BQ25790
- High efficient synchronous Switch Mode buck-boost charger for
1-4 cell battery
- 750-kHz and 1.5-MHz Programmable switching frequencies
- Efficiency optimized for charging 2s battery, 96.5% efficiency with 9-V input and 94.5% efficiency with 15-V input at 3-A ICHG
- Charging current up to 5 A with 10-mA resolution
- Support wide range of input
sources
- 3.6-V to 24-V Wide input operating voltage range with 30-V absolute maximum rating
- Maximum power tracking with VINDPM up to 22 V and IINDPM up to 3.3 A
- Detect USB BC1.2, SDP, CDP, DCP, HVDCP and non-standard adapters
- Dual-input power mux controller for source selection
- High level
integration
- Four switching MOSFETs and BATFET
- Input current and charging current sensing
- Narrow-VDC (NVDC) Power Path management
- Power USB port from battery (USB
OTG)
- 2.8-V to 22-V OTG output voltage with 10-mV resolution to support USB-PD PPS
- OTG Output current regulation up to 3.32 A with 40-mA resolution
- Flexible autonomous and I2C mode for optimal system performance
- Integrated 16-bit ADC for voltage, current and temperature monitor
- Low battery quiescent
current
- Typical 21-µA at battery only operation
- Typical 600 nA in Charger Shutdown Mode
- High accuracy
- ±0.5% Charge voltage regulation for 2s battery
- ±5% Charge current regulation
- ±5% Input current regulation
- Safety
- Thermal regulation and thermal shutdown
- Input/battery OVP and OCP
- Converter MOSFETs OCP
- Charging safety timer
- Package
- 56-Pin 2.9mm × 3.3mm WCSP
The BQ25790 is a fully integrated switch-mode buck-boost charger for 1-4 cell Li-ion battery and Li-polymer battery. The integration includes 4 switching MOSFETs (Q1, Q2, Q3, Q4), input and charging current sensing circuits, the battery FET (QBAT) and all the loop compensation of the buck-boost converter. It provides high power density and design flexibility to charge batteries across the full input voltage range for USB Type-C™ and USB power delivery (USB-PD) applications such as smart phone, tablet and other portable devices.
The charger supports the narrow VDC power path management, in which the system is regulated at a voltage slightly higher than the battery voltage, but not drop below the minimum system voltage. The system keeps operating even when the battery is completely discharged or removed. When load power exceeds input source rating, the battery gets into supplement mode and prevents the input source from being overloaded and the system from crashing.
The device charges a battery from a wide range of the input sources including legacy USB adapter to high voltage USB PD adapter and traditional barrel adapter. The charger automatically sets converter to be buck, boost or buck-boost configurations based on input voltage and battery voltage without the host control. The dual input source selector manages the power flowing from two different input sources. The inputs selection is controlled by the host through I2C with default source #1 (VAC1) as the primary input and the source #2 (VAC2) as the secondary input.
To support fast charging using adjustable high voltage adapter, the device provides D+/D- handshake. The device is compliant with USB 2.0 and USB 3.0 power delivery specification with input current and voltage regulation. In addition, the Input Current Optimizer (ICO) allows the detection of maximum power point of an unknown input source.
Besides the I2C host controlled charging mode, this charger also supports autonomous charging mode. After power up, the charging is enabled with default register settings. The device can complete a charging cycle without any software engagements. It detects battery voltage and charges the battery in different phases: trickle charging, pre-charging, constant current (CC) charging and constant voltage (CV) charging. At the end of the charging cycle, the charger automatically terminates when the charge current is below a pre-set limit (termination current) in the constant voltage phase. When the full battery falls below the recharge threshold, the charger will automatically start another charging cycle.
In the absence of input sources, this device supports USB On-the-Go (OTG) function, discharging battery to generate an adjustable 2.8V~22V voltage on VBUS with 10mV step size, which is compliant to the USB PD 3.0 specification defined programmable power supply (PPS) feature.
The charger provides various safety features for battery charging and system operations, including battery temperature negative thermistor monitoring, trickle charge, pre-charge and fast charge timers and over-voltage/over-current protections on battery and input. The thermal regulation reduces charge current when the junction temperature exceeds a programmable threshold. The STAT output of the device reports the charging status and any fault conditions. The PG output indicates if a good power source is present. The INT pin immediately notifies host when fault occurs.
