ZHCSU23A
October 2023 – December 2023
BQ25638
PRODUCTION DATA
1
1
特性
2
应用
3
说明
4
说明(续)
5
Pin Configuration and Functions
6
Specifications
6.1
Absolute Maximum Ratings
6.2
ESD Ratings
6.3
Recommended Operating Conditions
6.4
Thermal Information
6.5
Electrical Characteristics
6.6
Timing Requirements
6.7
Typical Characteristics
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagram
7.3
Feature Description
7.3.1
Power-On-Reset (POR)
7.3.2
Device Power Up from Battery
7.3.3
Device Power Up from Input Source
7.3.3.1
REGN LDO Power Up
7.3.3.2
Poor Source Qualification
7.3.3.3
Input Voltage Limit Threshold Setting (VINDPM Threshold)
7.3.3.4
Converter Power-Up
7.3.3.5
Input Current Optimizer (ICO)
7.3.3.6
Switching Frequency and Dithering Feature
7.3.4
Power Path Management
7.3.4.1
Narrow VDC Architecture
7.3.4.2
Dynamic Power Management
7.3.4.2.1
Input Current Limit on ILIM Pin
7.3.4.3
High Impedance (HIZ) Mode
7.3.5
Battery Charging Management
7.3.5.1
Autonomous Charging Cycle
7.3.5.2
Battery Charging Profile
7.3.5.3
Charging Termination
7.3.5.4
Thermistor Qualification
7.3.5.4.1
Advanced Temperature Profile in Charge Mode
7.3.5.4.2
TS Pin Thermistor Configuration
7.3.5.4.3
Cold/Hot Temperature Window in OTG Mode
7.3.5.4.4
JEITA Charge Rate Scaling
7.3.5.4.5
TS_BIAS Pin
7.3.5.5
Charging Safety Timers
7.3.6
USB On-The-Go (OTG)
7.3.6.1
Boost OTG Mode
7.3.7
Integrated 12-bit ADC for Monitoring
7.3.8
Status Outputs (INT , PG , STAT)
7.3.8.1
PG Pin Power Good Indicator
7.3.8.2
Charging Status Indicator (STAT)
7.3.8.3
Interrupt to Host (INT)
7.3.9
BATFET Control
7.3.9.1
Shutdown Mode
7.3.9.2
Ultra-Low Power Mode
7.3.9.3
System Power Reset
7.3.10
Protections
7.3.10.1
Voltage and Current Monitoring in Battery Only and HIZ Modes
7.3.10.1.1
Battery Overcurrent Protection
7.3.10.1.2
Battery Undervoltage Lockout
7.3.10.2
Voltage and Current Monitoring in Forward Mode
7.3.10.2.1
Input Overvoltage
7.3.10.2.2
System Overvoltage Protection (SYSOVP)
7.3.10.2.3
Forward Converter Cycle-by-Cycle Current Limit
7.3.10.2.4
System Short
7.3.10.2.5
Battery Overvoltage Protection (BATOVP)
7.3.10.2.6
Sleep and Poor Source Comparators
7.3.10.3
Voltage and Current Monitoring in Reverse Mode
7.3.10.3.1
Boost Mode Overvoltage Protection
7.3.10.3.2
Boost Mode Duty Cycle Protection
7.3.10.3.3
Boost Mode PMID Undervoltage Protection
7.3.10.3.4
Boost Mode Battery Undervoltage
7.3.10.3.5
Boost Converter Cycle-by-Cycle Current Limit
7.3.10.3.6
Boost Mode SYS Short
7.3.10.4
Thermal Regulation and Thermal Shutdown
7.3.10.4.1
Thermal Protection in Buck Mode
7.3.10.4.2
Thermal Protection in Boost Mode
7.3.10.4.3
Thermal Protection in Battery-only Mode
7.4
Device Functional Modes
7.4.1
Host Mode and Default Mode
7.4.2
Register Bit Reset
7.5
Programming
7.5.1
Serial Interface
7.5.1.1
Data Validity
7.5.1.2
START and STOP Conditions
7.5.1.3
Byte Format
7.5.1.4
Acknowledge (ACK) and Not Acknowledge (NACK)
7.5.1.5
Target Address and Data Direction Bit
7.5.1.6
Single Write and Read
7.5.1.7
Multi-Write and Multi-Read
7.6
BQ25638 Registers
8
Application and Implementation
8.1
Application Information
8.2
Typical Application
8.2.1
Design Requirements
8.2.2
Detailed Design Procedure
8.2.2.1
Inductor Selection
8.2.2.2
Input Capacitor
8.2.2.3
Output Capacitor
8.2.3
Application Curves
9
Power Supply Recommendations
10
Layout
10.1
Layout Guidelines
10.2
Layout Example
11
Device and Documentation Support
11.1
Device Support
11.1.1
第三方产品免责声明
11.2
Documentation Support
11.2.1
Related Documentation
11.3
接收文档更新通知
11.4
支持资源
11.5
Trademarks
11.6
静电放电警告
11.7
术语表
12
Revision History
13
Mechanical, Packaging, and Orderable Information
封装选项
机械数据 (封装 | 引脚)
YBG|30
MXBG420
散热焊盘机械数据 (封装 | 引脚)
订购信息
zhcsu23a_oa
zhcsu23a_pm
1
特性
适用于单节电池的高效 5A、1.5MHz 同步开关模式降压充电器
输入电压为 5V 时,输出电流低至 10mA,效率大于 90%
充电电流高达 5A,阶跃为 80mA
充电终止范围为 30 至 1000mA,阶跃为 10mA
灵活的 JEITA 曲线,可在过热条件下实现安全充电
BATFET 控制,支持关断和完全系统复位
纯电池模式下静态电流 1.5µA
超低功耗模式下电池漏电流为 1.3μA
关断模式下电池漏电流为 100nA
支持 USB On-The-Go (OTG)
升压模式运行,输出为 3.84V 至 9.6V
可编程电流限制高达 3.2A
支持宽输入源
3.9V 至 18V 宽输入工作电压范围,绝对最大输入电压为 26V
VINDPM 阈值自动跟踪电池电压
输入电流优化器 (ICO),无需过载适配器即可更大限度地提高输入功率
使用 7mΩ BATFET 实现高效电池运行
窄 VDC (NVDC) 电源路径管理
系统在电池耗尽或无电池的情况下可瞬时启动
适配器满载时,电池可为系统补充电量
灵活的自主或 I
2
C 控制模式
用于电压、电流和温度监控的集成 12 位 ADC
ADCIN 引脚,可用于高达 1V 的外部信号
高精度
充电电压调节范围为 ±0.5%
充电电流调节范围为 ±5%
输入电流调节范围为 ±5%
安全
电池温度检测
热调节和热关断
电池/转换器过流保护
充电安全计时器