Product Overview: SPC5604BF2CLL4R
The SPC5604BF2CLL4R is a cutting-edge microcontroller unit (MCU) from NXP Semiconductors, designed to cater to the rigorous demands of automotive applications. This powerful MCU is part of the MPC560xB/C family and is built on Power Architecture® technology, ensuring high-performance operation and reliability.
Key Features
- Core: The SPC5604BF2CLL4R features a 32-bit Power Architecture® V1 core that operates at a frequency of up to 64 MHz, providing robust computational capabilities and efficient processing of complex tasks.
- Memory: It is equipped with 512 KB of flash memory and 64 KB of RAM, offering ample storage for application code and data handling.
- Advanced Timer: The MCU includes a Modular I/O System (MIOS) that supports complex timing and control applications, making it ideal for automotive engine management systems.
- Communication Interfaces: Multiple communication interfaces such as CAN, LIN, and SPI are integrated, facilitating versatile connectivity options for various automotive subsystems.
- Analog-to-Digital Converter (ADC): The MCU boasts a 12-bit ADC with up to 16 channels, providing precise measurement capabilities for sensor data.
- Temperature Range: It operates over an extended temperature range of -40°C to +125°C, ensuring reliable performance in extreme automotive environments.
- Package: The device is available in a Low Profile Quad Flat Package (LQFP) with 64 pins, making it suitable for space-constrained applications.
Applications
The SPC5604BF2CLL4R is specifically designed for automotive applications, including but not limited to:
- Engine Control Units (ECU)
- Body Control Modules (BCM)
- Transmission Control Modules (TCM)
- Anti-lock Braking Systems (ABS)
- Dashboard and Instrument Clusters
Quality and Reliability
NXP Semiconductors is committed to delivering high-quality products. The SPC5604BF2CLL4R is manufactured with rigorous automotive-grade standards, ensuring high reliability and performance consistency for the most demanding automotive applications.