产品详情

CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 256 RAM (kByte) 8 ADC type 12-bit SAR Features Advanced sensing, DMA, LCD, Low-energy accelerator (LEA), Metering test interface (MTIF), Real-time clock UART 4 Security Cryptographic acceleration, Secure communication, Secure debug, Software IP protection Number of ADC channels 16 SPI 4 USB No Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Hardware accelerators Low energy accelerator Nonvolatile memory (kByte) 256 Number of GPIOs 81 Number of I2Cs 2
CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 256 RAM (kByte) 8 ADC type 12-bit SAR Features Advanced sensing, DMA, LCD, Low-energy accelerator (LEA), Metering test interface (MTIF), Real-time clock UART 4 Security Cryptographic acceleration, Secure communication, Secure debug, Software IP protection Number of ADC channels 16 SPI 4 USB No Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Hardware accelerators Low energy accelerator Nonvolatile memory (kByte) 256 Number of GPIOs 81 Number of I2Cs 2
LQFP (PZ) 100 256 mm² (16 mm × 16 mm)
  • Best-in-class ultrasonic water-flow measurement with ultra-low power consumption
    • <100-ps differential time-of-flight (dTOF) accuracy
    • High-precision time measurement resolution of 20 ps
    • Ability to detect low flow rates (4-6 liters per hour)
    • Approximately 4-µA current consumption with one measurement per second
  • Compliant to and exceeds ISO 4064, OIML R49, and EN 1434 accuracy standards
  • Ability to directly interface standard ultrasonic sensors (up to 2.5 MHz)
  • Integrated analog front end – ultrasonic sensing solution (USS)
    • Programmable pulse generation (PPG) to generate pulses at different frequencies
    • Integrated physical interface (PHY) with low-impedance (4-Ω) output driver to control input and output channels
    • High-performance high-speed 12-bit sigma-delta ADC (SDHS) with output data rates up to 8 Msps
    • Programmable gain amplifier (PGA) with –6.5 dB to 30.8 dB
    • High-performance phase-locked loop (PLL) with output range of 68 MHz to 80 MHz
  • Low-energy accelerator (LEA)
    • Operation independent of CPU
    • 4KB of RAM shared with CPU
    • Efficient 256-point complex FFT: Up to 40× faster than Arm Cortex-M0+ core
  • Embedded microcontroller
    • 16-bit RISC architecture up to 16‑MHz clock
    • Wide supply voltage range from 3.6 V down to 1.8 V (minimum supply voltage is restricted by SVS levels, see the SVS specifications)
  • Optimized ultra-low-power modes
    • Active mode: approximately 120 µA/MHz
    • Standby mode with real-time clock (RTC) (LPM3.5): 450 nA (1)
    • Shutdown (LPM4.5): 30 nA
  • Ferroelectric random access memory (FRAM)
    • Up to 256KB of nonvolatile memory
    • Ultra-low-power writes
    • Fast write at 125 ns per word (64KB in 4 ms)
    • Unified memory = program + data + storage in one space
    • 1015 write cycle endurance
    • Radiation resistant and nonmagnetic
  • Intelligent digital peripherals
    • 32-bit hardware multiplier (MPY)
    • 6-channel internal DMA
    • RTC with calendar and alarm functions
    • Six 16-bit timers with up to seven capture/compare registers each
    • 32-bit and 16-bit cyclic redundancy check (CRC)
  • High-performance analog
    • 16-channel analog comparator
    • 12-bit SAR ADC featuring window comparator, internal reference, and sample-and-hold, up to 16 external input channels
    • Integrated LCD driver with contrast control for up to 264 segments
  • Multifunction input/output ports
    • Accessible bit-, byte-, and word-wise (in pairs)
    • Edge-selectable wake from LPM on all ports
    • Programmable pullup and pulldown on all ports
  • Code security and encryption
    • 128- or 256-bit AES security encryption and decryption coprocessor
    • Random number seed for random number generation algorithms
    • IP encapsulation protects memory from external access
    • FRAM provides inherent security advantages
  • Enhanced serial communication
    • Up to four eUSCI_A serial communication ports
      • UART with automatic baud-rate detection
      • IrDA encode and decode
    • Up to two eUSCI_B serial communication ports
      • I2C with multiple-slave addressing
    • Hardware UART or I2C bootloader (BSL)
  • Flexible clock system
    • Fixed-frequency DCO with 10 selectable factory-trimmed frequencies
    • Low-power low-frequency internal clock source (VLO)
    • 32-kHz crystals (LFXT)
    • High-frequency crystals (HFXT)
  • Development tools and software (also see Tools and Software)
  • Device Comparison summarizes the available device variants and package options

(1)The RTC is clocked by a 3.7-pF crystal.

