MSPM0G3106-Q1

AKTIV

80 MHz Arm® Cortex®-M0+ MCU für die Automobilindustrie mit 64 KB Flash, 32 KB SRAM, 2x12 Bit 4 Msps

Produktdetails

CPU Arm Cortex-M0+ Frequency (MHz) 80 Flash memory (kByte) 64 RAM (kByte) 32 ADC type 12-bit SAR Features 5-V-tolerant I/Os, AEC Q100, AES encryption, CAN FD, DMA, OpAmp, RTC UART 4 CAN (#) CAN-FD TI functional safety category Functional Safety-Compliant Number of ADC channels 6, 11, 16, 17 SPI 2 Operating temperature range (°C) -40 to 125 Rating Automotive Communication interface CAN-FD, I2C, LIN, SPI, UART Operating system FreeRTOS, Zephyr RTOS Hardware accelerators Trigonometric math accelerator Nonvolatile memory (kByte) 64 Number of GPIOs 16, 24, 28, 44, 60 Number of I2Cs 2 Security Cryptographic acceleration, Secure communication, Secure debug
CPU Arm Cortex-M0+ Frequency (MHz) 80 Flash memory (kByte) 64 RAM (kByte) 32 ADC type 12-bit SAR Features 5-V-tolerant I/Os, AEC Q100, AES encryption, CAN FD, DMA, OpAmp, RTC UART 4 CAN (#) CAN-FD TI functional safety category Functional Safety-Compliant Number of ADC channels 6, 11, 16, 17 SPI 2 Operating temperature range (°C) -40 to 125 Rating Automotive Communication interface CAN-FD, I2C, LIN, SPI, UART Operating system FreeRTOS, Zephyr RTOS Hardware accelerators Trigonometric math accelerator Nonvolatile memory (kByte) 64 Number of GPIOs 16, 24, 28, 44, 60 Number of I2Cs 2 Security Cryptographic acceleration, Secure communication, Secure debug
LQFP (PM) 64 144 mm² 12 x 12 LQFP (PT) 48 81 mm² 9 x 9 VQFN (RGZ) 48 49 mm² 7 x 7 VQFN (RHB) 32 25 mm² 5 x 5 VSSOP (DGS) 20 24.99 mm² 5.1 x 4.9 VSSOP (DGS) 32 39.69 mm² 8.1 x 4.9 VSSOP (DGS) 28 34.79 mm² 7.1 x 4.9
  • Core
    • Arm 32-bit Cortex-M0+ CPU with memory protection unit, frequency up to 80MHz
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation available to aid ISO 26262 system design
    • Systematic capability up to ASIL B
    • Hardware integrity up to ASIL B
  • Safety-related certification
  • Operating characteristics
    • Extended temperature: –40°C up to 125°C
    • Wide supply voltage range: 1.62V to 3.6V
  • Memories
    • Up to 128KB of flash memory with built-in error correction code (ECC)
    • Up to 32KB of SRAM with hardware parity
  • High-performance analog peripherals
    • Two simultaneous sampling 12-bit 4Msps analog-to-digital converters (ADCs) with up to 17 external channels
      • 14-bit effective resolution at 250ksps with hardware averaging
    • One general-purpose amplifier (GPAMP)
    • Configurable 1.4V or 2.5V internal shared voltage reference (VREF)
    • Integrated temperature sensor
  • Optimized low-power modes
    • RUN: 101µA/MHz (CoreMark)
    • SLEEP: 40µA/MHz
    • STOP: 190µA at 4MHz
    • STANDBY: 1.5µA with 32KHz LFXT, RTC with SRAM, CPU state, and registers retained
    • SHUTDOWN: 80nA with IO retained and IO wake-up capability
  • Intelligent digital peripherals
    • 7-channel DMA controller
    • Two 16-bit advanced control timers support dead band insertion and fault handling
    • Seven timers supporting up to 22 PWM channels
      • One 16-bit general purpose timer supports QEI
      • Two 16-bit general-purpose timers support low-power operation in STANDBY mode
      • One 32-bit general-purpose timer
      • Two 16-bit advanced timers with deadband and complementary outputs up to 12 PWM channels
    • Two window-watchdog timers (WWDT)
    • RTC with alarm and calendar mode
  • Enhanced communication interfaces
    • Four UART interfaces
      • One supports LIN, IrDA, DALI, Smart Card, Manchester
      • Three support low-power operation in STANDBY mode
    • Two I2C interfaces supporting FM+ (1Mbit/s), SMBus, PMBus, and wakeup from STOP mode
    • Two SPIs, one SPI supports up to 32Mbits/s
    • One Controller Area Network (CAN) interface supports CAN 2.0 A or B and CAN-FD
  • Clock system
    • Internal 4MHz to 32MHz oscillator (SYSOSC) with up to ±1.2% accuracy
    • Phase-locked loop (PLL) up to 80MHz
    • Internal 32kHz oscillator (LFOSC) with ±3% accuracy
    • External 4MHz to 48MHz crystal oscillator (HFXT)
    • External 32kHz crystal oscillator(LFXT)
    • External clock input
  • Data integrity and encryption
    • Cyclic redundancy checker (CRC-16, CRC-32)
    • True random number generator (TRNG)
    • AES encryption with 128-bit or 256-bit key
  • Flexible I/O features
