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產品詳細資料

CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 16 RAM (kByte) 4 ADC type 10-bit SAR Features Real-time clock UART 2 Number of ADC channels 8 SPI 2 USB No Hardware accelerators 0 Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Nonvolatile memory (kByte) 16 Number of GPIOs 19 Number of I2Cs 1 Security Secure debug
CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 16 RAM (kByte) 4 ADC type 10-bit SAR Features Real-time clock UART 2 Number of ADC channels 8 SPI 2 USB No Hardware accelerators 0 Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Nonvolatile memory (kByte) 16 Number of GPIOs 19 Number of I2Cs 1 Security Secure debug
DSBGA (YQW) 24 4.84 mm² 2.2 x 2.2 VQFN (RGE) 24 16 mm² 4 x 4
  • Embedded microcontroller
    • 16-bit RISC architecture
    • Clock supports frequencies up to 16 MHz
    • 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: 126 µA/MHz (typical)
    • Standby: <1 µA with VLO
    • LPM3.5 real-time clock (RTC) counter with 32768-Hz crystal: 730 nA (typical)
    • Shutdown (LPM4.5): 16 nA (typical)
  • High-performance analog
    • 8-channel 10-bit analog-to-digital converter (ADC)
      • Internal 1.5-V reference
      • Sample-and-hold 200 ksps
  • Enhanced serial communications
    • Two enhanced universal serial communication interfaces (eUSCI_A) support UART, IrDA, and SPI
    • One eUSCI (eUSCI_B) supports SPI and I2C
  • Intelligent digital peripherals
    • Four 16-bit timers
      • Two timers with three capture/compare registers each (Timer_A3)
      • Two timers with two capture/compare registers each (Timer_A2)
    • One 16-bit counter-only RTC
    • 16-bit cyclic redundancy check (CRC)
  • Low-power ferroelectric RAM (FRAM)
    • Up to 15.5KB of nonvolatile memory
    • Built-in error correction code (ECC)
    • Configurable write protection
    • Unified memory of program, constants, and storage
    • 1015 write cycle endurance
    • Radiation resistant and nonmagnetic
    • High FRAM-to-SRAM ratio, up to 4:1
  • Clock system (CS)
    • On-chip 32-kHz RC oscillator (REFO)
    • On-chip 16-MHz digitally controlled oscillator (DCO) with frequency-locked loop (FLL)
      • ±1% accuracy with on-chip reference at room temperature
    • On-chip very low-frequency 10-kHz oscillator (VLO)
    • On-chip high-frequency modulation oscillator (MODOSC)
    • External 32-kHz crystal oscillator (LFXT)
    • Programmable MCLK prescalar of 1 to 128
    • SMCLK derived from MCLK with programmable prescalar of 1, 2, 4, or 8
  • General input/output and pin functionality
    • Total of 19 I/Os on VQFN-24 package
    • 16 interrupt pins (P1 and P2) can wake MCU from low-power modes
  • Development tools and software
  • Family member (also see Device Comparison)
    • MSP430FR2433: 15KB of program FRAM, 512B of information FRAM, 4KB of RAM
  • Package options
    • 24 pin: VQFN (RGE)
    • 24-pin: DSBGA (YQW)
  • Embedded microcontroller
    • 16-bit RISC architecture
    • Clock supports frequencies up to 16 MHz
    • 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: 126 µA/MHz (typical)
    • Standby: <1 µA with VLO
    • LPM3.5 real-time clock (RTC) counter with 32768-Hz crystal: 730 nA (typical)
    • Shutdown (LPM4.5): 16 nA (typical)
  • High-performance analog
    • 8-channel 10-bit analog-to-digital converter (ADC)
      • Internal 1.5-V reference
      • Sample-and-hold 200 ksps
  • Enhanced serial communications
    • Two enhanced universal serial communication interfaces (eUSCI_A) support UART, IrDA, and SPI
    • One eUSCI (eUSCI_B) supports SPI and I2C
  • Intelligent digital peripherals
    • Four 16-bit timers
      • Two timers with three capture/compare registers each (Timer_A3)
      • Two timers with two capture/compare registers each (Timer_A2)
    • One 16-bit counter-only RTC
    • 16-bit cyclic redundancy check (CRC)
  • Low-power ferroelectric RAM (FRAM)
    • Up to 15.5KB of nonvolatile memory
    • Built-in error correction code (ECC)
    • Configurable write protection
    • Unified memory of program, constants, and storage
    • 1015 write cycle endurance
    • Radiation resistant and nonmagnetic
    • High FRAM-to-SRAM ratio, up to 4:1
  • Clock system (CS)
    • On-chip 32-kHz RC oscillator (REFO)
    • On-chip 16-MHz digitally controlled oscillator (DCO) with frequency-locked loop (FLL)
      • ±1% accuracy with on-chip reference at room temperature
    • On-chip very low-frequency 10-kHz oscillator (VLO)
    • On-chip high-frequency modulation oscillator (MODOSC)
    • External 32-kHz crystal oscillator (LFXT)
    • Programmable MCLK prescalar of 1 to 128
    • SMCLK derived from MCLK with programmable prescalar of 1, 2, 4, or 8
  • General input/output and pin functionality
    • Total of 19 I/Os on VQFN-24 package
    • 16 interrupt pins (P1 and P2) can wake MCU from low-power modes
  • Development tools and software
  • Family member (also see Device Comparison)
    • MSP430FR2433: 15KB of program FRAM, 512B of information FRAM, 4KB of RAM
  • Package options
    • 24 pin: VQFN (RGE)
    • 24-pin: DSBGA (YQW)

