SERVICE MANUAL SURVIVAL CRAFT 2-WAY RADIO

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1 SRVI MANUAL SURVIVAL RAFT -WAY RADIO

2 INTRODUTION This service manual describes the latest service information for the I-GM00/ VHF MARIN TRANSIVR at the time of publication. MODL VRSION TX Hi-POWR I GM00 USA W GN W I GM00 UR W UK W To upgrade quality, all electrical or mechanical parts and internal circuits are subject to change without notice or obligation. DANGR NVR connect the transceiver to an A outlet or to a D power supply that uses more than 7. V. Such a connection could cause a fire or electric hazard. DO NOT reverse the polarities of the power supply when connecting the transceiver. DO NOT apply an RF signal of more than 0 dm (00 mw) to the antenna connector. This could damage the transceiver's front end. ORDRING PARTS e sure to include the following four points when ordering replacement parts:. 0-digit order numbers. omponent part number and name. quipment model name and unit name 4. Quantity required <SAMPL ORDR> LD A08 I-GM00 Main unit pieces Screw O x4 NIxZU (T) I-GM00 hassis 0 pieces Addresses are provided on the inside back cover for your convenience. RPAIR NOTS. Make sure a problem is internal before disassembling the transceiver.. DO NOT open the transceiver until the transceiver is disconnected from its power source.. DO NOT force any of the variable components. Turn them slowly and smoothly. 4. DO NOT short any circuits or electronic parts. An insulated turning tool MUST be used for all adjustments.. DO NOT keep power ON for a long time when the transceiver is defective.. DO NOT transmit power into a signal generator or a sweep generator. 7. ALWAYS connect a 0 d to 40 d attenuator between the transceiver and a deviation meter or spectrum analyzer when using such test equipment. 8. RAD the instructions of test equipment thoroughly before connecting equipment to the transceiver. Icom, Icom Inc. and logo are registered trademarks of Icom Incorporated (Japan) in the United States, the United Kingdom, Germany, France, Spain, Russia and/or other countries.

3 TAL OF ONTNTS STION SPIFIATIONS STION INSID VIWS STION DISASSMLY INSTRUTIONS STION 4 IRUIT DSRIPITON 4- RIVR IRUITS TRANSMITR IRUITS PLL IRUITS POWR SUPPLY IRUITS PORT ALLOATIONS STION ADJUSTMNT PRODURS - PRPARATION SOFTWAR ADJUSTMNTS STION PARTS LIST STION 7 MHANIAL PARTS AND DISASSMLY STION 8 SMIONDUTOR INFORMATION STION 9 OARD LAYOUTS 9- MAIN UNIT VR OARD MI OARD STION STION 0 LOK DIAGRAM VOLTAG DIAGRAM - MAIN UNIT VR / MI OARD

4 STION SPIFIATIONS GNRAL TRANSMITTR RIVR I-GM00 [USA] I-GM00/ [GN], [UR], [UK] TX MHz [ON-OARD] MHz [ON-OARD] Frequency coverage RX.00.7 MHz [ON-OARD] MHz [ON-OARD] TX/RX MHz [SURVIVAL] Number of programable channels 00 channels Type of emission K0G K0G (for ATIS) Antenna impedance 0 Ω (nominal) Operating temperature range 4 F to +40 F 0 to + Power supply requirement 7. V D nominal (negative ground) 7. V D nominal (negative ground) RX 0. A (at max. audio) urrent drain (approx.) W.0 A TX W 0.7 A Dimensions (projections not included) (W) 4(H) 44(D) mm; 9 /(W) /(H) /4(D) in. Weight (approx.) 8 g;.8 oz. (Including P-4) Output power High W Low W Modulation Variable reactance frequency modulation Max. frequency deviation ±.0 khz Frequency error ±.0 ppm ±. khz 0. µw (0 MHz to GHz) Spurious emissions 70 dc typ..00 µ W ( GHz GHz) Adjacent channel power 70 d Audio harmonic distortion 0% (at 0% deviation) FM hum and noise 40 d Residual modulation 40 d Audio frequency response + d to d of d oct. from 00 Hz to 000 Hz Limiting charact. of modulation 0 00% of max. deviation Microphone impedance kω Receive system Double conversion superheterodyne system Intermediate frequencies st :.0 MHz, nd : 40 khz Sensitivity 0. µv typ. at d SINAD dµ emf typ. at 0 d SINAD Squelch sensitivity dµ typ. (at threshold) dµ emf typ. (at threshold) Adjacent channel selectivity 70 d typ. 70 d Spurious response 70 d typ. 70 d Intermodulation rejection ratio 70 d typ. 8 d Hum and Noise 40 d Audio frequency response + d to d of d oct. (from 00 Hz to 000 Hz) Audio output power 0. W typ. 0. W typ. (at 0% distortion with an 8 Ω load) Output impedance (audio) 8 Ω + d to d of d oct. (from 00 Hz to 000 Hz) Specifications are measured in accordance with TIA/IA 0 and F PARTS 80.7 (I-GM00), and I097 (I-GM00). All stated specifications are subject to change without notice or obligation. -

5 HANNL LISTS International channels H Frequency (MHz) Frequency (MHz) Frequency (MHz) Frequency (MHz) Frequency (MHz) Frequency (MHz) H H H H H Transmit Receive Transmit Receive Transmit Receive Transmit Receive Transmit Receive Transmit Receive * * * * A* P4*.4.4 Receive only * hannels and 7 may also be used for on-board communications provided the effective radiated power does not exceed W, and subject to the national regulations of the administration concerned when these channels are used in its territorial waters. * UK Marina hannels: M=7A (7.80 MHz), M=P4 (.4 MHz) for U.K. version only * The use of these channels should be restricted to navigation-related communications only and all precautions should be taken to avoid harmful interference to channel, e.g. by limiting the output power to W or by means geographical separation. USA channels (for U.K. version only) Frequency (MHz) Frequency (MHz) Frequency (MHz) Frequency (MHz) Frequency (MHz) Frequency (MHz) H H H H H H Transmit Receive Transmit Receive Transmit Receive Transmit Receive Transmit Receive Transmit Receive 0A A A A A A.9.9 8A A A.. 79A A A A A A A A.0.0 8A A P4* A A* A A A A A A Low power only Receive only *UK Marina hannels: M=7A (7.80 MHz), M=P4 (.4 MHz) for U.K. version only Survival operation channels hannel number TX/RX hannel number TX/RX hannel number TX/RX 0.00 MHz MHz MHz 0.00 MHz.0 MHz.00 MHz.0 MHz MHz *.70 MHz.800 MHz 7*.80 MHz 7.7 MHz 8.4 MHz 9.47 MHz 7.7 MHz 7. MHz 7.7 MHz 74.7 MHz MHz *U.S.A. version is low power only -

6 STION INSID VIWS MAIN UNIT TOP VIW OTTOM VIW Antenna Switches *D, D: SV07 D: MAS077 SV Regulator (Q: SA88) TV Regulator (Q: SA88) IF amplifier (Q: S4) TX/RX swith (D9, D9: MA77) Power amplifier (*Q: RD07MVS) Pre-drive (*Q0: RD0MUS) R Regulator (Q: SA88) RF amplifier (Q: SK94) VO circuits D/A converter I (I: MFP-7) *Located in under the plate. PU I: PD78F08 G-9 PROM (I9: R4LFV-W) Reset I (I8: S-8094NM) -

7 STION DISASSMLY INSTRUTIONS RMOVING TH RAR PANL Remove the speaker panel A. Unscrew screws, and remove washers. Unscrew screws D. 4 Unscrew screws, and remove washers F. Remove the rear panel and the main seal from the front panel. Note: When replacing the screws, 0 kg of torque MUST be applied to ensure water resistance. Rear panel D Main seal Front panel F A R RMOVING TH HASSIS UNIT Unscrew nut G. Unscrew screws H. Take off the chassis unit in the direction of the arrow. 4 Unplug the connector I and the cable J from the chassis unit. Remove washer K. RMOVING TH MAIN UNIT Unscrew 9 screws L. Unsolder points M, and take off the main unit in the direction of the arrow. L L F G K hassis unit H M L Main unit I Front panel hassis unit -

