Combining lamination with polyurethane injection molding reduces material diversity, labor costs, and weight while increasing production capacity.
Vision system identifies direct sunlight on the driver's face to automatically block dazzling without manual operation, maintaining continuous road attention.
Selective pixel darkening reduces driver glare without obstructing vision, avoiding uniform window tinting.
Actuating movable mirrors and adjusting window light transmission ensures reliable auto lock recognition despite ambient noise or low-light conditions.
Angled legs in this snap-in fastener reduce installation force while ensuring stable attachment of vehicle structures.
A vehicle window system adjusts light transmittance using thin-film-transistors to enable dynamic transparency control.
Open weave fabric sunshade circulates air through the gap between shade and windshield to prevent heat buildup and de-lamination.
A light control film with vertically-aligned liquid crystals attached to a vehicle sunroof manages molecular orientation via applied electric fields.
Voltmeter feedback dynamically adjusts drive potential to compensate for inrush current drops, ensuring consistent transmissivity.
Switchable films replace mechanical blinds in the windshield, resolving headroom and weight trade-offs.
A visor bracket integrates electrically-conducting material into its side wall to establish direct electrical communication with the vehicle power system.
A switchable device with variable opacity layers between electrodes adjusts glazing transparency.
A vehicle visor assembly rotates and translates along a track to shield the interior from glare.
Video recording device captures occupant head reactions to drive electrochromatic window dimming for glare reduction.
Segmented optical layers block interior heat while redirecting blocked light into photovoltaic cells for energy generation.
A self-powered variable transmittance optical device uses electrochromic switching material to transition between light and dark states.
Switchable antireflection film suppresses windshield ghost images by dynamically altering optical properties based on external illuminance levels.
A multi-color smart PDLC film switches between transparency and opacity via electric field control.
A vehicle roof closure system closes a shade before a panel to detect obstructions without requiring ring sensors around the frame.
A vehicle light-adjusting window uses a reflective film between conductive layers to project clear video content onto an internal projection film.
A multilayer anti-glare coating uses specific refractive index layers to minimize reflectivity on transparent substrates.
An adjustable viewing port employs an hourglass channel and optical diaphragm to expand the field of view while resolving complexity trade-offs.
A blower inflates an airtight enclosure within a glare shield compartment to displace smoke from the line of sight while minimizing storage space.
Segmented roof headliners use pre-cut sections to break during airbag deployment, preventing sun visor movement and reducing injury risk.
Free radical resisting layers capture radicals from photo-curing agents, preventing conductive layer damage and maintaining electrical conductivity.