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HSMS282Z - RF Schottky Barrier Diodes

Download the HSMS282Z datasheet PDF. This datasheet also covers the HSMS-282Z variant, as both devices belong to the same rf schottky barrier diodes family and are provided as variant models within a single manufacturer datasheet.

General Description

Avago Technologies’s HSMS-282Z is a RF Schottky Barrier Diode, featuring low series resistance, low forward voltage at all current levels and good RF characteristics.

It is housed in a low cost, industrial standard surface mount package - SOD-323.

Key Features

  • 2 Leads Surface Mount Package.
  • Low Turn-On Voltage.
  • Low Series Resistance.
  • Microwave Frequency Operation.
  • Tape and Reel Options Available.
  • Low Failure in Time (FIT) Rate.
  • MSL1 & Lead Free Package Marking and Pin Connections Unit Amp V °C °C °C/W Max Rating 1 15 150 -60 to 150 135 D? Note: Package marking provides orientation and identification “D” = Device Code “?” = Month code indicates the month of manufacture Notes: 1.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (HSMS-282Z-Avago.pdf) that lists specifications for multiple related part numbers.

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.

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HSMS-282Z RF Schottky Barrier Diodes In Surface Mount SOD-323 Package Data Sheet Description/Applications Avago Technologies’s HSMS-282Z is a RF Schottky Barrier Diode, featuring low series resistance, low forward voltage at all current levels and good RF characteristics. It is housed in a low cost, industrial standard surface mount package - SOD-323. This package offers customer who already use SOT-23 and SOT-323 packages, a logical transition to a smaller package outline to accommodate end product design with limited board space. The HSMS-282Z is specially designed for both analog and digital applications. The typical applications are mixing, detecting, switching, sampling, clamping and wave shaping. Table 1.