Segmented side electrodes on barrier walls simplify manufacturing complexity while maintaining reliable electrowetting operation for liquid prism arrays.
Vibrator-based optical modulation enables accurate beat signal demodulation across varying object vibration states without predetermined condition constraints.
Integrating the wavelength conversion member into the extraction window directs reflected laser light upward, reducing internal light loss within the package.
Segmented optical waveguides couple LED radiation laterally to eliminate brightness drops along the longitudinal axis.
Segmented eyepiece optical member prevents soiling from sweat and rainwater by allowing tool-free removal of the protective cover for direct prism cleaning.
Segmented layers with distinct refractive indices reduce ridge abrasion and optical loss while maintaining brightness uniformity in liquid crystal displays.
Higher refractive index prism mediates light transfer to resolve coupling efficiency trade-offs in high-speed electronic devices.
A cubical dichroic prism combines RGB light sources through selective wavelength filters to direct emission parallel to the optical axis.
Differentiating prism vertex angles across regions resolves the trade-off between front viewing angle brightness and horizontal viewing angle adaptability.
Segmented adhesive application eliminates air bubbles and prevents contamination in high-precision optical light guide manufacturing.
Asymmetric offset positioning prevents beam protrusion while maintaining coupling efficiency and long beam waist distance.
A level sensor uses a prism and optical path modulator to split reflected light into polarized components for height detection.
Multi-layer dielectric stacks direct light through waveguides to resolve diffraction limits and expand color bandwidth.
A color synthesizing prism unit uses two adhesive layers with different tensile strengths to bond optical components securely.
A wide angle lens segments its image forming area into constant and varying magnification zones to create overlapping peripheral images.
A LiDAR range sensing apparatus uses temporal multiplexing to drive an emitter array through a single photodetector.
Biodegradable silk reflectors increase contrast ratios by redirecting light through scattering tissues without toxic agents.
An optical path compensation structure within a TIR prism eliminates image distortion caused by varying optical distances in touch projection systems.
Directly bonding wire grid polarizers to prisms eliminates adhesive failure under high heat, enabling smaller devices for head-mounted displays.
Merges separate light control layers into one component to eliminate assembly complexity and improve light efficiency.
A spectrally encoded image generation method uses dispersive elements to map spatial parameters into spectral coordinates for true-color display.
A movable optical deflector directs radiation from an elongated object end toward a stationary imaging sensor.
Prism-shaped ribs redirect incident light toward the fold mirror, suppressing secondary reflections that degrade image quality.
A microstructured optical film uses randomly distributed prismatic facets to collimate light and enhance brightness uniformity.
Polarization beam splitter directs light beams to specific image positions, eliminating energy waste from reflection and transmission losses.
An inclined liquid crystal display panel directs light to a reflective imaging element, maintaining contrast ratio and preventing grayscale inversion.
A decorative film structure integrates a pattern layer directly onto an adhesive-coated bearing surface.
An optical prism with an interlock structure precisely aligns the lens axis to enable a compact folded design.
Optimized glass beam guidance element resists solarization under high power densities, maintaining projection stability and image quality.
A head-mounted display assembly adjusts virtual image convergence based on measured movement speed using a semi-transmissive optical device.
A micro-prism array concentrates divergent light from digital micro-mirror display pixels using refraction to direct beams toward an exposure surface.
Pyramidal structures on a substrate rotate to present different colored facets, eliminating the need to change viewing angles relative to the light source.
A complex substrate integrates convex patterns and nano wire metal grids to control light transmission.
A luminescent optical film uses a fluorinated resin to achieve high brightness and scratch resistance.
A reflective polarizing beam splitter directs projector illumination into a light-guide optical element for uniform display output.
Integrating dichroic coatings on a single prism reduces device complexity and spatial requirements while maintaining measurement precision.
A resin dielectric prism uses a recessed sink-mark surface to maintain polarization state.
A microstructured diffuser layer with a refractive index contrast scatters redirected daylight to minimize solar column glare.
A prism drive device uses segmented magnets and coils to tilt a mover for compact zooming.
A lens driving device uses suspension wires extending along the optical axis to support a movable part between separated fixing and wire connecting members.
Varying the scattering layer thickness at lens apices reduces luminance unevenness without adding optical sheets.
A zoom lens system uses a reflective surface to bend the optical axis by 90 degrees.
Integrated lens surfaces on a prism-shaped measuring window reduce optical complexity and enhance measurement stability against thermal movement.
A compound optical element redirects light from an LED die using a base and apex structure composed of distinct materials.
A deflection member redirects infrared light toward a camera axis, resolving insufficient light capture from distant lamps.
Solution deposition of rigid rod-like polymers yields optical elements exceeding 1.6 refractive index without mechanical stretching stresses.
Orthogonal prism films condense backlight light to boost indoor and outdoor luminance while minimizing extinction from total reflection.
An asymmetric second prism reflects OFF light away from the projection axis, preventing ghost light and temperature rise while reducing projector size.
A surface light source device uses a concave-convex structure layer to extract light from an organic electroluminescent element.
A prismatic optical system shifts laser array axes to condense fluxes at a predetermined position.