AN26031A
4
Ver. AEB
*1dB14.59.5Low-Gain modeS22LaOutput Return Loss LG
*1dBm–8.5–12High-Gain modeIP1dBHaInput P1dB HG
*1dBm24.510
Low-Gain mode
f1 = fRXa
f2 = fRXa + 100 kHz
Input 2 signals (f1, f2)
IIP3La
IIP3
+100 kHz offset LG
*1dBm80Low-Gain modeIP1dBLaInput P1dB LG
*1dB3126High-Gain modeISOHaReverse Isolation HG
*1dB74.5Low-Gain modeISOLaReverse Isolation LG
*1dB1610High-Gain modeS11HaInput Return Loss HG
*1dB8.57Low-Gain modeS11LaInput Return Loss LG
*1dB1910High-Gain modeS22HaOutput Return Loss HG
*1dBm2.5–2.5
High-Gain mode
f1 = fRXa – 10 MHz
f2 = fRXa – 20 MHz
Input 2 signals (f1, f2)
IIP3H1a
IIP3
–10 MHz offset HG
*1dBm2.0–2.5
High-Gain mode
f1 = fRXa + 10 MHz
f2 = fRXa + 20 MHz
Input 2 signals (f1, f2)
IIP3H2a
IIP3
+10 MHz offset HG
*1
dB–5–7–9
Low-Gain mode
PRX = –20 dBm
GLaPower Gain LG
*1dB20.518.516.1High-Gain modeGHaPower Gain HG
*1,*2dB9.57Low-Gain modeNFLaNoise Figure LG
AC electrical characteristics
*1,*2dB1.450.95High-Gain modeNFHaNoise Figure HG
Reference values
Typ
Unit
Max
Note
Min
Condition SymbolParameter
APPLICATION INFORMATION
REFERENCE VALUES FOR DESIGN
Notes) Vcc= 3.0 V
Ta = 25 °C ± 2 °C, fRXa= 2.3 GHz, 2.5 GHz, 2.7 GHz, PRX = –30 dBm, CW unless otherwise specified.
Performance based on application circuit 1 on page 9
Note) *1 : Checked by design, not production tested.
*2 : RF input Connector & substrate loss (0.14 dB) included.
AN26031A
5
Ver. AEB
*1μA187.5
Vcc current at Low-Gain mode
No input signal
IccLTSupply current LG
*1μA3519
Current at CNT pin
VIH = Vcc
IIHTSW current (High)
DC electrical characteristics
*1mA11.57.5
Vcc current at High-Gain mode
No input signal
IccHTSupply current HG
Reference values
Typ
Unit
Max
Note
Min
Condition SymbolParameter
APPLICATION INFORMATION (Continued)
REFERENCE VALUES FOR DESIGN (Continued)
Notes) Vcc = 2.7V to 3.6 V , Ta = -40 °C to 85 °C unless otherwise specified.
Performance based on application circuit 1 on page 9
Note) *1 : Checked by design, not production tested.
AN26031A
6
Ver. AEB
APPLICATION INFORMATION (Continued)
REFERENCE VALUES FOR DESIGN (Continued)
Notes) Vcc= 2.7 V to 3.6 V
Ta = –40 °C to 85 °C, fRXa = 2.3 GHz, 2.5 GHz, 2.7 GHz, PRX = –30 dBm, CW unless otherwise specified.
Performance based on application circuit 1 on page 9
*1dBm–8.5–14.5High-Gain modeP1dBHTaInput P1dB HG
*1dBm2.5–5
High-Gain mode
f1 = fRXa – 10 MHz
f2 = fRXa – 20 MHz
Input 2 signals (f1, f2)
IIP3H1Ta
IIP3
–10 MHz offset HG
*1dBm2–5
High-Gain mode
f1 = fRXa + 10 MHz
f2 = fRXa + 20 MHz
Input 2 signals (f1, f2)
IIP3H2Ta
IIP3
+10 MHz offset HG
*1dB–4–7–10
Low-Gain mode
PRX = –20 dBm
GLTaPower Gain LG
*1dB2218.514.6High-Gain modeGHTaPower Gain HG
*1,*2dB10.57Low-Gain modeNFLTaNoise Figure LG
AC electrical characteristics
*1,*2dB1.90.95High-Gain modeNFHTaNoise Figure HG
Reference values
Typ
Unit
Max
Note
Min
Condition SymbolParameter
Note) *1 : Checked by design, not production tested.
*2 : RF input Connector & substrate loss (0.14 dB) included.

AN26031A-EVB-0

Mfr. #:
Manufacturer:
Panasonic
Description:
Other Development Tools LNA Eval Board for AN26031A-NL
Lifecycle:
New from this manufacturer.
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