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LM3658

ACTIVE

Dual source USB/AC Li chemistry charger IC for portable applications

Product details

Number of series cells 1 Charge current (max) (A) 1 Vin (max) (V) 6 Cell chemistry Li-Ion/Li-Polymer Battery charge voltage (min) (V) 4.2 Battery charge voltage (max) (V) 4.2 Absolute max Vin (max) (V) 6.5 Control topology Linear Control interface Standalone (RC-Settable) Features BAT temp thermistor monitoring (hot/cold profile), IC thermal regulation Vin (min) (V) 4.5 Rating Catalog Operating temperature range (°C) -40 to 85
Number of series cells 1 Charge current (max) (A) 1 Vin (max) (V) 6 Cell chemistry Li-Ion/Li-Polymer Battery charge voltage (min) (V) 4.2 Battery charge voltage (max) (V) 4.2 Absolute max Vin (max) (V) 6.5 Control topology Linear Control interface Standalone (RC-Settable) Features BAT temp thermistor monitoring (hot/cold profile), IC thermal regulation Vin (min) (V) 4.5 Rating Catalog Operating temperature range (°C) -40 to 85
WSON (DSC) 10 9 mm² 3 x 3
  • Integrated power FETs with thermal regulation
  • Charges from either an AC wall adapter or USB power source with automatic source selection
  • 50 mA to 1000 mA charge currents using AC wall adapter
  • Pin-selectable USB charge currents of 100 mA or 500 mA
  • LDO mode with 1A of source current is automatically invoked when the battery is absent and the AC wall adapter is connected
  • Continuous battery temperature monitoring
  • Built-in multiple safety timers
  • Charge status indication
  • Continuous over-current and temperature protection
  • Near-depleted battery pre-conditioning
  • Sleep mode with ultra low quiescent current
  • On-board Kelvin-sensing achieves ±0.35% termination accuracy
  • Maintenance mode with automatic recharge
  • Thermally enhanced 3 mm x 3 mm LLP package

  • Integrated power FETs with thermal regulation
  • Charges from either an AC wall adapter or USB power source with automatic source selection
  • 50 mA to 1000 mA charge currents using AC wall adapter
  • Pin-selectable USB charge currents of 100 mA or 500 mA
  • LDO mode with 1A of source current is automatically invoked when the battery is absent and the AC wall adapter is connected
  • Continuous battery temperature monitoring
  • Built-in multiple safety timers
  • Charge status indication
  • Continuous over-current and temperature protection
  • Near-depleted battery pre-conditioning
  • Sleep mode with ultra low quiescent current
  • On-board Kelvin-sensing achieves ±0.35% termination accuracy
  • Maintenance mode with automatic recharge
  • Thermally enhanced 3 mm x 3 mm LLP package

  • The LM3658 is a single chip charger IC designed for handheld applications. It can safely charge and maintain a single cell Li-Ion/Polymer battery operating from an AC wall adapter or USB power source. Input power source selection of USB/AC is automatic. With both power sources present, the AC power source has priority. Charge current is programmed through an external resistor when operating from an AC wall adapter allowing charge currents from 50 mA to 1000 mA. When the battery is charged using USB power, charge currents of 100 mA or 500 mA are pin-selectable. The termination voltage is controlled to within ±0.35% of 4.2V.

    The LM3658 requires few external components and integrates internal power FETs, reverse current protection and current sensing. The internal power FETs are thermally regulated to obtain the most efficient charging rate for a given ambient temperature.

    The LM3658 operates in five modes: pre-qualification mode, constant-current mode, constant-voltage mode, top-off mode and maintenance mode. Additionally, the charger IC operates as a linear regulator in “LDO mode”, when the AC wall adapter is connected and no battery is present. Optimal battery management is obtained through thermal regulation, battery temperature measurement and multiple safety timers. The LM3658 provides two open-drain outputs for LED status indication or connection to GPIOs.


    The LM3658 is a single chip charger IC designed for handheld applications. It can safely charge and maintain a single cell Li-Ion/Polymer battery operating from an AC wall adapter or USB power source. Input power source selection of USB/AC is automatic. With both power sources present, the AC power source has priority. Charge current is programmed through an external resistor when operating from an AC wall adapter allowing charge currents from 50 mA to 1000 mA. When the battery is charged using USB power, charge currents of 100 mA or 500 mA are pin-selectable. The termination voltage is controlled to within ±0.35% of 4.2V.

    The LM3658 requires few external components and integrates internal power FETs, reverse current protection and current sensing. The internal power FETs are thermally regulated to obtain the most efficient charging rate for a given ambient temperature.

    The LM3658 operates in five modes: pre-qualification mode, constant-current mode, constant-voltage mode, top-off mode and maintenance mode. Additionally, the charger IC operates as a linear regulator in “LDO mode”, when the AC wall adapter is connected and no battery is present. Optimal battery management is obtained through thermal regulation, battery temperature measurement and multiple safety timers. The LM3658 provides two open-drain outputs for LED status indication or connection to GPIOs.


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    Technical documentation

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    Type Title Date
    * Data sheet LM3658 Dual Source USB/AC Li Chemistry Charger IC for Portable Applications datasheet (Rev. E) 10 Mar 2007
    User guide AN-1517 LM3658 Evaluation Kit (Rev. E) 30 Apr 2013

    Design & development

    For additional terms or required resources, click any title below to view the detail page where available.

    Evaluation board

    LM3658SD-AEV — Dual Source USB AC Li Chemistry Charger IC for Portable Applications

    Recommended tool:
    bq24040 is the recommended alternative to the LM3658 devices. Please refer to the bq24040EVM for new device evaluation.


    The LM3658 is a single chip charger IC designed for hand-held applications. The LM3658 can safely charge and maintain a single cell Li-Ion/Polymer battery (...)

    User guide: PDF
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