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SMHV0510N - High-Precision Regulated HV DC to DC Converter

This page provides the datasheet information for the SMHV0510N, a member of the SMHV0505 High-Precision Regulated HV DC to DC Converter family.

Datasheet Summary

Description

Models up to 10kV@1W Sub-Miniature Case Size (.85”x.85”x.6”) Adjustable, 0 to full output Low Ripple, High Impedance, Operating Temp (-55⁰C to +70⁰C) DC/DC Converters The SMHV Series is a family of sub-miniature singleoutput, fully regulated DC to DC converters supplying up to 10kV @1W in 0.434 cu

Features

  • excellent linearity. Voltage and current monitor outputs provide the user with operational information for maximum control. Mechanical Characteristics.
  • Weight: 15 grams typical.
  • Packaging: Encapsulated in high performance epoxy.
  • Case Materials: Thermoset Plastic (Diallyl Phthalate).
  • Optional Metal shield Case Available Environmental Characteristics.
  • Operating Temp Range: -55⁰C to +70⁰C.
  • Storage Temp Range: -55⁰C to +85⁰C The SMHV Series has additional features.

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Datasheet preview – SMHV0510N

Datasheet Details

Part number SMHV0510N
Manufacturer HVM
File Size 901.28 KB
Description High-Precision Regulated HV DC to DC Converter
Datasheet download datasheet SMHV0510N Datasheet
Additional preview pages of the SMHV0510N datasheet.
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Full PDF Text Transcription

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SMHV Series High-Precision Regulated HV DC to DC Converter Description Models up to 10kV@1W Sub-Miniature Case Size (.85”x.85”x.6”) Adjustable, 0 to full output Low Ripple, High Impedance, Operating Temp (-55⁰C to +70⁰C) DC/DC Converters The SMHV Series is a family of sub-miniature singleoutput, fully regulated DC to DC converters supplying up to 10kV @1W in 0.434 cubic inches (0.85” x 0.85” x 0.6”). These ultra-compact converters are ideal for applications requiring small size, high performance, and ease of use. HVM’s proprietary, ultra-compact resonant converter design minimizes quiescent current and operating noise while delivering maximum performance and reliability. The devices operate directly from 5VDC ± 0.5VDC input.
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