MSP-FET430U20

目标开发板 (MSP-TS430PW20) 和 MSP-FET 捆绑包(不包括微控制器)

MSP-FET430U20

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概述

  • Note: This kit does not include MSP430FR2xx microcontroller samples. To sample the compatible devices, please visit the product page or select the related MCU after adding the tool to the TI Store cart:

The MSP-FET430U20 bundle combines two debugging tools that support the 20-pin PW package for the MSP430FR23x microcontroller (e.g. MSP430FR2311PW20). These two tools include:

While these two debugging tools can be purchased individually, the bundle is a convenient way to purchase them both together. (Notice, though, that you must provide the appropriate MSP microcontroller in order to use this microcontroller development system.)

The MSP-TS430PW20 microcontroller development board is often referred to as a “Target Socket” board, where the term “target” refers to the microcontroller CPU under development. This board provides a ZIF (zero insertion force) socket, allowing the user to debug a MSP microcontroller target device; the actual MSP device must be obtained separately by purchasing or sampling it.

The Target Socket board provides an integral step in the development process between initial discovery and working with a  custom board.

  1. Most users begin their discovery and experimentation of an MSP microcontroller using one of TI’s many LaunchPad microcontroller development kits (e.g. MSP-EXP430FR4133, MSP-EXP430FR2311). With a wide variety of add-on BoosterPacks, the LaunchPad ecosystem provides an easy way to rapidly prototype application solutions. Convenient as they are, at some point users will outgrow the LaunchPad – just like they would any standard evaluation module (EVM) – since pinouts are partially pre-configured on these boards.
  2. Target Socket boards provide full access to the microcontroller pins, while still providing convenient debugger access using TI’s debug probes, such as the MSP-FET. This makes it easy to take prototyping to the next level. Even when custom hardware has already been developed, these boards are often used to validate software on a “known good target system”. Finally, the LaunchPad kits usually include a “superset” device, which contains the largest number of peripheral and memory for a given device family. The Target Socket boards allow users to validate code on the specific device selected for their production system.
  3. The final development step usually involves moving software/firmware development to custom hardware developed specifically for production of an end-product. If your custom hardware utilizes the recommended debugging port, the MSP-FET can continue to be used to debug and validate firmware on the final production hardware. (See the MSP Debuggers Users Guide (SLAU647) for more information on how to utilize the 14-pin connector, JTAG 4-wire, or 2-wire (Spy Bi-Wire) JTAG debugging interfaces.)

Unlike the LaunchPads, the Target Socket boards do not include their own emulation debugger interfaces. A 14-pin debug socket is included, though, which makes it easy to connect the MSP-FET debugger probe. The MSP-FET – once plugged into the debug socket –provides an easy way to connect your MSP microcontroller (placed into the ZIF socket on the Target Socket board) to your computer or browser running an integrated development environment (IDE), such as Code Composer Studio or IAR Embedded Workbench. The MSP-FET allows the IDE to write code into the MSP FRAM or Flash non-volatile memory. Besides writing memory, the MSP-FET provides access to a wide variety of other debugging features: breakpoints, single-stepping code, watching variables, as well as utilizing TI’s EnergyTrace™ Technology.

MSP430 微控制器
MSP430FR2000 具有 0.5KB FRAM、0.5KB SRAM、比较器、UART/SPI、计时器 16MHz MCU MSP430FR2100 具有 1KB FRAM、0.5KB SRAM、比较器、10 位 ADC、UART/SPI、计时器的 16MHz MCU MSP430FR2310 具有 2KB FRAM、运算放大器、TIA、比较器、DAC、10 位 ADC 的 16MHz 集成模拟微控制器
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开发套件

MSP-FET430U20 — MSP-FET + MSP-TS430PW20 FRAM 微控制器开发套件包(不包含微控制器)

代码示例或演示

SLAC708 — MSP430FR231x Code Examples

支持的米6体育平台手机版_好二三四和硬件
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SLAC708 MSP430FR231x Code Examples

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最新版本
版本: 01.00.00.0E
发布日期: 01 七月 2020
download MSP430FR231x Code Examples (zip)  — 417 K

校验和
米6体育平台手机版_好二三四
MSP430 微控制器
MSP430FR2310 具有 2KB FRAM、运算放大器、TIA、比较器、DAC、10 位 ADC 的 16MHz 集成模拟微控制器 MSP430FR2311 具有 3.75KB FRAM、运算放大器、TIA、比较器、DAC、10 位 ADC 的 16MHz 集成模拟微控制器
硬件开发
开发套件
MSP-FET430U20 目标开发板 (MSP-TS430PW20) 和 MSP-FET 捆绑包(不包括微控制器)

发布信息

The design resource accessed as www.yogichopra.com/lit/zip/slac708 or www.yogichopra.com/lit/xx/slac708e/slac708e.zip has been migrated to a new user experience at www.yogichopra.com/tool/cn/download/SLAC708. Please update any bookmarks accordingly.
应遵守 TI 的评估模块标准条款与条件.

技术文档

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类型 标题 下载最新的英文版本 日期
用户指南 适用于 MSP430™ MCU 的 Code Composer Studio(代码调 试器)™ IDE v10.x (Rev. AS) 英语版 (Rev.AS) 2022年 8月 16日
用户指南 MSP430™ 硬件工具 (Rev. AH) PDF | HTML 英语版 (Rev.AH) PDF | HTML 2022年 8月 12日
勘误表 MSP430FR2311 Microcontroller Errata (Rev. R) PDF | HTML 2021年 10月 21日
用户指南 IAR Embedded Workbench IDE Version 7+ for MSP430 MCUs (Rev. AS) 2020年 12月 14日
数据表 MSP430FR231x 混合信号微控制器 数据表 (Rev. E) PDF | HTML 英语版 (Rev.E) PDF | HTML 2020年 5月 19日
用户指南 MSP Debuggers User's Guide (Rev. O) PDF | HTML 2020年 4月 24日
白皮书 Enabling tomorrow’s sensing applications with smart analog microcontrollers (Rev. A) 2019年 11月 22日
电子书 Enhance simple analog and digital functions for $0.25 (Rev. B) 2018年 2月 7日
设计指南 MSP430FR2311 IR Reflection-Sensing Subsystem Design Guide 2016年 8月 3日

相关设计资源

硬件开发

开发套件
MSP-EXP430FR2311 MSP430FR2311 LaunchPad™ development kit MSP-EXP430FR4133 MSP430FR4133 LaunchPad™ 开发套件 MSP-TS430PW20 适用于 MSP430FR2000、MSP430FR21x 和 MSP430FR23x MCU 的目标开发板 - 20 引脚
硬件编程工具
MSP-FET MSP430 闪存仿真工具 MSP-GANG MSP-GANG 生产编程器

软件开发

IDE、配置、编译器或调试器
CCSTUDIO Code Composer Studio™ 集成式开发环境 (IDE) IAR-KICKSTART IAR Embedded Workbench

支持与培训

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