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INN3268C - Off-Line CV/CC QR Flyback Switcher

This page provides the datasheet information for the INN3268C, a member of the INN3264C Off-Line CV/CC QR Flyback Switcher family.

Datasheet Summary

Description

The InnoSwitch™3-CP family of ICs dramatically simplifies the design and manufacture of flyback power converters, particularly those requiring high efficiency and/or compact size.

The InnoSwitch3-CP family incorporates primary and secondary controllers and safety-rated feedback into a single IC.

Features

  • Secondary switch or diode short-circuit protection.
  • Open SR FET-gate detection.
  • Fast input line UV/OV protection Optional Features.
  • Cable-drop compensation with multiple settings.
  • Variable output voltage, constant current profiles.
  • Auto-restart or latching fault response for output OVP/UVP.
  • Multiple output UV fault thresholds.
  • Latching or hysteretic primary over-temperature protection Full Safety and Regulatory Compliance.

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Datasheet preview – INN3268C

Datasheet Details

Part number INN3268C
Manufacturer Power Integrations
File Size 2.97 MB
Description Off-Line CV/CC QR Flyback Switcher
Datasheet download datasheet INN3268C Datasheet
Additional preview pages of the INN3268C datasheet.
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Full PDF Text Transcription

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InnoSwitch3-CP Family Off-Line CV/CC QR Flyback Switcher IC with Integrated Primary Switch, Synchronous Rectification, FluxLink Feedback and Constant Power Profile Product Highlights Highly Integrated, Compact Footprint • Up to 94% efficiency across full load range • Quasi-Resonant (QR) / CCM flyback controller, high-voltage switch4, secondary-side sensing and synchronous rectification driver • Integrated FluxLink™, HIPOT-isolated, feedback link • Easily interfaces to load-directed and fast charge protocol ICs • Constant Power (CP) Profile minimizes charging time with continuous adjustment of output current and voltage • Accurate CV/CC/CP, independent of external components • External IS resistor allows custom CC programming • Instantaneous transient response with 0%-100%-0% load step •
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