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SNA-676-TR1 PDF预览

SNA-676-TR1

更新时间: 2024-11-29 22:21:35
品牌 Logo 应用领域
STANFORD 放大器
页数 文件大小 规格书
3页 92K
描述
DC-6.5 GHZ , CASCADABLE GAAS MMIC AMPLIFIER

SNA-676-TR1 数据手册

 浏览型号SNA-676-TR1的Datasheet PDF文件第2页浏览型号SNA-676-TR1的Datasheet PDF文件第3页 
Product Description  
SNA-676  
Stanford Microdevices’ SNA-676 is a high-performance  
GaAs Heterojunction Bipolar Transistor (MMIC) housed in a  
low-cost surface mountable stripline package. A Darlington  
configuration is utilized for broadband performance to 6.5  
GHz.  
DC-6.5 GHz, Cascadable  
GaAs MMIC Amplifier  
These unconditionally stable amplifiers provide 11dB of gain  
and +18dBm of P1dB when biased at 5.7V and 70mA. This  
MMIC requires only a single suply voltage. The use of an  
external resistor allows for bias flexibility and stability.  
Also available in chip form (SNA-600), its small size (0.4mm  
x 0.4mm) and gold metallization make it an ideal choice for  
use in hybrid circuits.  
Product Features  
Cascadable 50 Ohm Gain Block  
11dB Gain, +18dBm P1dB  
The SNA-676 is available in tape and reel at 1000, 3000 and  
5000 devices per reel.  
High Linearity, +36dBm TOIP Typ.  
1.5:1 Input and Output VSWR  
Operates From a Single DC Supply  
Low Cost Stripline Mount Ceramic Package  
Output Power vs. Frequency  
22  
20  
18  
dBm  
16  
14  
12  
Applications  
0.1  
1
2
3
4
5
6
7
8
Narrow and Broadband Linear Amplifiers  
Commercial and Industrial Applications  
GHz  
Electrical Specifications at Ta = 25C  
P a r a m e t e r s : T e s t C o n d it io n s :  
Id 7 0 m A , Z 0 5 0 O h m s  
S y m b o l  
U n it s  
M in .  
T y p .  
M a x .  
=
=
f
f
=
=
0 .1 - 4 .0 G H z  
4 .0 - 6 .5 G H z  
d B  
d B  
9 .0  
8 .0  
11 .0  
9 .0  
S m a ll S ig n a l G a in  
3 d B B a n d w id th  
G
P
B W 3 d B  
P 1 d B  
G H z  
d B m  
6 .5  
f
f
=
=
0 .1 - 2 .0 G H z  
2 .0 - 6 .5 G H z  
1 8 .0  
1 6 .0  
O u tp u t P o w e r a t 1 d B C o m p re s s io n  
N o is e F ig u r e  
f
f
=
=
0 .1 - 4 .0 G H z  
4 .0 - 6 .5 G H z  
7 .5  
8 .5  
N F  
d B  
V S W R  
IP 3  
In p u t  
/
O u tp u t  
f
f
=
=
0 .1 - 6 .5 G H z  
0 .1 - 2 .0 G H z  
1 .5 :1  
3 6 .0  
T h ir d O r d e r In te r c e p t P o in t  
d B m  
G r o u p D e la y  
f
f
=
=
2 .0 G H z  
p s e c  
d B  
1 2 0  
1 7 .0  
T D  
IS O L  
V D  
R e v e r s e Is o la tio n  
D e v ic e V o lta g e  
0 .1 - 6 .5 G H z  
V
4 .8  
5 .7  
6 .8  
d G /d T  
d V /d T  
d B /d e g C  
m V /d e g C  
- 0 .0 0 2 3  
- 5 .0  
D e v ic e  
Te m p e r a tu r e C o e ffic ie n t  
G a in  
D e v ic e V o lta g e Te m p e r a tu r e C o e ffic ie n t  
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  
5-89  

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