An intraoral camera system switches between battery and dental chair power sources to maintain reliable operation.
Segmented support frames and shaft pins enable orthogonal rotation while repulsive magnets stabilize the lens module, resolving vibration correction complexity.
A camera module uses multiple displacement identification layers with varying widths to detect lens movement.
An optical assembly stabilizes the reflection module using overlapping magnets and a preload assembly to resolve manufacturing precision issues.
A flexible light guide receives direct UV light from a single LED array to deliver uniform intensity for photosensitive curing.
Front and rear camera arrays film simultaneously to eliminate multiple vehicle passes required for realistic background footage.
A camera module uses a tilting liquid prism to redirect light for optical image stabilization without moving lenses.
Processor extracts and integrates signal features to calculate precise offset values for blurring detection sensors.
A compact optical move apparatus positions guide members to avoid overlapping the drive coil, enabling orthogonal movement.
An optical module behind the display panel converes transmitted light to a camera, resolving screen-to-body ratio and image quality trade-offs.
An elastic connector with a metal film electrically couples circuit boards, enabling easy disassembly and repair of the camera module.
Extracting auxiliary optics reduces adapter size and cost while enabling shift and tilt operations.
A virtual fish tank assembly projects three-dimensional images onto an adhesive screen attached to the tank interior.