SLUSEC9B
October 2020 – July 2024
BQ25618E
,
BQ25619E
PRODUCTION DATA
1
1
Features
2
Applications
3
Description
4
Description (continued)
5
Device Comparison Table
6
Pin Configuration and Functions
7
Specifications
7.1
Absolute Maximum Ratings
7.2
ESD Ratings
7.3
Recommended Operating Conditions
7.4
Thermal Information
7.5
Electrical Characteristics
7.6
Timing Requirements
7.7
Typical Characteristics
8
Detailed Description
8.1
Overview
8.2
Functional Block Diagram
8.3
Feature Description
8.3.1
Power-On-Reset (POR)
8.3.2
Device Power Up From Battery Without Input Source
8.3.3
Power Up From Input Source
8.3.3.1
Power Up REGN LDO
8.3.3.2
Poor Source Qualification
8.3.3.3
Input Source Type Detection (IINDPM Threshold)
8.3.3.3.1
PSEL Pins Sets Input Current Limit
8.3.3.4
Input Voltage Limit Threshold Setting (VINDPM Threshold)
8.3.3.5
Power Up Converter in Buck Mode
8.3.3.6
HIZ Mode with Adapter Present
8.3.4
Power Path Management
8.3.4.1
Narrow Voltage DC (NVDC) Architecture
8.3.4.2
Dynamic Power Management
8.3.4.3
Supplement Mode
8.3.5
Battery Charging Management
8.3.5.1
Autonomous Charging Cycle
8.3.5.2
Battery Charging Profile
8.3.5.3
Charging Termination
8.3.5.4
Thermistor Qualification
8.3.5.4.1
JEITA Guideline Compliance During Charging Mode
8.3.5.5
Charging Safety Timer
8.3.6
Ship Mode and QON Pin
8.3.6.1
BATFET Disable (Enter Ship Mode)
8.3.6.2
BATFET Enable (Exit Ship Mode)
8.3.6.3
BATFET Full System Reset
8.3.7
Status Outputs ( STAT, INT , PG )
8.3.7.1
Power Good Indicator (PG_STAT Bit; BQ25619E only)
8.3.7.2
Charging Status Indicator (STAT)
8.3.7.3
Interrupt to Host ( INT)
8.3.8
Protections
8.3.8.1
Voltage and Current Monitoring in Buck Mode
8.3.8.1.1
Input Overvoltage Protection (ACOV)
8.3.8.1.2
System Overvoltage Protection (SYSOVP)
8.3.8.2
Thermal Regulation and Thermal Shutdown
8.3.8.2.1
Thermal Protection in Buck Mode
8.3.8.3
Battery Protection
8.3.8.3.1
Battery Overvoltage Protection (BATOVP)
8.3.8.3.2
Battery Overdischarge Protection
8.3.8.3.3
System Overcurrent Protection
8.3.9
Serial Interface
8.3.9.1
Data Validity
8.3.9.2
START and STOP Conditions
8.3.9.3
Byte Format
8.3.9.4
Acknowledge (ACK) and Not Acknowledge (NACK)
8.3.9.5
Slave Address and Data Direction Bit
8.3.9.6
Single Read and Write
8.3.9.7
Multi-Read and Multi-Write
8.4
Device Functional Modes
8.4.1
Host Mode and Default Mode
8.5
Register Maps
9
Application and Implementation
9.1
Application Information
9.2
Typical Application
9.2.1
Design Requirements
9.2.2
Detailed Design Procedure
9.2.2.1
Inductor Selection
9.2.2.2
Input Capacitor and Resistor
9.2.2.3
Output Capacitor
9.2.3
Application Curves
10
Power Supply Recommendations
11
Layout
11.1
Layout Guidelines
11.2
Layout Example
12
Device and Documentation Support
12.1
Device Support
12.1.1
Third-Party Products Disclaimer
12.2
Documentation Support
12.2.1
Related Documentation
12.3
Receiving Notification of Documentation Updates
12.4
Support Resources
12.5
Trademarks
12.6
Electrostatic Discharge Caution
12.7
Glossary
13
Revision History
14
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)
RTW|24
散热焊盘机械数据 (封装 | 引脚)
RTW|24
QFND125K
订购信息
slusec9b_oa
slusec9b_pm
1
Features
High-efficiency, 1.5MHz, synchronous Switch Mode buck charger
95.5% charge efficiency at 0.5A and 94.5% efficiency at 1A
±0.5% charge voltage regulation (10mV step)
I
2
C programmable JEITA profile of charge voltage, current and temperature thresholds
Low termination current with high accuracy 20mA±10mA
Small inductor form factor of 2.5 x 2.0 x 1.0mm
3
Single input supporting USB input, high-voltage adapter, or wireless power
Support 4V to 13.5V input voltage range with 22V absolute max input rating
Programmable input current limit (IINDPM) with
I
2
C (100mA to 3.2A, 100mA/step)
Maximum power tracking by input voltage limit (VINDPM)
up to 5.4V
VINDPM threshold automatically tracks battery voltage
Narrow voltage DC (NVDC) power path management
System instant-on with no battery or deeply discharged battery
Flexible I
2
C configuration and autonomous charging for optimal system performance
High integration includes all MOSFETs, current sensing and loop compensation
Low R
DSON
19.5mΩ BATFET to minimize charging loss and extend battery run time
BATFET control for Ship Mode, and full system reset with and without adapter
7µA low battery leakage current in Ship Mode
9.5µA low battery leakage current with system standby
High accuracy battery charging profile
±6% charge current regulation
±7.5% input current regulation
Remote battery sensing to charge faster
Programmable top-off timer for full battery charging
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