AF signals are applied to the analog switchThe switched signal is applied to the internal speaker that isThe AGC voltage is detected at the AGC detector sectionQ902, Q1001) after being amplified at IC1201 (pin 12) andPSN modulator, digital Low Power modulator, digital PhaseWhen receiving strong signals, the detected voltage increases and the AGC voltage decreases. As the AGC voltage isQ1001), IF amplifier gain is decreased. The amplified microphone signals are passed through theThe converted digital audio signalThe modulated 3rdThe received signal strength is detected inside the DSP ICsThe S-meter signal for WFM mode is output from the FMThe filtered IF signal is applied to the 3rd mixer circuit (MAINThe S-meter signal from the main CPU (IC1302) is appliedThe filtered signal from the low-pass filter (LOGIC unit. IC601) is applied to the analog switch (IC2251, pins 1,The S-meter signal from the DSP IC is applied to the mainThe main CPU (LOGIC unit; IC1302) compares the S-meterThe converted 2nd IF signal is applied to the 2nd IF circuit.The converted 2nd IF signal is applied to the 2nd IF amplifier (Q901) and then passed through the bandpass filterWhile receiving WFM mode, the S-meter signal is outputCPU (LOGIC unit; IC1302) compares the S-meter signal and.
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IC (IC301, pin B4) to the AF switch (IC2601, pin 2) to cut AFThe filtered signal is applied to the 2nd mixer circuit.LO signal to convert into the 1st IF frequency. The RF circuit amplifies and filters the RF signal from theThe filtered signal from the bandpass filter (FI901) is appliedC314, C316, C318, C320, C322) via the band switch (D305). The 2nd LO signal is generated in the DDS unit, and appliedThe HF band signal is passed through one of 5 high-passThe 50 MHz band signal is passed through the bandpassThe converted 1st IF signal is applied to the IF amplifierC313, C315, C317, C319, C321, C323, C325) via the bandThe filtered signals are applied to the 1st mixer circuit.The VHF band signal is passed through the bandpass filterThe amplified signal is passedThe filtered signal is applied to the 1st mixer circuit (IC401)The 1st LO signal is generated in the DDS unit, and appliedThe amplified signal is passed through the high pass filterThe UHF band signal is amplified at the RF amplifier (IC3,The filtered signal is amplified atLOGIC UNIT (DSP circuit)APC detectors (PA unit; D401, D404, D501, D504) respectively.The RF signal from the MAIN unit is applied to the pre driveThe amplified signal isThe “HFOR” and “VUFOR” voltages are combined to theQ302) to obtain a stable 100 W of RF output power. TheIn AM mode, IC1601 functions as an averaging ALC amplifier with Q1601. The AM switch (Q1602) is turn ON andThe amplified VHF RF signal from the drive amplifier isThe power amplified signals are. The ALC bias voltage from IC1601 is also applied to theThe amplified UHF RF signal from the drive amplifier isThe power amplified signal isExternal ALCThe reflected wave signal appears and increases on theThe detected voltage is appliedThe converted DC voltages areFor the current APC, the driving current at the power amplifiers is detected in the voltages (“ICH” and “ICL”) whichThe 124.032 MHz 2nd LO signal is applied to the triplerThe filteredThe filtered signal is applied to the.
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DDS IC (IC301) as the 372.096 MHz system clock. TheThe output signal from the DDS. IC (IC301, pins 20, 21) is applied to the doubler circuitC335). The amplified signal is applied to one of the multiplierThe amplified signal isWhen the current of the power amplifier exceeds 22 A, TheThe “FOR,” “VFOR” and “UFOR” voltages are combined toThe ALC bias voltage from the buffer amplifier (MAIN unit. IC1601, pin 14) is applied to the main CPU (IC1302, pin 115)The filtered signal is applied to the 1st mixer circuit (MAINThe “FORL” and “REFL” voltages are applied to the main. CPU (IC1302, pins 113, 114) respectively. The main CPURef. Osc.Frequency. The oscillated signal is multiplied by 5 at Q101 and thenThe filteredThe DDS IC (IC51) generates a 10-bit digital signal. TheThe DDS IC (IC51)RX frequency. TX frequencyDescriptionThe output voltage is applied to the sub CPU (IC2003),DescriptionIC451, IC502), etc.The output voltage is applied to the bufferTransmit 8 V controlled by the T8 regulatorIF amplifier (Q901), etc. Receive 8 V controlled by the R8 regulatorThe output voltage is applied to the 2nd IFPinPortDescriptionHigh: Squelch is opened.High: While receiving or squelch isLow: While transmitting.PortPort namePinPortDescriptionRTCCK (IC1304) for clock indication and timerInput port for the forward voltage.ICs (IC301, IC2201).Input port for the HM-151 connection detection.CPU (DISPLAY unit; IC2003).SEND selection. High: While V SEND is selected.IC (DDS unit; IC51) for the 3rd LOICs (DDS unit; IC51, IC301) andDDS ICs (DDS unit; IC51, IC301)High: While transmitting the 144 MHzHigh: While transmitting the 430 MHzLow: While receiving.Low:While transmitting.High:When IC-7000 is power ON.Output voltage. Current capacityRF power meterMeasuring range. Frequency range. ImpedanceFrequency counter. RF voltmeter. Standard signalFrequency range. SensitivityFrequency range. Measuring range. Oscilloscope. Digital multimeter. Imput impeadance. AC millivoltmeter. Measuring rangeDC voltmeter.
