MSP430FR2110

ACTIVO

MCU de 16 MHz con 2 KB FRAM, 1 KB SRAM, comparador, ADC de 10 bits, UART/SPI, temporizador

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Detalles del producto

CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 2 RAM (kByte) 1 ADC type 10-bit SAR Features Real-time clock UART 1 Number of ADC channels 8 SPI 1 USB No Hardware accelerators 0 Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface SPI, UART Operating system BareMetal (No OS), TI RTOS Nonvolatile memory (kByte) 2 Number of GPIOs 12 Number of I2Cs 0 Security Secure debug
CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 2 RAM (kByte) 1 ADC type 10-bit SAR Features Real-time clock UART 1 Number of ADC channels 8 SPI 1 USB No Hardware accelerators 0 Operating temperature range (°C) -40 to 85 Rating Catalog Communication interface SPI, UART Operating system BareMetal (No OS), TI RTOS Nonvolatile memory (kByte) 2 Number of GPIOs 12 Number of I2Cs 0 Security Secure debug
TSSOP (PW) 16 32 mm² 5 x 6.4 VQFN (RLL) 24 9 mm² 3 x 3
  • Embedded microcontroller
    • 16-bit RISC architecture 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 low-power modes (at 3 V)
    • Active mode: 120 µA/MHz
    • Standby
      • LPM3.5 with VLO: 1 µA
      • Real-time clock (RTC) counter (LPM3.5 with 32768-Hz crystal): 1 µA
    • Shutdown (LPM4.5): 34 nA without SVS
  • High-performance analog
    • 8-channel 10-bit analog-to-digital converter (ADC)
      • Integrated temperature sensor
      • Internal 1.5-V reference
      • Sample-and-hold 200 ksps
    • Enhanced comparator (eCOMP)
      • Integrated 6-bit DAC as reference voltage
      • Programmable hysteresis
      • Configurable high-power and low-power modes
  • Low-power ferroelectric RAM (FRAM)
    • Up to 3.75KB 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
  • Intelligent digital peripherals
    • One 16-bit timer with three capture/compare registers (Timer_B3)
    • One 16-bit counter-only RTC counter
    • 16-bit cyclic redundancy checker (CRC)
  • Enhanced serial communications
    • Enhanced USCI A (eUSCI_A) supports UART, IrDA, and SPI
  • 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
    • 12 I/Os on 16-pin package
    • 8 interrupt pins (4 pins of P1 and 4 pins of P2) can wake MCU from LPMs
    • All I/Os are capacitive touch I/Os
  • Development tools and software (also see Tools and Software)
  • Family members (also see Device Comparison)
    • MSP430FR2111: 3.75KB of program FRAM, 1KB of RAM
    • MSP430FR2110: 2KB of program FRAM, 1KB of RAM
    • MSP430FR2100: 1KB of program FRAM, 512 bytes of RAM
    • MSP430FR2000: 0.5KB of program FRAM, 512 bytes of RAM
  • Package options
    • 16-pin: TSSOP (PW16)
    • 24-pin: VQFN (RLL)
  • Embedded microcontroller
    • 16-bit RISC architecture 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 low-power modes (at 3 V)
    • Active mode: 120 µA/MHz
    • Standby
      • LPM3.5 with VLO: 1 µA
      • Real-time clock (RTC) counter (LPM3.5 with 32768-Hz crystal): 1 µA
    • Shutdown (LPM4.5): 34 nA without SVS
  • High-performance analog
    • 8-channel 10-bit analog-to-digital converter (ADC)
      • Integrated temperature sensor
      • Internal 1.5-V reference
      • Sample-and-hold 200 ksps
    • Enhanced comparator (eCOMP)
      • Integrated 6-bit DAC as reference voltage
      • Programmable hysteresis
      • Configurable high-power and low-power modes
  • Low-power ferroelectric RAM (FRAM)
    • Up to 3.75KB 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
  • Intelligent digital peripherals
    • One 16-bit timer with three capture/compare registers (Timer_B3)
    • One 16-bit counter-only RTC counter
    • 16-bit cyclic redundancy checker (CRC)
  • Enhanced serial communications
    • Enhanced USCI A (eUSCI_A) supports UART, IrDA, and SPI
  • 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
    • 12 I/Os on 16-pin package
    • 8 interrupt pins (4 pins of P1 and 4 pins of P2) can wake MCU from LPMs
    • All I/Os are capacitive touch I/Os
  • Development tools and software (also see Tools and Software)
  • Family members (also see Device Comparison)
    • MSP430FR2111: 3.75KB of program FRAM, 1KB of RAM
    • MSP430FR2110: 2KB of program FRAM, 1KB of RAM
    • MSP430FR2100: 1KB of program FRAM, 512 bytes of RAM
    • MSP430FR2000: 0.5KB of program FRAM, 512 bytes of RAM
  • Package options
    • 16-pin: TSSOP (PW16)
    • 24-pin: VQFN (RLL)

