Fabric.AI files two patent applications for innovative micro-LED optical interconnect technologies, enhancing AI data center efficiency.
Quiver AI Summary
Fabric.AI, an AI infrastructure company, has filed two patent applications with the USPTO for its innovative micro-LED optical interconnect architecture aimed at enhancing bandwidth and energy efficiency in next-generation AI data centers. The patents stem from a design approach that allows imaging an entire micro-LED array using a novel optical system, streamlining the alignment process as the number of channels increases. The first application focuses on fiber-coupled optical interconnects, while the second advances this concept by transmitting data across air gaps without physical connectors, reducing assembly complexity and potential failure points. Fabric.AI continues to collaborate with Kopin Corporation on these technologies and plans to demonstrate the Neural I/o hardware in January 2027, further addressing the demands of modern AI infrastructure.
Potential Positives
- Fabric.AI has filed two significant patent applications for innovative micro-LED optical interconnect technology, indicating strong advancements in their R&D efforts.
- The collaboration with Kopin Corporation highlights a strategic partnership aimed at addressing key challenges in bandwidth and energy efficiency for AI data centers.
- The upcoming demonstration of working Neural I/o hardware in January 2027 signifies a potential leap in the company's product offerings, which could enhance its competitive position in the AI infrastructure market.
Potential Negatives
- The press release includes forward-looking statements that indicate potential risks and uncertainties associated with the development and manufacturing of the Neural I/o platform, which could lead to actual results differing materially from expectations.
- Fabric.AI's technology relies on a novel approach that, while innovative, inherently presents challenges related to integration and manufacturing risks, raising concerns about the feasibility and reliability of the products.
FAQ
What are the recent patent applications filed by Fabric.AI?
Fabric.AI filed two patent applications for its micro-LED optical interconnect architecture with the USPTO.
How does Fabric.AI's technology improve optical interconnects?
The technology images an entire micro-LED array using a novel optical system, enhancing bandwidth and energy efficiency.
What partnership is Fabric.AI engaging in for technology development?
Fabric.AI is collaborating with Kopin Corporation to develop MicroLED-based optical interconnect technology.
When does Fabric.AI expect to demonstrate its Neural I/o hardware?
The Company anticipates demonstrating Neural I/o hardware in January 2027.
What benefits are associated with the new optical interconnect applications?
The applications could reduce assembly complexity and eliminate connectors, improving reliability in AI infrastructure.
Disclaimer: This is an AI-generated summary of a press release distributed by GlobeNewswire. The model used to summarize this release may make mistakes. See the full release here.
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Full Release
NEW YORK, NY, Sept. 23, 2026 (GLOBE NEWSWIRE) -- Fabric.AI (Nasdaq: FABC) (“Fabric.AI” or the “Company”), an AI infrastructure company developing a suite of fabless semiconductor technologies for next-generation AI factories, today announced that it has filed two patent applications with the United States Patent and Trademark Office (USPTO) covering its micro-LED optical interconnect architecture.
Both applications derive from the same design choice: imaging an entire micro-LED array through a novel optical system, rather than aligning light channel by channel. Through their partnership, Fabric.AI and Kopin Corporation (Nasdaq: KOPN) are jointly developing MicroLED-based optical interconnect technology designed to address bandwidth and energy-efficiency constraints in next-generation AI data centers.
Fiber-coupled: one optic, however many channels
The first application covers the Company’s approach to fiber-coupled optical interconnect, using a novel optical system to image an entire micro-LED array onto the cores of a multicore optical fiber. The architecture is designed to hold the number of precision alignment steps constant as channel count rises, rather than requiring alignment channel by channel.
Fabric.AI believes this is the property that allows dense parallel optical links — thousands of channels within a single square millimeter of die — to scale between boards, trays and racks without a corresponding rise in assembly cost.
Free-space: the same optic, without the fiber
The second application takes the same optical approach to its limit. Rather than imaging the array onto a fiber face, it transmits parallel data across a short air gap, eliminating the need for any physical connectors between the optical endpoints.
The technology uses compact optics to image the micro-LED array directly onto a matching detector array, holding the channels separate. Because the coupling is imaged rather than bonded, the fiber becomes optional: for short, fixed gaps inside a package or between adjacent boards, removing the connector removes both a failure point and an assembly step.
“Both applications come from one architectural choice: we image the whole array using special optics instead of aligning light channel by channel. That is what we believe keeps assembly complexity flat as we scale from hundreds of optical channels toward thousands — and what lets us remove the connector entirely where the gap is short enough,” said James Altucher, Fabric.AI Senior Strategic Advisor. “We continue to collaborate with Kopin in refining our technology and look forward to sharing these innovations in more detail with those potential customers currently under NDA discussions, as well as to providing more updates as they develop.”
These applications also underscore Fabric.AI’s continued collaboration with Kopin on Neural I/o™, its optical interconnect architecture designed to address the increasing data-movement, bandwidth and energy-efficiency demands of next-generation AI infrastructure. The Company expects to demonstrate working Neural I/o hardware in January 2027.
About Fabric.AI
Fabric.AI (Nasdaq: FABC) is an AI infrastructure company developing a suite of fabless semiconductor technologies for next-generation AI factories, including its Neural I/o TM MicroLED-based optical interconnect platform.
About Kopin Corporation
Kopin Corporation (Nasdaq: KOPN) is a leading developer and provider of innovative display and application-specific optical solutions for defense, AI infrastructure, enterprise, professional and consumer products. Kopin’s portfolio includes microdisplays, display modules, eyepieces and projection assemblies, and vehicle- and head-mounted display systems built on Kopin’s liquid crystal, MicroLED and OLED display technologies, along with a range of optics and low-power custom silicon. Building on its patented bi-directional NeuralDisplay™ architecture, Kopin is also developing Neural I/o optical interconnects that use programmable MicroLED pixels as ultra-high-speed, low-power optical transceivers for AI data centers. For more information, please visit Kopin’s website at www.kopin.com .
Follow Kopin on LinkedIn , X and Facebook .
Forward-Looking Statements
This press release contains forward-looking statements within the meaning of the federal securities laws, including statements regarding the expected timing, demonstration and capabilities of the Neural I/o TM platform. These statements are based on current expectations and are subject to risks and uncertainties — including development, integration and manufacturing risks — that could cause actual results to differ materially. Market and industry data are derived from third-party sources believed to be reliable but have not been independently verified by the Company. A discussion of these and other factors with respect to the Company is set forth in the Company’s most recent Annual Report on Form 10-K and subsequent Quarterly Reports on Form 10-Q and Current Reports on Form 8-K filed with the Securities and Exchange Commission. Forward-looking statements speak only as of the date they are made, and the Company disclaims any intention or obligation to revise any forward-looking statements, whether as a result of new information, future events or otherwise.
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Media Contact:
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