    • Up to 60 GPIOs
      • Two 5V-tolerant open-drain IOs
      • Two high-drive IOs with 20mA drive strength
      • Up to 5 high speed IOs
  • Development support
    • 2-pin serial wire debug (SWD)
  • Package options
    • 64-pin LQFP (PM) (0.5mm pitch)
    • 48-pin VQFN (RGZ) (0.5mm pitch)
    • 48-pin LQFP (PT) (0.5mm pitch)
    • 32-pin VQFN (RHB) (0.5mm pitch)
    • 32-pin VSSOP (32DGS) (0.5mm pitch))
    • 28-pin VSSOP (28DGS) (0.5mm pitch))
    • 20-pin VSSOP (20DGS) (0.5mm pitch)
  • Family members (also see Device Comparison)
    • MSPM0G3105: 32KB flash, 16KB RAM
    • MSPM0G3106: 64KB flash, 32KB RAM
    • MSPM0G3107: 128KB flash, 32KB RAM
  • Development kits and software (also see Tools and Software)
  • Automotive qualification
    • AEC-Q100 Grade 1
    • 32-pin and 48-pin QFNs with wettable flanks option
  • Core
    • Arm 32-bit Cortex-M0+ CPU with memory protection unit, frequency up to 80MHz
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation available to aid ISO 26262 system design
    • Systematic capability up to ASIL B
    • Hardware integrity up to ASIL B
  • Safety-related certification
  • Operating characteristics
    • Extended temperature: –40°C up to 125°C
    • Wide supply voltage range: 1.62V to 3.6V
  • Memories
    • Up to 128KB of flash memory with built-in error correction code (ECC)
    • Up to 32KB of SRAM with hardware parity
  • High-performance analog peripherals
    • Two simultaneous sampling 12-bit 4Msps analog-to-digital converters (ADCs) with up to 17 external channels
      • 14-bit effective resolution at 250ksps with hardware averaging
    • One general-purpose amplifier (GPAMP)
    • Configurable 1.4V or 2.5V internal shared voltage reference (VREF)
    • Integrated temperature sensor
  • Optimized low-power modes
    • RUN: 101µA/MHz (CoreMark)
    • SLEEP: 40µA/MHz
    • STOP: 190µA at 4MHz
    • STANDBY: 1.5µA with 32KHz LFXT, RTC with SRAM, CPU state, and registers retained
    • SHUTDOWN: 80nA with IO retained and IO wake-up capability
  • Intelligent digital peripherals
    • 7-channel DMA controller
    • Two 16-bit advanced control timers support dead band insertion and fault handling
    • Seven timers supporting up to 22 PWM channels
      • One 16-bit general purpose timer supports QEI
      • Two 16-bit general-purpose timers support low-power operation in STANDBY mode
      • One 32-bit general-purpose timer
      • Two 16-bit advanced timers with deadband and complementary outputs up to 12 PWM channels
    • Two window-watchdog timers (WWDT)
    • RTC with alarm and calendar mode
  • Enhanced communication interfaces
    • Four UART interfaces
      • One supports LIN, IrDA, DALI, Smart Card, Manchester
      • Three support low-power operation in STANDBY mode
    • Two I2C interfaces supporting FM+ (1Mbit/s), SMBus, PMBus, and wakeup from STOP mode
    • Two SPIs, one SPI supports up to 32Mbits/s
    • One Controller Area Network (CAN) interface supports CAN 2.0 A or B and CAN-FD
  • Clock system
    • Internal 4MHz to 32MHz oscillator (SYSOSC) with up to ±1.2% accuracy
    • Phase-locked loop (PLL) up to 80MHz
    • Internal 32kHz oscillator (LFOSC) with ±3% accuracy
    • External 4MHz to 48MHz crystal oscillator (HFXT)
    • External 32kHz crystal oscillator(LFXT)
    • External clock input
  • Data integrity and encryption
    • Cyclic redundancy checker (CRC-16, CRC-32)
    • True random number generator (TRNG)
    • AES encryption with 128-bit or 256-bit key
  • Flexible I/O features
    • Up to 60 GPIOs
      • Two 5V-tolerant open-drain IOs
      • Two high-drive IOs with 20mA drive strength
      • Up to 5 high speed IOs
  • Development support
    • 2-pin serial wire debug (SWD)
  • Package options
    • 64-pin LQFP (PM) (0.5mm pitch)
    • 48-pin VQFN (RGZ) (0.5mm pitch)
    • 48-pin LQFP (PT) (0.5mm pitch)
    • 32-pin VQFN (RHB) (0.5mm pitch)
    • 32-pin VSSOP (32DGS) (0.5mm pitch))
    • 28-pin VSSOP (28DGS) (0.5mm pitch))
    • 20-pin VSSOP (20DGS) (0.5mm pitch)
  • Family members (also see Device Comparison)
    • MSPM0G3105: 32KB flash, 16KB RAM
    • MSPM0G3106: 64KB flash, 32KB RAM
    • MSPM0G3107: 128KB flash, 32KB RAM
  • Development kits and software (also see Tools and Software)
  • Automotive qualification
    • AEC-Q100 Grade 1
    • 32-pin and 48-pin QFNs with wettable flanks option

