Nova Patents
EP1540664A2

Radiation source

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 18 July 2023, 3.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

59 claims: 8 independent, 51 dependent

  1. 1
    Claims of equivalent WO 2004010162 A2 I claim:1. An X-ray source comprising: a housing defining a chamber to accelerate electrons and an output of the chamber, the chamber having a first longitudinal axis, wherein the output is aligned with the first longitudinal axis to allow passage of accelerated electrons from the chamber;a tube defining a passage having a second longitudinal axis, the tube having a proximal end coupled to the output of the housing such that the second longitudinal axis is aligned with the first longitudinal axis and accelerated electrons can enter the passage;a target material within the tube, wherein impact of the target material by accelerated electrons causes generation of X-ray radiation;and shielding material around at least a portion of the tube around the target, the shielding material defimng a slot extending from the target to an exterior surface of the shielding material, the slot to allow passage of generated radiation;wherein the slot has an axis transverse to the first and second longitudinal axes.
  2. 19
    An X-ray source comprising:a linear accelerator defining a chamber to accelerate electrons and an output of the chamber, the chamber having a first longitudinal axis, wherein the output is aligned with the first longitudinal axis to allow passage of accelerated electrons from the chamber;a source of electrons associated with the chamber to emit electrons along the first longitudinal axis;a tube defining a passage having a second longitudinal axis, the tube having a proximal end with an input coupled to the output of the housing such that the second longitudinal axis is aligned with the first longitudinal axis and accelerated electrons can enter the passage;a target material of refractory metal at the distal end of the tube, wherein impact of the target material by electrons causes generation of X-ray radiation;and shielding material around at least a portion of the tube around the target, the shielding material defining a slot extending from the target to an exterior surface of the shielding material, the slot allowing passage of radiation resulting from impact of the emitted electrons on the target, the slot being perpendicular to the first and second longitudinal axes.
  3. 21
    An X-ray source, comprising:a source of high energy electrons, wherein the high energy electrons travel along a longitudinal path;a target material lying along the longitudinal path of the high energy electrons, the target material generating X-ray radiation due to impact of the high energy electrons with the target;and shielding material around at least a portion of the target, the shielding material defining a slot extending from the target to an exterior surface of the shielding material, the slot allowing passage of radiation resulting from impact of the emitted electrons on the target;wherein the slot has an axis transverse to the longitudinal path.
  4. 31
    A system for examining an object, comprising:a conveyor system to move the object through the system along a longitudinal axis;and a source of radiation comprising: a source of high energy electrons, wherein the high energy electrons travel along a longitudinal path;a target material lying along the longitudinal path of the high energy electrons, the target material generating radiation due to impact of the high energy electrons with the target;and shielding material around at least a portion of the target, the shielding material defining a slot extending from the target to an exterior surface of the shielding material, the slot allowing passage of generated radiation;wherein: the slot has an axis transverse to the longitudinal path;and the radiation source is positioned with respect to the conveying system such that radiation emitted through the slot will irradiate an obj ect for inspection on the conveying system.
  5. 43
    A scanning system to examine objects, comprising:a conveyor system to move the object through the system along a longitudinal axis;a source of high energy electrons to emit electrons along a path;a bend magnet along the path;a first target material, the target material generating X-ray radiation due to impact of the high energy electrons with the target;and first shielding material around the first target material, the shielding material defining a first slot extending from the target material to an exterior surface of the first shielding material, the first slot having an axis transverse to the path;a second target material, the target material generating X-ray radiation due to impact of the high energy electrons with the target;and second shielding material around the second target material, the second shielding material defining a second slot extending from the second target material to an exterior surface of the shielding material, the second slot having an axis transverse to the path;wherein: the bend magnet is capable of selectively directing the high energy electrons to the first or the second target;and the first slot and the second slot are positioned with respect to the first conveying system to irradiate different sides of the object on the conveying system.
  6. 45
    An X-ray scanning system to examine an object, comprising:a conveyor system to move the object through the system along a first longitudinal axis;and an elongated X-ray source having a second longitudinal axis, the X-ray source capable of emitting X-ray radiation with a peak energy of at least 1 MeN;wherein the X-ray source is supported adjacent to the conveying system such that the first longitudinal axis is parallel to the second longitudinal axis.
  7. 49
    A method of generating X-ray radiation, comprising:colliding high energy electrons traveling along a longitudinal path with a target surrounded by shielding material to generate radiation;and collimating the generated radiation into a radiation beam transverse to the longitudinal path by a slot extending from the target through the shielding material.
  8. 54
    A method of examining contents of an object with a radiation source, the method comprising:colliding high energy electrons traveling along a longitudinal path with a target surrounded by shielding material to generate radiation;collimating the generated radiation into a radiation beam fransverse to the longitudinal path by a slot extending from the target tlirough the shielding material;irradiating the object with the radiation;and detecting radiation interacting with the object.