8 STION 4 IRUIT DSRIPTION 4- RIVR IRUITS 4-- ANTNNA SWITHING IRUIT The antenna switching circuit toggles receive line and transmit line. This circuit does not allow transmit signals to enter the receiver circuits. Received signals from the antenna are passed through the low-pass filter (LPF: L, L, ) and applied to the antenna switching circuit (D, D). While receiving, no voltage is applied to D and D. Thus, the receive line and the ground are disconnected and L, L,, and function as an LPF which leads received signals to the RF circuits. 4-- RF IRUITS The RF circuits amplify signals within the range of frequency coverage and filters off out-of-band signals. The signals from the antenna switching circuit are passed through the two-stage tunable bandpass filter (PF: D4, D, L4 L,, 7, 9,, 4, 8), then applied to the RF amplifier (Q). The amplified signals are passed through another two-stage PF (D8, D8, L, L8 8, 8, 84 8, 88) to suppress unwanted signals. The filtered signals are then applied to the st mixer circuit. 4-- st MIXR AND st IF AMPLIFIR IRUITS The st mixer circuit converts received signals into the st intermediate frequency (IF) signal by mixing with local oscillator (LO) signal. The converted st IF signal is filtered at the st IF filter, then amplified at the st IF amplifier. The signals from the two-stage PF are converted into the.0 MHz st IF signal at the st mixer (Q9) by being mixed with the st LO signals generated at RX VO (Q4, D D4). nd IF AND DMODULATR IRUITS The st IF signal from the st mixer is passed through the crystal filter (FI) to suppress unwanted signals, and amplified at the st IF amplifier (Q). The amplified st IF signal is applied to the FM IF I (I) nd IF AND DMODULATOR IRUITS The st IF signal is converted into the nd IF signal and de-modulated by the FM IF I. The FM IF I contains nd mixer, limiter amplifier, quadrature detector, etc. in its package. The st IF signal from the st IF amplifier is applied to pin of I, and mixed with the 0. MHz nd LO signal coming from the doubler (Q), to convert into the 40 khz nd IF signal and output from pin. The nd IF signal is filtered by the ceramic filters (FI, FI) to suppress the heterodyne noise, then applied to I (pin ) again and amplified at the limiter amplifier section and demodulated by the quadrature detector. The quadrature detector is a detection method which uses a ceramic discriminator (X). The demodulated AF signals are output from pin AF IRUITS Demodulated signals are filtered and amplified at the AF circuits. AF signals from I (pin 9) are passed through the AF mute switch (I8 A; pins, ), analog switch (I8; pins, 7), LPF (I ; pins 8 0) and R80 (VR OARD) to control the AF output level. The level controlled AF signals are passed through the AF mute switch (Q4) and the de-emphasis circuit (R4, 4) to obtain the frequency characteristic of d/oct. The de-emphasized signals are applied to the AF power amplifier (I4, pin 4). The AF power amplifier provides more than 0. W of audio power. 40 khz nd IF filters FI "SQON" signal from the D/A converter (I) Active filter FM detector Noise AMP Limiter AMP W/N SW D W/N SW D Noise detector FI Noise comparator 4 Mixer 0. MHz nd LO signal PLL I (I) X Q. MHz I TAFN st IF signal from the IF amplifier (Q) AF "DT" signal to the AF circuits X RV "NOISV" signal to the PU (I, pin ) 4 -

9 4-- SQULH IRUIT Squelch circuit mutes AF output signal when no signals are received. A portion of the AF signals from the FM IF I (I, pin 9) are applied to the I to control the level, and the active filter (R9 R4, 7, 8). The filtered signals are applied to the noise amplifier section in the FM IF I (I, pin 8) to amplify the noise components only. The amplified noise components are detected at the noise detector section, and output from pin 4 as the "NOISV" signal to the PU (I, pin ). Then the PU outputs "AFMS" signal from pin 84 according to the "NOISV" signal level to control the AF mute switch (Q4). 4- TRANSMITTR IRUITS 4-- MI AMPLIFIR, SPLATTR FILTR IRUITS The MI amplifier circuit amplifies audio signals from the microphone within + d/oct pre-emphasis characteristics and amplifies to the level needed for modulation. The AF signals from the microphone are passed through the microphone switch (Q4) and the microphone mute switches (I8 A, pins, ; I8, pins, ). The AF signals are then passed through the pre-emphasis circuit (R4, 4) to obtain frequency characteristics of + d/oct. The pre-emphasized AF signals are amplified at the microphone amplifier (I ), and adjusted its level at the microphone gain control circuit (Q, Q4, R474, R70, R707, R708). The level adjusted signals are applied to the limiter amplifier (I49 A; pins, ) to limit its level via the AF mute switch (I48 A; pins, ). The AF signals are then passed through the splatter filter (I49 ; pins, 7) to suppress unwanted khz and higher audio signals, then applied to the modulation circuit via the D/A converter (I; pins, 4). 4-- MODULATOR IRUIT The modulation circuit modulates the VO oscillating signal with the audio signals from the microphone. AF signals from the D/A converter (I, pin ) are applied to the modulation circuit (D9) to modulate the oscillated signal by changing the reactance of D9 at the TX VO (Q, D 8). 4-- TRANSMIT AMPLIFIRS Transmit amplifiers amplify the TX VO output to transmit power level. The TX VO output signal is buffer-amplified by the buffer amplifiers (Q, Q) and passes through the TX/RX switch (D9). The signals from the TX/RX switch are applied to the another buffer amplifier (Q9), pre-drive (Q0) and power amplifier (Q) and amplified to the transmit level. The power amplifier output is applied to the antenna connector (J4: HASSIS UNIT) via the antenna switching circuit and the LPFs AP IRUIT The AP (Automatic Power ontrol) circuit stabilizes transmit output power and controls transmit output power High, Middle and Low. The RF output signal from the power amplifier (Q) is detected at the power detector (D). The detector converts the RF signals into D voltage, and the detected voltage is applied to the AP amplifier (I4, pin ). The transmit output power setting voltage is applied to another input terminal of the AP amplifier (I4, pin ) as the reference voltage. The AP amplifier controls the bias of the buffer, pre-drive and power amplifiers by comparing the detected voltage and reference voltage. Thus the AP circuit maintains a constant output power. Another power detector (D) detects the RF output level and outputs "TDTV" signal to the PU (I, pin ). The PU outputs "TLD" signal to the LD driver (Q) to light TX LD (DS). AP IRUIT TV V RF signals from TX/RX SW uffer AMP Q9 Predrive Q0 Q Power AMP LPF ANT SW LPF To ANT TON + I4 AP 4 AMP D D TDTV 4 -

