Uploaded November 2025 | Updated September 2026, 2 weeks ago
As vehicles evolve toward full autonomy, efficient data transport becomes critical. This video explores how automotive Ethernet, CAN, SerDes, and PCIe® enable real-time sensor processing and advanced driver-assistance systems (ADAS) - laying the foundation for safer, smarter autonomous vehicles.
Learn how distributed computing, high-bandwidth interfaces, and hybrid network designs transform vehicle safety and performance, turning modern cars into mobile data centers.
🔍 Key Topics
• Advancements in vehicle safety and ADAS (Levels 1–5)
• The role of Ethernet (IEEE 802.3bp) and CAN bus in connected vehicles
• Why SerDes and PCIe® are essential for low-latency, high-speed data transfer
• Designing hybrid automotive networks to balance bandwidth, latency, power, and cost
• How sensor fusion and AI inference rely on next-gen data transport
⚙️ Highlights
• Autonomous vehicles can generate 1+ Gbps of sensor data every second
• Hybrid architecture ensures reliable, real-time performance
• PCIe® and SerDes deliver the bandwidth for high-speed AI processing
• Ethernet and CAN remain vital for control and safety systems
🌐 Learn More
Visit our In-Vehicle Networking webpage to explore how advanced data ecosystems support autonomous driving, ADAS, and next-generation automotive networking.
👉 microchip.com/en-us/solutions/automotive-and-transportation/ivn
SYN 25 109154
Q7X0BOZ6G8IN4VKY
As vehicles evolve toward full autonomy, efficient data transport becomes critical. This video explores how automotive Ethernet, CAN, SerDes, and PCIe® enable real-time sensor processing and advanced driver-assistance systems (ADAS) - laying the foundation for safer, smarter autonomous vehicles.
Learn how distributed computing, high-bandwidth interfaces, and hybrid network designs transform vehicle safety and performance, turning modern cars into mobile data centers.
🔍 Key Topics
• Advancements in vehicle safety and ADAS (Levels 1–5)
• The role of Ethernet (IEEE 802.3bp) and CAN bus in connected vehicles
• Why SerDes and PCIe® are essential for low-latency, high-speed data transfer
• Designing hybrid automotive networks to balance bandwidth, latency, power, and cost
• How sensor fusion and AI inference rely on next-gen data transport
⚙️ Highlights
• Autonomous vehicles can generate 1+ Gbps of sensor data every second
• Hybrid architecture ensures reliable, real-time performance
• PCIe® and SerDes deliver the bandwidth for high-speed AI processing
• Ethernet and CAN remain vital for control and safety systems
🌐 Learn More
Visit our In-Vehicle Networking webpage to explore how advanced data ecosystems support autonomous driving, ADAS, and next-generation automotive networking.
👉 microchip.com/en-us/solutions/automotive-and-transportation/ivn
SYN 25 109154
Q7X0BOZ6G8IN4VKY










