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Recently, Saili Optoelectronics, a thin-film lithium niobate photon engine provider for the optical interconnection of AI data centers, announced the completion of the 100 million yuan pre-A round of financing. This round was led by Futeng Capital, followed by Shanghai Future Industry Fund, Cornerstone Capital, Greater Bay Area Fund, Skyrim Capital, Shenzhen Industrial Investment, and the listed company Zhiwei Intelligent. Light Source Capital acted as the exclusive financial advisor. This round of financing will mainly be used for continuous research and development of thin-film lithium niobate photonic chips and system-on-chip integration technology, promote core product iteration, wafer-level process collaboration and mass production verification, accelerate the company's cooperation with industry chain partners such as AI data centers, optical modules, communication equipment, and photoelectric encapsulation and measurement, and promote large-scale application of thin-film lithium niobate photonic chips in next-generation high-speed optical interconnect networks.
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Recently, Saili Optoelectronics, a thin-film lithium niobate photon engine provider for the optical interconnection of AI data centers, announced the completion of the 100 million yuan pre-A round of financing. This round was led by Futeng Capital, followed by Shanghai Future Industry Fund, Cornerstone Capital, Greater Bay Area Fund, Skyrim Capital, Shenzhen Industrial Investment, and the listed company Zhiwei Intelligent. Light Source Capital acted as the exclusive financial advisor. This round of financing will mainly be used for continuous research and development of thin-film lithium niobate photonic chips and system-on-chip integration technology, promote core product iteration, wafer-level process collaboration and mass production verification, accelerate the company's cooperation with industry chain partners such as AI data centers, optical modules, communication equipment, and photoelectric encapsulation and measurement, and promote large-scale application of thin-film lithium niobate photonic chips in next-generation high-speed optical interconnect networks.
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