10 4- PLL IRUITS 4-- GNRAL PLL circuits control TX and RX VO circuits. I is a PLL I and contains prescaler, programmable counter, programmable divider, phase detector, charge pump in its package. The phase detector compares the input signal with a reference frequency, and then outputs the control signal (pulse-type) from pin. The pulse-type signal is converted into D voltage at the loop filter (R7 R9,, 7), and then applied to the RX VO (Q4, D D4) as the lock voltage. The VOs directly generate the transmit frequency and the st LO frequency for receiving. The PLL sets the divided ratio based on the serial data from the PU (I), and compares the phase of the VO output with the reference oscillator's frequency (. MHz) oscillated by X. If the oscillated signal drifts, the phase of its frequency changes from the phase of the reference frequency, causing a lock voltage change to compensate for the drift in the oscillated frequency. 4-- TRANSMIT LOOP A portion of the generated signal at the TX VO (Q, D D9) is applied to the PLL I (I, pin 8) via buffer-amplifier (Q7). The applied signal is divided at the prescaler section and programmable divider section and is then applied to the phase detector section. The phase detector compares the input signal with the reference frequency, and then outputs the control signal (pulse-type) from pin via the charge pump section. The pulse-type signal is converted into D voltage at the loop filter (R7 R9,, 7), and then applied to the TX VO (Q, D D9) as the lock voltage. 4-- RIV LOOP The generated signal at the RX VO (Q4, D D4) is applied to the PLL I (I, pin 8) via buffer-amplifier (Q7) and is divided at the prescaler section and programmable divider section and is then applied to the phase detector section. PLL IRUITS uffer Q "LOINV" signal to the PU (I, pin 4) Loop filter RX VO Q4, D D4 TX VO Q, D D9 uffer Q I MA0PFV uffer Q uffer Q7 D9 D9 LPF to st mixer circuit to transmitter circuit harge Programmable 8 Prescaler pump divider 0. MHz nd LO signal to the FM IF I (I, pin ) Q Phase detector Shift register 9 0 SLK SDATAO PLSTO PLL control signals from D/A converter (I, pins 7). MHz reference signal from reference frequency osciilator (X) 4 -

11 4-4 POWR SUPPLY IRUITS 4-4- VOLTAG LINS LIN V PUV MV TV SV RV 4- PORT ALLOATIONS 4-- PU (I) PIN NUMR DSRIPTION The voltage from the connected D power supply passed through the [VOL] switch (R: VR OARD). V for the PU (I) converted from the V line at the PUV regulator circuit (I). ommon V line converted from the V line at the MV regulator circuit (Q Q). V for the transmit circuits controlled by the TV control circuit (Q) using the TVS signal from the PU (I, pin 90). V for the AF circuits controlled by the SV control circuit (Q) using the SVS signal from the PU (I, pin 87). V for the receive circuits controlled by the RV controll circuit (Q) using the RVS signal from PU (I, pin 89). PORT NAM DSRIPTION P Output port for P signal. XST Output port for external expander strobe signal. 4 DAST Output port for external D/A strobe signal. PLST Output port for PLL strobe. RXDI Input port for cloning. 7 TXDO Output port for cloning. 0 SDATA Output port for serial data. SK Output port for serial clock. SK Input port for PROM clock. SDA I/O port for PROM data. 4 TLD Output port for TX LD driver. RLD Output port for RX LD driver. 7 SIFT Output port for clock shift signal. RST Input port for reset signal. 7 WDV Input port for WX tone signal. 8 XDT Input port for the [MI/SP] detect signal. 9 VOXT Input port for VOX signal. 0 ATTV Input port for battery voltage detection signal. TDTV Input port for TX power level. NOISV Input port for noise level. RSSIV Input port for RSSI level. 4 LOINV Input port for PLL lock voltage level. TMPV Input port for temperture level. 7, 7 ONT, ONT Output ports for LD contrast control signal. PIN NUMR PORT NAM DSRIPTION 77, 78 LDS, LDS Output port for dimmer control signal. 80 MIMS Output port for microphone mute signal. "HIGH": Microphone mute 8 ISPMS Output port for internal speaker mute signal. "HIGH": Speaker mute 84 AFMS Output port for AF mute signal. 8 AFVS Output port for AF amplifier power supply control signal. 0 PTTIN Input port for [PTT] switch. 0 XPTT Input port for external PTT switch. 04 TYP Input port for battery type detection. 0 PTTM Output port for microphone mute signal MI MI Output ports for microphone sensitivity detection signal. 09 SQL Input port for [SQL] key. 0 UP Input port for [Y] key. DOWN Input port for [Z] key. H/WX Input port for [ALL] key. /9 Input port for [] key. 4 SAN Input port for [H] key. H/L Input port for [Hi/Lo] key. 7 VOXM Ouput port for mute signal in VOX mode. 9 UNLK Input port for PLL unlock signal. 4-- XPANDR (I4) PIN NUMR PORT NAM DSRIPTION DTMS Output port for DT mute signal. ATTS Output port for RF attenuator control signal. TXMS Output port for TX mute signal. VOS TX/RX VO switching signal. 4 SQLT Output port for squelch control signal. 4-4

12 STION ADJUSTMNT PRODURS - PRPARATION RQUIRD TST QUIPMNTS When adjusting I-GM00/, the optional S-M90/GM00 ADJ ADJUSTMNT SOFTWAR (Rev..0 or later), OP-478 (RS- type) or OP-478U (US type) LONING AL, OP-08 and JIG cable (see page -) are required. QUIPMNT GRAD AND RANG QUIPMNT GRAD AND RANG RF power meter (terminated type) Frequency counter FM deviation meter Audio generator Measuring range : 0. W Frequency range : MHz Impedance : 0 Ω SWR : Less than. : Frequency range : MHz Frequency accuracy : ± ppm or better Sensitivity : 00 mv or better Frequency range Measuring range Frequency range Output level : 0 00 MHz : 0 to ±0 khz : Hz : 00 mv Standard signal generator (SSG) Oscilloscope A millivoltmeter xternal speaker Attenuator Frequency range : MHz Output level : 0. µv to mv ( 7 to 7 dm) Frequency range : D 0 MHz Measuring range : V Measuring range : 0 mv to 0 V Input impedance : 8 Ω apacity : More than 0. W Power attenuation : 0 or 0 d apacity : More than W STARTING SOFTWAR ADJUSTMNT () onnect I-GM00/ and a P with OP-478/U, OP-08 and JIG AL. () Turn the transceiver ON. () oot up Windows, and click the program group 'S-M90/ GM00 ADJ in the Programs folder of the [Start] menu, then S-M90/GM00 ADJ s window appears. (4) lick Adjust on the S-M90/GM00 s window, then I-GM00/ s up-to-date condition appears. () Set or modify adjustment data as desired. AUTION!: AK UP the originally programmed memory data in the transceiver before programming the adjustment frequencies. When program the adjustment frequencies into the transceiver, the transceiver s memory data will be overwritten and lose original memory data at the same time. Microsoft and Windows are registered trademarks of Microsoft orporation in the U.S.A. and other countries. -

13 ONNTION A millivoltmeter Audio generator to RS- port OP-478U (US type) OP-478 (RS- type) to the antenna connector Standard signal generator 0. µv to mv ( 7 dm to 7 dm) P to US port DO NOT transmit while an SSG is connected to the antenna connector. SINAD meter To LON line (LAK) To red line (RD) JIG cable To MI. line (WHIT) OP-08 Attenuator 0 d / 0 d RF power meter 0. W/0 Ω Frequency counter FM deviation meter Speaker (8 Ω) To [SP] connector I-GM00/ JIG AL To SINAD meter/speaker To audio generator/a millivoltmeter OP-478/U (SP. line) WHIT (MI. line) RD OP-08 (LON line) LAK SHILD -

14 P SRN XAMPL I/O check button q w e r t y i u o NOT: The above screen is an example. ach transceiver has its own specific values for each setting. q: Adjustment condition w: Reference frequency e: RF output power r: FM deviation (Wide) t: Receive sensitivity (Automaticaly) y: Receive sensitivity (Manualy) u: Squelch level i: S-meter o: VOX -

15 - SOFTWAR ADJUSTMNT (FRQUNY) Select the adjustment item with [ ] / [ ] keys, then set the value with [ ] / [ ] keys on the connected P. MASURMNT ADJUSTMNT ADJUSTMNT ONDITION VALU UNIT OPRATION PLL LOK VOLTAG RFRN FRQUNY [Ref. Freq.] Operating H. : Receiving Operating H. : RF power : Low Transmitting Operating H. : onnect the RF power meter or a 0 Ω dummy load to the antenna connector. RF power : Low Transmitting P screen Top Panel heck the LVIN Data cell's value in the I/O check window. lick the "I/O check button" on the S-M90/GM00 ADJ's screen (see page -) to open the I/O check window as below. Loosely couple the frequency counter to the antenna conector...0 V [USA].8. V [Others] (Verify).4.9 V (Verify).8000 MHz ±00 Hz PLL LOK VOLTAG NOT: The above screen is an example. ach transceiver has its own specific values. - 4

