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ISL6700 Datasheet

ISL6700 ManufacturerIntersil
ISL6700 DescriptionHalf-Bridge Driver, N-Channel MOSFET, 80V/1.25A Peak, Low Cost, Medium Frequency
ISL6700 Description80V/1.25A Peak High-Frequency Half Bridge Driver with TTL Logic Inputs
ISL6700 Categories
MOSFET Drivers
ISL6700 Datasheet (PDF)
ISL6700EVAL1 General Purpose Design Tool
ISL6700 Datasheet
80V/1.25A Peak, Medium Frequency, Low Cost, Half-Bridge Driver
ISL6700 Features
  • Drives 2 N-Channel MOSFETs in Half-Bridge Configuration
  • Space Saving SO8 and Low RC-SQFN Packages
  • Phase Supply Max Voltage to 80VDC
  • Bootstrap Supply Max Voltage to 96VDC
  • Drives 1000pF Load with Rise and Fall Times Typ. 15ns
  • TTL/CMOS Compatible Input Thresholds
  • Independent Inputs for Non-Half-Bridge Topologies
  • No Start-Up Problems
  • Low Power Consumption
  • Wide Supply Range
  • Supply Undervoltage Protection
  • QFN Package
    • Compliant to JEDEC PUB95 MO-220 QFN
    • Quad Flat No Leads - Package Outline
  • Pb-free available
ISL6700 Features
  • Drives 2 N-Channel MOSFETs in Half-Bridge Configuration
  • Space Saving SO8 and Low RC-S QFN Packages
  • Phase Supply Max Voltage to 80VDC
  • Bootstrap Supply Max Voltage to 96VDC
  • Drives 1000pF Load with Rise and Fall Times Typ. 15ns
  • TTL/CMOS Compatible Input Thresholds
  • Independent Inputs for Non-Half-Bridge Topologies
  • No Start-Up Problems
  • Low Power Consumption
  • Wide Supply Range
  • Supply Undervoltage Protection
  • QFN Package
    • Compliant to JEDEC PUB95 MO-220 QFN
    • Quad Flat No Leads - Package Outline
  • Pb-Free Available (RoHS Compliant)
ISL6700 Description

The ISL6700 is an 80V/1.25A peak, medium frequency, low cost, half-bridge driver IC available in 8-lead SOIC and 12-lead QFN plastic packages. The low-side and high-side gate drivers are independently controlled and matched to 25ns. This gives the user maximum flexibility in dead-time selection and driver protocol. Undervoltage protection on both the low-side and high-side supplies force the outputs low. Non-latching, level-shift translation is used to control the upper drive circuit. Unlike some competitors, the high-side output returns to its correct state after a momentary undervoltage of the high-side supply.

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