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Overview

Description

The ISL81601 is a true bidirectional 4-switch synchronous buck-boost controller with peak and average current sensing and monitoring at both ends. Its wide input and output voltage ranges make it suitable for industrial, telecommunication, and after-market automotive applications.

The ISL81601 uses the proprietary buck-boost control algorithm with valley current modulation for Boost mode and peak current modulation for Buck mode control. The ISL81601 has four independent control loops for input and output voltages and currents. Inherent peak current sensing at both ends and cycle-by-cycle current limit of this family of products ensures high operational reliability by providing instant current limit in fast transient conditions at either end and in both directions. It also has two current monitoring pins at both input and output to facilitate Constant Current (CC) limit and other system management functions. CC operation down to low voltages avoids any runaway condition at overload or short-circuit conditions.

In addition to multilayer overcurrent protection, it also provides full protection features such as OVP, UVP, OTP, and average and peak current limit on both input and output to ensure high reliability in both unidirectional and bidirectional operation. The IC is packaged in a space-conscious 32 Ld 5mm x 5mm QFN package or easy to assemble 4.4mm x 9.7mm 38 Ld HTSSOP package. Both packages use an EPAD to improve thermal dissipation and noise immunity. Low pin count, fewer external components, and default internal values make the ISL81601 an ideal solution for quick-to-market simple power supply designs. The unique DE/Burst mode at light-load dramatically lowers standby power consumption with consistent output ripple over different load levels.

Features

  • Single inductor 4-switch buck-boost controller
  • On-the-fly bidirectional operation with independent control of voltage and current on both ends
  • Proprietary algorithm for smoothest mode transition
  • MOSFET drivers with adaptive shoot-through protection
  • Wide input voltage range: 4.5V to 60V
  • Wide output voltage range: 0.8V to 60V
  • Supports pre-biased output with SR soft-start
  • Programmable frequency: 100kHz to 600kHz
  • Supports parallel operation current sharing with cascade phase interleaving
  • External sync with clock out or frequency dithering
  • External bias for higher efficiency supports 8V - 36V input
  • Output and input current monitor
  • Selectable PWM mode operation between PWM/DE/Burst modes
  • Accurate EN/UVLO and PGOOD indicator
  • Low shutdown current: 2.7µA
  • Complete protection: OCP, SCP, OVP, OTP, and UVP
    • Dual-level OCP protection with average current and pulse-by-pulse peak current limit
    • Selectable OCP response with either hiccup or constant current mode
    • Negative pulse-by-pulse peak current limit

Comparison

Applications

Documentation

Type Title Date
Datasheet PDF 2.30 MB 日本語
White Paper PDF 759 KB 日本語 , 简体中文
White Paper PDF 351 KB 日本語 , 简体中文
Application Note PDF 509 KB
Application Note PDF 397 KB
5 items

Design & Development

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Software Downloads

Type Title Date
Software & Tools - Other Log in to Download XLSX 2.14 MB
1 item

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Models

ECAD Models

Schematic symbols, PCB footprints, and 3D CAD models from SamacSys can be found by clicking on the CAD Model links in the Product Options table. If a symbol or model isn't available, it can be requested directly from SamacSys.

Diagram of ECAD Models

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Support Communities

  1. ISL81601

    i want to know ISL81601 (60V Bidirectional 4-Switch Synchronous Buck-Boost Controller) that controller mode looks use Average Current to control vout? 1.2 Block Diagram looks use peak current to control vout which control mode was corrent?

    Nov 29, 2024
  2. ISL81601

    How do you set the slope of the slope compensation circuit in the ISL81601?

    Dec 9, 2024
  3. MOSFET gate resistance and dead time for ISL81601

    Hello!  ISL81601 datasheet states:  "The ISL81601 incorporates an adaptive dead time algorithm that optimizes operation with varying MOSFET conditions. This algorithm provides approximately 16ns dead time between the switching of the upper and lower MOSFETs. This dead time is adaptive and allows operation with different MOSFETs without having to externally ...

    Aug 9, 2024
View All Results from Support Communities (28)

FAQs

  1. What does a true bidirectional buck-boost controller do?

    ... and control the energy flow.          Now on the right-hand side we tackle the same design using a bidirectional buck-boost controller such as ISL81401, ISL81601 or ISL81801. And as you can see only one set of electronics serves the purpose of both charging and discharging which significantly lowers the ...

    Oct 21, 2020

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