Multiple cameras, lidar, and radar in a rigid side mirror assembly maintain uninterrupted truck sensing despite trailer blind spots and vibration.
Rigidly mounted side mirror cameras and a roof camera create uninterrupted truck sensor coverage despite vibration, blind spots, and trailer blockage.
Rigid side-mirror sensor assemblies combine cameras and radar to resist vibration and maintain continuous truck blind spot coverage.
Multiple cameras, lidar, and radar in a rigid side mirror assembly maintain uninterrupted truck-side coverage under vibration.
A side mirror sensor hub combines cameras, lidar, and radar to maintain wide truck coverage despite trailer blockage and vibration.
Rigid side-mirror camera, lidar, and radar placement maintains continuous vehicle-side coverage despite vibration and blind spots.
Multiple cameras in a rigid side mirror assembly create uninterrupted truck sensing coverage despite trailer blind spots and road vibration.
Multiple cameras and radar in a rigid side mirror assembly maintain uninterrupted truck sensing despite trailer blockage and vibration.
Multiple cameras in a truck side mirror and roof layout create uninterrupted coverage despite trailer blind spots and road vibration.
Multiple cameras in a side mirror and roof layout create uninterrupted truck sensor coverage while resisting vibration and reducing blind spots.
A rigid side mirror assembly combines cameras with radar or lidar to maintain continuous trailer-side detection despite vibration and blind spots.
A rigid side-mirror camera layout maintains uninterrupted 180° vehicle coverage despite vibration, shock, and trailer-blocked rear visibility.
A convex seal and telescopic legs let engineers access angled feeder tubes from a header pipe and deliver fluids under high pressure.
A resilient rod with wound high-permeability ferromagnetic material bends through tight spaces while maintaining strong utility locating signals.
Opposed fisheye cameras capture full sewer views in one pass, enabling precise 3D reconstruction without idealized pipe geometry.
Multi-exposure imaging with LiDAR depth capture reduces bright-light holes, parallax, and post-processing in outdoor 3D panoramas.
Navigation cameras build a low-resolution panorama to plan gimbal capture, reducing UAV maneuvers and battery drain.
Focused illumination aligned with the imaging axis enables long-range pipe inspection with lower power use, battery operation, and easier setup.
Segmented housing with radially outward cameras delivers 360° pole coverage while simplifying installation and fitting different pole diameters.
Multiple exposures are blended with LiDAR depth capture to reduce bright-light holes and post-production in panoramic 3D imaging.
A curved diffusing photo stage delivers uniform shadow-free lighting, enabling fast 360-degree object capture with a camera array or rotating view.
Planar mirrors route light from separate target subareas to one camera, preserving high resolution across a wide field of view.
Separate optical components can lose alignment with heat and motion; a mono-block scan head supports compact, stable, high-speed imaging.
A normal and wide-angle camera share preview control, with condition detection governing when one or both images are stored.
A concave stage and diffuser distribute omni-directional light for consistent, shadow-minimized 360-degree object imaging.