See how non-parallel projection surfaces on multiple theater sides create three-dimensional imm
See how sensor-controlled projection onto translucent surfaces enables cost-effective, removabl
See how a segmented mirror design separates capturing and display zones to enable photo, video,
See how a rotatable arm structure mounts to chair columns, enabling hairstylists to record work
See how inverting snap-fit placement inside the camera housing hides transitions, prevents dirt
See how a nested snap-fit connection positions the camera mounting socket inside the housing to
See how a pivotable bathtub housing integrates sprayers, vibration, scent, and projection to re
See how a motion-activated projector with adjustable mounting and interchangeable slides enable
See how rear-projection onto a translucent baby-changing station enables customizable branding
See how a resilient housing with micro-suction nano-cavity adhesive enables secure yet residue-
See how projector-based image display on translucent baby-changing stations enables dynamic veh
See how an inertial sensor integrates yaw rate signals to detect refrigerator door closure angl
See how a toilet-mounted projector and sensor system provides real-time visual guidance to help
See how a projector integrated into a dispenser replaces defaceable signage with dynamic projec
See how a humidifier integrates a projection mechanism to distract children from fan noise, usi
See how mounting a projection assembly outside the appliance body eliminates casing obstruction
See how a projection surface on the vacuum tool displays operational information where users lo
See how an inertial sensor replaces magnetic detection to precisely determine refrigerator door
See how a casted carrier and transparent housing seal the image sensor from acid fog and moistu
See how a light projector displays operational information directly in the container receptacle
See how a backlit projection system replaces static advertising in paper towel dispensers, proj
See how a rotating mullion assembly shields a refrigerator door camera from condensation during
See how a humidifier with built-in image projector uses visual distraction to counteract noise
See how a movable and rotatable display unit with built-in projection extends desktop versatili
A movable, rotatable desktop display with built-in projection solves fixed-screen limits for multi-user interaction and varied use scenarios.
Non-parallel projection surfaces on multiple sides create a more immersive 3D theater space while image correction manages surface differences.
Remote sensors track ice level, temperature, and door status to replace manual checks and improve timely freezer restocking.
Multiple projection surfaces synchronized with rotating audience seats improve immersion and avoid the discomfort of 3D glasses.
Remote sensors, camera monitoring, and network alerts track ice levels, temperature, and door status to prevent delayed freezer restocking.
A protruding bracket mounts the backup camera behind the license plate, keeping required plate areas visible while maintaining a clear rear view.
Cross-passing guides and electromagnetic carriers keep zoom lens motion stable over long strokes while reducing actuator size for mobile cameras.
A shared-magnet drive moves the lens and photosensitive chip in opposite directions to increase anti-shake stroke and response speed in compact camera modules.
Magnetic centering between the housing and movable holder reduces collision noise while keeping autofocus and OIS motion stable.
Comb-drive actuators and elastic suspensions move the transducer in the XY plane without height change, cutting magnet interference and package size.
Elastic biasing keeps the reflector support in constant contact to prevent shaft-bush backlash and stabilize prism swing for image capture.
Horizontal drive balls and coils correct optical shake while avoiding stacked actuators that add thickness to compact camera modules.
By embedding magnetic lens position detection in the image sensor substrate, the camera module shrinks without losing optical shake correction.
By shifting the image sensor instead of a heavier lens, this camera module improves shake correction in tight space while avoiding substrate interference.
Two electromagnetic drive sets move zoom lens carriers independently while reducing interference, actuator length, and space use.
A differential ball layout on a longer U-shaped rail reduces impact, wear, and tilt in long-stroke camera actuator movement.
A rotated reflective microdisplay folds the optical path so vehicle projection units fit tight mirror housings without image distortion.
Moves the image sensor in x, y, and roll to stabilize high-pixel camera modules when larger, heavier lenses limit lens-drive OIS.
A magnetic spring with a non-magnetic spacer biases the movable unit through rolling balls, saving space and avoiding ball attraction.
Stacked flexure layers raise optical-axis stiffness while preserving X-Y motion for compact OIS camera actuators with lower parasitic motion.
An integrated coil and lens-holder layout preserves autofocus and image stabilization in a miniaturized camera module while reducing collision risk.
Axis placement near the light outlet improves image stabilization precision, cuts focus shift, and supports compact low-power optical modules.
A dual-sided coil layout with central pad placement and matched current paths boosts Lorentz force while reducing shorting risk in compact OIS modules.
A nested rotating lens support uses three drivers to widen shooting angles and stabilize imaging when the device moves.
By moving the lens and image sensor in opposite directions, this camera module boosts handshake correction while lowering drive current.
Two electromagnetic carrier drives coordinate lens motion to reduce interference, save actuator space, and maintain precise zoom and autofocus.
A temperature sensor and lens actuator correct optical axis distance to offset thermal focal drift and keep vehicle camera images stable.
