
NXP Semiconductors
MC56F80736VLF
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MC56F80736VLF Description
The MC56F80736VLF is a high-performance microcontroller unit (MCU) manufactured by NXP Semiconductors. This MCU is designed for use in industrial and automotive applications, where high reliability and real-time performance are required.
Description:
The MC56F80736VLF is a 32-bit MCU based on the ColdFire V2 core. It operates at a frequency of up to 160 MHz and features a 512KB flash memory, 96KB SRAM, and 4KB EEPROM. The MCU also includes a range of integrated peripherals, including a 12-bit ADC, 3x 16-bit timers, a CAN interface, and a USB interface.
Features:
- High-performance ColdFire V2 core with a clock frequency of up to 160 MHz
- 512KB flash memory, 96KB SRAM, and 4KB EEPROM
- Integrated peripherals, including a 12-bit ADC, 3x 16-bit timers, a CAN interface, and a USB interface
- Advanced real-time performance with low latency and deterministic interrupt response
- High level of integration, reducing the need for external components and simplifying the design
- Wide operating temperature range (-40°C to +125°C)
- Low power consumption, suitable for battery-powered applications
Applications:
The MC56F80736VLF is suitable for a wide range of industrial and automotive applications, including:
- Engine control units (ECUs) in automotive applications
- Motor control systems for industrial automation and robotics
- Battery management systems for electric vehicles and energy storage
- Safety systems in industrial machinery and automotive applications
- Data acquisition and control systems in industrial automation and process control
- In-vehicle infotainment systems and telematics applications
- Advanced driver-assistance systems (ADAS) in automotive applications
In summary, the MC56F80736VLF is a high-performance, feature-rich MCU designed for demanding industrial and automotive applications. Its advanced real-time performance, integrated peripherals, and low power consumption make it an ideal choice for a wide range of applications where reliability and performance are critical.



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