赛勒科技荣获“Best Technology Winner” 奖项

第24届中国光网络研讨会(Optinet China 2024),于2024年6月19日-20日在北京粤财JW万豪酒店成功举办,本届会议围绕“智能光网-新场景·新动能”,汇聚了业界热衷于塑造光通信未来的专家、学者和专业人士,共同研讨、交流。

赛勒科技联合创始人高小婷女士,在研讨会发表题为“硅光技术赋能人工智能时代”主题演讲,她提到硅光技术,正以其高速传输、低功耗和高集成度的优势,成为人工智能场景光传输的主流方案。人工智能网络需要用到大量的800G光模块。而800G光模块的实现方案,不管是标准的可插拔模块,还是LPO或是CPO,硅光都是一个非常适合的技术。赛勒目前已经实现了800G硅光调制器芯片的量产。下一代的微环的调制器也已经实现了比较出色的性能。赛勒的硅光技术从今天来看已经是一个成熟的技术,完全可以支持大规模的应用和量产。

值得欣喜的是,赛勒科技凭借在硅光技术领域的卓越创新和技术实力,在来自世界各国初创公司国际竞赛中,荣获了最佳技术奖!衷心感谢各界同仁和合作伙伴的支持与信任,赛勒科技将继续致力于硅光技术的研发和应用,推动行业进步,为智能光网和人工智能时代的到来贡献更多力量!

会议期间与世界各地的行业领袖、光通信专家和专业人士分享知识和见解,促进有价值的合作,探索新的商业机会。特别感谢LightCounting现场提供了展桌,使我们有机会与来访者进行友好的交流和合作探讨。

联合剑桥科技|赛勒科技将在2024年度光纤通信大会(OFC)上发布新型800G硅光引擎

随着在AI集群的大规模部署,市场对大吞吐低延迟的数据传输需求持续加速,终端客户800G光模块需求大大超越预期。2024年3月21日,南通赛勒光电科技有限公司(以下简称“赛勒科技“)正式发布其针对AI集群和数据中心的新一代产品——新型高性能800G硅光引擎!该产品将于美国圣地亚哥举行的2024年度光纤通信大会(OFC)期间展示,展会时间为3月26日-3月28日。OFC作为全球光通信领域规格最高、影响力最大的国际性盛会,赛勒科技将与合作伙伴上海剑桥科技股份有限公司, 以下简称(“剑桥科技”)携手亮相,进行800G高速光模块(QSFP-DD 800和OSFP 800)动态联展,合作伙伴剑桥科技展位号为2213。

现场展示采用了赛勒科技—新型高性能硅光引擎的两款800G光模块:800G QSFP-DD DR8和800G OSFP DR8。该引擎集成了高速硅光调制器芯片,光纤阵列,以及两个连续波(CW)激光器,每个激光器可支持四个通道。800G硅光调制器芯片在5.5mmx5.5mm的尺寸上集成了多个调制器、分光器、波导和耦合结构,可对以8个单通道为100Gb/s PAM4信号进行高速的光学调制。

对于这次联展,剑桥科技光电子市场销售部副总经理韩凤永表示:”我们很高兴能与赛勒科技合作此次重要的现场演示,这对双方来说都是一个重要的里程碑。 硅光子技术作为800G 及以上速率光模块的主流技术,能很好地满足日益增长的高容量、低成本和低功耗的需求。赛勒科技最新的硅光产品能够充分满足这些需求,帮助客户大大缩短产品上市时间。”

展会现场演示的DR8 800G硅光模块,其性能极大超越了IEEE P802.3df D2.0对800GBASE-DR8的光接口规范要求, TX眼图如下:

赛勒科技致力于为全球客户提供高性能,高可靠性和最优的成本解决方案,展现出了持续创新和领先技术的实力。其设计的集成硅光芯片,性能出色,能够快速大规模量产,极大地降低了客户光学器件成本。凭借这些优势,赛勒科技的集成硅光芯片,将成为800G及以上速率应用中极具竞争力的选择,为AI集群的大规模部署和数通的速率升级提供重要的支持。

[2023]CFCF专访:赛勒光电的硅光技术趋于成熟

6/15/2023,光纤在线讯,赛勒科技联合创始人&COO高小婷女士今年为CFCF带来主题为《硅光技术赋能人工智能时代》的演讲。

在演讲中,她提到,人工智能网络需要用到大量的800G光模块。800G光模块的实现方案,不管是标准的可插拔模块,还是CPO或是LPO,硅光都是一个非常适合的技术。赛勒目前已经实现400G硅光芯片的量产和800G硅光芯片的Demo。赛勒的硅光技术从今天来看已经是一个成熟的技术,完全支持大规模的应用和量产。

曾几何时,硅光技术还被认为是中国厂商很难跟进的技术。高总关于赛勒的硅光技术和产品已经成熟的说法令人振奋。CFCF2023上,光纤在线编辑对高总进行了专访。高总告诉编辑,赛勒的100G和400G硅光芯片都已经实现了批量交付,而800G硅光芯片也在今年的OFC上与客户一同进行了展示。“我们已经准备好了。我们肯定是这个领域中前几位的芯片供应商。”高总这样说。

