Fast Charge Management NiCD/NiMH 8-Pin SOIC Tube, BQ2002CSNG4, Texas Instruments

The bq2002C Fast-Charge IC is a lowcost CMOS battery-charge controller providing reliable charge termination for both NiCd and NiMH battery applications. Controlling a current-limited or constant-current supply allows the bq2002C to be the basis for a cost effective stand-alone or system-integrated charger. The bq2002C integrates fast charge with pulsed-trickle control in a single IC for charging one or more NiCd or NiMH battery cells.Fast charge is initiated on application of the charging supply or battery replacement. For safety, fast charge is inhibited if the battery temperature and voltage are outside configured limits.Fast charge is terminated by any of the following: Peak voltage detection (PVD) Negative delta voltage (–?V) Maximum voltage Maximum temperature Maximum timeAfter fast charge, the bq2002C pulsetrickles the battery per the preconfigured limits. Fast charge may be inhibited using the INH pin. The bq2002C may also be placed in low standby-power mode to reduce system power consumption.

  • Fast charge of nickel cadmium
    or nickel-metal hydride batteries
  • Direct LED output displays charge status
  • Fast-charge termination by -.V, maximum voltage,
    maximum temperature, and maximum time
  • Internal band-gap voltage reference
  • Selectable pulse-trickle charge rates
  • Low-power mode
  • 8-pin 300-mil DIP or 150-mil SOIC
  • Характеристики

    Battery_type

    NiCD, NiMH

    Operating_supply_voltage

    5 V

    Supplier_package

    SOIC

    Specifications

    http://www.ti.com/general/docs/lit/getliterature.tsp?genericPartNumber=BQ2002C&&fileType=pdf

    Screening_level

    Commercial

    Schedule_b

    8542390000

    Product_dimensions

    5 x 4 x 1.5 mm

    Pin_count

    8

    Operating_temperature

    0 to 70 °C

    Бренд

    Msl_level

    1

    Mounting

    Surface Mount

    Max_processing_temp

    260

    Lead_finish

    Gold

    Kind

    Fast Charge Management

    Htsn

    8542390001

    Eccn

    EAR99

    Артикул: BQ2002CSNG4

    Описание

    The bq2002C Fast-Charge IC is a lowcost CMOS battery-charge controller providing reliable charge termination for both NiCd and NiMH battery applications. Controlling a current-limited or constant-current supply allows the bq2002C to be the basis for a cost effective stand-alone or system-integrated charger. The bq2002C integrates fast charge with pulsed-trickle control in a single IC for charging one or more NiCd or NiMH battery cells.Fast charge is initiated on application of the charging supply or battery replacement. For safety, fast charge is inhibited if the battery temperature and voltage are outside configured limits.Fast charge is terminated by any of the following: Peak voltage detection (PVD) Negative delta voltage (–?V) Maximum voltage Maximum temperature Maximum timeAfter fast charge, the bq2002C pulsetrickles the battery per the preconfigured limits. Fast charge may be inhibited using the INH pin. The bq2002C may also be placed in low standby-power mode to reduce system power consumption.

  • Fast charge of nickel cadmium
    or nickel-metal hydride batteries
  • Direct LED output displays charge status
  • Fast-charge termination by -.V, maximum voltage,
    maximum temperature, and maximum time
  • Internal band-gap voltage reference
  • Selectable pulse-trickle charge rates
  • Low-power mode
  • 8-pin 300-mil DIP or 150-mil SOIC
  • Детали

    Battery_type

    NiCD, NiMH

    Operating_supply_voltage

    5 V

    Supplier_package

    SOIC

    Specifications

    http://www.ti.com/general/docs/lit/getliterature.tsp?genericPartNumber=BQ2002C&&fileType=pdf

    Screening_level

    Commercial

    Schedule_b

    8542390000

    Product_dimensions

    5 x 4 x 1.5 mm

    Pin_count

    8

    Operating_temperature

    0 to 70 °C

    Бренд

    Msl_level

    1

    Mounting

    Surface Mount

    Max_processing_temp

    260

    Lead_finish

    Gold

    Kind

    Fast Charge Management

    Htsn

    8542390001

    Eccn

    EAR99