The moment Huawei displayed its entire strategy for the Longteng Series Chips on the screen, the vast product launch venue erupted into a clamor.
They did not stop there. Riding the audience's enthusiasm, Huawei's chief product strategy officer announced the live demonstration segment before all the invited guests, media representatives, and other attendees, pushing the atmosphere to its peak.
At Shao Yi's signal, staff members came onstage carrying two phones and placed them on stands on the table in the center of the stage.
One was a meta100 concept phone fitted with a mobile version of the Longteng No. 1 series chip manufactured on a 28 nm process, while the other was a mete30 equipped with a Kirin 950 chip manufactured using a 16 nm FinFET process.
After the staff finished setting them up, both phones launched a game-rendering demo of the same city scene simultaneously.
Through the projector, everything on the phones' screens was immediately displayed for everyone to see.
On the large screen, it was clear that as the scene grew more complex and detailed, gradually exceeding even the processing limits of the chips' integrated GPUs, the frame rate on the phone with the traditional silicon-based chip kept dropping. Its image gradually became almost motionless, while its temperature kept rising until it was too hot to hold.
Meanwhile, the Mete100 equipped with the Carbon-Based Chip not only continued running smoothly, but maintained a frame rate above 60 fps even as the city expanded and its level of detail increased to what could already be considered "PC-grade." Everyone present was left wide-eyed and speechless.
That was not all. The temperature readings showed that although the meta100's surface temperature also rose as its computational workload surged, it remained within the normal operating temperature range.
After witnessing this, there was no