16 - SOFTWAR ADJUSTMNT (TRANSMITTING) Select the adjustment item with [ ] / [ ] keys, then set the value with [ ] / [ ] keys on the connected P. ADJUSTMNT ADJUSTMNT ONDITION UNIT MASURMNT OPRATION VALU OUTPUT POWR Operating H. : [RF Power (High)] RF power : High Transmitting [RF Power (Low)] Operating H. : RF power : Low Transmitting FM DVIATION Operating H. : [MOD (Wide)] Set the FM deviation meter as; HPF : OFF LPF : 0 khz De-emphasis : OFF Detector : (P±P)/ onnect the audio generator to the [MI/SP] jack through OP-08 and set as; Frequency : khz Level : mv rms Transmitting VOX [VOX] Operating H. : Set to VOX mode. (Push [SQL] + [Hi/Lo].) No audio applied to the [MI/SP] jack. Top panel Top panel P screen onnect the RF power meter to the antenna connector..0 W onnect the FM deviation meter to the antenna connector through the attenuator. Push the [NTR] key on the keyboad of the connected P. 0.7 W ±4. 4. khz Automatic adjustment -

17 - SOFTWAR ADJUSTMNT (RIVING) Select the adjustment item with [ ] / [ ] keys, then set the value with [ ] / [ ] keys on the connected P. ADJUSTMNT RIV SNSITIVITY [PF T] [PF T] [PF T] [PF T4] SQULH LVL [Noise] S-MTR [RSSI] ADJUSTMNT ONDITION Operating H. : onnect the standard signal generator to the antenna connector and set as; Frequency :.800 MHz Level : +0 dµ* Modulation : khz Deviation : ±.0 khz Receiving UNIT Top pannel MASURMNT OPRATION onnect the distortion meter with an 8 Ω load to the [MI/SP] jack through the JIG cable. VALU Minimum distortion level ONVNINT: RIV SNSITIVITY can be adjusted automatically.. Put the cursor on the [PF ALL Sweep] on the S-M90/GM00 ADJ's screen and push the [NTR] key.. The connected P tunes PF T T4 to peak level automaticaly. or. Put the cursor on the one of PF T T4 as desired.. Push the [NTR] key to start tuning.. Repeat and to perform additional PF tuning. Operating H. : onnect the standard signal generator to the antenna connector and set as; Frequency :.800 MHz Level : dµ* [USA] dµ* [Others] Modulation : khz Deviation : ±.0 khz Receiving Operating H. : onnect the standard signal generator to the antenna connector and set as; Frequency :.800 MHz Level : dµ* [USA] 4 dµ* [Others] Modulation : khz Deviation : ±.0 khz Receiving Top panel Top panel Push the [NTR] key on the keyboad of the connected P. Push the [NTR] key on the keyboad of the connected P. *The output level of the standard signal generator (SSG) is indicated as the SSG's open circuit. Automatic adjustment Automatic adjustment -

18 STION PARTS LIST I-GM00/ [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION I S.I MA0PFV-G-ND-R.7/. I S.I TA7S0F (T8R) T 07./4. I 0000 S.I TAFNG (L) 7.4/. I S.I MFP-0./4. I S.I NJM90V-T./4. I S.I T4WFU F(TL) T 9/8. I S.I T4WFU (TL) T./4.4 I S.I U4094FV- /8. I S.I NJM904V-T./4 I S.I TW0FU (TL) 9./8. I S.I TA78F G (R) T 0./4.9 I S.I T4WFU F (TL) 4/7. I S.I NJM904V-T 4/.8 I 0000 S.I NJM870F0-T T 94./. I S.I S-8094NM-G9-T.8/.4 I S.I R4LFV-W 0./. I S.I µpd78f08g-9 0/8. I S.I T4WFU F(TL) 8.8/8.7 I S.I T4WFU F(TL) 44./4.9 I S.I TA7S0F (T8R) 7./4.8 Q S.FT SK880-Y (T8R) 47.8/ Q S.TR S4-T R 78./.7 Q S.TR XP0-(TX) A 78./.8 Q S.TR S4-T R 74./. Q S.TR S4-Y (T8R) 78./7. Q S.TR S4-Y (T8R) 7.8/. Q S.TR S4-Y (T8R)./. Q S.TR XP4 (TX) T 7./7. Q S.TR UNR9J-(TX) T 7./9.9 Q S.TR S0-O (T8R) T 8./8.9 Q S.FT RD0MUS T 9.9/0.4 Q 0000 S.FT RD07MVS T 00./0 Q S.TR UNR9J-(TX) T 0/ Q S.FT SK94 (T8L) 9./9 Q S.FT SK89 (T8R) 98.9/7. Q S.FT SK99-T U7 8./9. Q S.TR S4-O (T8R) T 84./7.9 Q S.TR S4-GR (T8R)./0. Q S.TR UNR9J-(TX) T 9.7/8. Q 0000 S.TR S07-O (T8R) T 8.4/4 Q S.TR XP40 (TX) T 9./. Q S.TR SA88-GR (T8R) T 9./. Q S.TR SA88-GR (T8R) T 9.9/4. Q S.TR SA88-GR (T8R) T 99.7/. Q S.TR XP (TX) 8./9.8 Q S.TR UNR9J-(TX).7/7. Q S.TR S4- F (T8R) T 9./. Q S.TR S T00 Q T.4/0. Q S.TR XP0-(TX) A T 07./9. Q S.TR S4-L (T8R) T 0./9. Q S.FT RSR0N0 T 0./4.4 Q S.FT RSR0N0 T 97.9/4.4 Q S.TR UNR9J-(TX) T 98./8.4 Q S.TR UNR9J-(TX) 90./4. Q S.TR UNR9J-(TX) 90/4. Q S.TR UNR9J-(TX) 4./. Q S.TR XP (TX) 7./.8 Q S.TR S4-L (T8R).9/ Q S.TR S T00 Q 0./9.9 Q S.TR XP0-(TX) A 0./. Q S.TR UNR9J-(TX) 98./ Q S.TR SA88-GR (T8R) T 00./.8 Q S.TR XP (TX) 7./7.8 Q S.TR DT44TU T0.4/.7 Q S.TR XP (TX) /. Q S.TR UNR9J-(TX)./. Q S.TR UMDN TR T.4/0. Q S.TR XP4 (TX)./. D S.DIO MAS-(TX)./4. D S.VP HV0-70.7/9. D S.VP HV0-7/9. D S.VP HV0-8./9. D S.VP HV0-9.4/9. D S.VP HV0-.7/ D S.VP HV0-.7/4.7 D S.VP HV0-.8/7. D S.VP HV0-.8/8.8 D S.VP SV4 (TPH) T.4/0. D S.DIO SV08 (TPL) xcept [USA].4/0 D S.DIO S0-0P-TD 8.7/9. D S.DIO MA77 (TX) T 8./8.4 M.=Mounted side (T: Mounted on the Top side, : Mounted on the ottom side) [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION D S.DIO MA77 (TX) T 8./ D S.DIO R70F-40T0 T 08./.9 D S.DIO SV07 (TPH) T.9/9.8 D S.DIO SS7-TL T 4./4 D S.DIO MAS78-(TX) T 0./. D S.DIO SV07 (TPH)./8. D S.DIO MAS077-(TX)./.7 D S.DIO SV08 (TPL).9/. D S.VP HV0TRF- 09./0.4 D S.VP HV0TRF- 04./. D S.DIO MAS-(TX) 0/.9 D S.VP HV0TRF- 9./. D S.VP HV0TRF- 90./. D S.DIO DANTL T 7./4. D S.DIO DANTL T 74./7. D S.DIO MAS077-(TX) T 7./. D S.DIO DA TL 0/. D S.DIO MAS-(TX) 4./4. FI S.MLH FL- (.0 MHz) [GN], [UR], [UK] 89./ S.FIL FL-77 MFTP (.0 MHZ) [USA] 89./.7 FI R FWL40KA-0 FI R FWL40KGFA-0 X S.XTL R-78 (. MHz) 47./.9 X S.DR D40KAY4-R0 T 79./0. X S.XTL R-74 (4.000 MHz).9/8. X S.XTL R-747 (9.804 MHz) T.9/7. L S.OL LJN R47K-F T.7/9.9 L S.OL LQWHN7NJ0L [GN], [UR], [UK] 7.4/ S.OL LQWHN8NJ0L [USA] 7.4/. L S.OL LJN R47K-F T./.8 L S.OL LQWHN8NJ0L./. L S.OL LQWHN9NJ0L xcept [USA].9/. L S.OL LQWHN8NJ0L 7./. L S.OL LQWHNR0J0L 8./7. L S.OL LJR R0G-F 7./9.9 L S.OL LJR R0G-F 74./. L S.OL LJR R0G-F 8.4/. L S.OL LJR NG-F.8/. L S.OL MLF08A RK-T T 74.9/. L S.OL MLF08A RK-T T 74.8/. L S.OL LJR R0G-F T 84.7/. L S.OL LQWHN8NJ0L T 9.9/. L S.OL TL N T 04./.9 L S.OL TL 8.N T 0.9/. L S.OL TL N T 0./4. L S.OL TL 0N T 0./.9 L S.OL NLVT R7J.7U T./ L S.OL TR 0N./4. L S.OL TL N T.4/9.8 L S.OL TL 0N 0/8.7 L S.OL LJR 47NG-F 09./ L S.OL MLF08A R0K-T.9/. L S.OL LQWHNNJ0L 07.9/8 L S.OL LQWHNNJ0L 0.7/7. L S.OL LJN 47NK-F [GN], [UR], [UK]./ S.OL LJN NK-F [USA]./8.4 L S.OL MLF08A R0K-T 97./4.7 L S.OL LQWHNNJ0L 9./. L S.OL LQWHNNJ0L 89./7.9 L S.OL 0-R47G-A (0.47U) 8./.7 L S.OL LJR R0J-F 84.7/ L S.OL MLF08A R0K-T 4./8. L S.OL MLF08D R8K-T 9./8.9 R S.RS RJGJ 4 X (0 kω) 4/.4 R S.RS RJGJ 0 X ( Ω) 4./7.8 R S.TMR NTG 4LH 47KT 4.8/9. R S.RS RJGYF 04 V (00 kω) 4.8/8 R S.RS RJGJ 4 X (0 kω) 44.4/. R S.RS RJGJ 4 X (0 kω) 4.9/. R S.RS RJGJ 0 X (0 kω) 0/8.7 R S.RS RJGJ 0 X ( Ω)./.4 R S.RS RJGJ 0 X (00 Ω)./8.8 R S.RS RJGJ 0 X ( kω)./7.8 R S.RS RJGJ 47 X (470 Ω) 4.9/8. R S.RS RJGJ 0 X ( kω) 4./.8 S.=Surface mount -