MSPM0G310x microcontrollers (MCUs) are part of the MSP highly-integrated, ultra-low-power 32-bit MCU family based on the enhanced Arm Cortex-M0+ 32-bit core platform operating at up to 80MHz frequency. These cost-optimized MCUs offer high-performance analog peripheral integration, support extended temperature ranges from -40°C to 125°C, and operate with supply voltages ranging from 1.62V to 3.6V.

The MSPM0G310x devices provide up to 128KB embedded flash program memory with built-in error correction code (ECC) and up to 32KB SRAM with hardware parity option. The devices also incorporate a memory protection unit, 7-channel DMA, and a variety of high-performance analog peripherals such as two 12-bit 4Msps ADCs, configurable internal shared voltage reference, and one general-purpose amplifier. These devices also offer intelligent digital peripherals such as two 16-bit advanced control timers, five general purpose timers (with one 16-bit general-purpose timer for QEI interface, two 16-bit general-purpose timers for STANDBY mode, and one 32-bit general-purpose timer), two windowed-watchdog timers, and one RTC with alarm and calendar mode. These devices provide data integrity and encryption peripherals (CRC, TRNG, AES) and enhanced communication interfaces (four UART, two I2C, two SPI, CAN 2.0/FD).

The TI MSPM0 family of low-power MCUs consists of devices with varying degrees of analog and digital integration that allow customers to find the MCU that meets project needs. The MSPM0 MCU platform combines the Arm Cortex-M0+ platform with a holistic ultra-low-power system architecture, allowing system designers to increase performance while reducing energy consumption.

MSPM0G310x MCUs are supported by an extensive hardware and software ecosystem with reference designs and code examples to get the design started quickly. Development kits include a LaunchPad available for purchase. TI also provides a free MSP Software Development Kit (SDK), which is available as a component of Code Composer Studio™ IDE desktop and cloud version within the TI Resource Explorer. MSPM0 MCUs are also supported by extensive online collateral, training with MSP Academy, and online support through the TI E2E™ support forums.

For complete module descriptions, see the MSPM0 G-Series 80MHz Microcontrollers Technical Reference Manual.

MSPM0G310x microcontrollers (MCUs) are part of the MSP highly-integrated, ultra-low-power 32-bit MCU family based on the enhanced Arm Cortex-M0+ 32-bit core platform operating at up to 80MHz frequency. These cost-optimized MCUs offer high-performance analog peripheral integration, support extended temperature ranges from -40°C to 125°C, and operate with supply voltages ranging from 1.62V to 3.6V.

The MSPM0G310x devices provide up to 128KB embedded flash program memory with built-in error correction code (ECC) and up to 32KB SRAM with hardware parity option. The devices also incorporate a memory protection unit, 7-channel DMA, and a variety of high-performance analog peripherals such as two 12-bit 4Msps ADCs, configurable internal shared voltage reference, and one general-purpose amplifier. These devices also offer intelligent digital peripherals such as two 16-bit advanced control timers, five general purpose timers (with one 16-bit general-purpose timer for QEI interface, two 16-bit general-purpose timers for STANDBY mode, and one 32-bit general-purpose timer), two windowed-watchdog timers, and one RTC with alarm and calendar mode. These devices provide data integrity and encryption peripherals (CRC, TRNG, AES) and enhanced communication interfaces (four UART, two I2C, two SPI, CAN 2.0/FD).

