Product details

CPU 2 C28, 2 CLA Frequency (MHz) 200 Flash memory (kByte) 1024 RAM (kByte) 204 ADC type 2 16-bit SAR, 4 16-bit Total processing (MIPS) 800 Features External memory interface, FPU32 UART 4 CAN (#) 2 Sigma-delta filter 8 PWM (Ch) 24 TI functional safety category Functional Safety-Capable Number of ADC channels 7, 9, 12, 14, 20, 24 Direct memory access (Ch) 12 SPI 8 QEP 24 USB Yes Operating temperature range (°C) -55 to 125 Rating Space Communication interface CAN, I2C, McBSP, SCI, SPI Operating system FreeRTOS Hardware accelerators Control law accelerator, Floating point unit, Trigonometric math accelerator Nonvolatile memory (kByte) 1024 Security Secure storage
CPU 2 C28, 2 CLA Frequency (MHz) 200 Flash memory (kByte) 1024 RAM (kByte) 204 ADC type 2 16-bit SAR, 4 16-bit Total processing (MIPS) 800 Features External memory interface, FPU32 UART 4 CAN (#) 2 Sigma-delta filter 8 PWM (Ch) 24 TI functional safety category Functional Safety-Capable Number of ADC channels 7, 9, 12, 14, 20, 24 Direct memory access (Ch) 12 SPI 8 QEP 24 USB Yes Operating temperature range (°C) -55 to 125 Rating Space Communication interface CAN, I2C, McBSP, SCI, SPI Operating system FreeRTOS Hardware accelerators Control law accelerator, Floating point unit, Trigonometric math accelerator Nonvolatile memory (kByte) 1024 Security Secure storage
HLQFP (PTP) 176 676 mm² 26 x 26
  • VID - V62/25638
  • Radiation hardened
    • Single Event Latch-up (SEL) immune to 45MeV-cm2/mg at 125°C
    • Total Ionizing Dose (TID) RLAT for every wafer lot up to 30krad (Si)
  • Space enhanced plastic
    • Controlled baseline
    • Gold (Au) wire
    • One assembly/test site
    • One fabrication site
    • Available in extended temperature range(–55°C to 125°C)
    • Extended product life cycle
    • Extended product change notification
    • Product traceability
    • Enhanced mold compound for low outgassing
  • Dual-core architecture
    • Two TMS320C28x 32-bit CPUs
    • 200MHz
    • IEEE 754 single-precision Floating-Point Unit (FPU)
    • Trigonometric Math Unit (TMU)
    • Viterbi/Complex Math Unit (VCU-II)
  • Two programmable Control Law Accelerators (CLAs)
    • 200MHz
    • IEEE 754 single-precision floating-point instructions
    • Executes code independently of main CPU
  • On-chip memory
    • 512KB (256KW) or 1MB (512KW) of flash (ECC-protected)
    • 172KB (86KW) or 204KB (102KW) of RAM (ECC-protected or parity-protected)
    • Dual-zone security supporting third-party development
    • Unique identification number
  • Clock and system control
    • Two internal zero-pin 10MHz oscillators
    • On-chip crystal oscillator
    • Windowed watchdog timer module
    • Missing clock detection circuitry
  • 1.2V core, 3.3V I/O design
  • System peripherals
    • Two External Memory Interfaces (EMIFs) with ASRAM and SDRAM support
    • Dual 6-channel Direct Memory Access (DMA) controllers
    • Up to 169 individually programmable, multiplexed General-Purpose Input/Output (GPIO) pins with input filtering
    • Expanded Peripheral Interrupt controller (ePIE)
    • Multiple Low-Power Mode (LPM) support with external wakeup
  • Communications peripherals
    • USB 2.0 (MAC + PHY)
    • Support for 12-pin 3.3V-compatible Universal Parallel Port (uPP) interface
    • Two Controller Area Network (CAN) modules (pin-bootable)
    • Three high-speed (up to 50MHz) SPI ports (pin-bootable)
    • Two Multichannel Buffered Serial Ports (McBSPs)
    • Four Serial Communications Interfaces (SCI/UART) (pin-bootable)
    • Two I2C interfaces (pin-bootable)
  • Analog subsystem
    • Up to four Analog-to-Digital Converters (ADCs)
      • 16-bit mode
        • 1.1MSPS each (up to 4.4MSPS system throughput)
        • Differential inputs
        • Up to 12 external channels
      • 12-bit mode
        • 3.5MSPS each (up to 14MSPS system throughput)
        • Single-ended inputs
        • Up to 24 external channels
      • Single Sample-and-Hold (S/H) on each ADC
      • Hardware-integrated post-processing of ADC conversions
        • Saturating offset calibration
        • Error from setpoint calculation
        • High, low, and zero-crossing compare, with interrupt capability
        • Trigger-to-sample delay capture
    • Eight windowed comparators with 12-bit Digital-to-Analog Converter (DAC) references
    • Three 12-bit buffered DAC outputs
  • Enhanced control peripherals
    • 24 Pulse Width Modulator (PWM) channels with enhanced features
    • 16 High-Resolution Pulse Width Modulator (HRPWM) channels
      • High resolution on both A and B channels of 8 PWM modules
      • Dead-band support (on both standard and high resolution)
    • Six Enhanced Capture (eCAP) modules
    • Three Enhanced Quadrature Encoder Pulse (eQEP) modules
    • Eight Sigma-Delta Filter Module (SDFM) input channels, 2 parallel filters per channel
      • Standard SDFM data filtering
      • Comparator filter for fast action for out of range
  • Supports defense and aerospace applications
    • Controlled baseline
    • One assembly/test site
    • One fabrication site
    • Extended product lifecycle
    • Product traceability
    • Outgassing test performed per ASTM E595
  • Package:
    • 176-pin PowerPAD™ Thermally Enhanced Low-Profile Quad Flatpack (HLQFP) [PTP suffix]
  • Hardware Built-in Self Test (HWBIST)
  • Temperature:
    • –55°C to 150°C junction
  • VID - V62/25638
  • Radiation hardened
    • Single Event Latch-up (SEL) immune to 45MeV-cm2/mg at 125°C
    • Total Ionizing Dose (TID) RLAT for every wafer lot up to 30krad (Si)
  • Space enhanced plastic
    • Controlled baseline
    • Gold (Au) wire
    • One assembly/test site
    • One fabrication site
    • Available in extended temperature range(–55°C to 125°C)
    • Extended product life cycle
    • Extended product change notification
    • Product traceability
    • Enhanced mold compound for low outgassing
  • Dual-core architecture
    • Two TMS320C28x 32-bit CPUs
    • 200MHz
    • IEEE 754 single-precision Floating-Point Unit (FPU)
    • Trigonometric Math Unit (TMU)
    • Viterbi/Complex Math Unit (VCU-II)
  • Two programmable Control Law Accelerators (CLAs)
    • 200MHz
    • IEEE 754 single-precision floating-point instructions
    • Executes code independently of main CPU
  • On-chip memory
    • 512KB (256KW) or 1MB (512KW) of flash (ECC-protected)
    • 172KB (86KW) or 204KB (102KW) of RAM (ECC-protected or parity-protected)
    • Dual-zone security supporting third-party development
    • Unique identification number
  • Clock and system control
    • Two internal zero-pin 10MHz oscillators
    • On-chip crystal oscillator
    • Windowed watchdog timer module
    • Missing clock detection circuitry
  • 1.2V core, 3.3V I/O design
  • System peripherals
    • Two External Memory Interfaces (EMIFs) with ASRAM and SDRAM support
    • Dual 6-channel Direct Memory Access (DMA) controllers
    • Up to 169 individually programmable, multiplexed General-Purpose Input/Output (GPIO) pins with input filtering
    • Expanded Peripheral Interrupt controller (ePIE)
    • Multiple Low-Power Mode (LPM) support with external wakeup
  • Communications peripherals
    • USB 2.0 (MAC + PHY)
    • Support for 12-pin 3.3V-compatible Universal Parallel Port (uPP) interface
    • Two Controller Area Network (CAN) modules (pin-bootable)
    • Three high-speed (up to 50MHz) SPI ports (pin-bootable)
    • Two Multichannel Buffered Serial Ports (McBSPs)
    • Four Serial Communications Interfaces (SCI/UART) (pin-bootable)
    • Two I2C interfaces (pin-bootable)
  • Analog subsystem
    • Up to four Analog-to-Digital Converters (ADCs)
      • 16-bit mode
        • 1.1MSPS each (up to 4.4MSPS system throughput)
        • Differential inputs
        • Up to 12 external channels
      • 12-bit mode
        • 3.5MSPS each (up to 14MSPS system throughput)
        • Single-ended inputs
        • Up to 24 external channels
      • Single Sample-and-Hold (S/H) on each ADC
      • Hardware-integrated post-processing of ADC conversions
        • Saturating offset calibration
        • Error from setpoint calculation
        • High, low, and zero-crossing compare, with interrupt capability
        • Trigger-to-sample delay capture
    • Eight windowed comparators with 12-bit Digital-to-Analog Converter (DAC) references
    • Three 12-bit buffered DAC outputs
  • Enhanced control peripherals
    • 24 Pulse Width Modulator (PWM) channels with enhanced features
    • 16 High-Resolution Pulse Width Modulator (HRPWM) channels
      • High resolution on both A and B channels of 8 PWM modules
      • Dead-band support (on both standard and high resolution)
    • Six Enhanced Capture (eCAP) modules
    • Three Enhanced Quadrature Encoder Pulse (eQEP) modules
    • Eight Sigma-Delta Filter Module (SDFM) input channels, 2 parallel filters per channel
      • Standard SDFM data filtering
      • Comparator filter for fast action for out of range
  • Supports defense and aerospace applications
    • Controlled baseline
    • One assembly/test site
    • One fabrication site
    • Extended product lifecycle
    • Product traceability
    • Outgassing test performed per ASTM E595
  • Package:
    • 176-pin PowerPAD™ Thermally Enhanced Low-Profile Quad Flatpack (HLQFP) [PTP suffix]
  • Hardware Built-in Self Test (HWBIST)
  • Temperature:
    • –55°C to 150°C junction

C2000™ 32-bit microcontrollers are optimized for processing, sensing, and actuation to improve closed-loop performance in real-time control applications such as industrial motor drives; solar inverters and digital power; electrical vehicles and transportation; motor control; and sensing and signal processing. The C2000 line includes the Premium performance MCUs and the Entry performance MCUs.

