TMD1414-2C Toshiba, TMD1414-2C Datasheet

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TMD1414-2C

Manufacturer Part Number
TMD1414-2C
Description
Manufacturer
Toshiba
Datasheet

Specifications of TMD1414-2C

Pin Count
6
Lead Free Status / Rohs Status
Supplier Unconfirmed

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MICROWAVE SEMICONDUCTOR
TECHNICAL DATA
FEATURES
n HIGH POWER
n HIGH GAIN
ABSOLUTE MAXIMUM RATINGS ( Ta= 25 C )
RF PERFORMANCE SPECIFICATIONS ( Ta= 25 C )
uThe information contained herein is presented only as a guide for the applications of our products. No responsibility is
1dB Gain Compression
Point
Drain Supply Voltage
Gate Supply Voltage
Input Power
Flange Temperature
Storage Temperature
Operating Frequency
Output Power at 1dB Gain
Compression Point
Gain Flatness
Drain Current
Power Added Efficiency
assumed by TOSHIBA for any infringements of patents or other rights of the third parties which may results from its use,
No license is granted by implication or otherwise under any patent or patent rights of TOSHIBA or others.
The information contained herein is subject to change without prior notice. It is therefor advisable to contact TOSHIBA
before proceeding with design of equipment incorporating this product.
P1dB=34.5dBm at 13.75GHz to 14.5GHz
G1dB=26.0dB at 13.75GHz to 14.5GHz
CHARACTERISTICS
CHARACTERISTICS
SYMBOL
G1dB
P
IDD
add
1dB
f
G
MICROWAVE POWER MMIC AMPLIFIER
SYMBOL
CONDITIONS
V
V
VGG=-5V
T
n BROAD BAND INTERNALLY MATCHED
n HERMETICALLY SEALED PACKAGE
VDD=7V
P
T
GG
DD
stg
in
f
TMD1414-2C
UNIT
dBm
UNIT
GHz
dBm
dB
dB
V
V
%
C
C
A
13.75
MIN.
32.0
21.0
-65
-40
TYP. MAX.
Rev. Mar.2006
34.5
26.0
RATING
1.4
29
-10
10
20
+175
+90
14.5
1.8
1.0

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TMD1414-2C Summary of contents

Page 1

... MICROWAVE POWER MMIC AMPLIFIER n BROAD BAND INTERNALLY MATCHED n HERMETICALLY SEALED PACKAGE SYMBOL stg SYMBOL CONDITIONS f P 1dB G1dB VDD=7V VGG=-5V G IDD add TMD1414-2C UNIT RATING -10 dBm 20 C -40 +90 C -65 +175 UNIT MIN. TYP. MAX. GHz 13.75 dBm 32.0 34.5 dB 21.0 26 ...

Page 2

... Recommended Bias Configuration 10k 2:RF Input 50ΩMatching 1:VGG 47μF TMD1414- 2.0 0.5 0.2 6:Vdet 0.5-1pF TMD1414-2C 0.5pF 1000pF 2 Unit :VGG Input lm : VDD Output o : Vdet Two VDD pins do not have to be biased at the same time, but at least one of the pins has to be biased ...

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