The MSP430FR2433 microcontroller (MCU) is part of the MSP430™ Value Line sensing portfolio, TI’s lowest-cost family of MCUs for sensing and measurement applications. The architecture, FRAM, and integrated peripherals, combined with extensive low-power modes, are optimized to achieve extended battery life in portable and battery-powered sensing applications in a small VQFN package (4 mm × 4 mm).

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

The MSP430FR2433 MCU is 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‑EXP430FR2433 LaunchPad™ development kit and the MSP‑TS430RGE24A 24-pin target development board. TI also provides free MSP430Ware™ software, which is available as a component of Code Composer Studio™ IDE desktop and cloud versions within TI Resource Explorer. The MSP430 MCUs are also supported by extensive online collateral, training, and online support through the E2E™ support forums.

For complete module descriptions, see the MSP430FR4xx and MSP430FR2xx Family User’s Guide.

The MSP430FR2433 microcontroller (MCU) is part of the MSP430™ Value Line sensing portfolio, TI’s lowest-cost family of MCUs for sensing and measurement applications. The architecture, FRAM, and integrated peripherals, combined with extensive low-power modes, are optimized to achieve extended battery life in portable and battery-powered sensing applications in a small VQFN package (4 mm × 4 mm).

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

The MSP430FR2433 MCU is 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‑EXP430FR2433 LaunchPad™ development kit and the MSP‑TS430RGE24A 24-pin target development board. TI also provides free MSP430Ware™ software, which is available as a component of Code Composer Studio™ IDE desktop and cloud versions within TI Resource Explorer. The MSP430 MCUs are also supported by extensive online collateral, training, and online support through the E2E™ support forums.

For complete module descriptions, see the MSP430FR4xx and MSP430FR2xx Family User’s Guide.