The TMS320F2837xD is a powerful 32-bit floating-point microcontroller unit (MCU) designed for advanced closed-loop control applications such as industrial motor drives; solar inverters and digital power; electrical vehicles and transportation; and sensing and signal processing. To accelerate application development, the DigitalPower software development kit (SDK) for C2000 MCUs and the MotorControl software development kit (SDK) for C2000™ MCUs are available. The F2837xD supports a new dual-core C28x architecture that significantly boosts system performance. The integrated analog and control peripherals also let designers consolidate control architectures and eliminate multiprocessor use in high-end systems.

The dual real-time control subsystems are based on TI’s 32-bit C28x floating-point CPUs, which provide 200MHz of signal processing performance in each core. The C28x CPUs are further boosted by the new TMU accelerator, which enables fast execution of algorithms with trigonometric operations common in transforms and torque loop calculations; and the VCU accelerator, which reduces the time for complex math operations common in encoded applications.

The F2837xD microcontroller family features two CLA real-time control coprocessors. The CLA is an independent 32-bit floating-point processor that runs at the same speed as the main CPU. The CLA responds to peripheral triggers and executes code concurrently with the main C28x CPU. This parallel processing capability can effectively double the computational performance of a real-time control system. By using the CLA to service time-critical functions, the main C28x CPU is free to perform other tasks, such as communications and diagnostics. The dual C28x+CLA architecture enables intelligent partitioning between various system tasks. For example, one C28x+CLA core can be used to track speed and position, while the other C28x+CLA core can be used to control torque and current loops.

The TMS320F2837xD supports up to 1MB (512KW) of onboard flash memory with error correction code (ECC) and up to 204KB (102KW) of SRAM. Two 128-bit secure zones are also available on each CPU for code protection.

Performance analog and control peripherals are also integrated on the F2837xD MCU to further enable system consolidation. Four independent 16-bit ADCs provide precise and efficient management of multiple analog signals, which ultimately boosts system throughput. The new sigma-delta filter module (SDFM) works in conjunction with the sigma-delta modulator to enable isolated current shunt measurements. The Comparator Subsystem (CMPSS) with windowed comparators allows for protection of power stages when current limit conditions are exceeded or not met. Other analog and control peripherals include DACs, PWMs, eCAPs, eQEPs, and other peripherals.

Peripherals such as EMIFs, CAN modules (ISO 11898-1/CAN 2.0B-compliant), and a new uPP interface extend the connectivity of the F2837xD. The uPP interface is a new feature of the C2000™ MCUs and supports high-speed parallel connection to FPGAs or other processors with similar uPP interfaces. Lastly, a USB 2.0 port with MAC and PHY lets users easily add universal serial bus (USB) connectivity to their application.

Want to learn more about features that make C2000 MCUs the right choice for your real-time control system? Check out The Essential Guide for Developing With C2000™ Real-Time Microcontrollers and visit the C2000™ real-time control MCUs page.

The Getting Started With C2000™ Real-Time Control Microcontrollers (MCUs) Getting Started Guide covers all aspects of development with C2000 devices from hardware to support resources. In addition to key reference documents, each section provides relevant links and resources to further expand on the information covered.

Ready to get started? Check out the TMDSCNCD28379D or LAUNCHXL-F28379D evaluation board sand download C2000Ware.

To learn more about the C2000 MCUs, visit the C2000 Overview at www.ti.com/c2000.

C2000™ 32-bit microcontrollers are optimized for processing, sensing, and actuation to improve closed-loop performance in real-time control applications such as industrial motor drives; solar inverters and digital power; electrical vehicles and transportation; motor control; and sensing and signal processing. The C2000 line includes the Premium performance MCUs and the Entry performance MCUs.

The TMS320F2837xD is a powerful 32-bit floating-point microcontroller unit (MCU) designed for advanced closed-loop control applications such as industrial motor drives; solar inverters and digital power; electrical vehicles and transportation; and sensing and signal processing. To accelerate application development, the DigitalPower software development kit (SDK) for C2000 MCUs and the MotorControl software development kit (SDK) for C2000™ MCUs are available. The F2837xD supports a new dual-core C28x architecture that significantly boosts system performance. The integrated analog and control peripherals also let designers consolidate control architectures and eliminate multiprocessor use in high-end systems.

The dual real-time control subsystems are based on TI’s 32-bit C28x floating-point CPUs, which provide 200MHz of signal processing performance in each core. The C28x CPUs are further boosted by the new TMU accelerator, which enables fast execution of algorithms with trigonometric operations common in transforms and torque loop calculations; and the VCU accelerator, which reduces the time for complex math operations common in encoded applications.

The F2837xD microcontroller family features two CLA real-time control coprocessors. The CLA is an independent 32-bit floating-point processor that runs at the same speed as the main CPU. The CLA responds to peripheral triggers and executes code concurrently with the main C28x CPU. This parallel processing capability can effectively double the computational performance of a real-time control system. By using the CLA to service time-critical functions, the main C28x CPU is free to perform other tasks, such as communications and diagnostics. The dual C28x+CLA architecture enables intelligent partitioning between various system tasks. For example, one C28x+CLA core can be used to track speed and position, while the other C28x+CLA core can be used to control torque and current loops.

The TMS320F2837xD supports up to 1MB (512KW) of onboard flash memory with error correction code (ECC) and up to 204KB (102KW) of SRAM. Two 128-bit secure zones are also available on each CPU for code protection.

Performance analog and control peripherals are also integrated on the F2837xD MCU to further enable system consolidation. Four independent 16-bit ADCs provide precise and efficient management of multiple analog signals, which ultimately boosts system throughput. The new sigma-delta filter module (SDFM) works in conjunction with the sigma-delta modulator to enable isolated current shunt measurements. The Comparator Subsystem (CMPSS) with windowed comparators allows for protection of power stages when current limit conditions are exceeded or not met. Other analog and control peripherals include DACs, PWMs, eCAPs, eQEPs, and other peripherals.

Peripherals such as EMIFs, CAN modules (ISO 11898-1/CAN 2.0B-compliant), and a new uPP interface extend the connectivity of the F2837xD. The uPP interface is a new feature of the C2000™ MCUs and supports high-speed parallel connection to FPGAs or other processors with similar uPP interfaces. Lastly, a USB 2.0 port with MAC and PHY lets users easily add universal serial bus (USB) connectivity to their application.

Want to learn more about features that make C2000 MCUs the right choice for your real-time control system? Check out The Essential Guide for Developing With C2000™ Real-Time Microcontrollers and visit the C2000™ real-time control MCUs page.

The Getting Started With C2000™ Real-Time Control Microcontrollers (MCUs) Getting Started Guide covers all aspects of development with C2000 devices from hardware to support resources. In addition to key reference documents, each section provides relevant links and resources to further expand on the information covered.

Ready to get started? Check out the TMDSCNCD28379D or LAUNCHXL-F28379D evaluation board sand download C2000Ware.

To learn more about the C2000 MCUs, visit the C2000 Overview at www.ti.com/c2000.

