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  2. Lidar - Wikipedia

    en.wikipedia.org/wiki/Lidar

    Lidar (/ ˈ l aɪ d ɑːr /, also LIDAR, LiDAR or LADAR, an acronym of "light detection and ranging" [1] or "laser imaging, detection, and ranging" [2]) is a method for determining ranges by targeting an object or a surface with a laser and measuring the time for the reflected light to return to the receiver.

  3. Fishfinder - Wikipedia

    en.wikipedia.org/wiki/Fishfinder

    Fishfinders were derived from fathometers, active sonar instruments used for navigation and safety to determine the depth of water. [1] The fathom is a unit of water depth, from which the instrument gets its name. The fathometer is an echo sounding system for measurement of water depth. A fathometer will display water depth and can make an ...

  4. 3D scanning - Wikipedia

    en.wikipedia.org/wiki/3D_scanning

    Terrestrial lidar systems cost around €300,000. Systems using regular still cameras mounted on RC helicopters (Photogrammetry) are also possible, and cost around €25,000. Systems that use still cameras with balloons are even cheaper (around €2,500), but require additional manual processing.

  5. Bathymetry - Wikipedia

    en.wikipedia.org/wiki/Bathymetry

    First developed in the 1960s and 1970s, [citation needed] ALB is a "light detection and ranging (LiDAR) technique that uses visible, ultraviolet, and near infrared light to optically remote sense a contour target through both an active and passive system." What this means is that airborne laser bathymetry also uses light outside the visible ...

  6. Intel RealSense - Wikipedia

    en.wikipedia.org/wiki/Intel_RealSense

    Image Sensor Size: 1⁄6 inch, 3855 μm × 2919 μm [32] 1⁄4 inch, 3896 μm × 2453 μm [33] Image Sensor Pixel Size: 1.4 μm × 1.4 μm [32] 3 μm × 3 μm [33] Vision Processor Board: RealSense Vision Processor D4 Depth Sensor Module: RealSense Module D415 RealSense Module D430 + RGB Camera RealSense Module D450 Depth Field of View for HD

  7. Ouster (company) - Wikipedia

    en.wikipedia.org/wiki/Ouster_(company)

    Ouster, Inc. is an American lidar technology company headquartered in San Francisco, California. It builds high-resolution, digital 3D lidar sensors for use in autonomous vehicles, industrial, robotics, drones, mapping, defense, and security systems. [3] [4] [5]

  8. Velodyne Lidar - Wikipedia

    en.wikipedia.org/wiki/Velodyne_Lidar

    The system rotated 64 lasers and measured the time of flight to calculate distances to surrounding objects. This created a 360-degree 3D map of the environment. [13] The new system produced one million data points per second, while earlier systems produced 5,000 data points per second. [12] A Velodyne HDL-64E, an HDL-32E, a Puck, and an Ultra Puck

  9. Structured-light 3D scanner - Wikipedia

    en.wikipedia.org/wiki/Structured-light_3D_scanner

    Face ID system works by projecting more than 30,000 infrared dots onto a face and producing a 3D facial map. VicoVR sensor uses a pattern of infrared points for skeletal tracking. Chiaro Technologies uses a single engineered pattern of infrared points called Symbolic Light to stream 3D point clouds for industrial applications; Made to measure ...

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