  • Best-in-class ultrasonic water-flow measurement with ultra-low power consumption
    • <100-ps differential time-of-flight (dTOF) accuracy
    • High-precision time measurement resolution of 20 ps
    • Ability to detect low flow rates (4-6 liters per hour)
    • Approximately 4-µA current consumption with one measurement per second
  • Compliant to and exceeds ISO 4064, OIML R49, and EN 1434 accuracy standards
  • Ability to directly interface standard ultrasonic sensors (up to 2.5 MHz)
  • Integrated analog front end – ultrasonic sensing solution (USS)
    • Programmable pulse generation (PPG) to generate pulses at different frequencies
    • Integrated physical interface (PHY) with low-impedance (4-Ω) output driver to control input and output channels
    • High-performance high-speed 12-bit sigma-delta ADC (SDHS) with output data rates up to 8 Msps
    • Programmable gain amplifier (PGA) with –6.5 dB to 30.8 dB
    • High-performance phase-locked loop (PLL) with output range of 68 MHz to 80 MHz
  • Low-energy accelerator (LEA)
    • Operation independent of CPU
    • 4KB of RAM shared with CPU
    • Efficient 256-point complex FFT: Up to 40× faster than Arm Cortex-M0+ core
  • Embedded microcontroller
    • 16-bit RISC architecture up to 16‑MHz clock
    • Wide supply voltage range from 3.6 V down to 1.8 V (minimum supply voltage is restricted by SVS levels, see the SVS specifications)
  • Optimized ultra-low-power modes
    • Active mode: approximately 120 µA/MHz
    • Standby mode with real-time clock (RTC) (LPM3.5): 450 nA (1)
    • Shutdown (LPM4.5): 30 nA
  • Ferroelectric random access memory (FRAM)
    • Up to 256KB of nonvolatile memory
    • Ultra-low-power writes
    • Fast write at 125 ns per word (64KB in 4 ms)
    • Unified memory = program + data + storage in one space
    • 1015 write cycle endurance
    • Radiation resistant and nonmagnetic
  • Intelligent digital peripherals
    • 32-bit hardware multiplier (MPY)
    • 6-channel internal DMA
    • RTC with calendar and alarm functions
    • Six 16-bit timers with up to seven capture/compare registers each
    • 32-bit and 16-bit cyclic redundancy check (CRC)
  • High-performance analog
    • 16-channel analog comparator
    • 12-bit SAR ADC featuring window comparator, internal reference, and sample-and-hold, up to 16 external input channels
    • Integrated LCD driver with contrast control for up to 264 segments
  • Multifunction input/output ports
    • Accessible bit-, byte-, and word-wise (in pairs)
    • Edge-selectable wake from LPM on all ports
    • Programmable pullup and pulldown on all ports
  • Code security and encryption
    • 128- or 256-bit AES security encryption and decryption coprocessor
    • Random number seed for random number generation algorithms
    • IP encapsulation protects memory from external access
    • FRAM provides inherent security advantages
  • Enhanced serial communication
    • Up to four eUSCI_A serial communication ports
      • UART with automatic baud-rate detection
      • IrDA encode and decode
    • Up to two eUSCI_B serial communication ports
      • I2C with multiple-slave addressing
    • Hardware UART or I2C bootloader (BSL)
  • Flexible clock system
    • Fixed-frequency DCO with 10 selectable factory-trimmed frequencies
    • Low-power low-frequency internal clock source (VLO)
    • 32-kHz crystals (LFXT)
    • High-frequency crystals (HFXT)
  • Development tools and software (also see Tools and Software)
  • Device Comparison summarizes the available device variants and package options

(1)The RTC is clocked by a 3.7-pF crystal.

