SLUSFR7
August 2025
BQ24810
PRODUCTION DATA
1
1
Features
2
Applications
3
Description
4
Pin Configuration and Functions
5
Specifications
5.1
Absolute Maximum Ratings
5.2
ESD Ratings
5.3
Recommended Operating Conditions
5.4
Thermal Information
5.5
Electrical Characteristics
5.6
Timing Requirements
5.7
Typical Characteristics
6
Detailed Description
6.1
Overview
6.2
Functional Block Diagram
6.3
Feature Description
6.3.1
Device Power Up
6.3.1.1
Battery Only
6.3.1.2
Adapter Detect and ACOK Output
6.3.1.2.1
Adapter Overvoltage (ACOV)
6.3.1.3
REGN LDO
6.3.2
System Power Selection
6.3.3
Current and Power Monitor
6.3.3.1
High Accuracy Current Sense Amplifier (IADP and IDCHG)
6.3.3.2
High Accuracy Power Sense Amplifier (PMON)
6.3.4
Processor Hot Indication for CPU Throttling
6.3.5
Input Current Dynamic Power Management
6.3.5.1
Setting Input Current Limit
6.3.6
Two-Level Adapter Current Limit (Peak Power Mode)
6.3.7
EMI Switching Frequency Adjust
6.3.8
Device Protections Features
6.3.8.1
Charger Timeout
6.3.8.2
Input Overcurrent Protection (ACOC)
6.3.8.3
Charge Overcurrent Protection (CHG_OCP)
6.3.8.4
Battery Overvoltage Protection (BATOVP)
6.3.8.5
Battery Short
6.3.8.6
Thermal Shutdown Protection (TSHUT)
6.3.8.7
Inductor Short, MOSFET Short Protection
6.4
Device Functional Modes
6.4.1
Battery Charging in Buck Mode
6.4.1.1
Setting the Charge Current
6.4.1.2
Setting the Charge Voltage
6.4.1.3
Automatic Internal Soft-Start Charger Current
6.4.2
Hybrid Power Boost Mode
6.4.3
Battery Only Boost Mode
6.4.3.1
Setting AC_PLUG_EXIT_DEG in Battery Only Boost Mode
6.4.3.2
Setting Minimum System Voltage in Battery Only Boost Mode
6.4.4
Battery Discharge Current Regulation in Hybrid Boost Mode and Battery Only Boost Mode
6.4.5
Battery LEARN Cycle
6.4.6
Converter Operational Modes
6.4.6.1
Continuous Conduction Mode (CCM)
6.4.6.2
Discontinuous Conduction Mode (DCM)
6.4.6.3
Non-Sync Mode and Light Load Comparator
6.5
Programming
6.5.1
SMBus Interface
6.5.1.1
SMBus Write-Word and Read-Word Protocols
6.5.1.2
Timing Diagrams
6.6
Register Maps
6.6.1
Battery-Charger Commands
6.6.2
Setting Charger Options
6.6.2.1
ChargeOption0 Register
6.6.3
ChargeOption1 Register
6.6.4
ChargeOption2 Register
6.6.5
ChargeOption3 Register
6.6.6
ChargeOption4 Register
6.6.7
ProchotOption0 Register
6.6.8
ProchotOption1 Register
6.6.9
ProchotStatus Register
6.6.10
Charge Current Register
6.6.11
Charge Voltage Register
6.6.12
Discharge Current Register
6.6.13
Minimum System Voltage Register
6.6.14
Input Current Register
6.6.15
Register Exceptions
7
Application and Implementation
7.1
Application Information
7.2
Typical Applications
7.2.1
Typical System Schematic
7.2.1.1
Design Requirements
7.2.1.2
Detailed Design Procedure
7.2.1.2.1
Adapter Current Sense Filter
7.2.1.2.2
Negative Output Voltage Protection
7.2.1.2.3
Reverse Input Voltage Protection
7.2.1.2.4
Reduce Battery Quiescent Current
7.2.1.2.5
CIN Capacitance
7.2.1.2.6
L1 Inductor Selection
7.2.1.2.7
CBATT Capacitance
7.2.1.2.8
Buck Charging Internal Compensation
7.2.1.2.9
CSYS Capacitance
7.2.1.2.10
Battery Only Boost Internal Compensation
7.2.1.2.11
Power MOSFETs Selection
7.2.1.2.12
Input Filter Design
7.2.1.3
Application Curves
7.2.2
Migration from Previous Devices (Does Not Support Battery Only Boost)
7.2.2.1
Design Requirements
7.2.2.2
Detailed Design Procedure
7.2.2.2.1
CSYS Capacitance
7.2.2.3
Application Curves
7.3
Power Supply Recommendations
7.4
Layout
7.4.1
Layout Guidelines
7.4.2
Layout Examples
7.4.2.1
Layout Consideration of Current Path
7.4.2.2
Layout Consideration of Short Circuit Protection
7.4.2.3
Layout Consideration for Short Circuit Protection
8
Device and Documentation Support
8.1
Third-Party Products Disclaimer
8.2
Documentation Support
8.2.1
Related Documentation
8.3
Receiving Notification of Documentation Updates
8.4
Support Resources
8.5
Trademarks
8.6
Electrostatic Discharge Caution
8.7
Glossary
9
Revision History
10
Mechanical, Packaging, and Orderable Information
封装选项
请参考 PDF 数据表获取器件具体的封装图。
机械数据 (封装 | 引脚)
RUY|28
散热焊盘机械数据 (封装 | 引脚)
订购信息
slusfr7_oa
slusfr7_pm
1
Features
Hybrid Power Boost Mode to power up system from adapter and battery together
Ultra-fast transient response of 100µs to enter Hybrid Power Boost Mode
Ultra-fast ICHG recovery within 60µs after exiting Hybrid Power Boost Mode
Battery Only Boost Mode to support larger system transients and extend battery run time
Peak power two-level input current limit to maximize the power from adapter and minimize battery discharge
Charge 1- to 4-cell battery pack from 4.5V to 24V adapter
High accuracy power and current monitoring for CPU throttling
Comprehensive
PROCHOT
profile
± 2% Current monitor accuracy
± 5% System Power Monitor Accuracy (PMON)
Automatic
NMOS
power source selection from adapter or battery
ACFET
fast turn on in 100µs when exiting learn mode from battery removal
Programmable input current, charge voltage, charge and discharge current limit
±0.4% Charge voltage (16mV/step)
±2% Input current (64mA/step)
±2% Charge current (64mA/step)
±2% Discharge current (512mA/step)
High integration
Battery LEARN function
Battery present monitor
Boost Mode indicator
Loop compensation
BTST Diode
Enhanced safety features for overvoltage protection, overcurrent protection, battery, inductor, and MOSFET short-circuit protection
Switching frequency: 300kHz, 400kHz, 600kHz, and 800kHz
Realtime system control on ILIM pin to limit charge and discharge current
0.65mA Adapter standby quiescent current for Energy Star
Input current limit (IINDPM) up to 21.12A/10.56A with 5mΩ/10mΩ sense resistor
V
SYSMIN
regulation up to 16.128V+2.3V during battery only boost mode