Building Smart Scalable Storage SoCs with Embedded PCIe Switching

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Presented by

Stephane Hauradou, Product Marketing

About this talk

As storage systems embrace NVMe and all-flash, the need for scalability coupled with constantly evolving application requirements prompt SoC architects to look for ways to differentiate and future-proof their designs. In this presentation we look at current storage architectures and propose an innovative way to design next-generation storage SoCs centered around the use of embedded PCIe switching. We then introduce PLDA’s PCIe switch IP along with some real-world use cases, and explore the various IP features and capabilities that enable differentiation and future-proofing of SoCs in storage applications and beyond.

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Rambus makes industry-leading chips and IP that advance data center connectivity and solve the bottleneck between memory and processing. The ongoing shift to the cloud, along with the widespread advancement of AI across data center, 5G, automotive and IoT, has led to an exponential growth in data usage and tremendous demands on data infrastructure. Creating fast and safe connections, both in and across systems, remains one of the most mission-critical design challenges limiting performance in advanced hardware. Rambus is ideally positioned to address this challenge as an industry pioneer with over 30 years of advanced semiconductor interconnect experience moving and protecting data. We are a leader in high-performance memory subsystems, providing chips, IP and innovations that maximize the performance and security in data-intensive systems. Whether in the cloud, at the edge or in your hand, real-time and immersive applications depend on data transfer speed and trust. Rambus products and innovations deliver the increased bandwidth, capacity and security required to usher in a new era of data center architectures and drive ever-greater end-user experiences.