KYOCERA Develops Transmissive Metasurface Technology KYOCERA Develops Transmissive Metasurface Technology That Redirects Wireless Signals for Improved 5G and 6G PerformanceKyocera Corporation (President: Hideo Tanimoto) has developed a Transmissive Metasurface technology that can redirect wireless network signals in a specific direction to improve the coverage area and performance of 5G and eventually 6G networks. The Transmissive Metasurface will help deliver high-frequency millimeter-wave 5G and 6G to places where communication is impossible due to obstacles, expanding service areas beyond the capability of conventional Reflective Metasurface technologies used today. Development BackgroundThe 28 GHz band used in 5G networks, and the higher frequency band being studied for 6G, have a high degree of rectilinear propagation. Signals often cannot reach locations where a direct line of sight to the base station is obstructed. Reflective Metasurface technology offers a very limited ability to change the direction of a signal to reach these areas. To solve this issue and expand performance, Kyocera developed a new Transmissive Metasurface technology that can redirect radio waves at smaller angles to extend targeted network coverage. Features: Transmissive Metasurface Technology 1) Kyocera expands the direction in which radio signals can be
redirected 2) Proprietary Flexible Size Development 5G Test Results Kyocera is developing a Transparent Transmissive Metasurface that is more landscape-friendly and incorporates technological improvements to focus radio waves in specific locations and improve signal strength further. Additionally, the Company is developing a Reconfigurable Intelligent Surface (RIS)* that can create a smart signal environment to change the signal direction adaptively depending on the devices in use. Source: KYOCERA media announcement |