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Kenwood TK-701S User Manual

Kenwood TK-701S
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4.
CIRCUIT
DESCRIPTION
1.
TX
(Transmitter)
The
VHF
signal
fed
from
the
PLL
unit
is
apmlified
at
each
stage
from
Q1
(2SC2570A)
through
04
(28C2630)
and
is
fed
to
the
triple
seciton
Low
Pass
Filter
(LPF).
More
or
less
than
50W
is
then
obtained
at
the
antenna
terminal.
For
harmonics,
both
2nd
f
and
3rd
f
provide
better
than—70
dB.
8~|10dBm
TK-701:
The
signal
detected
at
the
04
(2SC2630)
output
var-
ies
the
applied
voltage
of
Q3
(2SC2539)
and
Q2
(2SC2538).
This
controls
the
antenna
output
from
20W
to
50W.
This
APC
circuit
is
similar
to
that
of
the
TK-801.
If
the
final
transistor
temperature
rises
abnormally,
the
temperature
protection
activates
to
reduce
the
thermistor
TH
1
resistance.
This
reduces
the
standard
voltage
of
the
APC
circuit
and
that
of
the
Q6
(2SB946)
to
reduce
the
out-
put
power.
LPF
-idB
Fig.
4-1
Transmitter
Block
Diagram
2.
RX
(Receiver)
Receiver
input
supplied
through
the
antenna
terminal
passes
through
the
low
pass
filter
and
antenna
switching
circuit,
and
is
initially
VHF-filtered
by
BPF
assembly
(L20,
21).
The
filtered
signal
is
RF
amplified
by
Q10:
2SK241(GR)-1
and
is
further
filtered
by
BPF
L23
and
L24.
This
is
then
input
to
the
1st
mixer
Q11:
2SK125-4.
The
1st
oscillator
injection
signal
is
supplied
from
the
PLL
unit
to
the
RXO
input.
This
is
multiplied
by
,
filtered
by
BPF:
L18,L19,
and
coupled
to
the
1st
mixer
O11:
2SK125-4.
4-1
The
ist
IF
signal
frequency
(21.4
MHz)
cutput
from
the
1st
mixer
is
filtered
by
Monolithic
Crystal
filter
(MCF)
Z27
and
Z28:
21F15B,
and
is
post-amplified
by
Q12:
2SK241(GR)-1.
This
is
coupled
to
U13:
MC3359P
which
contains
the
2nd
local
oscillator,
mixer,
2nd
IF
amp,
qua-
drature
detector,
noise
amp
and
squelch
switch
The
2nd
local
osc
operates
at
20.945
MHzto
convert
the
1st
IF
from
21.4
MHz
to
the
2nd
IF
at
45§k
Hz.
This
2nd
IF
signal
is
filtered
by
ceramic
filter
231:
C'W455D,
is
limiter
amplified,
and
is
then
quadrature
detected.

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Kenwood TK-701S Specifications

General IconGeneral
BrandKenwood
ModelTK-701S
CategoryTwo-Way Radio
LanguageEnglish

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