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Lightwave Logic (LWLG) is a Colorado-based material and device development company focused on commercializing organic nonlinear polymers for electro-optic devices. They aim to introduce superior speed, lower power consumption, and smaller size organic modulators for fiber-optic telecom and data communications, with extensions into sensors and optical computing. Lightwave Logic utilizes its P2IC technology platform for next-generation electro-optic photonic devices and designs organic chromophores for Electro-Optic polymer systems and photonic devices.
The company recently announced the issuance of a significant patent enhancing the stability and performance of its EO chromophores, aiming to revolutionize EO polymer modulators, operating at 200Gbps with 1V drive voltage levels. This innovation is poised to impact optical modulator devices' robustness positively, particularly in silicon foundries for high-volume manufacturing processes.
Lightwave Logic (NASDAQ: LWLG) has announced significant advancements in the photostability of its electro-optic polymer modulators, which are essential for high-volume silicon foundry processes. The new polymers demonstrated enhanced performance metrics, minimizing optical losses and providing a robust platform for commercial deployment. CEO Dr. Michael Lebby emphasized the importance of these results for network reliability and energy efficiency, allowing for faster data transmission with reduced power consumption.
Lightwave Logic, Inc. (NASDAQ: LWLG), a technology platform focused on electro-optic polymers, announced its participation in Benzinga's All Access investor event on February 11, 2022. CEO Michael Lebby will host a presentation and Q&A at 9:40 a.m. Eastern time. The event aims to showcase the company's innovations in data transmission technology, promising higher speeds and lower power consumption. Investors can access the live video webcast here, with an archived version available later on the Benzinga YouTube Channel.
Lightwave Logic, Inc. (NASDAQ: LWLG) has appointed Dr. John Zyskind as Vice President of Engineering, focusing on commercialization and partnerships with foundries. Dr. Zyskind brings extensive experience from his role at Skorpios and previous positions at Bell Laboratories and other tech firms, enhancing Lightwave's capabilities in engineering and reliability of electro-optic polymer technology. CEO Michael Lebby expressed enthusiasm about Dr. Zyskind's contributions in driving growth and shareholder value.
Lightwave Logic (NASDAQ: LWLG) announced the retirement of Dr. Joseph A. Miller from the Board of Directors, transitioning him to the Advisory Board. Dr. Craig Ciesla, previously on the Advisory Board, has been appointed to the Board. Ciesla brings extensive experience from Illumina and previous roles at Kaiam and Tactus Technology, emphasizing innovation in photonics and communications. Chairman Tom Zelibor praised Ciesla's technology expertise and business acumen as crucial for commercialization efforts. Miller, who served since 2011, will continue to advise in a new capacity.
Lightwave Logic (NASDAQ: LWLG) announced successful testing of optical grating couplers, which will be integrated into its Design Tool Kit. This development is intended to enhance the functionality of the company's modulators by enabling efficient light coupling, thus improving the efficacy of silicon photonics platforms. CEO Michael Lebby emphasized the importance of this advancement in streamlining production for foundry partners, aiming for expedited commercialization and long-term shareholder value.
Lightwave Logic, Inc. (NASDAQ: LWLG) announced the publication of its patent application 20210405504A1, enhancing the stability and performance of its electro-optic polymers. This patent significantly improves the electro-optic properties, allowing for data transmission that is 2-3 times faster and with lower power consumption compared to existing technologies. The innovative materials aim to optimize integrated photonics in silicon foundries, promising substantial advancements for data-heavy applications and energy-efficient solutions in the telecommunications market.
Lightwave Logic, Inc. (NASDAQ: LWLG) will participate in two key investor conferences in December 2021. The management team, including CEO Dr. Michael Lebby and President Jim Marcelli, will present at the ROTH 10th Annual Deer Valley Investor Conference from December 8-11 and at the Oppenheimer's 5G Summit on December 14 at 10:45 a.m. ET. Live webcasts of the presentations will be available, emphasizing the company's advancements in electro-optic polymers for high-speed data transmission.
Lightwave Logic (NASDAQ: LWLG) released a corporate update alongside its Q3 2021 financial report, reporting approximately $15 million in cash as of November 15, 2021, which is expected to fund operations through March 2023. The company achieved a world record in polymer modulator performance and expanded its patent portfolio to over 72 patents. The uplisting to the Nasdaq is seen as a milestone for enhancing liquidity and shareholder base. Management emphasizes ongoing innovations and strong collaborations for future commercialization.
Lightwave Logic, Inc. (NASDAQ: LWLG) announced its participation in two upcoming investor conferences: the ROTH 10th Annual Virtual Technology Conference and the Ladenburg Thalmann Virtual Technology Expo, both set for November 2021. CEO Dr. Michael Lebby and President Jim Marcelli will present at the Ladenburg Expo on November 18 at 11:00 a.m. Eastern Time. Attendees can access a live audio webcast of the presentation. The company specializes in electro-optic polymers that enable high-speed data transmission with reduced power consumption.
Lightwave Logic (NASDAQ: LWLG) announced that CEO Dr. Michael Lebby will deliver a keynote speech and co-moderate a session at the 5th PIC International conference in Brussels on November 8, 2021. He will discuss the significance of photonic integrated circuit (PIC) pilot lines, which are crucial for commercializing photonics integration platforms. Dr. Lebby highlighted the growing trend of integrating diverse technologies to enhance PIC performance, particularly in industries such as medical and automotive, showcasing the potential for increased wafer volume in traditional silicon foundries.
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