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Technical documentation

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Type Title Date
* Data sheet F28377D-SEP Dual-Core Real-Time Microcontroller datasheet (Rev. A) PDF | HTML 27 Jan 2026
* Errata TMS320F2837xD Dual-Core Real-Time MCUs Silicon Errata (Rev. N) PDF | HTML 15 May 2024
* Radiation & reliability report Single-Event Effects (SEE) Radiation Report of the F28377D-SEP Dual-Core Real-Time Microcontroller PDF | HTML 16 Oct 2025
* Radiation & reliability report F28377D-SEP Total Ionizing Dose (TID) Report 13 Oct 2025
Application note Serial Flash Programming of C2000 Microcontrollers (Rev. I) PDF | HTML 14 Aug 2025
Application note EEPROM Emulation for Generation 3 C2000 Real-Time Controllers (Rev. B) PDF | HTML 13 Aug 2025
Application note MCU Control Center Tool Developer's Guide PDF | HTML 04 Aug 2025
Application note MCU Signal Sight Tool Developer's Guide PDF | HTML 01 Aug 2025
Functional safety information Certification for Functional Safety Hardware Process (Rev. C) 06 Jun 2025
Application note C2000-IDE Assist Tool Migration Feature Guide PDF | HTML 23 Apr 2025
User guide Getting Started with Bootloading on C2000™ Microcontrollers PDF | HTML 08 Apr 2025
Application note Digital Control Implementation for Hybrid Hysteretic Control LLC Converter (Rev. A) PDF | HTML 21 Aug 2024
Application note MCU로의 절연 모듈레이터 디지털 인터페이스를 사용한 클록 에지 지 연 보상 (Rev. A) PDF | HTML 21 Aug 2024
Application note C2000™ MCU JTAG Connectivity Debug (Rev. C) PDF | HTML 12 Aug 2024
Application brief Understanding Security Features for C2000 Real-Time Control MCUs (Rev. E) PDF | HTML 05 Aug 2024
Application note Taktflankenverzögerungskompensation mit isolierten Modulatoren Digitale Schnittstelle zu MCUs (Rev. A) PDF | HTML 16 Jul 2024
Application note Development Tool Versions for C2000™ Support (Rev. A) PDF | HTML 26 Jun 2024
Product overview Implementing IEC 60730 / UL 1998 Compliance for C2000 Real-Time Microcontrollers (Rev. A) PDF | HTML 25 Jun 2024
User guide TMS320F2837xD Dual-Core Microcontrollers Technical Reference Manual (Rev. K) PDF | HTML 28 May 2024
Application note Semiconductor and IC Package Thermal Metrics (Rev. D) PDF | HTML 25 Mar 2024
Application note VREFHI Input Driver Design for C2000 MCUs PDF | HTML 18 Jan 2024
Application note Clock Edge Delay Compensation With Isolated Modulators Digital Interface to MCUs (Rev. A) PDF | HTML 12 Jan 2024
User guide Migration Between TMS320F2837x and TMS320F28P65x PDF | HTML 02 Aug 2023
Application note CRC Engines in C2000 Devices (Rev. A) PDF | HTML 01 May 2023
Application note Migrating Software From 8-Bit (Byte) Addressable CPU’s to C28x CPU (Rev. A) PDF | HTML 19 Apr 2023
Application note ADC Input Circuit Evaluation for C2000 Real-Time MCUs (using PSPICE-FOR-TI) PDF | HTML 24 Mar 2023
Application note Charge-Sharing Driving Circuits for C2000 ADCs (using PSPICE-FOR-TI) (Rev. A) PDF | HTML 24 Mar 2023
Application note Methods for Mitigating ADC Memory Cross-Talk (Rev. A) PDF | HTML 24 Mar 2023
Application note C2000 ePWM Developer’s Guide (Rev. A) PDF | HTML 24 Feb 2023
Application note C2000 SysConfig Linker Command Tool PDF | HTML 26 Jan 2023
Application note Software Examples to Showcase Unique Capabilities of TI’s C2000™ CLA (Rev. A) PDF | HTML 17 Nov 2022
User guide C2000Ware motor control SDK getting started guide (Rev. A) PDF | HTML 27 Oct 2022
Application note C2000™ Hardware Built-In Self-Test (Rev. A) PDF | HTML 28 Sep 2022
Application note Intelligent LLC SR Control Using C2000 and UCD7138 (Rev. A) PDF | HTML 27 Jun 2022
Application note Interfacing EEPROM Using PMBus in I2C Mode PDF | HTML 06 May 2022
Functional safety information Functional Safety Manual for TMS320F2837xD, TMS320F2837xS and TMS320F2807x (Rev. D) PDF | HTML 31 Jan 2022
Application note Real-Time Benchmarks Showcasing C2000™ Control MCU's Optimized Signal Chain (Rev. A) PDF | HTML 15 Dec 2021
Application note Enhancing the Computational Performance of the C2000™ Microcontroller Family (Rev. C) PDF | HTML 14 Dec 2021
E-book Real-Time Control Reference Guide PDF | HTML 29 Oct 2021
Application note C2000 SysConfig PDF | HTML 20 Oct 2021
Application note Programming Examples for the DCAN Module (Rev. A) PDF | HTML 20 May 2021
Application note Leverage New Type ePWM Features for Multiple Phase Control PDF | HTML 11 May 2021
Application note C2000™ DCSM Security Tool (Rev. A) PDF | HTML 10 May 2021
White paper TI GaN FET와 C2000™ 실시간 MCU를 결합하여 전력 밀도가 높고 효율적인 전원 시스템 달성 18 Mar 2021
White paper 結合 TI GaN FETs 與 C2000™ 即時 MCU,實現功率密集與有效率的數位電源系統 18 Mar 2021
White paper Achieve Power-Dense and Efficient Digital Power Systems by Combining TI GaN FETs 05 Jan 2021
More literature Maximize density, power, and reliability with TI GaN and C2000™ real-time MCUs 15 Dec 2020
Application note Quick Response Control of PMSM Using Fast Current Loop (Rev. B) 07 Dec 2020
Application note Flexible PWMs Enable Multi-Axis Drives, Multi-Level Inverters (Rev. B) PDF | HTML 29 Oct 2020
Application note Error Detection in SRAM (Rev. A) PDF | HTML 28 Oct 2020
Application note C2000™ Unique Device Number (Rev. B) PDF | HTML 17 Sep 2020
Functional safety information Streamlining Functional Safety Certification in Automotive and Industrial 09 Jun 2020
White paper 簡化汽車及工業領域的功 能安全認證 09 Jun 2020
White paper 자동차 및 산업 분야의 기능적 안전성 인증 간소화 09 Jun 2020
User guide SYS/BIOS (TI-RTOS Kernel) User's Guide (Rev. V) 01 Jun 2020
User guide C2000Ware DigitalPower SDK Getting Started Guide (Rev. B) 20 Mar 2020
Application note Configurable Error Generator for Controller Area Network PDF | HTML 19 Dec 2019
White paper Simplify the integration of position sensors for industrial drive control system (Rev. A) 21 Nov 2019
User guide TMS320C28x Extended Instruction Sets Technical Reference Manual (Rev. C) 29 Oct 2019
Application note Dual-Axis Motor Control Using FCL and SFRA On a Single C2000™ MCU PDF | HTML 07 Aug 2019
User guide C2000™ Software Frequency Response Analyzer (SFRA) Library User’s Guide (Rev. A) PDF | HTML 26 Jun 2019
User guide Fast Current Loop Driverlib Library User’s Guide 30 May 2019
Functional safety information Report on certificate of the Safety MCU by TUV SUD 07 May 2019
Technical article Motor control software development kit jump-starts new designs PDF | HTML 17 Apr 2019
Application note Updating Firmware on Security Enabled TMS320F2837xx or TMS320F2807x Devices 04 Dec 2018
Functional safety information Functional Safety: A tunable FMEDA for C2000™ MCUs 27 Jul 2018
Application note PowerPAD™ Thermally Enhanced Package (Rev. H) 06 Jul 2018
Application note Design and Usage Guidelines for the C2000 External Memory Interface (EMIF) (Rev. A) 23 Mar 2018
Application note Dual Motor Ctl Using FCL and Perf Analysis Using SFRA on TMS320F28379D LaunchPad (Rev. A) 20 Mar 2018
User guide Fast Current Loop (C28x) Library 06 Mar 2018
Application note Performance Analysis of Fast Current Loop (FCL) in Servo 06 Mar 2018
Application note Programming TMS320x28xx and 28xxx Peripherals in C/C++ (Rev. E) PDF | HTML 19 Dec 2017
Application note C2000 CPU Memory Built-In Self-Test 27 Nov 2017
Application note Fast Current Loop Library 08 May 2017
Application note High Bandwidth Current Control of 3-Phase PMSM Using F2837x FCL Library 08 May 2017
Application note Built-In System Protection for Industrial Drives 11 May 2016
Application note High-Performance, High-Precision, Smart Sensing for Industrial Drives 11 May 2016
Application note Calculator for CAN Bit Timing Parameters PDF | HTML 22 Mar 2016
Application note The TMS320F2837xD Architecture: Achieving a New Level of High Performance 11 Feb 2016
User guide TMS320C28x DSP CPU and Instruction Set (Rev. F) 10 Apr 2015
Application note Accessing External SDRAM on the TMS320F2837x/2807x Microcontrollers Using C/C++ 30 Mar 2015
Application note Calculating FIT for a Mission Profile 24 Mar 2015
White paper Resolver-to-digital conversion implementation (Rev. A) 26 Mar 2014
Application note Running an Application from Internal Flash Memory on the TMS320F28xxx DSP (Rev. L) 28 Feb 2013
Application note TMS320C28x FPU Primer (Rev. A) 20 Jul 2009

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

TIEVM-VIENNARECT — Vienna rectifier-based three-phase power factor correction evaluation module using C2000™ MCUs

The Vienna rectifier power topology is used in high power three phase power factor (AC-DC) applications such as off-board electric vehicle (EV) chargers and telecom rectifiers. This design illustrates how to control the power stage using C2000™ MCUs. This design uses an HSEC180 controlCARD (...)
Not available on TI.com
Evaluation board

XDS110ISO-EVM — XDS110 isolated plug-in evaluation module for C2000 and Sitara™ controlSOMs

The XDS110 isolated plug-in board is a real-time debug and flash programming evaluation module for C2000 and Sitara controlSOMs. It can connect to C2000 and Sitara controlSOMs through a non-isolated 120-pin connector or through an electrically isolated 16-pin connector. Both connectors feature (...)
User guide: PDF | HTML
Not available on TI.com
Evaluation board

ALGO-3P-UISP1-TI — Algocraft μISP1 Programmer for Texas Instruments devices

μISP can either work connected to a host PC (RS-232, USB, LAN connections are built-in) or in standalone mode.

