The C2000 real-time controllers are part of a family of high-performance microcontrollers specifically designed to control power electronics and provide advanced digital signal processing in industrial and automotive applications. With more than 20 years at the forefront of the analog-to-digital control revolution, the C2000 MCUs have continued to evolve and now offer precision sensing, powerful processing, and advanced drives, enabling engineers to create the world's most efficient power control systems.
deal with
Compared to ordinary MCUs, higher performance per MHz and unique acceleration features allow you to accomplish more tasks.
The C28x math-optimized cores give designers the flexibility to improve system efficiency and system reliability. As a bridge between microprocessors and digital signal processors, the C2000 real-time controllers offer the code density and execution speed of DSPs with the ease of use and availability of microcontrollers.
Learn more about C2000 MCU processing capabilities
accelerator
When combined with the high-performance C28x CPU core, it enables the fast, efficient processing required for complex, real-time control systems. Four integrated on-chip hardware accelerators are available to greatly improve the performance of the C2000 MCUs:
- Floating point accelerator
- Complex Math and CRC Unit (VCU) Accelerator
- Trigonometric Math Unit (TMU) Accelerator
- Control Law Accelerator (CLA)
Read the application note to learn more about the C2000 accelerator
Peripherals
Embedded real-time controllers require peripherals designed specifically to provide integrated system-on-chip solutions for the most demanding closed-loop control systems. Sensing peripherals with the right speed, accuracy, and resolution are needed in concert with drive (timing) peripherals that apply processed computations to the control system, as well as industry-standard communication peripherals to enable connected and intelligent applications.
Learn more about C2000 Real-Time Control MCU Peripherals
drive
Operate efficiently, improve performance, and implement advanced control techniques.
- Micro-edge positioning technology creates precise PWM waveforms to improve system performance
- Technology packaged PWM modules support advanced timing and generation techniques to control complex power stages
- PWM trip logic uses included high performance analog sensing circuits to provide reactive and asynchronous system protection
Video: Introduction to C2000 PWM
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