A single display module in augmented reality glasses reduces weight and current consumption by switching between monocular and binocular modes.
Side-mounted retroreflective elements on glasses frames improve user visibility in darkness without causing visual interference from reflections.
Laser beam scanning display device uses MEMS to project content directly onto AR glasses lenses.
A dispensing system provides sample lens sets to head-mounted devices for vision testing.
Segmented temple arms create an open-back cavity that shades ears while preventing catching during removal.
Head-mounted eyewear integrates imaging sensors with projection optics to enhance vision in low-light environments.
A retractable earplug assembly integrates into eyewear temple arms using a parking structure and flexible tether system.
A lens heating system applies thermal energy to optical components to prevent fogging.
Offset adhesive bonding reduces waveguide edge stress by 45% and prevents drop test failures in multi-layered eyewear displays.
Transparent heating element accelerates photochromic lens switching, overcoming slow darkening in high temperatures.
A variable transmission lens adjusts its transmittance setpoints based on measured ambient light to optimize visual comfort.
Vibrating the auricle via a transducer assembly generates acoustic pressure waves, reducing power consumption and crosstalk while keeping the ear canal open.
Electronic contact lens display divides viewing area into segmented regions associated with specific software applications.
Dual Abbe number materials in a curved lightguide correct chromatic aberrations for eyewear displays.
Segmented contact lenses resolve binding issues by combining an ion-impermeable central zone for electronics with a permeable edge to sustain ion diffusion.
A segmented head-mounted display separates the face-contacting section from sensitive electronics.
A retractable arm moves the display from a frame cavity to resolve visibility and volume trade-offs.
Antennas positioned along temporal arms reduce interference between cellular and GPS signals.
Hinge volumes route conductors between pins, shielding wires from environmental damage and preventing snagging on hair or skin.
Elastic sheathing member surrounds metal core to secure eyeglass accessory in lens through hole, preventing lens damage and skin injury during use.
Smart glasses integrate optical sensors and microcontrollers to acquire heart rate data during physical activity.
A tunable lens modifies HMD focal length via secure prescription data, eliminating the need for separate eyeglasses.
Eyewear merges communication and vital sign monitoring into compact frames, resolving the trade-off between device complexity and ease of use.
Segmented coverings and internal air paths deliver oxygen through thick payload cores, resolving structural integrity versus permeability trade-offs.
Wavefront aberrometry measures user refraction to dynamically adjust tunable optics, resolving discomfort from fixed refractive errors.
Automated sensor feedback loops replace subjective manual assessment with objective data to improve visual acuity compliance.
Capacitive sensors on flexible cables detect user gestures at nose pads while maintaining aesthetic integration.
Auto-leveling laser glasses project precise reference lines for hands-free construction work.
Integrated sensors in a contact lens detect iris patterns, resolving the trade-off between security coverage and user convenience.
An implanted SLSMA uses a microlens array to project images onto healthy retinal areas, bypassing invasive neural interfaces.
A curved eyepiece integrates a prescription layer to provide user-specific lensing within a see-through optical path.
A semitransparent photovoltaic film generates electrical power from sunlight while maintaining optical clarity in wearable eyewear lenses.
A customized viewing system with face-matching mask and pre-positioned lenses.
Clamping connecting portions allow the mounting base to slide on the lens, adjusting the optical engine position to match user interpupillary distances.
Partially transparent nose pad uses a rigid embedded insert to provide visible branding while maintaining easy mounting via elastic deformation.
Nose-pad-free spectacle temples use hair-penetrating holes and a deformable support to stop rear-end levitation during hard exercise.
Oriented solenoids induce current from external magnetic fields, sustaining power supply despite varying eye orientations.
A pair of contact lenses operates in coordination using integrated circuit units for imaging and display functions.
An eyelid occlusion sensor detects user gestures to dynamically adjust the optical power of an eye-mountable contact lens.
Removable ear rest component levels misaligned eyeglass frames to eliminate optical distortion without damaging the original structure.
A spatial focal field glasses display projects elementary beams onto the crystalline lens to form a depth of field effect.
A handheld protective eyewear design featuring a lens with holding stick receptacles that allows the eyewear to be momentarily positioned in front of eyes and quickly moved away.
A remotely controllable lens device integrates a biocompatible circuit to manage drug release and optical properties via wireless energy signals.
An optical device uses anisotropic reflecting surfaces to couple light waves into a substrate via total internal reflection.
A glasses-type head mounted display uses a nested frame structure to support an adjustable nose bridge for secure wear.
MEMS sensors detect upward head movement to fade reading lights, preventing dazzling discomfort.
A reader device transmits RF power to an eye-mountable sensor, processes glucose concentration data, and relays it to a display via distinct protocols.