MSP430F5508

現行

具 16KB 快閃記憶體、4KB SRAM、10 位元 ADC、比較器、DMA、UART/SPI/I2C、USB、HW 倍頻器的 25 MHz MCU

產品詳細資料

CPU MSP430 Frequency (MHz) 25 Flash memory (kByte) 16 RAM (kByte) 4 ADC type 10-bit SAR Features Real-time clock UART 2 Number of ADC channels 10 SPI 4 USB Yes Hardware accelerators 0 Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART, USB Operating system BareMetal (No OS), TI RTOS Nonvolatile memory (kByte) 16 Number of GPIOs 47 Number of I2Cs 2 Security Secure debug
CPU MSP430 Frequency (MHz) 25 Flash memory (kByte) 16 RAM (kByte) 4 ADC type 10-bit SAR Features Real-time clock UART 2 Number of ADC channels 10 SPI 4 USB Yes Hardware accelerators 0 Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface I2C, SPI, UART, USB Operating system BareMetal (No OS), TI RTOS Nonvolatile memory (kByte) 16 Number of GPIOs 47 Number of I2Cs 2 Security Secure debug
LQFP (PT) 48 81 mm² 9 x 9 NFBGA (ZXH) 80 25 mm² 5 x 5 VQFN (RGC) 64 81 mm² 9 x 9 VQFN (RGZ) 48 49 mm² 7 x 7
  • Low supply-voltage range:
    3.6 V down to 1.8 V
  • Ultra-low power consumption
    • Active mode (AM)
      All system clocks active
      • 195 µA/MHz at 8 MHz, 3 V, flash program execution (typical)
      • 115 µA/MHz at 8 MHz, 3 V, RAM program execution (typical)
    • Standby mode (LPM3)
      • Real-time clock (RTC) with crystal, watchdog, and supply supervisor operational, full RAM retention, fast wakeup:
        1.9 µA at 2.2 V, 2.1 µA at 3 V (typical)
      • Low-power oscillator (VLO), general-purpose counter, watchdog, and supply supervisor operational, full RAM retention, fast wakeup:
        1.4 µA at 3 V (typical)
    • Off mode (LPM4)
      Full RAM retention, supply supervisor operational, fast wakeup:
      1.1 µA at 3 V (typical)
    • Shutdown mode (LPM4.5)
      0.18 µA at 3 V (typical)
  • Wake up from standby in less than 5 µs
  • 16-bit RISC architecture, extended memory, up to 25-MHz system clock
  • Flexible power-management system
    • Fully integrated LDO with programmable regulated core supply voltage
    • Supply voltage supervision, monitoring, and brownout
  • Unified clock system
    • FLL control loop for frequency stabilization
    • Low-power low-frequency internal clock source (VLO)
    • Low-frequency trimmed internal reference source (REFO)
    • 32-kHz watch crystals (XT1)
    • High-frequency crystals up to 32 MHz (XT2)
  • 16-bit Timer TA0, Timer_A with five capture/compare registers
  • 16-bit Timer TA1, Timer_A with three capture/compare registers
  • 16-bit Timer TA2, Timer_A with three capture/compare registers
  • 16-bit Timer TB0, Timer_B with seven capture/compare shadow registers
  • Two universal serial communication interfaces (USCIs)
    • USCI_A0 and USCI_A1 each support:
      • Enhanced UART with automatic baud-rate detection
      • IrDA encoder and decoder
      • Synchronous SPI
    • USCI_B0 and USCI_B1 each support:
      • I2C
      • Synchronous SPI
  • Full-speed universal serial bus (USB)
    • Integrated USB-PHY
    • Integrated 3.3-V and 1.8-V USB power system
    • Integrated USB-PLL
    • Eight input and eight output endpoints
  • 10-bit analog-to-digital converter (ADC) with window comparator
  • Comparator
  • Hardware multiplier supports 32-bit operations
  • Serial onboard programming, no external programming voltage needed
  • Three-channel internal DMA
  • Basic timer with RTC feature
  • Device Comparison summarizes the available family members
  • Low supply-voltage range:
    3.6 V down to 1.8 V
  • Ultra-low power consumption
    • Active mode (AM)
      All system clocks active
      • 195 µA/MHz at 8 MHz, 3 V, flash program execution (typical)
      • 115 µA/MHz at 8 MHz, 3 V, RAM program execution (typical)
    • Standby mode (LPM3)
      • Real-time clock (RTC) with crystal, watchdog, and supply supervisor operational, full RAM retention, fast wakeup:
        1.9 µA at 2.2 V, 2.1 µA at 3 V (typical)
      • Low-power oscillator (VLO), general-purpose counter, watchdog, and supply supervisor operational, full RAM retention, fast wakeup:
        1.4 µA at 3 V (typical)
    • Off mode (LPM4)
      Full RAM retention, supply supervisor operational, fast wakeup:
      1.1 µA at 3 V (typical)
    • Shutdown mode (LPM4.5)
      0.18 µA at 3 V (typical)
  • Wake up from standby in less than 5 µs
  • 16-bit RISC architecture, extended memory, up to 25-MHz system clock
  • Flexible power-management system
    • Fully integrated LDO with programmable regulated core supply voltage
    • Supply voltage supervision, monitoring, and brownout
  • Unified clock system
    • FLL control loop for frequency stabilization
    • Low-power low-frequency internal clock source (VLO)
    • Low-frequency trimmed internal reference source (REFO)
    • 32-kHz watch crystals (XT1)
    • High-frequency crystals up to 32 MHz (XT2)
  • 16-bit Timer TA0, Timer_A with five capture/compare registers
  • 16-bit Timer TA1, Timer_A with three capture/compare registers
  • 16-bit Timer TA2, Timer_A with three capture/compare registers
  • 16-bit Timer TB0, Timer_B with seven capture/compare shadow registers
  • Two universal serial communication interfaces (USCIs)
    • USCI_A0 and USCI_A1 each support:
      • Enhanced UART with automatic baud-rate detection
      • IrDA encoder and decoder
      • Synchronous SPI
    • USCI_B0 and USCI_B1 each support:
      • I2C
      • Synchronous SPI
  • Full-speed universal serial bus (USB)
    • Integrated USB-PHY
    • Integrated 3.3-V and 1.8-V USB power system
    • Integrated USB-PLL
    • Eight input and eight output endpoints
  • 10-bit analog-to-digital converter (ADC) with window comparator
  • Comparator
  • Hardware multiplier supports 32-bit operations
  • Serial onboard programming, no external programming voltage needed
  • Three-channel internal DMA
  • Basic timer with RTC feature
  • Device Comparison summarizes the available family members

