ZHCSIH0C
December 2017 – June 2021
LP87702-Q1
PRODUCTION DATA
1
特性
2
应用
3
说明
4
Revision History
5
说明(续)
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
I2C Serial Bus Timing Parameters
7.7
Typical Characteristics
8
Detailed Description
8.1
Overview
8.2
Functional Block Diagram
8.3
Feature Descriptions
8.3.1
Step-Down DC/DC Converters
8.3.1.1
Overview
8.3.1.2
Transition Between PWM and PFM Modes
8.3.1.3
Buck Converter Load Current Measurement
8.3.2
Boost Converter
8.3.3
Spread-Spectrum Mode
8.3.4
Sync Clock Functionality
8.3.5
Power-Up
8.3.6
Buck and Boost Control
8.3.6.1
Enabling and Disabling Converters
8.3.6.2
Changing Buck Output Voltage
8.3.7
Enable and Disable Sequences
8.3.8
Window Watchdog
8.3.9
Device Reset Scenarios
8.3.10
Diagnostics and Protection Features
8.3.10.1
Voltage Monitorings
8.3.10.2
Interrupts
8.3.10.3
Power-Good Information to Interrupt, PG0, and PG1 Pins
8.3.10.3.1
PGx Pin Gated (Unusual) Mode
8.3.10.3.2
PGx Pin Operation in Continuous Mode
8.3.10.3.3
Summary of PG0, PG1 Gated, and Continuous Operating Modes
8.3.10.4
Warning Interrupts for System Level Diagnostics
8.3.10.4.1
Output Power Limit
8.3.10.4.2
Thermal Warning
8.3.10.5
Protections Causing Converter Disable
8.3.10.5.1
Short-Circuit and Overload Protection
8.3.10.5.2
Overvoltage Protection
8.3.10.5.3
Thermal Shutdown
8.3.10.6
Protections Causing Device Power Down
8.3.10.6.1
Undervoltage Lockout
8.3.11
OTP Error Correction
8.3.12
Operation of GPO Signals
8.3.13
Digital Signal Filtering
8.4
Device Functional Modes
8.4.1
Modes of Operation
8.5
Programming
8.5.1
I2C-Compatible Interface
8.5.1.1
Data Validity
8.5.1.2
Start and Stop Conditions
8.5.1.3
Transferring Data
8.5.1.4
I2C-Compatible Chip Address
8.5.1.5
Auto Increment Feature
8.6
Register Maps
8.6.1
Register Descriptions
8.6.1.1
LP8770_map Registers
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
Application Components
9.2.2.1.1
Inductor Selection
9.2.2.1.2
Buck Input Capacitor Selection
9.2.2.1.3
Buck Output Capacitor Selection
9.2.2.1.4
Boost Input Capacitor Selection
9.2.2.1.5
Boost Output Capacitor Selection
9.2.2.1.6
Supply Filtering Components
9.2.3
Current Limit vs Maximum Output Current
9.2.4
Application Curves
10
Power Supply Recommendations
11
Layout
11.1
Layout Guidelines
11.2
Layout Example
12
Device and Documentation Support
12.1
第三方产品免责声明
12.2
Receiving Notification of Documentation Updates
12.3
支持资源
12.4
Trademarks
12.5
Electrostatic Discharge Caution
12.6
Glossary
13
Mechanical, Packaging, and Orderable Information
封装选项
机械数据 (封装 | 引脚)
RHB|32
MPQF130D
散热焊盘机械数据 (封装 | 引脚)
RHB|32
QFND590
订购信息
zhcsih0c_oa
zhcsih0c_pm
1
特性
符合面向汽车应用的 AEC-Q100 标准:
器件温度等级 1:–40°C 至 +125°C,T
A
功能安全质量管理型
可帮助进行功能安全系统设计的文档
用于外部电压监控的两个输入
两个可编程电源正常信号
用于诊断的专用基准电压
支持复位输出的窗口看门狗
输出短路和过载保护
过热警告和保护
过压保护 (OVP) 和欠压锁定 (UVLO)
两个高效降压直流/直流转换器:
最大输出电流 3.5A
2MHz、3MHz 或 4MHz 开关频率
自动 PWM/PFM 和强制 PWM 工作模式
输出电压范围为 0.7V 至 3.36V
的 5V 升压转换器:
最大输出电流 600mA
外部时钟输入,用于同步
扩频调制
可通过使能信号实现可编程启动、关断延迟与时序控制
可配置通用输出 (GPO)
I
2
C 兼容接口,
支持标准 (100kHz)、快速 (400kHz)、快速+ (1MHz) 和高速 (3.4MHz) 模式
具有可编程屏蔽的中断功能