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技術文件

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重要文件 類型 標題 格式選項 日期
* Data sheet MSP430FR2433 Mixed-Signal Microcontroller datasheet (Rev. F) PDF | HTML 2019年 12月 9日
* Errata MSP430FR2433 Device Erratasheet (Rev. S) PDF | HTML 2021年 5月 27日
* User guide MSP430FR4xx and MSP430FR2xx Family User's Guide (Rev. I) 2019年 3月 13日
Application note Migration Guide From MSP430 MCUs to MSPM0 MCUs (Rev. B) PDF | HTML 2025年 6月 2日
User guide MSP430 FRAM Devices Bootloader (BSL) User's Guide (Rev. AB) PDF | HTML 2022年 9月 22日
Application brief MSP I2C Host With Battery Charger IC PDF | HTML 2022年 3月 7日
Application note UART-to-I2C Bridge Using Low-Memory MSP430™ MCUs (Rev. A) PDF | HTML 2021年 9月 29日
Application brief Calendar and Tamper Detect Using MSP430FR2433 PDF | HTML 2021年 9月 7日
Application note ESD Diode Current Specification (Rev. B) PDF | HTML 2021年 8月 23日
Application note MSP430 FRAM Technology – How To and Best Practices (Rev. B) 2021年 8月 12日
Application note Designing With the MSP430FR4xx and MSP430FR2xx ADC (Rev. A) PDF | HTML 2021年 8月 2日
Application note Low-Power Battery Voltage Measurement With MSP430FR MCU On-Chip VREF and ADC (Rev. B) PDF | HTML 2021年 8月 2日
Application note Migrating from MSP430 F2xx and G2xx families to MSP430 FR4xx and FR2xx family (Rev. G) PDF | HTML 2021年 8月 2日
Application note Migration from MSP430 FR58xx, FR59xx, and FR6xx to FR4xx and FR2xx (Rev. B) PDF | HTML 2021年 8月 2日
Application note MSP430 System-Level ESD Considerations (Rev. B) PDF | HTML 2021年 7月 14日
Application brief Temperature, Humidity, and Optical I2C Sensors Made Simple With MSP430 MCU PDF | HTML 2021年 6月 2日
User guide MSP430 MCUs Development Guide Book (Rev. A) PDF | HTML 2021年 5月 13日
Technical article A world of possibilities: 5 ways to use MSP430™ MCUs in your design PDF | HTML 2021年 4月 29日
Application brief 7-Segment LED Stopwatch Made Simple With Low-Cost MSP430 MCU PDF | HTML 2021年 2月 19日
Application brief Implement Digital DACs Using PWMs on Low-Cost MSP430 MCUs PDF | HTML 2021年 2月 18日
Application brief I2C I/O Expander Integrated In Low-Cost MSP430 MCU 2021年 2月 2日
Application brief Programmable System Wake Up Controller on Ultra-Low Power MSP430 MCU (Rev. A) PDF | HTML 2021年 1月 26日
Application brief Standalone RTC with Backup Memory with Low-Cost MSP430 MCU PDF | HTML 2020年 12月 17日
More literature Simplify your system: How to offload multiple functions to an MSP430™ MCU 2020年 12月 16日
Application note MSP430FR2xx and MSP430FR4xx DCO+FLL Application Guide 2020年 12月 7日
Application brief Monitor System with External Programmable Watchdog Timer w/ Low-Cost MSP430 MCU PDF | HTML 2020年 11月 17日
Application brief Programmable Clock Source with Low-Cost MSP430 MCU PDF | HTML 2020年 11月 9日
Application brief SPI I/O Expander Integrated In Low-Cost MSP430 MCU PDF | HTML 2020年 11月 9日
Application brief RGB LED Controller Using Low-Cost MSP430 MCU PDF | HTML 2020年 10月 22日
Application brief Voltage Monitor With Timestamp Logging Using Low-Cost MSP430 MCU PDF | HTML 2020年 10月 22日
Technical article Integrating multiple functions within a housekeeping MSP430 microcontroller PDF | HTML 2020年 10月 5日
Application brief Add Housekeeping Functions to an MSP430 MCU: ADC Wake and Transmit on Threshold 2020年 10月 1日
Technical article How to design an infrared thermometer quickly PDF | HTML 2020年 4月 7日
Application note MSP430 System ESD Troubleshooting Guide PDF | HTML 2019年 12月 13日
Technical article Embedding more sensing and measurement at embedded world PDF | HTML 2018年 2月 28日
Technical article Introductory price of $4.30 for MSP430FR2433 MCU LaunchPad™ kit PDF | HTML 2017年 11月 8日
White paper Capacitive Touch and MSP Microcontrollers (Rev. A) 2017年 4月 27日
White paper Smart Fault Indicator with MSP430 FRAM Microcontrollers 2016年 9月 26日
Application note General Oversampling of MSP ADCs for Higher Resolution (Rev. A) PDF | HTML 2016年 4月 1日
Application note VLO Calibration on the MSP430FR4xx and MSP430FR2xx Family (Rev. A) 2016年 2月 19日
Application note MSP Code Protection Features PDF | HTML 2015年 12月 7日
Technical article You deserve a little FRAM PDF | HTML 2015年 11月 2日
White paper Crypto-Bootloader - Secure In-Field Firmware Updates for Ultra-Low Power MCUs 2015年 8月 19日
White paper Closing the security gap with TI’s MSP430™ FRAM-based microcontrollers 2014年 9月 15日
Application note MSP430 FRAM Quality and Reliability (Rev. A) 2014年 5月 1日
White paper FRAM FAQs 2014年 4月 23日

