A motor, gears, and rack move one camera between internal and external positions, saving smartphone space while supporting front and rear shooting.
Spring bumpers cushion OIS platform travel before impact, reducing collision damage, electrostatic buildup, and acoustic issues.
A bracket-mounted camera placed away from the antenna widens coverage, reduces blind spots, and helps detect objects that can cause PIM.
Sliding base and side plates let a camera switch to portrait orientation without support shift while preserving clearance for attached cables.
Separated heat absorbers create dedicated thermal paths for continuous and intermittent components, improving heat transfer and limiting hot spots.
Dedicated microlens pixel groups detect light incidence angle to identify and compensate stray light that degrades camera image quality.
Optical tags and onboard cameras enable long-range, multi-angle positioning when GPS and QR codes fall short in urban autonomous navigation.
Aggregated smart-device data locates a fire, triggers coordinated mitigation actions, and guides occupants along safer escape routes.
A clamped disk-and-shaft adapter uses o-rings or bonded seals to fit standard connectors to glass pressure housings without threading or heavy polishing.
An elastic thrust element and orthogonal constraint lock let users precisely adjust video camera belt tension and prevent slippage.
Distributed circuits near the pixel array process values in parallel, cutting sensor-to-CPU data transfer, power use, and timing constraints.
A two-piece bracket and protective housing secure a video doorbell to a door without permanent changes, helping renters avoid damage and theft.
A rotatable joint and magnetic coupling make the imaging unit easy to fold, detach, and reposition for stable multi-angle scanning.
Multi-wavelength pulse delays and interference fringes capture continuous 3D topography during ultrashort laser-material interaction.
Movable neutral density filters help self-driving cameras avoid overexposure and sensor damage in rapidly changing daylight.
A back-cover mounting hole and detachable fixer let large displays attach securely to standard tripods while enabling quick setup and dust protection.
A float-mounted camera maps basin geometry and missed areas so the pool cleaner can adjust its path for faster, full-surface coverage.
A cam-driven counterweight moves opposite the lens group to limit center-of-gravity shift during zoom and focus without adding a dedicated motor.
Different support-member stiffness and sensor placement suppress natural vibration in lens drives, improving AF feedback and OIS stability.
A rotatable two-rod mount adds flexible angle adjustment and threaded attachment points for lamps, monitors, and microphones on digital video cameras.
SLAM-based camera control maps object positions and adjusts focus and view angle so robots capture clearer target images for recognition.
Modular biological and mechatronic subsystems use neural networks to transfer human-like perception while managing integration complexity.
Audio channels are rerouted and mixed as the screen rotates, keeping speaker direction aligned for a natural sound field and stable stereo.
A hollow core heatsink cools sealed outdoor camera electronics by passive conduction and natural convection, avoiding fans, weight, and venting.
Multiple appliance-specific bridge units placed near targets cut IR output power, improve placement flexibility, and extend battery life.
Routes power and signal cables through the stand while enabling flush wall mounting to improve appearance, save space, and feel stable.
Real-time image result feedback lets a drone detect failed shots and trigger in-flight re-imaging to avoid redundant flights and delays.
Tilted rotating mirrors let aerial cameras capture nadir and oblique views along curved scan paths for efficient 3D mapping and orthomosaics.
A tilt-before-rotate mount lets a display switch between portrait and landscape without image distortion or interference with the support protrusion.
A built-in follow-configuration button lets users change gimbal follow speed and acceleration directly, avoiding phone pairing delays.
Active sensor heating and a concave front face help an outdoor camera resist cold, rain, and direct sunlight for stable image quality.
A wearable camera identifies an external device by triggering a visible response, enabling lightweight pairing without heavy onboard processing.
Geofenced operating modes restrict UAV video viewing and recording in sensitive areas, reducing privacy exposure while preserving access.
Two locking stand elements let a display switch between tabletop and wall mounting without separate hardware or tools.
A monolithic multi-camera chassis integrates shielding and mounting features to shrink module size, improve heat flow, and block stray light.
Mobile sensing shifts from fixed monitoring to route and vehicle health checks that trigger continuous inspection and autonomous control when damage is detected.
Pre-adjusting gimbal posture during mode changes prevents image jitter and keeps video capture smooth and stable.
A movable UAV carrier uses actuators and a gimbal to reposition and flip the payload for unobstructed panoramic imaging.
A motor-driven gear and rack mechanism lets one camera protrude, retract, and rotate, replacing multiple fixed cameras while saving phone space.
A removable concealing cover hides wall-mount holes, blocks dust entry, and preserves display appearance during installation and relocation.
A movable clamp secures a cable-mounted monitor, enables tool-free memory access, and shields the insert port from environmental damage.
Sliding slots and a locking bracket let gimbals adjust camera center of gravity quickly while improving mounting stiffness and precision.
Varying support-member stiffness and routing longer elastic members helps camera modules suppress AF oscillation and maintain stable OIS motion.
Motor movement during sensor thermal conditioning signals that gimbal calibration is still running, helping prevent user interruption and preserve accuracy.
Arc-shaped FPC sections aligned to pan and tilt axes simplify camera wiring, improving durability while reducing outer diameter and height.
Guide grooves and pins let a compact display head switch between landscape and portrait modes without losing stability or needing extra space.
A mobile imaging unit ranks grid locations by visible area to capture panoramic views efficiently for remote security and object checks.
An adjustable common module aligns stereo cameras and LiDAR in one windshield-mounted ADAS housing for cross-vehicle calibration.
Camera image parameters are matched to reference data to recognize equipment events in real time and support safer control in airport operations.
Integrated connector sealing replaces bulky cord grips in machine vision camera enclosures, improving IP67 protection and cable signal reliability.