19 [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION R S.RS RJGJ 0 X (0 kω) 49.7/7. R S.RS RJGJ 8 X (8. kω) 4.8/4. R S.RS RJGJ 00 X (0 Ω) T 4./9.9 R S.RS RJGJ 0 X ( kω) 7./8.8 R S.RS RJGJ 0 X ( kω) 8.8/. R S.RS RJGJ 00 X (0 Ω) T./. R S.RS RJGJ 84 X (80 kω) T 9./0.4 R S.RS RJGJ 47 X (47 kω) T 8.8/.9 R S.RS RJGJ 04 X (00 kω) T 7.8/9.9 R S.RS RJGJ 47 X (47 kω) T.9/ R S.RS RJGJ 04 X (00 kω) T.4/.9 R S.RS RJGJ 47 X (4.7 kω) xcept [USA]./8. R S.RS RAYD V 77/9. R S.RS RAYD 9V 7.7/9 R S.RS RJGJ 4R7 X (4.7 Ω) 7./.4 R S.RS RJGJ X (. kω) 80./. R S.RS RAYD 7V 74./4. R S.RS RAYD V 7./. R S.RS RJGJ 4R7 X (4.7 Ω) 7./. R S.RS RJGJ 0 X (00 Ω) 7./9.7 R S.RS RJGJ 8 X (8 kω) 7./7. R S.RS RJGJ 4R7 X (4.7 Ω) 7/.9 R S.RS RJGJ 47 X (47 kω) 7/.8 R S.RS RJGJ 0 X (00 Ω) 7/. R S.RS RJGJ 8 X (8 kω) 9./. R S.RS RJGJ X (0 Ω) 9./. R S.RS RJGJ X (0 Ω) T 7.9/.9 R S.RS RJGJ 9 X (90 Ω) T 7./4.8 R S.RS RJGJ 47 X (4.7 kω) T 70/8.4 R S.RS RJGJ 47 X (4.7 kω) T 9./9.4 R S.RS RJGJ 0 X ( kω) T 80./0. R S.RS RJGJ 0 X (00 Ω) T 8/. R S.RS RJGJ 0 X (0 kω) T 84./7. R S.RS RJGJ X (. kω) T 8./0.7 R S.RS RJGJ 47 X (470 Ω) T 8./0.7 R S.RS RJGJ X (. kω) T 8./.7 R S.RS RJGJ 00 X (0 Ω) T 8./.8 R S.RS RJGJ 0 X (00 Ω) T 80.9/7 R S.RS RJGJ 47 X (4.7 kω) T 9./. R S.RS RJGJ X ( kω) T 9./.7 R S.RS RJGJ 80 X (8 Ω) T 9/. R S.RS RJGYJ 00 V (0 Ω) T 9.9/. R S.RS RJGJ 00 X (0 Ω) T 9.9/4. R S.RS RJGJ 47 X (4.7 kω) T 9/4. R S.RS RJGJ 04 X (00 kω) T 9/. R S.RS RJGYJ V ( kω) T 0./. R S.RS MR0ZHJ 0 Ω () T.8/7. R S.RS RJGYJ 8 V (8 kω).7/8.9 R S.RS RJGJ X ( kω) T.4/7.4 R S.RS RJGJ 0 X (0 kω) T 4.4/7.4 R S.RS RJGJ 4 X (0 kω) T 04./.4 R S.RS RJGJ 9 X (9 kω) T 04.8/4 R S.RS RJGJ X (. kω) T 07.7/. R S.RS RJGJ 7 X (.7 kω) T 09./. R S.RS RJGJ X ( kω) T 09./9.8 R S.RS RJGJ 0 X (0 kω) T 07.8/0. R S.RS RJGJ 4 X (0 kω) T 0.4/0.8 R S.RS RJGJ 0 X (00 Ω) T 04.8/. R S.RS RJGJ 0 X ( kω) T 04./0. R S.RS RJGJ 0 X (00 Ω)./.9 R S.RS RJGJ 04 X (00 kω) [GN], [UR], [UK] 4.8/ S.RS RJGJ X ( kω) [USA] 4.8/7. R S.RS RJGJ 4 X (0 kω) 08.9/. R S.RS RJGJ 0 X (0 kω) 07.4/. R S.RS RJGJ 4 X (0 kω) 0./.4 R S.RS RJGJ 0 X (0 kω) 0.7/.8 R S.RS RJGJ 04 X (00 kω) [USA] 98./ S.RS RJGJ 8 X (8 kω) [GN], [UR], [UK] 98./9. R S.RS RJGJ 4 X (0 kω) [GN], [UR], [UK] 97/ S.RS RJGJ 74 X (70 kω) [USA] 97/. R S.RS RJGJ 47 X (470 Ω) 98./.4 R S.RS RJGJ 0 X (0 kω) 00./.4 R S.RS RJGJ 474 X (470 kω) 0.9/8. R S.RS RJGJ X (. kω) 00.8/. R S.RS RJGJ 84X (80 kω) xcept [USA] 9/. R S.RS RJGJ 0 X (0 kω) 99./9. R S.RS RJGJ 8 X (80 Ω) 9.7/7.4 R S.RS RJGJ 4 X (0 kω) 9./.7 R S.RS RJGJ 0 X (0 kω) 9.7/.4 R S.RS RJGJ 4 X (0 kω) 90./.7 R S.RS RJGJ 0 X (0 kω) 9.4/. R S.RS RJGJ X (0 Ω) 87./.4 R S.RS RJGJ 0 X (00 Ω) 8./ R S.RS RJGJ X (. kω) 8.8/7.8 R S.RS RJGYJ 47 V (4.7 kω) 87./.8 R S.RS RJGJ 0 X ( kω) T 84.8/.7 R S.RS RJGJ 0 X (0 kω) T 8./.8 R S.RS RJGJ 47 X (470 Ω) T 87./ M.