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AMD will use EPYC processors with Xilinx-based FPGA AI motors starting in 2023


AMD’s earnings appeal to investors revealed that they plan to implement their future EPYC processors using recently acquired Xilinx FPGA AI output mechanism. The first line of new processors will be launched next year, indicating the company’s immediate focus on the significant growth derived from the chipmaker’s purchase of $ 54 billion for AMD’s future needs. The patents, which have emerged since the acquisition, demonstrate that the company seeks to incorporate artificial intelligence accelerators for its line of multi-processor processors and to develop a technique for stacking 3D chips based on Intel designs.

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In the second half of 2015, Intel acquired Altera for $ 16.7 billion. After the acquisition, Intel began working on projects based on Altera chip technology, which collaborated with processors and FPGAs. However, even after the announcement of technology and offering designs at the exhibition, the silicon needed for the chips was unavailable until 2018. Once silicon was available, it was limited and experimental in design and was unable to run completely. Since then, Intel has never returned to the project, so it is unknown whether they plan to include it in the future.

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Victor Peng, president of AMD’s Adaptive and Embedded Computing team, commented during the call that Xilinx had previously used an AI mechanism to recognize images. The recently acquired company has created other applications for output in AMD’s current firmware and end products, such as cars. Peng mentioned that the structure technology can be adapted and adjustable – a design that requires AMD.

We are fully working on unified general software that allows for a broad portfolio, but also, especially in the field of AI. So you’ll hear more about it on Financial Analyst Day, but we’ll definitely be leaning towards AI for both inference and learning.

– Victor Peng, President of AMD’s Adaptive and Embedded Computing Group

Although AMD is still silent about the future of the company’s new FPGA-based products, there is an expectation that the new chipset will be very advanced. Thanks to PCIe improvement standards and QPI interoperability compatible with the FPGA chipset for the CPU, AMD will use its technology to create accelerator ports to be even more consistent across devices and technologies.

AMD will incorporate 3D stacking chip technology with an FPGA chip at the top of the I / O chip on the CPU. This process is similar to what the company uses for Milan-X chips. 3D stacking technology increases performance, memory bandwidth and power, but can potentially cause temperature maintenance problems. Increasing CPU heat can cause performance issues as the FPGA chiplet becomes closer to the I / O plates. However, placing an AMD accelerator on top of the die can help with temperature issues and add extra performance from CPU chips.

AMD recently unveiled its EPYC Bergamo processors, which offer 128 cores and use the new Zen 4c core, programmed for high performance when using cloud applications. Thanks to the accelerator port in AMD CPU designs, the company can use other accelerators in its projects, such as ASIC, DSP and GPU. In fact, consumers will be able to choose the best options for their individual needs. This action would also allow the company to make the techniques patented by increasing its market position. Data centers will increase availability and change prices, which will allow each company to choose the technology that would meet the needs of its customers.

We now have the best portfolio of high-performance and adaptive computing engines in the industry, and we see many opportunities to use our expanded technology portfolio to deliver even more powerful products.

– Dr. Lisa Soo, CEO of AMD

AMD Financial Analyst Day is June 9, 2022. Two AMD executives have hinted that at the event, the company will share more information about its future plans for Xilinx, the upcoming acquisition of network chip vendor Pensando, another next-generation software under development.


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