如何解读高总所说的这种成熟。高总的解释是一个成熟的产品第一要方便、好用;第二性能上要能够克服之前的短板,比如对输入信号摆幅的要求,耦合插损过大的问题以及封装优化的问题等。关于前者,去年11月,赛勒宣布他们使用其自主研发的硅光调制器芯片的400G DR4模块,成功实现业界领先的全温小于7.6W的极低功耗。而关于后者,继北美厂商之后,赛勒凭借领先的无源耦光技术也已经很好地解决了这些问题。对于当前的几大热点技术,比如CPO、LPO等。在高总看来硅光都更具优势。硅光调制器比EML和DML更好的线性度对于支持线性直驱LPO方案的实现非常有利。

对于硅光的竞争技术薄膜铌酸锂材料,高总称赞这是非常有希望的技术,但是这并不代表硅光会被取代。未来一定是多种技术并存的时代。薄膜铌酸锂最大限制是不能集成无源器件,其次是目前尺寸还比较大,生产上良率也有问题。相比之下,硅光在这些方面目前都比较有优势。而且原来被认为是硅光的一个限制的调制速率上不去的问题现在也不是难事。今年OFC上就有多个突破200G的硅光调制器方案的展示。

对于硅光技术的发展,除了芯片设计上的技术问题,还离不开制造的问题。Fab的工艺能力和工艺的稳定性是可量产性的主要因素。高总表示,赛勒目前合作的Fab工艺能力强且稳定性极好。“只有同时满足性能,成本,可生产性以及可靠性的要求,硅光技术才能真正获得市场认可。” 800G的时代,硅光技术能否能够获得最大份额,还需要合适的时机。但不管怎么样,赛勒已经做好了准备。

文章来源:【CFCF2023专访:赛勒光电的硅光技术趋于成熟光纤在线

[2023]赛勒科技将在OFC2023 |展会上隆重发布其800G硅光芯片及光引擎产品

3/02/2023,光纤在线讯,南通赛勒光电科技有限公司(简称“赛勒科技“),今日宣布其针对数据中心与通信市场研发的新产品—800G硅光引擎,将在2023年度美国光通信大会 (OFC, 3/7-9) 与合作伙伴索尔思光电以800G高速光模块形式进行动态联展,合作伙伴索尔思展位号3029。

SiLUX Technologies Teams Up with Source Photonics to Launch its 800G SiPh Optical Engine During Optical Fiber Communication 2023 Conference

Fully validated design accelerates customer time to market for 800G pluggable transceivers in hyperscale Data centers

Shanghai, March.02, 2023 – SiLUX Technologies Inc. (“SiLUX”), the designer and developer of silicon Photonic Integrated Circuits (PICs) and optical engine for the data center and telecommunication markets, today announced that it will conduct a live demonstration of its 800G optical engine together with its partner Source Photonics Inc. (“Source”) in QSFP-DD800 form factor. The live demonstration will take place at booth #3029 during the upcoming OFC’23 Conference in San Diego, CA from March 7 – 9, 2023.

The 800G optical transceiver module owned by Source Photonics is integrated with SiLUX’s novel high performance silicon photonics (SiPho) optical engine, which incorporates SilUX’s Silicon Photonic Modulator PIC with a small size of 6.5mmx5.25mm and two continuous wave (CW) lasers that each supports four lanes. The 800G Sipho Modulator PIC monolithically integrates multiple modulators, splitters, waveguides and coupling structures, and enables high-speed modulation of light operating at 100Gb/s PAM4 signaling for data transmission.

The demonstrated 800G DR8 Sipho transceivers are designed to work seamlessly with Source Photonics’ industrial leading CW laser chips. It exceeds the optical interface specifications of IEEE P802.3df D2.0 for 800GBASE-DR8. It supports links over 500m and 2km for fiber breakout into 100GBASE-DR1 and 100GBASE-FR1. It leverages the state of the art 5nm DSP silicon and is packaged into type 2 QSFP-DD800 form-factor with dual MPO-12 connectors.


“We are happy to team up with SiLUX for this critical live demonstration, which represents a key milestone for each company,” said Dr. Frank Chang, Chief Engineer and CTO of Source Photonics Inc. “Future 800G optical transceivers reply on silicon photonics to address the increasing need for high capacity density and energy efficiency at lower cost. Together with our partners in the industry, we are thrived to bring high reliability and compelling cost per bit solution to our customers worldwide. The fully integrated PICs designed by SiLUX will result in lower cost and the ability to rapidly scale production. With these advantages, SiPho technologies will remain a very competitive choice for 800G application and the potential in 1.6T and beyond, and will continuously catch the attention of leading systems companies and hyperscale data centers all over the world.”

