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Lightwave Logic Provides First Quarter 2024 Corporate Update

Lightwave Logic Provides First Quarter 2024 Corporate Update

Lightwave Logic 提供 2024 年第一季度公司最新情况
PR Newswire ·  05/13 08:31

Dr. Michael Lebby to Host Corporate Update Presentation, Tour of Englewood Facility and Live Device Demonstration Following Annual Meeting of Shareholders on May 22, 2024

迈克尔·莱比博士将在2024年5月22日年度股东大会之后主持公司更新演讲、恩格尔伍德设施参观和现场设备演示

ENGLEWOOD, Colo., May 13, 2024 /PRNewswire/ -- Lightwave Logic, Inc. (NASDAQ: LWLG), a technology platform company leveraging its proprietary electro-optic (EO) polymers to transmit data at higher speeds with less power in a small form factor, today provided a corporate update in conjunction with the filing of its Quarterly Report on Form 10-Q for the first quarter ended March 31, 2024.

科罗拉多州恩格尔伍德,2024年5月13日 /PRNewswire/ — Lightwave Logic, Inc.(纳斯达克股票代码:LWLG)是一家技术平台公司,利用其专有的电光(EO)聚合物以更高的速度以更小的功率传输数据,今天提供了公司最新情况,同时提交了截至2024年3月31日的第一季度10-Q表季度报告。

First Quarter 2024 and Subsequent Company Highlights:

2024 年第一季度及随后的公司亮点:

  • Over 20 major corporations have viewed Lightwave Logic's technology demo of our polymer modulators with world-class performance of 200Gbps at 1V drive voltage.

  • Provided details on how polymer modulators are now being fabricated on standard industry 200mm silicon wafers at a commercial silicon foundry

  • Demonstrated thought leadership with critical contributions to the recently published global "Integrated Photonics System Roadmap - International" (IPSR-I) to accelerate the high-volume commercial manufacturing of high-value integrated photonics over the next decade and beyond.

  • Secured new patent for diamondoid non-linear optical chromophore patent to improve stability and performance of Lightwave's proprietary polymer materials for datacenter applications to address increasing generative AI demand across the internet.

  • Achieved world-class performance of the company's Perkinamine EO polymer material operating in an optical interconnect link, at 437.1Gbps employing a PAM8 178GBaud signal encoded by a plasmonic Mach Zehnder modulator (MZM).

  • Invited to present the company's latest polymer results at the 2024 International Optical Fiber Conference (OFC) in San Diego, California.

  • As of March 31, 2024, the company had cash and cash equivalents of $31.5 million, enabling the company to finance operations through August 2025.

  • Invited to speak at leading industry and investor conferences internationally, including the 36th Annual ROTH Conference, LD Micro New York Invitational XIV, and the Sequire Puerto Rico Investor Summit

  • 20多家大公司已经观看了Lightwave Logic的技术演示,该聚合物调制器在1V驱动电压下具有世界一流的200Gbps性能。

  • 详细介绍了一家商业硅铸造厂目前如何在标准工业200mm硅晶圆上制造聚合物调制器

  • 展现了思想领导力,对最近发布的全球 “集成光子学系统路线图——国际”(IPSR-I)做出了重要贡献,该路线图旨在在未来十年及以后加快高价值集成光子学的大批量商业制造。

  • 获得了金刚石非线性光学发色团专利的新专利,以提高用于数据中心应用的Lightwave专有聚合物材料的稳定性和性能,以满足互联网上日益增长的生成式人工智能需求。

  • 该公司在光互连链路中运行的PERKINAMINE EO聚合物材料实现了世界一流的性能,采用了由等离子体马赫·曾德尔调制器(MZM)编码的PAM8 178Gbaud信号,速度为437.1Gbps。

  • 受邀在加利福尼亚州圣地亚哥举行的2024年国际光纤会议(OFC)上介绍公司的最新聚合物成果。

  • 截至2024年3月31日,该公司的现金及现金等价物为3,150万美元,这使公司能够在2025年8月之前为运营提供资金。

  • 受邀在国际领先的行业和投资者会议上发表演讲,包括第36届年度ROTH会议、LD Micro纽约邀请赛十四和Sequire波多黎各投资者峰会

The full text of the Company's Quarterly Report on Form 10-Q for the quarter ended March 31, 2024 was filed with the SEC on May 10, 2024 and can be found here.