MSP430FR2000 and MSP430FR21xx devices are part of the MSP430™ microcontroller (MCU) value line sensing portfolio. This ultra-low-power, low-cost MCU family offers memory sizes from 0.5KB to 4KB of FRAM unified memory with several package options including a small 3-mm×3-mm VQFN package. The architecture, FRAM, and integrated peripherals, combined with extensive low-power modes, are optimized to achieve extended battery life in portable, battery-powered sensing applications. MSP430FR2000 and MSP430FR21xx devices offer a migration path for 8-bit designs to gain additional features and functionality from peripheral integration and the data-logging and low-power benefits of FRAM. Additionally, existing designs using MSP430G2x MCUs can migrate to the MSP430FR2000 and MSP430F21xx family to increase performance and get the benefits of FRAM.

The MSP430FR2000 and MSP430FR21xx MCUs feature a powerful 16-bit RISC CPU, 16-bit registers, and a constant generator that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) also allows the device to wake up from low-power modes to active mode typically in less than 10 µs. The feature set of this MCU meets the needs of applications ranging from appliance battery packs and battery monitoring to smoke detectors and fitness accessories.

The MSP ultra-low-power (ULP) 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 nonvolatile behavior of flash.

MSP430FR2000 and MSP430FR21x 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-EXP430FR2311 and MSP430FR4133 LaunchPad™ development kit and the MSP‑TS430PW20 20-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. MSP430 MCUs are also supported by extensive online collateral, such as our housekeeping example series, MSP Academy training, and online support through the TI E2E™ support forums.

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

MSP430FR2000 and MSP430FR21xx devices are part of the MSP430™ microcontroller (MCU) value line sensing portfolio. This ultra-low-power, low-cost MCU family offers memory sizes from 0.5KB to 4KB of FRAM unified memory with several package options including a small 3-mm×3-mm VQFN package. The architecture, FRAM, and integrated peripherals, combined with extensive low-power modes, are optimized to achieve extended battery life in portable, battery-powered sensing applications. MSP430FR2000 and MSP430FR21xx devices offer a migration path for 8-bit designs to gain additional features and functionality from peripheral integration and the data-logging and low-power benefits of FRAM. Additionally, existing designs using MSP430G2x MCUs can migrate to the MSP430FR2000 and MSP430F21xx family to increase performance and get the benefits of FRAM.

The MSP430FR2000 and MSP430FR21xx MCUs feature a powerful 16-bit RISC CPU, 16-bit registers, and a constant generator that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) also allows the device to wake up from low-power modes to active mode typically in less than 10 µs. The feature set of this MCU meets the needs of applications ranging from appliance battery packs and battery monitoring to smoke detectors and fitness accessories.

The MSP ultra-low-power (ULP) 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 nonvolatile behavior of flash.

MSP430FR2000 and MSP430FR21x 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-EXP430FR2311 and MSP430FR4133 LaunchPad™ development kit and the MSP‑TS430PW20 20-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. MSP430 MCUs are also supported by extensive online collateral, such as our housekeeping example series, MSP Academy training, and online support through the TI E2E™ support forums.