About Silux Technologies Co., Ltd.
Silux Technologies Co., Ltd. (SiLUX) is a Chinese company located in Shanghai, China. SiLUX is focusing on silicon-photonics-based technologies, providing a wide variety of PICs (photonic integrated circuits) for the data center and tele-communication markets. SiLUX also offers optical engines/solutions to customers with leading edge technologies both on chip’s performance and ease of packaging. The solutions will enable customer to develop silicon photonics-based products quickly and easily improving time to market and component costs. At SiLUX, we are committed to consistently striving to helping our customers achieve high speed, high quality and cost-effective network solutions with innovative silicon photonics technologies. More information is available at www.siluxtek.com.

About Source Photonics Inc.
As a leading global provider of innovative and reliable technology solutions for communications and data connectivity, we add value to our customers by developing next-generation solutions that enable their growth by meeting the rapidly increasing demands of cloud infrastructure, wireless communications, routing, and fiber-to-the-premises applications worldwide. Through lean management, manufacturing, and our Source Lean Quality (SLQ) system, we run our world-class operation at maximum efficiency, identifying and eliminating waste in our processes to create more value for our customers. Our technical expertise in R&D runs deep with manufacturing process development expertise and highly specialized engineering teams based around the globe — experts in optoelectronic devices, optical subassembly, and module design. Source Photonics is headquartered in West Hills, CA and has key R&D and manufacturing facilities in California, Taiwan, Shanghai, Chengdu, and Jintan, China. More information may be obtained at www.sourcephotonics.com.

This news release contains “forward-looking information” (within the meaning of applicable China securities laws) and “forward-looking statements” (within the meaning of the U.S. Private Securities Litigation Reform Act of 1995). Such statements or information are identified with words such as “anticipate”, “believe”, “expect”, “plan”, “intend”, “potential”, “estimate”, “propose”, “project”, “outlook”, “foresee” or similar words suggesting future outcomes or statements regarding any potential outcome. Such statements include the Company’s expectations with respect to the success of the Company’s product development efforts, the performance of its products, the expected results of its operations, meeting revenue targets, and the expectation of continued success in the financing efforts, the capability, functionality, performance and cost of the Company’s technology as well as the market acceptance, inclusion and timing of the Company’s technology in current and future products.

Such forward-looking information or statements are based on a number of risks, uncertainties and assumptions which may cause actual results or other expectations to differ materially from those anticipated and which may prove to be incorrect. Assumptions have been made regarding, among other things, management’s expectations regarding the success and timing for completion of its development efforts, financing activities, future growth, recruitment of personnel, opening of offices, the form and potential of its joint venture, plans for and completion of projects by the Company’s third-party consultants, contractors and partners, availability of capital, and the necessity to incur capital and other expenditures. Actual results could differ materially due to a number of factors, including, without limitation, the failure of its products to meet performance requirements, lack of sales in its products, once released, operational risks in the completion of the Company’s anticipated projects, lack of performance of its joint venture, delays in recruitment for its newly opened operations or changes in plans with respect to the development of the Company’s anticipated projects by third-parties, risks affecting the Company’s ability to execute projects, the ability of the Company to generate sales for its products, the ability to attract key personnel, and the ability to raise additional capital. Although the Company believes that the expectations reflected in the forward-looking information or statements are reasonable, prospective investors in the Company’s securities should not place undue reliance on forward-looking statements because the Company can provide no assurance that such expectations will prove to be correct. Forward-looking information and statements contained in this news release are as of the date of this news release and the Company assumes no obligation to update or revise this forward-looking information and statements except as required by law.

[2022]赛勒科技硅光调制器芯片成功推出400G (DR4) 低功耗解决方案

近日,南通赛勒光电科技有限公司(Silux Technologies Co., Ltd., 以下简称“赛勒科技”)宣布,其自主研发的硅光调制器芯片,可大大降低光模块的功耗,实现了光模块全温小于7.6W的较低功耗。为数据中心日趋严重的能耗问题提供了新的解决方案,同时,也标志着赛勒科技在技术创新上的又一重大突破。

该技术方案因极低的功耗和出色的调制器性能。目前,已完成若干主要客户侧的验证工作并获得订单。

400G解决方案眼图

随着互联网和5G的发展,光传输市场的规模持续快速增加。同时,技术迭代和更新也变得更快,尤其是超大型数据中心在全球范围的快速建设。近年来,数据中心内部的传输距离不断加大, 且大带宽的要求日益迫切,数据中心向400G/800G高速传输的切换已全面启动。与此同时,硅光技术因其可以大规模的将诸多分立光学器件集成到一颗芯片上,在400G/800G及以上的高速市场具有较大的优势, 从而成为主流厂商在高速应用场景的优先选择。

赛勒科技致力于硅光芯片与解决方案的研发和产品化,此次400G低功耗解决方案的实现,充分展现了公司的技术在快速进入目标市场过程中所发挥的巨大优势。未来,赛勒科技将持续发力,进一步加快产品化节奏,不断保持市场营收的高速增长。