Swingable temples with dynamic temple pads adapt to various head shapes, preventing slippage during intense exercise without manual adjustment.
A bifocal optical assembly uses a liquid crystal lens to dynamically adjust focal planes for near-eye displays.
Displacing a sleeve along plastic threads adjusts tension for various lens diameters without jamming.
A contact lens uses concentric gradient dot matrix prints to enhance eye appearance while preserving natural iris color.
A spectacle lens uses selective spectral transmittance to attenuate blue light wavelengths while maintaining high visibility in the green-red spectrum.
A wearable display system uses a device holder to maintain a smartphone within specific distances and angles relative to lens sub-assemblies.
Segmented magnetic contact pieces resolve head shape variation, ensuring stable mechanical coupling and improved audio quality.
Segmented end pieces engage with temple locks to resolve the contradiction between secure lens retention and tool-free operation.
Dispersing spirooxazine in resin prevents ultraviolet degradation and speeds up decoloration.
A therapeutic contact lens incorporates a yellow filter to absorb short-wavelength radiation for pseudo-aphakic eyes.
Offset contact lens optical axis aligns with line of sight to correct hyperopic focal error.
A processing device minimizes a global cost function to determine optical equipment geometry.
Motor-driven adjustment gear rotates push blocks to change device leg angle, resolving tightness variability across different head shapes.