Icf 1000
Icf 1000
S-15106XZ-C1
August 2014
VERSION FREQUENCY
MODEL VERSION KEY TYPE
NUMBER RANGE (MHz)
USA-01 [#01]
EUR-01 [#02]
IC-F1000
UK-01 [#03]
–
EXP-01 [#04]
USA-01 [#05]
EUR-01 [#06]
IC-F1000S 4-key
UK-01 [#07] 136–174
EXP-01 [#08]
USA-01 [#09]
EUR-01 [#10]
IC-F1000T
UK-01 [#11] 10-key
EXP-01 [#12]
IC-F1000T-T THA-01 [#13]
CAUTION
Icom, Icom Inc. and the Icom logo are registered trademarks of Icom Incorporated (Japan) in Japan, the United States, the
United Kingdom, Germany, France, Spain, Russia and/or other countries.
SECTION 1 SPECIFICATIONS
SECTION 2 INSIDE VIEWS
SECTION 3 DISASSEMBLY INSTRUCTION
SECTION 4 CIRCUIT DESCRIPITON
4-1 RECEIVER CIRCUITS ...................................................................................... 4-1
4-2 TRANSMITTER CIRCUITS ............................................................................... 4-2
4-3 FREQUENCY SYNTHESIZER CIRCUITS ....................................................... 4-4
4-4 VOLTAGE BLOCK DIAGRAM ........................................................................... 4-4
4-5 PORT ALLOCATIONS ...................................................................................... 4-5
SECTION 5 ADJUSTMENT PROCEDURES
5-1 PREPARATION ................................................................................................. 5-1
5-2 FREQUENCY ADJUSTMENT .......................................................................... 5-3
5-3 TRANSMIT ADJUSTMENT ............................................................................... 5-4
5-4 RECEIVE ADJUSTMENT ................................................................................. 5-5
SECTION 6 PARTS LIST
SECTION 7 MECHANICAL PARTS
SECTION 8 BOARD LAYOUTS
SECTION 9 BLOCK DIAGRAM
SECTION 10 VOLTAGE DIAGRAM
M GENERAL
• Frequency range: 136–174 MHz
• Number of conventional channels: 16 channels
• Type of emission: [EXP], [THA] Wide: 16K0F3E (25.0 kHz)
(Occupied band-width) Narrow: 11K0F3E (12.5 kHz)
[USA] Narrow: 11K0F3E (12.5 kHz)
[EUR], [UK] Wide: 16K0F3E (25.0 kHz)
Middle: 14K0F3E (20.0 kHz)
Narrow: 8K50F3E (12.5 kHz)
• Antenna impedance: 50 (Nominal)
• Operating temperature range: –30˚C to +60˚C: –22˚F to +140˚F (Except [EUR], [UK].)
–25˚C to +55˚C (For [EUR], [UK].)
• Power supply voltage: Specified Icom's battery packs only (7.5 V DC: negative ground)
• Current drain (Approximately): Receiving 77 mA (stand-by)
330 mA (maximum audio, internal speaker)
Transmitting 1.3 A (at 5 W)
• Dimensions: With BP-278 52.2(W)×111.5(H)×22.3(D) mm: 2.1(W) × 4.4(H) × 0.9(D) inches
(Projections not included) With BP-279 52.2(W)×111.5(H)×24.5(D) mm: 2.1(W) × 4.4(H) × 1(D) inches
• Weight (Approximately): With BP-278 230 g: 8.1 oz.
With BP-279 240 g: 8.5 oz.
• Intermediate frequencies: 1st 46.35 MHz
2nd 450 kHz
• Output impedance (Speaker): 8
• Input impedance (Microphone): 2.2 k
M TRANSMITTER
• Output power: 5W
• Modulation: Variable reactance frequency modulation
• Maximum frequency deviation: Wide ±5.0 kHz
Middle ±4.0 kHz
Narrow ±2.5 kHz
• Frequency stability: ±2.5 ppm
• Spurious emissions: 70 dB minimum (Except [EUR], [UK].)
0.25 µW (1 GHz), 1.0 µW (1 GHz) (For [EUR], [UK].)
• Adjacent channel power: Wide 70 dB minimum, 74 dB typical
Middle 70 dB minimum, 72 dB typical
Narrow 60 dB minimum, 70 dB typical
• Audio harmonic distortion: Wide 1.0% typical at AF 1 kHz 40% deviation
Middle 1.0% typical at AF 1 kHz 40% deviation
Narrow 1.5% typical at AF 1 kHz 40% deviation
• FM hum and Noise: Wide 40 dB minimum, 46 dB typical
(Except [EUR], [UK]) Narrow 34 dB minimum, 40 dB typical
(Without CCITT FILTER)
• Residual modulation ([EUR], [UK]): Wide 45 dB minimum, 50 dB typical
(With CCITT FILTER) Middle 43 dB minimum, 47 dB typical
Narrow 40 dB minimum, 44 dB typical
• Limitting charact of modulator: 60–100% of maximum deviation
1-1
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M RECEIVER
• Sensitivity: 0.25 µV typical at 12 dB SINAD (Except [EUR], [UK].)
–4.0 dBµV emf typical at 20 dB SINAD (For [UK], [EUR].)
• Intermodulation: 70 dB minimum, 74 dB typical (Except [EUR], [UK].)
65 dB minimum, 68 dB typical (For [UK], [EUR].)
• Spurious response: 70 dB minimum
• Audio output power: 0.8 W typical at 5% distortion into the 12 internal speaker.
0.4 W typical at 5% distortion into an 8 external speaker.
• Hum and noise (Except [EUR], [UK]): Wide 40 dB minimum, 51 dB typical
(Without CCITT Filter) Narrow 34 dB minimum, 45 dB typical
• Hum and noise (For [EUR], [UK]): Wide 45 dB minimum, 52 dB typical
(With CCITT Filter) Middle 43 dB minimum, 49 dB typical
Narrow 40 dB minimum, 46 dB typical
• Adjacent channel selectivity: Wide 70 dB minimum, 76 dB typical
Middle 70 dB minimum, 72 dB typical
Narrow 40 dB minimum, 53 dB typical
• Squelch sensitivity: 0.25 µV typical (Except [EUR], [UK].)
–4 dBµV emf typical (For [UK], [EUR].)
Specifications are measured in accordance with TIA-603 or EN 300 086.
All stated specifications are subject to change without notice or obligation.
1-2
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SECTION 2. INSIDE VIEWS
• MAIN UNIT
AF POWER AMP
(TOP VIEW) (IC1)
5 V REGULATOR
(IC19)
AF POWER AMP
CONTROLLER (Q9)
APC AMP
(IC17) VOX AMP
(IC3)
BASEBAND IC
(IC4)
BASEBAND IC CLOCK
(X1)
2-1
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• MAIN UNIT
(BOTTOM VIEW)
5 V REGULATOR
(IC20)
RF AMP
(Q39)
POWER AMP
(Q38)
1ST IF FILTER
(FI1)
DRIVE AMP
(Q36)
D/A CONVERTER
(IC10)
IF IC LPF/SUMMING AMP
(IC16) (IC11)
REFERENCE AF BUFF/LPF
FREQUENCY (IC7)
OSCILLATOR
(X3)
TONE LPF
(IC5)
VCO
5 V REGULATOR
(IC6)
LED DRIVER
(Q41)
CPU PLL IC
(IC9) (IC15)
3 V REGULATOR
(IC24)
LOGIC CONVERTER
(IC23)
ACCELEROMETER IC
(IC22)
2-2
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SECTION 3. DISASSEMBLY INSTRUCTION
1. REMOVING THE FRONT PANEL 5) CAREFULLY lift the chassis out of the front panel
1) Remove the antenna connector nut and 2 knobs. and turn it over in order to unplug the speaker cable.
2) Remove 2 screws and jack panel.
KNOB
JACK PANEL
SCREW
SCREW×2
CHASSIS
FRONT PANEL
SIDE PANEL
Suction lifter
• Part name : EA950R-2
• Manufacture : ESCO CO.LTD
Suction lifter
T2 T1
PLL IC15
IC
1ST IF CIRCUIT
The RX signal from the RF circuits is applied to the 1st IF 45.9MHz
IF IC
BPF
mixer (Q37) and mixed with the 1st LO signal from the RX IC16 From the 1st IF
circuits
VCO, resulting in the 46.35 MHz 1st IF signal. The 1st IF
signal is filtered by the crystal filter (FI1), amplified by the
IC10
1st IF AMP (Q33), and then applied to the 2nd IF circuit.
