See how internally connected refrigerant flow paths eliminate external pipe joints to prevent l
Oscilloscope-based magnetron output analysis enables remote failure prediction and maintenance scheduling before radiotherapy downtime occurs.
Nitrogen pressure zones and a vacuum circulator prevent RF arcing in medical linear accelerators without SF6 leakage or environmental harm.
A vacuum circulator and pressurized nitrogen waveguides suppress RF arcing in medical linear accelerators without SF6 leakage or recovery systems.
A resonant cavity twist and mode launcher rotate the magnetron 90 degrees to align RF modes in tight radiation therapy form factors.
Waveguide tuning and harmonic attenuation keep second-harmonic RF energy away from the magnetron, reducing overheating and extending source life.
A hybrid DC-AC magnetron waveform cuts UV ripple and preserves uniform emission in vertical or angled lamp operation.
A magnetic body surrounding the magnetron current path suppresses noise currents that can trigger false AFCI arc-fault shutdowns.
A shared cooling block circulates liquid refrigerant around the anode and magnets to prevent heat-driven degradation in high-output industrial magnetrons.
Multiple accelerating tubes in one ray source enable multi-view scanning without added source weight or complex moving hardware.
Periodic radiation combinations let one source switch energy by object region, improving scan adaptability without added source weight or cost.
A copper-stainless steel anode cuts eddy currents and improves water cooling, enabling stable amplitude modulation in magnetrons.
Lifetime data analysis predicts magnetron replacement timing in radiotherapy systems, reducing unplanned downtime and manual diagnosis.
A ferromagnetic spherical end wall moves through curved quarter-wave tubes to tune resonance frequency and widen sound absorption in tight spaces.
Programmable voltage control adjusts x-ray pulse amplitude, width, and delay at up to 500 pulses per second.
A magnetic field generator with movable magnets and a permeable base shapes the erosion region on sputtering targets.
A dual diamond electron-emitting electrode combines n-type and p-type members to boost primary and secondary electron production.
Zirconium oxide and carbide additives in a tungsten alloy maintain high voltage emission stability while eliminating radioactive thorium hazards.
A relativistic magnetron replaces the physical cathode with a virtual cathode formed by an electron beam exceeding space-charge limits.
A magnetron system uses internal modulation to generate pulsed RF power for superconducting accelerator cavities.
A magnetron design minimizes electromagnetic interference by reducing the lower end shield size and optimizing electron beam paths.
Flow directing structures between parallel cooling fins redirect air to eliminate hot spots caused by core obstruction.
A magnetron uses alternating inner and outer magnetic poles to create a multi-directional field that improves thin film deposition.