Revolutionizing Underwater Exploration: Water Linked Showcases Sonar 3D-15 at Underwater Defense Technology Exhibition

Water Linked Unveils Groundbreaking 3D Sonar Technology

Water Linked, a leading sensor and surveillance technology provider from Trondheim, Norway, is showcasing their new Sonar 3D-15 at the Underwater Defense Technology exhibition. This advanced form of 3D sonar technology offers real-time 3D imaging with point cloud generation, allowing for precise visualization of underwater environments. The Sonar 3D-15 is particularly useful for close-proximity operations such as identifying target types and inspecting hard-to-reach areas like ship hulls.

The Sonar 3D-15 represents a significant leap forward in sonar technology, making it easier to interpret sonar images. Its compact design enables it to operate at a depth of up to 300 meters and weigh less than 0.4 kilograms underwater. This lightweight composition makes it compatible with most Remotely Operated Vehicles (ROVs), simplifying target detection and navigation in various underwater terrains.

One standout feature of the Sonar 3D-15 is its user-friendly interface accessible via a web-based browser. This design streamlines the integration process and eliminates the need for complex software installations. Additionally, its comprehensive Application Programming Interface (API) allows for seamless integration with third-party software, enhancing its adaptability for a wide array of applications.

Water Linked’s participation in NATO DIANA accelerator program last November highlights the versatility and effectiveness of their advanced sonar technology. DIANA is a joint initiative involving all NATO countries aimed at supporting disruptive technologies with potential applications in both commercial and defense sectors. Water Linked’s involvement in this program underscores the importance of innovation in modern defense systems.

Overall, Water Linked’s Sonar 3D-15 represents a significant advancement over traditional sonars, providing real-time visualization of underwater environments with ease of use and adaptability to various applications.

Leave a Reply