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MAX8784
Step-Up Regulator, Internal Charge Pumps, Switch Control, and Operational Amplifier for TFT LCDs

Highly Integrated Power Supply Optimized for 5VIN TFT LCD TV and Monitor Applications


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Description
PRELIMINARY DATA SHEET (PDF, 44kB)
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The MAX8784 generates supply rails for the thin-film transistor (TFT) liquid-crystal display (LCD) panels in TVs and monitors. It includes a step-up regulator, a regulated positive and a negative charge-pump, three high-current operational amplifiers, and Dual Mode™, logic-controlled, high-voltage switch control block. HVS mode automatically increases the output voltages of the boost regulator and the positive charge-pump to stress test display panels during production. The MAX8784 can operate from input voltages of 4V to 5.5V and is optimized for LCD TV panel and LCD monitor applications.

The step-up DC-DC regulator provides a regulated supply voltage for TFT source drivers. The step-up regulator is a high-frequency (1.2MHz), high-efficiency, currentmode regulator. The step-up regulator has a built-in 110mΩ (typ) power MOSFET. The high-switching frequency allows the use of ultra-small inductors and ceramic capacitors. The current-mode architecture provides fast transient response and easy compensation. The step-up regulator features output undervoltage protection, soft-start, internal current limit, and adjustable output voltage by an external resistive divider.

The three operational amplifiers drive the LCD backplane and the gamma-correction-divider string. Each operational amplifier has a fast slew rate (45V/µs), a wide bandwidth (20MHz), and a high-output short-circuit current (200mA). Each op amp has rail-to-rail input and rail-to-rail output operation.

The positive charge-pump regulator and the negative charge-pump regulator provide regulated supply voltages for the TFT gate drivers. The positive charge pump is a two-stage charge pump, which requires no external diodes. The output voltages of both charge pumps are resistor adjustable. The logic-controlled high-voltage switch allows the manipulation of the positive TFT gate-driver supply.

The MAX8784 is available in a small (5mm x 5mm), low-profile (0.8mm), 40-pin thin QFN package and operates over the -40°C to +85°C temperature range.

Key Features   Applications/Uses
  • Step-Up Regulator Supply for LCD Panel Source Driver
    • Fast Transient Response to Pulsed Load
    • Built-In 18V, 4A, 0.11Ω n-Channel Power MOSFET with Lossless Current Sensing
    • Cycle-by-Cycle Current-Limit Comparator
    • 90% Efficiency (5VIN to 15VOUT)
    • 1.2MHz Switching Frequency
  • Three High-Current 19V Operational Amplifiers
    • 180mA Output Short-Circuit Current
    • 45V/µs Slew Rate
    • 20MHz Bandwidth
    • Rail-to-Rail Input and Output Operation
  • Regulated Charge-Pump Tripler with Integrated Diodes for TFT Gate-On Supply
  • Regulated Charge Pump for TFT Gate-Off Supply
  • Built-In Sequencing
    • Internal Digital Soft-Start
    • 36V Gate-On Switch
    • Startup Timing Capacitors for AVDD and GON
  • Undervoltage and Thermal Protection
  • 4V to 5.5V Input Operating Range

 
  • LCD TVs and LCD Monitors

    Key Specifications:   Multifunction PMICs
    Part Number Primary Topology Monitor/Control Features DC-DC/Power Features LCD/LED/Flash/CCD Features VIN (min) (V) VIN (max) (V) Min. VOUT (V) Max. VOUT (V) IOUT (A) IOUT (A) Operating Freq. (kHz) Package Price**
    MAX8784  Step-Up Output OVP
    Shutdown
    Current Limit
    Fixed Freq./PWM
    Internal Pwr. FETs
    Soft Start
    TFT Bias
    VCOM Buffer
    4 5.5 5 18 0.8 0.8 1200 THIN QFN/40 $3.95 @ 1k
    See All Multifunction PMICs (75)
    Notes:
    **This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.

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    Document Ref.: 19-0737; Rev 0; 2007-10-23
    This page last modified: 2008-07-01



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