IP Library Granted Patent US 7,491,958
Granted Patent B2
US 7,491,958 · App. 10/569,752 · Granted Feb 17, 2009

Radiographic inspection system for inspecting the contents of a container having dual injector and dual accelerating section

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Quick Facts
Patent No.
US 7,491,958
App. No.
10/569,752
Granted
Feb 17, 2009
Kind
B2
Abstract

A radiographic inspection system for inspecting subject objects using charged particle beams having pulses of charged particles with different energy levels from pulse to pulse. A phase shifter thereof enables adjustment of the RF power delivered to first and second accelerating sections thereof from a single RF source without adjustment of the RF power generated by the RF source. The system also enables the generation of images of the contents of a container from multiple directions and in multiple planes, and allows the discrimination of materials present in the container.

Claims (18)

1. A radiographic inspection system for inspecting the contents of a container, said radiographic inspection system comprising:

a power source for generating electromagnetic waves;

a first injector for producing pulses of charged particles;

a first accelerating section operable to receive said pulses of charged particles from said first injector, said first accelerating section being further operable to receive a first portion said electromagnetic waves and to transfer energy thereof to said pulses of charged particles from said first injector;

a second injector for producing pulses of charged particles;

a second accelerating section operable to receive said pulses of charged particles from said second injector, said second accelerating section being further operable to receive a second portion of said electromagnetic waves and to transfer energy thereof to said pulses of charged particles from said second injector; and,

a phase shifter interposed between said power source and said first and second accelerating sections for receiving said electromagnetic waves from said power source, for alternately changing the phase of said electromagnetic waves between successive pulses of said pulses of charged particles from said first injector, and for delivering said electromagnetic waves to said first accelerating section.

2. The radiographic inspection system of claim 1 , wherein said radiographic inspection system further comprises a 3 dB waveguide hybrid junction connected between said power source and said phase shifter.

3. The radiographic inspection system of claim 1 , wherein said radiographic inspection system further comprises a 3 dB waveguide hybrid junction connected between said phase shifter and said first accelerating section.

4. The radiographic inspection system of claim 3 , wherein said 3 dB waveguide hybrid junction is connected between said phase shifter and said second accelerating section.

5. The radiographic inspection system of claim 1 , wherein said radiographic inspection system further comprises a conversion target, and wherein said first accelerating section is further operable to emit accelerated charged particles at said conversion target to produce bremsstrahlung directed at a container.

6. The radiographic inspection system of claim 5 , wherein said conversion target is a first conversion target and said radiographic inspection system further comprises a second conversion target, wherein said bremsstrahlung is directed at said container in a first direction, and wherein said second accelerating section is further operable to emit accelerated charged particles at said second conversion target to produce bremsstrahlung directed at said container in a second direction different than said first direction.

7. The radiographic inspection system of claim 6 , wherein said first direction is substantially perpendicular to said second direction.

8. The radiographic inspection system of claim 5 , wherein said conversion target is a first conversion target and said radiographic inspection system further comprises a second conversion target, wherein said bremsstrahlung is directed at said container substantially in a first plane, and wherein said second accelerating section is further operable to emit accelerated charged particles at said second conversion target to produce bremsstrahlung directed at said container substantially in a second plane different than said first direction.

9. The radiographic inspection system of claim 8 , wherein said first plane is substantially perpendicular to said second plane.

10. The radiographic inspection system of claim 1 , wherein said phase shifter comprises a high-speed phase shifter having a rotary reflector therein.

11. The radiographic inspection system of claim 1 , wherein said phase shifter comprises a high-speed phase shifter having a waveguide shorting device and a waveguide discharger, wherein said waveguide shorting device is connected at an end of said waveguide discharger.

12. The radiographic inspection system of claim 1 , wherein said phase shifter comprises a high-speed phase shifter having a waveguide segment, wherein said waveguide segment has an outer wall, a ferrite element positioned within said waveguide segment, an electromagnet secured to the outer wall of said waveguide segment, and a coil for creating a magnetic field in said ferrite element.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2019
From: ZAVADTSEV, ALEXANDRE A.; BOWSER, GARY F.
To: SCANTECH HOLDINGS, LLC
Reel/Frame 048224/0560 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2015
From: ZAVADTSEV, ALEXANDRE A; BOWSER, GARY F
To: SCANTECH HOLDINGS, LLC
Reel/Frame 035493/0805 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2011
From: SCANTECH HOLDINGS LLC
To: SCANTECH IDENTIFICATION BEAM SYSTEMS, LLC
Reel/Frame 026815/0506 →