Segmented pixels with micro-lenses and collimated LEDs capture detailed angular information, resolving insufficient display clarity.
Split spreading structures pair low and high light spreading portions with prismatic features to control output beam width.
A display system uses a polarization splitting prism to redirect light from overlapping areas into frame zones for seamless image integration.
An image shooting apparatus uses an exchange mechanism to switch between bi-splitting and tri-splitting optical paths for simultaneous video capture.
A uniaxially or biaxially stretched polyester film with specific tensile strengths, moduli, and in-plane retardation values enhances mechanical strength and brightness.
A movable portion rotates an optical member around two perpendicular axes to adjust focus within a fixed housing.
Rotating Risley prisms steer light beams, reducing size and chromatic aberration in star trackers.
A viewing optic system merges a primary prism and microdisplay to overlay digital imagery onto the scene.
Antireflective films on a prism surface suppress reflection at air gaps, improving light use efficiency and preventing heat damage.
Varying reflector sizes and inclinations in an AR lens resolve the trade-off between manufacturing simplicity and virtual image sharpness.
Prism sheets in a double-vision backlight module split light to reduce central-interference area brightness while enhancing left and right view areas.
A rotating retroreflective prism redirects infrared laser beams to detect optical weapon sights, then uses a visible light laser to dazzle the target.
Capillary channels in an optical film position light control ink to absorb edge-emitted light, resolving leakage and efficiency trade-offs.
Integrating diffusion particles into the support substrate eliminates Newtonian rings and reduces backlight thickness while maintaining brightness.
Uniform microstructure flanks at 33 to 42 degrees resolve glare and random angle trade-offs by shaping emitted light.
A projection mirror guides zero-order light away from the optical path to prevent image distortion and maintain luminance.
Asymmetric prisms with distinct refractive indices compensate for off-axis viewing angles while minimizing color separation in vehicle displays.
An optical prism and beam splitter redirect light paths to match the camera's field of view with the user's vision, resolving alignment mismatches.
ATR prism with recessed totally reflecting surface maintains high internal transmittance and stable positioning.
A zoom lens design moves second and fourth groups along the optical axis to achieve a high zoom ratio in a compact form factor.
An integrated primary prism consolidates red, green, and blue lights to resolve the contradiction between device size and illumination intensity.
Meandering prism structures on an optical substrate redirect light to boost luminance while eliminating interference fringes without separate diffuser films.
A polarization beam splitter with sliding prisms adjusts optical path lengths to widen the depth of field in endoscopes.
Intermediary mounting plates decouple tilted surface formation from precise prism positioning, resolving manufacturing precision trade-offs in camera modules.
A binocular telescope uses a composite prism system to integrate laser ranging with observation optics.
Asymmetrical triangular pillars retroreflect thermal radiation to prevent local temperature rises and the urban heat island effect.
Variable pitch prism structures disrupt Moiré interference patterns in stacked displays without compromising illumination intensity.
Concave prism surfaces manage orthogonal scanning light paths to reduce chromatic aberration while minimizing the air gaps that typically increase system size.
A prism sheet uses variable microstructure density to converge light in the central region while maintaining broad viewing angles.
A zoom lens system varies air gaps between four lens groups to achieve optical magnification.
A hemispherical prism and high numerical aperture lens refract light to capture surface plasmon resonance images across a large optical field.
Refractive prisms replace diffraction gratings to eliminate order sorting filters, boosting optical throughput and correcting wavefront errors.
A master fabricates optical products with non-holographic features that reproduce 3D images through reflected light.
A transmissive prism uses oppositely tilted incidence and exit surfaces to deflect reflected radiation laterally away from the optical axis.
An eccentric lens cancels comatic aberration from an oblique air gap, reducing flare and enabling high-definition image quality without compromising brightness.
A backlighting device uses a light guide plate with prismatic and linear patterns to extract light beams for distinct display modes.
Thin prisms direct light beams to designated spots, separating photovoltaic and thermal bands without complex mechanical tracking.
A prismatic optical layer redirects incident light rays to prevent total internal reflection within a transparent touch screen.
Prism dispersion compensation merges multiple laser beams into a single optical path, eliminating complex mirror alignment for multi-wavelength flow cytometry.
An optical coupling layer containing surface-modified inorganic nanoparticles reduces internal reflections at organic interfaces, improving usable light output.
A wide angle diffuser integrates microlenses and prisms on a plate-shaped body to diffuse collimated light.
Two projectors with polarizing beam splitters eliminate parallax and boost luminance by projecting left-eye and right-eye images simultaneously.
Segmenting the optical path into a fixed resolution-optimized assembly and a moving focus lens reduces inertia and improves low-light clarity.
A prism and light transmitter module positions the optical source vertically relative to the prism holder to optimize internal space utilization.
Replacing PET with naphthalenedicarboxylate polyester prevents warping in thin films while maintaining on-axis gain and low haze.
A dielectric cloaking device guides electromagnetic waves around an object to create a broadband invisibility effect.
A light guide substrate couples light waves through a slanted edge prism to expand the eye-motion-box and reduce system size in head-mounted displays.
Spatial light modulator enables mutual occlusion between virtual and real objects, resolving ghost-like artifacts in augmented reality.
Shape memory alloy wires drive a prism device to rotate about two perpendicular axes within a periscope lens module.
A multilayer optical sheet module embeds protruding structural patterns within an adhesive layer to expand the bonding interface area.