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AHP27012S - HYBRID - HIGH RELIABILITY DC/DC CONVERTER

Download the AHP27012S datasheet PDF (AHP270xxS included). The manufacturer datasheet provides complete specifications, pinout details, electrical characteristics, and typical applications for hybrid - high reliability dc/dc converter.

Description

The AHP Series of DC/DC converters feature high power density without derating over the full military temperature range.

This series is offered as lower cost alternatives to the legendary AFL series with improved performance for new design applications.

Features

  • n 160V To 400V Input Range n 3.3V, 5V, 6V, 9V, 12V, 15V, 25V and 28V Outputs Available n High Power Density - up to 84W/in3 n Up To 120W Output Power n Parallel Operation with Stress and Current Sharing n Low Profile (0.380") Seam Welded Package n Ceramic Feed thru Copper Core Pins n High Efficiency - to 87% n Full Military Temperature Range n Continuous Short Circuit and Overload Protection n Remote Sensing Terminals n Primary and Secondary Referenced Inhibit Functions n Line Rejection > 60dB -.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (AHP270xxS_InternationalRectifier.pdf) that lists specifications for multiple related part numbers.
Other Datasheets by International Rectifier

Full PDF Text Transcription

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PD-97181C HYBRID - HIGH RELIABILITY DC/DC CONVERTER Description The AHP Series of DC/DC converters feature high power density without derating over the full military temperature range. This series is offered as lower cost alternatives to the legendary AFL series with improved performance for new design applications. The AHPs are form, fit and functional replacement to the AFL series. The new AHP series offers a full compliment of single and dual output voltages operating from nominal +28V or +270V inputs with output power ranging from 66W to 120W. For applications requiring higher output power, multiple converters can be operated in parallel. The internal current sharing circuits assure equal current distribution among the paralleled converters.
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