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A513 Datasheet, PDF (1/2 Pages) Tyco Electronics – 10 TO 500 MHz TO-8 CASCADABLE AMPLIFIER
A513 / SMA513
Cascadable Amplifier
10 to 500 MHz
Rev. V3
Features
• HIGH LINEARITY IP3: +30 dBm (TYP.)
IP2: +50 dBm (TYP.)
• HIGH GAIN: 20 dB (TYP.)
• LOW VSWR: 1.4:1 (TYP.)
Product Image
Description
The A513 RF amplifier is a discrete thin film hybrid design,
which incorporates the use of thin film manufacturing
processes for accurate performance and high reliability.
This single stage bipolar transistor feedback amplifier design
displays impressive performance over a broadband frequency
range. An active DC biasing network is used for temperature-
stable performance, in addition to an RF Choke, used for power
supply decoupling.
Both TO-8 and Surface Mount packages are hermetically sealed,
and MIL-STD-883 environmental screening is available.
Ordering Information
Part Number
A513
SMA513
CA513 **
Package
TO-8
Surface Mount
SMA Connectorized
** The connectorized version is not RoHs compliant.
Electrical Specifications: Z0 = 50Ω, VCC = +12 VDC
Absolute Maximum Ratings
Parameter
Frequency
Small Signal Gain (min)
Gain Flatness (max)
Reverse Isolation
Noise Figure (max)
Power Output
@ 1 dB comp. (min)
IP3
Units
MHz
dB
dB
dB
dB
dBm
dBm
Typical
25ºC
10-500
20.0
±0.3
25
5.5
18.0
+30
Guaranteed
0º to 50ºC -54º to +85ºC*
10-500
10-500
17.0
17.0
±0.5
±1.0
6.0
6.5
17.5
17.0
Parameter
Absolute
Maximum
Storage Temperature -62ºC to +125ºC
Case Temperature
125ºC
DC Voltage
+18 V
Continuous Input Power
+13 dBm
Short Term Input power
(1 minute max.)
50 mW
Peak Power (3 µsec max.)
0.5 W
“S” Series Burn-In
Temperature (case)
125ºC
Thermal Data: VCC = +12 VDC
IP2
dBm
+50
Parameter
Rating
Second Order Harmonic IP dBm
+56
Thermal Resistance θjc
55ºC/W
VSWR Input / Output (max)
DC Current @ 12 Volts (max) mA
1.4:1 / 1.4:1 1.6:1 / 1.6:1
120
130
1.6:1 / 1.6:1
130
Transistor Power Dissipation Pd
Junction Temperature Rise
Above Case Tjc
1.0 W
55ºC
* Over temperature performance limits for part number CA513, guaranteed from 0oC to +50oC only.
1
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is considering for development. Performance is based on target specifications, simulated results,
and/or prototype measurements. Commitment to develop is not guaranteed.
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Solutions has under development. Performance is based on engineering tests. Specifications are
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changes to the product(s) or information contained herein without notice.