IP Library Patent Application 14197482
Patent Application
App. No. 14/197,482

X-RAY TUBE COMPRISING FIELD EMISSION TYPE ELECTRON GUN AND X-RAY INSPECTION APPARATUS USING THE SAME

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Patent No.
US None
App. No.
14/197,482
Abstract

An X-ray tube and an X-ray inspection apparatus using the X-ray tube have improved workability of the baking for obtaining an ultra-high vacuum of the X-ray tube having a field emission type electron gun, and have stable performance. The X-ray tube includes a field emission type electron gun chamber, an electron beam aperture, an X-ray target and a vacuum pump in one body with a vacuum sealing structure (vacuum tube section). The vacuum tube section is attachable and detachable to an electromagnetic lens section in the X-ray tube. It is thereby possible to perform the baking by removing only the vacuum tube section. Fitting portions for positioning are provided at the vacuum tube section and the electromagnetic lens section to easily perform an optical axis alignment at a mounting time after the baking.

Claims (28)

1 - 8 . (canceled)

9 . An X-ray tube comprising:

an electron gun chamber having a field-emission type electron gun for generating an electron beam;

an electromagnetic lens section for focusing said electron beam;

an electron beam aperture for narrowing said electron beam;

an X-ray target to emit an X-ray with an irradiation of said electron beam narrowed by said electron beam aperture;

a liner tube section comprising by connecting said electron gun chamber and said X-ray target; and

a vacuum pump for evacuating said electron gun chamber to ultra-high vacuum and for keeping said ultra-high vacuum;

wherein said electron gun chamber, said electron beam aperture, said X-ray target, said liner tube section and said vacuum pump constitute a vacuum tube section in one body with vacuum sealing, and said vacuum tube section is attachable and detachable to said electromagnetic lens section.

10 . The X-ray tube according to claim 9 , wherein an optical axis of said vacuum tube section and an optical axis of said electromagnetic lens section are axially aligned by fitting a first fitting section located at an outer wall of said liner tube section and a second fitting section located at said electromagnetic lens section.

11 . The X-ray tube according to claim 9 , wherein said liner tube section is constituted by dividing into plural members for a length direction of said liner tube section.

12 . The X-ray tube according to claim 10 , wherein said liner tube section is constituted by dividing into plural members for a length direction of said liner tube section.

13 . The X-ray tube according to claim 9 , wherein said electromagnetic lens section further comprises a scanning coil to scan said electron beam on said X-ray target, said liner tube section further comprises a backscattered electron detecting section to detect an electron beam reflecting on said X-ray target, thereby to be possible to observe a backscattered electron image on a surface of said X-ray target.

14 . The X-ray tube according to claim 13 , wherein said backscattered electron detecting section has a ceramic supporting member to support a backscattered electron detecting electrode.

15 . The X-ray tube according to claim 10 , wherein said electromagnetic lens section further comprises a scanning coil to scan said electron beam on said X-ray target, said liner tube section further comprises a backscattered electron detecting section to detect an electron beam reflecting on said X-ray target, thereby to be possible to observe a backscattered electron image on a surface of said X-ray target.

16 . The X-ray tube according to claim 9 , wherein said electromagnetic lens section is located at a nearest side for said field-emission type electron gun and comprises a first electron lens that an inside diameter of an upper magnetic polepiece is larger than a same of a lower magnetic polepiece.

17 . The X-ray tube according to claim 15 , wherein said electron gun chamber constitutes a magnetic-field superposed type electron gun by having a convex shape corresponding to a shape of said first electron lens.

18 . The X-ray tube according to claim 10 , wherein said electromagnetic lens section is located at a nearest side for said field-emission type electron gun and comprises a first electron lens that an inside diameter of an upper magnetic polepiece is larger than a same of a lower magnetic polepiece.

19 . An X-ray inspection apparatus comprising said X-ray tube described in claim 9 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

20 . An X-ray inspection apparatus comprising said X-ray tube described in claim 10 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

21 . An X-ray inspection apparatus comprising said X-ray tube described in claim 11 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

22 . An X-ray inspection apparatus comprising said X-ray tube described in claim 12 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

23 . An X-ray inspection apparatus comprising said X-ray tube described in claim 13 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

24 . An X-ray inspection apparatus comprising said X-ray tube described in claim 14 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

25 . An X-ray inspection apparatus comprising said X-ray tube described in claim 15 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

26 . An X-ray inspection apparatus comprising said X-ray tube described in claim 16 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

27 . An X-ray inspection apparatus comprising said X-ray tube described in claim 17 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

28 . An X-ray inspection apparatus comprising said X-ray tube described in claim 18 , a sample stage which is irradiated an X-ray beam from said X-ray tube, and an X-ray detector to detect a transmission X-ray image transmitted said sample stage.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2016
From: MARS TOHKEN X-RAY INSPECTION CO., LTD.
To: MARS TOHKEN SOLUTION CO., LTD.
Reel/Frame 038434/0888 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 28, 2014
From: SHIROTA, KOHEI; MINAMI, KATSUTOSHI; OOHASHI, KENJI
To: MARS TOHKEN X-RAY INSPECTION CO., LTD.
Reel/Frame 032551/0186 →