公司截至2024年3月31日的季度10-Q表季度报告的全文已于2024年5月10日向美国证券交易委员会提交,可在此处找到。

Management Commentary

管理层评论

"The first quarter of 2024 demonstrated our continued leadership in the photonics industry with world class performance for our technologies and critical contributions to the new global integrated photonics industry roadmap," said Dr. Michael Lebby, Chairman and Chief Executive Officer of Lightwave Logic.  "These accomplishments serve as highlights for ongoing engagement with a wide spectrum of companies to discuss additional licensing agreements for our EO polymer materials, including innovative start-ups, existing OEMs and tier-1 multinational corporations that have optical network systems businesses designed to address emerging applications including generative AI.

Lightwave Logic董事长兼首席执行官迈克尔·莱比博士表示:“2024年第一季度展现了我们在光子学行业的持续领导地位,我们的技术表现世界一流,对新的全球综合光子学行业路线图做出了重要贡献。”“这些成就为持续与各行各业的公司进行合作的亮点,这些公司讨论我们的环氧乙烷聚合物材料的额外许可协议,包括创新型初创企业、现有原始设备制造商和拥有光网络系统业务旨在解决生成式人工智能等新兴应用的一级跨国公司。

"The latest world-class performance of our Perkinamine EO polymer material was recently achieved operating in an optical interconnect link, at 437.1Gbps employing a PAM8 178GBaud signal encoded by a plasmonic Mach Zehnder modulator (MZM). The data center industry is currently focused on exceeding 200Gbps per lane, primarily driven by generative AI opportunities. 200Gbps per lane with 4 lanes is a current interest for 800Gbps pluggable transceiver manufacturing, which our company's EO polymers have easily achieved. This world-class result, achieving data rates of 400Gbps per lane, demonstrates that our company's EO polymers are capable of exceeding double the current industry expectation. This has the potential to enable 4 channel 1.6Tbps (1600Gbps) pluggable transceiver modules, which is on the roadmap of datacenter operators today.

“我们的珀金胺环氧乙烷聚合物材料最近实现了在光互连链路中运行的最新世界级性能,该链路采用了由等离子体马赫曾德尔调制器(MZM)编码的PAM8 178Gbaud信号,速度为437.1Gbps。数据中心行业目前的重点是每通道超过200Gbps,这主要是由生成式人工智能机会推动的。800Gbps可插拔收发器制造业目前有兴趣制造800Gbps的可插拔收发器,而我们公司的EO聚合物很容易就能实现这一目标。这一世界一流的结果实现了每通道400Gbps的数据速率,表明我们公司的环氧乙烷聚合物能够超过当前行业预期的两倍。这有可能启用 4 通道 1.6Tbps (1600Gbps) 可插拔收发器模块,这已出现在当今数据中心运营商的路线图上。

"At the 2024 Optical Fiber Conference (OFC) we discussed more world-class results based on a novel packaged heterogeneous polymer EO modulator design leveraging silicon photonics devices from a 200mm production foundry process and our proprietary high temperature, high performance EO polymer material. Each modulator was operated at 100GBaud PAM4 and achieved all drive voltages below 2V, and as low as 1V, which is excellent for low power operation. This demonstrates that a hybrid approach, leveraging the cost and integration benefits of silicon photonics along with the unparalleled bandwidth and low power advantages of our proprietary EO polymers, lays a clear path for competitive performance and integration for today's and future optical pluggable transceivers. These results will position us to support the burgeoning demand of generative AI as datacenters around the world begin to upgrade their hardware faster than expected to meet the demands of the future.

