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The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects

author:Descendant of Ni Doll Afu Yunlin

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The R&D personnel of Hong Kong City and Chinese University have successfully made microwave photonic chips with a speed increase of 1000 times, and the application prospects are broad.

The team of Professor Wang Cheng from the Department of Electrical Engineering of City University of Hong Kong has collaborated with researchers from Chinese University of Hong Kong to successfully develop the world's leading microwave photonic chip. This chip can use optics for ultra-fast analog electronic signal processing and computing, up to 1,000 times faster than traditional electronic processors, while consuming less energy. The technology has a wide range of applications, including 5/6G wireless communication systems, high-resolution radar systems, artificial intelligence, computer vision, and image and video processing.

The successful development of this microwave photonic chip technology is of great significance, especially in terms of breaking through the technology blockade:

1. Independent innovation: Demonstrate the independent innovation capability of Hong Kong universities in the field of scientific research and reduce their dependence on external technologies.

2. Technical advantages: The advantage of 1000 times faster speed makes it more competitive in related fields and breaks through the existing technical limitations.

3. Industrial development: It provides key technical support for the development of related industries, which helps to promote industrial upgrading and innovation.

4. International Status: Hong Kong's status and influence in the international research community have been enhanced.

5. Information security: Reducing dependence on external technologies will help ensure national and regional information security.

6. Talent training: It has cultivated a group of internationally competitive scientific research talents to lay the foundation for future technological breakthroughs.

7. Technical cooperation: Increased capital and opportunities for technical cooperation with other countries and regions.

8. Economic growth: Promote the development of related industries and promote economic growth.

9. Social development: It provides technical support for the informatization and intelligent development of society.

The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects
The two universities in Hong Kong have successfully developed microwave photonic chips, which are 1,000 times faster and have broad application prospects

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