Extraction of automation functions into an external unit reduces device volume while maintaining full orientation control capabilities.
LCD transmissive apertures correct beam misalignment automatically, eliminating costly maintenance downtime from false alarms.
A laser scanning apparatus calculates its attitude using sunlight incident direction and astronomical data.
A telematics system fuses accelerometer, GPS, and magnetometer signals to estimate vehicle yaw angles.
A signal processing device mixes rotation measurement signals to zero frequency for precise roll angle determination.
A laser guide blocks stray beams from entering gaps in a head stack assembly, resolving errors where testers mistake gaps for attitude issues.
Control system detects angle of attack changes via sensors on the screed and frame, automatically adjusting position to prevent mat defects and component wear.
A surveying apparatus adjusts its optical field of view based on object parameters to maintain continuous tracking.
A rotary lidar system employs a prism to divide the laser beam into multiple vertical layers, maintaining high point cloud density across a broad field of view.
Embedded opaque slat stacks in a dielectric layer define asymmetrical apertures that determine light direction, eliminating external collimators or polarizers.
Fixed Fabry-Perot resonator replaces moving parts to enable real-time low power laser beam analysis without bulky mechanics.