Multi-objective optimization of flexure geometry balances scanning speed with fatigue life to maintain beam stability.
Aligning rack teeth leaning angles with lead screw angles counters gravitational moments to eliminate lens frame trembling and reduce power consumption.
A lens barrel uses a vibration isolation pin to stabilize optical components during image blur correction.
Stepped holder structures shield adhesive members from laser light transmission, preventing deterioration and maintaining optical axis stability.
A double tangent mount uses convex surfaces tangential to conical barrel components to enable axial sliding motion.
A curable composition using cycloaliphatic epoxide and siloxane compounds forms a transparent cured product.
A method selects optical glasses with low thermal expansion and stress coefficients to design imaging lenses that maintain polarization stability.
A flexible plastic structure on optical element driving components provides mechanical buffering and damping.
A sliding mechanism repositions optical elements and reflective light modulators to select distinct modulation modes within an integrated optical module.
Segmented inner and outer mountings allow independent inclination, resolving the trade-off between manufacturing simplicity and high precision at small angles.
Dual reflecting surfaces in a plastic spacing part eliminate stray light flare and ghost effects while reducing structural complexity.
An intermediary rotating ring with resilient tabs connects liquid lens electrodes to base conductors, resolving assembly complexity caused by exposed wires.
A thermally deformable plate compensates for optical fluid expansion, stabilizing focal distance across temperature variations.
A multi-camera system selects a primary lens using distance error information to maintain focus accuracy.
Three spaced-apart constraints prevent overconstraining and mirror deformation, preserving optical precision in compact mounts.
A lens drive coil winding method uses a spring member to apply tension and prevent wire loosening.
A biasing element applies threshold force to a variable focus optical element within a compact lens assembly.
An orthogonal gimbal arrangement reduces the footprint of a module drive device by preventing corner elevation during rotation.
A mechanical actuator moves an optical focusing group along its axis using a coaxial control member and external gripping mechanism.
A lens apparatus uses a decentering absorption member to permit orthogonal optical unit movement.
Welded spacer elements align camera objectives to image sensors, creating rigid mechanical bonds that fix optical positions.
A collapsible virtual reality headset uses adjustable biconvex lenses and suction technology for stable smart device mounting.
A vibrating actuator uses a sloped holding member to redirect linear vibration into perpendicular output motion.
A zoom lens first unit uses a negative lens with specific refractive index and Abbe number properties to correct longitudinal chromatic aberration.
Elastic protecting covers absorb impact energy to prevent motor short-circuiting and stop dust ingress through lens tube gaps.
Inclined surfaces on the distance maintenance member reduce flare and ghost phenomena while maintaining precise lens alignment across varying temperatures.
A four-piece optical lens system with aspheric elements increases light intake through precise refractive power distribution.
A camera accessory mount incorporates a recessed portion in its holding member to accommodate elastic member deformation during installation.
Adhesive placement on the peripheral side wall improves adherence without blocking light paths, resolving transmission efficiency losses.
Electro-active lenses determine convergence angles via rotating magnetic fields, eliminating high power consumption from magnet-based sensing.
A foldable optical device positions a lens module within a housing hole when closed and extends it above the hole when opened.
A magnetic driving mechanism moves optical elements using electromagnetic actuators within compact spaces.
Positioning voltage and ground terminals near the fixing member stabilizes power supply, preventing insufficient energy flow without increasing device size.
A lens focusing control device determines a target object based on user operation and drives the lens to that position using a specified speed.
A lens unit design where the optical group protrudes from the barrel wall to reduce volume.
Adjustable lens-to-sensor distance resolves back focal length deviations that degrade telephoto imaging resolution.
Telecentric lens units maintain parallel chief rays to preserve image size consistency, resolving alignment sensitivity issues in multi-part camera assemblies.
A rotatable optical mount adjusts the axis using a shaft and bore mechanism.