“在2024年光纤大会(OFC)上,我们讨论了基于一种新型封装异构聚合物EO调制器设计的更多世界一流成果,该设计利用了来自200mm生产铸造工艺的硅光子学器件以及我们专有的高温、高性能 EO 聚合物材料。每个调制器均在 100gBaud PAM4 下运行,所有驱动电压均低于 2V,低至 1V,非常适合低功耗运行。这表明,混合方法利用硅光子学的成本和集成优势,以及我们专有环氧乙烷聚合物无与伦比的带宽和低功耗优势,为当今和未来的可插拔光学收发器的竞争性能和集成铺平了明确的道路。随着世界各地的数据中心开始以超出预期的速度升级硬件,以满足未来的需求,这些结果将使我们能够支持不断增长的生成人工智能需求。

"A new patent during the quarter advances the overall performance of our EO chromophores and their use in high-speed, low power and commercial-grade EO polymer modulators. The proprietary chromophores are designed with Diamondoid molecular groups that are attached to the chromophore. Results show that when these chromophores are dispersed in a host polymer matrix, the EO materials result in improved macroscopic EO properties, increased poling efficiency, increased loading as well as increased stability of these materials after poling. We see this material as a key component for next generation 800Gbps and 1600Gbps pluggable optical transceiver modules that further support the rise of generative AI and upgrading of datacenter hardware equipment.

“本季度的一项新专利提高了我们的EO发色团的整体性能及其在高速、低功耗和商用级EO聚合物调制器中的应用。专有的发色团是使用附着在发色团上的金刚石分子基团设计的。结果表明,当这些发色团分散在宿主聚合物基体中时,环氧树脂材料可改善宏观环氧乙烷特性,提高极化效率,增加负荷,并提高这些材料在极化后的稳定性。我们将这种材料视为下一代800Gbps和1600Gbps可插拔光学收发器模块的关键组件,这些模块进一步支持生成式人工智能的兴起和数据中心硬件设备的升级。

"Highlighting our leadership position, we substantially contributed to the recently published "Integrated Photonics System Roadmap - International" (IPSR-I) to accelerate the high-volume commercial manufacturing of high-value integrated photonics over the next decade and beyond. The requirements included in the roadmap comprise the commercial factors that will compose and grow the accelerating photonics industry going forward for all companies, with our focus on our Perkinamine Electro-Optic polymers. The integrated photonics roadmaps both plan and anticipate commercial opportunities as well as potential roadblocks and/or critical needs on the way to scaling the manufacturing of integrated photonics through 2040. The silicon semiconductor industry has relied on these types of roadmaps for the past 50 years and with IPSR-I, the photonics industry is becoming organized and more influential as well.

“我们为最近发布的 “集成光子学系统路线图——国际”(IPSR-I)做出了重大贡献,该路线图旨在在未来十年及以后加快高价值集成光子学的大批量商业制造,这突显了我们的领导地位。路线图中包含的要求包括商业因素,这些因素将构成并发展所有公司未来的光子学行业,而我们的重点是Perkinamine Electro-Optic聚合物。集成光子学路线图既规划又预测商业机会,以及到2040年扩大集成光子学制造规模的潜在障碍和/或关键需求。在过去的50年中,硅半导体行业一直依赖这些类型的路线图,有了IPSR-I,光子学行业变得越来越有条理,影响力也越来越大。

"Taken together, in our conversations with potential customers, we are highlighting how our polymers are fast, low power and robust in a smaller footprint. We are also providing reliability data and demonstrating our ability to produce at scale with our facilities expansion in 2023. Given our robust cash position with no debts - we believe that we are well positioned to serve as a value-added partner in the quarters and years to come. We hope many of you will join us at our Annual Shareholder Meeting on May 22, 2024 which will be followed by a tour of our Englewood facility and a device demonstration," concluded Lebby.

“总而言之,在与潜在客户的对话中,我们将重点介绍我们的聚合物如何在较小的占地面积内快速、低功耗和坚固耐用。我们还提供可靠性数据,并证明我们有能力在2023年扩建设施时进行大规模生产。鉴于我们没有债务的强劲现金状况,我们相信我们完全有能力在未来几个季度和几年中成为增值合作伙伴。我们希望你们中的许多人能加入我们,参加2024年5月22日的年度股东大会,随后将参观我们的恩格尔伍德工厂并进行设备演示,” 莱比总结道。

Benzinga All-Access Interview

Dr. Michael Lebby, Chairman and Chief Executive Officer of Lightwave Logic, will host a fireside chat at 10:50 a.m. Eastern time today with the hosts of the Benzinga All-Access show to discuss the Company's first quarter 2024 corporate updates, recent milestone achievements and potential near-term catalysts. To watch the interview, please refer to the access information below.

