A five-element plastic lens system uses specific refractive power distribution to achieve wide field of view.
A zoom lens bends its optical path ninety degrees via a reflecting member while shifting a fifth lens unit transversely to counteract camera vibration.
A six-element imaging lens uses aspheric surfaces and air gaps to correct optical aberrations across the field.
Aspherical plastic lenses reduce chromatic aberration and F-value while maintaining a 90-degree viewing angle.
A six-piece plastic camera lens uses specific refractive powers and curvature radii to correct optical aberrations.
A compact optical lens system uses aspheric elements to collect light at large angles and capture images within short distances.
Orthogonal polarizers on stacked panels superimpose virtual images at varying distances, resolving the trade-off between image flexibility and panel complexity.
Pin-light arrays generate incident fields for optical modulators, while static combiners direct rays to resolve visual conflicts from incorrect depth cues.
Relocating comb fingers to a fast scan frame reduces aerodynamic damping and lowers required drive voltage.
A dual-lens optical system uses a spatial filter to process light rays from the display panel.
Aligning a 45-degree slanted parallax barrier with sub-pixels eliminates light leakage and color distortion in dual-directional 3D displays.
Segmenting the zoom optical system into five independently moving lens groups reduces spherical and coma aberrations while shrinking barrel volume.
Electrostatic forces or mechanical vibration dislodge liquid drops from optical elements, preventing light distortion and maintaining image clarity.
A seven-element optical imaging lens uses specific surface shapes and material dispersion to maintain high image quality.
A seven-element camera lens combines plastic and glass elements to correct chromatic aberrations while maintaining a short total optical length.
A five-lens optical system uses aspheric surfaces to increase light intake and improve imaging quality.
A head-mounted display uses micro mirrors and relay lenses to enlarge and converge light beams for user viewing.
A manufacturing-aware design flow generates meta-atoms accounting for fabrication artifacts to optimize metasurface layouts.
A five-element optical imaging system uses alternating positive and negative refractive powers to reduce outer diameter.