BQ25600CYFFT

Texas Instruments BQ25600CYFFT

Part Number:
BQ25600CYFFT
Manufacturer:
Texas Instruments
Ventron No:
6368949-BQ25600CYFFT
Description:
I2C 1cell 3A Buck battery charger for Parallel Charging Applications
ECAD Model:
Datasheet:
bq25600c

Quick Request Quote

Please send RFQ , We will respond immediately.

Part Number
Quantity
Company
E-mail
Phone
Comments
Specifications
Texas Instruments BQ25600CYFFT technical specifications, attributes, parameters and parts with similar specifications to Texas Instruments BQ25600CYFFT.
  • Number of series cells
    1
  • Charge current (max) (A)
    3
  • Vin (max) (V)
    13.5
  • Cell chemistry
    Li-Ion/Li-Polymer
  • Battery charge voltage (min) (V)
    3.856
  • Battery charge voltage (max) (V)
    4.624
  • Absolute max Vin (max) (V)
    22
  • Control topology
    Switch-Mode Buck
  • Control interface
    I2C
  • Features
    IC thermal regulation
  • Vin (min) (V)
    3.9
  • Rating
    Catalog
  • Operating temperature range (°C)
    -40 to 85
Description

The bq25600C devices are highly-integrated 3.0-A switch-mode battery charge management and system power path management device for single cell Li-Ion and Li-polymer battery. The low impedance power path optimizes switch-mode operation efficiency and reduces battery charging time. The I2C serial interface with charging and system settings makes the device a truly flexible solution.

The bq25600C is highly-integrated 3.0-A switch-mode battery charge management and system power path management device for single cell Li-Ion and Li-polymer battery. It features fast charging with high input voltage and high efficiency, which supports parallel charge applications for a wide range of smart phones, tablets and portable devices. The bq25600C has different I2C address from bq25600 and thus only single I2C bus is needed when bq25600 is selected as a main charger and bq25600C is selected as a parallel charger. Its low impedance power path optimizes switch-mode operation efficiency, reduces battery charging time. Its input voltage and current regulation and battery remote sensing deliver maximum charging power to battery. The solution is highly integrated with input reverse-blocking FET (RBFET, Q1), high-side switching FET (HSFET, Q2), low-side switching FET (LSFET, Q3), and battery FET (BATFET, Q4) between system and battery. It also integrates the bootstrap diode for the high-side gate drive for simplified system design. The I2C serial interface with charging and system settings makes the device a truly flexible solution.

The device supports a wide range of input sources, including standard USB host port, USB charging port, and USB compliant high voltage adapter. The device sets default input current limit based on the built-in USB interface. To set the default input current limit, the device uses the built-in USB interface, or takes the result from detection circuit in the system, such as USB PHY device. The device is compliant with USB 2.0 and USB 3.0 power spec with input current and voltage regulation.

The device initiates and completes a charging cycle without software control. It senses the battery voltage and charges the battery in three phases: pre-conditioning, constant current and constant voltage. At the end of the charging cycle, the charger automatically terminates when the charge current is below a preset limit and the battery voltage is higher than recharge threshold. If the fully charged battery falls below the recharge threshold, the charger automatically starts another charging cycle.

The charger provides various safety features for battery charging and system operations, including charging safety timer and overvoltage and overcurrent protections. The thermal regulation reduces charge current when the junction temperature exceeds 110°C (programmable). The STAT output reports the charging status and any fault conditions. Other safety features include thermal regulation and thermal shutdown and input UVLO and overvoltage protection. The VBUS_GD bit indicates if a good power source is present. The INT output Immediately notifies host when fault occurs.

The devices are available in 30-ball, 2.0 mm × 2.4 mm WCSP package.

BQ25600CYFFT More Descriptions
I2C 1cell 3A Buck battery charger for Parallel Charging Applications 30-DSBGA -40 to 85
Switching Battery Charger Li-Ion/Li-Pol 3000mA 3.856V to 4.624V 30-Pin DSBGA T/R
BATT CHARGER, LI-ION/POL, 3A, DSBGA-30; Battery Type: Li-Ion, Li-Pol; Input Voltage: 13.5V; Battery Charge Voltage: 4.624V; Charge Current Max: 3A; Battery IC Case Style: DSBGA; No. of Pins: 30Pins; No. of Series Cells: 1; Operating Temperature Min: -40°C; Operating Temperature Max: 85°C; Product Range: -; RoHS Phthalates Compliant: Yes; MSL: MSL 1 - Unlimited; SVHC: No SVHC (27-Jun-2018)
BQ25600C I2C Controlled 3A Single Cell Battery Charger for Parallel Charging Applications 3.9V to 13.5V Supply Voltage 3.25A Output Current Surface Mount 30-Ball DSBGA
Certification
  • ISO 9001
  • ISO 13485
  • ISO 45001
  • ASA
  • ESD
  • DUNS
  • SMTA
  • ROHS

Latest News

  • 21 February 2024

    EPCS16SI8N Manufacturer, Market Trend, Application Fields and More

    Ⅰ. Overview of EPCS16SI8NⅡ. Manufacturer of EPCS16SI8NⅢ. Specifications of EPCS16SI8NⅣ. Dimensions and package of EPCS16SI8NⅤ. Functional description of EPCS16SI8NⅥ. Application fields of EPCS16SI8NⅦ. Market trend of EPCS16SI8NⅧ. How...
  • 21 February 2024

    What is the ADS1118IDGSR and How Does it Work?

    Ⅰ. ADS1118IDGSR descriptionⅡ. Specifications of ADS1118IDGSRⅢ. Absolute maximum ratings of ADS1118IDGSRⅣ. How does ADS1118IDGSR work?Ⅴ. Package of ADS1118IDGSRⅥ. What are the characteristics of ADS1118IDGSR?Ⅶ. Typical application of ADS1118IDGSRⅧ....
  • 22 February 2024

    L293D Motor Driver Characteristics, Technical Parameters, Advantages and Working Principle

    Ⅰ. L293D descriptionⅡ. Characteristics of L293DⅢ. Technical parameters of L293DⅣ. Advantages of L293DⅤ. L293D motor driving principleⅥ. Circuit diagram of L293DⅦ. Applications of L293DⅧ. Wiring method of L293D...
  • 22 February 2024

    L7805CV Specifications, Applications and Design Considerations

    Ⅰ. Introduction to L7805CVⅡ. Specifications of L7805CVⅢ. L7805CV symbol, footprint and pin configurationⅣ. Applications of L7805CVⅤ. Precautions for using L7805CVⅥ. Absolute maximum ratings of L7805CVⅦ. Design considerations for...
  • cost

    Help you to save your cost and time.

  • package

    Reliable package for your goods.

  • fast

    Fast Reliable Delivery to save time.

  • service

    Quality premium after-sale service.