Solutions

Enabling faster, more efficient system designs with embedded optics.

AI Infrastructure Demands Optical

AI and modern datacenter architectures demand ever-faster, denser, and more energy-efficient connections. Electrical traces are running into bottlenecks, with excessive loss and bandwidth limits. Optical PCBs (oPCBs) solve this by embedding optical waveguides directly into the circuit board, providing low-loss, high-bandwidth interconnects that outperform copper at short reach.

Why Transition to Optical PCBs?

01

Transition from copper to optical

Copper interconnects are hitting fundamental limits in bandwidth, density, and power efficiency. To keep up with AI and cloud workloads, systems must transition from electrical traces to embedded optics.

02

Optical PCBs unlock new performance

Optical PCBs enableultra-fast, low-latency PCI Express connections beyond the limits of copper. This opens upthepath towards theworld’s fastest PCBconnections, delivering unprecedented bandwidth and energy efficiency on a single board.

03

Optical interconnect platform

Optical PCB technology is fully compatible with existing optical engines, standard electronic ICs & leading component vendors.

04

Built to Scale

Optical PCBs are designed for high-volume production, supported by established partnerships and scalable manufacturing processes. This enables a fast and reliable transition from prototypes to mass deployment.

10×

Lower Loss

vs. electrical SerDes & copper traces

20×

Density

Vs electrical SerDes & copper-traces on PCB

50%

Lower Loss

Reduction of PCB complexity and costs

Delivering more Performance per Watt, per Rack & per Dollar

Optical PCBs bring the performance of fiber optics directly onto the circuit board, solving the bandwidth and loss limitations of copper. They enable faster, more energy-efficient interconnects for datacenter hardware and high-speed electronics. With oPCBs, system designers can scale AI, cloud, and consumer devices beyond the limits of electrical connections.

Testimonial