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Input impedance. DC ammeter. Audio generator. Output level. External speaker. CapacityNOTE: Exiting from the adjustment mode when the transceiver's power is OFF. Rear panel. Front panelJIG plugPin 5AudioRF power meterDC power supply. AmmeterAfter the adjustment, exit the adjustment mode and connect P4 to J801 (MAIN unit).After the adjustment, connect J2231 (MAIN unit) and disconnect jumper wire between DISPLAY unit groundAfter the adjustment, exit the adjustment mode.Ammeter. DC powerFrequencyConnect a DC voltmeter Minimum voltto CP961.OutputCore’sLevelTX Total Gain(HF1). Set the output power to 50 W using. TX Total Gain(HF2). TX Total Gain(HF3). Set the output power to 50 W usingSet the output power to 50 W using. TX Total Gain(144M). Set the output power to 25 W using. TX Total Gain(430M). Set the output power to 17.5 W usingTX peakPo Tune(HF). Set the output power to 10 W using. Po 25(HF). Set the output power to 25 W usingSet the output power to 50 W usingSet the output power to 75 W usingSet the output power to 95 W usingSet the output power to 105 W usingLevelAM POCV Ratio. Set the output power to 35 W using. Level. Po Min(50 M). Po Tune(50 M). Po 25(50 M). Set the output power to 25 W usingSet the output power to 50 W usingSet the output power to 90 W usingSet the output power to 100 W usingPo 25(144 M). Set the output power to 12.5 W using. Po 50(144 M). Set the output power to 25 W usingSet the output power to 45 W usingSet the output power to 50 W usingLevelLevel. Po Min(430 M). Po 25(430 M). Set the output power to 8.75 W using. Po 50(430 M). Set the output power to 17.5 W usingSet the output power to 31.5 W usingSet the output power to 35 W usingDrive Min. LevelLevel. Drive MinLevelDrive MinLevelLevelConnect a DC ammeterDC power supply andConnect an RF powerRear panel view. Ammeter. DC powerLevel. ModulationModulation: OFF. Frequency: 14.15150 MHz. S9 Level. Tuned BPF(60 M). Frequency: 90.8015 MHz. Tuned BPF(90 M). Frequency: 128.8015 MHz.