Angular placement of magnetic force applying members cuts disturbance fields, improving lens frame position sensing in compact voice coil lens barrels.
Three adjustable shielding plates block top and side sunlight on a mower camera, improving image clarity and extending service life.
A shared magnet and elastic support layout enables dual-lens AF and OIS while limiting magnetic interference, resonance, and magnet disengagement.
A rotating mirror, integrated magnets, and coils enable autofocus and image stabilization while keeping portable camera modules thin.
Shared-magnet dual drives move the lens and photosensitive chip in opposite directions to extend anti-shake stroke and speed in compact camera modules.
A rotated optical-element layout cuts focus shift in periscope lens stabilization motors, improving drive precision and image quality.
A balanced connector layout and coordinated drives improve optical positioning precision while limiting tilt, deflection, and size.
Position-specific light-adjusting elements steer emission angles to match curved surfaces, reducing image distortion and uneven brightness.
By shifting the image sensor instead of a heavier lens, this camera structure improves handshake correction in tight space with fewer magnets.
Segmented magnets along the optical axis boost lens-drive thrust while limiting radial size and suppressing self-demagnetization.
A shared-magnet dual drive moves the lens and photosensitive chip in opposite directions to improve anti-shake stroke and response speed in compact camera modules.
A reinforced movable frame with a bent steel plate lets sensor-shift OIS stay compact while improving rigidity, heat dissipation, and control.
A stacked image sensor between two PCBs shrinks bezel footprint, reduces optical tilt, and simplifies slim camera module assembly.
Rolling balls, guide shafts, and a limiting structure cut prism module friction during small-angle motion, reducing OIS jitter.
By inferring drivable space from unobstructed sensor sightlines to detected objects, this case extends free space range in poor weather.
Nested magnetic movable assemblies combine AF, OIS, and aperture control in a compact camera module without adding major structural complexity.
A dual-sided coil layout boosts Lorentz force in limited camera space while reducing resistance and short-circuit risk in bent regions.
Separating the sensing magnet from the coil improves Hall feedback, suppresses noise, and keeps a compact two-axis OIS mirror assembly.
A back yoke cover forms gaps around adjacent magnets to contain flux leakage, improving camera actuator position accuracy and drive reliability.
A pre-compressed collar elevator raises the ankle collar after foot insertion, enabling hands-free donning and reducing collar wear.
A piezoelectric ceramic and carbon driving member boosts thrust and stability to move heavier lenses accurately in compact imaging modules.
A helical bearing guides compact actuator motion to boost driving force and reduce movable-part tilting in miniature assemblies.
An engaging base structure stabilizes the terminal during cutting, preventing warping in compact voice coil motors without a pressing jig.
Magnetic locking separates autofocus and anti-shake modules to ease camera assembly and prevent wear or indentation after drops.
A shifted connecting element and support structure balance the moving optics to prevent tilt while enabling a smaller drive mechanism.
Moving the lighter image sensor instead of the lens module improves optical stabilization and focus control while reducing driving force.
A piezoelectric lens drive with guiding rods and magnetic stabilization boosts thrust for heavier optics while preventing rotation during motion.
Multi-sensor tremor data feeds an ANN that compensates image shaking faster and more accurately than simple feedback control while using less power.
Offset optics and ECU feedback keep the driver’s head in view after mirror adjustment while reducing blind spots and glare.
Dual movable portions and electromagnetic drives shrink the optical mechanism while preserving durability and image stabilization.
A removable battery cradle adds eScooter range while charging a smartphone and using a pivot mount for navigation, camera views, and fleet battery swaps.
A split-rig camera plate layout improves view overlap and cuts parallax distortion for cleaner panoramic image stitching on moving vehicles.
A segmented correction lens unit moves off-axis to suppress hand-shake blur while limiting decentering aberration in compact high-zoom optics.
A folded tele camera pairs G1-G3 and G2-G4 motion to deliver continuous zoom in a slim module while limiting lens stroke.
A cam pin and spring return a zoom ring automatically, enabling compact interchangeable lens layout and intuitive variable-speed control.
A movable photosensitive chip with sliding electrical contacts cuts stabilization power use and avoids flex-cable drag in compact camera modules.
Magnetic reinforcement strengthens optical drive force and stabilizes imaging against vibration.
A rigid-flex PCB and aligned rotation center help preserve lens position while reducing deformation during image stabilization.
Infrared imaging units capture light passing through display layers to correct visible sensor data for flare and diffraction artifacts.
Integrated pressure sensor detects device removal and pauses video playback, eliminating manual user intervention.
Rotatable reflective mirror compensates assembly tolerance to reduce camera thickness.
Nesting the light shielding layer vertically reduces required aperture size, resolving the trade-off between screen-to-body ratio and camera reliability.