Magnetic coupling in the adaptor kit enables rapid filter swapping across varying lens diameters, eliminating time lost to mechanical threading.
Automated shutter control system actuates a camera lens based on power sensing circuitry measurements of set-top box energy consumption.
Alternately stacking low and high refractive index layers on an aspheric glass lens filters near-infrared light without increasing the optical assembly size.
An intermediate member fills the space between a camera body tube and support structure to block air inflow and hide internal components.
A lens module barrel incorporates a concave-convex peripheral matching structure to stabilize assembly forces.
A lens holder recess prevents adhesive blockage of the air escape hole, maintaining structural integrity during thermal expansion.
A laminated camera protector uses a TPU cushioning layer and adhesive to absorb impact energy while maintaining precise lens alignment.
Rotating dual polarizing plates maintains constant axis difference to adjust transmitted light volume, suppressing in-plane luminance unevenness.
A single electromechanical actuator drives a sliding shutter to control visual and infrared camera access, reducing device complexity and manufacturing cost.
A movable neutral density filter adjusts position based on focal length to stabilize exposure during zoom operations.
Replacing complex mechanical interlocking with magnetic coupling, this eyecup secures and aligns a smartphone's optical axis while minimizing adapter volume.
High glass transition temperature polyimide prevents thermal deformation and wrinkles during extended evaporation processes for high-density ND filters.
An optical system positions filters and an optical surface to shield stray light from entering adjacent apertures.
A self-adjusting optical filter holder uses a spring-loaded sliding jaw to grip lenses of varying diameters.
A camera bracket bonded to window glass uses a leaf spring mechanism to secure the imaging unit, preventing adhesive failure during vehicle assembly.
A bi-stable lens cover uses pivotally mounted blades biased apart by a torsion spring to uncover the optical aperture.
A lens housing features an exterior maintaining structure with electric contacts to detachably mount peripheral devices.
A lens device uses a wavelength polarizing filter unit to manage light transmission through multiple aperture regions.
A plate-shaped light blocking element with layered and columnar air structures sits between lens and folding components.
A lens module uses a concave-convex matching structure between the glass lens and light-shading plate to improve assembly alignment.
A magnetic mounting mechanism enables quick attachment of optical devices without manual screwing operations.
Plasma surface treatment adjusts wettability of optical members, resolving adhesive peeling risks while maintaining camera device sealing integrity.
Embedded wires and protruding wedges enable tool-free lens cover replacement, eliminating labor-intensive processes.
An electrochromic module integrates conductive layers and a filter layer to modulate light transmission via applied voltage.
Axial light-extinction grooves on the lens barrel inner wall attenuate stray light reflections.
Fabric-covered baffle walls enable compact windshield sensor integration by blocking stray light without attenuating radar waves.
A magnetic unit attaches an imaging device cover to a movable lens assembly, enabling straightforward replacement without housing disassembly.
Multi-directional gas discharge channels in a camera module sub-housing vent adhesive curing gases while preventing foreign substance entry and flare phenomena.
Transparent plate with integrated plenum chamber directs gas flow to shield lenses from environmental debris.
A rotating optical path converting component redirects light from multiple directions to a single lens module.
Silica-coated titanium oxide prevents discoloration in anoxic atmospheres while maintaining high solar reflectance for optical apparatuses.
A switching mechanism with a sliding portion and jointing portion secures filters to a rabbit cage assembly.
A lens module uses a recessed supporting portion to house the light shading member along the optical axis.
Segmented infrared-cut filters on object and image sides minimize ghost generation while maintaining natural hue consistency across the optical path.
Axicon scatter filter assembly removes incoherent scattered light from fog and dust, restoring measurement precision in LIDAR systems.
A dome camera inserts a polarizing filter on the optical axis to maintain image quality during large tilt angle captures.
Merging separate wipers into one integrated unit resolves the contradiction between cleaning effectiveness and structural complexity in surveillance cameras.
A metal light shielding plate with a tapered aperture structure redirects reflected light away from the imaging sensor.
A transparent first display panel with pin holes transmits light to illuminate a rear second display panel.
A hexagonal array of round bars reflects light rays toward a camera lens to accumulate image data.
A thin plate lens shade with a snap portion attaches directly to the image capturing module casing.
A camera device housing features a conical groove and a stopping member that supports the light-transmitting cover plate.
Segmented opaque elements absorb stray light to eliminate flare and improve image clarity during vehicle parking maneuvers.
Segmented axial notches in the positioning member occupy space between the lens and shell, relaxing manufacturing precision requirements.
A circular electrochromic element controls transmittance distribution via a specific electrode-to-layer resistance ratio.
A neutral density optical filter incorporates a non-reflective periodic layer to suppress spectral reflectance across visible wavelengths.
An integrated threaded bolt on the lens cap screws into the camera tripod nut, eliminating bulky external storage devices.
An integrated iris mechanism in a screw-on lens cap eliminates frequent removal, preventing loss and scratches while maintaining full protection.
A sliding mechanism moves optical filters over an imaging chip aperture using a flexible printed circuit board.
Segmented insert prevents unwanted light entry while enabling nonstandard external lens attachment.