TMS320F28026

AKTIV

C2000™ 32-Bit-MCU mit 60 MHz, 32-kb-Flash

Produktdetails

CPU 1 C28 Frequency (MHz) 60 Flash memory (kByte) 32 RAM (kByte) 12 ADC type 1 12-bit SAR Total processing (MIPS) 60 Features 32-bit CPU timers, Single zone code security, Watchdog timer UART 1 CAN (#) 0 Sigma-delta filter 0 PWM (Ch) 8 TI functional safety category Functional Safety Quality-Managed Number of ADC channels 7, 13 Direct memory access (Ch) 0 SPI 1 QEP 0 USB No Hardware accelerators CPU only Edge AI enabled Yes Operating temperature range (°C) -40 to 125 Rating Catalog Communication interface I2C, SPI, UART Operating system FreeRTOS Nonvolatile memory (kByte) 32 Number of GPIOs 22 Number of I2Cs 1 Security Secure storage
CPU 1 C28 Frequency (MHz) 60 Flash memory (kByte) 32 RAM (kByte) 12 ADC type 1 12-bit SAR Total processing (MIPS) 60 Features 32-bit CPU timers, Single zone code security, Watchdog timer UART 1 CAN (#) 0 Sigma-delta filter 0 PWM (Ch) 8 TI functional safety category Functional Safety Quality-Managed Number of ADC channels 7, 13 Direct memory access (Ch) 0 SPI 1 QEP 0 USB No Hardware accelerators CPU only Edge AI enabled Yes Operating temperature range (°C) -40 to 125 Rating Catalog Communication interface I2C, SPI, UART Operating system FreeRTOS Nonvolatile memory (kByte) 32 Number of GPIOs 22 Number of I2Cs 1 Security Secure storage
LQFP (PT) 48 81 mm² 9 x 9 TSSOP (DA) 38 101.25 mm² 12.5 x 8.1
  • High-efficiency 32-bit CPU (TMS320C28x)
    • 60 MHz (16.67-ns cycle time)
    • 50 MHz (20-ns cycle time)
    • 40 MHz (25-ns cycle time)
    • 16 × 16 and 32 × 32 MAC operations
    • 16 × 16 dual MAC
    • Harvard bus architecture
    • Atomic operations
    • Fast interrupt response and processing
    • Unified memory programming model
    • Code-efficient (in C/C++ and Assembly)
  • Endianness: Little endian
  • Low cost for both device and system:
    • Single 3.3-V supply
    • No power sequencing requirement
    • Integrated power-on and brown-out resets
    • Small packaging, as low as 38-pin available
    • Low power
    • No analog support pins
  • Clocking:
    • Two internal zero-pin oscillators
    • On-chip crystal oscillator and external clock input
    • Watchdog timer module
    • Missing clock detection circuitry
  • Up to 22 individually programmable, multiplexed GPIO pins with input filtering
  • Peripheral Interrupt Expansion (PIE) block that supports all peripheral interrupts
  • Three 32-bit CPU timers
  • Independent 16-bit timer in each Enhanced Pulse Width Modulator (ePWM)
  • On-chip memory
    • Flash, SARAM, OTP, Boot ROM available
  • Code-security module
  • 128-bit security key and lock
    • Protects secure memory blocks
    • Prevents firmware reverse engineering
  • Serial port peripherals
    • One Serial Communications Interface (SCI) Universal Asynchronous Receiver/Transmitter (UART) module
    • One Serial Peripheral Interface (SPI) module
    • One Inter-Integrated-Circuit (I2C) module
  • Enhanced control peripherals
    • ePWM
    • High-Resolution PWM (HRPWM)
    • Enhanced Capture (eCAP) module
    • Analog-to-Digital Converter (ADC)
    • On-chip temperature sensor
    • Comparator
  • Advanced emulation features
    • Analysis and breakpoint functions
    • Real-time debug through hardware
  • Package options
    • 38-pin DA Thin Shrink Small-Outline Package (TSSOP)
    • 48-pin PT Low-Profile Quad Flatpack (LQFP)
  • Temperature options
    • T: –40°C to 105°C
    • S: –40°C to 125°C
    • Q: –40°C to 125°C (AEC Q100 qualification for automotive applications)
  • High-efficiency 32-bit CPU (TMS320C28x)
    • 60 MHz (16.67-ns cycle time)
    • 50 MHz (20-ns cycle time)
    • 40 MHz (25-ns cycle time)
    • 16 × 16 and 32 × 32 MAC operations
    • 16 × 16 dual MAC
    • Harvard bus architecture
    • Atomic operations
    • Fast interrupt response and processing
    • Unified memory programming model
    • Code-efficient (in C/C++ and Assembly)
  • Endianness: Little endian
  • Low cost for both device and system:
    • Single 3.3-V supply
    • No power sequencing requirement
    • Integrated power-on and brown-out resets
    • Small packaging, as low as 38-pin available
    • Low power
    • No analog support pins
  • Clocking:
    • Two internal zero-pin oscillators
    • On-chip crystal oscillator and external clock input
    • Watchdog timer module
    • Missing clock detection circuitry
  • Up to 22 individually programmable, multiplexed GPIO pins with input filtering
  • Peripheral Interrupt Expansion (PIE) block that supports all peripheral interrupts
  • Three 32-bit CPU timers
  • Independent 16-bit timer in each Enhanced Pulse Width Modulator (ePWM)
  • On-chip memory
    • Flash, SARAM, OTP, Boot ROM available
  • Code-security module
  • 128-bit security key and lock
    • Protects secure memory blocks
    • Prevents firmware reverse engineering
  • Serial port peripherals
    • One Serial Communications Interface (SCI) Universal Asynchronous Receiver/Transmitter (UART) module
    • One Serial Peripheral Interface (SPI) module
    • One Inter-Integrated-Circuit (I2C) module
  • Enhanced control peripherals
    • ePWM
    • High-Resolution PWM (HRPWM)
    • Enhanced Capture (eCAP) module
    • Analog-to-Digital Converter (ADC)
    • On-chip temperature sensor
    • Comparator
  • Advanced emulation features
    • Analysis and breakpoint functions
    • Real-time debug through hardware
  • Package options
    • 38-pin DA Thin Shrink Small-Outline Package (TSSOP)
    • 48-pin PT Low-Profile Quad Flatpack (LQFP)
  • Temperature options
    • T: –40°C to 105°C
    • S: –40°C to 125°C
    • Q: –40°C to 125°C (AEC Q100 qualification for automotive applications)

