The SPC5777CLK3MMO3 is a high-performance microcontroller (MCU) manufactured by NXP Semiconductors. It belongs to the S32K3 family of MCUs designed for automotive and industrial applications.
Description:
The SPC5777CLK3MMO3 is a 32-bit ARM Cortex-M7-based MCU with a maximum CPU clock frequency of 200 MHz. It features a high level of integration, offering a wide range of communication interfaces, peripherals, and safety features, making it suitable for various applications in the automotive and industrial sectors.
Features:
- ARM Cortex-M7 core with a maximum CPU clock frequency of 200 MHz.
- Advanced memory architecture with up to 2 MB of flash memory and 384 KB of SRAM.
- Integrated communication interfaces such as CAN-FD, LINflex, and Ethernet.
- A wide range of peripherals, including ADCs, DACs, PWMs, and motor control timers.
- Enhanced security features, including a hardware cryptographic module and secure boot.
- Safety features compliant with ISO 26262 and IEC 61508 standards.
- Advanced power management capabilities to optimize energy consumption.
- Support for NXP's S32K3 SDK and development tools for easy software development.
Applications:
The SPC5777CLK3MMO3 is designed for a variety of applications in the automotive and industrial sectors, including:
- Advanced driver-assistance systems (ADAS) and autonomous driving applications.
- Electric and hybrid vehicle powertrain control, including battery management systems (BMS) and motor control.
- Safety-critical systems, such as airbag control units and electronic stability control (ESC) systems.
- Industrial automation and control systems, including motor control and robotics.
- Connectivity and communication systems, such as gateways and routers for vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication.
In summary, the SPC5777CLK3MMO3 is a powerful and versatile microcontroller that offers a combination of high performance, advanced features, and safety capabilities, making it an ideal choice for demanding automotive and industrial applications.