SQIN
D16,D17 NOIS
RX VCO Q30 Q31
TX/RX D/A
BUFF BUFF To the TX circuits
SW converter
To the RX AF circuits
HPF** LPF*
RX AF CIRCUITS
Q33
FI1
46.35MHz Q37 The demodulated AF signal from the IF demodulator IC
To the 2nd IF&demodulator circuits From the RF circuits
IF
AMP
XTAL
BPF (IC16, pin 14) is applied to the baseband IC (IC4).
1st IF mixer
*:For [EUR] and [UK] versions. The processed AF signal is passed through the LPF (IC11),
**:For except [EUR] and [UK] versions. which attenuates frequencies 3 kHz and above, and adjust-
ed in level by the D/A converter (IC10). The level-adjusted
AF signal is then applied to the AF power AMP (IC1).
• RX AF CIRCUITS
IC4
IC1
External speaker
R133
VOL1
AFO AF
LPF AMP J2
IC11 IC10
J3
AF 1
AMP 2
AFON SP1
Internal speaker
4-1
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4-2 TRANSMIT CIRCUITS 4-3 FREQUENCY SYNTHESIZER CIRCUITS
TX AF CIRCUIT The RX VCO is composed of Q25, D9, D10 and D32. The
The audio signal from the internal or external microphone output signal is amplified by two buffers (Q31 and Q31) and
(MIC signal) is passed through the MIC gain SW (IC2) and applied to the 1st IF mixer (Q37), through the LO SW (D17)
applied to the baseband IC (IC4). and LO filter (LPF*: L41, C296 and C441, or HPF**: L21,
L42 and C293).
The processed AF signal is passed through the AF
SW (IC2) and LPF (IC11), and then applied to the D/A The TX VCO is composed of Q27, D11 to D13 and D33.
converter (IC10), which adjusts its level (=deviation). The The output signal is amplified by two buffers (Q30 and Q31)
level-adjusted MIC signal is applied to the TX VCO as the and applied to the pre-AMP (Q34), through the LO SW (D16).
modulation signal.
A portion of oscillated VCO output signal from each VCO is
• TX AF CIRCUIT fed back to the PLL IC (IC15), through the buffer (Q32) and
IC4
IC2 LPF (L11, C210 and C231).
SPLT LIMIT HPF EMPH COMP AMP MIC
AMP GAIN
MC1 The applied VCO output signal is divided and phase-
compared with a 15.3 MHz reference frequency signal from
IC2
IC10 IC11
AF
the TCXO (X3), which is also divided. The resulting signal
LPF SW is output from the PLL IC (IC15), and DC-converted by the
R133
J1
loop filter, and then applied to the VCO as the lock voltage.
VOL1
MOD To the modulation circuit When the oscillation frequency drifts, its phase changes
from that of the reference frequency, causing a lock voltage
change to compensate for the drift in the VCO oscillating
MODULATION CIRCUIT frequency.
The modulation signal from the TX AF circuits is applied
to D13 of the TX VCO (Q27, D11 to D13 and D33). The • FREQUENCY SYNTHESIZER CIRCUITS
frequency-modulated signal from is amplified by two buffers
(Q30 and Q31), and then applied to the TX AMP circuit,
through the TX/RX SW (D16). Q23
RX VCO
Q29
RIPPLE VCO R5V
FIL SW
D10
15.3MHz Q25
• MODULATION CIRCUIT CR-794 LV
ADJ
D9,D10
D17
IC7 X3 D16
BAL Q30 Q31
BUFF TCXO LOOP LV BUFF BUFF TX/RX To the TX AMPs
Q30 Q31 D16 REF FIL SW
TX VCO D11
TX/RX To the TX AMP circuits LVA LV D11,D12
Q27, BUFF BUFF SW ADJ Q27
D11,D12,D33 Q26 TX VCO Q32
D13 X3 PLL BUFF LPF*
IC HPF**
×2
IC15
FREQUENCY
MODULATION 45.9MHz
BPF IF IC
IC16 Q37
From the TX AF circuits
1st IF mixer
constant. CPU5
REG
CPU5
To the logical circuits
BT1
Q38 D19,D27
Q34 Q36
From the
TX VCO PRE PWR ANT
DRIVE LPF
AMP AM P AM P SW
IC17
To the RX circuits
4-3
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4-5 PORT ALLOCATIONS
• CPU (IC9)
PIN LINE PIN LINE
DESCRIPTION I/O DESCRIPTION I/O
NO. NAME NO. NAME
Beep audio (Square waves) to the AF [P1], [4], [5] and [6] input.
1 BEEP O 73 KR1 I
AMP (IC1). L=Pushed.
2 SENC 2/5 tone and DTMF encoding output. O [P2], [7], [8] and [9] input.
74 KR2 I
RX AF mute switch control. L=Pushed.
17 RMUT O
L=During the squelch is closed. [P3], [*], [0] and [#] input.
81 KR3 I
Transmission mute. L=Pushed.
18 TMUT O
L=TX inhibit. [P0], [P1], [P2] and [P3] input.
MIC mute switch control. 82 KS0 I
19 MMUT O L=Pushed.
L=MIC mute. [1], [4], [7] and [*] input.
20, MGC1*, 83 KS1 I
MIC gain control. O L=Pushed.
21 MGC0* [2], [5], [8] and [0] input.
22 CL0 O 84 KS2 I
L=Pushed.
Cloning data.
23 CLI I [3], [6], [9] and [#] input.
85 KS3 I
CPU clock frequency shift control. L=Pushed.
24 CSFT H=While the clock frequency is O 86 SDEC Decoded 2/5 tone and DTMF signals. I
shifted. Tone signal (CTCSS/DTCS) decoding
Automatic TX control in the VOX 87 CDEC I
input.
25 AUTX mode. O External PTT input.
H=Microphone input is detected. 88 EPTT I
H= An external PTT is pushed.
RX mode (narrow/wide) switching. [PTT] input.
26 NWC L=While receiving in the narrow O 89 IPTT I
L= Pushed.
mode.
Transceiver temperature sensing
AF power AMP control. 90 TEMP I
27 AFON O voltage.
H=AF power AMP (IC55) is activated.
91 BATV Battery voltage. I
28 SCK Common serial clock. O [S1], [S2] and [EMER] input.
29 S0 Common serial data. O 92 KRA I
L= Pushed.
34 ESCL EEPROM clock. O 93 SDEC2 Decoded 2/5 tone and DTMF signals. I
35 ESDA EEPROM data. I/O 95 AFVI [VOLUME CONTROL] input. I
D/A converter strobe. Input port for RSSI signal from the IF
36 DAST O 96 RSSI I
H=Load enable. IC (IC16, pin16).
PLL IC strobe. 97 LVIN Lock voltage input. I
37 PLST O
H=Load enable. Exter nal microphone connection
98 MDET I
Receive circuit power supply line detect.
"R5" control. 99 VOXV Microphone input sensing voltage. I
38 R5C O
H=W h i l e t h e r e c e i v e c i r c u i t i s *: MIC sensitivity setting.
activated.
Line name MGC0 MGC1 MIC sensitivity
Transmit circuit power supply line
39 T5C “T5V” control. O H H 4 (Maximum)
L=While transmitting. L H 3
Line state
TX/RX common circuit power supply H L 2
40 S5C line "S5V" control. O L L 1 (Minimum)
L=While in the power save mode.
TX LED indicator control.
46 TLED O
L=While transmitting.
RX LED Indicator control.
47 RLED L=While receiving a signal or the O
squelch is open.
LCD backlight control.
48 LIGT O
H=Lights.
56, CENC2,
CTCSS/DTCS encoding output. O
57 CENC1
AF LPF switching.
58 DUSE O
H=While sending the DTCS signal.
59– CBI0–
[ROTARY SELECTOR] input. O
62 CBI3
Noise level detect.
70 NOIS I
H=While receiving a signal.
PLL unlock detect.
71 UNLK I
L=Unlocked.
[P0], [1], [2] and [3] input.
72 KR0 I
L=Pushed.