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 F2802x family of microcontrollers provides the power of the C28x core coupled with highly integrated control peripherals in low pin-count devices. This family is code-compatible with previous C28x-based code, and also provides a high level of analog integration.

An internal voltage regulator allows for single-rail operation. Enhancements have been made to the HRPWM to allow for dual-edge control (frequency modulation). Analog comparators with internal 10-bit references have been added and can be routed directly to control the PWM outputs. The ADC converts from 0 to 3.3-V fixed full-scale range and supports ratio-metric VREFHI/VREFLO references. The ADC interface has been optimized for low overhead and latency.

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 F2802x family of microcontrollers provides the power of the C28x core coupled with highly integrated control peripherals in low pin-count devices. This family is code-compatible with previous C28x-based code, and also provides a high level of analog integration.

An internal voltage regulator allows for single-rail operation. Enhancements have been made to the HRPWM to allow for dual-edge control (frequency modulation). Analog comparators with internal 10-bit references have been added and can be routed directly to control the PWM outputs. The ADC converts from 0 to 3.3-V fixed full-scale range and supports ratio-metric VREFHI/VREFLO references. The ADC interface has been optimized for low overhead and latency.

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

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TMS320F280021 AKTIV C2000™-MCU, 32 Bit, mit 100 MHz, FPU, TMU, 32 KB Flash This product is from the latest generation of real-time controllers with similar attributes.

Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet TMS320F2802x Microcontrollers datasheet (Rev. P) 18 Jan 2021
* Errata TMS320F2802x, TMS320F2802xx MCUs Silicon Errata (Rev. S) PDF | HTML 28 Okt 2020
* User guide TMS320F2802x, TMS320F2802xx Microcontrollers TRM (Rev. A) 03 Jun 2022
Application note Serial Flash Programming of C2000 Microcontrollers (Rev. I) PDF | HTML 14 Aug 2025
User guide Migration Between TMS320F2802x, TMS320F2803x and F28E12x Guide PDF | HTML 06 Aug 2025
User guide C2000 Real-Time Control Peripheral Reference Guide (Rev. U) PDF | HTML 11 Jul 2025
Product overview Safety Package for Automotive and Industrial Real-Time Microcontrollers (Rev. E) PDF | HTML 23 Jun 2025
Application note C2000™ MCU JTAG Connectivity Debug (Rev. C) PDF | HTML 12 Aug 2024
Application note Development Tool Versions for C2000™ Support (Rev. A) PDF | HTML 26 Jun 2024
Application note Semiconductor and IC Package Thermal Metrics (Rev. D) PDF | HTML 25 Mär 2024
Product overview C2000™ Safety Mechanisms (Rev. B) 09 Nov 2023
Application note Migrating Software From 8-Bit (Byte) Addressable CPU’s to C28x CPU (Rev. A) PDF | HTML 19 Apr 2023
Application note Enhancing the Computational Performance of the C2000™ Microcontroller Family (Rev. C) PDF | HTML 14 Dez 2021
Application note C2000™ Unique Device Number (Rev. B) PDF | HTML 17 Sep 2020
Application note EEPROM Emulation for Gen 2 C2000 Real-Time MCUs (Rev. A) 23 Jul 2020
White paper Taking charge of electric vehicles – both in the vehicle and on the grid (Rev. A) 17 Jun 2020
User guide SYS/BIOS (TI-RTOS Kernel) User's Guide (Rev. V) 01 Jun 2020
Application note Migrating From TMS320F2802x/2803x to TMS320F2806x (Rev. A) 17 Mär 2020
Application note TMS320F2802x/TMS320F2803x to TMS320F28002x Migration Overview 13 Jan 2020
Application note Configurable Error Generator for Controller Area Network PDF | HTML 19 Dez 2019
Application note C2000 ADC (Type-3) Performance Versus ACQPS PDF | HTML 07 Okt 2019
Application note Calculating Useful Lifetimes of Embedded Processors (Rev. B) PDF | HTML 07 Mai 2019
Functional safety information C2000™ MCU SafeTI™ control solutions: An introduction to ASIL decomposition 10 Apr 2019
Application note MSL Ratings and Reflow Profiles (Rev. A) 13 Dez 2018
White paper Exploring the evolution and optimization of wireless power transfer 27 Jul 2018
Certificate Certificate of Compliance 06 Jul 2018
Certificate Certificate of Compliance E352502-20130316 06 Jul 2018
Functional safety information IEC60730 Safety Library for TMS320F2802x 06 Jul 2018
Functional safety information IEC60730 Safety Library for TMS320F2803x 06 Jul 2018
Functional safety information VDE Safety Certification Document 22 Jun 2018
User guide Digitally Controlled 2-Phase (Il PFC) Converter Using C2000 Piccolo-A MCU 08 Jan 2016
Application note Migrating from TMS320F280x to TMS320F2802x/TMS320F2803x (Rev. C) 11 Aug 2015
User guide TMS320C28x DSP CPU and Instruction Set (Rev. F) 10 Apr 2015
Application note Calculating FIT for a Mission Profile 24 Mär 2015
More literature controlSUITE Getting Started Guide (Rev. C) 09 Feb 2015
Functional safety information Safety Manual for C2000 MCUs in IEC60730 Safety Applications (Rev. A) 21 Aug 2013
Application note High-Voltage Half-Bridge LLC Resonant DC/DC Conv SW w/ Synch Rectification Kit 02 Jul 2013
Application note PSFB Control Using C2000 Microcontrollers 22 Mai 2013
White paper Developing a multi-channel wireless inductive charger 24 Aug 2012
Application note Digitally Controlled HV Solar MPPT DC-DC Converter Using C2000 Piccolo MCU 29 Mai 2012
Application note Multi-DC/DC Conversion & Color LED Control Integrated on a C2000 Microcontroller 01 Feb 2012
Application note InstaSPIN(tm) BLDC Lab 15 Nov 2011
Application note Oscillator Compensation Guide (Rev. A) 18 Jun 2010
Application note Programming External Nonvolatile Memory Using SDFlash for TMS320C28x Devices 16 Nov 2009
Application note Common Object File Format (COFF) 15 Apr 2009

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