Fixing the prism to the camera body maintains positional accuracy during UAV attachment.
Multi-sided prism printing applies light-blocking polymer to lateral faces simultaneously using angled stencils for precise pattern alignment.
A synthetic quartz member with controlled aluminum and lithium content maintains optical transmittance under ultraviolet laser irradiation.
Prisms collimate divergent beams to equalize sizes, resolving feedback uniformity issues in high-power laser systems.
A wedge-shaped prism reduces the incident angle on vehicle glass, minimizing reflection loss and improving lidar detection distance.
Spatially tailored optical films relax birefringence via localized radiant heating, enabling precise reflective patterning without structural damage.
Random convex structures on a diffusion sheet enhance luminance while eliminating moire patterns caused by regular periodic arrangements.
Segmented hexagonal mirror flanks resolve the trade-off between single-view movement effects and versatile multi-information security displays.
A projection display apparatus uses a prism unit with a tilted air gap to bend the optical path of image light emitted from a micromirror device.
Wedge prisms redirect light paths for accurate 3D warpage assessment, resolving compactness constraints.
An irregular prism structure on a light directing film reduces moiré patterns and optical coupling while enhancing brightness.
A surface light source device uses stacked lenticular lens sheets to diffuse LED light into a batwing pattern for uniform illumination.
Merges the diffusing unit with the polarizing plate to remove reflective interfaces, improving transmittance and viewing angle.
A black edge prism sheet integrates a printed shading layer directly onto the peripheral region of the substrate.
A seed layer controls etching to form antireflective surface structures, eliminating multiple coating layers and improving laser damage thresholds.
Integrates reflective units inside optical elements using matched-index adhesives to eliminate diffraction and residual reflections.
A prism group within an endoscope optical system redirects stray light via total internal reflection to improve image clarity.
Partial coating on prism arrays breaks symmetry to enable asymmetric light transmission and directional control without causing nausea in three-dimensional displays.
A six-axis correction stage integrates auto-collimation and telecentric image measurement devices on a shared optical axis to perform synchronous positioning corrections.
An optical prism separates excitation and fluorescence light paths, preventing interference that degrades measurement precision.
A light guiding prism uses a negative inclination angle on its outer peripheral surface to divert stray light away from the optical axis.
A switchable diffuser redirects collimated light through scattering and deflection to alter output profiles.
Distinctive markings on optical sheets enable workers to verify correct stacking order during backlight assembly.
An elastic resin prism structure withstands compressive forces without breaking, preventing brightness loss from impact damage.
A patterned semiconductor crystal diffracts near-infrared beams to decouple sensitivity from operating bandwidth in thick electro-optic sampling devices.
Movable reflective members in the camera module vary optical path lengths to resolve the trade-off between zoom versatility and overall system length.
A range finder lens assembly integrates a prism and optical multilayer film to direct light beams through specific geometric conditions.
Vertical laser diode spacing corrects chromatic aberrations from prism decentering, maintaining optical axis alignment.
A tubular daylighting device uses prismatic elements to refract light toward a collector base aperture.
An air-spaced doublet and cylindrical lenses introduce coma and astigmatism to compensate for off-normal light modulator distortions.
Opposing Fresnel surfaces cancel field curvature in VR displays, reducing focus aberrations without increasing optical system thickness.
A periscopic device uses mirrors to redirect the line of sight for eye examination.
Protruding fibers on a transparent substrate diffuse light through refraction and reflection to enhance luminance uniformity.
Height-varying optical plate with prism pattern redirects lateral light sources to distribute illumination evenly across the display panel.
Segmented prisms with optimized angles reduce the projection lens back focal length, improving manufacturing efficiency and image quality.
Stationary optical modulator splits reflected light into orthogonal polarization components, resolving measurement time bottlenecks in semiconductor inspection.
A light splitting element guides dose scale information to both a photographic module and a viewing window on an insulin injection pen housing.
Total internal reflection in the transmission region reduces coating area, shrinking the deflection unit size while maintaining large field angles.
A prism module redirects light rays through multiple reflections to capture fingerprint images.
Segmented LED arrays replace complex optical filters to reproduce the solar spectrum, lowering device complexity and energy consumption.
A fingerprint recognition sensor uses a light direction switching layer with a right-angled triangular cross-section to direct incident light toward the substrate.
Passively actuating prisms in a Babinet-Soleil configuration vary optical path length to maintain focus despite thermal expansion shifts.
Segmenting the projection lens into two groups with adjustable distances resolves the trade-off between image size and resolution.
Nested prisms with air gaps align optical axes to reduce projector volume without increasing system complexity.
Segmented lens groups and reflecting surfaces form an intermediate image, achieving high magnification while minimizing the size of the optical system.
Monolithic micro-optics with dispersive gratings split light by wavelength, resolving image resolution deterioration during endoscope miniaturization.
Fresnel prisms redirect light into microlens cells, resolving the trade-off between measurement precision and device complexity in VR systems.