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Lightwave Logic and Polariton Technologies Expand Technical Partnership to Accelerate Introduction of 400Gb/s per lane and beyond for AI and Datacenter Optical Links
LWLGLightwave Logic(LWLG) Prnewswire·2025-03-10 20:01

Core Viewpoint - Lightwave Logic, Inc. and Polariton Technologies AG are advancing their collaboration to develop high-speed electro-optic solutions by combining plasmonics and electro-optic polymers, aiming to enhance data transmission capabilities for next-generation AI applications [1][3]. Group 1: Collaboration Details - The partnership will focus on developing technical solutions for faster adoption of combined plasmonics and polymer-based products, including manufacturing transmitter photonic integrated circuits (PICs) with superior electro-optic performance [2]. - Both companies will engage in extensive qualification and reliability programs, high-speed RF and optical testing, and back-end manufacturing process integration [2]. Group 2: Technological Advancements - The collaboration aims to address bandwidth and form factor limitations of traditional materials, enabling modulation frequencies of up to 800 GHz in the future [3]. - Applications are targeted at next-generation AI clusters and optical networking links, with capabilities to deliver 400 Gb/s per lane and scale to 800 Gb/s per lane, critical for achieving future bandwidths of 3.2 Tb/s and 6.4 Tb/s [3]. Group 3: Product Development - Polariton has developed O-band products utilizing Lightwave Logic's electro-optic polymer, which are currently available for sampling with select customers [4]. - Lightwave Logic's high-performance electro-optic polymer materials are integral to the development of innovative solutions for telecommunications and data transmission, particularly in support of generative AI [5]. Group 4: Company Profiles - Lightwave Logic, Inc. specializes in engineered electro-optic polymers for high-speed data transmission with lower power consumption [5]. - Polariton Technologies AG designs and manufactures high-performance photonic integrated circuits for ultra-high-bandwidth and low-power applications across various markets, including communication and quantum technologies [6].