IP Library Granted Patent US 12701647
Granted Patent B2
US 12701647 · App. 19/276,690 · Granted Aug 4, 2026

X-ray generation apparatus and X-ray imaging apparatus

Inventors: Hisashi Watanabe (Tokyo, JP); Atsuhiro Kuwajima (Nagano, JP); Takeo Tsukamoto (Nigata, JP)
Assignee: CANON ANELVA CORPORATION
H05G1/04H01J35/16H05G1/06H01J35/112
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Quick Facts
Patent No.
US 12701647
App. No.
19/276,690
Granted
Aug 4, 2026
Kind
B2
Abstract

X-ray generation apparatus includes X-ray generation tube having insulating tube with first and second opening ends, cathode closing the first opening end and having electron emitting portion, and anode closing the second opening end and having target; driving circuit for driving the X-ray generation tube; and accommodating container accommodating the X-ray generation tube and the driving circuit. The accommodating container has third opening end, and the X-ray generation tube closes the third opening end. The accommodating container defines first space storing the driving circuit, and second space protruding from the first space and storing the X-ray generation tube, the accommodating container includes protrusion portion surrounding the second space, and one end of the second space forms the third opening end.

Claims (39)

1 . An X-ray generation apparatus comprising:

an X-ray generation tube including an insulating tube with a first opening end and a second opening end, a cathode arranged to close the first opening end of the insulating tube and including an electron emitting portion, and an anode arranged to close the second opening end and including a target that generates X-rays when electrons from the electron emitting portion collide;

a driving circuit configured to drive the X-ray generation tube; and

an accommodating container configured to accommodate the X-ray generation tube and the driving circuit,

wherein the accommodating container has a third opening end, and the X-ray generation tube is arranged to close the third opening end,

the accommodating container is filled with an insulating liquid,

the accommodating container defines a first space storing the driving circuit, and a second space protruding from the first space and storing the X-ray generation tube,

the accommodating container includes a protrusion portion surrounding the second space, and one end of the second space forms the third opening end,

an outer surface of the cathode includes a cylindrical side surface, and

the side surface of the cathode is surrounded by a first member, and the first member is surrounded by a second member arranged between the first member and the accommodating container,

the accommodating container includes a convex portion protruding toward an interior of the accommodating container in a section including an axis of the X-ray generation tube, and

the second member has a first region which overlaps a virtual line connecting the convex portion and an outer surface of the cathode, and a second region closer to the anode than the first region, and a maximum value of a thickness of the second member in the first region is larger than a maximum value of a thickness of the second member in the second region.

2 . The X-ray generation apparatus according to claim 1 , wherein

the entire side surface of the cathode is surrounded by the first member.

3 . The X-ray generation apparatus according to claim 2 , wherein

in addition to the entire side surface of the cathode, the entire side surface of the insulating tube is surrounded by the first member.

4 . The X-ray generation apparatus according to claim 1 , wherein

in addition to the side surface of the cathode, at least a part of a side surface of the insulating tube is surrounded by the first member.

5 . The X-ray generation apparatus according to claim 1 , wherein

the second member is arranged spaced apart from the first member and the accommodating container.

6 . The X-ray generation apparatus according to claim 1 , wherein

the entire cathode is arranged in the second space.

7 . The X-ray generation apparatus according to claim 1 , wherein

the entire insulating tube is arranged in the second space.

8 . The X-ray generation apparatus according to claim 1 , wherein

at least a part of the insulating tube is surrounded by the second member.

9 . The X-ray generation apparatus according to claim 1 , wherein

each of the first member and the second member is made of an insulating material.

10 . The X-ray generation apparatus according to claim 1 wherein

the first member is one of polytetrafluoroethylene, PMMA (polymethyl methacrylate resin), epoxy, and fluorine rubber.

11 . The X-ray generation apparatus according to claim 1 wherein

the second member is formed by a resin-impregnated glass fabric laminated body.

12 . The X-ray generation apparatus according to claim 1 , wherein

the insulating liquid is an insulating oil.

13 . The X-ray generation apparatus according to claim 1 , wherein

the insulating liquid is a fluorine-based inert liquid.

14 . An X-ray imaging apparatus comprising:

an X-ray generation apparatus defined in claim 1 ; and

an X-ray detector configured to detect X-rays emitted from the X-ray generation apparatus.