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PDF SGA-5386 Data sheet ( Hoja de datos )

Número de pieza SGA-5386
Descripción Silicon Germanium HBT Cascadeable Gain Block
Fabricantes Stanford Microdevices 
Logotipo Stanford Microdevices Logotipo



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Product Description
Stanford MicrodevicesSGA-5386 is a high performance
cascadeable 50-ohm amplifier designed for operation at
voltages as low as 3.6V. This RFIC uses the latest Silicon
Germanium Heterostructure Bipolar Transistor (SiGe HBT)
process featuring 1 micron emitters with FT up to 65 GHz.
Preliminary
SGA-5386
DC-3200 MHz Silicon Germanium
HBT Cascadeable Gain Block
This circuit uses a darlington pair topology with resistive
feedback for broadband performance as well as stability
over its entire temperature range. Internally matched to
50 ohm impedance, the SGA-5386 requires only DC
blocking and bypass capacitors for external components.
20
15
dB 10
5
0
Small Signal Gain vs. Frequency
Frequency MHz
Electrical Specifications at Ta = 25C
Product Features
DC-3200 MHz Operation
Single Voltage Supply
High Output Intercept: +31dBm typ. at 850 MHz
Low Current Draw: 60mA at 3.6V typ.
Low Noise Figure: 3.5dB typ. at 850 MHz
Applications
Oscillator Amplifiers
PA for Low Power Applications
IF/ RF Buffer Amplifier
Drivers for CATV Amplifiers
Symbol
P1dB
Parameters: Test Conditions:
Z0 = 50 Ohms, f = DC-3200MHz
Output Power at 1dB Compression
f = 850 MHz
f = 1950 MHz
Units
dBm
dBm
Min.
Typ.
17.0
14.7
Max.
S21 Small Signal Gain
f = DC-1000 MHz
f = 1000-2000 MHz
f = 2000-5000 MHz
dB 15.0 17.2
dB 16.6
dB 15.5
S12 Reverse Isolation
f = DC-1000 MHz
f = 1000-2000 MHz
f = 2000-5000 MHz
dB
dB
dB
20.8
21.2
21.2
VSWR Input VSWR
f = DC-5000 MHz
-
1.25:1
VSWR Output VSWR
f = DC-5000 MHz
-
1.25:1
IP3 Third Order Intercept Point
f = 850 MHz
f = 1950 MHz
dBm
dBm
31.0
29.0
NF Noise Figure
f = DC-1000 MHz
f = 1000-2400 MHz
dB
dB
3.5
4.0
TD Group Delay
f = 1000 MHz
pS
112.0
VD Device Voltage
V 3.1 3.6 4.1
ID Device Current
mA 60.0
The information provided herein is believed to be reliable at press time. Stanford Microdevices assumes no responsibility for inaccuracies or omissions.
Stanford Microdevices assumes no responsibility for the use of this information, and all such information shall be entirely at the user’s own risk. Prices and specifications are subject to change
without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. Stanford Microdevices does not authorize or warrant any Stanford
Microdevices product for use in life-support devices and/or systems.
Copyright 1999 Stanford Microdevices, Inc. All worldwide rights reserved.
522 Almanor Ave., Sunnyvale, CA 94086
Phone: (800) SMI-MMIC
http://www.stanfordmicro.com
Doc # EDS-100611 Rev. A

1 page




SGA-5386 pdf
20
15
dB 10
5
0
0
-10
dB -20
-30
-40
S21, Id =60mA, T=-40C
Frequency MHz
S11, Id =60mA, T=-40C
Frequency MHz
PPrreelliimmiinnaarryy
SGA-5386 DC-3200 MHz 3.5V SiGe Amplifier
0
-10
dB -20
-30
-40
S12, Id =60mA, T=-40C
Frequency MHz
0
-10
dB -20
-30
-40
S22, Id =60mA, T=-40C
Frequency MHz
S11, Id=60mA, Ta= -40C
Freq. Min = 0.1 GHz
Freq. Max = 3.2 GHz
S22, Id=60mA, Ta= -40C
Freq. Min = 0.1 GHz
Freq. Max = 3.2 GHz
The information provided herein is believed to be reliable at press time. Stanford Microdevices assumes no responsibility for inaccuracies or omissions.
Stanford Microdevices assumes no responsibility for the use of this information, and all such information shall be entirely at the users own risk. Prices and specifications are subject to change
without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. Stanford Microdevices does not authorize or warrant any Stanford
Microdevices product for use in life-support devices and/or systems.
Copyright 1999 Stanford Microdevices, Inc. All worldwide rights reserved.
522 Almanor Ave., Sunnyvale, CA 94086
Phone: (800) SMI-MMIC
http://www.stanfordmicro.com
Doc # EDS-100611 Rev. A

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