The programming cycle execution in standalone mode may occur by simply pressing the START button or through some TTL control lines.

Its compact size and versatility allows a simple (...)

From: Algocraft
Daughter card

BOOSTXL-3PHGANINV — 48-V Three-Phase Inverter With Shunt-Based In-Line Motor Phase Current Sensing Evaluation Module

The BOOSTXL-3PHGANINV evaluation module features a 48-V/10-A three-phase GaN inverter with precision in-line shunt-based phase current sensing for accurate control of precision drives such as servo drives.
 

MathWorks MATLAB & Simulink example models include the following:

User guide: PDF
Not available on TI.com
Daughter card

BOOSTXL-POSMGR — C2000 DesignDRIVE position manager BoosterPack™ plug-in module

The PositionManager BoosterPack is a flexible low voltage platform intended for evaluating interfaces to absolute encoders and analog sensors like resolvers and SinCos transducers.  When combined with the DesignDRIVE Position Manager software solutions this low-cost evaluation module becomes (...)
User guide: PDF
Not available on TI.com
Daughter card

TMDSCNCD28379D — F28379D development kit for C2000™ Delfino MCU controlCARD™

TMDSCNCD28379D is an HSEC180 controlCARD based evaluation and development tool for the F2837xD,  F2837xS, and F2807x series in the TI MCU. controlCARDs are ideal to use for initial evaluation and system prototyping. controlCARDs are complete board-level modules that utilize one of two standard (...)

User guide: PDF | HTML
Not available on TI.com
Daughter card

TMDSHSECDOCK — HSEC180 controlCARD baseboard docking station

TMDSHSECDOCK is a baseboard that provides header-pin access to key signals on compatible HSEC180-based controlCARDs. A breadboard area is available for rapid prototyping. Board power can be provided by USB cable or a 5-V barrel supply.

User guide: PDF | HTML
Not available on TI.com
Debug probe

TMDSEMU110-U — XDS110 JTAG Debug Probe

The Texas Instruments XDS110 is a new class of debug probe (emulator) for TI embedded processors. The XDS110 replaces the XDS100 family while supporting a wider variety of standards (IEEE1149.1, IEEE1149.7, SWD) in a single pod. Also, all XDS debug probes support Core and System Trace in all (...)

User guide: PDF
Not available on TI.com
Debug probe

TMDSEMU200-U — XDS200 USB Debug Probe

The XDS200 is a debug probe (emulator) used for debugging TI embedded devices. For the majority of devices it is recommended to use the newer, lower cost XDS110 (www.ti.com/tool/TMDSEMU110-U). The XDS200 supports a wide variety of standards (IEEE1149.1, IEEE1149.7, SWD) in a single pod. All XDS (...)

Not available on TI.com
Debug probe

TMDSEMU560V2STM-U — XDS560™ software v2 system trace USB debug probe

The XDS560v2 is the highest performance of the XDS560™ family of debug probes and supports both the traditional JTAG standard (IEEE1149.1) and cJTAG (IEEE1149.7).  Note that it does not support serial wire debug (SWD).

All XDS debug probes support Core and System Trace in all ARM and DSP processors (...)

Not available on TI.com
Debug probe

TMDSEMU560V2STM-UE — XDS560v2 System Trace USB & Ethernet Debug Probe

The XDS560v2 is the highest performance of the XDS560™ family of debug probes and supports both the traditional JTAG standard (IEEE1149.1) and cJTAG (IEEE1149.7). Note that it does not support serial wire debug (SWD).

All XDS debug probes support Core and System Trace in all ARM and DSP processors (...)

Not available on TI.com
Development kit

LAUNCHXL-F28379D — F28379D LaunchPad™ development kit for C2000™ Delfino™ MCU

LAUNCHXL-F28379D is a low-cost evaluation and development tool for the TMS320F2837xDTMS320F2837xS, and TMS320F2807x products in the TI MCU LaunchPad™ development kit ecosystem which is compatible with various plug-on BoosterPacks (suggested under the recommended BoosterPack™ Plug-in (...)

User guide: PDF
Not available on TI.com
Development kit

TIEVM-HV-1PH-DCAC — Single phase inverter development kit with voltage source and grid connected modes

This reference design implements single phase inverter (DC-AC) control using the C2000™ F2837xD and F28004x microcontrollers. Design supports two modes of operation for the inverter. First is voltage source mode using an output LC filter, this control mode is typically used in Uninterrupted (...)
Not available on TI.com
Development kit

TMDSDOCK28379D — F28379D Delfino Experimenter Kit

TMDSDOCK28379D is a HSEC180 controlCARD based evaluation and development tool for the C2000™ Delfino™ F2837x and Piccolo F2807x series of microcontroller products. The Docking Station provides power to the controlCARD and has a bread-board area for prototyping. Access to the key device (...)

User guide: PDF | HTML
Not available on TI.com
Development kit

TMDXIDDK379D — C2000 DesignDRIVE Development Kit for Industrial Motor Control

The DesignDRIVE Development Kit (IDDK) hardware offers an integrated servo drive design with full power stage to drive a high voltage three-phase motor and eases the evaluation of a range of position feedback, current sensing and control topologies.

The sensing peripherals on the C2000™ MCU, (...)
User guide: PDF | HTML
Not available on TI.com
Hardware programming tool

ALGO-3P-WRITENOW — Algocraft WriteNow! Programmer

WriteNow! Series of In-System Programmers is a breakthrough in the programming industry. The programmers support a large number of devices (microcontrollers, memories, CPLDs and other programmable devices) from various manufacturers and have a compact size for easy ATE/fixture integration. They (...)

From: Algocraft
IDE, configuration, compiler or debugger

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.

(...)

Supported products & hardware

Supported products & hardware

This design resource supports most products in these categories.

Check the product details page to verify support.

Launch Download options
IDE, configuration, compiler or debugger

SYSCONFIG Standalone desktop version of SysConfig

SysConfig is a configuration tool designed to simplify hardware and software configuration challenges to accelerate software development.

SysConfig is available as part of the Code Composer Studio™ integrated development environment as well as a standalone application. Additionally SysConfig (...)

