MAX747

High-Efficiency, PWM, Step-Down Controller (External P-Channel Driver)

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Description

The MAX747 high-efficiency, high-current, step-down controller drives external P-channel FETs. It provides 90% to 95% efficiency from a 6V supply with load currents ranging from 50mA up to 2.5A. It uses a pulse-width-modulating (PWM) current-mode control scheme to provide precise output regulation and low output noise. The MAX747's 4V to 15V input voltage range, a fixed 5V/adjustable (Dual-Mode™) output, and a current limit set with an external resistor make this device ideal for a wide range of applications.

High efficiency is maintained with light loads due to a proprietary dual-control (Idle-Mode™) scheme that minimizes switching losses by reducing the switching frequency at light loads. The low 800µA quiescent current and ultra-low 0.6µA shutdown current further extend battery life.

External components are protected by the MAX747's cycle-by-cycle current limit. The MAX747 also features a 2V ±1.5% reference, a comparator for low-battery detection or level translating, as well as soft-start and shutdown capability.

The MAX746, discussed in a separate data sheet, functions similarly to the MAX747, but it drives N-channel logic level FETs on the high side.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 1 (PDF, 152kB)
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Key Features

  • 90% to 95% Efficiency for 50mA to 2.5A Output Currents
  • 4V to 15V Input Voltage Range
  • Low 800µA Supply Current
  • 0.6µA Shutdown Current
  • Drives External P-Channel FETs
  • Cycle-by-Cycle Current Limiting
  • 2V ±1.5% Accurate Reference Output
  • Adjustable Soft-Start
  • Precision Comparator for Power-Fail or Low-Battery Warning
 

Applications/Uses

  • 5V to 3.3V Green PC Applications
  • Battery-Powered Applications
  • Cell Phones
  • Notebook Power Supplies
  • PDAs and Other Handheld Devices
   

Diagram

MAX747: Typical Operating Circuit
Typical Operating Circuit

Notes and Comments

Drives external P-channel FET

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Document Ref.: 19-0171 Rev 1; 1993-09-01
This page last modified: 2007-05-30




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