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MSA-9970 - Cascadable Silicon Bipolar MMIC Amplifier

Download the MSA-9970 datasheet PDF. This datasheet also covers the MSA-9970_Hewlett variant, as both devices belong to the same cascadable silicon bipolar mmic amplifier family and are provided as variant models within a single manufacturer datasheet.

General Description

The MSA-9970 is a high performance silicon bipolar Monolithic Microwave Integrated Circuit (MMIC) housed in a hermetic high reliability package.

Key Features

  • Open Loop Feedback Amplifier.
  • Performance Flexibility with User Selected External Feedback for: Broadband Minimum Ripple Amplifiers Low Return Loss Amplifiers Negative Gain Slope Amplifiers.
  • Usable Gain to 6.0 GHz.
  • 16.0 dB Typical Open Loop Gain at 1.0 GHz.
  • 14.5 dBm Typical P1 dB at 1.0 GHz.
  • Hermetic Gold-ceramic Microstrip Package.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (MSA-9970_Hewlett-Packard.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number MSA-9970
Manufacturer Hewlett-Packard
File Size 68.19 KB
Description Cascadable Silicon Bipolar MMIC Amplifier
Datasheet download datasheet MSA-9970 Datasheet

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
Agilent MSA-9970 Cascadable Silicon Bipolar MMIC Amplifier Data Sheet Features • Open Loop Feedback Amplifier • Performance Flexibility with User Selected External Feedback for: Broadband Minimum Ripple Amplifiers Low Return Loss Amplifiers Negative Gain Slope Amplifiers • Usable Gain to 6.0 GHz • 16.0 dB Typical Open Loop Gain at 1.0 GHz • 14.5 dBm Typical P1 dB at 1.0 GHz • Hermetic Gold-ceramic Microstrip Package Description The MSA-9970 is a high performance silicon bipolar Monolithic Microwave Integrated Circuit (MMIC) housed in a hermetic high reliability package. This MMIC is designed with high open loop gain and is intended to be used with external resistive and reactive feedback elements to create a variety of special purpose gain blocks.