Supported products & hardware

Supported products & hardware

Products
Automotive mmWave radar sensors
  • AWR1443 Single-chip 76-GHz to 81-GHz automotive radar sensor integrating MCU and hardware accelerator
  • AWR1642 Single-chip 76-GHz to 81-GHz automotive radar sensor integrating DSP and MCU
  • AWR1843 Single-chip 76-GHz to 81-GHz automotive radar sensor integrating DSP, MCU and radar accelerator
  • AWR1843AOP Single-chip 76-GHz to 81-GHz automotive radar sensor integrating antenna on package, DSP and MCU
  • AWR2544 76-81GHz FMCW satellite Radar-on-Chip sensor
  • AWR2944 Automotive, second-generation 76-GHz to 81-GHz high-performance SoC for corner and long-range radar
  • AWR2944P Automotive 76-GHz to 81-GHz single chip radar with enhanced RF and compute performance
  • AWR6843 Single-chip 60-GHz to 64-GHz automotive radar sensor integrating DSP, MCU and radar accelerator
  • AWR6843AOP Single-chip 60-GHz to 64-GHz automotive radar sensor integrating antenna on package, DSP and MCU
C2000 real-time microcontrollers
  • F28377D-SEP Radiation-tolerant 32-bit MCU with 800MIPs and dual C28 and CLA cores with 1MB flash
  • F28E120SB C2000™ 32-bit MCU with 160 MHz, 64KB flash, FPU, PGA
  • F28E120SC C2000™ 32-bit MCU with 160 MHz, 128-KB flash, FPU, PGA
  • TMS320F280021 C2000™ 32-bit MCU with 100 MHz, FPU, TMU, 32-KB flash
  • TMS320F280021-Q1 Automotive C2000™ 32-bit MCU with 100 MHz, FPU, TMU, 32-KB flash
  • TMS320F280023 C2000™ 32-bit MCU with 100-MHz, FPU, TMU, 64-kb flash
  • TMS320F280023-Q1 Automotive C2000™ 32-bit MCU with 100 MHz, FPU, TMU, 64-KB flash
  • TMS320F280023C C2000™ 32-bit MCU with 100 MHz, FPU, TMU, 64-KB flash, CLB
  • TMS320F280025 C2000™ 32-bit MCU with 100-MHz, FPU, TMU, 128-kb flash
  • TMS320F280025-Q1 Automotive C2000™ 32-bit MCU with 100 MHz, FPU, TMU, 128-KB flash
  • TMS320F280025C C2000™ 32-bit MCU with 100-MHz, FPU, TMU, 128-kb flash, CLB
  • TMS320F280025C-Q1 Automotive C2000™ 32-bit MCU with 100 MHz, FPU, TMU, 128-KB flash, CLB
  • TMS320F28P550SG C2000™ 32-bit MCU with 150MHz 512KB flash C28x + CLA, five ADCs, CLB, AES and NPU
  • TMS320F28P550SJ C2000™ 32-bit MCU with 150MHz 1.1MB flash C28x + CLA, five ADCs, CLB, AES and NPU
  • TMS320F28P559SG-Q1 Automotive 32-bit C2000™ MCU with 150MHz 512 KB flash C28x + CLA, five ADCs, CLB, AES and NPU
  • TMS320F28P559SJ-Q1 Automotive C2000™ 32-bit MCU with 150MHz 1.1MB flash C28x + CLA, five ADCs, CLB, AES and NPU
  • TMS320F28P650DH C2000 32-bit MCU, 600 MIPS, 2xC28x + 1xCLA CPU, FPU64, 768kB flash, 16-b ADC
  • TMS320F28P650DK C2000™ 32-bit MCU, 2x C28x+CLA CPU, Lock Step, 1.28-MB flash, 16-b ADC, HRPWM, EtherCAT, CAN-FD, AES
  • TMS320F28P650SH C2000 32-bit MCU, 400 MIPS, 1xC28x + 1xCLA CPU, FPU64, 768kB flash, 16-b ADC
  • TMS320F28P650SK C2000 32-bit MCU, 400 MIPS, 1xC28x + 1xCLA CPU, FPU64, 1.28-MB flash, 16-b ADC, Ethercat
  • TMS320F28P659DH-Q1 Automotive C2000 32-bit MCU, 600 MIPS, 2xC28x + 1xCLA + Lockstep, FPU64, 768kB flash, 16-b ADC
  • TMS320F28P659DK-Q1 C2000™ 32-bit MCU, 2x C28x+CLA CPU, Lock Step, 1.28-MB flash, 16-b ADC, HRPWM, CAN-FD, AES
  • TMS320F28P659SH-Q1 Automotive C2000 32-bit MCU, 400 MIPS, 1xC28x + 1xCLA , FPU64, 768kB flash, 16-b ADC
Wi-Fi products
  • CC3551E SimpleLink™ wireless MCU with dual-band (2.4GHz and 5GHz) Wi-Fi® 6 and Bluetooth® Low Energy
Industrial mmWave radar sensors
  • IWR1443 Single-chip 76-GHz to 81-GHz mmWave sensor integrating MCU and hardware accelerator
  • IWR1642 Single-chip 76-GHz to 81-GHz mmWave sensor integrating DSP and MCU
Arm Cortex-M4 MCUs
  • MSPM33C321A 160MHz Arm® Cortex®-M33 MCU with TrustZone®, 1MB flash, 256kB SRAM, QSPI, 2x CAN-FD and security
  • TM4C1230C3PM High performance 32-bit ARM® Cortex®-M4F based MCU
  • TM4C1230D5PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 24-kb RAM, CAN, 64-pin LQFP
  • TM4C1230E6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, CAN, 64-pin LQFP
  • TM4C1230H6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, 64-pin LQFP
  • TM4C1231C3PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 32-kb Flash, 12-kb RAM, CAN, RTC, 64-pin LQFP
  • TM4C1231D5PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 24-kb RAM, CAN, RTC, 64-pin LQFP
  • TM4C1231D5PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 24-kb RAM, CAN, RTC, 100-pin LQFP
  • TM4C1231E6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 24-kb RAM, CAN, RTC, 64-pin LQFP
  • TM4C1231E6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, CAN, RTC, 100-pin LQFP
  • TM4C1231H6PGE 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, 144-pin LQFP
  • TM4C1231H6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, 64-pin LQFP
  • TM4C1231H6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, 100-pin LQFP
  • TM4C1232C3PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 32-kb Flash, 32-kb RAM, CAN, USB-D, 64-pin LQFP
  • TM4C1232D5PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 12-kb RAM, CAN, USB-D, 64-pin LQFP
  • TM4C1232E6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 24-kb RAM, CAN, USB-D, 64-pin LQFP
  • TM4C1232H6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, USB-D, 64-pin LQFP
  • TM4C1233C3PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 32-kb Flash, 32-kb RAM, CAN, RTC, USB-D, 64-pin LQFP
  • TM4C1233D5PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 12-kb RAM, CAN, RTC, USB-D, 64-pin LQFP
  • TM4C1233D5PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 24-kb RAM, CAN, RTC, USB-D, 100-pin LQFP
  • TM4C1233E6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 24-kb RAM, CAN, RTC, USB-D, 64-pin LQFP
  • TM4C1233E6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, CAN, RTC, USB-D, 100-pin LQFP
  • TM4C1233H6PGE 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, USB-D, 144-pin LQFP
  • TM4C1233H6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, USB-D, 64-pin LQFP
  • TM4C1233H6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, USB-D, 100-pin LQFP
  • TM4C1236D5PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 32-kb RAM, CAN, USB, 64-pin LQFP
  • TM4C1236E6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 24-kb RAM, CAN, USB, 64-pin LQFP
  • TM4C1236H6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, USB, 64-pin LQFP
  • TM4C1237D5PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 32-kb RAM, CAN, RTC, USB, 64-pin LQFP
  • TM4C1237D5PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 64-kb Flash, 24-kb RAM, CAN, RTC, USB, 100-pin LQFP
  • TM4C1237E6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 24-kb RAM, CAN, RTC, USB, 64-pin LQFP
  • TM4C1237E6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, CAN, RTC, USB, 100-pin LQFP
  • TM4C1237H6PGE 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, USB, 144-pin LQFP
  • TM4C1237H6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, USB, 64-pin LQFP
  • TM4C1237H6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, CAN, RTC, USB, 100-pin LQFP
  • TM4C123AE6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, 2x CAN, 64-pin LQFP
  • TM4C123AH6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, 64-pin LQFP
  • TM4C123BE6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, 2x CAN, RTC, 64-pin LQFP
  • TM4C123BE6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, 2x CAN, RTC, 100-pin LQFP
  • TM4C123BH6NMR 32-bit Arm® Cortex®-M4F-based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, USB<
