A single common grid voltage source feeds a resistor ladder inside the high voltage enclosure, reducing gantry space and x-ray exposure risks.
Multi-point focal spot pattern distributes heat dissipation across discrete locations, reducing continuous heat accumulation without compromising image quality.
Alternating electromagnetic dipole devices deflect the X-ray focal spot diagonally, eliminating interaction effects that distort image quality.
A multi-layer multi-color scintillation detector determines residual energies of positively charged particles passing through a patient.
Replacing the conductive throat with ceramic eliminates eddy current losses, allowing faster electron beam deflection and improved transient response.
A multi-color X-ray generator collides pulse laser lights with an electron beam to produce monochromatic hard X-rays.
Integrated X-ray source generates collinear beams alongside proton therapy paths to verify patient alignment and tumor targeting accuracy.
A dual-voltage control circuit regulates current through electron beam manipulation coils to steer magnetic fields.
Varying throat wall thickness reduces eddy currents in an X-ray tube, enabling faster magnetic field rise times and improved transient response.