According to news from IT House on December 2, Gekewei said in a recent survey by investors that it has completed the technical research and development of 32 million pixels, and will expand to 50 million pixels or even 100 million pixels in the future. In the future, we hope to provide different solutions through differentiated technologies, and quickly enter the camp of high-end chips in the Android market.
Gekewei said, “For CMOS image sensors, we need to admit that overseas countries are ahead to a certain extent, so we need to build a Lingang factory and speed up research and development. In fact, we have adopted new machinery and equipment, in our own The factory is developing, and the research and development efficiency has doubled.”
IT Home learned that in August this year, Geke Micro released a single-chip 32-megapixel CMOS image sensor – GC32E1. This product adopts the latest FPPI patented GalaxyCell 0.7μm process of Gekewei, and cooperates with the 4Cell Bayer architecture to achieve equivalent 1.4μm pixel performance. It also supports sHDR video recording and provides a mature high-pixel solution for high-end smartphones’ proactive needs. The product has been sent to the first batch of brand customers for testing and is expected to be put into mass production by the end of 2022.
GC32E1 is Gekewei’s first 0.7μm pixel image sensor based on the latest FPPI patented technology, supporting 32 million full-pixel output. With the Remosaic decoding function of the mobile phone platform, it can achieve high-resolution, detailed and colorful image effects. In nighttime, dark conditions and other environments, it supports 4Cell synthesis equivalent to 1.4μm 8 million pixel output, which can take bright and clear photos.
In video applications, GC32E1 supports interlaced stagger HDR technology, which can output Full HD 60fps image data, which can be synthesized into 30fps images through the mobile phone platform, retaining high-light color and low-light details, increasing the dynamic range by about 30%, and expanding video shooting scene to further enhance the experience.
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