  • TM4C123BH6PGE 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, 144-pin LQFP
  • TM4C123BH6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, 64-pin LQFP
  • TM4C123BH6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, 100-pin LQFP
  • TM4C123BH6ZRB 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, 157-pin BGA
  • TM4C123FE6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, 2x CAN, USB, 64-pin LQFP
  • TM4C123FH6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, USB, 64-pin LQFP
  • TM4C123GE6PM 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, 2x CAN, RTC, USB, 64-pin LQFP
  • TM4C123GE6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 128-kb Flash, 32-kb RAM, 2x CAN, RTC, USB, 100-pin LQFP
  • TM4C123GH6NMR 32-bit Arm® Cortex®-M4F-based MCU with 80-MHz, 256-kb flash, 32-kb RAM, 2x CAN, RTC, USB
  • TM4C123GH6PGE 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, USB, 144-pin LQFP
  • TM4C123GH6PM 32-bit Arm Cortex-M4F based MCU with 80 -MHz, 256 -KB Flash, 32 -KB RAM, 2 CAN, RTC, USB, 64-Pin
  • TM4C123GH6PZ 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, USB, 100-pin LQFP
  • TM4C123GH6ZRB 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, USB, 157-pin BGA
  • TM4C123GH6ZXR 32-bit Arm Cortex-M4F based MCU with 80-MHz, 256-kb Flash, 32-kb RAM, 2x CAN, RTC, USB, 168-pin BGA
  • TM4C1290NCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB
  • TM4C1290NCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB
  • TM4C1292NCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+MII
  • TM4C1292NCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+MII
  • TM4C1294KCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHz, 512-kb Flash, 256-kb RAM, USB, ENET MAC+PHY
  • TM4C1294NCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHZ, 1-MB flash, 256-KB RAM, USB, ENET MAC+PHY
  • TM4C1294NCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+PHY
  • TM4C1297NCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, LCD
  • TM4C1299KCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 512-kb Flash, 256-kb RAM, USB, ENET MAC+PHY, LCD
  • TM4C1299NCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+PHY, LCD
  • TM4C129CNCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, AES
  • TM4C129CNCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, AES
  • TM4C129DNCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+MII, AES
  • TM4C129DNCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+MII, AES
  • TM4C129EKCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHz, 512-kb Flash, 256-kb RAM, USB, ENET MAC+PHY, AES
  • TM4C129ENCPDT 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+PHY, AES
  • TM4C129ENCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+PHY, AES
  • TM4C129LNCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB, ENET MAC+PHY, LCD, AES
  • TM4C129XKCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 512-kb Flash, 256-kb RAM, USB, ENET MAC+PHY, LCD, AES
  • TM4C129XNCZAD 32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-KB RAM, USB, ENET MAC+PHY, LCD, AES
Arm Cortex-M0+ MCUs
  • MSPM0C1103 24MHz Arm® Cortex®-M0+ MCU with 8KB flash, 1KB SRAM, 12-bit ADC
  • MSPM0C1103-Q1 Automotive 24MHz Arm® Cortex®-M0+ MCU with 8KB flash, 1KB SRAM, 12-bit ADC, LIN
  • MSPM0C1104 24MHz Arm® Cortex®-M0+ MCU with 16KB flash, 1KB SRAM, 12-bit ADC
  • MSPM0C1104-Q1 Automotive 24MHz Arm® Cortex®-M0+ MCU with 16KB flash, 1KB SRAM, 12-bit ADC, LIN
  • MSPM0C1105 32MHz Arm® Cortex®-M0+ MCU with 32KB flash, 8KB SRAM, 12-bit ADC, comparator, advanced timer
  • MSPM0C1106 32MHz Arm® Cortex®-M0+ MCU with 64KB flash, 8KB SRAM, 12-bit ADC, comparator, advanced timer
  • MSPM0C1106-Q1 Automotive 32MHz Arm® Cortex®-M0+ MCU with 64KB flash, 8KB SRAM, 12-bit ADC, comparator, LIN
  • MSPM0G1105 80MHz Arm® Cortex®-M0+ MCU with 32KB flash 16KB SRAM 2×12bit 4Msps ADC, op-amp
  • MSPM0G1106 80MHz Arm® Cortex®-M0+ MCU with 64KB flash 32KB SRAM 2x12-bit 4Msps ADC, op-amp
  • MSPM0G1107 80MHz Arm® Cortex®-M0+ MCU with 128KB flash 32KB SRAM 2x12-bit 4Msps ADC, op-amp
  • MSPM0G1505 80MHz Arm® Cortex®-M0+ MCU with 32KB flash 16KB SRAM 2x4Msps ADC, 12-bit DAC, 3xCOMP, 2xOPA, MATHACL
  • MSPM0G1506 80MHz Arm® Cortex®-M0+ MCU with 64KB flash 32KB SRAM 2x4Msps ADC, 12-bit DAC, 3xCOMP, 2xOPA, MATHACL
  • MSPM0G1507 80MHz Arm® Cortex®-M0+ MCU with 128KB flash 32KB SRAM 2x4Msps ADC, 12-bit DAC, 3xCOMP, 2xOPA, MATHAC
  • MSPM0G1518 80 MHz ARM® Cortex®-M0+ MCU with dual-bank 256kB flash, 128kB SRAM, 2xADC, DAC, 3xCOMP
  • MSPM0G1519 80 MHz ARM® Cortex®-M0+ MCU with dual-bank 512kB flash, 128kB SRAM, 2xADC, DAC, 3xCOMP
  • MSPM0G3105 80MHz Arm® Cortex®-M0+ MCU with 32KB flash 16KB SRAM 2x12-bit 4Msps ADC, op-amp, CAN-FD
  • MSPM0G3105-Q1 Automotive 80MHz Arm® Cortex®-M0+ MCU with 32KB flash 16KB SRAM 2×12bit 4Msps ADC, op-amp, CAN-FD
  • MSPM0G3106 80MHz Arm® Cortex®-M0+ MCU with 64KB flash 32KB SRAM 2x12-bit 4Msps ADC, op-amp, CAN-FD
  • MSPM0G3106-Q1 Automotive 80MHz Arm® Cortex®-M0+ MCU with 64KB flash 32KB SRAM 2×12bit 4Msps ADC, op-amp, CAN-FD
  • MSPM0G3107 80MHz Arm® Cortex®-M0+ MCU with 128KB flash 32KB SRAM 2x12-bit 4Msps ADC, op-amp, CAN-FD
  • MSPM0G3107-Q1 Automotive 80MHz Arm® Cortex®-M0+ MCU with 128KB flash 32KB SRAM 2×12bit 4Msps ADC, op-amp, CAN-FD
  • MSPM0G3505 80MHz Arm® Cortex®-M0+ MCU with 32KB flash 16KB SRAM 2x4Msps ADC, DAC, 3xCOMP, 2xOPA, CAN-FD, MAT
  • MSPM0G3505-Q1 Automotive 80MHz Arm® Cortex®-M0+ MCU with 32KB flash 16KB SRAM ADC, DAC, COMP, OPA, CAN-FD, MATHACL
  • MSPM0G3506 80MHz Arm® Cortex®-M0+ MCU with 64KB flash 32KB SRAM 2x4Msps ADC, DAC, 3xCOMP, 2xOPA, CAN-FD, MATHAC
  • MSPM0G3506-Q1 Automotive 80MHz Arm® Cortex®-M0+ MCU with 64KB flash 32KB SRAM ADC, DAC, COMP, OPA, CAN-FD, MATHACL
  • MSPM0G3507 80MHz Arm® Cortex®-M0+ MCU with 128KB flash 32KB SRAM 2x4Msps ADC, DAC, 3xCOMP, 2xOPA, CAN-FD, MATHA
  • MSPM0G3507-Q1 Automotive 80MHz Arm® Cortex®-M0+ MCU with 128KB flash 32KB SRAM ADC, DAC, COMP, OPA, CAN-FD, MATHAC
  • MSPM0G3518 80MHz ARM® Cortex®-M0+ MCU with dual-bank 256kB flash, 128kB SRAM, 2xCAN-FD, 2xADC, DAC, COMP
  • MSPM0G3518-Q1 Automotive 80MHz ARM® Cortex®-M0+ MCU with 256kB flash, 128kB SRAM, 2 CAN, 2 ADC, DAC, COMP
  • MSPM0G3519 80 MHz ARM® Cortex®-M0+ MCU with dual-bank 512kB flash, 128kB SRAM, 2xCAN-FD, 2xADC, DAC, COMP
  • MSPM0G3519-Q1 Automotive 80MHz ARM® Cortex®-M0+ MCU with 512kB flash, 128kB SRAM, 2 CAN, 2 ADC, DAC, COMP
  • MSPM0G3529-Q1 Automotive 80MHz ARM® Cortex®-M0+ MCU with 512kB Flash, 128kB SRAM, two CAN-FDs, two ADCs, DAC an
  • MSPM0G5187 80MHz Arm® Cortex®-M0+ MCU with 128kB flash, 32kB SRAM, USB 2.0 FS, I2S, ADC, and edge AI NPU
  • MSPM0H3216 32MHz Arm® Cortex®-M0+ MCU with 5V supply, 64KB flash, 8KB SRAM and 12-bit ADC
  • MSPM0H3216-Q1 Automotive 32MHz Arm® Cortex®-M0+ MCU with 5V supply, 64KB flash, 8KB SRAM, 12-bit ADC and LIN
  • MSPM0L1105 32-MHz Arm® Cortex®-M0+ MCU with 32-KB flash, 4-KB SRAM, 12-bit ADC
  • MSPM0L1106 32-MHz Arm® Cortex®-M0+ MCU with 64-KB flash, 4-KB SRAM, 12-bit ADC
  • MSPM0L1116 32MHz Arm® Cortex®-M0+ MCU with 64KB dual-bank flash, 16KB SRAM, 12-bit 1.68Msps ADC
  • MSPM0L1117 32MHz Arm® Cortex®-M0+ MCU with 128KB dual-bank flash, 16KB SRAM, 12-bit 1.68Msps ADC
  • MSPM0L1227 32MHz Arm® Cortex®-M0+ MCU with 128KB dual-bank flash, 32KB SRAM, 12-bit ADC, COMP, VBAT, PSA-L1
  • MSPM0L1227-Q1 Automotive 32MHz Arm® Cortex®-M0+ MCU with 128KB dual-bank flash, 32KB SRAM, ADC, COMP, LCD, VBAT
