Segmented lens assembly with negative refractive power corrects optical aberrations to resolve low resolution in automotive safety monitoring.
A seven-lens imaging system uses aspheric surfaces to correct optical aberrations across the field of view.
Dual-plane torsion springs reduce nonlinearities in a resonant scanning mirror, enabling large deflection angles without structural damage.
A six-piece camera optical lens combines glass and plastic elements to correct chromatic aberrations while maintaining an ultra-thin profile.
Waveguide material properties balance thermal conductivity and absorption to minimize thermo-optical effects in augmented reality displays.
Non-rotationally symmetrical aspheric surfaces in a six-lens camera assembly correct off-axis tangential and sagittal aberrations for improved image quality.
Dividing the third lens group into object and image side portions with a wide air interval enables high magnification ratios while maintaining compactness.
A nine-element optical lens assembly uses aspheric surfaces with inflection points to control light paths and achieve high image quality.
A near-to-eye display freezes the last rendered image when pilot head velocity exceeds a defined threshold.
Rotating image light polarization directs energy through a partial reflector, minimizing leakage and enhancing light utilization efficiency in virtual displays.
Shading unit blocks stray light from reaching sensor and interconnect, reducing output signal variations caused by ambient light interference.
A near-eye display uses a freeform meta-surface combiner to direct images to an eyebox.
A three-piece compact optical lens system uses aspheric surfaces to capture biometric data within a reduced volume.
Five-element imaging lens uses aspheric surfaces to correct spherical and chromatic aberrations across a wide field of view.
A five-element wide angle lens uses a cemented plastic pair to correct magnification chromatic aberration.
A vibration-proof zoom lens moves a third lens subgroup perpendicular to the optical axis to stabilize images during camera shake.
A zoom lens uses a segmented rear group to enable variable magnification and short imaging distances.
Dynamic near plane parameter adjustment aligns virtual images with actual objects, eliminating positional deviation caused by optical principle limitations.
Segmented substrate regulation portions constrain rotor movement and prevent deformation, ensuring stable operation under heavy impact loads.
Dual 45-degree prisms in a five-lens group fold the optical path, enabling an ultra-thin profile while maintaining an 80-degree field of view.
A camera module shaking correction driver uses magnets and coils to move a lens module on a plane perpendicular to an optical axis.
A negative meniscus lens group corrects spherical aberrations to maintain optical quality across temperature variations without increasing element count.
A four-piece infrared lens system uses aspheric surfaces to correct optical aberrations and improve image quality.
A waveguide combiner extends across the user's eye at a wrap angle to couple light via an input coupling grating.
A five-element imaging lens uses an off-axis aspheric pole point on the fifth lens surface to control light ray incident angles.
Thermally denatured olefin adhesive bonds cycloolefin antireflection film to silicon, resolving wave absorption and adhesion trade-offs in terahertz optics.
A six-element aspheric lens design moderates converging intensity to enhance image sharpness.
Dielectric films seal holographic elements against moisture entry, preventing interference stripe deviation and maintaining reliable deflection characteristics.
Seven lens elements with aspheric surfaces correct optical aberrations, balancing high sensitivity and wide field of view within compact device constraints.
A reflective device adapts to capture user eye images for precise optical see-through display alignment.
A six-piece camera optical lens design corrects chromatic aberrations using alternating refractive powers and precise curvature ratios.
Embedded curved reflective units redirect augmented reality image light toward the user pupil.
A birdbath optical element immersed in high index glass collimates image light to an external exit pupil for near-eye display coupling.
Incorporating specific anionic monomers into the polymer network resolves the trade-off between wettability and modulus while maintaining oxygen permeability.
A five-element imaging lens assembly tilts the fifth lens surface to reduce edge aberrations while maintaining an f/EPD ratio of 1.9 or less.
A polarization dependent image offset component deflects pixel lights to separate them into multiple sub-pixels.
An optical converter splits incident light into orthogonal beams and recombines them to generate polarized radiation with preserved beam profiles.
A resin composition combines polyester and polycarbonate units to deliver high refractive index and low Abbe number.
Fixed off-axis collimator tubes capture wide field targets simultaneously, eliminating frequent physical adjustments during optical device calibration.
A diffractive optical element uses a low-extinction thin film between gratings to control light propagation.
A five-piece camera optical lens uses aspherical surfaces and specific refractive indices to achieve a compact form factor.
Optimized refractive power distribution in a six-lens module achieves narrow angle of view while correcting aberrations.
Segmenting the beam-shaped frame into a preassembled skeleton unit resolves stability versus assembly complexity trade-offs in rugged AR headsets.
A portable virtual reality headset uses folding lens plates and supporting boards to create a thin film for convenient carrying.
Partitioning mirrors into sections with piston capability minimizes wavefront distortion and diffraction effects during small angle beam steering.
Segmenting the optical path into four lenses with alternating refractive powers resolves contradictions between high light admission and aberration control.
A folded optical path using a prism increases effective focal length and incident light while reducing smartphone lens thickness.
A light attenuation section reflects laser light for scanning while transmitting a portion to a sensor for control.
A light-field projection system uses a single narrow-band point light source per color to generate virtual images for augmented reality displays.
Nanoscale ultramarine blue pigments uniformly dispersed in a polymerizable composition prevent yellowing and haze while maintaining high light transmission.