Closed-cell fluororubber foam absorbs thermal expansion to prevent leakage and maintain optical purity.
Segmented guide structures minimize friction torque and prevent lens decentering during zoom operations.
A bracket integrates an imaging module with dual light sources and pattern plates to project visual content.
Openable carrier encloses camera to simplify tackle setup and prevent loss.
Two beveled rings adjust the optical axis orientation to maintain nominal back focus and reduce vignetting during Scheimpflug alignment.
A coil support unit with a through hole guides conductive wires to prevent coil inclination and maintain stable magnetic gaps.
Integrating components on a single wiring member resolves assembly complexity while improving drive torque and position detection accuracy.
A monocular scope displays virtual shooting targets to enable indoor practice sessions.
Axial actuator placement around the prism frees lateral design space, reduces module size, and minimizes crosstalk in dual-camera setups.
Optical image stabilization motor placement on the lighting side of a lens assembly minimizes electromagnetic interference with the image sensor.
A notebook camera module reflects user image light through a polarized screen to capture clear facial images.
A zoom lens system uses six lens groups with specific power configurations to maintain optical performance.
A lens braking mechanism uses a recessed pressing portion to generate stable line contact with the movement member.
A 3D camera module adjusts lens positions via a movement control unit to resolve assembly errors and maintain image quality during zooming.
A lens device uses a stair-like flexible circuit board to connect driving coils across carriers.
A lens driving apparatus uses ball members with varying degrees of freedom to support shake compensation unit movement perpendicular to the optical axis.
Perpendicular drive unit insertion avoids optical axis interference while segmented housing supports voice coil motor thrust generation.
Curved guide projections reduce friction and prevent oscillation in camera devices by maintaining point contact with the groove.
Runtime compensation applies center drift and scaling sensitivity coefficients to correct thermal-induced lens drift, maintaining image quality.
A bending optical lens assembly uses a reflection surface to fold the light path and reduce physical size.
Four directional support wires suspend the projector enclosure to suppress wind-induced swing and maintain image stability.
Segmented frame members with adjusting surfaces secure ball intervals, eliminating rattling in small camera modules.
A lens barrel uses cylindrical cam grooves with intersecting straight portions to enable smooth nonlinear movement of cam protrusions.
Shape-memory alloy driving wires maintain a 15.5° angle to minimize camera module volume while enabling optical image stabilization.
A processing apparatus acquires inertial information from imaging metadata to specify images with low accumulated blur.
A camera module uses merged electromagnetic driving units to move optical components for precise image stabilization.
Segmented radiation members manage heat dissipation across distinct color light sources to maintain illumination intensity under thermal constraints.
Optical projection replaces hazardous painting to enable real-time aircraft surface advertising updates.
External projection device displays information onto work surfaces, eliminating internal fixtures that impair air circulation and complicate cleaning.
Spherical projecting and recessed surfaces secure the gimbal frame against disengagement while maintaining rotational freedom.
Interlocking mount components secure cameras to surfboards, enabling safe angle adjustments without manual handling.
An inclined guiding rail adjusts the reflector carrier posture to prevent light shifts on the image sensor during autofocus operations.
Driving assemblies shift a mirror inside the lens stack to compensate for device shaking, enabling long focal lengths in thin electronics.
A variable power optical system moves a third lens unit perpendicular to the optical axis for camera shake compensation.