Optical systems use specific curvature inequalities and aperture stop placement to suppress ghost light in super-wide-angle imaging applications.
Co-extruded biaxially stretched polyester film with incompatible additives diffuses light while eliminating curling from thermal expansion mismatch.
Variable aperture and beam splitters expand usable depth of field in endoscopes, resolving static focal plane limitations.
A color separation optical assembly uses a multiband dichroic film to extract blue and red light components from incident radiation.
Single laser source directs beams through rotating wedge prisms to achieve two-dimensional scanning, reducing component count and system cost.
Prisms collect light while elevations scatter it, reducing component count and manufacturing cost for homogeneous vehicle illumination.
A slit-scan multi-wavelength confocal lens module splits broadband light into linear spectral beams using chromatic aberration lenses.
Segmented inclined surfaces in the light exit layer redirect emission away from perpendicular Lambertian profiles for directed lighting.
Ti(IV) Ax adhesive matches ZnSe and ZnS refractive indexes to eliminate beam misalignment in electro-optical monitoring systems.
An optical element uses an inclined gap to separate light wavelengths via evanescent wave coupling.
A rotatable prism adjusts the camera scope angle of view within a single image readout frame using a 4K sensor.
A lens-surfaced prism folds the optical path using internal reflection to reduce system thickness.
An elastic sealing ring segments the endoscope shaft, isolating optics from autoclave dirt accumulation and stray light interference.
Integrating reflective units inside optical elements via close-contact adhesive bonding to eliminate diffraction and ghost images.
A camera uses multiple optical chain modules with light redirection devices to capture high-quality images in a compact form factor.
An optical manipulation device uses anisotropy elements to produce rotationally asymmetric point emitter images for depth and wavelength coding.
Seven lenses with specific refractive powers and aspheric surfaces correct spherical aberrations while maintaining a 11.50mm total track length.
A white light projection system splits illumination into color channels via a prism and recombines them for spatial Fourier transformation.
A panoramic image acquisition device uses a prism to direct optical signals from two fish-eye lens modules onto one image sensor.
A binocular prism module positions the light source vertically above or below the optical path to enable organic light-emitting diode integration.
Segmented transparent layers reflect and collimate VCSEL beams, maintaining alignment stability despite mechanical shocks in compact imaging modules.
Spectral tracking eliminates trimming filters, reducing ghost and flare from air interface reflections.
Voltage-controlled MEMS mirrors dynamically adjust focal length to eliminate stage vibration and enable high-speed imaging in wide-field microscopes.
A roof half-pentaprism beam splitting system uses isosceles and compensating prisms to direct light paths.
A head-mounted display imaging device divides images into partial subimages transmitted through separate optical channels.
A two-piece TIR prism assembly directs illumination light to a DMD panel using totally internally reflected paths.