4-4
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SECTION 5. ADJUSTMENT PROCEDURE
5-1 PREPARATION
M REQUIRED EQUIPMENTS
EQUIPMENT GRADE AND RANGE EQUIPMENT GRADE AND RANGE
CS-F2000 CLONING SOFTWARE Modified OPC-478UC
Cloning software JIG cable
(Revision 1.0 or later) (See the illust below)
Measuring range : 0.1–10 W Frequency range : 0.1–300 MHz
RF power meter
Frequency range : 100–300 MHz Frequency counter Frequency accuracy : ±1 ppm or better
(50 terminated)
SWR : Less than 1.2 : 1 Input level : Less than 1 mW
Modulation Frequency range : 30–300 MHz Frequency range : 0.1–300 MHz
Analyzer Measuring range : 0 to ±10 kHz Standard signal
Output level : –20 to 90 dBµ
generator (SSG)
AC millivoltmeter Measuring range : 10 mV to 10 V (–127 to –17 dBm)
Frequency range : DC–20 MHz Power attenuation : 30 dB
Oscilloscope Attenuator
Measuring range : 0.01–20 V Capacity : More than 10 W
Audio generator Frequency range : 300–3000 Hz Input impedance :8
External speaker
(AG) Output level : 1–500 mV Capacity : More than 1 W
M JIG CABLE
AUDIO GENERATOR AC MILLIVOLTMETER
[JIG cable1] (300–3000 Hz/1–500 mV) (10 mV to 10 V)
(GND) SETTING;
Frequency : 1 kHz
PTT + − Level :150 mV + −
Waveform : Sine wave
33 k
3-conductor 2.5 (d) mm plug
+
(MIC) 4.7 µF
[JIG cable2]
+ EXTERNAL SPEAKER
(SP) − (1 W/8 Ω)
(GND)
M CONNECTION
FM Attenuator
deviation meter 30 dB
Frequency Speaker (8 Ω)
counter To [SP] (JIG cable 2)
IC-F1000/IC-F1000T/
IC-F1000S/IC-F1000T-T
5-1
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M ADJUSTMENT CHANNELS
Select “Middle”
5-2
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M ADJUSTMENT UTILITY
ADJUST CHANNEL
TX OUTPUT POWER
MODULATION BALANCE
FM DEVIATION
CTCSS/DTCSS DEVIATION
SQUELCH
REFERENCE FREQUENCY
RX SENSITIVITY
LOCK VOLTAGE
S-METER
ADJUST CHANNEL
TX OUTPUT POWER
MODULATION BALANCE
FM DEVIATION
CTCSS/DTCSS DEVIATION
RX SENSITIVITY
LOCK VOLTAGE
5-3
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5-2 FREQUENCY ADJUSTMENTS
1) Select an adjustment item using []/[] on the PC's keyboard.
2) Set or modify the adjustment value as specified using []/[] on the PC's keyboard, and then push [ENTER].
TRANSCEIVER’S ADJUSTMENT
ADJUSTMENT OPERATION VALUE
CONDITION ITEM
PLL LOCK 1 1) Connect an RF power meter to the LV (RX LVA FL) 46
VOLTAGE antenna connector. LV (TX LVA FL) (0.9 V)
-Preparation- – 2) Set the preset adjustment value on the
adjustment utility window. LV (RX LVA FH) 255
LV (TX LVA FH) (5.0 V)
-ADJUSTMENT- 2 • Select the item [RX LVA Start], then push [ENTER] to enter the –
[RX LVA Start]
(RX Band low) lock voltage adjustment mode.
3 • Channel: 1-1 • Select the item [RX LVA FL], then push 0.9 V
[RX LVA FL]
• Receiving [ENTER].
4 • Select the item [RX LVA Start], then push [ENTER]. [RX LVA Start] –
(RX Band high) 5 • Channel: 1-2 • Set the item adjustment value in the [RX 255
• Receiving LVA FH] on the adjustment utility window, [RX LVA FH] (5.0 V)
then push [ENTER].
6 • Select the item [RX LVA Start], then push [ENTER] to quit the –
[RX LVA Start]
lock voltage adjustment mode.
-ADJUSTMENT- 7 • Select the item [TX LVA Start], then push [ENTER] to enter the –
[TX LVA Start]
(TX Band low) lock voltage adjustment mode.
8 • Channel: 1-1 • Select the item [TX LVA FL], then push 0.9 V
[TX LVA FL]
• Receiving [ENTER].
9 • Select the item [TX LVA Start], then push [ENTER] to quit the –
[TX LVA Start]
lock voltage adjustment mode.
(TX Band high) 10 • Channel: 1-2 • Set the item adjustment value in the [TX 255
• Receiving LVA FH] on the adjustment utility window, [TX LVA FH] (5.0 V)
then push [ENTER].
11 • Select the item [TX LVA Start], then push [ENTER] to quit the –
[TX LVA Start]
lock voltage adjustment mode.
PLL LOCK 1 • Channel: 1-3 • Click the [Reload (F5)] button to check on [LVIN] 0.9 V ±0.2 V
VOLTAGE • Receiving the "I/O Check window" as below. (On the "I/O (Verify)
-Verify- Check window")
(RX Band low)
(RX Band high) 2 • Channel: 1-4 Less than
• Receiving 3.5 V
(Verify)
(TX Band low) 3 • Channel: 1-3 0.9 V ±0.2 V
• Transmitting (Verify)
(TX Band high) 4 • Channel: 1-4 Less than
• Transmitting 3.5 V
(Verify)
REFERENCE 1 • Channel: 1-5 • Loosely couple a frequency counter to the 174.000000
FREQUENCY • Transmitting antenna connector. [REF] MHz
(±150 Hz)
5-5
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5-3 TRANSMIT ADJUSTMENTS (continued)
1) Select an adjustment item using []/[] on the PC’s keyboard.
2) Set or modify the adjustment value as specified using []/[] on the PC’s keyboard, and then push [ENTER].
TRANSCEIVER’S ADJUSTMENT
ADJUSTMENT OPERATION VALUE
CONDITION ITEM
MODULATION 1 • Connect a modulation analyzer to the antenna connector – –
BALANCE through an attenuator, and set it as “FM DEVIATION.”
2 • Set BAL “BAL FL,” “BAL FC” and “BAL FH” to “90.” [BAL FL] 90
[BAL FC]
[BAL FH]
3 • Set “MOD -Narrow-” to “255.” [MOD -Narrow-] 255
4 • Select [BAL Start] to enter the “MODULATION BALANCE” ad-
[BAL Start] –
justment mode.
(Band low) 5 • Channel: 1-15 1) Adjust the deviation. ±0.99 ±0.03
• No MIC signal is ap- 2) Select [BAL Start], then push [ENTER] kHz
[BAL FL]
plied. to store the adjustment value.
• Transmitting
(Band center) 6 • Channel: 1-16 ±0.97 ±0.03
[BALFC]
• Transmitting kHz
(Band high) 7 • Channel: 1-17 ±1.00 ±0.03
[BAL FH]
• Transmitting kHz
8 • Select [BAL Start] to quit the “MODULATION BALANCE” ad-
[BAL Start] –
justment mode.
CTCSS/DTCS 1 • Connect a modulation analyzer to the antenna connector
– –
DEVIATION through an attenuator, and set it as “FM DEVIATION.”
-Narrow- 2 • Select [Tone Start] to enter the “CTCSS/DTCS DEVIATION”
[Tone Start] –
adjustment mode.
(Band low) 3 • Channel: 1-18 1) Adjust the deviation. ±0.35 ±0.05
• No MIC signal is ap- 2) Select [Tone Start], then push [EN- kHz
[Tone FL]
plied. TER] to store the adjustment value.
• Transmitting
(Band center) 4 • Channel: 1-19
[Tone FC]
• Transmitting
(Band high) 5 • Channel: 1-20
[Tone FH]
• Transmitting
6 • Select [Tone Start] to quit the “CTCSS/DTCS DEVIATION” ad-
[Tone Start] –
justment mode.
CTCSS/DTCS 1 • Channel: 1-21 • Connect a modulation analyzer to ±0.70 ±0.05
DEVIATION • Transmitting the antenna connector through an [Tone W] kHz
-Wide-* attenuator, and set it as “FM DEVIA-
CTCSS/DTCS 1 • Channel: 1-21 TION.” ±0.55 ±0.05
DEVIATION • Transmitting [Tone M] kHz
-Middle-**
*: Except for [USA] versions. **: Only for [EUR] versions.
