Controlled refractive index and optical-axis orientation reduce rainbow mura while preserving film strength and moisture resistance.
This case merges touch circuitry with the polarizer substrate, reducing materials and interfaces for thinner, lighter displays.
This display case uses wavelength-specific wire grid polarizer pitches to improve short-wavelength transmittance and image clarity.
A retardation layer and liquid-crystal polarizers reduce ambient reflection while retaining front-view visibility and privacy switching.
A remote light source, optical coupler, depolarizer, and polarizer improve magnetic field accuracy by reducing optical and magnetic noise.
A corrugated substrate and protruding conductor layer address the tradeoff between transmittance, polarization, and shielding performance.
A polyester retardation film combines negative Rth with heat resistance and easy handling.
Microstructured and haze-controlled layers reduce display glare and sparkle while preserving image clarity and surface protection.
Paired polarizers and a compensation film reduce large-angle light transmittance to limit overlapping images in AR displays.
This case combines polarizers, a phase retarder, and shaped lenses to fold the light path for lighter, clearer head-mounted displays.
This case combines orthogonal polymer retardation layers to reduce front and side reflectivity without liquid-crystal alignment issues.
This case uses polarization-dependent refraction to focus image light while preserving external-light focus without a counter-lens.
This case uses an LC lens, beam splitter, and polarization control to shrink AR optics while preserving brightness and field of view.
A cholesteric liquid crystal layer reflects circularly polarized excitation light while transmitting fluorescence to improve measurement sensitivity.
This HMD optics case uses waveplates and reflective polarizers to recapture partial-mirror reflections and reduce folded-optics light loss.
Lithographic grating filters and matrixed sensors separate polarization signals from uneven illumination for accurate angle sensing.
A rotating, region-specific liquid crystal alignment pattern changes zeroth-order ray polarization to reduce stray light in displays.
A switchable liquid-crystal waveplate assembly varies optical power across broad wavelengths, reducing AR display thickness and weight.
This display module separates phase retarders around a linear polarizer to preserve sunglass visibility and support fingerprint imaging.
A phase delay sheet and circular reflector improve AR display efficiency while filtering polarized environmental light.
Protruding optical patterns redirect converted light to improve micro-LED luminous efficiency.
A polarized reflection path exposes stains before protective films are attached, improving visibility and inspection accuracy.
A dielectric-filled wire grid polarizer matches adjacent refractive indices to improve transmission and reduce interface reflections.
Varying cholesteric reflector thickness and pitch recycles lost polarized light, improving brightness without extra concentrating layers.
An isotropic layer strengthens optical elements while preserving oblique inspection accuracy.
A protruding first lens and larger underlying opening expand display area while limiting visible camera opening and reflections.