A complex refractive layer converts linear to circular polarization so under-screen displays avoid Mura from dust-driven brightness unevenness.
Laser-formed recesses create a transmissive polarizer area above electronic modules, improving under-display light passage while preserving surrounding polarization.
Radial phase-delay zones in the aperture stop extend symbol-reader working range and depth of field without sacrificing image intensity.
Varying compensation film spacing across lens regions improves VR field-of-view imaging while avoiding more complex optical manufacturing.
A reflective polarizer paired with a weaker absorbing polarizer cuts block-state variation while preserving brightness and contrast in displays.
Low-retardation polyester and refractive-index-matched primer layers suppress display rainbow interference while preserving transmittance and strength.
A curved compensation film varies lens-region spacing to fine-tune optical path length and improve image uniformity with simpler manufacturing.
Refractive-index-matched primer layers and low-retardation polyester film suppress display rainbow patterns without sacrificing strength or clarity.
Controlled curvature ratios keep a polarized curved laminate adhered to the mold during insert molding, improving lens yield and reliability.
A transparent reflective layer acts as a parallax barrier to deliver high-definition 3D images with lower brightness loss in mobile LCDs.
Electric current tunes refractive index and polarization selection in a metalens zoom path, speeding focal adjustment while improving image quality.
A variable-pitch wire-grid reflective surface maintains polarized-light transmittance at oblique angles for brighter viewing across the display field.
Bonding the polarizing glass before anti-reflection coating prevents film-stress warping, enabling thinner optical isolators.
Time-multiplexed polarization routing creates virtual images at different depths, easing vergence-accommodation conflict and eye fatigue.
A twisted liquid crystal polarization diffraction element evens display brightness near edge regions while keeping the optical unit thin.
A silane coupling layer and Tg-tuned resin lens suppress reflective polarizer delamination and cracking in head-mounted displays.
Matched adhesive and retardation layers suppress interface reflections, improving display visibility and light transmittance.
A four-lens folded polarization layout improves AR/VR image clarity and stability while keeping the optical module compact and lightweight.
A liquid crystal diffractive beam splitter replaces thick polished optics, enabling compact wavelength selective switches with effective splitting and collimation.
A two-packet optical film stack cuts transmission leakage while maintaining high polarization reflectivity across a broad wavelength range.