5-6
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5-4 RECEIVE ADJUSTMENTS
1) Select an adjustment item using []/[] on the PC’s keyboard.
2) Set or modify the adjustment value as specified using []/[] on the PC’s keyboard, and then push [ENTER].
TRANSCEIVER’S ADJUSTMENT
ADJUSTMENT OPERATION VALUE
CONDITION ITEM
RECEIVE NOTE:
SENSITIVITY • “RECEIVE SENSITIVITY” must be adjusted before “S-METER.” Otherwise, “S-METER” will not be adjusted
properly. When “RECEIVE SENSITIVITY” is re-adjusted, “S-METER” must be also re-adjusted.
• Before the adjustment, turn OFF the Power save function.
1 • Set [SQL Level] to “2” in the Set mode. [SQL Level] 2
2 • Connect an SSG to the antenna connector and set it as:
Level†: +30 dBµ (–77 dBm)
Modulation: 1 kHz
Deviation: ±3.0 kHz*
±1.5 kHz**
3 • Select [BPF Start], then push [ENTER] to enter the “RECEIVE –
[BPF Start]
SENSITIVITY” adjustment mode.
(T2 Band low) 4 • Channel: 1-22 1) Set the SSG as: Push [ENTER]
• Receiving Frequency: 136 MHz (Automatic
2) Select the item [BPF T2 FL], then push adjustment)
[BPF T2 FL]
[ENTER] to start the automatic adjustment.
3) Select the item [BPF Start], then push
[ENTER] to store the adjustment value.
(T1 Band low) 5 • Channel: 1-23 1) Select the item [BPF T1 FL], then push
• Receiving [ENTER] to start the automatic adjustment.
[BPF T1 FL]
2) Select the item [BPF Start], then push
[ENTER] to store the adjustment value.
(T2 Band center) 6 • Channel: 1-24 1) Set the SSG as:
• Receiving Frequency: 155 MHz
2) Select the item [BPF T2 FC], then push
[BPF T2 FC]
[ENTER] to start the automatic adjustment.
3) Select the item [BPF Start], then push
[ENTER] to store the adjustment value.
(T1 Band center) 7 • Channel: 1-25 1) Select the item [BPF T1 FC], then push
• Receiving [ENTER] to start the automatic adjustment.
[BPF T1 FC]
2) Select the item [BPF Start], then push
[ENTER] to store the adjustment value.
(T2 Band high) 8 • Channel: 1-26 1) Set the SSG as:
• Receiving Frequency: 176 MHz
2) Select the item [BPF T2 FH], then push
[BPF T2 FH]
[ENTER] to start the automatic adjustment.
3) Select the item [BPF Start], then push
[ENTER] to store the adjustment value.
(T1 Band high) 9 • Channel: 1-27 1) Select the item [BPF T1 FH], then push
• Receiving [ENTER] to start the automatic adjustment.
[BPF T1 FH]
2) Select the item [BPF Start], then push
[ENTER] to store the adjustment value.
10 • Select [BPF Start], then push [ENTER] to quit the “RECEIVE SENSITIVITY” adjust- –
ment mode.
†
: The output level of the standard signal generator (SSG) is indicated as the 50 terminated.
*: Except for [USA] versions. **: For [USA] versions.
5-7
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5-4 RECEIVE ADJUSTMENTS (continued)
1) Select an adjustment item using []/[] on the PC’s keyboard.
2) Set or modify the adjustment value as specified using []/[] on the PC’s keyboard, and then push [ENTER].
TRANSCEIVER’S ADJUSTMENT
ADJUSTMENT OPERATION VALUE
CONDITION ITEM
S-METER NOTE: When “RECEIVE SENSITIVITY” is re-adjusted, “S-METER” must be also re-adjusted.
1 • Connect an SSG to the antenna connector and set it as: –
Frequency: 155 MHz
–
Modulation: 1 kHz
Deviation: ±1.5 kHz
2 • Select [RSSI] to enter the “RSSI” adjustment mode. [RSSI] –
(S3 Level) 3 • Channel: 1-28 • Set the SSG as: Push [ENTER]
• Receiving Level†: +23 dBµ (–84 dBm) (Automatic
[RSSI] adjustment)
(S1 Level) 4 • Channel: 1-29 • Set the SSG as:
• Receiving Level†: –7 dBµ (–114 dBm)
5 • Select [RSSI] to quit the “RSSI” adjustment mode. [RSSI] –
SQUELCH NOTE: When “RECEIVE SENSITIVITY” is re-adjusted, “SQUELCH” must be also re-adjusted.
1 • Channel: 1-30 1) Connect an SSG to the antenna con- Squelch opens
• Receiving nector and set it as: (Push [ENTER]
Frequency: 136 MHz to store the
Level†: –14 dBµ (–121 dBm) value)
Modulation: 1 kHz [SQL]
Deviation: ±3.0 kHz
2) Once close the squelch by increasing the
[SQL] value, and then decrease the value
to open the squelch.
†
: The output level of the standard signal generator (SSG) is indicated as the 50 terminated.
5-8
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SECTION 6. PARTS LIST
Eqv.= This component is equivalent to the REF No. component listed above, and M.=Mounted side (T: Mounted on the Top side, B: Mounted on the Bottom side)
may be substituted on parts orders and repairs. S.=Surface mount
6-7
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SECTION 7. MECHANICAL PARTS
7-2
Downloaded from www.Manualslib.com manuals search engine
J1(CHASSIS) MP34(CHASSIS)
(6910021491) (8830001701)
MP11(CHASSIS)
(8930089300)
MP1(CHASSIS)
S4(MAIN) (8010023040)
(2250000900) MP30(CHASSIS)
ANT UNIT (8930090130)
MP46(CHASSIS)
(8310083950)
MP44(CHASSIS)
(8810009511) MP16(CHASSIS)
(8930084870)
MP50(CHASSIS)
R27(MAIN) (8310079530)
(7210003700)
MP40(CHASSIS)×2
(8810010850)
MP24(CHASSIS)
(8610014710) MP9(MAIN)
(8930070080) MP22(CHASSIS) MP49(CHASSIS)
MP8(MAIN)
MP19(CHASSIS) (8210020571) (8930089260) (8210029630) MP43(CHASSIS)x2
MP25(CHASSIS)
(8830003440) (8610014720) (8810007391)
DS2(MAIN)
(5030003821)
MP12(CHASSIS)
(8930089280)
EP13(MAIN)×2
MP7(MAIN)
(8930069481)
Legend:
Ref. No. Unit Name
MP1 (CHASSIS)
IC-F1000T: (1234567890)
MP2(CHASSIS)
(8210029780) Parts No.
