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  2. Infineon
  3. Microcontroller
  4. 32-bit Industrial Microcontroller based on ARM® Cortex®-M
  5. 32-bit XMC1000 Industrial Microcontroller ARM® Cortex®-M0

Infineon


32-bit XMC1000 Industrial Microcontroller ARM® Cortex®-M0

32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model
32-bit Microcontrollers with ARM® Cortex®-M0 with focus on low-cost embedded control applications. The XMC1400 series devices are optimized for motor control, power conversion and LED Lighting applications and Human-Machine Interface (HMI). Increasing complexity and demand for computing power of embedded control applications requires microcontrollers to have a significant CPU performance, integrated peripheral functionality and rapid development environment enabling short time-to market, without compromising cost efficiency. The performance of XMC1400 will be increased with 70% over existing XMC1000 due to the 48 [MHz] of the core frequency and the 2 Can nodes interfaces.
Request Model