The Texas Instruments MSP430FR600x family of ultrasonic sensing and measurement SoCs are powerful, highly integrated microcontrollers (MCUs) that are optimized for water and heat meters. The MSP430FR600x MCUs offer an integrated ultrasonic sensing solution (USS) module, which provides high accuracy for a wide range of flow rates. The USS module helps achieve ultra-low-power metering combined with lower system cost due to maximum integration requiring very few external components. MSP430FR600x MCUs implement a high-speed ADC-based signal acquisition followed by optimized digital signal processing using the integrated low-energy accelerator (LEA) module to deliver a high-accuracy metering solution with ultra-low power optimum for battery-powered metering applications.

The USS module includes a programmable pulse generator (PPG) and a physical interface (PHY) with a low-impedance output driver for optimum sensor excitation to deliver best results for zero-flow drift (ZFD). The module also includes a programmable gain amplifier (PGA) and a high-speed 12-bit 8-Msps sigma-delta ADC (SDHS) for accurate signal acquisition from industry-standard ultrasonic transducers.

Additionally, MSP430FR600x MCUs integrate other peripherals to improve system integration for metering. The MSP430FR600x MCUs also have an on-chip 8-mux LCD driver, an RTC, a 12-bit SAR ADC, an analog comparator, an advanced encryption accelerator (AES256), and a cyclic redundancy check (CRC) module.

MSP430FR600x MCUs are supported by an extensive hardware and software ecosystem with reference designs and code examples to get your design started quickly. Development kits include the MSP‑TS430PZ100E 100-pin target development board and EVM430‑FR6047 ultrasonic water flow meter EVM. TI also provides free software including the ultrasonic sensing design center, ultrasonic sensing software library, and MSP430Ware™ software.

TI’s MSP430 ultra-low-power (ULP) FRAM microcontroller platform combines uniquely embedded FRAM and a holistic ultra-low-power system architecture, letting system designers increase performance while lowering energy consumption. FRAM technology combines the low-energy fast writes, flexibility, and endurance of RAM with the nonvolatility of flash.

For complete module descriptions, see the MSP430FR58xx, MSP430FR59xx, and MSP430FR6xx Family User’s Guide .

The Texas Instruments MSP430FR600x family of ultrasonic sensing and measurement SoCs are powerful, highly integrated microcontrollers (MCUs) that are optimized for water and heat meters. The MSP430FR600x MCUs offer an integrated ultrasonic sensing solution (USS) module, which provides high accuracy for a wide range of flow rates. The USS module helps achieve ultra-low-power metering combined with lower system cost due to maximum integration requiring very few external components. MSP430FR600x MCUs implement a high-speed ADC-based signal acquisition followed by optimized digital signal processing using the integrated low-energy accelerator (LEA) module to deliver a high-accuracy metering solution with ultra-low power optimum for battery-powered metering applications.

The USS module includes a programmable pulse generator (PPG) and a physical interface (PHY) with a low-impedance output driver for optimum sensor excitation to deliver best results for zero-flow drift (ZFD). The module also includes a programmable gain amplifier (PGA) and a high-speed 12-bit 8-Msps sigma-delta ADC (SDHS) for accurate signal acquisition from industry-standard ultrasonic transducers.

Additionally, MSP430FR600x MCUs integrate other peripherals to improve system integration for metering. The MSP430FR600x MCUs also have an on-chip 8-mux LCD driver, an RTC, a 12-bit SAR ADC, an analog comparator, an advanced encryption accelerator (AES256), and a cyclic redundancy check (CRC) module.

MSP430FR600x MCUs are supported by an extensive hardware and software ecosystem with reference designs and code examples to get your design started quickly. Development kits include the MSP‑TS430PZ100E 100-pin target development board and EVM430‑FR6047 ultrasonic water flow meter EVM. TI also provides free software including the ultrasonic sensing design center, ultrasonic sensing software library, and MSP430Ware™ software.

TI’s MSP430 ultra-low-power (ULP) FRAM microcontroller platform combines uniquely embedded FRAM and a holistic ultra-low-power system architecture, letting system designers increase performance while lowering energy consumption. FRAM technology combines the low-energy fast writes, flexibility, and endurance of RAM with the nonvolatility of flash.

