A removable glass forward element provides optical power to a fisheye lens series, maintaining focus without recalibration when interchanged.
A five-element lens module uses specific refractive powers and aspherical surfaces to direct light rays toward an image sensor.
Asymmetric turn-back parts in a zigzag drive beam mechanically suppress resonant ringing, preserving image quality without complex signal processing.
A compact AR optical engine splits unpolarized light into separate polarized paths using beam splitters and wave plates to maximize efficiency.
A laser scanning projection system relays the exit pupil into an augmented reality waveguide using polarizing beam splitters and quarter waveplates.
A methacrylate resin composition incorporating phenoxy resin achieves high transparency and strength.
A five-lens optical system uses aspheric surfaces with inflection points to adjust incident angles and modify optical paths.
An electrowetting lens array directs light from a transparent windshield display to increase apparent brightness.
An eight-element optical imaging lens uses segmented refractive surfaces to enlarge aperture and increase image height.
Anti-reflection coatings on lens surfaces minimize ghost reflections while maintaining a 145-degree field of view.
Segmenting the third lens group into fixed and moving parts reduces weight of shake preventing components while accelerating auto focusing response times.
Segmented prism triplets with distinct optical materials equalize dispersive effects to enable achromatic beam steering across broad spectral ranges.
Tilting a lens unit positions images off-axis, resolving distortion and field of view obstruction in augmented reality modules.
A compact imaging lens uses hybrid diffractive refractive elements to correct chromatic aberrations while maintaining a short total track length.
A rear-focusing optical system corrects comatic aberration using a segmented lens group design with specific curvature ratios.
A polarizing beam splitter and quarter wave plates create a folded optical path within a compact volume.
A segmented imaging lens uses positive and negative groups to achieve a wide angle of view.
A five-lens optical imaging system uses high refractive index elements to achieve a wide field of view and low F-number.
A head-up display relay optic assembly uses a spherical mirror to form an intermediate image for the observer.
A six-lens camera optical lens corrects chromatic aberrations through specific refractive power distributions.
Direct contact between third and fourth lenses eliminates air gaps, reducing flare from total reflection while correcting spherical and chromatic aberrations.
Tilting the internal dichroic coating reduces the angle of incidence below 45 degrees, minimizing beam shift and aberrations in spectroscopy systems.
A six-piece camera optical lens combines plastic and glass elements to correct chromatic aberrations while maintaining an ultra-thin total optical length.
A zoom lens uses resin lenses with specific Abbe numbers to minimize weight.
A compact optical lens assembly uses air lenses and aspherical surfaces to refract light across a wide field of view.
Dummy patterns in the second light emitting part cover the charge generation layer to prevent short circuits with the cathode electrode.
Segmented beam splitters in the lens fold light paths, reducing bulkiness while maintaining high-quality virtual image presentation.
Thioether carbonyl endcaps in polycarbonates improve color stability during high-temperature molding while reducing mold plate-out accumulation.
An eight-lens optical imaging group uses specific refractive power distribution to achieve large aperture and high image quality.
A five-piece lens module with specific refractive powers and surface curvatures minimizes light refraction angles to enhance imaging quality.
A three-lens optical assembly uses specific curvature ratios to redirect light rays toward the image sensor.
A six-piece plastic lens structure with specific refractive powers and curvature ratios achieves high-performance imaging in compact designs.
A refractive scanner lens pair rotates to direct a laser beam across a panel surface.
Segmented lens elements correct distortion to balance wide field of view against compact physical size.
A near-eye display waveguide integrates optical elements directly into the substrate to redirect and focus light without discrete components.
An eight-lens camera optical system balances spherical aberration and field curvature through optimized refractive power distribution.
Segmenting the first lens group reduces moving mass for quick focusing while correcting spherical aberration and astigmatism at close range.
A polyurethane composition for optical lenses combines specific diisocyanates with polyols to achieve high impact resistance and thermal stability.
A rotating reflector overlaps linear laser spots to boost energy density without increasing power.
A five-lens camera system with specific refractive powers achieves a narrow angle of view.
A five-element optical lens assembly with specific refractive powers and surface curvatures.
An eight-lens optical imaging assembly uses specific refractive powers to achieve a large field-of-view.
Segmented lens groups suppress aberration variations and flare during high-ratio zooming.
A four-element aspheric lens system distributes refractive power to correct spherical aberrations and field curvature.
A head-up display device projects guiding lights onto a reflecting plate to direct the driver's sight line toward the meter unit.
A seven-element photographic objective lens uses drum lenses to achieve a large relative aperture and wide field of view while correcting image plane curvature.
A six-element camera lens combines glass and plastic materials to correct chromatic aberrations while maintaining a compact optical length.
Segmenting the focusing group reduces weight and improves aberration correction while maintaining compact lens barrel length.
A seven-lens camera group achieves large aperture through specific refractive power distribution.
Optimized negative lens parameters correct aberrations and reduce weight, resolving the trade-off between illumination intensity and system size.