According to news from Digital Chat Station, Huawei is developing new HiSilicon Kirin chips, including 8xx series and 9xx series. The latter uses SMIC's more mature N2 process. However, new phones released this year may not be able to apply to the above-mentioned new platforms
TechInsights Vice Chairman analyzed that the chip equipped on Huawei Mate 60 Pro is still 2-2.5 years away from the most advanced technology. Node gap.
In this regard, Lu Tingjie, a professor at Beijing University of Posts and Telecommunications and executive vice chairman of the China Information Economics Society, explained: "2 to 2.5 nodes means that we are still 3 to 5 years away from 5G chips with advanced processes. , these 3 to 5 years are judged by Western countries by the speed of their technological progress, but we in China can often surpass us at China's speed. But this time we have made progress from 0 to 1, and we have finally solved 5G There is an issue with advanced 5G chips in smartphones, but we must admit that it is still far from the most advanced technology. For example, the upcoming iPhone 15 series has actually used 4-nanometer chips. We now have Huawei Kirin 9000S The chip should reach or be close to 7nm technology. But in fact, going from 7nm to 5nm and then to 4nm still requires a long and difficult R&D process, so we can’t be too happy yet. But we have indeed achieved a very good result. An important breakthrough is to localize the most critical chips for smartphones, especially the 5G chip."
In addition,TechInsights Vice Chairman used " "Amazing", "unexpected" and other words , Lu Tingjie explained: "We have basically realized the localization of 14nm chips before, but we need to advance to 7nm and even higher integration. chip, it is not a linear problem, and its complexity will become higher and higher. So they believe that China has suddenly conquered 7-nanometer technology in such a short period of time, and there must be some very unique technological advancements or solutions. We are also very surprised, I feel that this is much faster than we thought."
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