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Tuned BPF(128 M). Frequency: 129.2015 MHz. Tuned BPF(129 M). Frequency: 145.3015 MHz. Tuned BPF(145 M)Frequency: 60.2015 MHz. Modulation: OFF. Set 30 dB of AF level difference betweenTuned BPF(170 M). FrequencyTuned BPF(400 M). FrequencyTuned BPF(435 M). FrequencyTuned BPF(470 M)LevelModulation: OFFFrequencyLevel. S0 Level(WFM). S9 Level(WFM). After the adjustment, exit the adjustment mode.Level. Modulation: 1 kHz. DeviationERA3YKD 393V (39 k?). ERA3YKD 184V (180 k?). ERJ2GEJ 103 X (10 k?). ERA3YKD 224V (220 k?). ERA3YKD 563V (56 k?). ERA3YED 223V (22 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 103 X (10 k?). ERJ2GEJ 102 X (1 k?). ERJ2GEJ 332 X (3.3 k?). ERJ2GEJ 334 X (330 k?). ERJ2GEJ 124 X (120 k?). ERJ2GEJ 123 X (12 k?)ERJ2GEJ 823 X (82 k?). ERJ2GEJ 562 X (5.6 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 392 X (3.9 k?). ERJ2GEJ 392 X (3.9 k?). ERJ2GEJ 392 X (3.9 k?)ERJ2GEJ 103 X (10 k?). ERJ2GEJ 223 X (22 k?). ERJ2GEJ 333 X (33 k?). ERJ2GEJ 683 X (68 k?). ERJ2GEJ 104 X (100 k?). ERJ2GEJ 224 X (220 k?). ERJ3GEYJ 223 V (22 k?). ERJ2GEJ 563 X (56 k?). ERJ2GEJ 393 X (39 k?). ERJ2GEJ 153 X (15 k?). ERJ3GEYJ 223 V (22 k?)ERJ2GEJ 472 X (4.7 k?). ERJ2GEJ 153 X (15 k?)ERJ3GEYJ 472 V (4.7 k?). ERJ3GEYJ 153 V (15 k?)ERJ2GEJ 472 X (4.7 k?). ERJ2GEJ 153 X (15 k?)ERJ2GEJ 473 X (47 k?). ERJ2GEJ 222 X (2.2 k?). ERJ2GEJ 473 X (47 k?). ERJ2GEJ 104 X (100 k?)ERJ2GEJ 473 X (47 k?). ERJ2GEJ 682 X (6.8 k?). ERJ3GEYJ 122 V (1.2 k?). ERJ2GEJ 473 X (47 k?)ERJ2GEJ 473 X (47 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 104 X (100 k?)ERJ2GEJ 102 X (1 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 104 X (100 k?)ERJ2GEJ 104 X (100 k?)ERJ2GEJ 104 X (100 k?)ERJ2GEJ 104 X (100 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 272 X (2.7 k?)ERJ2GEJ 102 X (1 k?)ERJ2GEJ 222 X (2.2 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 102 X (1 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 822 X (8.2 k?). ERJ2GEJ 272 X (2.7 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 102 X (1 k?)ERJ2GEJ 822 X (8.2 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 222 X (2.
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2 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 473 X (47 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 123 X (12 k?). ERJ2GEJ 222 X (2.2 k?)ERJ2GEJ 102 X (1 k?)ERJ2GEJ 392 X (3.9 k?)ERJ2GEJ 154 X (150 k?)ERJ2GEJ 393 X (39 k?). ERJ2GEJ 394 X (390 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 222 X (2.2 k?)ERJ2GEJ 473 X (47 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 104 X (100 k?)ERJ2GEJ 334 X (330 k?). ERJ2GEJ 333 X (33 k?)ERJ2GEJ 104 X (100 k?). RH03ADC14X (10 k?). ERJ2GEJ 823 X (82 k?). ERJ2GEJ 183 X (18 k?)ERJ2GEJ 103 X (10 k?)ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 104 X (100 k?)ERA3YED 303V (30 k?). ERJ2GEJ 563 X (56 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 154 X (150 k?). ERJ2GEJ 184 X (180 k?). ERJ2GEJ 224 X (220 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 104 X (100 k?)ERJ2GEJ 334 X (330 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 474 X (470 k?). ERJ2GEJ 474 X (470 k?). ERJ2GEJ 822 X (8.2 k?)ERJ2GEJ 103 X (10 k?). ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 104 X (100 k?)ERJ2GEJ 124 X (120 k?). ERJ2GEJ 123 X (12 k?). ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 103 X (10 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 102 X (1 k?)ERA3YED 392V (3.9 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 563 X (56 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 102 X (1 k?)ERJ2GEJ 392 X (3.9 k?). ERJ2GEJ 104 X (100 k?)ERJ2GEJ 103 X (10 k?). ERJ2GEJ 472 X (4.7 k?). ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 182 X (1.8 k?). ERJ2GEJ 473 X (47 k?)ERJ3GEYJ 562 V (5.6 k?)ERJ3GEYJ 682 V (6.8 k?)ERJ3GEYJ 472 V (4.7 k?)ERJ3GEYJ 102 V (1 k?)ERJ3GEYJ 222 V (2.2 k?)ERJ3GEYJ 102 V (1 k?). ERJ3GEYJ 682 V (6.8 k?). ERJ3GEYJ 332 V (3.3 k?)ERJ3GEYJ 154 V (150 k?). ERJ3GEYJ 394 V (390 k?). ERJ3GEYJ 184 V (180 k?). ERJ3GEYJ 334 V (330 k?). ERJ3GEYJ 334 V (330 k?)ERJ3GEYJ 472 V (4.7 k?)ERJ3GEYJ 102 V (1 k?). ERJ3GEYJ 472 V (4.7 k?). ERJ3GEYJ 102 V (1 k?). ERJ3GEYJ 103 V (10 k?)ERJ3GEYJ 102 V (1 k?). ERJ3GEYJ 104 V (100 k?). ERJ3GEYJ 224 V (220 k?). ERJ3GEYJ 334 V (330 k?)ERJ3GEYJ 104 V (100 k?). ERJ3GEYJ 104 V (100 k?)ERJ3GEYJ 682 V (6.8 k?).