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

開發板

ALGO-3P-UISP1-TI — 適用於德州儀器裝置的 Algocraft μISP1 編程器

μISP 可以連接到主機 PC (內建 RS-232、USB、LAN 連接) 或獨立模式工作。

在單機模式下,只要按下「開始」按鈕或透過一些 TTL 控制線,就可以執行編程週期。

其緊湊的尺寸和多功能性可輕鬆整合到生產環境、手動和自動化程序中。

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開發套件

MSP-EXP430FR2433 — MSP430FR2433 LaunchPad™ 開發套件

MSP-EXP430FR2433 LaunchPad™ 開發套件是以 MSP430FR2433 超值型感測微控制器 (MCU) 為基礎的易用評估模組 (EVM)。其包含開始以超低功耗 MSP430FR2x 超值型感測 MCU 平台著手開發所需的一切,包括用於編程、偵錯和能源量測的板載偵錯探測器。電路板包含兩個按鈕和兩個 LED,以建立簡單的使用者介面。此外也支援使用可做為充電電池使用的超級電容器 (使用者必須自行購買並安裝),進而實現不需外部電源供應器的獨立應用。
使用指南: PDF | HTML
開發套件

MSP-TS430RGE24A — 適用於具有 24 針腳之 MSP430FR2433 MCU 的目標開發基板 (不包括微處理器)

Note: This kit does not include MSP430 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: MSP430FR2433.

The MSP-TS430RGE24A is a standalone 24-pin ZIF target development board that is used to (...)

使用指南: PDF | HTML
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硬體程式設計工具

MSP-FET — MSP MCU 程式設計工具和偵錯器

MSP-FET 是一款強大的模擬開發工具,通常稱為偵錯探測器,可讓使用者快速展開 MSP 低功耗微控制器 (MCU) 的開始工作。

它支援透過 JTAG 和 SBW 介面進行編程和即時偵錯。此外,MSP-FET 也能在電腦 USB 介面與 MSP UART 間提供後通道 UART 連接。這為 MSP 程式設計工具提供了一種便利的方法,能在 MSP 和電腦上執行的終端之間進行串行通訊。它也支援透過 UART 和 I2C 通訊協定,使用 BSL(自舉式載入程式)將程式(通常稱為韌體)載入到 MSP 目標。

USB 介面可將 MSP-FET 連接至電腦,而 14 針腳連接器則可存取 MSP (...)

使用指南: PDF | HTML
TI.com 無法提供
硬體程式設計工具

ALGO-3P-WRITENOW — Algocraft WriteNow!程式設計工具

WriteNow! 系統內編程器系列是可編程產業的一大突破。此編程器支援多家製造商的眾多裝置 (例如微控制器、記憶體、CPLD 與其他可編程裝置)。其尺寸精巧,便於整合至 ATE 與固定裝置。編程器可單機運作,或透過內建的 RS-232、LAN 與 USB 連接埠與主機電腦連線,並隨附操作簡易的工具軟體。

從:Algocraft
應用軟體及架構

MSP430-IEC60730-SW-PACKAGE IEC60730 Software Package

The IEC60730 MSP430 software package was developed to be useful in assisting customers in complying with IEC 60730-1:2010 (Automatic Electrical Controls for Household and Similar Use – Part 1: General Requirements) for up to Class B products, which includes home appliances, arc detectors, (...)

