The NXP S912ZVHL64F1CLQ is a powerful and versatile microcontroller designed to cater to a wide range of automotive and industrial applications. This 16-bit MCU is part of the S12 MagniV portfolio, which integrates a sophisticated MCU with smart MOSFETs to create a single-chip solution. It is specifically engineered to meet the rigorous standards of the automotive industry, providing reliable performance in harsh environments.
Key Features
- Core: The device features a 16-bit S12 core capable of operating at speeds up to 50MHz, providing a robust platform for complex applications.
- Memory: It comes with 64KB of flash memory, which is ideal for storing large applications, and 4KB of RAM for efficient data handling.
- Integration: The MCU integrates analog and digital peripherals, including a 12-bit analog-to-digital converter (ADC), multiple serial communication interfaces (SCI, SPI, CAN), and a frequency-modulated phase-locked loop (FMPLL) for precise clock generation.
- Temperature Range: With an operational temperature range of -40°C to 125°C, the S912ZVHL64F1CLQ is built to withstand extreme conditions, making it suitable for under-the-hood automotive applications.
- Packaging: The microcontroller is available in a compact 64-pin LQFP package, which is conducive to space-constrained designs.
- Low Power: It features various power-saving modes, including stop and wait modes, which help to minimize power consumption during idle periods.
Applications
The S912ZVHL64F1CLQ is designed for a broad spectrum of applications, particularly in the automotive sector. It is ideal for engine management systems, transmission control, body control modules, and advanced driver-assistance systems (ADAS). Its robust design also makes it suitable for industrial applications that require reliable performance in challenging environments.
Quality and Reliability
NXP is committed to delivering high-quality products. The S912ZVHL64F1CLQ is manufactured to meet the stringent quality standards required for automotive applications, ensuring long-term reliability and performance.