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ERJ3GEYJ 332 V (3.3 k?). ERJ3GEYJ 332 V (3.3 k?)ERJ3GEYJ 102 V (1 k?)ERJ3GEYJ 102 V (1 k?)ERJ3GEYJ 104 V (100 k?)ERJ3GEYJ 333 V (33 k?). ERJ3GEYJ 333 V (33 k?). ERJ3GEYJ 103 V (10 k?). ERJ3GEYJ 103 V (10 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 272 X (2.7 k?). ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 103 X (10 k?). ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 472 X (4.7 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 103 X (10 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 473 X (47 k?)ERJ2GEJ 473 X (47 k?). ERJ2GEJ 183 X (18 k?). ERJ2GEJ 104 X (100 k?)ERJ2GEJ 104 X (100 k?). ERJ2GEJ 332 X (3.3 k?)ERJ2GEJ 102 X (1 k?)ERJ2GEJ 332 X (3.3 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 122 X (1.2 k?). ERJ2GEJ 122 X (1.2 k?). ERJ2GEJ 203 X (20 k?). ERJ2GEJ 393 X (39 k?)ERJ2GEJ 223 X (22 k?)ERJ2GEJ 103 X (10 k?). ERJ2GEJ 473 X (47 k?)ERJ2GEJ 472 X (4.7 k?). ERJ2GEJ 393 X (39 k?)ERJ2GEJ 103 X (10 k?). ERJ2GEJ 473 X (47 k?)ERJ2GEJ 224 X (220 k?). ERJ2GEJ 103 X (10 k?)ERJ2GEJ 472 X (4.7 k?)ERJ3GEYJ 273 V (27 k?). ERJ2GEJ 223 X (22 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 472 X (4.7 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ3GEYJ 104 V (100 k?). ERJ2GEJ 104 X (100 k?)ERJ2GEJ 102 X (1 k?). ERJ2GEJ 102 X (1 k?)ERJ2GEJ 103 X (10 k?)ERJ2GEJ 222 X (2.2 k?). ERJ2GEJ 473 X (47 k?)MCR10EZHJ 1.5 k? MCR10EZHJ 1.5 k?ERJ3GEYJ 333 V (33 k?). ERJ3GEYJ 822 V (8.2 k?). ERJ3GEYJ 222 V (2.2 k?). ERJ3GEYJ 473 V (47 k?). MCR10EZHJ 1.5 k? ERJ3GEYJ 152 V (1.5 k?). ERJ3GEYJ 153 V (15 k?)ERJ3GEYJ 102 V (1 k?). ERJ3GEYJ 102 V (1 k?)Knob N328. Knob N328 (A). Knob N329. Knob N330Knob K246. Knob K247. Knob K248. Knob K249-1. Knob K250. Knob K251. Knob K252. Knob K253. Knob K254. Knob K255. Knob K255 (A). Knob K256. Knob K257. Knob K258Plain washer (AI)Coil spring (AI). Hex nut (A)Screw PH B0 M2 ? 8 ZK (BT). Screw PH B0 M2 ? 8 ZK (BT). Coil spring (AJ). Flat washer M2 NI BS. Screw FH BT M2 ? 4 NI-ZUDouble side tape (AJ). Knob N331 assembly -1Insulation sheet (LG).
Himelon sheet CASponge (IQ)Ferrite sheet (C) 15 ? 8 ? 2. Shield sponge (AT)Shield sponge (AT)Thermally sheet (AU)Enboss tape (K)Thermally sheet (V)-1. Thermally sheet (AL). Double coated tape (Y). Thermally sheet (V)-1Connector TCS5044-01-4111.
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