Driven and free carriages on a common rail allow independent plate control while reducing spatial footprint and alignment complexity.
A secondary radiation source generates electromagnetic beams via Compton scattering to inspect opaque loads.
A single crystal aperture body with a funnel-shaped pinhole directs X-ray beams while preventing total reflections.
Segmented absorbing sheets mask specific source areas to control intensity without altering the X-ray spectrum, solving spectral distortion in CT.
Offset proximal and distal leaf layers create high-resolution apertures, resolving manufacturing precision limits in single-layer designs.
A pinhole collimator assembly features adjustable apertures to dynamically modify gamma ray passage paths during imaging examinations.
A direct-converting x-ray detector uses a collimator reflection layer to distribute additional radiation for uniform charge carrier generation.
A neutron generator uses a convergent funnel to produce focused thermal neutrons.
A multileaf collimator with transverse motion tracks tumor movement during radiation therapy.
A hybrid imaging system integrates a multi-row detector and flat panel detector within a single gantry for surgical procedures.
Shared alignment pins fit into rail grooves and module holes to position detector elements and collimator plates.
Independent adjustment of asymmetric collimator diaphragm pairs reduces unnecessary radiation exposure while maintaining precise imaging coverage.