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程式碼範例或展示

SLAC700 MSP430FR243x, MSP430FR253x, MSP430FR263x Code Examples

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驅動程式或資料庫

MSP-FRAM-UTILITIES FRAM embedded software utilities for MSP ultra-low-power microcontrollers

The Texas Instruments FRAM Utilities is designed to grow as a collection of embedded software utilities that leverage the ultra-low-power and virtually unlimited write endurance of FRAM. The utilities are available for MSP430FRxx FRAM microcontrollers and provide example code to help start (...)

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韌體

MSPFRBOOT MSPFRBOOT

The bootloader (BSL) on MSP430™ microcontrollers (MCUs) lets users communicate with embedded memory in the MSP MCUs during the prototyping phase, final production, and in service. This is done through standard interfaces such as UART, I2C, SPI, and USB. Both the programmable memory (Flash/FRAM) and (...)

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快速入門

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.
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IDE、配置、編譯器或偵錯程式

CCSTUDIO Code Composer Studio™ integrated development environment (IDE)

Code Composer Studio is an integrated development environment (IDE) for TI's microcontrollers and processors. It is comprised of a rich suite of tools used to build, debug, analyze and optimize embedded applications. Code Composer Studio is available across Windows®, Linux® and macOS® platforms.

(...)

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IDE、配置、編譯器或偵錯程式

ENERGYTRACE — EnergyTrace 技術

EnergyTrace™ software for MSP430™ MCUs, MSP432™ MCUs, CC13xx wireless MCUs and CC26xx wireless MCUs is an energy-based code analysis tool that measures and displays the energy profile of an application and helps optimize it for ultra-low-power consumption.

As most developers know, it is difficult to (...)

使用指南: PDF
IDE、配置、編譯器或偵錯程式

IAR-KICKSTART — IAR Embedded Workbench

IAR Embedded Workbench delivers a complete development toolchain for building and debugging embedded applications for your selected target microcontroller. The included IAR C/C++ Compiler generates highly optimized code for your application, and the C-SPY Debugger is a fully integrated debugger for (...)
從:IAR Systems
使用指南: PDF
線上培訓

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.
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作業系統 (OS)

WHIS-3P-SAFERTOS — WITTENSTEIN SAFERTOS 預先認證的安全 RTOS

SAFERTOS® 是專為嵌入式處理器設計的獨特即時作業系統。經 TÜV SÜD 預先認證,符合 IEC 61508 SIL3 與 ISO 26262 ASILD 標準。SAFERTOS® 是由 WHIS 專家團隊專為安全而打造,適用於全球重要安全應用。WHIS 與德州儀器的合作已經超過十年。在此期間,WHIS 已將 SAFERTOS® 移植至各種 TI 處理器,支援所有熱門核心,並可依要求提供其他架構。SAFERTOS® 專為您的特定處理器/編譯器組合量身打造,隨附完整的原始程式碼與設計保證包,可完全一目了然整個設計生命週期。許多 WHIS 客戶開始使用 FreeRTOS (...)
軟體程式設計工具

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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軟體程式設計工具

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

UniFlash is a software tool for programming on-chip flash on TI microcontrollers and wireless connectivity devices and on-board flash for TI processors. UniFlash provides both graphical and command-line interfaces.

UniFlash can be run from the cloud on the TI Developer Zone or downloaded and used (...)

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設計工具

MSP-3P-SEARCH — MSP 第三方搜尋工具

TI has partnered with multiple companies to offer a wide range of solutions and services for TI MSP devices. These companies can accelerate your path to production using MSP devices. Download this search tool to quickly browse third-party details and find the right third-party to meet your needs.

