Replacing mechanical axis movement with a single shifting fourth lens reduces camera module weight and volume while maintaining high-resolution image capture.
Adding a second lens between the micro-lens array and display element eliminates edge aberrations without increasing system complexity.
A fixed focus lens uses a free form reflective mirror to produce a curved imaging surface.
An eight-lens optical system uses alternating refractive powers to balance field of view against resolution loss from environmental changes.
A stereoscopic display uses a micro-structure layer to modulate light direction for an oblique angle of view.
A four-element optical lens assembly uses aspheric surfaces to correct aberrations and reduce total track length.
A four-piece optical lens system with alternating refractive powers captures visible and infrared light spectra.
A six-element camera optical lens design achieves ultra-thin wide-angle imaging through precise refractive power distribution.
Nanostructured optical security component generates dynamic magnification effects through integrated reflective interfaces.
Segmented lens groups correct aberrations while maintaining a compact size and wide angle of view.
Five-piece lens set uses negative-positive power distribution to shorten total length while compensating astigmatism and distortion.
An eight-element optical imaging lens uses specific refracting powers and surface shapes to enhance aperture and image height.
Aspheric surfaces in a five-element lens system reduce distortion and minimize total track length for mobile imaging.
A three-element lens group with an external diaphragm balances optical aberrations for compact imaging systems.
Six-lens configuration distributes aberration correction across elements to resolve the trade-off between low profile and peripheral image quality.
A three-element single focus lens system uses aspheric surfaces and specific refractive indices to correct optical aberrations.
Rotating primary and secondary cylindrical surfaces corrects astigmatism without adding weight or complexity to head-mounted display optics.
A four-element plastic lens system uses aspheric surfaces to correct optical aberrations while reducing total track length.
A four-element aspheric plastic lens assembly corrects optical aberrations through specific refractive power distribution.