SNA-576-TR1 STANFORD [Stanford Microdevices], SNA-576-TR1 Datasheet

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SNA-576-TR1

Manufacturer Part Number
SNA-576-TR1
Description
DC-3 GHz, Cascadable GaAs MMIC Amplifier
Manufacturer
STANFORD [Stanford Microdevices]
Datasheet
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.
Product Description
Stanford Microdevices’ SNA-576 is a GaAs monolithic
broadband amplifier housed in a low-cost stripline ceramic
package. This amplifier provides 19dB of gain when biased
at 70mA and 5.0V.
External DC decoupling capacitors determine low fre-
quency response. The use of an external resistor allows
for bias flexibility and stability.
These unconditionally stable amplifiers are designed for
use as general purpose 50 ohm gain blocks. Also
available in chip form (SNA-500), its small size (0.4mm x
0.4mm) and gold metallization make it an ideal choice for
use in hybrid circuits.
The SNA-576 is available in tape and reel at 1000, 3000 and
5000 devices per reel.
522 Almanor Ave., Sunnyvale, CA 94086
Electrical Specifications at Ta = 25C
S y m b o l
B W 3 d B
V S W R
d G / d T
d V / d T
P
I S O L
G
N F
I P
V D
G
T
1 d B
D
P
F
3
dB
22
20
18
16
14
12
P a r a m e t e r s : T e s t C o n d i t i o n s :
I d = 7 0 m A , Z
S m a l l S i g n a l P o w e r G a i n
G a i n F l a t n e s s
3 d B B a n d w i d t h
O u t p u t P o w e r a t 1 d B C o m p r e s s i o n
N o i s e F i g u r e
I n p u t / O u t p u t
T h i r d O r d e r I n t e r c e p t P o i n t
G r o u p D e l a y
R e v e r s e I s o l a t i o n
D e v i c e V o l t a g e
D e v i c e G a i n T e m p e r a t u r e C o e f f i c i e n t
D e v i c e V o l t a g e T e m p e r a t u r e C o e f f i c i e n t
0.1
Output Power vs. Frequency
1
0
2
= 5 0 O h m s
GHz
3
4
Phone: (800) SMI-MMIC
5
5-73
f = 0 . 1 - 1 . 0 G H z
f = 1 . 0 - 2 . 0 G H z
f = 2 . 0 - 3 . 0 G H z
f = 0 . 1 - 2 . 0 G H z
f = 2 . 0 G H z
f = 2 . 0 G H z
f = 0 . 1 - 8 . 0 G H z
f = 2 . 0 G H z
f = 2 . 0 G H z
f = 0 . 1 - 8 . 0 G H z
SNA-576
DC-3 GHz, Cascadable
GaAs MMIC Amplifier
Product Features
Applications
Cascadable 50 Ohm Gain Block
Operates From Single Supply
19dB Gain, +18dBm P1dB
1.5:1 Input and Output VSWR
Low Cost Stripline Mount Ceramic Package
Narrow and Broadband Linear Amplifiers
Commercial and Industrial Applications
Hermetically Sealed
m V / d e g C
d B / d e g C
U n i t s
p s e c
G H z
d B m
d B m
d B
d B
d B
d B
d B
d B
V
M i n .
1 8 . 0
1 6 . 0
1 5 . 0
4 . 3
http://www.stanfordmicro.com
- 0 . 0 0 2 7
+ / - 1 . 0
1 . 5 : 1
T y p .
2 0 . 0
1 8 . 0
1 7 . 0
1 8 . 0
3 4 . 0
- 5 . 0
1 2 0
2 2 . 0
3 . 0
4 . 2
5 . 0
M a x .
5 . 0
5 . 7

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SNA-576-TR1 Summary of contents

Page 1

... Also available in chip form (SNA-500), its small size (0.4mm x 0.4mm) and gold metallization make it an ideal choice for use in hybrid circuits. The SNA-576 is available in tape and reel at 1000, 3000 and 5000 devices per reel. Output Power vs. Frequency 22 ...

Page 2

... SNA-576 DC-3 GHz Cascadable MMIC Amplifier Typical Performance (Vds = 5.0V, Ids = 70mA) |S11| vs. Frequency -10 -15 -20 0 GHz |S12| vs. Frequency 0 -5 -10 dB -15 -20 -25 0 GHz Noise Figure vs. Frequency 0.1 1 GHz Typical S-Parameters Vds = 5.0V, Ids = 70mA Freq GHz |S11| S11 Ang ...

Page 3

... GHz 522 Almanor Ave., Sunnyvale, CA 94086 SNA-576 DC-3 GHz Cascadable MMIC Amplifier Part Number Ordering Information Part Number SNA-576-TR1 SNA-576-TR2 SNA-576-TR3 Supply Voltage(Vs) Rbias (Ohms) * Needs active biasing for constant current source Typical Performance Device Voltage vs. Current - Id 6 5.5 Vdc ...

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