Coherent Solutions

to Complex Problems

LinQ Photonics exists to harness and advance coherent optical technologies, from lidar to free-space communications, transforming the way industries measure, communicate, and innovate. Our immediate focus is on creating a versatile, modular Coherent Core that meets pressing market needs in ranging, measurement, and communications.

What We Do

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Our Vision

Our vision is to change the world of sensing and communications by empowering clients with our revolutionary technology: A Coherent Core optimized for modularity and adaptability. This aims to target applications from advanced sensing to free space communications, precision imaging, quantum applications, and more.

Diagram showing how one core engine supports multiple markets, including coherent LIDAR core, secure optical networking, sensing, quantum networking, agriculture, oil and gas, and threat detection.

Problems

A view of Earth from space at night showing interconnected glowing lines representing global communication or data connections.
Upward view of a red and white communication tower against a pale blue sky.
A woman peering through wires and electronic components, possibly in a laboratory or a workshop.

Legacy systems are expensive, difficult for end-users, and environmentally restricted, costing precious time and resources.

High-powered, specialized sensor suites require an enormous amount of energy, limiting operational capabilities

Growing connectivity and technological advances are rapidly changing communications standards and systems  

Diagram showing a submerged pipeline with sensors and monitoring technology, a boat on the water, and infrastructure on land, illustrating a process to prevent downtime and analyze risks using sub-sea technologies.
Diagram illustrating advanced infrastructure monitoring with three main steps: using remote operational vehicles (ROVs) to collect data on traffic and structural integrity, deploying drones for precise imaging of superstructures, and installing stationary sensors to monitor long-term structural changes.
Diagram illustrating free space optical communications and drone technology, showing deployment of optical communication networks, monitoring defense positions, and detecting enemy UAVs with machine learning algorithms in a city park setting
Diagram showing agricultural research and monitoring tools: 1) Soil health analysis with drones, 2) Crop growth monitoring with ground-based sensors, 3) Data collection on pest activity, 4) Automated machinery in the field.