Kenwood TS-2000 Operation Manual - Page 115

Specifications

Page 115 highlights

SPECIFICATIONS General Mode Number of memory channels Antenna impedance Supply Voltage Grounding method Current Transmit (max.) Receive (no signal) Usable temperature range Frequency stability (-10°C ~ 50°C) Main Sub Frequency accuracy (at room temperature) Dimensions (W x H x D Projections included) Weight TS-2000 TS-B2000 TS-2000X J3E (LSB, USB)/ A1A (CW)/ A3E (AM)/ F3E (FM)/ F1D (FSK)/ F2D (F2D) 300 50Ω (with Antenna Tuner 16.7 ~ 150Ω ) DC 13.8 V ±15% Negative ground 20.5 A or less 2.6 A or less -10°C ~ 50°C (+14°F ~ 122°F) FM TX mode within ±0.5 x 10-6 ±2 kHz Other mode within ±0.5 x 10-6 (±0.5 ppm) Within ±0.5 x 10-6 ±600 Hz Within ±0.5 ppm 281 x 107 x 371 mm/ 11.06 in x 4.21 in x 14.61 in (TS-2000/ TS-2000X) 281 x 107 x 344.5 mm/ 11.06 in x 4.21 in x 13.56 in (TS-B2000) Approx. 7.8 kg/ 17.2 lb (TS-2000) Approx. 7.5 kg/ 16.6 lb (TS-B2000) Approx. 8.2 kg/ 18.1 lb Transmitter 160 m band Frequency range 80 m band 40 m band 30 m band 20 m band 17 m band 15 m band 12 m band 10 m band 6 m band 2 m band 70 cm band 23 cm band TS-2000 TS-B2000 1.8 ~ 2.0 MHz (K-type) 1.81 ~ 2.0 MHz (E-type) 1.83 ~ 1.85 MHz (E2-type) 3.5 ~ 4.0 MHz (K-type) 3.5 ~ 3.8 MHz (All E-types) 7.0 ~ 7.3 MHz (K-type) 7.0 ~ 7.2 MHz (All E-types) 10.1 ~ 10.15 MHz TS-2000X 14.0 ~ 14.35 MHz 18.068 ~ 18.168 MHz 21.0 ~ 21.45 MHz 24.89 ~ 24.99 MHz 28.0 ~ 29.7 MHz 50.0 ~ 54.0 MHz (K-type) 50.0 ~ 52.0 MHz (E-type) 50.0 ~ 50.2 MHz (E2-type) 144 ~ 148 MHz (K-type) 144 ~ 146 MHz (All E-types) 430 ~ 450 MHz (K-type) 430 ~ 440 MHz (All E-types) 1240 ~ 1300 MHz (w/ UT-20) 1240 ~ 1300 MHz 105

  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • 9
  • 10
  • 11
  • 12
  • 13
  • 14
  • 15
  • 16
  • 17
  • 18
  • 19
  • 20
  • 21
  • 22
  • 23
  • 24
  • 25
  • 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
  • 51
  • 52
  • 53
  • 54
  • 55
  • 56
  • 57
  • 58
  • 59
  • 60
  • 61
  • 62
  • 63
  • 64
  • 65
  • 66
  • 67
  • 68
  • 69
  • 70
  • 71
  • 72
  • 73
  • 74
  • 75
  • 76
  • 77
  • 78
  • 79
  • 80
  • 81
  • 82
  • 83
  • 84
  • 85
  • 86
  • 87
  • 88
  • 89
  • 90
  • 91
  • 92
  • 93
  • 94
  • 95
  • 96
  • 97
  • 98
  • 99
  • 100
  • 101
  • 102
  • 103
  • 104
  • 105
  • 106
  • 107
  • 108
  • 109
  • 110
  • 111
  • 112
  • 113
  • 114
  • 115
  • 116
  • 117
  • 118
  • 119
  • 120
  • 121
  • 122
  • 123
  • 124
  • 125
  • 126
  • 127
  • 128
  • 129
  • 130
  • 131
  • 132
  • 133
  • 134
  • 135
  • 136
  • 137
  • 138
  • 139
  • 140
  • 141
  • 142
  • 143
  • 144
  • 145
  • 146
  • 147
  • 148
  • 149
  • 150
  • 151
  • 152
  • 153
  • 154
  • 155
  • 156

