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MAX8739
TFT, LCD, DC-DC Converter with Operational Amplifiers


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 844kB)
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The MAX8739 includes a high-performance, step-up regulator and two high-current operational amplifiers for active-matrix thin-film transistor (TFT) liquid-crystal displays(LCDs). The input supply voltage range of the MAX8739 is from 1.8V to 5.5V. The device also includes a logic-controlled, high-voltage switch with adjustable delay.

The step-up DC-DC converter provides the regulated supply voltage for the panel source driver ICs. The converter is a high-frequency (600kHz/1.2MHz) current-mode regulator with an integrated 14V n-channel MOSFET that allows the use of ultra-small inductors and ceramic capacitors. It provides fast transient response to pulsed loads while achieving efficiencies over 85%.

The two high-performance operational amplifiers are designed to drive the LCD backplane (VCOM) and/or the gamma-correction-divider string. The devices feature high output current (±150mA), fast slew rate (7.5V/µs), wide bandwidth (12MHz), and rail-to-rail inputs and outputs.

The MAX8739 is available in a 20-pin, 5mm x 5mm thin QFN package with a maximum thickness of 0.8mm for ultra-thin LCD panels.

An evaluation kit is available:  MAX8739EVKIT  

Key Features   Applications/Uses
  • 1.8V to 5.5V Input Supply Range
  • 600kHz/1.2MHz Current-Mode Step-Up Regulator
    Fast Transient Response to Pulsed Load
    High-Accuracy Output Voltage (1.5%)
    Built-In 14V, 1.9A, 0.2Ω n-Channel MOSFET
    High Efficiency (> 85%)
    Digital Soft-Start
  • Two High-Performance Operational Amplifiers
    ±150mA Output Short-Circuit Current
    7.5V/µs Slew Rate
    12MHz, -3dB Bandwidth
    Rail-to-Rail Inputs/Outputs
  • Logic-Controlled, High-Voltage Switch with Adjustable Delay
  • Built-In Power-Up Sequence
  • Input Supply Undervoltage Lockout
  • Timer Delay Fault Latch for All Regulator Outputs
  • Thermal-Overload Protection

     

    Diagram
    MAX8739: Typical Simplified Circuit
    Typical Simplified Circuit

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    Document Ref.: 19-3983; Rev 0; 2006-02-16
    This page last modified: 2008-02-13


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