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Re: x993231 post# 88933

Tuesday, 01/04/2022 9:51:13 PM

Tuesday, January 04, 2022 9:51:13 PM

Post# of 201524
I just had to reread the Monday PR after having some quiet time and a Bourbon and realize you are right, as the 2-3x faster transmission speeds (as we already knew) is now complimented by not just 2x lower power, but 2-3x lower power than "incumbent technologies in-use today". Those that understand this news would give the stock a good 20% or much bigger boost as the energy savings is now protected by a patent and has increased another "x" from 2 to up to 3x. These chromophores are "elegant materials" as stated by Dr. Lebby, and based on their natural evolution are being amplified by the material scientists working on them to create incredible and powerful speed and low power solutions to today's data/sensor transmission/energy reduction needs. In some ways Dr. Lebby has the appearance, nature, drive and intellect, in my mind, of a Stephen Jobs type of technology leader. This is going to be a very fun and exciting Lightwave revolution. I'm staying put in this Lightwave capsule.


"The materials chemistry invention is to advance the performance of the Company's electro-optic chromophores and their use in high-speed electro-optical modulators, which are designed to drive data rates 2-3x faster and with 2-3x lower power than incumbent technologies in-use today.

and.....

Dr. Michael Lebby, Chief Executive Officer of Lightwave Logic, commented: "This patent application conveys the world-class work being done at Lightwave Logic. This significantly increased performance from a chemistry and materials standpoint allows us to keep our focus on partnering with silicon foundries and seamlessly integrating our electro-optic polymers.

"In technical terms, this chromophore is important because it represents a class of materials that has extraordinary electroptic properties such as high poling efficiency and high r33. Importantly for silicon foundry applications, it is a high Tg material that exhibits ultra-high temporal stability at high chromophore loading in the bulk material, all while maintaining other essential properties like solubility and compatibility with many types of polymers. This is due to its unique structural components.

"The elegance of this materials chemistry design is perfect for integrated photonics that can be fabricated in large silicon foundries. The impact of being able to optimize our designs is clear: the potential to not only to increase data flow and data traffic on the internet, but to create energy-efficient solutions that help to support the increasingly data-heavy lifestyle of today's consumer. This exciting development positions us well as we seek to grow our relationships with partners and potential customers in 2022," concluded Lebby.
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