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

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Documentación técnica

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Documentación principal Tipo Título Opciones de formato Fecha
* Data sheet MSP430FR21xx, MSP430FR2000 Mixed-Signal Microcontrollers datasheet (Rev. E) 02 jun 2021
* Errata MSP430FR2110 Microcontroller Errata (Rev. P) PDF | HTML 21 oct 2021
* User guide MSP430FR4xx and MSP430FR2xx Family User's Guide (Rev. I) 13 mar 2019
Application note Migration Guide From MSP430 MCUs to MSPM0 MCUs (Rev. B) PDF | HTML 02 jun 2025
User guide MSP430 FRAM Devices Bootloader (BSL) User's Guide (Rev. AB) PDF | HTML 22 sep 2022
Application note ESD Diode Current Specification (Rev. B) PDF | HTML 23 ago 2021
Application note MSP430 FRAM Technology – How To and Best Practices (Rev. B) 12 ago 2021
Application note Designing With the MSP430FR4xx and MSP430FR2xx ADC (Rev. A) PDF | HTML 02 ago 2021
Application note Low-Power Battery Voltage Measurement With MSP430FR MCU On-Chip VREF and ADC (Rev. B) PDF | HTML 02 ago 2021
Application note Migrating from MSP430 F2xx and G2xx families to MSP430 FR4xx and FR2xx family (Rev. G) PDF | HTML 02 ago 2021
Application note Migration from MSP430 FR58xx, FR59xx, and FR6xx to FR4xx and FR2xx (Rev. B) PDF | HTML 02 ago 2021
Application note MSP430 System-Level ESD Considerations (Rev. B) PDF | HTML 14 jul 2021
User guide MSP430 MCUs Development Guide Book (Rev. A) PDF | HTML 13 may 2021
Application note MSP430FR2xx and MSP430FR4xx DCO+FLL Application Guide 07 dic 2020
Technical article Integrating multiple functions within a housekeeping MSP430 microcontroller PDF | HTML 05 oct 2020
Technical article Accelerate your electric mask design PDF | HTML 01 jul 2020
Application note MSP430 System ESD Troubleshooting Guide PDF | HTML 13 dic 2019
Application note Software I2C on MSP430 MCUs (Rev. A) 02 jul 2018
Application brief EEPROM Emulation Using Low Memory MSP430™ FRAM MCUs (Rev. A) 20 abr 2018
Application brief Simple Power Sequencer Using MSP430™ MCUs 19 mar 2018
E-book Enhance simple analog and digital functions for $0.25 (Rev. B) 07 feb 2018
Application brief Tamper Detection Using Low-Memory MSP430™ MCUs 26 oct 2017
Application note Code Porting From MSP430FR2000 to MSP430FR2311 MCUs 25 oct 2017
Application brief Dual-Output 8-Bit PWM DAC Using Low-Memory MSP430™ MCUs 20 oct 2017
Application brief SPI I/O Expander Using Low-Memory MSP430™ MCUs 19 oct 2017
Application brief Voltage Monitor With a Timestamp Using a Low-Memory MSP430™ MCU 19 oct 2017
Application brief 7-Segment LED Stopwatch Using Low-Memory MSP430™ MCUs 18 oct 2017
Application brief Analog Input to PWM Output Using the MSP430™ MCU Enhanced Comparator 18 oct 2017
Application brief Hysteresis Comparator With UART Using Low-Memory MSP430™ FRAM MCUs 18 oct 2017
Application brief Multi-Function Reset Controller With Low-Memory MSP430™ MCUs 18 oct 2017
Application brief Single-Slope Analog-to-Digital Conversion Technique Using MSP430™ MCUs 18 oct 2017
Application brief ADC Wake and Transmit on Threshold Using MSP430™ MCUs 17 oct 2017
Application brief Programmable System Wake-up Controller Using MSP430™ MCUs 17 oct 2017
Application brief Quadrature Encoder Position Counter With MSP430™ MCUs 17 oct 2017
Application note Optimizing C Code for Size With MSP430 MCUs: Tips and Tricks 16 oct 2017
Application brief Simple RTC-Based System Wake-up Controller Using MSP430™ MCUs 13 oct 2017
Application brief UART-to-SPI Bridge Using Low-Memory MSP430™ MCUs 13 oct 2017
Application brief UART-to-UART Bridge Using Low-Memory MSP430™ MCUs 09 oct 2017
Application brief Programmable Clock Source Using MSP430™ MCUs 28 sep 2017
Application brief Low -Power Hex Keypad Using MSP430™ MCUs 27 sep 2017
Application brief Programmable Frequency Locked Loop Using MSP430™ MCUs 27 sep 2017
Application brief Servo Motor Controller Using MSP430™ MCUs 27 sep 2017
Application brief External Programmable Watchdog Timer Using MSP430™ MCUs 26 sep 2017
Application brief Stepper Motor Control Using MSP430™ MCUs 26 sep 2017
Application brief External RTC With Backup Memory Using a Low-Memory MSP430™ MCU 15 sep 2017
Application brief Single-Wire Communication Host With MSP430™ MCUs 15 sep 2017
Application brief UART Software Controlled RGB LED Color Mixing With MSP430™ MCUs 15 sep 2017
Technical article It may be small, but it’s powerful PDF | HTML 27 oct 2016
Application note VLO Calibration on the MSP430FR4xx and MSP430FR2xx Family (Rev. A) 19 feb 2016
Application note MSP Code Protection Features PDF | HTML 07 dic 2015
Application note MSP430 FRAM Quality and Reliability (Rev. A) 01 may 2014

Diseño y desarrollo

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Encapsulado Pines Símbolos CAD, huellas y modelos 3D
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Pedidos y calidad

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  • REACH
  • Marcado del dispositivo
  • Acabado de plomo/material de la bola
  • Clasificación de nivel de sensibilidad a la humedad (MSL)/reflujo máximo
  • Estimaciones de tiempo medio entre fallas (MTBF)/fallas en el tiempo (FIT)
  • Contenido del material
  • Resumen de calificaciones
  • Monitoreo continuo de confiabilidad
Información incluida:
  • Lugar de fabricación
  • Lugar de ensamblaje

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