A six-element imaging lens design optimizes air gaps and surface profiles to compress the optical system length.
Actuators anchor to the membrane intermediate zone rather than the substrate, reducing device bulk while maintaining structural stability.
A four-lens image pickup configuration corrects optical aberrations while achieving wide angle capture.
A four-element image pickup lens uses aspheric surfaces to correct optical aberrations effectively.
A five-element optical imaging lens assembly uses specific refractive power distribution to reduce total length.
A five-element camera lens uses aspheric surfaces and specific refractive power distribution to achieve wide-angle imaging.
A seven-element optical imaging lens converges light through specific refractive powers and surface curvatures to form a focused image.
A lenticular security element uses segmented microlenses to produce multiple viewing-angle appearances via laser impingement.
A six-piece optical lens configuration with aspheric surfaces and inflection points adjusts the optical path to enhance view angle.
A four-element imaging lens uses alternating negative and positive refractive powers to correct optical aberrations.
A multiple-source laser display system uses low-power VCSEL arrays to form a white image with high brightness.
A four-element image pickup lens design with specific refractive power distribution and curvature radii.