  • MSPM0L1228 32MHz Arm® Cortex®-M0+ MCU with 256KB dual-bank flash, 32KB SRAM, 12-bit ADC, COMP, VBAT, PSA-L1
  • MSPM0L1228-Q1 Automotive 32MHz Arm® Cortex®-M0+ MCU with 256KB dual-bank flash, 32KB SRAM, ADC, COMP, LCD, VBAT
  • MSPM0L1303 32-MHz Arm® Cortex®-M0+ MCU with 8-KB flash, 2-KB SRAM, 12-bit ADC, comparator, OPA
  • MSPM0L1304 32-MHz Arm® Cortex®-M0+ MCU with 16-KB flash, 2-KB SRAM, 12-bit ADC, comparator, OPA
  • MSPM0L1304-Q1 Automotive 32-Mhz Arm® Cortex®-M0+ with 16-KB flash, 2-KB RAM, 12-bit ADC,OPA, LIN
  • MSPM0L1305 32-MHz Arm® Cortex®-M0+ MCU with 32-KB flash, 4-KB SRAM, 12-bit ADC, comparator, OPA
  • MSPM0L1305-Q1 Automotive 32-Mhz Arm® Cortex®-M0+ with 32-KB flash, 4-KB RAM, 12-bit ADC, OPA, LIN
  • MSPM0L1306 32-MHz Arm® Cortex®-M0+ MCU with 64-KB flash, 4-KB SRAM, 12-bit ADC, comparator, OPA
  • MSPM0L1306-Q1 Automotive 32-Mhz Arm® Cortex®-M0+ with 64-KB flash, 4-KB RAM, 12-bit ADC, OPA,LIN
  • MSPM0L1343 32-MHz Arm® Cortex®-M0+ MCU with 8-KB flash, 2-KB SRAM, 12-bit ADC, comparator, TIA
  • MSPM0L1344 32-MHz Arm® Cortex®-M0+ MCU with 16-KB flash, 2-KB SRAM, 12-bit ADC, comparator, TIA
  • MSPM0L1345 32-MHz Arm® Cortex®-M0+ MCU with 32-KB flash, 4-KB SRAM, 12-bit ADC, comparator, TIA
  • MSPM0L1346 32-MHz Arm® Cortex®-M0+ MCU with 64-KB flash, 4-KB SRAM, 12-bit ADC, comparator, TIA
  • MSPM0L2116 32MHz Arm® Cortex®-M0+ MCU with 64KB flash, 12KB SRAM, 12-bit ADC, COMP and LCD
  • MSPM0L2117 32MHz Arm® Cortex®-M0+ MCU with 128KB flash, 12KB SRAM, 12-bit ADC, COMP and LCD
  • MSPM0L2227 32MHz Arm® Cortex®-M0+ MCU with 128KB dual-bank flash, 32KB SRAM, 12-bit ADC, COMP, LCD, VBAT
  • MSPM0L2227-Q1 Automotive 32MHz Arm® Cortex®-M0+ MCU with 128KB dual-bank flash, 32KB SRAM, ADC, COMP, LCD, VBAT
  • MSPM0L2228 32MHz Arm® Cortex®-M0+ MCU with 256KB dual-bank flash, 32KB SRAM, 12-bit ADC, COMP, LCD, VBAT
  • MSPM0L2228-Q1 Automotive 32MHz Arm® Cortex®-M0+ MCU with 256KB dual-bank flash, 32KB SRAM, ADC, COMP, LCD, VBAT
Arm Cortex-R MCUs
  • AM2612 500MHz dual-core Arm® Cortex®-R5F-based MCU with real-time control, safety and security
  • AM2612-Q1 Up to 400MHz dual-core Arm® Cortex®-R5F-based MCU with real-time control, safety and security
  • AM2631 Single-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and security
  • AM2631-Q1 Automotive single-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and security
  • AM2632 Dual-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and security
  • AM2632-Q1 Automotive dual-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and security
  • AM2634 Quad-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and security
  • AM2634-Q1 Automotive 400MHz quad-core Arm® Cortex®-R5F MCU with real-time control and security
  • AM263P2 Dual-core Arm®Cortex®-R5F MCU up to 400 MHz with opTI-flash and real-time control
  • AM263P2-Q1 Automotive dual-core Arm® Cortex®-R5F MCU up to 400MHz with real-time control and expandable memo
  • AM263P4 Quad-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and expandable memory
  • AM263P4-Q1 Automotive 400MHz quad-core Arm® Cortex®-R5F MCU with real-time control and flash-in-package
Sub-1 GHz wireless MCUs
  • CC1310 SimpleLink™ 32-bit Arm Cortex-M3 Sub-1 GHz wireless MCU with 128kB Flash
  • CC1311P3 SimpleLink™ Arm® Cortex®-M4 Sub-1GHz wireless MCU with 352KB flash and integrated +20dBm power amp
  • CC1311R3 SimpleLink™ Arm® Cortex®-M4 Sub-1 GHz wireless MCU with 352-kB flash
  • CC1312PSIP Sub-1 GHz system-in-package (SiP) module with integrated power amplifier
  • CC1312R SimpleLink™ 32-bit Arm Cortex-M4F Sub-1 GHz wireless MCU with 352kB Flash
  • CC1312R7 SimpleLink™ Arm® Cortex®-M4F multiprotocol Sub-1 GHz wireless MCU with 704-kB Flash
  • CC1314R10 SimpleLink™ Arm® Cortex®-M33 Sub-1 GHz wireless MCU with 1-MB flash and up to 296 kB of SRAM
  • CC1350 SimpleLink™ 32-bit Arm Cortex-M3 multiprotocol Sub-1 GHz & 2.4 GHz wireless MCU with 128kB Flash
  • CC1352P SimpleLink™ Arm Cortex-M4F multiprotocol Sub-1 GHz & 2.4 GHz wireless MCU integrated power amplifier
  • CC1352P7 SimpleLink™ Arm® Cortex®-M4F multiband sub-1GHz & 2.4GHz wireless MCU with EdgeAI support, +20dBm
  • CC1352R SimpleLink™ Arm Cortex-M4F multiband Sub-1GHz & 2.4GHz wireless MCU with edge AI support
  • CC1354P10 SimpleLink™ Arm® Cortex®-M33 multiband wireless MCU with EdgeAI support, 1MB + 296KB, +20dBm
  • CC1354R10 SimpleLink™ Arm® Cortex®-M33 multiband wireless MCU with edge AI support, 1MB flash, 296KB SRAM
Automotive wireless connectivity products
  • CC2340R5-Q1 Automotive-qualified SimpleLink™ Bluetooth® Low Energy wireless MCU with 512-kB flash
  • CC2640R2F-Q1 SimpleLink™ automotive qualified 32-bit Arm Cortex-M3 Bluetooth® Low Energy wireless MCU
  • CC2745P10-Q1 Automotive SimpleLink™ Bluetooth® LE wireless MCU with 1MB flash, HSM, APU, CAN-FD, +20dBm
  • CC2745R10-Q1 Automotive SimpleLink™ Bluetooth® LE wireless MCU with 1MB flash, HSM, APU, CAN-FD
  • CC2745R7-Q1 Automotive SimpleLink™ Bluetooth® LE wireless MCU with 864kB flash, HSM, APU, CAN-FD
Low-power 2.4-GHz products
  • CC2340R2 SimpleLink™ 32bit Arm® Cortex®-M0+ 2.4GHz wireless MCU with 256kB flash
  • CC2340R5 SimpleLink™ 32bit Arm® Cortex®-M0+ 2.4GHz wireless MCU with 512kB flash
  • CC2640R2F SimpleLink™ 32bit Arm® Cortex®-M3 Bluetooth® Low Energy 5.1 wireless MCU with 128kB flash
  • CC2640R2L SimpleLink™ Bluetooth® 5.1 Low Energy wireless MCU
  • CC2652P SimpleLink™ Arm Cortex-M4F multiprotocol 2.4 GHz wireless MCU with integrated power amplifier
  • CC2652P7 SimpleLink™ Arm® Cortex®-M4F multiprotocol 2.4-GHz wireless MCU, 704-kB Flash, integrated power amp
  • CC2652PSIP SimpleLink™ multiprotocol 2.4-GHz wireless system-in-package module with integrated power amplifier
  • CC2652R SimpleLink™ 32-bit Arm Cortex-M4F multiprotocol 2.4 GHz wireless MCU with 352kB Flash
  • CC2652R7 SimpleLink™ Arm® Cortex®-M4F multiprotocol 2.4-GHz wireless MCU with 704-kB Flash
  • CC2652RB SimpleLink™ 32-bit Arm Cortex-M4F multiprotocol 2.4 GHz wireless MCU with crystal-less BAW resonator
  • CC2652RSIP SimpleLink™ multiprotocol 2.4-GHz wireless system-in-package module with 352-KB memory
  • CC2674P10 SimpleLink™ Arm® Cortex®-M33 multiprotocol 2.4GHz wireless MCU with 1MB flash and power amplifier
  • CC2674R10 SimpleLink™ Arm® Cortex®-M33 multiprotocol 2.4-GHz wireless MCU with 1-MB flash
  • CC2755P10 SimpleLink™ Arm® Cortex®-M33 wireless MCU with EdgeAI support, security, up to +20dBm, <1µA standby
  • CC2755R10 SimpleLink™ Arm® Cortex®-M33 wireless MCU with EdgeAI support, security, <1µA standby current
Automotive driver assist SoCs
  • AM620-Q1 Automotive Compute SoC with embedded safety for Driver Monitoring, networking and V2X systems
  • AM625-Q1 Automotive display SoC with embedded safety for digital clusters
  • AM62A1-Q1 Automotive processor with RGB-IR ISP, video enc/dec for 1-2 cameras, low-power systems
  • AM62A3-Q1 Automotive 1 TOPS vision SoC with RGB-IR ISP for 1-2 cameras, driver monitoring, dashcams
  • AM62A7-Q1 2 TOPS vision SoC with RGB-IR ISP for 1-2 cameras, driver monitoring, front cameras
  • TDA2EG-17 SoC processors with graphics and video acceleration for ADAS applications (17mm package)
  • TDA2HG SoC processor w/ graphics, video & vision acceleration for ADAS applications
  • TDA2SG SoC processor w/ highly-featured graphics, video & vision acceleration for ADAS applications
