MACOM Gain Block A34

Description
RF amplifier is a discrete hybrid design, which uses thin film manufacturing processes for consistent performance and high reliability. This 2 stage bipolar transistor feedback amplifier design displays impressive performance over a broadband frequency range. An active DC biasing network insures temperature-stable performance. TO-8 package is hermetically sealed, and MIL-STD-883 environmental screening is available.
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Description
RF amplifier is a discrete hybrid design, which uses thin film manufacturing processes for consistent performance and high reliability. This 2 stage bipolar transistor feedback amplifier design displays impressive performance over a broadband frequency range. An active DC biasing network insures temperature-stable performance. TO-8 package is hermetically sealed, and MIL-STD-883 environmental screening is available.
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Suppliers

Company
Product
Description
Supplier Links
Gain Block - A34 - Richardson RFPD
Downers Grove, IL, United States
Gain Block
A34
Gain Block A34
RF amplifier is a discrete hybrid design, which uses thin film manufacturing processes for consistent performance and high reliability. This 2 stage bipolar transistor feedback amplifier design displays impressive performance over a broadband frequency range. An active DC biasing network insures temperature-stable performance. TO-8 package is hermetically sealed, and MIL-STD-883 environmental screening is available.

RF amplifier is a discrete hybrid design, which uses thin film manufacturing processes for consistent performance and high reliability. This 2 stage bipolar transistor feedback amplifier design displays impressive performance over a broadband frequency range. An active DC biasing network insures temperature-stable performance. TO-8 package is hermetically sealed, and MIL-STD-883 environmental screening is available.

Supplier's Site Datasheet

Technical Specifications

  Richardson RFPD
Product Category RF Amplifiers
Product Number A34
Product Name Gain Block
Frequency Range 100 to 2000 MHz
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