ZHCSJ06B
November 2017 – September 2022
ADS7142-Q1
PRODUCTION DATA
1
特性
2
应用
3
说明
4
Revision History
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: All Modes
6.6
Electrical Characteristics: Manual Mode
6.7
Electrical Characteristics: Autonomous Modes
6.8
Electrical Characteristics: High Precision Mode
6.9
Timing Requirements
6.10
Switching Characteristics
6.11
Timing Diagrams
6.12
Typical Characteristics: All Modes
6.13
Typical Characteristics: Manual Mode
6.14
Typical Characteristics: Autonomous Modes
6.15
Typical Characteristics: High-Precision Mode
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagram
7.3
Feature Description
7.3.1
Analog Input and Multiplexer
7.3.1.1
Two-Channel, Single-Ended Configuration
7.3.1.2
Single-Channel, Single-Ended Configuration With Remote Ground Sense
7.3.1.3
Single-Channel, Pseudo-Differential Configuration
7.3.2
Offset Calibration
7.3.3
Reference
7.3.4
ADC Transfer Function
7.3.5
Oscillator and Timing Control
7.3.6
I2C Address Selector
7.3.7
Data Buffer
7.3.7.1
Filling of the Data Buffer
7.3.7.2
Reading Data From the Data Buffer
7.3.8
Accumulator
7.3.9
Digital Window Comparator
7.3.10
I2C Protocol Features
7.3.10.1
General Call
7.3.10.2
General Call With Software Reset
7.3.10.3
General Call With Write Software Programmable Part of the Target Address
7.3.10.4
Configuring the ADC Into High-Speed I2C Mode
7.3.10.5
Bus Clear
7.4
Device Functional Modes
7.4.1
Device Power Up and Reset
7.4.2
Manual Mode
7.4.2.1
Manual Mode With CH0 Only
7.4.2.2
Manual Mode With AUTO Sequence
7.4.3
Autonomous Modes
7.4.3.1
Autonomous Mode With Threshold Monitoring and Diagnostics
7.4.3.1.1
Autonomous Mode With Pre-ALERT Data
7.4.3.1.2
Autonomous Mode With Post-ALERT Data
7.4.3.2
Autonomous Mode With Burst Data
7.4.3.2.1
Autonomous Mode With Start Burst
7.4.3.2.2
Autonomous Mode With Stop Burst
7.4.4
High-Precision Mode
7.5
Programming
7.5.1
Reading Registers
7.5.1.1
Single Register Read
7.5.1.2
Reading a Continuous Block of Registers
7.5.2
Writing Registers
7.5.2.1
Single Register Write
7.5.2.2
Writing a Continuous Block of Registers
7.5.2.3
Set Bit
7.5.2.4
Clear Bit
7.6
Register Map
7.6.1
Page1 Registers
8
Application and Implementation
8.1
Application Information
8.2
Typical Applications
8.2.1
ADS7142-Q1 as a Programmable Comparator With False Trigger Prevention and Diagnostics
8.2.1.1
Design Requirements
8.2.1.2
Detailed Design Procedure
8.2.1.2.1
Programmable Thresholds and Hysteresis
8.2.1.2.2
False Trigger Prevention With an Event Counter
8.2.1.2.3
Fault Diagnostics With the Data Buffer
8.2.1.3
Application Curves
8.2.2
Voltage and Temperature Monitoring in Remote Camera Modules Using the ADS7142-Q1
8.2.2.1
Design Requirements
8.3
Power Supply Recommendations
8.3.1
AVDD and DVDD Supply Recommendations
8.4
Layout
8.4.1
Layout Guidelines
8.4.2
Layout Example
9
Device and Documentation Support
9.1
Electrostatic Discharge Caution
9.2
术语表
9.3
Trademarks
9.4
接收文档更新通知
9.5
支持资源
10
Mechanical, Packaging, and Orderable Information
1
特性
符合面向汽车应用的 AEC-Q100 标准:
温度等级 1:–40°C 至 +125°C,T
A
提供功能安全型
有助于进行功能安全系统设计的文档
小封装尺寸:3mm × 2mm
12 位无噪声分辨率
采样率高达 140kSPS
高效的主机休眠和唤醒:
自主监控功耗为 900nW
用于事件触发主机唤醒的窗口比较器
独立的配置和校准:
双通道、伪差分或接地感应输入配置
用于校准的可编程阈值
内部校准改善了失调电压和漂移
错误触发防护:
每个通道的可编程阈值
用于实现抗噪性能的可编程迟滞
用于瞬态抑制的事件计数器
I
2
C 接口:
兼容 1.65V 至 3.6V 的电压范围
8 个可配置地址
高达 3.4MHz(高速)
模拟电源:1.65V 至 3.6V
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