The TI MSPM0 family of low-power MCUs consists of devices with varying degrees of analog and digital integration that allow customers to find the MCU that meets project needs. The MSPM0 MCU platform combines the Arm Cortex-M0+ platform with a holistic ultra-low-power system architecture, allowing system designers to increase performance while reducing energy consumption.

MSPM0G310x MCUs are supported by an extensive hardware and software ecosystem with reference designs and code examples to get the design started quickly. Development kits include a LaunchPad available for purchase. TI also provides a free MSP Software Development Kit (SDK), which is available as a component of Code Composer Studio™ IDE desktop and cloud version within the TI Resource Explorer. MSPM0 MCUs are also supported by extensive online collateral, training with MSP Academy, and online support through the TI E2E™ support forums.

For complete module descriptions, see the MSPM0 G-Series 80MHz Microcontrollers Technical Reference Manual.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet MSPM0G310x-Q1 Automotive Mixed-Signal Microcontrollers With CAN-FD Interface datasheet (Rev. C) PDF | HTML 30 Sep 2025
* Errata MSPM0G350x, MSPM0G150x Mixed-Signal Microcontrollers Errata (Rev. F) PDF | HTML 25 Jul 2023
* User guide MSPM0 G-Series 80-MHz Microcontrollers Technical Reference Manual (Rev. C) 19 Aug 2025
User guide MSPM0 Bootloader User's Guide (Rev. A) PDF | HTML 08 Jan 2026
Application note Cybersecurity Enablers in MSPM0 MCUs (Rev. A) PDF | HTML 10 Dez 2025
Application note EMC Improvement Guide for MSPM0 (Rev. A) PDF | HTML 02 Dez 2025
Application note MSPM0 ADC Noise Analysis and Application (Rev. A) PDF | HTML 14 Nov 2025
Subsystem design ADC to I2C (Rev. A) PDF | HTML 10 Sep 2025
Subsystem design ADC to UART (Rev. A) PDF | HTML 09 Sep 2025
Subsystem design Thermistor Temperature Sensing (Rev. A) PDF | HTML 09 Sep 2025
Subsystem design ADC to SPI (Rev. A) PDF | HTML 27 Aug 2025
Subsystem design Digital FIR Filter (Rev. A) PDF | HTML 27 Aug 2025
User guide MSPM0 MCUs Development Guide (Rev. G) PDF | HTML 27 Aug 2025
Subsystem design Digital IIR Filter (Rev. A) PDF | HTML 26 Aug 2025
Subsystem design Power Sequencer (Rev. A) PDF | HTML 25 Aug 2025
Subsystem design 5V Interface (Rev. A) PDF | HTML 20 Aug 2025
Subsystem design Data Sensor Aggregator Subsystem Design (Rev. A) PDF | HTML 20 Aug 2025
Subsystem design CAN to I2C Bridge (Rev. A) PDF | HTML 19 Aug 2025
Subsystem design CAN to SPI Bridge (Rev. A) PDF | HTML 19 Aug 2025
Subsystem design CAN to UART bridge (Rev. A) PDF | HTML 19 Aug 2025
Subsystem design PWM Control Using Push-Buttons PDF | HTML 14 Aug 2025
Subsystem design Using MSPM0 as a Watchdog Timer PDF | HTML 14 Aug 2025
Subsystem design Emulate EEPROM with FLASH (Type A) (Rev. A) PDF | HTML 13 Aug 2025
Subsystem design Emulate EEPROM With FLASH (Type B) (Rev. A) PDF | HTML 06 Aug 2025
Subsystem design Frequency Counter: Tone Detection (Rev. A) PDF | HTML 06 Aug 2025
Functional safety information Functional Safety Manual for MSPM0G3x0x-Q1 (Rev. B) PDF | HTML 05 Aug 2025
Functional safety information MSPM0G310x-Q1 and MSPM0G350x-Q1 TÜV SÜD Functional Safety Certificate 07 Jul 2025
Subsystem design Simultaneous Sampling of ADCs PDF | HTML 30 Jun 2025
Analog Design Journal Choosing a position sensor in motor control PDF | HTML 27 Jun 2025
Application note Capturing PWM 0% to 100% Duty Cycle with MSPM0 MCU PDF | HTML 12 Jun 2025
Application note Migration Guide From STM8 to MSPM0 (Rev. A) PDF | HTML 21 Mai 2025
White paper MSPM0 MCU Advantages in Automotive Application PDF | HTML 11 Mär 2025
Application note LIN Basics and Implementation on MSPM0 PDF | HTML 21 Feb 2025
Application note Laser Speckle Reduction Solution in Projector based on MSPM0 MCU PDF | HTML 20 Feb 2025
User guide Migration Guide From NXP to MSPM0 PDF | HTML 03 Feb 2025
Application note Closed Loop Constant Power Drive to Simplify Heater Element Control and Extend Battery Life PDF | HTML 29 Jan 2025
