BQ25630
I²C-Abwärts-Batterielader, 1 Zelle, 5 A, mit USB Type-C®-Erkennung
BQ25630
- High-efficiency 5A, 1.5MHz, synchronous switch mode buck charger for single cell battery
- >90% efficiency down to 10mA output current from 5V input
- Charge current up to 5A in 20mA steps
- Charge termination from 30 to 1000mA in 10mA steps
- Highly configurable JEITA profile for safe charging over temperature
- Fully Integrated CC Controller with Dual Role Power (DRP), Try.SNK and Try.SRC
- BATFET control to support shutdown, ship mode and full system reset
- 1.5µA quiescent current in battery only mode
- 0.15µA battery leakage current in ship mode
- 0.1µA battery leakage current in shutdown mode
- Supports USB On-The-Go (OTG) and SRC mode
- Reverse mode with 3.84V to 9.6V output
- Programmable current limit up to 3.2A
- Supports a wide range of input sources
- 3.9V to 18V input operating voltage range with 26V absolute max input voltage
- Supports USB Type-C inputs, USB BC1.2, HVDCP, and Non-Standard Adapters
- Supports IINDPM Range from 10mA to 3.2A
- API (Alternate Power from Input) mode for low power input sources down to 10mA
- VINDPM automatically tracks battery voltage
- Input Current Optimizer (ICO) maximizes input power without overloading adapters
- Efficient battery operation with 7mΩ BATFET
- Narrow VDC (NVDC) power path management
- System instant-on with depleted or no battery
- Battery supplement when adapter is fully loaded
- Flexible autonomous or I2C-controlled modes
- Integrated 12-bit ADC for voltage, current, and temperature monitoring
- High accuracy
- ±0.5% charge voltage regulation
- ±5% charge current regulation
- ±5% input current regulation
- Safety
- Liquid detection and corrosion mitigation (Patent Pending)
- Thermal regulation and thermal shutdown
- Input/system/battery overvoltage and overcurrent protection
- Charging safety timer
The BQ25630 is a highly-integrated 5A switch-mode battery charge management and system power path management device for single cell Li-Ion and Li-polymer batteries. The design is highly integrated with built-in current sensing, loop compensation, input reverse-blocking FET (Q1), switching FETs (Q2 and Q3), and battery FET (Q4) between system and battery. The device integrates a USB Type-C controller with Dual-Role Power with Try.SNK and Try.SRC support. The BQ25630 uses NVDC power path management, regulating the system slightly above the battery voltage without dropping below a configurable minimum system voltage. The low impedance power path optimizes efficiency, reduces battery charging time and extends battery life during discharging phase, and the ultra-low 0.15µA ship mode current extends battery shelf life.
The BQ25630 supports a wide range of input sources, including standard USB host port, USB charging port, USB-C adapters, and USB compliant high voltage adapters. The device integrates a USB Type-C controller (CC1/CC2) with USB-C Detection up to 15W and sets the current limit according to the detection result. The device supports Dual-Role Power with Try.SNK and Try.SRC. The device also includes BC1.2 detection using the built-in D+/D- USB adapter detection interface. The BQ25630 is compliant with USB 2.0 and USB 3.0 power specifications for input current and voltage regulation. In addition, the Input Current Optimizer (ICO) supports the detection of maximum power point of the input source without overload. The device also meets USB On-the-Go (OTG) operation power rating specification with constant current limit up to 3.2A.
The power path management regulates the system slightly above battery voltage but does not drop below the programmable minimum system voltage. With this feature, the system maintains operation even when the battery is completely depleted or removed. When the input current limit or input voltage limit is reached, the power path management automatically reduces the charge current. If the system load continues to increase, the power path discharges 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 host control. By sensing the battery voltage, the device charges the battery in four different phases: trickle charge, pre-charge, constant current (CC) charge and constant voltage (CV) charge. At the end of the charging cycle, the charger automatically terminates when the charge current is below a preset threshold and the battery voltage is higher than the recharge threshold. Termination is supported for TS pin COOL, PRECOOL, NORMAL, WARM and PREWARM temperature zones. When the full battery voltage falls below the programmable recharge threshold, the charger automatically starts a new charging cycle.
The charger provides various safety features for battery charging and system operations, including battery negative temperature coefficient (NTC) thermistor monitoring, charging safety timer and overvoltage and overcurrent protections. The thermal regulation reduces charge current when the junction temperature exceeds the programmable threshold. Other safety features include battery temperature sensing for charge mode and OTG boost mode, thermal shutdown and input UVLO and over-voltage protection. The device also has an integrated liquid detection and corrosion mitigation feature to protect against port corrosion from moisture. The PG output indicates if a good power source is present and above the programmable PG_TH value. The INT output immediately notifies the host when a fault occurs or status changes.
The device also provides a 12-bit analog-to-digital converter (ADC) for monitoring charge current and input/battery/system (VBUS, BAT, SYS, TS) voltages. The QON pin provides BATFET enable and reset control to exit ship mode and standby mode or initiate a full system reset.
BQ25630 is available in a 30-ball, 2.3mm × 2.4mm DSBGA package.
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Technische Dokumentation
| Typ | Titel | Datum | ||
|---|---|---|---|---|
| * | Data sheet | BQ25630 I2 C Controlled Single Cell 5A Buck Charger with USB-C Detection datasheet (Rev. A) | PDF | HTML | 11 Dez 2025 |
| Certificate | BQ25630EVM EU Declaration of Conformity (DoC) | 26 Mär 2025 |
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