7-3
S3 S2
MC1
V40
R294
DS4 C11
C290 S1
R222
C381
C422
C318
R220
C317
S9 C425
Q2
V35
S10
R232
C334
C3
MP5
S14 S6 IC17
D20
S18 C309 C434 R18
C26
R338
R234
R14
C259
R233
C316
Q40
IC2
DS6 R247
C336
R235
R16
R15
C47
C356
C354
C335
V30
R17
C337
C25
C407
R332
R86
C103
DS1
C423
C24
R19
C27
R3
R4
C412 C417
DS9 DS8 C424
C74
C2
Q3
R138
R137
C9
R333
C99
C19 C385 Q16
R69
R70
C67
C66
S13 D5
C21
C420 C18 C440
C384
C92
R311
V25
R322
C89 R35
C375 Q22
Q15
C93
C419 R334
EP18
C94
IC3
C65 C98
S11 IC19 Q21
F1
C90
S19 S15 S7
C91
D1
C52
IC4
C95
C96
R56
D35 R58
R347
R89 C70
C115
R72
V20
C79
IC21
EP19
R87
X1
R91
R296
C120 C20
C114
C119
C38
R88
C118
C105
C121
S17 C391 C33
EP2
DS10 DS7
R340
C437
R8
R11
EP3
C29 J3
V15
C272
R339 R6 C380
IC1
D34
EP21
C389
J1
R348
C16
R282 R341
S20 S12 D4
S16 C320 R10
V10
S8
R41
R299
S21 C374
C41
Q9
J2 C36
DS3
V5
CP21 C39
R155
R157
B-8116B
V0
H0 H5 H10 H15 H20 H25 H30 H35 H40 H45 H50 H55 H60 H65 H70 H75 H80 H85 H90 H95 H100
8-1
C418
C4
C397
C7 R146
C279
C396 C183
R2
C5
Q1
C171
C390
C10
R147
R152
C158
C393
C261
V40
R197
R200
C150
R131
R163
C28
Q29
C262
C436
Q24
Q28
C263 R254
C167
R208
C288
C410
C199
R130
C189
C192
C191
C289
R198
C195
R211
R302
R219
C333
R145 R301
C314
C332
R209
Q44
R162
C283 C170
Q34
R305
C328
C311
R337
R144
L35 Q36 R24
R207
C264
C347
C282
L19 C180
R218
D19
R170
IC15 C388 C433 R304
R143
L26
L31
V35
C159
D33
Q27
C206
L29
C35
C348
R201
Q38
R169
C207
C186
C403 C306 L7 IC22
IC23
R351 C305
R159
C267
Q19
R53
L22
L23
C165
C194
C331
IC14
C313
EP6
C227
R178
C307
C153
C221
R166
L39
EP17
C205 C399
C129
C15
C355
C83
L27
L37
C353
C173
C112 R325 R327 C379
C152
C154
C134
[ROTARY SELECTOR]
C432
R179
R326
EP5
R90
R244
R243
D13 L3
D11 C40
C308 R66
C201
C151
C49
C310
R324
C301
L34
V30
D10
IC24
R160
R98 R64
C200
R167
R151
MP3 C386
C219
R336
C177
C178
C415
R100 EP15
L36
C203
C187
D23
C82
C421
C365 C369
L2
R81 C197
S4
R168
Q17 IC13
D32
C202 C413
D27 C135 Q25
EP11
C364
R125
L42
R291
R270
R269
R268
D9
C315 C210
C398
L5
C188
C392
C411
D16
C363 L6
R308
R246 R122
C362
R245
C285
C224 R267
L11
R124
V25
C441
R199
C225
C143
C145
C377
C366
D17 C253 R177
R192
C231 R266 Q41 R323
D25
R97
R241 C361
C395
L15
R116
L32
R319
R274
Q31
R259
R258
R112
R273
R22
L13
R352 R328 R119
L14
C344
Q32
R165
C251 Q30
R250
C360
R123 R190
L21
R20
C144
R156
C293
L41 R106
C130 R164
C128
R95
V20
C212
C297
D24 C198 R104
C213
R331
R215
R216
R176
R117
C140
C176 EP4 C409 C252
D6
C161
C147
R248
L17
Q23
R263 R317
Q37
C339 C131
L9
C338
R237
R236
R249 C168
C414
R238
R213
R96 X3
R240
R1
C271 C294
R297 R286 R94
R257
C405
R239
C73
R67
C357
C245
R212
R204
R217
C278
C214 R85
C100
Q39
C87
R140
R289 C127
V15
R214
R181
C341
R229
C233
C215
IC20
C54
C277
C110
R83
C280
IC5
IC9
C217
C77
C126
C218
Q42 C319
R223
C326
R287
C61 R93
C300
D29
R184 C85
D36
D18
C235
R224
R295
C113 R105
IC6
C321
R26
C13 R68
C236
FI1
R43
C125
V10
R185
R42
R228
C237
R260 C124
C324
IC8
IC16 R31
C238
D37
D38
[VOL]
C84
R25
R194
R50 C162
C58 C106
R284
R350
L40
R182
R310
R312
C269
C56
C116
Q5
C45
C242
EP23
C246
R330
R62 C23
C260
C258
R183
R102
R48
C247
C239
EP20
C146
R12
R346
R314
V5
C44
R13 R280
C63
R188
R279
C383
C382
C136
C137
C138
C243
R300
D28
R27
V0
H100 H95 H90 H85 H80 H75 H70 H65 H60 H55 H50 H45 H40 H35 H30 H25 H20 H15 H10 H5 H0
J2
8-2
T2 T1
D/A
SQIN
RSSI NOIS
R133
VOL1
R133
VOL1
REF
IC4
DISC
VOL1
R133
VOL1
MOD
X1 D5 NLM12902 MGC0
IC3 MGC1
R133
VOL1
T1
CTCSS/DTCS 14.7456MHz VOXV DET AMP IC1 TPA0211DGN
SDEC
R133
VOL1
AFO AFO AF J2
AMP
R133
VOL1
T2
IC13
IC12
IC5 EEPROM TA7368F J3
LM2902 1 SP1
IC21 DS2 AF 2
IC10 LPF IC21 DS2 AMP
LCD
IC21 LCD AFON
NDIS Q41 DRIVER
LIGHT LED DS3,DS4
RSSI CTRL DS5,DS6 +5V
BEEP DS4 Q9
DS3 Q10
SENC KEY DS7,DS8 S5V
R155 MATRIX DS9,DS10 PWR
TEMP DS4 VCC CTRL
SDEC S6-S21
CTCSS/DTCS DEC AF VOL Q17
DMG504010 LVIN IC19 T5C
Q5 CPU AFVI T5 T5V
R1
+5V REG D7
DISC LPF CDEC EPTT REG Q20
VOXV PTT Q16 CLONE
IC9 R5C BUFF
IPTT R5 R5V
LM2902 PUSH1 REG
IC7 F1
P1 IC20
LPF CENC1 (PWM) KEY1 PWOFF Q15
P2 PUSH1 +5V
IC24 KEY2 VCC REG S5 S5V
PUSH1 S5C REG
+3V F2
REG
Q19 S4 +5V
DUSE FIL CH IC8 IC6 Explanatory notes
SW SELECT
IC22 IC23 RES RESET CPU5 CPU5 CONTROL LINE
CONV REG
COMMON LINE
SENSOR
CSFT CPU5 TX LINE
S5 F1
D6 CR-864 Q21:Q22 YG VCC 1 2 RX LINE
X2 SW12
BATTERY_1
ERBSE3R00U
BT1
SHIFT LED
SW CTRL DATA LINE
12.288MHz HR
DS1
CL-165HR
9-1
2SC4116
Q23 Q29
Q29:LDTC144EE
IC14
LVIN RIPPLE VCO R5V
FIL SW
TC4S66F
D10 RX VCO
Q25 MAIN UNIT
LV D9,D32
ADJ D17 2SC5107 RD01MUS1 RD07MUS2B D19
IC7
NJM12902 X3 15.3MHz
CR-794 2SC5107 2SC5107 D16 Q34 Q36 Q38 D27
Q30 Q31
BAL
VCON TCXO LOOP LV TX/RX PRE DRIVE PWR ANT
BUFF BUFF BUFF AMP LPF LPF
REF FIL SW AMP AMP SW
D11 TX VCO
LVA LV
ADJ Q27 IC17 D22
AK1542
IC15 D33,D12 2SC5107 TA75S01F D23
Q32
PLL 182.35MHz-220.35MHz APC PWR
BUFF LPF
IC 1SV309 AMP T1 DET
D13 Q28
FM VCO R5C
MOD SW D18,D36,D37,D38 HVB350B D25 D31 Q40
FL-442 HVB350B
2SC4215 FI1 Q37 HVB350B D29 HVB350B
Q33 46.35MHz 3SK293
45.9MHz IF IC IF XTAL RF MUTE TMUT
BPF BPF BPF BPF BPF
AMP BPF AMP SW
IC16 Q39
MIXER
T2 T1
D/A
SQIN
RSSI NOIS
R133
VOL1
R133
VOL1
REF
IC4
DISC
VOL1
R133
VOL1
MOD
X1 MGC0
D5
IC3
NLM12902 MGC1
R133
VOL1
T1
CTCSS/DTCS 14.7456MHz VOXV AMP IC1 TPA0211DGN
DET
SDEC
R133
VOL1
AFO AFO AF J2
AMP
R133
VOL1
T2
IC13
IC12
IC5 EEPROM TA7368F J3
LM2902 1 SP1
IC21 DS2 AF
2
IC10 DS2 AMP
LPF
LCD AFON
LCD
NDIS Q41 DRIVER
DS3
LIGHT LED DS3,DS4
RSSI CTRL DS4 +5V
BEEP DS5,DS6 Q9
DS3 Q10
SENC KEY DS7,DS8 S5V
R155 MATRIX DS4 PWR
TEMP DS9,DS10 VCC CTRL
SDEC S6-S21
AF VOL Q17
DMG504010 LVIN IC19 T5C
CTCSS/DTCS DEC Q5 CPU AFVI T5 T5V
R1
+5V REG D7
DISC LPF CDEC EPTT REG Q20
9-2
LVA
MOD
NWC
SCK
R5C
T5V
R5V
S5V
+5V
RSTN
FSCN
FSIO
FSCK
UNLK
NOIS
DISC
RSSI
LVIN
SQIN
VCON
TMUT
PLST
+3_3V
+3_3V
RSTN
FSCN
FSIO
FSCK
UNLK
NOIS
DISC
RSSI
LVIN
SQIN
VCON
TMUT
PLST
LVA
MOD
NWC
SCK
R5C
T5V
R5V
S5V
+5V
T2
T1
SO
HV
SO
HV
S5V
S5V
SCK
+5V
+5V
S5V
T5V
VCON
GP02
GP01
PLST
GP01
UNLK
LVIN
+3_3V
0.001
C165
EP4
C176 R151
0.1 CP9
0.1 C177 150k 0.33 C168
4
8
V+
GND
SECTION 10.
