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BQ25619 Datasheet(PDF) 3 Page - Texas Instruments

No. de pieza BQ25619
Descripción Electrónicos  BQ25619 I2C Controlled 1-Cell 1.5-A Battery Charger with 20-mA Termination and 1-A Boost Operation
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Fabricante Electrónico  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
Logo TI1 - Texas Instruments

BQ25619 Datasheet(HTML) 3 Page - Texas Instruments

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BQ25619
www.ti.com
SLUSDF8A – JUNE 2019 – REVISED JULY 2019
Product Folder Links: BQ25619
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Copyright © 2019, Texas Instruments Incorporated
5 Description (continued)
The BQ25619 is a highly integrated 1.5-A switch-mode battery charge management and system Power Path
management device for Li-Ion and Li-polymer battery. It features fast charging with high input voltage support for
a wide range of applications including wearables, and earphone charging case. Its low impedance power path
optimizes switch-mode operation efficiency, reduces battery charging time and extends battery run time during
discharging phase. Its input voltage and current regulation, low termination current, and battery remote sensing
deliver maximum charging power to the 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, USB
compliant high voltage adapter and wireless power. It is compliant with USB 2.0 and USB 3.0 power spec with
input current and voltage regulation. The device takes the result from detection circuit in the system, such as
USB PHY device.
The device integrates the buck charger and boost regulator into one solution with single inductor. The boost
mode supplies 5V (adjustable 4.6 V/4.75 V/5 V/5.15 V) on PMID pin. The boost mode is used to save BOM and
charge another battery by the control of PMID_GOOD.The PMID_GOOD pin is used to drive the external PMOS
FET to disconnect boost output PMID from the attached accessories.
The Power Path management regulates the system slightly above battery voltage but does not drop below 3.5-V
minimum system voltage (programmable) with adapter applied. With this feature, the system maintains operation
even when the battery is completely depleted or removed. When the input current limit or voltage limit is reached,
the Power Path management automatically reduces the charge current. As the system load continues to
increase, the battery starts to discharge the battery until the system power requirement is met. This supplement
mode prevents overloading the input source.
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 the 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 battery
negative temperature coefficient thermistor monitoring, charging safety timer and overvoltage and over-current
protections. Thermal regulation reduces charge current when the junction temperature exceeds 110°C. The
status register reports the charging status and any fault conditions. With I2C, the VBUS_GD bit indicates if a
good power source is present, and the INT output immediately notifies host when a fault occurs.
The device also provides the QON pin for BATFET enable and reset control to exit low power ship mode or full
system reset function.
The device is available in 24-pin, 4 mm × 4 mm x 0.75 mm thin WQFN package.


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