Segmented field emitters vary dual focal spot spacing in a stereo X-ray tube, improving spatial perception for different interpupillary distances.
Micro-bunch gating and fast gun driving improve FLASH particle beam dose fidelity, enabling precise intra-pulse delivery with less normal tissue toxicity.
Precise cathode welding and positioning cut focal spot variation to 0.1 mm, improving X-ray resolution, intensity, and tube life.
Segmented spacer resistivity and grounded interfaces suppress charge buildup and arcing, enabling more stable high-voltage X-ray tube operation.
A recapture channel returns liquid metal to the bearing gap, limiting depletion and contamination in rotating anode X-ray tubes.
An offset rotating plasma plate and chamber gas flow keep debris away from beam and emission paths, stabilizing EUV radiation output.
A ceramic-isolated dual-energy anode target replaces moving CT X-ray sources to improve imaging quality, speed, and reliability.
An integrated liquid metal bearing shell helps rotary x-ray anodes run at high frequency while dissipating heat and limiting fatigue.
A spaced holder wall keeps hard bearing outer rings from abrading the holder during thermal sliding in rotating anode X-ray tubes.
A seamless molded housing combines the x-ray tube and power supply to cut weight, improve EMI shielding, and dissipate heat evenly.
Beam orientation sensing and closed-loop adjustment keep electron beam and target alignment precise, reducing X-ray source downtime.
A segmented cathode shield with a rolled-edge mask improves radiation heat transfer, electron focusing, and high-voltage reliability in X-ray tubes.
A carbon region with sp2 bonds between the target layer and diamond substrate relieves thermal stress, improves adhesion, and stabilizes radiation output.
Multiple CNT electron sources and adjustable anodes focus X-rays on the target, improving 3D imaging resolution at low voltage.
A cross-member split sleeve isolates fluid cavities in X-ray tube hydrodynamic bearings to reduce leaks, raise load capacity, and limit focal spot motion.