47P C169 C28 0.01
MMZ1005Y102CT
C178 C170 C184 2.2k
MOD 0.001 R143
IC14
1
4
EP5
47P C175 0.001 2.2 10 R158
X3
TC7W66FU
4.7k
VC
7
IC14
VCC
0.001 C171 C167
CR-978
1 2
47P
Q23
TC7W66FU
GND
OUT
C415 R145 R144
39k
R147
2SC4116
2
3
10 10k 1.2k
MMZ1005Y102CT
R153 R152
1k
C410 C436 C422
1k
R156 27k
R146
0.001 0.001 C381 0.001
10k
6
5
4
3
2
1
47P 0.33
NWC
R150
100k
R331
LE
C180
CLK
25
DATA
C183
TEST1
TEST3
CPVDD
L39
1k 0.01
3.3U
7 24 C189 C151
LD
8 23 6P
1
L5
PDN2 SWIN C15 C35 C40
9 22
LDTC144EE
Q24
3.3U
PLL
PDN1 CPZ
10 21 4P 4P 7P
REFIN CP C191
11 20
TEST2 PVSS D12 1SV323 D9 1SV323
12 19 470P
GPO1 BIAS
1SV323 D33 1SV323 D32
27k
0
R162
10-1
C192
IC15
LVA
RFINN
RFINP
GPO2
DVSS
VREF
PVDD
L37 L2
L36
33N
10P
L38
68N
C198
0.0015
AK1542A
6
IC14
10U 10U
R254
15
16
18
47P
C186
C188
33P
1 C195 GP02
R160
R159
100k
R164
3
14 C199
13 0.22
17 C390
L7
L6
C196
0
82N
68N
TC7W66FU
100P
680k
5
0.22
R253
R165 0.001
220k
1k D13 C194 C201
R5V
L9 C212 C197 1SV323 1P 4P
R5C
MMZ1005A152ET
0.18U 0.01
RSTN C213 EP15
1U
L3
C214 EP16 MMZ1005A152ET
VOLTAGE DIAGRAM
C152 C200
NOIS 56P 0.01 EP17
MMZ1005A152ET
6P 0.001
6P
R163 C154
C215
FSCN BBY57
C216 D11 C205 33P
FSCK 56 0.001
FSIO 56P 33P D10 C187
BBY57
X3 MULTI
L10
27P
3.9k
R166
MP2
C206
68P
C210 C208 C207
1k
0.18U OG-503040
3.9k
R167
C13 *C405 C204 C203
R173
12P 33P 24P
0.001 27P 27P
L11
33N
C217
R21 C218 47P
R170
R257 1
100P
1.8k
R168
MP3
2
RX VCO
1.8k
R169
17
18
19
20
21
22
23
24
47k 100k
4.7
C231 3
C233 4
RSSI R184 12P
Q25
C219
3621
PDN
CSN
0.1
RSTN
SCLK
DETO
220k 10
TX VCO
IFOUT
AVSS2
SDATA
0.001 HV
2SC4226
S5V
T5V
330P C240
VCOV
0.001 C234
Q27
C245 C244 C221
560
R185 1M RSSIOUT DVDD
16 25
2SC4226
0.001 R186 PDOUT DVSS 0.001
R178
DISC 15 26 C235
MMZ1005Y102CT
DISCOUT VREFD C48 C153
14 27 0.22
10k 470 C241 AUDIOOUT AVSS3
13 28 1 C236 0.001 0.1
NAMPI AGNDOUT EP7
IC16
150P 12 29 C237 1
NAMPO AGNDIN R179
SC-1451A
R187
11 30 C238
NRECTO LOCAP 100P C223
R182
10 31
R188 470
0.5P
BIAS LOIN
C227
C242 C49
LDTC114YE
9 32
Q28
0.1
0.001 0.001
0.75P
1.5k
C224
150P C225
180k
C239
*C246
33
VREFA
AVDD
AVSS
IFIP
0.001
NC
NC
NC
NC
C247
SQIN R176
120k
8
7
6
5
4
3
2
1
Q29
470P R183
R5V
R5C
C243
R177 100
R5C
LDTC114YE
10
2SC5108
47k *L13 C248
IF IC
C260
0.001
R5V
R181 0.22
Q30
C254 *R352
+5V
C258
100P
47 3P
7P
*R350
C250
C256 C251
*Q33
*L40 R194 0.001 0.001
R193 C285 R190 C252
2.2k
IF AMP
47k 0.001 47k 0.001
Q31
D28
2SC5108
2SC5108
10P
C257
BAR88
100k 0.1U 10 0.1U 10
Q32
0.01
C274
C269 C259
10P
C253
*R205
*C275 BAR88
1k
BAR88
D16
R202
R199
10k R336 C421
C267
2
4
0.001 C261
470P
47
47
R337
OUT
GND
*R22
*C276 4.7k R197
6 5
C271 R203 R198 10k
GND
IN
*C264
*FI1
0.001 47 R207
3
1
C272 *L42 *C441
2.2k *R201 *R200
*C278 0.001 C283
*L17
HV
0.001 C262
T5V
33k C265
Q37
R216 R212 C288
2SC5108
0.001
C268
C282
100P
MIX
0.001
3SK293
R215 150k
C284
100k R213
R24
4.7
R217 1
C305
*L41
82k
6P
C280
0.001
*C293
MMZ1005Y102CT
C290 EP10
C300 L19 EP6 MPZ1608S221A
Q36
RD01MUS2B
*R225 1 R211
5P 22N C307
*D38 L25 C425 100k C313 C301
1
*D37 LQW18AN56NG00 1 15P C309 0.001
C314
APCV
68P
*D36
C306
C323
1.5P
0.001 4.7k 22
RD07MUS2B
Q38
R223 C320
R220
*L23
D20
*R351
C318 0.01
680 0.001
L1SS400
*C328
0.001
R224 10
C281
270 L24
D22
RF AMP LQW18AN56NG00 47 R243
4
R229 C353
0.001
C331
Q39
TA75S01F
APC
C341 C310
IC17
0.5P
3SK293
220k
0.001 0.001
2
5
RB876W
C334
0.22
R206
T5V
45.3N
1
3
R349
R237
0.5P
0
R338
3.5P
C343
R1 0.001
R234
BAR88
68k
C332
R245
*Q14
C369
R235
0.001
11P 15P
3.5P C337 C335
L29
C348
1.5P
45.5N
4.7k
4.7k
1.5P
C346
C354
C349
45.3N
0.001
LPF
L31
*C347
*R249
27.2N
C364
82N 6P
0.001
D27 *C357
BAR88
C365
15P R251
T5V
T1
RSSI
TMUT
ANT_BOARD
68k
*: Refer to the PARTS LIST for the value and name of component.
