An intermediate accessory apparatus stores and transmits characteristic information to an image pickup system for efficient control.
A convertible surveillance camera enclosure uses a flip cover to protect the dome during transport.
A camera module integrates a guide profile and blocking device to secure the unit within a vehicle mounting bracket.
A telescopic limiting structure uses inclined faces to drive retractable members along distinct directions for secure lens retention.
Eight-lens optical system reduces total track length while maintaining high resolution and low distortion for portable devices.
An imaging apparatus extracts multiple subjects from video data and switches magnification modes automatically.
An adaptor device switches communication modes between a camera and an accessory using dedicated contact points.
Inclined gas discharge portion in camera module sub-housing directs curing gases away from optical path.
A four-lens image pickup lens uses negative refraction in the first two plastic elements to form high-resolution images.
A camera device uses a flexible circuit board connected to a rotating roller to extend the imaging lens.
An operation control device uses a determination period to distinguish valid second type operations from invalid signals during first type operations.
Graphene thermal barriers reduce heat transfer in compact cylindrical camera housings, resolving assembly complexity and aesthetic issues.
A four-group zoom lens system employs plastic aspheric lenses to correct optical aberrations.
A lens system uses asymmetrical free-curved lenses to form quadrilateral images on imaging elements.
An adhesive layer bonds the metalens to the refractive lens, reducing module length while correcting chromatic and geometric aberrations.
UV-cured composite lenses replace multi-element assemblies to maintain image quality while lowering manufacturing complexity.
An aluminum foil buffer ring shields glass windows from mounting ring pressure, preventing deformation and maintaining image quality.
Dual communication channels transmit high-frequency lens position data to improve focus adjustment accuracy and shake correction reliability.
Integrating mirrors into a single prism structure reduces assembly tolerance while increasing brightness and resolution without adding terminal thickness.
An imaging lens system uses an eccentric second lens group relative to a prismatic optical path conversion element.
Shared rear casings reduce development time and manufacturing costs across product lines.
Unified rotary dial merges rotational and capacitive touch detection, resolving the trade-off between compact size and stable signal precision.
Motor-driven bolts adjust the camera attitude to align the CCD array parallel to curved surfaces, reducing specular reflection errors.
An inclined guiding structure converts linear movement into positional adjustment, resolving belt tension decline from temperature changes or long-term usage.
A three-group imaging lens moves a positive second group along the optical axis for rapid focus adjustment.
Segmented communication paths enable parallel data transfer between a camera body and multiple accessories, resolving sequential switching delays.
A folded lens system uses a prism to redirect light onto a photosensor, enabling high-resolution imaging in a small form factor.
Three-lens bi-telecentric design corrects off-axial aberrations to resolve resolution limits in compact imaging modules.
A five-element optical lens assembly uses aspheric surfaces to correct aberrations while maintaining high illuminance.
A waterdrop guiding member directs moisture to a hydrophilic lens surface, resolving adhesion issues that degrade image visibility during drizzle.
A flexible membrane seals detachable controller connections, preventing water and dust ingress while maintaining easy attachment.
A four-lens imaging system uses a gap maintaining member to hold precise spacing, resolving the trade-off between wide angle of view and compact lens diameter.
A piezoelectric optical system drives a movable part through a guiding assembly to position an optical module.
A PTZ camera control circuit uses a monitoring circuit to detect gimbal motor signals and determine in-place status for precise operation.
Segmenting rotation reduces servo weight and size while maintaining gimbal rigidity for long-lens configurations.
A server determines main and sub image capturing apparatuses from user designations to resolve viewpoint variety versus selection difficulty.
A camera control apparatus acquires hyperfocal length information from interchangeable lenses to automatically drive the focus lens.
An optical accessory merges a smartphone camera with a beam splitter and mirror to illuminate the eye, resolving bulkiness in portable ophthalmoscopy.
Segmenting communication and display protocols allows independent firmware updates, reducing complexity when adapting function-state combinations.
Segmentation and dynamics principles enable a rotating filter wheel with removable wedges, allowing quick lens changes without technician assistance.
A seventh lens optical system uses plastic materials to compensate for refractive index changes, maintaining image quality across -20°C to 105°C.
Integrated illumination holder mounts flash and auxiliary light source on a single structure.
A six-element optical lens assembly balances refractive powers and surface curvatures to enhance image quality and sensitivity.
Segmented front and rear lens units with cemented elements suppress sagittal flare and coma flare while maintaining large aperture ratios.
A display method segments a screen to show original and deformed projection images side by side for precise shape verification.
A conductive holding member secures a movable body-side contact to enable electrical connection with an interchangeable lens unit.
Optimized three-element lens configuration minimizes spherical and coma aberrations while enabling wide-angle imaging in compact far-infrared camera systems.
Offloading barcode decoding to a portable terminal reduces camera cost and size.