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3 - 2
3-1-6 RECEIVER MUTE CIRCUITS (LOGIC UNIT)
•
NOISE SQUELCH
The noise squelch circuit cuts out AF signals when no RF
signals are received. By detecting noise components in the
AF signals, the squelch circuit switches the AF mute switch.
Some noise components in the AF signals from the FM IF IC
(RX unit; IC2, pin 9) are passed through the SQL level con-
troller (VR unit; R2). The level controlled signals are applied
to the active filter section in the FM IF IC (RX unit; IC2, pin
8). Noise components about 10 kHz are amplified and out-
put from pin 7 (RX unit; IC2).
The filtered signals are converted to the pulse-type signals
at the noise detector section and output from pin 13 (RX
unit; IC2).
The NDET signal from the FM IF IC (RX unit; IC2) is applied
to the CPU (IC33, pin 40). The CPU analyzes the noise con-
dition and controls the AF mute signal via “AFMUTE1” line
(IC40, pin 4) to the AF mute switch (IC16).
• CTCSS AND DTCS
The tone squelch circuit detects AF signals and opens the
squelch only when receiving a signal containing a matching
subaudible tone (CTCSS or DTCS).
The CTCSS signal passes through the low-pass filter circuit
(IC8) and is then applied to the CTCSS decoder IC (IC29).
The detected signal is applied to the CPU (IC 33) via the ser-
ial signal line.
The DTCS signal passes through the low-pass filter circuit
(IC12), and is then applied to the DTCS decoder which is
inside the CPU (IC33, pin 52) via the “DTCSI” line.
The 2/5TONE signals are pass through the low-pass filter
circuit (IC12), and are then applied to the 2/5TONE decoder
which is inside the CPU (IC33 pin 51) via “25TI” line.
The DTMF signal passes through the DTMF switch IC
(IC30), and is then applied to the DTMF decoder which is
inside the CPU (IC33, pins 82, 85, 86).
The DTMF switch (IC30) selects the signal from telephone
line or RX unit.
3-2 TRANSMITTER CIRCUITS
3-2-1 AF AMPLIFIER CIRCUIT (LOGIC UNIT)
• IN CASE OF THE AF SIGNAL FROM THE MIC JACK
The AF signals (MIC) from the MIC jack (FRONT unit; J7)
are amplified at the AF amplifier (IC1). The amplified signals
are mixed with the “E_MOD”, “E_MOD2” and “TELAFO” sig-
nals from IC1. The mixed signals pass though the high-pass
filter (IC2) via the pre-emphasis circuit (IC2).
The filtered signals are applied to the limiter amplifier, and
are then mixed with the DTMF signal from the CPU (IC33,
pin 43) via TX-signal filter (IC3). The mixed signal applied to
the splatter filter (IC4).
• TONE SIGNALS CIRCUITS (LOGIC UNIT)
DTMF
SW
LPF
LPF
LPF
AMP
AMP
CTCSS
DTCS
2/5TONE
DTMF
CTCSS
DETECTOR
DTMF
DECODER
CPU; IC33
DATA BUS
D
ATA
B
U
S
DISC signal
from RX unit
To AF amplifier
AMP
IC9
IC8
IC12
IC31
IC30
IC29
• AF AMPLIFIER CIRCUITS (LOGIC UNIT)
AMP
AMP
AMP
AMP
SW-D
SW-C
SW-B
SW-A
AMP
MIX
PRE
EMP
HPF
LIMIT
SIG
MIX
SPLAT
FIL
RPT AF
MUTE
LPF
E_MOD3
To TX unit
From the FRONT
unit
RPT AF signal
from IC25
From the telephone
circuit
From the REMOTE
connector
From the ACC
connector
From the REMOTE
connector
25TONE
BEEP
CW
DTMF
From CPU (IC33)
MIC
E_MOD
TELAFO
E_MODE2
IC13
MIC MUTE
AFATTO
IC2
IC3
IC3
IC4
IC26
IC14
Содержание IC-FR3000 Series
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Страница 136: ...1 1 32 Kamiminami Hirano ku Osaka 547 0003 Japan S 13913MZ C1 2003 Icom Inc...