For complete module descriptions, see the MSP430FR58xx, MSP430FR59xx, and MSP430FR6xx Family User’s Guide .

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技术文档

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 MSP430FR600x Ultrasonic Sensing MSP430™ Microcontrollers for Water‑Metering Applications 数据表 (Rev. A) PDF | HTML 2020-12-1
* 勘误表 MSP430FR6007 Microcontroller Errata (Rev. B) PDF | HTML 2021-10-21
应用手册 从 MSP430™ MCU 到 MSPM0 MCU 的迁移指南 (Rev. B) PDF | HTML 英语版 (Rev.B) PDF | HTML 2025-7-2
应用手册 超声波感应解决方案 (USS) 指南 PDF | HTML 英语版 PDF | HTML 2025-4-21
应用手册 高分辨率超声波液位感应 (Rev. A) 英语版 (Rev.A) PDF | HTML 2021-11-11
应用手册 氧浓度感应 PDF | HTML 英语版 PDF | HTML 2021-10-22
应用手册 燃气表设计指南 英语版 2021-10-22
应用手册 液体浓度感应 英语版 2021-10-22
应用手册 高分辨率风速计 英语版 2021-10-21
应用手册 超声波泄漏检测 英语版 2021-10-21
应用手册 超声波表面感应 英语版 2021-10-21
应用手册 MSP MCU 上Σ-Δ ADC 的常见问题解答 英语版 PDF | HTML 2021-10-20
应用手册 MSP430 系统级 ESD 注意事项 (Rev. B) PDF | HTML 英语版 (Rev.B) PDF | HTML 2021-8-30
用户指南 MSP430™ MCU 开发指南 (Rev. A) PDF | HTML 英语版 (Rev.A) PDF | HTML 2021-8-10
应用手册 USS 水流流速校准 英语版 2021-5-27
应用手册 采用 MSP430™ MCU 的超声波应用 英语版 2021-5-27
技术文章 A world of possibilities: 5 ways to use MSP430™ MCUs in your design PDF | HTML 2021-4-29
用户指南 Low-Energy Accelerator (LEA) Common Parameter Blocks Reference Guide 2021-3-17
用户指南 Low-Energy Accelerator (LEA) Registers Reference Guide 2021-3-17
用户指南 Low-Energy Accelerator (LEA) Commands Reference Guide 2021-3-11
更多文献资料 MSP430TM 开发手册_MSP430 Hands-on Training (Rev. A) 2020-10-20
用户指南 MSP430FR58xx, MSP430FR59xx, and MSP430FR6xx Family User's Guide (Rev. P) PDF | HTML 2020-4-21
应用手册 MSP430™ 系统级 ESD 故障排除指南 PDF | HTML 英语版 PDF | HTML 2020-4-20

设计与开发

如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。

评估板

EVM430-FR6047 — MSP430FR6047 超声波感应评估模块

EVM430-FR6047 评估套件是一款开发平台,可用于评估适用于超声波感应应用(如智能水表)的 MSP430FR6047 MCU 的性能。MSP430FR6047 MCU 是一款超低功耗器件,具有集成的超声波感应模拟前端 (USS),可实现高精度超声波测量。该器件还包括用于优化信号处理的低功耗加速器 (LEA),可帮助降低功耗,延长电池寿命。该 EVM 提供了一种灵活的解决方案,可让工程师使用 MSP430FR6047 MCU 和各种传感器(50KHz 到 2.5MHz)快速进行评估和开发。该 EVM 能够利用板载 LCD 和适用于射频通信模块的连接器显示测量参数。


用户指南: PDF
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评估板

ALGO-3P-UISP1-TI — 适用于德州仪器 (TI) 器件的 Algocraft μISP1 编程器

μISP 既可以连接到主机 PC(内置 RS-232、USB 和 LAN 连接),也可以在独立模式下运行。

只需按下 START 按钮或通过某些 TTL 控制线,即可在独立模式下执行编程周期。

其紧凑的尺寸和多功能性便于集成到生产环境、手动和自动流程中。

来源:Algocraft
支持的产品和硬件
开发套件

MSP-TS430PZ100E — 适用于 MSP430FR604x MCU 的目标开发板 - 100 引脚(不包括微控制器)