• MAIN UNIT (2/3)
SQIN
DISC
DAST
RSTN
VREF
MOD
AFO
+5V
SCK
SO
T2
T1
LVA
PMFM
PMFM
MTDT
MTDT
MTCK
MTCK
NOIS S5V
NOIS
UNLK
UNLK C414
R122
180k
VCC
C147
C82
VCC
0.1
0.1
RSTN R324 IC7
0
0.001
470
RSTN
15k
R96
R97
CENC1 2 R81
CENC1 1
R47 R52 R64 R66 A +5V
3 +5V
PWOFF CENC1 4.7k R116 R124
PWOFF
R95
C157
0.0012
S5C
1k
56k 47k 47k 47k
0.018
S5C
C129
T5C CTCSS/DTCS FILTER
C112
C132
6.8k
47k
10
R53
R84
0.1
0.1
C83
C86
R123
100k
R5C S5V S5V
R5C R126 S5V
6
5
4
3
2
1
PLST R30 390k REF
PLST C45 Q19
R49
82k
DAST 10 R5V
VOUT1
VOUT0
RSTN
VIN1
VIN0
VIN7
DAST 180k R5V
0.1
C22
C130
C1310.01
SO 3.3k 25 IC7
SO Q5 DMG504010 6
SCK T5V
SCK C43 0.1 LDTC144EE 7 24 7 T5V
AFON CSN VOUT7 470k
AFON B
0.1
NWC 4 3 DUSE 8 23 BAL 5 R5C
AK2330
NWC R12 R13 R28 SCLK VOUT6 R5C
IC10
AUTX DISC 9 22 VCON
AUTX SDATA VIN6 R125
0.0068
FSIO 5 2 R50 10 21 SO
DVDD VIN5
0.039
0.0033
11 20
100k
R346
FSCK NJM2904CRB1
C23
C109
FSCN 470 AVDD VOUT4 SCK
C85
MDIO 6 2
VOUT2
VOUT3
MDIO
10k
R85
VREF
VIN2
VIN3
VIN4
MSCK R29 R48 R55 R65 B 7 R68 1 PLST
MSCK R67 5 R83 3 A PLST
MDIR CDEC SENC
MDIR
MGC0 NWC
C113
6.8k 10k 68k 68k 68k 68k 68k
0.022
MGC0 NWC
0.1
MGC1 NJM2904CRB1 NJM2904CRB1
680P
270P
C110
13
14
15
16
17
18
MGC1
C63
C84
C87
120P
TMUT MOD
TMUT MOD
R98 270k
DUSE
R99 68k
0.001
DUSE
R90 1.8M
EPTT VCON
C408
C158
EPTT VCON
47P
Q2
C91
R130
RSSI
C90 1
RSSI
15k
CDEC R14 LDTC144EE SQIN
CDEC SQIN
SDEC R86
0.001
SDEC
1
0.001
TEMP 0.01 100k
LVIN IC2 VREF T1
C400
LVIN T1
C159
22
VOXV +5V +5V 14 1
18
17
16
15
14
13
0.001
VOXV 13 2 R89
8.2k
R131
CSFT T2
C150
CONT1 O/I1
82P
CSFT 12 3 2 IC11 T2
BEEP MGC1
EXTINO
EXTIN1
AGNDIN
RXOUT
VSS2
AGND
SENC A LVIN
0.0022
+5V 10 5 PMFM 470 100k 3
O/I4 CONT2 R88 10k
0.033
+5V 9 6 NJM2904CRB1
0.033 5.6k
680k
CL
C391
C2
R69
0.1
C66
C67
C89
8 7
220P
C114
19 12 RSSI
C434
TXINO RXINO
27k
RSSI
0.1
21 10
IC4
DISC
MMZ1005Y102CT MMZ1005Y102CT
RSTN VSS1
0.001
23 8 7 NOIS
24
MSKDATA DVDD
7 1k 5 B NOIS
0.1
0.1
EP2
C3
1
1
MSKCLK
NJM2904CRB1
R284
0.1 R348
UNLK
0.01
C135
UNLK
470
SCLK
XOUT
VREF 25
DIO
DIR
XIN
J1 FSIO
10
C1
C118
C119
C120
C121
EP3
6 FSCK
1
2
3
4
5
6
B 47P
5 C93 FSCN
C24 1k 10k 5.6k R72 47P FSCN
*R347 R339
0.001
0.001
NJM2904CRB1 TMUT
R91 1k
C417
C92 1M TMUT
X1
C6
22k
C96
C95 CR-980
1SS390
47P
12k R340
47P
0.1 R334
R35
D34
R3 HV
RSTN
MTDT
MTCK
MDIO
MSCK
MDIR
DISC
SDEC
BEEP
VREF
8.2k
+5V
R18
10P
220 1.8M D5
IC3
C419
C26
10
2k
R4
470 2 C420
PWOFF
CSFT
+5V
*MC1 A 1 VOXV
C438
3 0.01
R332
12k R341
RB706F 8 IC5
0.1
8 IC7
0.1
8 IC3 8 IC11
0.001
NJM2904CRB1 Q15
C73
C97
V+ V+ V+ V+
C384
C385
R333
0.1
0.001
33k
R58
0.1
C407 0.1
0.1
C70
1M
R2
C5
C52
4 4 4 4
C9
10k
100k C27
0.001
C424
0.001
0.001
0.047
Q3 S5C DTA113ZE
R19
Q1 EPTT EPTT
LDTC144EE ATX AUTX
0.01
LDTA114EE
C98
R5V +5V
0.001
0.001
0.001
C418
C423
0.001
C10
Q16
C74
J3
IC19 IC20
R8 0.22 R5C 5 1 5 1
4 3
2 VSS VSS
C99
4 3 4 3
NC CE NC CE
C440
C375
C100
C61
0.001
C79
1
1
IC1
ISD8102SYI R41 T5V
8 1 AFON
VOUTN Shutdown Q17
7 2 1k
GND VREF
6 3
*EP21 C29 VDD MODE C33
5 4 AFO
VOUTP VIN
100k
R335
0.47 T5C
L1SS400
220
0.01
C103
9
*C53
0.001
D4
47P
0.1
C14
C32
C411
1k
R6
EP11
C380
C54
0.1
R08717NSFK150S070A103 F1 1 2
J2 2 1 EZJZ0V80010 *EP18
R11 0.1 VCC 3 4
*EP22
0.001
0.001
100
R5
ERBRE3R00V 3621
C105
EZJZ0V80010
47k
0.001
D1
D35
C19
Q9
C36
47k *EP19
47P
C39
R61
DMC506010R S5V
1.2k
4
AFVI AFVI
R25
0.001
6.8k
Q10
R342
C58
C77
0.001
C41
+5V
1k
R345 Q4 R43
R155
3
10k 3.9k
Q42 TEMP
C34
LDTC144EE
1
ERTJ0EP473J
0.1
C56
100k
R157
LDTC144EE
47k
R26
R42
1k
CL
47P
C12
*: Refer to the PARTS LIST for the value and name of component.
