ZHCSM38
december 2020
DAC43701
,
DAC53701
PRODUCTION DATA
1
1
特性
2
应用
3
说明
4
Revision History
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: I2C Standard Mode
7.7
Timing Requirements: I2C Fast Mode
7.8
Timing Requirements: I2C Fast Mode Plus
7.9
Timing Requirements: GPI
7.10
Timing Diagram
7.11
Typical Characteristics: VDD = 5.5 V (Reference = VDD) or VDD = 5 V (Internal Reference)
7.12
Typical Characteristics: VDD = 1.8 V (Reference = VDD) or VDD = 2 V (Internal Reference)
7.13
Typical Characteristics
8
Detailed Description
8.1
Overview
8.2
Functional Block Diagram
8.3
Feature Description
8.3.1
Digital-to-Analog Converter (DAC) Architecture
8.3.1.1
Reference Selection and DAC Transfer Function
8.3.1.1.1
Power Supply as Reference
8.3.1.1.2
Internal Reference
8.3.2
General-Purpose Input (GPI)
8.3.3
DAC Update
8.3.3.1
DAC Update Busy
8.3.4
Nonvolatile Memory (EEPROM or NVM)
8.3.4.1
NVM Cyclic Redundancy Check
8.3.4.2
NVM_CRC_ALARM_USER Bit
8.3.4.3
NVM_CRC_ALARM_INTERNAL Bit
8.3.5
Programmable Slew Rate
8.3.6
Power-on-Reset (POR)
8.3.7
Software Reset
8.3.8
Device Lock Feature
8.3.9
PMBus Compatibility
8.4
Device Functional Modes
8.4.1
Power Down Mode
8.4.2
Continuous Waveform Generation (CWG) Mode
8.4.3
PMBus Compatibility Mode
8.4.4
Medical Alarm Generation Mode
8.4.4.1
Low-Priority Alarm
8.4.4.2
Medium-Priority Alarm
8.4.4.3
High-Priority Alarm
8.4.4.4
Interburst Time
8.4.4.5
Pulse Off Time
8.4.4.6
Pulse On Time
8.5
Programming
8.5.1
F/S Mode Protocol
8.5.2
I2C Update Sequence
8.5.2.1
Address Byte
8.5.2.1.1
Slave Address Configuration
8.5.2.2
Command Byte
8.5.3
I2C Read Sequence
8.6
Register Map
8.6.1
STATUS Register (address = D0h) [reset = 000Ch or 0014h]
8.6.2
GENERAL_CONFIG Register (address = D1h) [reset = 01F0h]
8.6.3
CONFIG2 Register (address = D2h) [reset = 0000h]
8.6.4
TRIGGER Register (address = D3h) [reset = 0008h]
8.6.5
DAC_DATA Register (address = 21h) [reset = 0000h]
8.6.6
DAC_MARGIN_HIGH Register (address = 25h) [reset = 0000h]
8.6.7
DAC_MARGIN_LOW Register (address = 26h) [reset = 0000h]
8.6.8
PMBUS_OPERATION Register (address = 01h) [reset = 0000h]
8.6.9
PMBUS_STATUS_BYTE Register (address = 78h) [reset = 0000h]
8.6.10
PMBUS_VERSION Register (address = 98h) [reset = 2200h]
9
Application and Implementation
9.1
Application Information
9.2
Typical Applications
9.2.1
Appliance Light Fade-In Fade-Out
9.2.1.1
Design Requirements
9.2.1.2
Detailed Design Procedure
9.2.1.3
Application Curves
9.2.2
Power-Supply Margining
9.2.2.1
Design Requirements
9.2.2.2
Detailed Design Procedure
9.2.2.3
Application Curves
9.2.3
Medical Alarm Generation
9.2.3.1
Design Requirements
9.2.3.2
Detailed Design Procedure
9.2.3.3
Application Curves
10
Power Supply Recommendations
11
Layout
11.1
Layout Guidelines
11.2
Layout Example
12
Device and Documentation Support
12.1
Documentation Support
12.1.1
Related Documentation
12.2
接收文档更新通知
12.3
支持资源
12.4
Trademarks
12.5
静电放电警告
12.6
术语表
13
Mechanical, Packaging, and Orderable Information
封装选项
机械数据 (封装 | 引脚)
DSG|8
MPDS308C
散热焊盘机械数据 (封装 | 引脚)
DSG|8
QFND141I
订购信息
zhcsm38_oa
12.5
静电放电警告
静电放电 (ESD) 会损坏这个集成电路。米6体育平台手机版_好二三四 (TI) 建议通过适当的预防措施处理所有集成电路。如果不遵守正确的处理和安装程序,可能会损坏集成电路。
ESD 的损坏小至导致微小的性能降级,大至整个器件故障。精密的集成电路可能更容易受到损坏,这是因为非常细微的参数更改都可能会导致器件与其发布的规格不相符。
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