105
SPECIFICATIONS
l
a
r
e
n
e
G
0
0
0
2
-
S
T
0
0
0
2
B
-
S
T
X
0
0
0
2
-
S
T
e
d
o
M
/
)
M
F
(
E
3
F
/
)
M
A
(
E
3
A
/
)
W
C
(
A
1
A
/
)
B
S
U
,
B
S
L
(
E
3
J
)
D
2
F
(
D
2
F
/
)
K
S
F
(
D
1
F
s
l
e
n
n
a
h
c
y
r
o
m
e
m
f
o
r
e
b
m
u
N
0
0
3
e
c
n
a
d
e
p
m
i
a
n
n
e
t
n
A
0
5
Ω
0
5
1
~
7
.
6
1
r
e
n
u
T
a
n
n
e
t
n
A
h
t
i
w
(
Ω
)
e
g
a
t
l
o
V
y
l
p
p
u
S
V
8
.
3
1
C
D
±
%
5
1
d
o
h
t
e
m
g
n
i
d
n
u
o
r
G
d
n
u
o
r
g
e
v
i
t
a
g
e
N
t
n
e
r
r
u
C
)
.
x
a
m
(
t
i
m
s
n
a
r
T
s
s
e
l
r
o
A
5
.
0
2
)
l
a
n
g
i
s
o
n
(
e
v
i
e
c
e
R
s
s
e
l
r
o
A
6
.
2
e
g
n
a
r
e
r
u
t
a
r
e
p
m
e
t
e
l
b
a
s
U
0
1
°
0
5
~
C
°
4
1
+
(
C
°
2
2
1
~
F
°
)
F
0
1
(
y
t
i
l
i
b
a
t
s
y
c
n
e
u
q
e
r
F
°
0
5
~
C
°
)
C
n
i
a
M
n
i
h
t
i
w
e
d
o
m
X
T
M
F
±
0
1
x
5
.
0
6
±
z
H
k
2
n
i
h
t
i
w
e
d
o
m
r
e
h
t
O
±
0
1
x
5
.
0
6
(
±
)
m
p
p
5
.
0
b
u
S
n
i
h
t
i
W
±
0
1
x
5
.
0
6
±
z
H
0
0
6
)
e
r
u
t
a
r
e
p
m
e
t
m
o
o
r
t
a
(
y
c
a
r
u
c
c
a
y
c
n
e
u
q
e
r
F
n
i
h
t
i
W
±
m
p
p
5
.
0
)
d
e
d
u
l
c
n
i
s
n
o
i
t
c
e
j
o
r
P
D
x
H
x
W
(
s
n
o
i
s
n
e
m
i
D
n
i
1
6
.
4
1
x
n
i
1
2
.
4
x
n
i
6
0
.
1
1
/
m
m
1
7
3
x
7
0
1
x
1
8
2
)
X
0
0
0
2
-
S
T
/
0
0
0
2
-
S
T
(
n
i
6
5
.
3
1
x
n
i
1
2
.
4
x
n
i
6
0
.
1
1
/
m
m
5
.
4
4
3
x
7
0
1
x
1
8
2
)
0
0
0
2
B
-
S
T
(
t
h
g
i
e
W
b
l
2
.
7
1
/
g
k
8
.
7
.
x
o
r
p
p
A
)
0
0
0
2
-
S
T
(
b
l
6
.
6
1
/
g
k
5
.
7
.
x
o
r
p
p
A
)
0
0
0
2
B
-
S
T
(
b
l
1
.
8
1
/
g
k
2
.
8
.
x
o
r
p
p
A
r
e
t
t
i
m
s
n
a
r
T
0
0
0
2
-
S
T
0
0
0
2
B
-
S
T
X
0
0
0
2
-
S
T
e
g
n
a
r
y
c
n
e
u
q
e
r
F
d
n
a
b
m
0
6
1
)
e
p
y
t
-
K
(
z
H
M
0
.
2
~
8
.
1
)
e
p
y
t
-
E
(
z
H
M
0
.
2
~
1
8
.
1
)
e
p
y
t
-
2
E
(
z
H
M
5
8
.
1
~
3
8
.
1
d
n
a
b
m
0
8
)
e
p
y
t
-
K
(
z
H
M
0
.
4
~
5
.
3
)
s
e
p
y
t
-
E
l
l
A
(
z
H
M
8
.
3
~
5
.
3
d
n
a
b
m
0
4
)
e
p
y
t
-
K
(
z
H
M
3
.
7
~
0
.
7
)
s
e
p
y
t
-
E
l
l
A
(
z
H
M
2
.
7
~
0
.
7
d
n
a
b
m
0
3
z
H
M
5
1
.
0
1
~
1
.
0
1
d
n
a
b
m
0
2
z
H
M
5
3
.
4
1
~
0
.
4
1
d
n
a
b
m
7
1
z
H
M
8
6
1
.
8
1
~
8
6
0
.
8
1
d
n
a
b
m
5
1
z
H
M
5
4
.
1
2
~
0
.
1
2
d
n
a
b
m
2
1
z
H
M
9
9
.
4
2
~
9
8
.
4
2
d
n
a
b
m
0
1
z
H
M
7
.
9
2
~
0
.
8
2
d
n
a
b
m
6
)
e
p
y
t
-
K
(
z
H
M
0
.
4
5
~
0
.
0
5
)
e
p
y
t
-
E
(
z
H
M
0
.
2
5
~
0
.
0
5
)
e
p
y
t
-
2
E
(
z
H
M
2
.
0
5
~
0
.
0
5
d
n
a
b
m
2
)
e
p
y
t
-
K
(
z
H
M
8
4
1
~
4
4
1
)
s
e
p
y
t
-
E
l
l
A
(
z
H
M
6
4
1
~
4
4
1
d
n
a
b
m
c
0
7
)
e
p
y
t
-
K
(
z
H
M
0
5
4
~
0
3
4
)
s
e
p
y
t
-
E
l
l
A
(
z
H
M
0
4
4
~
0
3
4
d
n
a
b
m
c
3
2
z
H
M
0
0
3
1
~
0
4
2
1
)
0
2
-
T
U
/
w
(
z
H
M
0
0
3
1
~
0
4
2
1