Refractive elements partition images into sub-images, reducing the volume of the virtual image generation module compared to traditional HUD systems.
A prismatic optical element with sequentially decreasing refractive indexes deflects emergent light toward a vertical direction.
Optical segmentation isolates scattered contamination signals from substrate reflections, resolving crosstalk issues that degrade measurement precision.
A prism refracts projected light to align the image parallel with an AR frame arm while a waveguide sits at a wrap angle.
A complex spatial light modulator combines a prism array and holographic device to independently control phase and amplitude.
Attenuated total reflection prism detects surface-normal optical functions of anisotropic films without requiring waveguide effects or additional materials.
A light source unit design enhances LED utilization efficiency by optimizing optical emission characteristics.
Curved prism side surfaces align graded index lens arrays, resolving cumulative deviation errors in optical multiplexing modules.
A transmission mask creates discrete spots on a detector, eliminating calibration time and boosting measurement precision.
Transparent ring redirects LED light via reflector and prism to illuminate scales, resolving uniformity complexity trade-off.
Chamfered corners on beam reverser prisms minimize thermal stress and polarization loss to maintain output power.
A balloon envelope integrates signal-passing sections and movable directing surfaces to route electromagnetic waves toward internal receivers.
A prismatic optical element redirects light between adjacent screens, eliminating visible frames and expanding the preferred viewing area.
A zoom lens configuration uses a bending prism and moving lens groups to reduce overall length.
Crossed prism layers redirect light from edge sources to replace the light guide plate, reducing thickness while maintaining uniform illumination.
Segmented light convergence portions on a guiding plate direct light to distinct focal points, resolving image distortion caused by observer position shifts.
A fly-cutting system uses rotary encoders to determine head and spindle positions as functions of time, enabling precise synchronization of cutting elements.
Segmented pyramidal surfaces eliminate the need to change viewing angles by rotating the substrate, delivering consistent color shifts via optical interference.
A prismatic film light guide distributes light uniformly across an LCD panel using low-index layers and curved wedge sections.
An intermediate magnesium oxyfluoride layer suppresses interface optical absorption while preventing delamination under high temperature and humidity.
A compact collimating optical device integrates a light-guide with polarizing beamsplitters and retardation plates.
A display device optical switching element directs light emission angles through a structured light guiding plate.
A coupling prism with a specific angle range adjusts mode-line spacing to enable proper sampling of high-order modes by the detector array.
A sheet holding head contacts an optical sheet to read positional information from reflected light distribution for precise alignment.
An optical path folding element uses a light absorption film and matte structure to eliminate non-imaging reflected light.
A light redirecting film uses structured microstructures to increase display brightness.
Marangoni convection creates Benard cell structures that control haze value and reduce white muddiness for high contrast.
Surface microstructures replace diffusing particles to boost hiding power and image contrast without reducing backlight transmittance.
A light conversion structure uses prism arrays to redirect incident light at predetermined angles through a transparent substrate.
Geometrical optical relief structures on a transparent cover plate redirect incident light to reduce reflection losses at the active layer interface.
A dynamic lens adjustment mechanism removes unintended images and prevents flaring or ghosting caused by external light interference.
A laser level features a movable mounting member with dual threads and detents.
Segmenting the optical path with a field bias element reduces aberrations while expanding the field-of-view in digital projectors.
A lens mechanism with a rotating assembly adjusts the angle of refraction for strabismus inspection.
Dual-reflection micro-prisms redirect collimated light into an observation zone, resolving manufacturing precision issues in compact waveguide designs.
Distinct microstructures reflect specific light sources to resolve inconsistent distribution in displays and luminaires.
A wearable display uses dual prisms and a brightness-adjusting coating to direct light paths and reduce distortion.
A junction type compound lens combines resin and glass elements to correct aberrations while securing back focus.
A projector optical path shifting element adjusts light position via a control circuit to maintain display precision.
Optical path difference generation unit adjusts laser light paths inside the laser head to align condensing positions.
A crossed prism optical sheet balances condensing effects across diagonal axes to enhance contrast ratio and viewing angle uniformity.
Applying edge sealant to light redirecting films reduces channel cross-sections and blocks water ingress during installation.
A tunable optical filter uses a beam translator to synchronously scan input and output beams across multiple paths.
Single prism structure measures liquid concentration by combining refractive index and absorbance detection, eliminating complex optical components.
Auxiliary fly's eye elements stabilize incident light angles to maintain uniform illuminance distribution across the target surface.
A multiplexing prism combines shifted and unshifted light paths to expand the visual field for low vision patients.
Segmented backlight units paired with diffraction gratings eliminate angle dependency while maintaining front-side brightness.
An inclined recess on the control member bottom positions legs to eliminate bright spots and improve luminance uniformity.
Wavefront inversion of split light components creates interference patterns that resolve spatial resolution without increasing device volume.
A prism combiner merges optical axes to deliver telecentric illumination, resolving intensity uniformity trade-offs in wide-field imaging.