=Mounted side (T: Mounted on the Top side, : Mounted on the ottom side) [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION R S.RS RJGJ 0 X ( Ω) T 8.9/0.8 R S.RS RJGJ 47 X (470 Ω) T 8.4/9. R S.RS RJGJ 47 X (4.7 kω) 8.9/. R S.RS RJGJ 0 X ( kω) 8.9/. R S.RS RJGJ X (. kω) [GN], [UR], [UK] T 88./ S.RS RJGJ 0 X ( kω) [USA] T 88./8. R S.RS RJGJ 47 X (470 Ω) T 8/.9 R S.RS RJGJ 4 X (0 kω) T 8./8. R S.RS RJGJ 8 X (80 Ω) T 8./.8 R S.RS RJGJ 84X (80 kω)./9.8 R S.RS RJGJ X (. kω)./9.8 R S.RS RJGJ X (0 Ω) 8./8. R S.RS RJGJ X (. kω) T 80./ R S.RS RJGJ 470 X (47 Ω) T 8./.9 R S.RS RJGJ X ( kω) T 7./4.4 R S.RS RJGJ X ( kω) T 7.9/9. R S.RS RJGJ X ( kω) T 7./ R S.RS RJGJ 4R7 X (4.7 Ω) T 7.9/9. R S.RS RJGJ X ( kω) T 7.9/8. R S.RS RJGJ X ( kω) T 78./7. R S.RS RJGJ 4 X (0 kω) 80.7/4. R S.RS RJGJ 7 X (7 kω) 78./. R S.RS RJGJ X (. kω) 8.9/ R S.RS RJG 7./. R S.RS RJGJ 4R7 X (4.7 Ω) T 7.9/7. R S.RS RJGJ X (. kω) T 8./4. R S.RS RJGJ 47 X (47 kω) T 8./. R S.RS RJGJ 47 X (47 kω) T 8.8/. R S.RS RJGJ X (. kω) [USA], [GN] 8.9/ S.RS RJGJ 7 X (.7 kω) [UR], [UK] 8.9/. R S.RS RJGJ 47 X (470 Ω) 7.8/8. R S.RS RJGJ 47 X (4.7 kω).8/. R S.RS RJGJ X ( kω)./9. R S.RS RJGJ 47 X (47 kω) 0.8/7.8 R S.RS RJGJ 8 X (8. kω) 0.9/40. R S.RS RJG-JPW 0.9/40. R S.RS RJGJ 0 X (0 kω) 8./7.8 R S.RS RJGJ X (. kω) 9.8/8. R S.RS RJGJ 0 X (0 kω)./4. R S.RS RJGJ 04 X (00 kω) 7./7.8 R S.RS RJGJ X ( kω) 0.9/4. R S.RS RJGJ X ( kω).4/4. R S.RS RJGJ 4 X (0 kω) 0.7/44.7 R S.RS RJGJ 0 X ( kω) 9.7/4. R S.RS RJGJ 0 X ( kω)./44. R S.RS RJGJ 84 X (80 kω) T./4. R S.RS RJGJ 0 X (0 kω) T.9/44.9 R S.RS RJGJ 94 X (90 kω) T./4. R S.RS RJGJ 04 X (00 kω) T./8.8 R S.RS RJGJ 04 X (00 kω) T 7.8/.7 R S.RS RJGJ 04 X (00 kω) T 8.9/44. R S.RS RJGJ 04 X (00 kω) T 9.7/.7 R S.RS RJGJ 8 X (8 kω) T./4. R S.RS RJGJ 8 X (8 kω) T / R S.RS RJGJ 8 X (8 kω) T / R S.RS RJGJ 0 X (0 kω) T.4/9. R S.RS RJGJ X ( kω) T 0/4. R S.RS RJGJ 0 X (0 kω) T./.7 R S.RS RJGJ 47 X (4.7 kω) T./9.4 R S.RS RJGJ 04 X (00 kω) T 0./0. R S.RS RJGJ 8 X (8 kω) T 9./0. R S.RS RJGJ X (. kω) T 7./. R S.RS RJGJ 0 X (0 kω) T 9./.4 R S.RS RJGJ 47 X (4.7 kω) T 9./. R S.RS RJGJ 0 X (0 kω) T 9.4/. R S.RS RJGJ 47 X (4.7 kω) T 9./.7 R S.RS RJGJ 0 X (0 kω) T 97.8/. R S.RS RJGJ 47 X (4.7 kω) T 9.8/. R S.RS RJGJ 0 X (0 kω).4/0. R S.RS RJGJ X ( kω)./9. R S.RS RJGJ 04 X (00 kω)./ R S.RS RJGJ 8 X (8 kω) 0./4. R S.RS RJGJ X (. kω) /8.4 R S.RS RJGJ 04 X (00 kω) /.7 R S.RS RJGJ 0 X ( MΩ) 9.8/4.7 R S.RS RJGJ 0 X ( kω) 7./40. R S.RS RJGJ 0 X (0 kω) 7./. R S.RS RJG-JPW [USA] only.9/0.4 R S.RS RJG-JPW T 8/4.8 R S.RS RJG-JPW T 8./.4 R S.RS RJG-JPW T 89./4 R S.RS RJG-JPW 0./4. R S.RS RJG-JPW T 8.9/4. R S.RS RJGJ 0 X (0 kω) T 98.7/.4 R S.RS RJGJ 0 X (0 kω) T 94./ R S.RS RJGJ X ( kω) T 94./0. R S.RS RJGJ X (. MΩ) T 99./9 R S.RS RJGJ X (. MΩ) T 97./9 R S.RS RJGJ 00 X (0 Ω) T 07/. R S.RS RJGJ 00 X (0 Ω) 04.4/8.7 S.=Surface mount -