Benzinga 全方位访谈

Lightwave Logic董事长兼首席执行官迈克尔·莱比博士将于美国东部时间今天上午10点50分与Benzinga All-Access展的主持人进行炉边谈话,讨论公司2024年第一季度公司最新情况、最近的里程碑成就和潜在的短期催化剂。要观看采访,请参阅下面的访问信息。

Benzinga All-Access Show
Date: Monday, May 13, 2024
Presentation Time: 10:50 a.m. Eastern time
Webcast:  youtube.com/wat...
An audio webcast and an archived replay will be available using the webcast link above.

Benzinga 全方位节目
日期:2024 年 5 月 13 日星期一
演讲时间:美国东部时间上午 10:50
网络直播:youtube.com/wat...
将使用上面的网络直播链接提供网络音频直播和存档重播。

About Lightwave Logic, Inc.

关于 Lightwave Logic, Inc.

Lightwave Logic, Inc. (NASDAQ: LWLG) develops a platform leveraging its proprietary engineered electro-optic (EO) polymers to transmit data at higher speeds with less power in a small form factor. The company's high-activity and high-stability organic polymers allow Lightwave Logic to create next-generation photonic EO devices, which convert data from electrical signals into optical signals, for applications in data communications and telecommunications markets. For more information, please visit the company's website at .

Lightwave Logic, Inc.(纳斯达克股票代码:LWLG)开发了一个平台,该平台利用其专有的工程电光(EO)聚合物,在小尺寸内以更低的功率以更高的速度传输数据。该公司的高活性和高稳定性有机聚合物使Lightwave Logic能够制造下一代光子EO器件,将数据从电信号转换为光信号,用于数据通信和电信市场。欲了解更多信息,请访问该公司的网站。

Safe Harbor Statement

安全港声明

The information posted in this release may contain forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. You can identify these statements by use of the words "may," "will," "should," "plans," "explores," "expects," "anticipates," "continue," "estimate," "project," "intend," and similar expressions. Forward-looking statements involve risks and uncertainties that could cause actual results to differ materially from those projected or anticipated. These risks and uncertainties include, but are not limited to, lack of available funding; general economic and business conditions; competition from third parties; intellectual property rights of third parties; regulatory constraints; changes in technology and methods of marketing; delays in completing various engineering and manufacturing programs; changes in customer order patterns; changes in product mix; success in technological advances and delivering technological innovations; shortages in components; production delays due to performance quality issues with outsourced components; those events and factors described by us in Item 1.A "Risk Factors" in our most recent Form 10-K and 10-Q; other risks to which our company is subject; other factors beyond the company's control.

本新闻稿中发布的信息可能包含1995年《私人证券诉讼改革法》所指的前瞻性陈述。你可以使用 “可能”、“将”、“应该”、“计划”、“探索”、“期望”、“预期”、“继续”、“估计”、“项目”、“打算” 等词语来识别这些陈述。前瞻性陈述涉及风险和不确定性,可能导致实际结果与预期或预期的结果存在重大差异。这些风险和不确定性包括但不限于缺乏可用资金;总体经济和商业状况;来自第三方的竞争;第三方的知识产权;监管限制;技术和营销方法的变化;各种工程和制造计划的延迟;客户订单模式的变化;产品结构的变化;技术进步和交付技术创新的成功;组件短缺;由于性能质量问题导致的生产延迟外包组件;我们在最新的 10-K 和 10-Q 表第 1.A 项 “风险因素” 中描述的事件和因素;我们公司面临的其他风险;公司无法控制的其他因素。

Investor Relations Contact:
Lucas A. Zimmerman
Managing Director
MZ Group - MZ North America
949-259-4987
[email protected]

投资者关系联系人:
卢卡斯·A·齐默尔曼
董事总经理
MZ 集团-MZ 北美
949-259-4987
[电子邮件保护]

SOURCE Lightwave Logic, Inc.

来源 Lightwave Logic, Inc.

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