Application note BQ79616 Control Based on MSPM0 Through UART to CAN PDF | HTML 16 Dez 2024
Application note MSPM0G3507 Low Power Test and Guidance PDF | HTML 18 Okt 2024
Application note Understanding the MSPM0 Debug Subsystem PDF | HTML 23 Sep 2024
Application note A2L Refrigerant Standard Overview and TI Mitigation Control Board Designs for Designers PDF | HTML 16 Sep 2024
Application note TPS929xxx LED Driver Control Using MSPM0 Through UART Over CAN PDF | HTML 04 Sep 2024
Application note SPI to CAN Bridge on MSPM0 MCUs PDF | HTML 28 Aug 2024
Application brief Bridge Design Between CAN and SPI with MSPM0 MCUs PDF | HTML 17 Jun 2024
Application brief Bridge Design Between CAN and UART with MSPM0 MCUs PDF | HTML 17 Jun 2024
Application brief Bridge Design between CAN and I2C with MSPM0 MCUs 17 Jun 2024
Application note Designing Temperature Monitoring Systems with NTC and RTD PDF | HTML 15 Mai 2024
Application brief Automotive Seat Comfort Module Using MSPM0 PDF | HTML 01 Mai 2024
Application note Realization of Password-Protected Debug Based on Software PDF | HTML 06 Mär 2024
Product overview Realizing UWB Passive Entry Passive Start (PEPS) Design with MSPM0 MCU PDF | HTML 12 Jan 2024
Technical article Why interoperability matters to an evolving EV charging market PDF | HTML 05 Jan 2024
Product overview Realizing HVAC FAN Control Design with MSPM0 MCU PDF | HTML 21 Dez 2023
Application note MSPM0 Enables Cost-Effective Field Transmitter Applications PDF | HTML 15 Dez 2023
Application note Operating Time of MSPM0 Powered by a Capacitor PDF | HTML 03 Okt 2023
Application note EEPROM Emulation Type A Solution PDF | HTML 18 Apr 2023
Application note EEPROM Emulation Type B Design PDF | HTML 11 Apr 2023
Application brief Increasing Flexibility in Your Battery Management Designs With a Low-Cost MSPM0 PDF | HTML 02 Mär 2023
Application brief Optimizing Field Sensor and Transmitter Applications With MSPM0 MCUs PDF | HTML 02 Mär 2023
Application brief Simplifying Pulse Oximeter Designs With Low-Cost Highly Integrated MSPM0 MCUs PDF | HTML 02 Mär 2023
Application note MSPM0 G-Series MCUs Power Optimization Guide PDF | HTML 22 Feb 2023
White paper MSPM0: Idea to Product With Easy-to-Use Tools, Software, and Academy PDF | HTML 22 Feb 2023
Application note Make System Design Easy With MSPM0 Precision Analog PDF | HTML 22 Feb 2023
Application note MSPM0L or MSPM0G: How to Pick the Right MSP Microcontroller for Your Application PDF | HTML 13 Dez 2022

Design und Entwicklung

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Software-Entwicklungskit (SDK)

MSPM0-SDK MSPM0 Software Development Kit (SDK)

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MSPM0G3X0X-Q1-FS MSPM0G350x and MSPM0G310x functional safety information

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GUI für Evaluierungsmodul (EVM)

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IDE, Konfiguration, Compiler oder Debugger

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Onlineschulungen

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Software-Programmiertool

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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Software-Programmiertool

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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Berechnungstool

MSPM0-CALC Power estimation tool for the MSPM0 platform

This tool can be used by engineers to estimate power consumption in different modes of operation for the MSPM0 device family.
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Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
LQFP (PM) 64 Ultra Librarian
LQFP (PT) 48 Ultra Librarian
VQFN (RGZ) 48 Ultra Librarian
VQFN (RHB) 32 Ultra Librarian
VSSOP (DGS) 20 Ultra Librarian
VSSOP (DGS) 32 Ultra Librarian
VSSOP (DGS) 28 Ultra Librarian

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