SEMICONDUCTORS60.1699° N, 24.9384° E × 1.3521° N, 103.8198° EPHOTONICS

We bridge
with light.

BUILDING OPTICAL BRIDGES IN AR, CPO AND QUANTUM

THE PLATFORM

A physical bridge for optical I/O.

01

EMIT

Light begins at a compact source integrated close to the electronics.

02

GUIDE

A freestanding optical structure carries channels across the system.

03

RECEIVE

A matched detector returns the optical signal to the destination package.

APPLICATIONS

One bridge.
Three frontiers.

A common optical architecture adapted to different scales, environments, and computing systems.

01DISPLAYS

Augmented reality

A compact optical path from micro-emitter to optical waveguide, designed around precise facet coupling and a minimal module footprint.

02DATA

Co-packaged optics

Optical links between chips, advanced packages, boards, switches, and racks.

03QUANTUM

Quantum

Optical routing across quantum-chip interposer architectures, opening a path for structured links within tightly constrained systems.

OPTICAL BRIDGE PRINCIPLE

Keep the optics close. Keep the architecture open.

Emitters sit with the electronics. A separate waveguide plate carries the light to wherever it is received, whether by a detector or the human eye, allowing the bridge to span packages, system boundaries and the interface to the viewer.

OPTICAL BRIDGE
SOURCE
RECEIVE
SOURCE
RECEIVE

NEXT CONNECTION

Let’s build your optical bridge.

hello@kvanttia.com