(...)

參考設計

TIDA-050017 — 用於 3.3V 輸入的 TEC 驅動器參考設計

許多電子元件都需要對溫度進行調節,以獲得最佳性能並延長使用壽命。對於某些應用而言,如光學模組中的雷射二極體,精確的溫度控制至 0.1°C 至關重要,因為即使溫度變化 1°C 也可能導致雷射波長漂移 0.1nm。

採用帕爾帖效應的熱電冷卻 (TEC) 裝置可用於這類應用的溫度控制。電流流過 TEC 的方向決定了它是被加熱還是被冷卻。本設計指南示範如何使用 TI 的低靜態電流 (11µA) 降壓升壓轉換器 (TPS63802) 搭配微控制器 (MSP430FR2433) 來實作 TEC 驅動器,以精確調節敏感裝置的溫度。

Design guide: PDF
電路圖: PDF
參考設計

PMP40496 — 具有 5V USB 的 2 芯升壓充電系統參考設計

此 5V USB、2 芯電池升壓充電器參考設計包含充電系統和內建電量計的 2 芯電池座,可透過纜線連接或獨立運作。充電器系統的主要元件包括 BQ25883 升壓充電器、TUSB320LAI Type-C CC 邏輯、MSP430FR2433 微控制器 (MCU)、OLED 顯示器,以及 USB Type-C 和 Micro B 接頭。電池電量計採用 BQ28Z610,搭配 BQ25883 的內部 ADC,可顯示充電與電池參數。此設計可透過訊號接頭 J5 連接至您的系統,實現隨插即用的完整解決方案。此設計適用於可攜式電子產品應用,例如 POS、Bluetooth® 喇叭及可攜式印表機。
Test report: PDF
電路圖: PDF
參考設計

TIDA-010021 — 抗陽光且範圍廣泛 (1.6 公尺下 120° FoV) 的近距感測器參考設計

具有寬視野 (FoV) 的近距感測越來越受歡迎,也越來越重要,非常適合許多應用中的人員偵測。此參考設計採用光學飛時測距 (ToF) 技術,打造精巧且符合成本效益的近距感測器系統。配備三個外部 NIR LED 和一個光二極體的單個近距與測距感測器 AFE (OPT3101) 可覆蓋總角度數為 120° 的寬 FoV 範圍,並可輸出人員活動的準確距離。
Design guide: PDF
電路圖: PDF
參考設計

TIDM-FRAM-EEPROM — 使用 MSP430 FRAM 微控制器實現 EEPROM 模擬和感測

此參考設計說明使用 MSP430™ 超低功耗微控制器 (MCU) 上的鐵電隨機存取記憶體 (FRAM) 技術,結合使用 MCU 時可啟用的其他感測功能,模擬電子可擦除可編程唯讀記憶體 (EEPROM) 的實作方式。此參考設計支援 I2C 及序列周邊介面 (SPI) 的介面,可連接具多個從屬位址的主機處理器。
Design guide: PDF
電路圖: PDF
參考設計

TIDA-01588 — 適用於有刷直流伺服驅動的 10.8-V/15-W、>90% 效率、2.4-cm2、功率級參考設計

這款 12mm × 20mm 的 15W 功率級參考設計可驅動和控制以三至六芯鋰離子電池運作的有刷 DC (BDC) 馬達的位置。這套高效率的解決方案具備最佳化的精巧外型,可輕鬆融入馬達並支援精確的馬達位置控制。此設計無需位置回饋即可高速驅動馬達。參考設計展示了快速且準確的電流感測,以實現高品質的扭矩控制,板載 MCU 提供 UART 連線,可透過任何外部控制器進行控制。
Design guide: PDF
電路圖: PDF
封裝 針腳 CAD 符號、佔位空間與 3D 模型
DSBGA (YQW) 24 Ultra Librarian
VQFN (RGE) 24 Ultra Librarian

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  • 認證摘要
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內含資訊:
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