An integral bracket extends radially from the support pole to mount cameras at a distance, resolving stability and sealing trade-offs.
A camera body transmits detection signals to a detachable lens for synchronized shake correction.
Spaced Hall sensors improve sensor output linearity and control accuracy for long-stroke zooming functions.
A gimbal mechanism supports a movable body with a lens through a turning support structure for precise shake correction.
Segmenting illumination and projection into independent light sources resolves the trade-off between device complexity and functional versatility.
A multipole magnet actuator uses a narrow yoke to maximize magnetic flux interaction with the coil member.
An optical unit uses an on-axis magnetic spring to return a movable body, avoiding optical axis deviation caused by unbalanced attraction forces.
Confocal sensors measure substrate thickness to prevent drilling defects, while a lens hole guide protects the array substrate during camera module integration.
Aligning the projector coil parallel to the main magnetic field cancels audible noise while projecting images onto the bore wall.
A movable projection mirror unit switches between positions to adapt image orientation.
Segmented lens groups with coordinated movement reduce aberration variation during zooming while maintaining a wide angle of view.
Ball bearings support a movable frame inside a carrier, enabling longer stroke optical image stabilization without increasing magnet coil gaps.
A lens barrel design nests the drive part within the vibration reduction unit to minimize optical-axis dimensions in the retracted state.
A backside imaging device uses a light transmission region to capture user images, reducing manufacturing costs by eliminating high-precision microlenses.
Assigns greater weights to user-instructed shots than automatic frames, resolving conflicts between continuous recording and preference alignment.
A shared mount base merges the imaging element and gyro sensor unit, reducing interposed members to enhance shake detection accuracy.
A nail print apparatus photographs fingers and combines designs onto a transparent film for transfer.
An integrally molded spring support assembly replaces separate suspension wires and elastic plates in a lens drive device, reducing production costs.
A camera actuator generates a resultant force combining thrust and resistance to displace a lens unit in specific orthogonal directions.
An expandable mobile photography studio eliminates transportation time by bringing controlled lighting and camera systems directly to inventory locations.
A lens stabilizer uses orthogonal rolling holders to move optical elements without overlapping components.
Coil substrate stopper portions prevent contact between the circumferential coil and flexible printed circuit to ensure smooth image sensor movement.
An electrochromic element uses specific solvation free energy differences to maintain compound affinity and inhibit aggregate formation.
A camera objective lens uses a wavefront manipulator to adjust spherical aberration via displaceable free-form optical components.
Elastic members support and power a lens frame movable member, eliminating separate yokes to reduce unit complexity.
Folding the optical path with angled mirrors projects wide images in confined A-pillars, preventing blurring from refraction.
A lens assembly uses a ring member to block ultraviolet rays during curing.
Line generator projector eliminates adaptor hardware to resolve trade-offs between alignment ease and image quality degradation.
Monolithic piezoelectric MEMS actuator enables biaxial rotation to compensate unwanted movements while reducing power consumption.
A rotating transparent plate stabilizes optical signals on focal plane arrays during high-velocity satellite imaging.
An integrated auto focus and optical image stabilizer structure uses electromagnetic induction to drive lens and frame movements.
A control unit switches front camera lenses between standard and wide angles during mode changes.
A camera actuator uses a vertical tilting guide to stabilize images without increasing device thickness.
Dual-axis voice coil motors rotate a folded camera prism for large-angle image stabilization while maintaining compact module dimensions.
Distinct zoom and focus lever switch shapes on the lens barrel outer frame allow tactile differentiation without visual confirmation.
Segmenting lens groups into shiftable units isolates vibration reduction from zoom mechanics, controlling large shifts without increasing optical aberrations.
A compact laser projection module integrates multiple lasers into a single package with a common exit port and shared focusing lens.
A four-unit zoom lens moves second and third lens groups to adjust focal length while maintaining optical alignment.
A lens driving device integrates a base groove filled with damping material to stabilize bobbin movement and restrict resonance oscillation.
Cam mechanism converts rotational motor torque into axial lens movement, reducing device size and motor output while enabling autoclave sterilization.
Liquid crystal polymer flexible substrates minimize system resonance during image stabilization movement, enabling precise servo control of the movable frame.
A photochromic lens cover darkens under ultraviolet light to conceal vehicle imagers without mechanical parts.
Rotating lenses dynamically compensates for astigmatism during continuous zoom ratio changes in high-definition broadcast systems.
Elastic suspending assembly supports lens movement along optical axis and perpendicular directions using magnetic coils to compensate for shaking.
Silicon-based liquid lenses replace mechanical actuators with electrowetting to resolve size and power trade-offs in portable device cameras.
A lens barrel uses a linear guide projection with an accommodation through-cutout to house displaceable elements during retraction.
Segmented flexible printed board folds in intersecting directions to reduce swinging load, preventing warpage and minimizing installation space.
A lens drive device uses elastic support members to enable smooth optical axis movement and precise shake correction.