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MAX870, MAX871
Switched-Capacitor Voltage Inverters

Compact, Inductorless, Low-Profile Inverter Fits 0.025 Sq. Inch , Biases GaAsFET PA


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 416kB)
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The ultra-small MAX870/MAX871 monolithic, CMOS charge-pump inverters accept input voltages ranging from +1.4V to +5.5V. The MAX870 operates at 125kHz, and the MAX871 operates at 500kHz. Their high efficiency (90%) and low operating current (0.7mA for the MAX870) make these devices ideal for both battery-powered and board-level voltage-conversion applications.

Oscillator control circuitry and four power MOSFET switches are included on-chip. A typical MAX870/ MAX871 application is generating a -5V supply from a +5V logic supply to power analog circuitry. Both parts come in a 5-pin SOT23-5 package and can deliver 25mA with a voltage drop of 500mV.

For a similar device with logic-controlled shutdown, refer to the MAX1720/MAX1721. For applications requiring more power, the MAX860 delivers up to 50mA with a voltage drop of 600mV, in a space-saving µMAX package.

Key Features   Applications/Uses
  • 5-Pin SOT23-5 Package
  • 99% Voltage Conversion Efficiency
  • Invert Input Supply Voltage
  • 0.7mA Quiescent Current (MAX870)
  • +1.4V to +5.5V Input Voltage
  • Require Only Two Capacitors
  • 25mA Output Current
  • Shutdown Control

 
  • Battery-Operated Equipment
  • Cell Phones
  • Handy-Terminals, PDAs
  • Local -5V Supply from 5V Logic Supply
  • Medical Instruments
  • Small LCD Panels

    Key Specifications:  Charge Pumps
    Part Number Topology VIN
    (V)
    VIN
    (V)
    ICC
    (mA)
    Unadj. VOUT
    (V)
    IOUT
    (A)
    Oper. Freq.
    (kHz)
    Package/Pins Smallest Available Pckg.
    (mm2)
    Oper. Temp.
    (°C)
    Price
    min max max typ max w/pins See Notes
    MAX870 
    Inverter
    Unregulated
    1.4 5.5 1 -VIN 0.025 125
    SOT/5
    9 -40 to +85 $0.72 @1k
    MAX871  3.8 500
    SOT/5
    $0.72 @1k
    See All Charge Pumps (48)

    Diagram
    MAX870, MAX871: Typical Operating Circuit
    Typical Operating Circuit

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    Document Ref.: 19-1240; Rev 1; 2004-05-31
    This page last modified: 2007-06-01


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