MSP-TS430PZ100E 微控制器开发板是独立的 ZIF 插座目标板,用于通过 JTAG 接口或 Spy Bi-Wire(两线制 JTAG)协议对 MSP430 器件进行系统内编程和调试。该开发板支持采用 80 引脚 QFP 封装(TI 封装代码:PZ)的 MSP432P401x 闪存器件。请查看目标器件文档,以找到正确的目标板。

调试探针可以单独购买,也可以与目标板 (MSP-FET) 捆绑购买。

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开发套件

AUWE-3P-FLOWSENSORPIPE — Ultrasonic Flow Sensors with Pipe

Audiowell 超声波流量传感器需要与 DN15、DN20 和 DN25 尺寸的黄铜或聚合物塑料管配合使用,从而在使用我们的 MSP430FR600x 超声波感应 MSP430™ 微控制器评估模块(特别是可用于开发水流量计的 EVM430-FR6047 和 EVM430-FR6043)时,为开发人员提供帮助。这些 Audiowell 超声波流量传感器需要与超声波设计中心提供的水流量计软件配合使用。通过结合使用这些工具,您可以快速开发支持多种流速的水流量计。

用户指南: PDF
支持的产品和硬件
硬件编程工具

MSP-FET — MSP MCU 编程器和调试器

MSP-FET 是功能强大的仿真开发工具(通常称为调试探针),可让用户快速开始在 MSP 低功耗微控制器 (MCU) 上进行开发。

它支持通过 JTAG 和 SBW 接口进行编程和实时调试。此外,MSP-FET 还可在计算机的 USB 接口和 MSP UART 间提供反向通道 UART 连接。这为 MSP 编程器提供了一种便捷方法,实现了 MSP 和在计算机上运行的终端之间的串行通信。它还支持使用 BSL(引导加载程序)经由 UART 和 I2C 通信协议将程序(通常称为固件)加载到 MSP 目标中。

USB 接口将 MSP-FET 连接至计算机,而 14 引脚连接器提供对 MSP (...)

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硬件编程工具

ALGO-3P-WRITENOW — Algocraft WriteNow! 编程器

WriteNow! 系列系统内编程器是编程行业的突破性产品。该系列编程器支持来自不同制造商的众多器件(微控制器、存储器、CPLD 和其他可编程器件),并具有紧凑的尺寸,方便与 ATE/固定装置集成。它们可独立运行,也可连接到主机 PC(内置 RS-232、LAN 和 USB 连接),并附带易于使用的软件实用程序。

来源:Algocraft
支持的产品和硬件
IDE、配置、编译器或调试器

CCSTUDIO — Code Composer Studio™ integrated development environment (IDE)

CCStudio™ IDE is part of TI's extensive CCStudio™ development ecosystem and is an integrated development environment for TI's microcontrollers, processors, wireless connectivity devices, and radar sensors. CCStudio IDE is available as desktop or cloud-based applications. The cloud version (...)

支持的产品和硬件
线上培训

MSP430-ACADEMY — MSP430™ academy

MSP430™ Academy delivers easy-to-use training modules that span a wide range of topics and LaunchPads in the MSP430 MCU portfolio.
支持的产品和硬件
入门

TI-DEVELOPER-ZONE — Start embedded development on your desktop or in the cloud

From evaluation to deployment the TI Developer Zone provides a comprehensive range of software, tools and training to ensure that you have everything you need for each stage of the development process.
支持的产品和硬件
操作系统 (OS)

WHIS-3P-SAFERTOS — WITTENSTEIN SafeRTOS 预先认证的安全 RTOS

SAFERTOS® 是专为嵌入式处理器设计的独特实时操作系统。它通过了 TÜV SÜD 的 IEC 61508 SIL3 和 ISO 26262 ASILD 标准的预先认证。SAFERTOS® 是由 WHIS 的专家团队专为安全而设计的,并在全球范围内用于安全关键型应用。WHIS 和德州仪器 (TI) 合作已有十多年。在此期间,WHIS 已将 SAFERTOS® 移植到各种 TI 处理器中,支持所有常用内核,并可按需提供其他架构。SAFERTOS® 针对您的特定处理器/编译器组合进行定制,并随附完整的源代码和设计保证包,在整个设计生命周期中提供完全透明度。许多 WHIS 客户使用 (...)

