Cutting-edge technologies

Deeplight is redefining the boundaries of photonics

We specialize in the development of narrow-linewidth frequency tunable lasers and advanced Kerr comb solutions using ultra-low loss photonic integrated circuits (PICs).

Our cutting-edge technologies are designed to deliver best-in-class noise and performance in an uniquely compact form factor for our customers in a wide range of industries.

Deeplight's Products

Ultra narrow-linewidth frequency agile lasers - Deeplight SA - Pioneering the future of laser technology by harnessing the power of integrated photonics.

Ultra narrow-linewidth frequency agile lasers

Leveraging the low loss Silicon Nitride platform and monolithic integration of piezoelectric materials, our Photonic Circuit-based lasers offer state of the art noise performance with high fidelity frequency modulation.

High speed narrow-linewidth lasers - Deeplight SA - Pioneering the future of laser technology by harnessing the power of integrated photonics.

High speed narrow-linewidth lasers

Based on the newest advances in Thin-Film Lithium Niobate photonic circuits, our TFLN-based narrow linewidth lasers give access to low voltage, high speed and high depth frequency modulation.

Kerr frequency comb generators - Deeplight SA - Pioneering the future of laser technology by harnessing the power of integrated photonics.

Kerr frequency comb generators

Chip-based frequency combs are enabling new generation optical communications and sensing. Our offering democratizes access to this technology.

Deeplight Microcomb Turn-key System

Chip-scale microcomb technology is enabling a new generation of optical communications, sensing, and precision metrology. Deeplight’s turn-key DKS system delivers robust single-soliton operation in a compact 19” rack-mount form factor—built on our ultra-low-loss Si₃N₄ PIC platform for high coherence, stability, and scalability.

Copper-Free Silicon Wafers

Deeplight copper-free silicon wafers provide a clean, thermally stable substrate for Si₃N₄ and hybrid photonic circuits, enabling low-loss waveguides and repeatableDeeplight copper-free silicon wafers provide a clean, thermally stable substrate for Si₃N₄ and hybrid photonic circuits, enabling low-loss waveguides and repeatable soliton microcomb operation at wafer scale. soliton microcomb operation at wafer scale.