Enabling Automotive E/E Architectures Based on SEMPER™ X1, the World’s First LPDDR Flash
This webinar from Infineon explores how SEMPER X1 LPDDR Flash addresses the challenges of advancing vehicle electrification.

Webinar Overview
As vehicle electrification advances, E/E architectures must evolve to meet new demands. Optimized vehicle performance, remote update and diagnostics, and autonomous driving (AD) and advanced driver-assistance systems (ADAS) with functional safety compliance are key requirements. Real-time processors in domain and zone controllers need high-performance process nodes, but integrated Flash solutions are hindered by high cost, and limited scalability. Standard xSPI NOR Flash falls short of real-time execute-in-place (XiP) performance needs. This webinar explores how SEMPER X1 LPDDR Flash addresses these challenges, enabling efficient and reliable automotive E/E architectures.
Key Topics:
• Evolving E/E architectures: Meet the demands of increasing vehicle automation, driver experience, comfort, and convenience with optimized performance, remote update and diagnostics, and AD/ADAS with functional safety compliance.
• Target applications: SEMPER X1 LPDDR Flash is ideal for high-performance Flash for real-time SoCs in zonal architectures and dedicated memory for safety islands in next generations SoCs.
• Overcoming integrated Flash limitations: High cost, limited scalability, and insufficient memory hinder real-time performance in domain and zone controllers.
• Unparalleled performance and efficient updates: With 8x higher performance and 20x faster random read transactions compared to standard xSPI NOR Flash, SEMPER X1 LPDDR Flash also enables multi-bank architecture for over-the-air (OTA) updates with zero downtime, ensuring maximum system availability.