Lightwave Logic Provides Web Access for its Forthcoming Annual Meeting of Shareholders on May 20, 2016
PR Newswire - Wed May 11, 9:00AM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that it is providing a URL to access its forthcoming annual meeting of shareholders to be held on May 20, 2016.
Lightwave Logic Announces Annual Meeting of Stockholders to be Held in Boulder, Colorado on May 20, 2016
PR Newswire - Thu Mar 24, 9:30AM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that the Company has scheduled its 2016 annual meeting of stockholders to be held in Boulder, Colorado on May 20, 2016.
Lightwave Logic, Inc. Secures $20MM Common Stock Purchase Agreement with Longstanding Investor Lincoln Park Capital Fund, LLC.
PR Newswire - Mon Feb 01, 10:27AM CST
Lightwave Logic, Inc. (OTCQB: LWLG) (Lightwave"
Lightwave Logic's organic electro-optic polymers surpass 4,000 hours of photochemical stability testing
M2 - Fri Jan 22, 7:11AM CST
Lightwave Logic, Inc. (OTCQB: LWLG) said that photochemical stability testing of its advanced organic electro-optic polymer materials have now exceeded 4,000 hours with little to no optical degradation of the material's properties and is well within acceptable results.
Lightwave Logic's Advanced Organic Electro-Optic Polymers Surpass 4,000 Hours Of Photochemical Stability Testing
PR Newswire - Tue Jan 19, 9:00AM CST
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that photochemical stability testing of its advanced organic electro-optic polymer materials have now exceeded 4,000 hours with little to no optical degradation of the material's properties and is well within acceptable results.
Lightwave Logic Provides Open Letter to Shareholders Summarizing Recent Business and Scientific Progress and Outlook for the Future
PR Newswire - Wed Dec 02, 1:37PM CST
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of a Next Generation Non Linear Optical Polymer Materials Platform for applications in high speed fiber-optic data communications, telecommunications and optical computing, announced today that it has posted an open letter to shareholders summarizing the business and scientific accomplishments during 2015 along with an outlook for the future. The letter can be found at the following URL:
Lightwave Logic Successfully Fabricates Organic Polymer Ridge Waveguide Structures
PR Newswire - Thu Nov 12, 8:00AM CST
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that it has successfully completed the fabrication of organic polymer ridge waveguide structures with its core material and has now begun passive testing.
Dr. Michael Lebby Shares His Vision of the Future of Integrated Photonics at Industry Conferences
PR Newswire - Tue Oct 13, 9:08AM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that Dr. Michael Lebby, one of the foremost opinion leaders in the photonics industry and board member of the Company addressed industry executives both at the PIC (Photonic Integrated Circuit) conference in Eindhoven, South of the Netherlands on September 23, 2015, and the data center symposium at ECOC organized by Phoxtrot - the European funded consortium on data centers in Valencia, Spain on September 29, 2015.
Lightwave Logic's Advanced Organic Electro-Optic Polymers Surpass 2,000 Hours Of Thermal Aging At 110 Degrees Celsius With Little To No Degradation Of Material Properties
PR Newswire - Wed Aug 05, 8:00AM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today testing of its advanced organic electro-optic polymer materials have exceeded 2,000 hours of thermal aging at 110 degrees Celsius without degradation of electro-optic activity (R33).
Lightwave Logic Announces the Completion of a $2,000,000 Capital Raise with Private Investors
PR Newswire - Mon Jun 15, 1:59PM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that the Company has successfully completed a $2,000,000 capital raise with the sale of common stock to further fund its operating and R&D expenses. Details regarding the offering are contained within the Company's Form 8-K filed on June 15, 2015.
Lightwave Logic To Hold Annual Meeting of Shareholders in Boulder, Colorado on May 15, 2015
PR Newswire - Mon May 04, 11:48AM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that the Company will hold its annual meeting of shareholders in Boulder, Colorado on Friday, May 15, 2015
Lightwave Logic Announces Current Thermal Aging Results Exceed Commercial Requirements
PR Newswire - Tue Mar 31, 10:58AM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that it has dramatically advanced the commercial feasibility of its organic electro-optical photonic device program.
Lightwave Logic's Organic Polymer Thermal Aging Testing Indicates Decades of Operational Performance
PR Newswire - Mon Jan 12, 10:17AM CST
Lightwave Logic, Inc. (OTCQB: LWLG, the "Company" or "Lightwave"
Lightwave Logic Announces Preliminary Durability Test Results That Exceed Industry Standards
PR Newswire - Thu Dec 18, 9:00AM CST
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of Next Generation Photonic Devices and Non-Linear Optical Polymer Materials Systems for applications in high speed fiber-optic data communications and optical computing, announced today that the Company has conducted several preliminary tests to demonstrate aging characteristics of its organic, nonlinear electro-optic polymer materials.
Lightwave Logic Prepares Pilot Run of Bleached Waveguide Modulators for Performance Testing
PR Newswire - Thu Oct 30, 9:30AM CDT
Lightwave Logic, Inc. (OTCQB: LWLG), a technology company focused on the development of next-generation photonic devices and non-linear optical polymer materials for applications in high speed fiber-optic data communications and optical computing, today announced that it will subject its pilot run of bleached waveguide modulators to performance testing. The Company has estimated the market for its bleached waveguide modulators at $300 million in the telecom long haul and extended metro market alone, which includes several multinational companies Lightwave Logic is targeting as future customers or joint development partners.