20 [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION R S.RS RJGJ 7 X (7 kω) T 0./7. R S.RS RJGJ 0 X ( MΩ) T 07./7. R S.RS RJGJ X (. kω) T 09.4/ R S.RS RJGJ X (. kω) T 0.8/9. R S.RS RJGJ X (. kω) T 08./. R S.RS RJGJ 474 X (470 kω) T 00.7/4 R S.RS RJGJ 474 X (470 kω) T 9.7/8. R S.RS RJGJ 04 X (00 kω) T 99./9.9 R S.RS RJGJ X ( kω) 94./48. R S.RS RJGJ 47 X (4.7 kω) 47.8/44. R S.RS RJGJ X (. kω) 0./4.8 R S.RS RJGJ 7 X (70 Ω) 97./40.8 R S.RS RJGJ 04 X (00 kω) 90./40.4 R S.RS RJGJ 84X (80 kω).7/4. R S.RS RJGJ 8 X (8 kω)./8. R S.RS RJGJ 47 X (4.7 kω) 0.7/44. R S.RS RJGJ X (. kω) 0./40. R S.RS RJGYF V ( kω) 8/. R S.RS RJGYF 9 V (.9 kω) 7./. R S.RS RJGYF V (. kω) 0.7/. R S.RS RJGJ 04 X (00 kω) 47./.4 R S.RS RJGJ 04 X (00 kω) 4./9 R S.RS RJGJ X ( kω) 9./7. R S.RS RJGJ X ( kω) 4./7.4 R S.RS RJGJ 4 X (0 kω) 7.4/.8 R S.RS RJGJ 4 X (0 kω) 9./. R S.RS RJGYF 0 V (0 kω) 44.4/. R S.RS RJGJ 47 X (4.7 kω) 8./. R S.RS RJGJ 4 X (0 kω) 8/9. R S.RS RJGJ 84 X (80 kω) 9.4/4.7 R S.RS RJGJ 04 X (00 kω) 9.4/.7 R S.RS RJGJ 04 X (00 kω) 4./ R S.RS RJGJ X ( kω) 40.7/7. R S.RS RJGJ 4 X (0 kω) 8/7. R S.RS RJGJ 0 X (0 kω) 44./9.7 R S.RS RJGJ 7 X (7 kω) /. R S.RS RJGJ 4 X (0 kω)./8 R S.RS RJGJ 8 X (8 kω)./. R S.RS RJGJ 8 X (80 Ω) 4./. R S.RS RJGJ X ( kω) 4./8.9 R S.RS RJGJ X ( kω).4/. R S.RS RJGJ X ( kω) 4./. R S.RS RJGJ 84 X (80 kω) 4./7. R S.RS RJGJ 0 X (0 kω)./7. R S.RS RJGJ 47 X (47 kω)./8.9 R S.RS RJGJ 47 X (47 kω)./0.8 R S.RS RJGJ 0 X ( kω) /.4 R S.RS RJGJ 47 X (47 kω) 9./. R S.RS RJGJ X ( kω) 9./. R S.RS RJGJ 0 X (0 kω) 99.9/. R S.RS RJGJ X (. kω) 00.4/ R S.RS RJGJ X ( kω) 00./. R S.RS RJGJ 0 X (0 kω) T 00./.8 R S.RS RJGJ 47 X (4.7 kω) T 98.7/.4 R S.RS RJGYF 4 V (0 kω) 0./0 R S.RS RJKF 0 V (0 kω) 0./7. R S.RS RJGJ 0 X (0 kω) 9./. R S.RS RJGJ 04 X (00 kω) T.4/4.4 R S.RS RJGJ 04 X (00 kω) T.9/ R S.RS RJGJ 0 X (0 kω) 0.7/. R S.RS RJGJ 0 X (0 kω) 8/9. R S.RS RJGJ 00 X (0 Ω) T./7.4 R S.RS RJGJ 0 X ( MΩ) T./8.9 R S.RS RJGJ X ( kω) T 7.8/ R S.RS RJGJ X ( kω) T./4.4 R S.RS RJGJ X ( kω) T 7./0. R S.RS RJGJ 0 X ( kω) T.8/8.8 R S.RS RJGJ 0 X (0 kω) T 4.8/4. R S.RS RJGJ 47 X (4.7 kω) T 4./44.8 R S.RS RJGJ 0 X (0 kω)./7. R S.RS RJGJ 04 X (00 kω).9/. R S.RS RJGJ 0 X (0 kω).9/.7 R S.RS RJGJ 0 X (0 kω).9/7. R S.RS RJGJ 0 X (0 kω) 7./.8 R S.RS RJGJ 0 X (0 kω) 4.7/. R S.RS RJGJ 0 X (0 kω) 4./. R S.RS RJGJ 0 X (0 kω).7/9. R S.RS RJGJ 0 X (0 kω).7/9.8 R S.RS RJGJ X (0 Ω) [USA], [GN] T./ S.RS RJGJ 8 X (80 Ω) [Others] T./4. R S.RS RJGJ X (0 Ω) T./.8 R S.RS RJGJ 0 X ( kω) T.8/8. R S.RS RJGJ 8 X (80 Ω) T 4.8/8. R S.RS RJGJ 0 X ( kω) T./.8 R S.RS RJGJ 8 X (80 Ω) T./.8 R S.RS RJGJ 0 X ( kω) T./.7 R S.RS RJGJ 8 X (80 Ω) T./.7 R S.RS RJGJ X (0 Ω) [USA], [GN] T 8.9/ S.RS RJGJ X (80 Ω) [Others] T 8.9/4. R S.RS RJGJ X (0 Ω) T 70./. R S.RS RJGJ 84 X (80 kω).7/7. M.=Mounted side (T: Mounted on the Top side, : Mounted on the ottom side) [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION R S.RS RJGJ 74 X (70 kω)./. R S.RS RJGJ 94 X (90 kω) /9. R S.RS RJGYJ 8 V (.8 MΩ)./9.7 R S.RS RJGJ X ( kω) 8.4/.4 R S.RS RJGJ 0 X ( kω) 8./. R S.RS RJGJ 0 X ( kω).4/. R S.RS RJGJ 8 X (8 kω) 4./4. R S.RS RJGJ 47 X (47 kω)./. R S.RS RJG-JPW 47.7/. R S.RS RJG-JPW 0.7/0. R S.RS RJG-JPW T.4/8.7 R S.RS RJGJ 0 X ( kω) T 9./0. R S.RS RJGJ 474 X (470 kω) 8./. R S.RS RJGJ 04 X (00 kω) 88.9/47.7 R S.RS RJGJ 04 X (00 kω) 4./40.8 R S.RS RJGJ 04 X (00 kω) 48./40.8 R S.RS RJGJ X ( kω) 40./4. R S.RS RJGJ 4 X (0 kω) 8./4. R S.RS RJGJ X (. kω) 8.8/40. R S.RS RJGJ 94 X (90 kω).9/40. R S.RS RJGJ X ( kω) 4.8/44. R S.RS RJGYJ 8 V (.8 MΩ)./4. R S.RS RJGJ 04 X (00 kω) /. R S.RS RJGJ 8 X (8 kω) 49.9/7. R S.RS RJKF 0 V (0 kω) 44.4/ R S.RS RJGJ 8 X (8. kω) 49.9/8. R S.RS RJGJ 9 X (.9 kω) 49.8/ R S.RS RJGJ 47 X (4.7 kω) 0./4.8 R S.RS RJGJ 8 X (8. kω).7/40. R S.RS RJGJ 04 X (00 kω)./7. R S.RS RJGJ 47 X (4.7 kω)./7.9 R S.RS RJG-JPW 4.9/.7 R S.RS RJG-JPW 8.9/0. R S.RS RJGJ 0 X ( kω) 9.7/4.9 R S.RS RJG-JPW 4/ S.R J0A04K / S.R J0A04K./ S.R J00K./ S.R J0H470J.8/ S.R J0A04K 4./ S.R 0 J A 47K-T 4./ S.R J0A04K 4./ S.R J00K 4./ S.R 08 H H 00D-T 48./ S.R J0H0J./ S.R J00K./ S.TAN STAY47R./ S.TAN STYR 8/ S.R J00K 4./ S.R J00K 0/ S.R J00K 44.8/ S.R 08 H H 80J-T 9.8/ S.R 08 H H 090D-T 7./ S.R 08 H H 0J-T.9/ S.R J00K T 7.8/ S.R J047K T.4/ S.R J00J0K T.9/ S.R 08 H H R-T T 7./ S.R J00J0K xcept [USA]./ S.R 08 H H 00-T xcept [USA].7/ S.R 08 H H R-T xcept [USA] 4./ S.R 08 H H R-T 74.4/ S.R 08 H H 470J-T 74.4/ S.R 08 H H 0J-T 74.4/ S.R J047K 78./ S.R J00K 78./ S.R 08 H H R7-T 78.7/ S.TAN STAY0R 8./ S.TAN STAY0R 74./ S.R 08 H H R7-T 8.8/ S.R 08 H H 00-T 70/ S.R 08 H H 00-T 70/ S.R 08 H H 0J-T 7.7/ S.R 08 H H 80J-T 7.7/ S.R J047K 7.9/ S.R J00K 7.9/ S.R 08 H H 0R-T 74.4/ S.R J00K 78./ S.R 08 H H 070D-T 7.7/ S.R J00K 7/ S.R J0A04K 74/ S.R 08 H H 80J-T 78.7/ S.R 08 H H R-T 70.8/ S.R J00K 8./ S.R 08 H H 080D-T./ S.R 08 H H 0J-T 4.4/ S.R 08 H H 0J-T./ S.R 08 H H 0J-T T 74.9/ S.R 08 H H 0J-T T 7./ S.R J0H470J T 74.8/ S.R J0A04K T 9./7. S.=Surface mount -

