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UPC8130TA Datasheet(PDF) 38 Page - NEC

Part No. UPC8130TA
Description  VARIABLE GAIN AMPLIFIER SILICON MMIC FOR TRANSMITTER AGC OF DIGITAL CELLULAR TELEPHONE
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Maker  NEC [NEC]
Homepage  http://www.nec.com/
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UPC8130TA Datasheet(HTML) 38 Page - NEC

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38
µµµµPC8119T, µµµµPC8120T
Output port matching at f = 1440 MHz
1.440.000 000 MHz
S21 log MAG
START 100.000 000 MHz
STOP 3 100.000 000 MHz
5 dB/
REF 0 dB
1: –12.908 dB
10
0
–10
–20
–30
1.440.000 000 MHz
S12 log MAG
START 100.000 000 MHz
STOP 3 100.000 000 MHz
5 dB/
REF 0 dB
1: –34.801 dB
0
–10
–20
–30
–40
–50
1.440.000 000 MHz
S11 log MAG
START 100.000 000 MHz
STOP 3 100.000 000 MHz
5 dB/
REF 0 dB
1: –6.1639 dB
10
0
–10
–20
–30
10
0
–10
–20
–30
1.440.000 000 MHz
S22 log MAG
START 100.000 000 MHz
STOP 3 100.000 000 MHz
5 dB/
REF 0 dB
1: –23.731 dB
POWER GAIN vs. GAIN CONTROL VOLTAGE
Gain Control Voltage VAGC (V)
+20
+10
0
–10
–20
–30
–40
POWER GAIN vs. GAIN CONTROL VOLTAGE
Gain Control Voltage VAGC (V)
+20
+10
0
–10
–20
–30
–40
0.5
0
1
1.5
2
2.5
3
3.5
0.5
0
1
1.5
2
2.5
3
3.5
VCC = 3.0 V
TA = +75
°C
TA = +25
°C
TA = +25
°C
TA = +75
°C
TA = –25
°C
TA = –25
°C
VCC = 3.3 V
VCC = 2.7 V
S21 vs. FREQUENCY DEPENDENCE OF GAIN
CONTROL VOLTAGE
Vcc = 3.0 V, Pin = –30 dBm
S12 vs. FREQUENCY DEPENDENCE OF GAIN
CONTROL VOLTAGE
Vcc = 3.0 V, Pin = –30 dBm
S11 vs. FREQUENCY DEPENDENCE OF GAIN
CONTROL VOLTAGE
Vcc = 3.0 V, Pin = –30 dBm
S22 vs. FREQUENCY DEPENDENCE OF GAIN
CONTROL VOLTAGE
Vcc = 3.0 V, Pin = –30 dBm
1
VAGC = 3.0 V
VAGC = 2.0 V
VAGC = 1.9 V
VAGC = 1.8 V
VAGC = 1.7 V
VAGC = 1.6 V
VAGC = 1.5 V
VAGC = 1.4 V
VAGC = 1.3 V
VAGC = 1.2 V
VAGC = 1.1 V
VAGC = 0 to 1.2 V
VAGC = 1.4 V
VAGC = 1.6 V
VAGC = 0 to 0.9 V
VAGC = 2.3 to 3.0 V
VAGC = 1.35 V
VAGC = 1.6 V
VAGC = 1.8 V
VAGC = 2.2 to 3.0 V
VAGC = 3.0 V
VAGC = 0 V
VAGC = 1.0 V
VAGC = 0.9 V
VAGC = 0 V
1
MARKER 1
1.44 GHz
MARKER 1
1.44 GHz
MARKER 1
1.44 GHz
1
µµµµPC8120T


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