MGA-62563-TR1G RF Amplifier 3 SV 22 dB

Short Description:

Manufacturers:onsemi

Product Category:Broadcom Limited

Data Sheet:MGA-62563-TR1G 

Description:IC AMP 100MHZ-3GHZ SOT363 SC70

RoHS status:RoHS Compliant


Product Detail

Features

Product Tags

♠ Product Description

Product Attribute Attribute Value
Manufacturer: Broadcom Limited
Product Category: RF Amplifier
RoHS:  Details
Mounting Style: SMD/SMT
Package / Case: SOT-363-6
Type: Driver Amplifiers
Technology: GaAs
Operating Frequency: 100 MHz to 3.5 GHz
P1dB - Compression Point: 17.8 dBm
Gain: 22 dB
Operating Supply Voltage: 3 V
NF - Noise Figure: 0.9 dB
OIP3 - Third Order Intercept: 32.9 dBm
Operating Supply Current: 62 mA
Maximum Operating Temperature: + 150 C
Packaging: Reel
Packaging: Cut Tape
Packaging: MouseReel
Brand: Broadcom / Avago
Number of Channels: 1 Channel
Pd - Power Dissipation: 600 mW
Product Type: RF Amplifier
Factory Pack Quantity: 3000
Subcategory: Wireless & RF Integrated Circuits
Supply Voltage - Max: 3.3 V
Supply Voltage - Min: 2.7 V
Test Frequency: 500 MHz
Unit Weight: 0.000265 oz

♠ MGA-62563 Current-Adjustable, Low Noise Amplifi er

Avago’s MGA-62563 is an economical, easy-to-use GaAs MMIC amplifi er that off ers excellent linearity and low noise fi gure for applications from 0.1 to 3.5 GHz. Packaged in an miniature SOT-363 package, it requires half the board space of a SOT-143 package.

One external resistor is used to set the bias current taken by the device over a wide range. This allows the designer to use the same part in several circuit positions and tailor the linearity performance (and current consumption) to suit each position.

The output of the amplifi er is matched to 50 (below 2:1 VSWR) across the entire bandwidth and only requires minimum input matching. The amplifi er allows a wide dynamic range by off ering a 0.9 dB NF coupled with a +32.9 dBm Output IP3. The circuit uses state-of-the-art E-pHEMT technology with proven reliability. On-chip bias circuitry allows operation from a single +3V power supply, while internal feedback ensures stability (K>1) over all frequencies.


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