Microsoft · Filed May 21, 2026 · Published Sep 24, 2026 · verified — real USPTO data

Microsoft Patents a Way to Send Datacenter Data Through Flashing Light Patterns

Microsoft has filed a patent describing a system that encodes data as shifting, multicolor light patterns beamed through open air inside a datacenter, no physical cable required between the sending and receiving nodes.

Datacenter racks with servers, storage, encoders, decoders, and cameras for transmitting and receiving data via light patterns. Drawing from patent filing US 2026/0289214 A1.
Datacenter racks with servers, storage, encoders, decoders, and cameras for transmitting and receiving data via light patterns.
See all 24 drawings from this filing ↓
Publication number US 2026/0289214 A1
Applicant Microsoft Technology Licensing, LLC
Filing date May 21, 2026
Publication date Sep 24, 2026
Inventors Winston Allen SAUNDERS, Maria Leena Kyllikki VIITANIEMI, Teresa A. NICK, Nicholas Andrew KEEHN, Christian L. BELADY, Eric C. PETERSON
CPC classification 398/118
Grant likelihood Medium
Examiner CENTRAL, DOCKET (Art Unit OPAP)
Status Docketed New Case - Ready for Examination (Jun 14, 2026)
Parent application is a Continuation of 18072527 (filed 2022-11-30)
Document 20 claims

What Microsoft's light-pattern data transfer actually does

Imagine a room full of servers that talk to each other not through cables, but by flashing colored lights in precise sequences, the way two people might communicate in Morse code, but far faster and in multiple colors at once. Microsoft's patent describes exactly that kind of system for the insides of datacenters.

The idea is to take data, convert it into a pattern of at least three colors displayed on a small screen or light-emitting device, then let another node in the same room read and decode that pattern with a camera or sensor. The physical gap between them is just air.

Why bother? Cables in datacenters are expensive to install, create heat, fail, and take time to reconfigure. A light-based system could offer a way to shuffle data around without touching the physical wiring every time something changes.

From the filing · CLAIM 1
… encode the data to a set of encoded spatiotemporal patterns using the encoder, including at least three colors; and output the set of encoded spatiotemporal patterns with the display device.

Translation: It turns data into flashing patterns of at least three colors and shows them on a screen.

How nodes encode and decode spatiotemporal color signals

The patent covers a datacenter node (think: a server or a device sitting inside a server rack) that has four key components: an encoder, a decoder, a display device, and an obtaining device.

The obtaining device grabs the data to be sent. The encoder converts that data into a spatiotemporal pattern (a pattern that changes across both space and time, similar to how a QR code carries information in a 2D grid, except this one also changes over time and uses color). The patent specifies the system must use at least three colors, which multiplies the amount of information each frame can carry.

The display device then broadcasts that pattern into open air, and a receiving node's decoder reads and reconstructs the original data. The whole loop happens without any physical cable connecting sender to receiver.

  • Data is obtained and queued for encoding
  • The encoder maps binary data to color-and-position patterns across time
  • A display (likely an LED array or small screen) outputs those patterns into free space
  • A receiving node's camera or optical sensor captures and decodes the pattern
From the filing · THE ABSTRACT
… encoding the data to a set of encoded spatiotemporal patterns, and outputting the set of encoded spatiotemporal patterns.

Translation: The system translates information into visual patterns and projects them outward.

What this means for the cables inside tomorrow's datacenters

Datacenters are the physical backbone of cloud computing, and the cables inside them are a constant engineering headache: they tangle, they fail, and reconfiguring them when racks are moved is slow, expensive work. A wireless optical link inside the building, if it can be made reliable and fast enough, would let operators rearrange computing resources without touching a single wire.

The broader question is whether this can keep up with the speed demands of modern datacenters, which transfer data at hundreds of gigabits per second. The patent does not make speed claims, so the filing is at an early, conceptual stage. Still, the pattern in Microsoft's datacenter-infrastructure filings suggests the company is thinking hard about what the physical layer of computing looks like when you strip away assumptions about copper and fiber.

Microsoft's 435th filing in our Microsoft coverage since May continues a thread that includes training AI on user priorities and AI-run meeting brainstorms.

Editorial take

Claim 1 covers any method that takes data, turns it into multicolored light patterns that shift over time, and sends those patterns out through a display inside a data center. The claim says nothing about which display technology is used, how the colors are chosen, or how far the light travels, so its reach is as wide as the basic description itself.

That breadth has real consequences. Any company using patterned light to move information between machines in a data center would have to reckon with this claim, even if their hardware looks completely different from whatever Microsoft built.

Whether that matters depends on whether light-based communication ever replaces the cables connecting machines today. The claim is written as if the problem is already solved, and that confidence alone makes it worth understanding.

There are more where this came from

We read every patent application Big Tech publishes and send you the ones worth knowing. Plain English, free, every week.

The drawings

24 drawing sheets from US 2026/0289214 A1 · click any drawing to enlarge

Patent filing page

Source. Full patent text and figures from the official USPTO publication PDF.
Reader comments

Be the first to weigh in

Start the discussion

Real name or a handle, either is fine. Comments are read by a person before they appear, so allow a little time. Keep it about the filing.