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UPC2710TB Datasheet(PDF) 6 Page - NEC

Part # UPC2710TB
Description  5 V, SUPER MINIMOLD SILICON MMIC MEDIUM OUTPUT POWER AMPLIFIER
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Manufacturer  NEC [NEC]
Direct Link  http://www.nec.com/
Logo NEC - NEC

UPC2710TB Datasheet(HTML) 6 Page - NEC

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Data Sheet P13443EJ3V0DS
6
µµµµPC2710TB
TEST CIRCUIT
VCC
1 000 pF
1 000 pF
1 000 pF
C1
C2
L
4
6
1
2, 3, 5
50
50
OUT
IN
C3
COMPONENTS OF TEST CIRCUIT
FOR MEASURING ELECTRICAL
CHARACTERISTICS
EXAMPLE OF ACTURAL APPLICATION COMPONENTS
Type
Value
Type
Value
Operating Frequency
C1, C2
Bias Tee
1 000 pF
C1 to C3
Chip Capacitor
1 000 pF
100 MHz or higher
C3
Capacitor
1 000 pF
300 nH
10 MHz or higher
L
Bias Tee
1 000 nH
100 nH
100 MHz or higher
L
Chip Inductor
10 nH
1.0 GHz or higher
INDUCTOR FOR THE OUTPUT PIN
The internal output transistor of this IC consumes 20 mA, to output medium power. To supply current for output
transistor, connect an inductor between the VCC pin (pin 6) and output pin (pin 4). Select large value inductance, as
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 make output-port impedance higher to get
enough gain. In this case, large inductance and Q is suitable.
CAPACITORS FOR THE VCC, INPUT AND OUTPUT PINS
Capacitors of 1000 pF are recommendable as the bypass capacitor for the VCC pin and the coupling capacitors for
the input and output pins.
The bypass capacitor connected to the VCC pin is used to minimize ground impedance of VCC pin. So, stable bias
can be supplied against VCC fluctuation.
The coupling capacitors, connected to the input and output pins, are used to cut the DC and minimize RF serial
impedance. Their capacitance are therefore selected as lower impedance against a 50
Ω load. The capacitors thus
perform as high pass filters, suppressing low frequencies to DC.
To obtain a flat gain from 100 MHz upwards, 1000 pF capacitors are used in the test circuit. In the case of under
10 MHz operation, increase the value of coupling capacitor such as 10000 pF. Because the coupling capacitors are
determined by equation, C = 1/(2
πRfc).


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