BQ25730 Series
I²C 1-5 cell NVDC buck-boost battery charge controller with power path and USB-C® PD OTG
Manufacturer: Texas Instruments
Link to Manufacturer Page: https://www.ti.com/
Catalog
I²C 1-5 cell NVDC buck-boost battery charge controller with power path and USB-C® PD OTG
Part | Programmable Features | Mounting Type | Battery Pack Voltage [Min] | Battery Pack Voltage [Max] | Supplier Device Package | Battery Chemistry | Number of Cells [Min] | Number of Cells [Max] | Operating Temperature [Min] | Operating Temperature [Max] | Interface | Charge Current - Max [Max] | Fault Protection | Current - Charging | Voltage - Supply (Max) [Max] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments BQ25730RSNR | Current, Voltage | Surface Mount | 9 V | 12.6 V | 32-QFN (4x4) | Multi-Chemistry | 1 | 5 | -40 °C | 85 °C | I2C | 16.2 A | Over Current, Over Temperature, Over Voltage | Constant - Programmable | 26 V |
Key Features
• Power path control through battery MOSFET implementing independent system voltage instant-on with no battery or depleted battery400kHz/800kHz programmable switching frequency for high efficiency/high power densityBuck-boost narrow voltage DC (NVDC) charger for USB-C Power Delivery (PD) interface platform3.5V to 26V input range to charge 1- to 5-cell batteryCharge current up to 16.2A/8.1A with 128mA/64mA resolution based on 5mΩ/10mΩ sensing resistorInput current limit up to 10A/6.35A with 100mA/50mA resolution based on 5mΩ/10mΩ sensing resistorSupport USB 2.0, USB 3.0, USB 3.1 and USB Power Delivery (PD)Input Current Optimizer (ICO) to extract max input power without overloading the adapterSeamless transition between buck, buck-boost, and boost operationsInput current and voltage regulation (IINDPM and VINDPM) against source overloadTI patented switching frequency dithering pattern for EMI noise reductionTI patented Pass Through Mode (PTM) for system power efficiency improvement and battery fast charging achieving 99% efficiency.Input and battery current monitor through dedicated pinsIntegrated 8-bit ADC to monitor voltage, current and powerBattery MOSFET ideal diode operation in supplement mode to support system when adapter is fully loadedPower up USB port from battery (USB OTG)3V to 24V OTG with 8mV resolutionOutput current limit up to 12.7A/6.35A with 100mA/50mA resolution based on 5mΩ/10mΩ sensing resistorI2C host control interface for flexible system configurationHigh accuracy for the regulation and monitor±0.5% Charge voltage regulation±3% Charge current regulation±2.5% Input current regulation±2% Input/charge current monitorSafetyThermal shutdownInput, system, battery overvoltage protectionInput, MOSFET, inductor overcurrent protectionSafety-Related CertificationsIEC 62368-1 CB CertificationPackage: 32-Pin 4.0mm × 4.0mm WQFNPower path control through battery MOSFET implementing independent system voltage instant-on with no battery or depleted battery400kHz/800kHz programmable switching frequency for high efficiency/high power densityBuck-boost narrow voltage DC (NVDC) charger for USB-C Power Delivery (PD) interface platform3.5V to 26V input range to charge 1- to 5-cell batteryCharge current up to 16.2A/8.1A with 128mA/64mA resolution based on 5mΩ/10mΩ sensing resistorInput current limit up to 10A/6.35A with 100mA/50mA resolution based on 5mΩ/10mΩ sensing resistorSupport USB 2.0, USB 3.0, USB 3.1 and USB Power Delivery (PD)Input Current Optimizer (ICO) to extract max input power without overloading the adapterSeamless transition between buck, buck-boost, and boost operationsInput current and voltage regulation (IINDPM and VINDPM) against source overloadTI patented switching frequency dithering pattern for EMI noise reductionTI patented Pass Through Mode (PTM) for system power efficiency improvement and battery fast charging achieving 99% efficiency.Input and battery current monitor through dedicated pinsIntegrated 8-bit ADC to monitor voltage, current and powerBattery MOSFET ideal diode operation in supplement mode to support system when adapter is fully loadedPower up USB port from battery (USB OTG)3V to 24V OTG with 8mV resolutionOutput current limit up to 12.7A/6.35A with 100mA/50mA resolution based on 5mΩ/10mΩ sensing resistorI2C host control interface for flexible system configurationHigh accuracy for the regulation and monitor±0.5% Charge voltage regulation±3% Charge current regulation±2.5% Input current regulation±2% Input/charge current monitorSafetyThermal shutdownInput, system, battery overvoltage protectionInput, MOSFET, inductor overcurrent protectionSafety-Related CertificationsIEC 62368-1 CB CertificationPackage: 32-Pin 4.0mm × 4.0mm WQFN
Description
AI
The BQ25730 is a synchronous NVDC buck-boost battery charge controller to charge a 1- to 5-cell battery from a wide range of input sources including USB adapter, high voltage USB-C Power Delivery (PD) sources, and traditional adapters. It offers a low component count, high efficiency solution for space constrained, 1- to 5-cell battery charging applications. The Narrow VDC buck-boost architecture avoid direct power path from input source to system voltage which implements wide input voltage range and narrow system voltage range at same time. Narrow system voltage range is valuable for faster battery supplement and lower MOSFET rating for next stage converter.
