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AMD revisits plans to create low-cost CPUs for mobile devices
Advanced Micro Devices first announced plans to develop dedicated energy efficient x86 microarchitectures for ultraportable and low-cost devices in mid-2021. The first processor cores based on the new architectures were released in early 2021 and were coded after the names of the felines (Bobcat, Jaguar, Puma) to highlight their efficiency. Eight Years On, AMD Stops Development of Feline Low-Power x86 Processor Cores.
In recent years, AMD has significantly revised plans to create cost-effective systems on a chip for mobile, hybrid, low-cost and miniature devices. Starting this year, the company will no longer offer new microcircuits with a consumption level of up to 5 W with x86 cores, according to the long-term plans that came from the Network. Instead, AMD will focus on building ARM-based SoCs for low-power devices; as well as systems on a chip based on Zen microarchitecture for traditional mobile devices.
System-on-a-chip AMD Fusion
For years, AMD has tried to enter the market for tablets, TV boxes and similar devices with low-frequency chips based on its low-cost x86 cores like Bobcat, Jaguar or Puma. Although AMD-based systems were not too power hungry, they lacked software support (all software for tablets was created with ARM processors in mind until recently, when Intel was able to reverse the trend in favor of x86), they are all equally dissipated more heat than ARM-based solutions, they did not support mobile-specific interfaces (like eMMC, SDIO, MIPI DSI, CSI, etc.).d.), but most importantly, they lacked visible advantages over competitors. As a result, the number of tablets based on AMD processors can be counted on the fingers.
AMD’s latest attempt to enter the mobile market with an x86 chip was announced simultaneously by the Skybridge initiative to create identical systems on chips based on ARM and x86 cores. In accordance with the plan, AMD intended to develop pin-compatible Amur and Nolan chips with an identical GPU, the same set of functions and interfaces, but with different general-purpose computing cores – x86 Puma + (Nolan) or ARM Cortex-A57 (Amur). Although AMD looked pretty good for x86 a year ago, AMD has recently revisited plans and removed Nolan from its list of future products.
AMD’s mobile processor roadmap
AMD To Unveil Amur System For Ultra-Low Power Devices Later This Year. Amur will include up to four ARM Cortex-A57 cores, a GCN-based Radeon GPU, and an AMD Secure Processor unit. AMD Amur Will Not Support HSA 1 Heterogeneous Computing.0, and nothing is known about mobile-specific I / O interfaces. The new SoC will be manufactured at TSMC using the 20 nm process technology (CLN20SOC).
It should be noted that canceling the release of the Nolan chip will not mark the end of the Skybridge project. Next year AMD will release pin-compatible systems based on the Basilisk and Styx chips based on two Zen (x86) and K12 (ARMv8-A) cores, respectively. Both chips will support the same feature set, including support for HSA 1 heterogeneous computing.0 and AMD Secure Processor. In other words, the Skybridge concept is part of AMD’s roadmap.
Carrizo-L will be the only new microprocessor based on low-cost x86 cores to see the light of day later this year. At this point, the development of the “feline” AMD microarchitectures will stop. Already in 2021, the company will offer various microprocessors for a wide variety of devices exclusively based on Zen and K12 cores. Given AMD’s need to optimize R&D spending, it makes sense to move away from lean architectures.
In general, the importance of energy efficient x86 microarchitectures is much lower today than it was a few years ago. Firstly, all modern x86 kernels are developed with an eye to use in mobile devices. Secondly, today’s x86 cores are very compact and take up a relatively small area of systems on a chip for mobile devices. Thirdly, the Intel Core M microprocessor has shown that it is quite possible to create high-performance x86 chips with a power consumption level in the region of 4 watts. Thus, although it is a little sad to send “feline” microarchitectures to rest, it seems that AMD simply does not need them anymore.