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M3G280515T - HYBRID-HIGH RELIABILITY RADIATION HARDENED DC-DC CONVERTER

This page provides the datasheet information for the M3G280515T, a member of the M3G HYBRID-HIGH RELIABILITY RADIATION HARDENED DC-DC CONVERTER family.

Datasheet Summary

Description

The M3G-Series of DC-DC converters are radiation hardened, high reliability converters designed for extended operation in hostile environments.

Their small size and low weight make them ideal for applications such as geostationary earth orbit satellites and deep space probes.

Features

  • n SEE Hardened up to 82 MeV. cm2/mg n Internal EMI filter; Converter Capable of meeting MIL-STD-461C CE03 n Low Weight, < 110 grams n Magnetically Coupled Feedback n 18V to 50V DC Input Range n Up to 40W Output Power n Triple Output Models Include +5V and ±12V or ±15V n Main Output Isolated from Dual Outputs n High Efficiency - to 80% n -55°C to +125°C Operating Temperature Range n 100MΩ @ 500VDC Isolation n Under-Voltage Lockout n Synchronization Input and Output n Short Circuit and Overload Pro.

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Datasheet Details

Part number M3G280515T
Manufacturer IRF
File Size 201.45 KB
Description HYBRID-HIGH RELIABILITY RADIATION HARDENED DC-DC CONVERTER
Datasheet download datasheet M3G280515T Datasheet
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Full PDF Text Transcription

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PD-94535P M3G-SERIES HYBRID-HIGH RELIABILITY RADIATION HARDENED DC-DC CONVERTER Description The M3G-Series of DC-DC converters are radiation hardened, high reliability converters designed for extended operation in hostile environments. Their small size and low weight make them ideal for applications such as geostationary earth orbit satellites and deep space probes. They exhibit a high tolerance to total ionizing dose, single event effects and environmental stresses such as temperature extremes, mechanical shock, and vibration. The converters incorporate a fixed frequency single ended forward topology with magnetic feedback and an internal EMI filter that utilizes multilayer ceramic capacitors that are subjected to extensive lot screening for optimum reliability.
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