The TI MSP family of ultra-low-power microcontrollers consists of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with extensive low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows the device to wake up from low-power modes to active mode in less than 5 µs.

The MSP430F5510, MSP430F5509, and MSP430F5508 devices are microcontroller configurations with integrated USB and PHY supporting USB 2.0, four 16-bit timers, a high-performance 10-bit ADC, two USCIs (1), a hardware multiplier, DMA, an RTC module with alarm capabilities, and 31 or 47 I/O pins.

The MSP430F5507, MSP430F5506, MSP430F5505, and MSP430F5504 devices are microcontroller configurations with integrated USB and PHY supporting USB 2.0, four 16-bit timers, a high-performance 10-bit ADC, one USCI, a hardware multiplier, DMA, an RTC module with alarm capabilities, and 31 I/O pins.

The MSP430F5503, MSP430F5502, MSP430F5501, and MSP430F5500 devices include all of the MSP430F5507, MSP430F5506, MSP430F5505, and MSP430F5504 peripherals, except that they have a comparator instead of the 10-bit ADC.

Typical applications include analog and digital sensor systems and data loggers that require connectivity to various USB hosts.

For complete module descriptions, see the MSP430F5xx and MSP430F6xx Family User’s Guide.

(1)In the 48-pin packages, the USCI functions that are pinned out are limited to what the user configures on port 4 with the port mapping controller. It may not be possible to bring out all functions simultaneously.

The TI MSP family of ultra-low-power microcontrollers consists of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with extensive low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows the device to wake up from low-power modes to active mode in less than 5 µs.

The MSP430F5510, MSP430F5509, and MSP430F5508 devices are microcontroller configurations with integrated USB and PHY supporting USB 2.0, four 16-bit timers, a high-performance 10-bit ADC, two USCIs (1), a hardware multiplier, DMA, an RTC module with alarm capabilities, and 31 or 47 I/O pins.

The MSP430F5507, MSP430F5506, MSP430F5505, and MSP430F5504 devices are microcontroller configurations with integrated USB and PHY supporting USB 2.0, four 16-bit timers, a high-performance 10-bit ADC, one USCI, a hardware multiplier, DMA, an RTC module with alarm capabilities, and 31 I/O pins.

The MSP430F5503, MSP430F5502, MSP430F5501, and MSP430F5500 devices include all of the MSP430F5507, MSP430F5506, MSP430F5505, and MSP430F5504 peripherals, except that they have a comparator instead of the 10-bit ADC.

Typical applications include analog and digital sensor systems and data loggers that require connectivity to various USB hosts.

For complete module descriptions, see the MSP430F5xx and MSP430F6xx Family User’s Guide.

(1)In the 48-pin packages, the USCI functions that are pinned out are limited to what the user configures on port 4 with the port mapping controller. It may not be possible to bring out all functions simultaneously.