  • TDA2SX SoC processor w/ full-featured graphics, video & vision acceleration for ADAS applications
  • TDA3LA Low power SoC w/ vision acceleration for ADAS applications
  • TDA3LX Low power SoC w/ processing, imaging & vision acceleration for ADAS applications
  • TDA3MA Low power SoC w/ full-featured processing & vision acceleration for ADAS applications
  • TDA3MD Low power SoC w/ full-featured processing for ADAS applications
  • TDA3MV Low power SoC w/ full-featured processing, imaging & vision acceleration for ADAS applications
  • TDA4VE-Q1 SoC with Dual Arm® Cortex®-A72, 8 TOPS of AI, C7xDSP, and GPU for vision perception and analytics
  • TDA4VEN-Q1 SoC with Quad Arm® Cortex®-A53, 4 TOPS of AI, C7xDSP, and GPU for vision perception and analytics
  • TDA4VL-Q1 SoC with Dual Arm® Cortex®-A72, 4 TOPS of AI, C7xDSP, and GPU for vision perception and analytics
  • TDA4VM-Q1 SoC with Dual Arm® Cortex®-A72, 8 TOPS of AI, C7xDSP, and GPU for vision perception and analytics
Audio & radar DSP SoCs
  • AM2752-Q1 32GFLOPS DSP processor for automotive audio with dual-core ARM® Cortex®-R5F, 7.125MB SRAM
  • AM2754-Q1 80GFLOPS DSP microcontroller for automotive audio with quad-core ARM® Cortex®-R5F, 10.75MB SRAM
  • AM62D-Q1 Automotive 40GFLOPS DSP audio processor with Arm® Cortex®-A53, Cortex-R5F and LPDDR4
  • DM505 SoC for vision analytics 15mm package
  • DRA710 600 MHz Arm Cortex-A15 SoC processor with graphics for infotainment & cluster
  • DRA714 600 MHz Arm Cortex-A15 SoC processor with graphics & DSP for infotainment & cluster
  • DRA716 800 MHz Arm Cortex-A15 SoC processor with graphics & DSP for infotainment & cluster
  • DRA780 SoC processor w/ 500 MHz C66x DSP and 2 dual Arm Cortex-M4 for audio amplifier
  • DRA781 SoC processor w/ 750 MHz C66x DSP and 2 dual Arm Cortex-M4 for audio amplifier
  • DRA783 SoC processor w/ 2x 750 MHz C66x DSP and 2 dual Arm Cortex-M4 for audio amplifier
  • DRA786 SoC processor w/ 2x 500 MHz C66x DSP and 2 dual Arm Cortex-M4 & EVE for audio amplifier
  • DRA790 300 MHz Arm Cortex-A15 SoC processor w/ 500 MHz C66x DSP for audio amplifier
  • DRA791 300 MHz Arm Cortex-A15 SoC processor w/ 750 MHz C66x DSP for audio amplifier
  • DRA793 500 MHz Arm Cortex-A15 SoC processor w/ 750 MHz C66x DSP for audio amplifier
  • DRA797 800 MHz Arm Cortex-A15 SoC processor w/ 750 MHz C66x DSP for audio amplifier
Automotive networking SoCs
  • DRA821U-Q1 SoC with Dual Arm® Cortex®-A72, 4 port Ethernet, and 4 lane PCIe for networking and compute
  • DRA829J-Q1 SoC with Dual Arm® Cortex®-A72, 8 port Ethernet, 4 port PCIe, and C7xDSP for networking and compute
  • DRA829V-Q1 SoC with Dual Arm® Cortex®-A72, 8 port Ethernet, 4 port PCIe, and C7xDSP for networking and compute
Multimedia & industrial networking SoCs
  • AM2431 Arm® Cortex®-R5F-based MCU with industrial communications and security up to 800 MHz
  • AM2432 Dual-core Arm® Cortex®-R5F-based MCU with industrial communications and security up to 800 MHz
  • AM2434 Quad-core Arm® Cortex®-R5F-based MCU with industrial communications and security up to 800 MHz
  • AM3351 Sitara processor: Arm Cortex-A8, 1Gb Ethernet, display
  • AM3352 Sitara processor: Arm Cortex-A8, 1Gb Ethernet, display, CAN
  • AM3354 Sitara processor: Arm Cortex-A8, 3D graphics, CAN
  • AM3356 Sitara processor: Arm Cortex-A8, PRU-ICSS, CAN
  • AM3357 Sitara processor: Arm Cortex-A8, EtherCAT, PRU-ICSS, CAN
  • AM3358 Sitara processor: Arm Cortex-A8, 3D graphics, PRU-ICSS, CAN
  • AM3358-EP Sitara processor: Arm Cortex-A8, 3D, PRU-ICSS, HiRel, CAN
  • AM3359 Sitara processor: Arm Cortex-A8, EtherCAT, 3D, PRU-ICSS, CAN
  • AM4372 Sitara processor: Arm Cortex-A9
  • AM4376 Sitara processor: Arm Cortex-A9, PRU-ICSS
  • AM4377 Sitara processor: Arm Cortex-A9, PRU-ICSS, EtherCAT
  • AM4378 Sitara processor: Arm Cortex-A9, PRU-ICSS, 3D graphics
  • AM4379 Sitara processor: Arm Cortex-A9, PRU-ICSS, EtherCAT, 3D graphics
  • AM5706 Sitara processor: cost optimized Arm Cortex-A15 & DSP and secure boot
  • AM5708 Sitara processor: cost optimized Arm Cortex-A15 & DSP, multimedia and secure boot
  • AM5716 Sitara processor: Arm Cortex-A15 & DSP
  • AM5718 Sitara processor: Arm Cortex-A15 & DSP, multimedia
  • AM5718-HIREL AM5718-HIREL Sitara™ Processors Silicon Revision 2.0
  • AM5726 Sitara processor: dual Arm Cortex-A15 & dual DSP
  • AM5728 Sitara processor: dual Arm Cortex-A15 & dual DSP, multimedia
  • AM5746 Sitara processor: dual arm Cortex-A15 & dual DSP, ECC on DDR and secure boot
  • AM5748 Sitara processor: dual arm Cortex-A15 & dual DSP, multimedia, ECC on DDR and secure boot
  • AM623 Internet of Things (IoT) and gateway SoC with Arm® Cortex®-A53-based object and gesture recognition
  • AM625 Human-machine-interaction SoC with Arm® Cortex®-A53-based edge AI and full-HD dual display
  • AM625SIP General purpose system in package with Arm® Cortex®-A53 and integrated LPDDR4
  • AM62A3 1 TOPS vision SoC with RGB-IR ISP for 1-2 cameras, low-power, video surveillance, retail automation
  • AM62A7 2 TOPS vision SoC with RGB-IR ISP for 1-2 cameras, low-power systems, machine vision, robotics
  • AM62L Low-power Arm® Cortex®-A53 SoC with display for IOT, HMI and general purpose applications
  • AM62P Arm®Cortex®-A53 SoC with triple display, 3D graphics, 4K video codec for HMI
  • AM62P-Q1 Automotive display SoC with advanced 3D graphics, 4K video codec and embedded safety
  • AM6411 Single-core 64-bit Arm® Cortex®-A53, single-core Cortex-R5F, PCIe, USB 3.0 and security
  • AM6412 Dual-core 64-bit Arm® Cortex®-A53, single-core Cortex-R5F, PCIe, USB 3.0 and security
  • AM6421 Single-core 64-bit Arm® Cortex®-A53, dual-core Cortex-R5F, PCIe, USB 3.0 and security
  • AM6422 Dual-core 64-bit Arm® Cortex®-A53, dual-core Cortex-R5F, PCIe, USB 3.0 and security
  • AM6441 Single-core 64-bit Arm® Cortex®-A53, quad-core Cortex-R5F, PCIe, USB 3.0 and security
  • AM6442 Dual-core 64-bit Arm® Cortex®-A53, quad-core Cortex-R5F, PCIe, USB 3.0 and security
  • AM6526 Dual Arm® Cortex®-A53 and dual Arm Cortex-R5F Sitara™ processor with gigabit PRU-ICSS
  • AM6528 Sitara processor: dual Arm Cortex-A53 & dual Arm Cortex-R5F, Gigabit PRU-ICSS, 3D graphics
  • AM6546 Quad Arm® Cortex®-A53 and dual Arm Cortex-R5F Sitara™ processor with gigabit PRU-ICSS
  • AM6548 Quad Arm® Cortex®-A53 and dual Arm Cortex-R5F Sitara™ processor with gigabit PRU-ICSS, 3D graphics
  • AM68 General Purpose SoC with dual core 64-bit Arm Cortex-A72, graphics, 1-port PCIe Gen3, USB3.0
  • AM68A 8 TOPS vision SoC for 1-8 cameras, machine vision, smart traffic, retail automation
  • AM69 General purpose octal core 64-bit Arm Cortex-A72 with graphics, PCIe Gen 3, Ethernet, USB 3.0
  • AM69A 32 TOPS vision SoC for 1-12 cameras, autonomous mobile robots, machine vision, mobile DVR, AI-BOX
  • AMIC110 Sitara processor: Arm Cortex-A8, 10+ Ethernet protocols
  • AMIC120 Sitara processor; Arm Cortex-A9; 10+ Ethernet protocols, encoder protocols
  • DRA821U SoC with Dual Arm® Cortex®-A72, 4 port Ethernet, and 4 lane PCIe for networking and compute
  • DRA829J SoC with Dual Arm® Cortex®-A72, 8 port Ethernet,4 port PCIe, and C7xDSP for networking and compute
  • DRA829V SoC with Dual Arm® Cortex®-A72, 8 port Ethernet, 4 port PCIe, and C7xDSP for networking and compute
  • TDA4VM SoC with Dual Arm® Cortex®-A72, 8 TOPS of AI, C7xDSP, and GPU for vision perception and analytics
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