10-2
0.001
C399
KR0
SEG9
SEG8
SEG7
SEG6
SEG5
COM4
COM3
COM2
COM1
SEG18
SEG17
SEG16
SEG15
SEG14
SEG13
SEG12
SEG11
SEG10
SEG28
SEG27
SEG26
SEG25
SEG24
SEG23
SEG18
SEG17
SEG16
SEG15
SEG14
SEG13
*S6 *S7 *S8 *S9 PMFM
PMFM
KR0
R308 MTDT
MTDT
1 2 3 P0
32
31
30
29
28
27
26
25
24
23
22
21
20
19
18
17
100k R307 MTCK
MTCK
KR1
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
SEG28
SEG27
SEG26
SEG25
SEG24
SEG23
SEG22
SEG21
SEG20
SEG19
SEG18
SEG17
SEG16
SEG15
SEG14
SEG13
*S10 *S11 *S12 *S13 100k NOIS
NOIS
KR1
COM1
COM2
COM3
COM4
SEG38
SEG37
SEG36
SEG35
SEG34
SEG33
SEG32
SEG31
SEG30
SEG29
SEG28
SEG27
SEG26
SEG25
SEG29 SEG29 SEG12 SEG12 UNLK
33 16 UNLK
4 5 6 P1 SEG30 SEG30 SEG11 SEG11
SEG31 34 15 SEG10 RSTN
SEG31 SEG10 RSTN
KR2 SEG32 35 14 SEG9
*DS2 SEG32 SEG9
*S14 *S15 *S16 *S17 SEG33 36 13 SEG8 CENC1
SEG33 SEG8 CENC1
KR2 SEG34 37 12 SEG7
SEG24
SEG23
SEG22
SEG21
SEG20
SEG19
SEG18
SEG17
SEG16
SEG15
SEG14
SEG13
SEG12
SEG11
SEG10
SEG34 SEG7
38 11
SEG9
SEG8
SEG7
SEG6
SEG5
SEG4
SEG3
SEG2
SEG1
7 8 9 P2 SEG35 SEG35 SEG6 SEG6 +3_3V
39 10 +3_3V
SEG36 SEG36 SEG5 SEG5
SEG37 40 9 PWOFF
SEG37 *IC21 SEG4 PWOFF
KR3 SEG38 41 8
9
8
7
6
5
4
3
2
1
24
23
22
21
20
19
18
17
16
15
14
13
12
11
10
SEG38 SEG3
*S18 *S19 *S20 *S21 SEG39 42 7 S5C
SEG39 SEG2 S5C
SEG40 43 6 IC6
SEG40 SEG1
* 0 # P3 SEG41 44 5 COM4 CPU5 5 1
SEG41 COM4 VOUT VIN VCC
KS1 SEG42 45 4 COM3 2
R60
100k
SEG42 COM3 VSS
SEG43 46 3 COM2 4 3 T5C
SEG43 COM2 NC CE T5C
SEG44 47 2 COM1
SEG23
SEG24
SEG25
SEG26
SEG27
SEG28
SEG29
SEG30
SEG31
SEG32
SEG33
SEG34
SEG35
SEG36
SEG37
SEG38
SEG39
SEG40
SEG41
SEG42
SEG43
SEG44
SEG45
SEG46
C143
C145
SEG44 COM1
CP2
0.1
KS2 C395 48 1 XC6209F502MR BATV R5C
C106
0.01
C104
SEG45
SEG46
SEG47
SEG48
SEG49
SEG50
VLCD0
R5C
INHb
DATA
MODE
OSC1
OSC2
0.001
*R300
SCL
VSS
VDD
1
KS3 PLST
100k
CE
PLST
R62
+5V
RES
KRA
KS3
KS2
KS1
KS0
KR3
+5V
RLED
TLED
SENC
BEEP
VOXV
LVIN
RSSI
AFVI
BATV
TEMP
IPTT
EPTT
CDEC
SDEC
SEG46
SEG45
KS0 DAST
49
50
51
52
53
54
55
56
57
58
59
60
*R271 61
62
63
64
R319
0.001
DAST
C383
R303
100k +5V 100k SO
SO
*C389
C136 *R282
SCK
CF20OPEN
*DS9
*DS7
*DS5
*R299
C137 LSMD
*R283
*C378
0.001
CP21
YG R137 C138 LSO
LSCK 100k NWC
0.001 NWC
390 LINH
AUTX
*DS8
*DS6
*DS10
HR R280 AUTX
*DS4
C141
22
FSIO
1.8k R278 1k 220 MDIO
R277 1k FSCN FSCK
0.01
C146
LDTA144EE FSCK
R276 1k FSCK
R291
100
15k
P85
P86
P87
FSCN
99
98
97
96
95
94
93
92
91
90
89
88
87
86
85
84
83
82
81
80
79
78
77
76
*R267
*R268
*R269
*R270
FSCN
R286 R314
R107
P77
P76
P75
P74
P73
AVss
PB5/AN5
PB4/AN4
PB3/AN3
PB2/AN2
PB1/AN1
PB0/AN0
PA1/AN9
PA0/AN8
PA3/AN11
PA2/AN10
PA7/AN3_2
PA6/AN2_2
PA5/AN1_2
PA4/AN0_2
P93/FTIOD2
P92/FTIOC2
P91/FTIOB2
P90/FTIOA2
P97/FTIOD3
R310 MDIO
*R297
R289 R313 100k
*R323
*Q41
0.001
0.001
C392
R309 MSCK
LIGT R290 R296 100k
100k MDIR
CP5
R311 MDIR
RES
EVQ-PUL 100k
R275 R312 100k MGC0
1 75 MGC0
PB6/AN6/DA0 P72 1k FSIO 100k
S5 2 74 KR2 MGC1
C142
3 73 KR1
AVCC P95/FTIOB3
0.001
3 4 7 69 R295 0 CPU5
C124
C108
0.1
10 66 R140 RSSI
56k PJ1/OSC2/CLKOUT P21/RXD CP10 OPT1 RSSI
11 IC9 65
PJ0/OSC1 P20/SCK3 CP11 DCLK
12 R4F20335RDFE 64 CDEC
10
NMI VSS
0.001
P86/TRBO P66/FTIOC1
16 60
15k
R110
C140
P82 P62/FTIOC0
15k
0.1
CP7
P80 P60/FTIOA0 R263
22 54 VOXV
33k P37/TXD_X/TXDX/RXDX P25/SCK3_2 CP15 1k VOXV
23 53 LCS
S3
TAFG-12W
NMI
R92 P35/SCK3_X P41 CSFT
CSFT
C11
25 51 1k R265 LSO
P30/FTIOA/TRGC
CLI
1M 1k BEEP
BEEP
12k
R94
P57/SCL/SSI
P56/SDA/SCS
0.22
C125
C126
C128
10P
SENC
P33/FTIOD
P32/FTIOC
P31/FTIOB
P53/TGIOB
P52/TGIOA
P51/TCLKB
P50/TCLKA
P27/TXD_2
P26/RXD_2
1P
SENC
P14/IRQ4
P15/IRQ5
P16/IRQ6
P17/IRQ7
P55/SSCK
P10/IRQ0
P11/IRQ1
Q20
DRC9144T0
P54/SSO
+5V
+5V
R302
R287 CPU5
100k
100k
R322
R328
15
1
P47
P46
P45
P44
P43
J4
100k 2 CL
CL
P86
100k
10
SW-149 3
IPTT *IC22
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
4
1 9 P87
Vdd SDA
IOVdd SCL 5
0.001
C393
0.001
DNC ADDR 6
R274
0.001
0.001
3 7
100k
R298
C398
DNC INT 7
1k
0.001
4 6
C7
GND RES
100k
100k
8
0.001
LRB706F
D7
NMI
1k
C409
9
+5V P85
R106 1k
5
C396
*R304
DAT3
10
DAT2
0
0
11
CP14
CP13
C379 R288
*R305 12
1k
R320
R317
C397
R258
R266
1 100k 13
1k
1k
R273
R272
16
*R301
ASCL R112
ASDA R113
14
R259
0.001
C394
C144
0.1
1k
+3_3V
PWOFF
AINT
CSFT
TMUT
MGC1
MGC0
AUTX
AFON
PMFM
AINT
DAST
PLST
MTDT
MTCK
TLED
RLED
LIGT
LINH
LSMD
NWC
+3_3V
NMI
P85
P86
P87
SCK
R5C
T5C
S5C
CL
SO
+5V
+5V
CBI1
CBI2
CBI3
CBI0
ASDA
ASCL
CPU5
C432
S4 *R327
1
2 1
C1 A1 4.7k
3 R325 IC13
B1
5 4 IC24 *IC23 1 8
C2 A2 A0 VCC R119
6 1 5 1 8 2 7
B2 VIN VOUT VL VH 4.7k A1 WP 4.7k
8 7 2 2 7 3 6
C386
0.001
0.001
0.001
4 5
GND OE 4.7k
C377
C18
C20
C21
C38
XC6221A302MR GT24C128A
0.1
C433
*C388
0.1
ED08D13OFT176S065A
*: Refer to the PARTS LIST for the value and name of component.
10-3
Ctra. Rubi, No. 88 Bajos A 08174, Sant Cugat del Valles, Barcelona, Spain
Glenwood Centre #150-6165
Phone : +34 (93) 590 26 70 Fax : +34 (93) 589 04 46
Highway 17A Delta, B.C., V4K 5B8, Canada
URL : http://www.icomspain.com
Phone : +1 (604) 952-4266 Fax : +1 (604) 952-0090
E-mail : icom@icomspain.com
URL : http://www.icomcanada.com
E-mail : info@icomcanada.com
Zac de la Plaine
39C Rennie Drive, Airport Oaks, 1 Rue Brindejonc des Moulinais BP 5804
Auckland, New Zealand 31505 Toulouse Cedex, France
Phone : +64 (09) 274 4062 Fax : +64 (09) 274 4708 Phone : +33 (5) 61 36 03 03 Fax : +33 (5) 61 36 03 00
URL : http://www.icom.co.nz URL : http://www.icom-france.com
E-mail : inquiries@icom.co.nz E-mail : icom@icom-france.com