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MP4T3243 - Bipolar High fT Low Voltage NPN Silicon Transistors

This page provides the datasheet information for the MP4T3243, a member of the MP4T3243_M Bipolar High fT Low Voltage NPN Silicon Transistors family.

Datasheet Summary

Description

The MP4T3243 series of high fT low voltage NPN medium power silicon bipolar transistors is designed for usage in battery operated systems with 3-5 volt collector bias.

They are useful as low phase noise oscillator transistors through 6 GHz and as moderate power driver amplifiers through 3 GHz.

Features

  • Designed for 3-5 Volt Operation.
  • Useable to 6 GHz in Oscillators.
  • Useable for Low Noise, Low Voltage Driver Amplifiers Through 3 GHz.
  • Useful for Class C Amplifiers.
  • Available as Chips and in Hermetic and Surface Mount Packages.
  • Can be Screened to JANTX, JANTXV Equivalent Levels (ceramic pacakges).
  • Tape and Reel Packaging Available for packaged devices. MP4T3243 Series V4.00 Case Style SOT-23.

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Datasheet preview – MP4T3243

Datasheet Details

Part number MP4T3243
Manufacturer M-pulse Microwave
File Size 117.68 KB
Description Bipolar High fT Low Voltage NPN Silicon Transistors
Datasheet download datasheet MP4T3243 Datasheet
Additional preview pages of the MP4T3243 datasheet.
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Full PDF Text Transcription

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Bipolar High fT Low Voltage NPN Silicon Transistors Features • Designed for 3-5 Volt Operation • Useable to 6 GHz in Oscillators • Useable for Low Noise, Low Voltage Driver Amplifiers Through 3 GHz • Useful for Class C Amplifiers • Available as Chips and in Hermetic and Surface Mount Packages • Can be Screened to JANTX, JANTXV Equivalent Levels (ceramic pacakges) • Tape and Reel Packaging Available for packaged devices. MP4T3243 Series V4.00 Case Style SOT-23 Description The MP4T3243 series of high fT low voltage NPN medium power silicon bipolar transistors is designed for usage in battery operated systems with 3-5 volt collector bias. They are useful as low phase noise oscillator transistors through 6 GHz and as moderate power driver amplifiers through 3 GHz.
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