The device also provides a 16-bit analog-to-digital converter (ADC) for monitoring charge current and input/battery/system (VAC, VBUS, BAT, SYS, TS) voltages.
It is available in a 56-pin 2.9mm × 3.3mm WCSP package.
技术文档
| 顶层文档 | 类型 | 标题 | 格式选项 | 下载最新的英语版本 | 日期 | |
|---|---|---|---|---|---|---|
| * | 数据表 | BQ25790 I2C 控制型 1-4 节电池 5A 升压模式电池充电器 数据表 | 2020-6-3 | |||
| 应用手册 | How to Implement Ship Mode for Battery Powered End Equipment | PDF | HTML | 2026-7-9 | |||
| 应用手册 | 增加 NVCD 电池充电器的放电电流 | PDF | HTML | 英语版 | PDF | HTML | 2024-1-11 | |
| 模拟设计期刊 | 医学超声系统中的多电池管理 (Rev. B) | PDF | HTML | 英语版 (Rev.B) | PDF | HTML | 2023-6-14 | |
| 应用手册 | 如何解决热插拔时的电压过冲 | PDF | HTML | 英语版 | PDF | HTML | 2023-5-10 | |
| 白皮书 | 降压/升压电池充电器结合 USB Type-C® 电力输送,可更大程度地 提高功率密度. (Rev. A) | PDF | HTML | 英语版 (Rev.A) | PDF | HTML | 2022-7-20 | |
| 应用手册 | 使用智能电池充电器估计充电状态 | PDF | HTML | 英语版 | PDF | HTML | 2022-5-19 | |
| 技术文章 | How to choose the right battery-charger IC for ultrasound point-of-care products | PDF | HTML | 2021-3-24 | |||
| 技术文章 | Maximize power density with buck-boost charging and USB Type C™ Power Delivery | PDF | HTML | 2020-6-29 | |||
| 技术文章 | Universal and fast charging – a future trend for battery-powered applications | PDF | HTML | 2020-6-26 | |||
| 证书 | BQ25790EVM EU Declaration of Conformity (DoC) | 2020-4-28 | ||||
| 技术文章 | Transform the way you charge your devices with USB Type-C and PD | PDF | HTML | 2017-7-18 |
设计与开发
如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。
BQ25790EVM — 具有双输入和 USB PD 3.0 OTG 输出的 I2C 5-A 1-4 节电池降压/升压充电器评估模块
BQSTUDIO-STABLE — Battery Management Studio (bqStudio) Software – stable version downloads for bq series of TI battery fuel gauges
Battery Management Studio (bqStudio) 提供一整套稳健的工具来帮助您评估、配置、测试 TI 电池管理产品以及利用其进行设计或以其他方式对其加以利用。这包括提供对寄存器和数据内存的完全访问,其中包括支持实时查看、绘制和记录轻松连接以发送命令、控制低级通信和 I/O,以及自动和指导支持配置、校准、执行学习周期以及生成有用的文件以将器件投入生产。
bqStudio 不支持 bq20xxx 和 bq30xxx 等旧产品。可从相应的产品页面下载特定的评估软件。您为 bqStudio 下载的最新化学物质更新程序也需要更新版 bqStudio。
BQSTUDIO-TEST — Battery Management Studio (bqStudio) Software – Beta version downloads
Battery Management Studio (bqStudio) 提供一整套稳健的工具来帮助您评估、配置、测试 TI 电池管理产品以及利用其进行设计或以其他方式对其加以利用。这包括提供对寄存器和数据内存的完全访问,其中包括支持实时查看、绘制和记录轻松连接以发送命令、控制低级通信和 I/O,以及自动和指导支持配置、校准、执行学习周期以及生成有用的文件以将器件投入生产。
bqStudio 不支持 bq20xxx 和 bq30xxx 等旧产品。可从相应的产品页面下载特定的评估软件。您为 bqStudio 下载的最新化学物质更新程序也需要更新版 bqStudio。
TI-CHARGER-GUI — 用于 USB2ANY 和电池充电评估模块的 GUI 软件
TIDA-010269 — 手持式超声波成像设备电源参考设计
| 封装 | 引脚 | CAD 符号、封装和 3D 模型 |
|---|---|---|
| DSBGA (YBG) | 56 | Ultra Librarian |
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