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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 MSP430F5510, MSP430F550x Mixed-Signal Microcontrollers datasheet (Rev. L) PDF | HTML 2020年 5月 1日
* Errata MSP430F5508 Microcontroller Errata (Rev. AD) PDF | HTML 2021年 10月 21日
* User guide MSP430x5xx and MSP430x6xx Family User's Guide (Rev. Q) 2018年 8月 17日
Application note Migration Guide From MSP430 MCUs to MSPM0 MCUs (Rev. B) PDF | HTML 2025年 6月 2日
Application note Design Considerations When Using the MSP430 Graphics Library (Rev. A) PDF | HTML 2023年 8月 9日
Application note Li-Ion Battery Charger Solution Using an MSP430™ MCU (Rev. B) PDF | HTML 2022年 4月 1日
Application note ESD Diode Current Specification (Rev. B) PDF | HTML 2021年 8月 23日
Application note MSP430 System-Level ESD Considerations (Rev. B) PDF | HTML 2021年 7月 14日
User guide MSP430 MCUs Development Guide Book (Rev. A) PDF | HTML 2021年 5月 13日
User guide SYS/BIOS (TI-RTOS Kernel) User's Guide (Rev. V) 2020年 6月 1日
Application note MSP430 System ESD Troubleshooting Guide PDF | HTML 2019年 12月 13日
Application note Wide-Vin Battery-Charger Using SMBus MSP430 MCUs and bq Fuel Gauges (Rev. B) PDF | HTML 2019年 7月 12日
Application note Programming a Flash-Based MSP430 MCU Using the JTAG Interface (Rev. H) 2019年 3月 15日
Application note Starting a USB Design Using MSP430 MCUs (Rev. B) PDF | HTML 2018年 10月 19日
Application note Interfacing the 3-V MSP430 MCU to 5-V Circuits (Rev. A) PDF | HTML 2018年 10月 3日
Application note MSP430F5xx Overview and Comparison to MSP430F2xx and MSP430F4xx (Rev. A) PDF | HTML 2018年 9月 26日
Application note MSP430 Flash Memory Characteristics (Rev. B) PDF | HTML 2018年 8月 24日
Application note Understanding MSP430 Flash Data Retention (Rev. A) PDF | HTML 2018年 8月 24日
Application note Mixing C and Assembler With MSP430™ MCUs (Rev. A) PDF | HTML 2018年 8月 7日
Application note Using the TPS3619 With MSP430 Microcontrollers (Rev. B) PDF | HTML 2018年 8月 6日
Application note MSP430 LFXT1 Oscillator Accuracy (Rev. A) 2018年 8月 3日
Application note Efficient Multiplication and Division Using MSP430 MCUs (Rev. A) 2018年 7月 18日
Application note CRC Implementation with MSP430 MCUs (Rev. A) 2018年 6月 21日
Application note Implementing An Ultra-Low-Power Keypad Interface With MSP430 MCUs (Rev. A) 2018年 5月 22日
Application note Random Number Generation Using MSP430™ MCUs (Rev. A) 2018年 5月 16日
Application note Wave Digital Filtering Using an MSP430 MCU (Rev. A) 2018年 5月 16日
Application note Software Coding Techniques for MSP430™ MCUs (Rev. B) 2018年 3月 14日
Application note MSP430 32-kHz Crystal Oscillators (Rev. D) PDF | HTML 2017年 7月 18日
White paper Capacitive Touch and MSP Microcontrollers (Rev. A) 2017年 4月 27日
Application note Migrating from the MSP430F5xx,F6xx Family to the MSP430FR58xx/FR59xx/68xx Family (Rev. D) 2016年 11月 3日
Application note Advanced Debugging Using the Enhanced Emulation Module (EEM) With CCS v6 (Rev. F) 2016年 9月 6日
Application note General Oversampling of MSP ADCs for Higher Resolution (Rev. A) PDF | HTML 2016年 4月 1日
Functional safety information Safety Manual for MSP430G2xx, F5xx, and FR57xx in IEC 60730 Safety Applications (Rev. A) 2016年 1月 12日
Application note MSP Code Protection Features PDF | HTML 2015年 12月 7日
Application note Using the USCI I2C Master (Rev. A) 2015年 3月 11日
White paper Industrial Communications Solutions Featuring MSP Microcontrollers 2015年 1月 26日
Application note USB Field Firmware Updates on MSP430 MCUs (Rev. C) 2014年 11月 12日
Application note Using the MSP430 Timer_D Module in Hi-Resolution Mode 2013年 10月 2日
White paper Ultra-low power USB for portable embedded applications 2013年 5月 29日
Application note Design Considerations When Using the MSP430 Graphics Library 2012年 10月 5日
Application note Powering the MSP430 from a High Voltage Input using the TPS62122 (Rev. C) 2012年 1月 12日
Application note USB Keyboard Using MSP430 Microcontrollers 2011年 12月 20日
Application note 1.8V – 5.5V Input, High-Efficiency DCDC Converter Reference Design for MSP430 (Rev. B) 2010年 6月 14日
Application note Tiny DCDC Converter Reference Design (Rev. A) 2010年 6月 14日

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封裝 針腳 CAD 符號、佔位空間與 3D 模型
LQFP (PT) 48 Ultra Librarian
NFBGA (ZXH) 80 Ultra Librarian
VQFN (RGC) 64 Ultra Librarian
VQFN (RGZ) 48 Ultra Librarian

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