Elastic pressing tabs on the enclosure secure light-guiding units, reducing assembly complexity while maintaining connection strength.
Heat emitting holes in the lower cover and a thermal sheet move LED heat outside, preventing white light color shifts from temperature changes.
Two-dimensional grating antennas enable 2D beam steering, overcoming the one-dimensional limits of linear optical phased arrays.
Four-sided light entrance planes reduce travel distance in the light guide plate, achieving uniform bell-curve illuminance with reduced thickness and weight.
A splice tray holder uses spring portions to provide biasing force against retention grooves for secure cable engagement.
An optical scanner uses deflecting micromirrors with phase control to direct light beams across a surface.
Lower cover guide protrusions engage light guide plate recesses to fix component position, preventing lamp damage and erroneous main support assembly.
Integrating multiple optical functions into one photonic crystal component reduces system losses and complexity while maintaining high isolation.
Centering ribs in a light emitting panel align the light source to maintain a uniform air gap and prevent hot spots.
Segmented floating reflection films boost backlight efficiency while preventing signal writing delays caused by stray capacitance.
Grooves in the transparent cover use total internal reflection to direct light toward the peripheral edge, eliminating visible dark ring-shaped elements.
Rectangular enclosure provides five directional inlets to eliminate cable bending and maintain compactness during installation.