21 [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION S.R 08 H H 090D-T T 78.9/ S.R J00K T 8/ S.R J00K T 8./ S.R J0H470J T 84./ S.R J00K T 84./ S.R J00K T 80.9/ S.R J0H00 T 8./ S.R 08 H H 0J-T T 90/ S.R J0A04K T 9./ S.R J00K T 9./ S.R J00K T 9.8/ S.R 08 H H 0J-T T 9.9/ S.R 08 H H 0J-T T 94.9/ S.R J00K T 9./ S.R J0A04K T 94./ S.R J0H470J T 0./ S.R J00K T 04./ S.R 08 H H 0J-T T 0./ S.R 08 H H 90J-T T 04./ S.R 08 H H 40J-T T 07./ S.R 08 J H 0K-T T 0.9/ S.R 08 H H 0J-T T 09./ S.R 08 H H 80J-T T 0.9/ S.R 08 J H 0K-T T 0.8/ S.R J0H470J T./ S.R J00K T.4/ S.R 08 J H 0K-T T.7/ S.R 08 H H 0J-T T.8/ S.R 08 H H 0J-T T 4./ S.R 08 H H 40J-T T.8/ S.R 08 H H 070D-T.4/ S.R 08 H H 090D-T T 7./ S.R J00K T 4.9/ S.R 08 H H 0R-T T / S.R J0A04K T 0.8/ S.R J00K T 0./ S.R J0A04K T 0.4/ S.R J00K T 09./ S.R J00K T 0./ S.R 08 H H 090D-T 09/ S.R 08 H H 00D-T.9/ S.R 08 H H 00-T./ S.R J00K 09.7/ S.R J00K.8/ S.R 08 H H 00-T 09./ S.R 08 H H 70J-T 07.8/ S.R J00K 07/ S.R 08 H H R-T 07./ S.R 08 H H 00-T 0.7/ S.R 08 H H 0J-T 0.4/ S.R J00K 04./ S.R 08 H H 040-T 0.4/ S.R 08 H H 070D-T 0./ S.R J00K 97./ S.R J0H470J 97./ S.R J00K 98./ S.R 08 H H 080D-T [GN], [UR], [UK] 0./ S.R 08 H H 00-T [USA] 0./ S.R 08 J A 474K-T 00.4/ S.R J00K 94.7/ S.R J0H470J 94.7/ S.R J00K 9.9/ S.R 08 H H 80J-T 9./ S.R J00K 9./ S.R 08 H H R-T 9.4/ S.R 08 H H 00-T 9./ S.R 08 H H 0J-T 89./ S.R J00K 89./ S.R 08 H H 00-T 89./ S.R 08 H H 00-T 89.7/ S.R J00K 87./ S.R J0H470J 87./ S.R 08 H H 0J-T 8./ S.R J0K 8./ S.R J00K 8.8/ S.R J00K T 8./ S.R 08 H H 70J-T T 8./ S.R 08 H H 080D-T T 84.7/ S.TAN STAY47R T 87./ S.R J00K 88./ S.R 08 H H 090D-T [USA] 9.8/ S.R 08 H H 00-T [GN], [UR], [UK] 9.8/ S.R J00K T 8.7/ S.R J00K T 87./ S.R 08 H H 0J-T T 80./ S.R 08 H H 00D-T 0./ S.R J00K./ S.R 08 H H 80J-T 7/ S.R 08 H H 00-T 7/ S.R 08 H H 0J-T 8./ S.R 08 H H 070D-T 70.9/8.9 M.=Mounted side (T: Mounted on the Top side, : Mounted on the ottom side) [MAIN UNIT] RF ORDR H/V NO. NO. DSRIPTION M. LOATION S.R J00K 8.8/ S.R 08 H H 0J-T T 7.7/ S.R J0A04K T 7./ S.R J0A04K T 8/ S.R J0A04K T 74.9/ S.R J00K T 77./ S.R J0HK 8./ S.R J0HK 8./ S.TAN STAY47R 84./ S.R J00K 8./ S.R J0A04K 8./ S.R J00K 7./ S.R J00K 74./ S.R J00K 7/ S.R J00K T 80./ S.R J047K T 8.9/ S.R J00K 7.9/ S.R J00K.8/ S.R J00K 7./ S.R J00K 8.8/ S.R J0K.8/ S.R J0AK.8/ S.R J0A47K./ S.R J00K 4./ S.R J0HJ 8.4/ S.R J047K.4/ S.R J0A47K 4.9/ S.R J00K T.9/ S.R J0A8K [UR], [UK]./ S.R J00J0K [USA], [GN]./ S.R 08 J A 474K-T T.7/ S.R J00K T 7.9/ S.R J00K.4/ S.R J00K T.4/ S.R J08K T / S.R J0AK T / S.R J0H8K T.4/ S.R J0K T 7./ S.R J0HK T./ S.R J00K T 9./ S.R J00K T 94.9/ S.R J00K T 9.4/ S.TAN STAXR 0.9/ S.TAN STAY47R T.8/ S.R J00K./ S.R J00J0K 0./ S.R J00J0K 7.7/ S.R J00J0K./ S.R J0A04K./ S.R J0A04K 9./ S.R J00J0K 0./ S.R J00J0K.7/ S.R J00K 0./ S.R J00K / S.R J0A04K 7.9/ S.R J0H70J 7./ S.R J0H70J 7./ S.R J0HJ 0.4/ S.R J0A04K 7.9/ S.R J00J0K 8.7/ S.R J00J0K./ S.R J0H0J 7./ S.R 08 J A 474K-T T 99./ S.TAN STVY474R T 9.7/ S.R J0A04K T 00./ S.TAN STX0R 0./ S.R J0A04K T 0.8/ S.R J00K T 04.8/ S.TAN STAY0R T 09./ S.R J0H470J T 04.9/ S.R J0A47K 04.4/ S.TAN STAD7R 08./ S.R J00J0K T 08./ S.R J0A04K T 07./ S.R J0H470J T 04/ S.R J00K 94./ S.R J0A04K 48./ S.R J00K 49./ S.R J00J0K 44/ S.R J00J0K 4./ S.R J0A04K 89./ S.TAN STAY0R 9.8/ S.TAN STAY0R 9.7/ S.R J00K./ S.R J00K 4.8/ S.R J00K 9./ S.R J00J0K 7.4/ S.R J0HJ 40.7/ S.R J047K 9./ S.R J0HK./ S.R J0K / S.R J0A04K / S.R J0A04K 47./0 S.=Surface mount - 4

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