H01J2235/066

Transmission X-ray generator
09748068 · 2017-08-29 · ·

An x-ray transmission device includes two surfaces in frictional contact within a low fluid pressure environment provided by a housing substantially opaque to x-rays. Materials of the two surfaces are selected such that the frictional contact generates relative charging between the surfaces. The housing includes a window substantially transparent to x-rays, and an electron target, for example a metal, is on an interior surface of the window. The electron target faces the surface that is relatively negatively charged, such that electrons accelerated from that surface, or accelerated due to the negative charge of that surface strike the electron target to generate x-rays, which may be transmitted through the window.

X-ray source and the use thereof and method for producing X-rays

An x-ray source in which monochromatic x-rays can be produced is provided. A method for producing X-rays and to the use of the x-ray source for x-raying bodies is also provided. A metallic film is arranged in a housing as a target which is bombarded with the electron beam. As a result, the metallic film is excited for emitting monochromatic x-rays, the relatively thin-walled target being modified such that the intended use for producing monochromatic x-rays is no longer possible. Therefore, advantageously, the production device can be pivoted for producing the electron beam as well as being able to wind the target on rollers.

X-RAY TUBE

An X-ray tube according to an embodiment of the inventive concept includes a cathode structure; an anode structure spaced vertically from the cathode structure, a gate electrode structure disposed between the cathode structure and the anode structure, an emitter array disposed between the cathode structure and the gate electrode structure, a tube sheath configured to connect the cathode structure and the anode structure, and a fixing unit connected with the gate electrode structure. The cathode structure includes a first rotation shaft and a cathode connected with the first rotation shaft as one body. The gate electrode structure includes a second rotation shaft and a gate electrode connected with the second rotation shaft through a bearing, and the second rotation shaft is connected with the first rotation shaft by a coupling unit. The gate electrode includes a gate electrode substrate and a protruding part that protrudes from the gate electrode substrate toward an emitter. The protruding part of the gate electrode includes a gate hole that vertically overlaps the emitter. The fixing unit includes a ferromagnetic structure attached to one surface of the gate electrode substrate and disposed on an outer portion of the substrate and a permanent magnet disposed adjacent to the ferromagnetic structure with the tube sheath therebetween.

X-ray tube

An X-ray tube according to an embodiment of the inventive concept includes a cathode structure; an anode structure spaced vertically from the cathode structure, a gate electrode structure disposed between the cathode structure and the anode structure, an emitter array disposed between the cathode structure and the gate electrode structure, a tube sheath configured to connect the cathode structure and the anode structure, and a fixing unit connected with the gate electrode structure. The cathode structure includes a first rotation shaft and a cathode connected with the first rotation shaft as one body. The gate electrode structure includes a second rotation shaft and a gate electrode connected with the second rotation shaft through a bearing, and the second rotation shaft is connected with the first rotation shaft by a coupling unit. The gate electrode includes a gate electrode substrate and a protruding part that protrudes from the gate electrode substrate toward an emitter. The protruding part of the gate electrode includes a gate hole that vertically overlaps the emitter. The fixing unit includes a ferromagnetic structure attached to one surface of the gate electrode substrate and disposed on an outer portion of the substrate and a permanent magnet disposed adjacent to the ferromagnetic structure with the tube sheath therebetween.

FIELD EMISSION CATHODE DEVICE AND METHOD OF FORMING A FIELD EMISSION CATHODE DEVICE
20230369002 · 2023-11-16 ·

A field emission cathode device and formation method involves a rotating field emission cathode including a field emission material deposited on a surface thereof, the field emission cathode rotating about an axis and being electrically connected to ground, and a planar gate electrode extending parallel to the surface of the rotating field emission cathode and defining a gap therebetween. A gate voltage source is electrically connected to the gate electrode and is arranged to interact therewith to generate an electric field, with the electric field inducing a portion of the surface of the rotating field emission cathode adjacent to the gate electrode to emit electrons from the field emission material toward and through the gate electrode.

X-ray tube and a controller thereof
11282668 · 2022-03-22 · ·

An X-ray tube including a vacuum vessel, a cathode and an anode fixedly disposed inside the vacuum vessel, and a rotary mechanism that rotates the vacuum vessel, where the cathode is disposed on the circumference with a rotary shaft of the rotary mechanism as its center and includes multiple cathode parts that can individually be turned ON/OFF, and where the anode includes parts opposite to the multiple cathode parts, respectively.

X-RAY SOURCE FOR X-RAY DIFFRACTION APPARATUS, RELATED APPARATUS AND METHOD
20240060911 · 2024-02-22 ·

There is provided an X-ray source for an X-ray diffraction apparatus. The source includes a target and a filament operable to generate an X-ray beam, a vacuum chamber, outer and inner housings and a rotation mechanism. The chamber encloses the target and the filament and has a window transparent to the beam. The outer housing is mountable to the apparatus and includes outer housing openings. The inner housing encloses the chamber and is mounted to the outer housing. The inner housing includes inner housing openings positioned to be aligned with the window and the outer housing openings. The rotation mechanism is in engagement with the outer housing and the inner housing and is operable to provide a rotation between the inner outer housings between a line focus configuration, wherein the filament is parallel to the window, and a point focus configuration, wherein the filament is perpendicular to the window.

X-RAY TUBE AND A CONTROLLER THEREOF
20180075997 · 2018-03-15 · ·

An X-ray tube comprises a vacuum vessel; a cathode and an anode fixedly disposed inside the vacuum vessel; and a rotary mechanism that rotates the vacuum vessel. The cathode is disposed on the circumference with the rotary shaft of the rotary mechanism as its center and includes a plurality of cathode parts that can individually be turned ON/OFF. The anode includes parts opposite to the plurality of cathode parts, respectively.

X-ray source for X-ray diffraction apparatus, related apparatus and method

There is provided an X-ray source for an X-ray diffraction apparatus. The source includes a target and a filament operable to generate an X-ray beam, a vacuum chamber, outer and inner housings and a rotation mechanism. The chamber encloses the target and the filament and has a window transparent to the beam. The outer housing is mountable to the apparatus and includes outer housing openings. The inner housing encloses the chamber and is mounted to the outer housing. The inner housing includes inner housing openings positioned to be aligned with the window and the outer housing openings. The rotation mechanism is in engagement with the outer housing and the inner housing and is operable to provide a rotation between the inner outer housings between a line focus configuration, wherein the filament is parallel to the window, and a point focus configuration, wherein the filament is perpendicular to the window.