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驱动程序或库

USS-SWLIB-WATER — Ultrasonic sensing solution (USS) software library for water metering

超声波设计中心为开发使用 MSP430TM 微控制器 (MCU) 的超声波感应应用提供了一站式资源,包括各种工具、图形用户界面 (GUI)、文档、软件库和应用示例。开发人员可快速配置和自定义与传感器相关的参数,并捕获超声波应用所需的波形。

 

水计量

MSP430 MCU 超声波感应解决方案 (USS) 软件库 (MSP-USSSWLIB_Water) 可用于配置 MSP430FR604x 系列器件的模拟前端 (AFE),用于捕获超声波应用所需的波形,还可集成应用软件来开发超声波水流量计。该软件库还可利用 MSP430FR604x MCU 系列中的低功耗加速器 (LEA) 模块,计算飞行时间 (...)

支持的产品和硬件
固件

MSPFRBOOT — MSPFRBOOT

MSP430™ 微控制器 (MCU) 上的引导加载程序 (BSL) 允许用户在原型设计、最终量产和使用期间与 MSP MCU 中的嵌入式存储器进行通信。通信时使用 UART、I2C、SPI 和 USB 等标准接口。可编程存储器(闪存/FRAM)和数据存储器 (RAM) 均可按要求予以修改。

以下是在 MSP 产品系列中理解并有效使用 MSPBSL 所需的步骤。有关您器件上的 BSL 支持哪些功能或与 BSL 通信需要哪些接口方法的最新信息,请参阅“表1.BSL 特性概述”,该表包含在第 1 步中链接到的 BSL 用户指南中。

 

第 1 步:了解 MSP 引导加载程序 (BSL)

(...)

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软件编程工具

MSP-GANG-SOFTWARE — MSP-GANG Software

The MSP Gang Programmer (MSP-GANG) is a MSPM0/MSP430/MSP432 device programmer that can program up to eight identical devices at the same time.
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软件编程工具

UNIFLASH — UniFlash for most TI microcontrollers (MCUs) and mmWave sensors

UniFlash 是 TI 庞大的 CCStudio™ 开发生态系统的成员并且是一款软件工具,用于对 TI 微控制器和无线连接器件上的片上闪存以及 TI 处理器的板载闪存进行编程。UniFlash 提供图形界面和命令行界面,可在桌面上或云中运行。

可以在 CCStudio 开发人员专区从云中运行 UniFlash,也可以将其下载并在 Windows®、Linux® 和 macOS® 计算机上使用。

请注意,毫米波、AMx、K2G 和 J7 器件不支持 macOS。AMx、K2G 和 J7 器件仅在命令行上受支持。

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设计工具

MSP-3P-SEARCH — MSP 第三方搜索工具

TI 与多家公司携手推出适用于 TI MSP 器件的各种解决方案和服务。这些公司可使用 MSP 器件加速您的量产流程。下载此搜索工具,快速浏览第三方详细信息,并寻找合适的第三方来满足您的需求。

合作伙伴来自不同的地区,他们为不同的应用提供解决方案,如模块、闪存编程和完整解决方案。您可以根据地区、产品或技术需求选择合适的第三方。

该工具分为两大类 - 应用及闪存编程解决方案和服务。

  • 应用包括不同种类的硬件和软件解决方案,例如模块、完整解决方案或软件服务。
  • 闪存编程解决方案包括来自不同国家/地区的编程服务提供商提供的服务。
支持的产品和硬件
封装 引脚 CAD 符号、封装和 3D 模型
LQFP (PZ) 100 Ultra Librarian

订购和质量

推荐产品可能包含与 TI 此产品相关的参数、评估模块或参考设计。

支持和培训

可获得 TI 工程师技术支持的 TI E2E™ 论坛

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如果您对质量、包装或订购 TI 产品有疑问,请参阅 TI 支持。​​​​​​​​​​​​​​

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