参数资料
型号: UPC3232TB-A
厂商: CEL
文件页数: 5/13页
文件大小: 0K
描述: IC MMIC AMP 6-SMINI
标准包装: 1
频率: 2.8GHz ~ 3.2GHz
P1dB: 11dBm(12.6mW)
增益: 32.8dB
噪音数据: 4dB
RF 型: DBS
电源电压: 4.5 V ~ 5.5 V
电流 - 电源: 26mA
测试频率: 1GHz
封装/外壳: 6-TSSOP,SC-88,SOT-363
包装: 散装
? PC3232TB
TEST CIRCUIT
The application circuits and their parameters are for reference only and are not intended for use in actual design-ins.
COMPONENTS OF TEST CIRCUIT FOR MEASURING
ELECTRICAL CHARACTERISTICS
Type
Value
R1
L1
L2
C1
C2
C3, C4
C5
C6
Chip Resistance
Chip Inductor
Chip Inductor
Chip Capacitor
Chip Capacitor
Chip Capacitor
Chip Capacitor
Feed-through Capacitor
560 ?
47 nH
68 nH
100 pF
33 pF
1 000 pF
39 pF
1 000 pF
INDUCTOR FOR THE OUTPUT PIN
The internal output transistor of this IC, to output medium power. To supply current for output transistor, connect
an inductor between the V CC pin (pin 3) and output pin (pin 1). Select inductance, as the value listed above.
The inductor has both DC and AC effects. In terms of DC, the inductor biases the output transistor with minimum
voltage drop to output enable high level. In terms of AC, the inductor makes output-port impedance higher to get
enough gain. In this case, large inductance and Q is suitable (Refer to the following page).
CAPACITORS FOR THE V CC , INPUT AND OUTPUT PINS
Capacitors of 1 000 pF are recommendable as the bypass capacitor for the V CC pin and the coupling capacitors
for the input and output pins.
The bypass capacitor connected to the V CC pin is used to minimize ground impedance of V CC pin. So, stable bias
can be supplied against V CC fluctuation.
The coupling capacitors, connected to the input and output pins, are used to cut the DC and minimize RF serial
impedance. Their capacitances are therefore selected as lower impedance against a 50 ? load. The capacitors
thus perform as high pass filters, suppressing low frequencies to DC.
To obtain a flat gain from 100 MHz upwards, 1 000 pF capacitors are used in the test circuit. In the case of under
10 MHz operation, increase the value of coupling capacitor such as 10 000 pF. Because the coupling capacitors are
determined by equation, C = 1/(2 ? Rfc).
Data Sheet PU10597EJ01V0DS
5
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