M67760HC [MITSUBISHI]
896-941MHz, 12.5V, 20W, FM MOBILE RADIO; 896-941MHz , 12.5V , 20W , FM RADIO移动![M67760HC](http://pdffile.icpdf.com/pdf1/p00094/img/icpdf/M67760_496786_icpdf.jpg)
型号: | M67760HC |
厂家: | ![]() |
描述: | 896-941MHz, 12.5V, 20W, FM MOBILE RADIO |
文件: | 总2页 (文件大小:34K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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MITSUBISHI RF POWER MODULE
M67760HC
896-941MHz, 12.5V, 20W, FM MOBILE RADIO
Dimensions in mm
OUTLINE DRAWING
BLOCK DIAGRAM
66±1
60±1
2
3
4
6±0.2
52±1
1
5
6
R1.5
2
R2±0.2
5
1
2
3
4
6
0.5
±0.15
4±0.2
PIN:
4.5±1
16.5±1 10.5±1 12±1 10.5±1
54±2
1
2
3
4
5
6
Pin : RF INPUT
VBB : BASE BIAS SUPPLY
VCC1: 1st. DC SUPPLY
VCC2: 2nd. DC SUPPLY
PO : RF OUTPUT
GND: FIN
H3
ABSOLUTE MAXIMUM RATINGS (Tc=25°C unless otherwise noted)
Symbol
VBB
Parameter
Conditions
Ratings
Unit
Base bias
9.5
14
V
V
VCC1
Supply voltage
Supply voltage
Total current
Input power
Output power
VBB=9V
VCC2
ZG=ZL=50W, VBB=9V
16.5
V
ICC
8.5
A
ZG=ZL=50W, VCC1£12.5V
Pin (max)
PO (max)
TC (OP)
Tstg
f=896-941MHz, ZG=ZL=50W
ZG=ZL=50W
0.8
W
W
°C
°C
25
Operation case temperature
Strage temperature
ZG=ZL=50W
-30 to +110
-40 to +110
Note. Above parameters are guaranteed independently.
ELECTRICAL CHARACTERISTICS (Tc=25°C unless otherwise noted)
Limits
Symbol
Parameter
Test conditions
Unit
MHz
W
Min
Max
941
f
Frequency range
Output power
896
VBB=9V, VCC1=VCC2=12.5V,
Pin=0.4W, ZG=ZL=50W
PO
20
hT
Total efficiency
2nd. harmonic
Input VSWR
25
%
dBc
-
VBB=9V, VCC1=VCC2=12.5V,
ZG=ZL=50W
PO=20W (Pin:controlled)
2fO
r in
-30
3
VBB=9V, VCC1=12.5V, VCC2=15.5V,
PO=20W (Pin:controlled), ZG=50W,
Load VSWR=20:1
No degradation or
destroy
-
-
Load VSWR tolerance
-
VBB=9V, f=896-902, 935-941MHz, VCC1=10
to 12.5V, VCC2=10 to 15.5V (VCC1£VCC2),
PO=0 to 20W (Pin:controlled less than 0.4W),
ZG=50W, Load VSWR£3:1 (All phase)
No oscillation more
than -60dBc
Stability
-
Note. Above parameters, ratings, limits and test conditions are subject to change.
Nov. ´97
MITSUBISHI RF POWER MODULE
M67760HC
896-941MHz, 12.5V, 20W, FM MOBILE RADIO
TYPICAL PERFORMANCE DATA
OUTPUT POWER, TOTAL EFFICIENCY
VS. FREQUENCY
OUTPUT POWER, VS. INPUT POWER
50
40
30
20
10
0
100
80
60
40
20
0
40
VCC1=VCC2=12.5V
VBB=9V
ZG=ZL=50W
f=896MHz
941MHz
30
20
10
PO
hT
VCC1=VCC2=12.5V
VBB=9V
Pin=400mW
ZG=ZL=50W
0
860 880 900 920 940 960 980
1
0
0
10
100
1000
FREQUENCY f (MHz)
INPUT POWER Pin (mW)
OUTPUT POWER, EACH CURRENT
VS. 1st. SUPPLY VOLTAGE
OUTPUT POWER, EACH CURRENT
VS. 1st. SUPPLY VOLTAGE
100
100
100
10
1
100
10
1
f=896MHz, VCC2=12.5V
VBB=9V, Pin=400mW
ZG=ZL=50W
f=941MHz, VCC2=12.5V
VBB=9V, Pin=400mW
ZG=ZL=50W
PO
PO
10
1
10
1
ICC2
ICC2
ICC1
ICC1
0.1
0.1
0.1
0.1
0
2
4
6
8
10 12 14
2
4
6
8
10 12 14
1st. SUPPLY VOLTAGE VCC1 (V)
1st. SUPPLY VOLTAGE VCC1 (V)
OUTPUT POWER, EACH CURRENT
VS. SUPPLY VOLTAGE
OUTPUT POWER, EACH CURRENT
VS. SUPPLY VOLTAGE
10
8
10
8
50
40
30
20
10
0
50
40
30
20
10
0
f=896MHz
VBB=9V
Pin=400mW
ZG=ZL=50W
f=941MHz
VBB=9V
Pin=400mW
ZG=ZL=50W
PO
PO
ICC2
ICC2
6
6
4
4
2
2
ICC1
ICC1
0
0
0
2
4
6
8
10 12 14 16 18
2
4
6
8
10 12 14 16 18
SUPPLY VOLTAGE VCC1=VCC2 (V)
SUPPLY VOLTAGE VCC1=VCC2 (V)
Nov. ´97
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