Segmented optics with adjustable relative positions eliminate uncontrolled direct light components while reducing beam divergence.
A plasma light source uses a double hybrid mirror system to direct electromagnetic radiation for ignition and sustenance.
An optical adjustment element deflects illumination beams to improve light usage efficiency in head-mounted displays.
Segmented reflector surfaces convert Lambertian emission into a square pyramid profile, reducing power consumption and heat generation in head-up displays.
Segmented reflection parts in a reflective diffusing lens improve luminance uniformity, reducing LED count and power consumption.
A lighting system uses a fly's eye condenser to homogenize light from an LED array.
Displacing microlens vertices from regular lattice points eliminates periodic interference effects that cause uneven light distribution.
Collimation lenses narrow LED beam angles to prevent overlap and improve image quality in heads-up displays.
A tapered lens assembly directs incident radiation onto an optoelectronic component via total internal reflection.
Segmenting the optical system into separate collimating and diverging lens groups resolves the trade-off between light efficiency and wide diverging angles.
A light-refracting apparatus merges a collimator and lens to disperse infrared light across wide fields of view.
A lens integrates a central refractive portion and two annular reflective elements to shape light output.
Segmented optical elements collect hemispherical light from an LED source into controlled beams, resolving energy leakage through package walls.
Position-dependent light spreading elements in the collimator correct color over position variations by spatially separating and equally spreading light beams.
Segmented detectors replace mechanical mirrors, reducing power consumption and system complexity.
A 360° optoelectronic sensor uses a static mirror element to deflect light onto an image sensor.
A rod lens converges light from a unit along an optical axis to concentrate energy.