Huawei wants to create a PC chip as powerful as the Apple M3, is it really possible?


Amid trade restrictions imposed by the United States, Huawei continues to develop its own technologies. The Chinese firm is reportedly working on a Kirin chip intended for PCs, with high ambitions to compete with the Apple M3.

huawei kirin pc
Source: Huawei

Despite sanctions that limit its access to Western technologies and markets, Huawei continues to look for ways to maintain its competitiveness. Rumor has it that their latest project involves the development of a chip for PC. And according to these sources, she could compete with the powerful Apple M3. The company would therefore be banking on a evolution of its Kirin chipalready used in its smartphones.

The firm currently operates the model Kirin 9000s in its Huawei Mate 60 series, but is now aiming higher with a new and improved version. This future model would integrate eight hearts TaiShan v130 for performance and Next-generation Mailiang 920 GPU. However, production of this advanced chip could be slowed down by technological choices.

Huawei could opt for 7nm engraving for its new chip

The chip in development by Huawei is announced to support up to 32 GB of RAM and 2 TB of storage, which promises high performance and substantial storage capacity for users. But the company could opt for a manufacturing process in 7nm offered by SMIC. Compared to the Apple M3 chip in 3nmthis choice is lower in terms of energy efficiency. She could therefore reduce chip performance to preserve PC battery life. She would therefore be less competitive against its American rivals.

Alternatively, the company could opt for ae manufacturing in 5 nm. But this would delay Huawei’s project, because this technology is not yet ready at SMIC for mass production. Adapting to performance standards without compromising thermal management and energy efficiency is crucial. The Korean firm may have to review the design of this chip to dissipate heat better. But this could make the devices that use it heavier and less efficient. These choices will therefore determine the success – or not – of this chip.

Source: Weibo



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