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MAX8804, MAX8804V, MAX8804W, MAX8804Y, MAX8804Z
High-Voltage, Dual-Input, USB/AC Adapter Chargers in 2mm x 3mm TDFN

Industry's Smallest Dual Input Li+ Chargers Withstand 30V DC with Thermal Regulation, Allowing for Safest and Fastest Charging


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 192kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX8804V/MAX8804W/MAX8804Y/MAX8804Z intelligent, dual-input, stand-alone, constant-current, constant-voltage (CCCV), thermally regulated linear chargers are designed for a single-cell lithium-ion (Li+) battery. They integrate the current-sense circuit, MOS pass element, thermal-regulation circuitry, and overvoltage protection (OVP), and eliminate the reverse-blocking Schottky diode.

The MAX8804V/MAX8804W/MAX8804Z function as stand-alone chargers to control the charging sequence from the prequalification state through fast-charge, topoff charge, and full-charge indication. The MAX8804Y eliminates the prequalification state to allow startup into a load without a battery. Proprietary thermal-regulation circuitry limits the die temperature when fast-charging or while exposed to high ambient temperatures, allowing maximum charging current without damaging the IC.

The MAX8804V/MAX8804W/MAX8804Y/MAX8804Z achieve high flexibility by providing an adjustable DC/USB fast-charge current through a simple single-wire interface (SET input). The chargers automatically select between either a USB or AC adapter input source. The AC adapter charge current is programmable from 400mA to 700mA in 50mA steps through a serial interface. The USB charge current is programmable to 95mA, 380mA, or 475mA through the same interface. Other features include an active-low battery charging-status indicator (active-low CHG), an active-low power-OK indicator (active-low POK), an active-low USB input detection output (active-low USBPWR) on the MAX8804Y/MAX8804Z, and battery pack detection (DETBAT) on the MAX8804V/MAX8804W.

The MAX8804V has 120mA, 140mA, 180mA, and 200mA active-low CHG top-off threshold settings, while the MAX8804W/MAX8804Y/MAX8804Z have 70mA, 80mA, 90mA, and 100mA. The MAX8804V/MAX8804W/MAX8804Y/MAX8804Z accept a 4.15V to 30V DC source voltage or a 4.15V to 16V USB input voltage, but disable charging when either input voltage exceeds 7.5V to protect against unqualified or faulty input sources. The MAX8804V/MAX8804W/MAX8804Y/MAX8804Z operate over the extended temperature range (-40°C to +85°C) and are available in a tiny 8-pin thermally enhanced 2mm x 3mm TDFN package.

An evaluation kit is available:  MAX8804ZEVKIT  

Key Features   Applications/Uses
  • Complete Chargers for Single-Cell Li+ Battery
  • Dual-Input, 30V AC Adapter/16V USB
  • No External FET, Blocking Diode, or Sense Resistor Required
  • Automatic USB/AC Adapter Input Selection
  • Easy Programmable Fast-Charge Current and Top-Off Threshold
  • Proprietary Die Temperature Regulation Control
  • ±5% Fast-Charge Current-Limit Accuracy
  • Battery Pack Detection Input (MAX8804V/MAX8804W)
  • Power-Present and Charger-Status Outputs
  • No Prequalification Charge (MAX8804Y)
  • Tiny 2mm x 3mm Thermally Enhanced TDFN Package
  • USB Charging Protected by US Patent #6,507,172

 
  • Cell Phones/Smartphones
  • Digital Cameras
  • MP3 Players
  • Other Handheld Devices
  • Portable Media Players

    Key Specifications:  Battery Chargers
    Part Number Cell Chemistry Lithium Ion Cells Protected VIN
    (V)
    Charging VIN
    (V)
    Charge Rate Set by Max. ICHG
    (A)
    Charge Termination Charge Regulation Features EV Kit Package/Pins Smallest Available Pckg.
    (mm2)
    Oper. Temp.
    (°C)
    Price
    max max max w/pins See Notes
    MAX8804 
    Li-Ion
    Li-Polymer
    1 28 7 Logic Input 0.7 External Control Linear
    Dual USB/Adapter Input
    Internal FET/Transistor
    Stand Alone
    Thermal Die Regulation
    USB Input
    No
    TDFN-EP/8
    6 -40 to +85 $1.40 @1k
    See All Battery Chargers (62)

    Diagram
    MAX8804, MAX8804V, MAX8804W, MAX8804Y, MAX8804Z: Typical Application Circuit
    Typical Application Circuit

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    Document Ref.: 19-0785; Rev 2; 2008-05-01
    This page last modified: 2009-08-19


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