A dual swing portion optical reflection element rotates a reflector about two axes using coordinated piezoelectric drive vibrations.
Segmenting the power-varying group into multiple lenses with specific refractive powers controls aberrations while reducing total length.
A five-lens imaging lens configuration reduces size and cost while maintaining optical performance.
Integrating a non-evaporable getter pump with an ion pump eliminates continuous power requirements, enabling portable ultra-stable laser systems.
A zoom lens design uses solid optical elements with specific Abbe numbers to correct chromatic aberration across the entire zooming range.
A seven-element optical imaging lens configuration with specific refractive power distributions and aspheric surface curvatures.
A seven-element imaging lens uses specific power distribution to correct optical aberrations.
A lateral head-up display image generator uses mirrors to redirect light toward a semi-reflective optical element.
Segmented optical combiner applies localized opacity to block computer-generated content from bystanders while preserving the user's real-world field of view.
Staggered thin-film transistor connections bypass broken row or column wiring lines, maintaining droplet movement capability despite structural defects.
A polymerizable composition using specific polythiol compounds and isocyanates to create optical materials with high refractive index.
Polyetherimide composite with inorganic filler maintains infrared transmission while resisting thermal expansion at elevated temperatures.
A motor driving component adjusts the relative distance between displaying and optical components to set a target diopter value.
Movable front unit lens subunit widens spacing with negative lens unit to correct off-axis aberrations without increasing system size.
A five-lens optical imaging assembly uses specific refractive powers to expand the field of view.
Segmenting the optical path into positive and negative lens units resolves the trade-off between total length and imaging performance.
Optimizing curvature radius ratios between negative and positive lens groups reduces total optical length without increasing front lens diameter.
Segmented color filters with offset openings minimize edge length to boost optical efficiency while blocking external reflection.
A fluorene-based resin composition with vinyl terminal groups enhances fluidity and strength for precision optical lens manufacturing.
A virtual image display device integrates a detachable auxiliary mounting member to resolve interference between see-through optics and corrective eyewear.
A seven-lens optical system uses an adjustable aperture and specific lens curvatures to converge light across a wide field of view.
A six-element optical system uses aspheric lens surfaces to expand view angles and correct aberrations in compact devices.
Lens frames with reflective partition walls redirect light through multi-channel lenses, preventing ghost images caused by inadequate refraction.
A six-lens optical module with specific surface curvatures and refractive powers directs light to an imaging sensor.
Segmented first lens corrects chromatic and spherical aberrations, enabling high resolution without increasing manufacturing complexity.
Segmenting the waveguide into aligned stacked plates separates tilted mirror fabrication, increasing field of view while reducing manufacturing complexity.
A six-element imaging lens assembly uses aspheric surfaces to correct aberrations while maintaining a compact form factor.
A projection optical system uses segmented spherical mirrors and lenses to form an intermediate image for high performance.
This bent zoom optical system folds the optical axis via a reflecting mirror to resolve the contradiction between high zoom ratio and bulky physical length.
A hydrosilylation-curable silicone rubber composition achieves high transparency and hardness through a specific rare-earth salt additive.
A five-group zoom lens moves four groups along the optical axis to adjust magnification while keeping the fifth group fixed.
An on-axis imaging system aligns a microdisplay, spherical mirror, and beam splitter along one optical axis to project images directly into the user's eye.
Segmenting the optical path into six elements with high-index materials resolves the trade-off between ultra-thin dimensions and imaging quality.
A five-lens imaging assembly uses specific refractive powers to achieve an ultra-thin large aperture design.
Distributing refractive power across seven lenses with specific curvatures reduces distortion while maintaining a compact total track length.
A low-amplitude MEMS mirror sits in series with a resonant mirror to redistribute illumination pulses across the scan field.
An eight-lens optical imaging assembly uses counter-weight lens structures to balance aberrations and achieve high imaging quality.
Segmenting the optical path into six lenses with specific curvatures compresses total optical length to resolve notch screen issues in portable devices.
A stretchable light-blocking cover with an inner fabric layer accommodates head movement while maintaining opacity.
A six-lens optical assembly uses glass and plastic materials to correct aberrations while maintaining compact size.
A five-group zoom optical system segments lens power to correct spherical and coma aberrations while reducing overall size and weight.
An electric motor rotates a pinion to move a rack, adjusting strap tension for rapid multi-user fitting without manual intervention.
A wearable display device uses a sensor unit to detect surrounding conditions, triggering an alarm output part when the determiner identifies dangerous objects.
Replacing manual mechanisms, shape memory alloy elements adjust lens spacing to resolve alignment precision issues in head-mounted displays.
Segmented reflective surfaces fold light paths to disperse power, resolving the trade-off between omnidirectional coverage and miniaturization.
A seven-piece camera optical lens design with specific refractive power distributions and surface curvatures.
A five-lens camera assembly with alternating refractive powers enables compact telephoto imaging.