Segmented heat sinks separated by an insulating circuit board prevent LED thermal damage to the laser, extending operational reliability.
A vehicular headlamp system emits first and second light distribution patterns in complementary colors to draw road surface designs.
A multi-chip LED illuminant module combines ultraviolet and white light sources to generate broad spectrum illumination.
Parallel nutrient feeding with quick-connect valves isolates individual modules, preventing wet and dry root zones while enabling seamless system expansion.
A white laser automotive lamp combines blue, green, and orange laser sources with a condensing unit to generate illumination.
A wearable headlamp integrates a photosensor to detect ambient light levels and adjust primary LED luminous flux automatically.
A luminaire uses a concave specular reflector to direct light toward a diffuse surface for uniform emission.
Infrared ultraviolet transparent optical films enable touch detection and surface disinfection in display systems.
Segmented narrow spectral emitters replace phosphor conversion layers to elevate scotopic to photopic ratios and gamut area index values.
Segmented phosphor conversion paths eliminate absorption losses while independent drive currents maintain high luminous efficacy.
A common focus energy emitter uses non-coaxial 3D concave primary reflectors to direct light toward a shared source point.
A replaceable vehicle light uses a radial LED array on a PCB to create distinctive illumination patterns.
A light-transmitting candle structure uses a patterned film and hollow cover to project overlapping light shades.
A lighting system uses multiple LEDs and a wavelength converting element to produce tunable emission spectra.
Segmented lamp body with a lock ring enables bulb replacement without dismantling the entire structure, resolving maintenance difficulties.
Independent adjustment of compensation and excited light corrects color gamut deviations from standard spaces like DCI or REC.709.