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F6922

Dual-Channel Low Noise Amplifier for Ka-Band SATCOM

Product Details

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  • Frequency: 17.7 – 21.2 GHz
  • Gain: 19.5dB typ. at 19.5GHz
  • Noise figure: 1.8dB
  • Output P1dB: -2.3dBm
  • Power consumption: 15mW/ch
  • Channel isolation: 30dB
  • Supply voltage: 0.9 – 1.0V
  • Common bias control input
  • Compact size for planar integration on λ/2 grid
  • 2.7mm × 2.7mm × 0.9mm, 23-pin BGA
  • -40 °C to +85 °C ambient operating temperature range

The F6922 is an ultra-low power consumption, dual-channel, low noise amplifier (LNA) RFIC designed for application in Ku- Band SATCOM planar phased array antennas. The exceptional combination of low power consumption, low noise, high gain, and compact size, maximizes the antenna array G/T while minimizing overall system power dissipation. An external bias current provides gain control, standby mode and temperature compensation.

The F6922 includes two independent gain/phase matched LNA channels in a compact 23-pin, 0.5mm pitch BGA package. All inputs and outputs are single-ended and 50Ω matched for ease of integration on to phased array antenna panels.

  • Electronically Steered Phased Array Antennas (ESAs)
  • Aerospace, Maritime, and Satcom-on-the-move (SOTM)
  • Ka-Band SATCOM Terminals
  • Communication, Electronic Warfare (EW), and Radar Systems

Product Documents

Datasheet

2025-06-01

F6922 Datasheet

pdf | 1.23 MB
Guide

2025-06-01

F6922 Additional Measurement Plots based on Iref

pdf | 0 Bytes

Design & Development (Boards and Kit)

Board Image

Evaluation Board for F6922

The Renesas F6922EVB Evaluation Board is designed to reduce the learning cycle, build system-level confidence and enable a rapid time to market with the F6922 IC. The kit includes all the essential components required for the rapid validation and evaluation of the electrical performance characteristics of the F6922 Dual Channel LNA. The board provides access to all pins and functionality to enable full evaluation and validation of the electrical performance characteristics of the F6922 IC.

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