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MAX1730
50mA, Regulated, Step-Down Charge Pump for 1.8V or 1.9V Logic


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 192kB)
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The MAX1730 regulated step-down charge pump generates up to 50mA at fixed output voltages of 1.8V or 1.9V from an input voltage in the 2.7V to 5.5V range. Specifically designed to provide high-efficiency logic supplies in applications that demand a compact design, the MAX1730 employs fractional conversion techniques to provide efficiency exceeding that of a linear regulator.

The MAX1730 operates at up to 2MHz, permitting the use of small 0.22µF flying capacitors while maintaining low 75µA quiescent supply current. Proprietary soft-start circuitry prevents excessive current from being drawn from the supply during startup, making the MAX1730 compatible with higher impedance sources such as alkaline and lithium-ion cells.

The MAX1730 is available in a space-saving 10-pin µMAX® package that is only 1.09mm high and occupies one-half the area of an 8-pin SO.

Key Features   Applications/Uses
  • > 85% Peak Efficiency
  • 50mA Guaranteed Output Current
  • Dual-Mode 1.8V or 1.9V Output
  • ±3% Output Voltage Accuracy
  • Up to 2MHz Operating Frequency
  • Small 0.22µF Capacitors
  • No Inductor Required
  • 2.7V to 5.5V Input Voltage Range
  • Output Disconnects from Input in Shutdown Mode
  • Small 10-Pin µMAX Package (1.09mm max height)

 
  • Handheld Instruments (PDAs, Palmtops)
  • Low-Voltage Logic Supplies
  • PC Cards
  • PDAs
  • Wireless Handsets

    Key Specifications:  Charge Pumps
    Part Number Topology VIN
    (V)
    VIN
    (V)
    ICC
    (mA)
    Unadj. VOUT
    (V)
    IOUT
    (A)
    Oper. Freq.
    (kHz)
    Features Package/Pins Smallest Available Pckg.
    (mm2)
    Oper. Temp.
    (°C)
    Price
    min max max typ max w/pins See Notes
    MAX1730  Regulated 2.7 5.5 0.15
    1.8
    1.9
    0.05 2000 Shutdown
    µMAX/10
    15 -40 to +85 $1.45 @1k
    See All Charge Pumps (48)

    Diagram
    MAX1730: Typical Operating Circuit
    Typical Operating Circuit

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    Document Ref.: 19-1618; Rev 0; 2000-05-05
    This page last modified: 2009-09-28


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