Adjusting separate anode and cathode transformers keeps bipolar X-ray generator voltages balanced under unbalanced tube loads.
Additional grids intercept arcs and decelerate ions in an x-ray source, protecting the field emitter from back bombardment damage.
Independent anode and cathode transformer control keeps X-ray tube voltages within range, reducing insulation complexity and stabilizing operation.
A cathode covering member blocks triboelectrification at the insulating tube surface, suppressing abnormal discharge and improving X-ray tube insulation.
An insulating liquid and intermediary members block triboelectrification paths on the tube surface, suppressing abnormal discharge and extending service life.
A resin-covered shield and insulating liquid prevent triboelectric surface discharge on the X-ray tube, improving insulation reliability.
An insulating liquid and spaced insulating cover prevent triboelectrification on the X-ray tube surface, reducing abnormal discharge and failure.
An insulating member and zoned container layout prevent triboelectrification on the tube surface while preserving X-ray transmission and insulation.
A covering member around the cathode and insulating tube blocks triboelectrification in insulating liquid, reducing abnormal discharge and failure.
An insulating member and liquid-filled container layout block triboelectrification on the tube surface, reducing abnormal discharge and shutdown risk.
A low-triboelectric coating on the X-ray tube outer insulator suppresses abnormal discharge in insulating liquid and improves reliability.
Current limiting by emitter path helps field effect electron emitters survive high-voltage flashovers with minimal damage and continued operation.
Pre-switching and holding grid voltage during tube voltage changes keeps tube current below overload limits and preserves dual-energy CT dose uniformity.
Diagnostic capacitors shift filament circuit resonance so degraded X-ray tube components can be identified quickly without added isolation switches.
Diagnostic capacitors shift filament drive resonance so degraded X-ray tube filaments, cables, or circuit parts can be identified without added switches.
Pulse-by-pulse dose and HVL monitoring inside the collimator helps correct X-ray energy drift and keep scan images consistent.
Dynamic cathode window potential tuning limits electron beam emittance and matches focal point size during rapid tube current switching.
Low-voltage switching of field emitters enables fast x-ray pulses while keeping high-voltage electron acceleration stable for responsive imaging.
PCB-based planar transformers replace manual winding to improve x-ray source isolation consistency while cutting circuit weight and size.
Modular fixed-anode reflected ray tubes place focal points on one circle, avoiding large ring anodes while maintaining X-ray strength for static CT.
Optical fiber communication enables galvanically isolated gun controller programming in x-ray sources, even in harsh high-voltage environments.
An insulating member and liquid suppress cathode-side discharge, allowing longer projection geometry for stable higher-magnification X-ray imaging.
By placing Zener-based gate voltage regulation inside the vacuum tube, this case shrinks the radiation source without losing drive stability.
A cold-cathode on-chip X-ray source uses a vacuum cavity and resistive-switching electron emission to cut size, cost, and switching delay.
A shared driver and data collection circuit uses time-division switching to control multiple X-ray cathodes with lower hardware cost and fast response.
Multiple grids intercept arcs and decelerate ions in an x-ray source, protecting field emitters from back-bombardment damage.
Stacked circuit boards with flat capacitors and recessed diodes shrink X-ray high voltage generators while preserving insulation and assembly productivity.
Dynamic potential switching in an X-ray tube enables high-sensitivity pressure detection through ion current measurement, preventing abnormal discharges.
Segmented secondary window prevents debris from short-circuiting the heater, ensuring continuous self-cleaning operation.
A pre-controller calculates a reference duty ratio trajectory to drive an inverter, generating stable flat-top voltage pulses that eliminate overshoot.
A controller adjusts RF power via compensated control voltage to stabilize radiation beam generation.
An X-ray generating apparatus uses a flowable insulating fluid gap between windows to prevent electrical discharge.
A radiation generating tube bonds electrodes to an insulating tubular member using a conductive material coated with a dielectric layer.