For automotive design, faster is better
Current trends in automotive design include a rapid migration to connected and autonomous vehicles, a significant per-vehicle increase in electronic content and, of course, the evergreen demands of greater efficiency, safety and security. While developers have a lot more on their plate, they are expected to bring these solutions to market quickly. Extending the footprint of ARM-based MCUs throughout the entire vehicle enables easier development through synergy. That is, after all, one of the major benefits of using ARM – the ability to develop in an ecosystem that offers commonality in architecture and tools. The majority of auto-interior features wouldn’t necessitate ARM’s Cortex-A or Real-Time architectures. For automotive applications, the ARM solution in terms of price, feature set and performance is the Cortex-M0+, an architecture powerful enough to accommodate advanced functions such as sensorless BLDC motor control, yet simple enough to replace 8- or 16-bit devices in less processor-intensive applications such as lighting control.
Time-to-market challenges don’t end with an MCU architecture, however. In order to truly acquire a competitive edge in the automotive and industrial sectors, designers must have access to intuitive development tools, application-specific software, reference designs and source code, if not production-ready turn-key solutions.
To read the full article, click here
Related Semiconductor IP
- SMC 2nm 1V8 ESD Power Clamp – Low Leakage
- TSMC 2nm 1V8 ESD Local Clamp – Low Leakage
- Zigbee Transceiver PHY
- Data Flow Architecture IP
- AMBA SPI Controller MRAM Controller
Related Blogs
- VIP Factory: Faster, Better, Cost Effective Verification IPs
- How Imagination is steering the automotive industry to a safer future
- How Rambus is Making Data Faster and Safer in 2022 and Beyond
- What is OTA in automotive? Over the air updates explained.
Latest Blogs
- Introducing SKL: The SiFive Kernel Library
- IDS-NoC: A Scalable Interconnect Solution for Modern SoC Design
- Leading-edge AI IC designs demand comprehensive HAV methodologies
- Beyond the Fab: Building Europe’s Next Generation of Semiconductor Champions
- AI Semiconductor Design at 3nm and 2nm: Silicon-Proven IP