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SSW524 - DC - 8 GHZ GAAS MMIC SPST SWITCH

Download the SSW524 datasheet PDF. This datasheet also covers the SSW-524 variant, as both devices belong to the same dc - 8 ghz gaas mmic spst switch family and are provided as variant models within a single manufacturer datasheet.

Description

Stanford Microdevices’ SSW-524 is a high performance Gallium Arsenide Field Effect Transistor MMIC switch housed in a low-cost surface-mountable 8-pin ceramic package.

This single-pole, single-throw, non-reflective switch consumes less than 50uA and operates at -5V and 0V for control bias.

Features

  • • High Isolation : 40dB at 2GHz, 30dB at 8GHz • Low DC Power Consumption • Low Insertion Loss : 0.9dB at 2GHz • Non-Reflective (50 Ohm termination) when • Low Cost Surface-Mountable Ceramic Package.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (SSW-524_StanfordMicrodevices.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number SSW524
Manufacturer Stanford Microdevices
File Size 198.39 KB
Description DC - 8 GHZ GAAS MMIC SPST SWITCH
Datasheet download datasheet SSW524 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
Product Description Stanford Microdevices’ SSW-524 is a high performance Gallium Arsenide Field Effect Transistor MMIC switch housed in a low-cost surface-mountable 8-pin ceramic package. This single-pole, single-throw, non-reflective switch consumes less than 50uA and operates at -5V and 0V for control bias. P1db at -5V is +25dBm typical and can be increased to +28dBm with -8V supply. The die is fabricated using 0.5 micron FET process with gold metallization and silicon nitride passivation to achieve excellent performance and reliability. SSW-524 Preliminary Preliminary DC-8 GHz GaAs MMIC SPST Switch Isolation vs. Frequency VControl = -5 V -20 -30 Product Features • High Isolation : 40dB at 2GHz, 30dB at 8GHz • Low DC Power Consumption • Low Insertion Loss : 0.
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