The NVDC configuration allows the system to be regulated based on battery voltage, but not drop below system minimum voltage. The system keeps operating even when the battery is completely discharged or removed. When load power exceeds input source rating, the battery goes into supplement mode and prevents the system from crashing.
During power up, the charger sets the converter to a buck, boost, or buck-boost configuration based on the input source and battery conditions. The charger seamlessly transitions between the buck, boost, and buck-boost operation modes without host control.
In the absence of an input source, the BQ25730 supports the USB On-the-Go (OTG) function from a 1- to 5-cell battery to generate an adjustable 3V to 24V output on VBUS with 8mV resolution. The OTG output voltage transition slew rate can be configured to comply with the USB-PD 3.0 PPS specification.
The latest version of the USB-C PD specification includes Fast Role Swap (FRS) to ensure power role swapping occurs in a timely fashion so that the device(s) connected to the dock can avoid experiencing momentary power loss or glitching. This device integrates FRS in compliance with the PD specification.
TI patented switching frequency dithering pattern can significantly reduce EMI noise over the whole conductive EMI frequency range (150kHz to 30MHz). Multiple dithering scale options are available to provide flexibility for different applications to simplify EMI noise filter design.
The charger can be operated in the TI patented Pass Through Mode (PTM) to improve efficiency over the full load range. In PTM, input power is directly passed through the charger to the system. Switching losses of the MOSFETs and inductor core loss can be saved for high efficiency operation.
The BQ25730 is available in a 32-pin 4mm × 4mm WQFN package.
The BQ25730 is a synchronous NVDC buck-boost battery charge controller to charge a 1- to 5-cell battery from a wide range of input sources including USB adapter, high voltage USB-C Power Delivery (PD) sources, and traditional adapters. It offers a low component count, high efficiency solution for space constrained, 1- to 5-cell battery charging applications. The Narrow VDC buck-boost architecture avoid direct power path from input source to system voltage which implements wide input voltage range and narrow system voltage range at same time. Narrow system voltage range is valuable for faster battery supplement and lower MOSFET rating for next stage converter.
The NVDC configuration allows the system to be regulated based on battery voltage, but not drop below system minimum voltage. The system keeps operating even when the battery is completely discharged or removed. When load power exceeds input source rating, the battery goes into supplement mode and prevents the system from crashing.
During power up, the charger sets the converter to a buck, boost, or buck-boost configuration based on the input source and battery conditions. The charger seamlessly transitions between the buck, boost, and buck-boost operation modes without host control.
In the absence of an input source, the BQ25730 supports the USB On-the-Go (OTG) function from a 1- to 5-cell battery to generate an adjustable 3V to 24V output on VBUS with 8mV resolution. The OTG output voltage transition slew rate can be configured to comply with the USB-PD 3.0 PPS specification.
The latest version of the USB-C PD specification includes Fast Role Swap (FRS) to ensure power role swapping occurs in a timely fashion so that the device(s) connected to the dock can avoid experiencing momentary power loss or glitching. This device integrates FRS in compliance with the PD specification.
TI patented switching frequency dithering pattern can significantly reduce EMI noise over the whole conductive EMI frequency range (150kHz to 30MHz). Multiple dithering scale options are available to provide flexibility for different applications to simplify EMI noise filter design.
The charger can be operated in the TI patented Pass Through Mode (PTM) to improve efficiency over the full load range. In PTM, input power is directly passed through the charger to the system. Switching losses of the MOSFETs and inductor core loss can be saved for high efficiency operation.
The BQ25730 is available in a 32-pin 4mm × 4mm WQFN package.