AN26072A
13
Ver. BEB
*1dB6.56
High-Gain mode
f = fRXd
S11HAdInput Return Loss HG
*1dB2116
Low-Gain mode
f = fRXd
S11LAdInput Return Loss LG
*1dB117
High-Gain mode
f = fRXd
S22HAdOutput Return Loss HG
*1dBm–9.5–13.5
High-Gain mode
f = fRXd
IP1dBHAdInput P1dB
*1dB–0.4–0.9
Low-Gain mode
f = fRXd
ISOAdReverse Isolation LG
*1dB2015
Low-Gain mode
f = fRXd
S22LAdOutput Return Loss LG
*1dB–19–25
High-Gain mode
f = fRXd
ISOHAdReverse Isolation HG
*1dBm–1–10.5
High-Gain mode
f1 = fRXd + 10 MHz
f2 = fRXd + 20 MHz
Input 2 signals (f1, f2)
IIP3H1Ad
IIP3
+10 MHz offset HG
Low-Gain mode
f = fRXd
Low-Gain mode
f = fRXd, PRX = –20
dBm
*1,*5dB1.71.2
High-Gain mode
f = fRXd
NFHAdNoise Figure HG
*1dB3.11.4NFLAdNoise Figure LG
LNA AC electrical characteristics
*1dB17.214.5
12.7
High-Gain mode
f = fRXd
GHAdPower Gain HG
*1dB–0.9–1.4GLAdPower Gain LG
Reference values
Typ
Unit
Max
Note
Min
Condition SymbolParameter
Notes) Vcc = 2.5 V
Ta = 25°C±2°C, fRXd = 90 MHz, 99 MHz, 108 MHz, PRX = –30 dBm, CW unless otherwise specified.
APPLICATION INFORMATION (continued)
REFERENCE VALUES FOR DESIGN (continued)
Note) *1 : Checked by design, not production tested.
*5 : Connector & pattern (evaluation PCB) loss 0.02dB included.
AN26072A
14
Ver. BEB
*1dB76
High-Gain mode
f = fRXd
S11HBdInput Return Loss HG
*1dB2015
Low-Gain mode
f = fRXd
S11LBdInput Return Loss LG
*1dB167
High-Gain mode
f = fRXd
S22HBdOutput Return Loss HG
*1dBm–12.5–16.5
High-Gain mode
f = fRXd
IP1dBHBdInput P1dB
*1dB–0.6–1.1
Low-Gain mode
f = fRXd
ISOLBdReverse Isolation LG
*1dB1914
Low-Gain mode
f = fRXd
S22LBdOutput Return Loss LG
*1dB–19–25
High-Gain mode
f = fRXd
ISOHBdReverse Isolation HG
*1dBm–1–11
High-Gain mode
f1 = fRXd + 10 MHz
f2 = fRXd + 20 MHz
Input 2 signals (f1, f2)
IIP3H1Bd
IIP3
+10 MHz offset HG
Low-Gain mode
f = fRXd
Low-Gain mode
f = fRXd, PRX = –20
dBm
*1,*5dB1.71.2
High-Gain mode
f = fRXd
NFHBdNoise Figure HG
*1dB3.31.6NFLBdNoise Figure LG
LNA AC electrical characteristics
*1dB16.914.7
12.9
High-Gain mode
f = fRXd
GHBdPower Gain HG
*1dB–1.1–1.6GLBdPower Gain LG
Reference values
Typ
Unit
Max
Note
Min
Condition SymbolParameter
APPLICATION INFORMATION (continued)
REFERENCE VALUES FOR DESIGN (continued)
Notes) Vcc = 1.8 V
Ta = 25°C±2°C, fRXd = 90 MHz, 99 MHz, 108 MHz, PRX = –30 dBm, CW unless otherwise specified.
Note) *1 : Checked by design, not production tested.
*5 : Connector & pattern (evaluation PCB) loss 0.02dB included.
AN26072A
15
Ver. BEB
*1μA111
Current at CNT pin
VIHT = Vcc
IIHTSW current (High)
Vcc current at Low-Gain mode
No input signal
*1V2.501.50VIHT
Input voltage
(High-Gain mode)
*1V0.400.0VILT
Input voltage
(Low-Gain mode)
DC electrical characteristics
*1mA8.25.7
Vcc current at High-Gain mode
No input signal
IccHTSupply current HG
*1μA111IccLTSupply current LG
Reference values
Typ
Unit
Max
Note
Min
Condition SymbolParameter
Notes) Vcc = 1.7 V to 3.0 V
Ta = –20°C to 70°C
APPLICATION INFORMATION (continued)
REFERENCE VALUES FOR DESIGN (continued)
Note) *1 : Checked by design, not production tested.

AN26072A-NL

Mfr. #:
Manufacturer:
Panasonic
Description:
RF Amplifier LNA VHF/UHF 1.8-2.5V 14.5dB SSMINI-5DC
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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