IP Library › Granted Patent US 12,723,994
Granted Patent B2
US 12,723,994 · App. 18/172,800 · Granted Sep 1, 2026

Target X-ray inspection system and method

Inventor: Peter J. Rothschild (Newton, MA)
Assignee: Viken Detection Corporation
G01N23/10G01N23/083G01N23/18G01N23/203G01V5/222G01N2223/301G01N2223/33G01N2223/505G01N2223/646
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Quick Facts
Patent No.
US 12,723,994
App. No.
18/172,800
Granted
Sep 1, 2026
Kind
B2
Abstract

A target inspection system includes a portable x-ray scanner configured to output a scanning beam of x-rays, a transmission detector module to detect x-rays of the scanning beam of x-rays that are transmitted through a target when the target is interposed between the portable x-ray scanner and the transmission detector module, and a coupling arm configured to couple the portable x-ray scanner to the transmission detector module mechanically to form a target inspection assembly, via a mechanical coupling between the coupling arm and the portable x-ray scanner at a proximal end of the coupling arm, and via a mechanical coupling between the coupling arm and the transmission detector module at a distal end of the coupling arm. The transmission detector module and the portable x-ray scanner are mechanically coupled together via the coupling arm, defining an opening to receive the target to be interposed therebetween for an x-ray scanning operation.

Claims (50)

1 . A target inspection system comprising:

a portable x-ray scanner configured to be handheld and to output a scanning beam of x-rays;

a transmission detector module configured to detect x-rays of the scanning beam of x-rays that are transmitted through a target when the target is interposed between the portable x-ray scanner and the transmission detector module; and

a coupling arm configured to extend partially around the target and to couple the portable x-ray scanner to the transmission detector module mechanically to form a target inspection assembly, via a mechanical coupling between the coupling arm and the portable x-ray scanner at a proximal end of the coupling arm, and via a mechanical coupling between the coupling arm and the transmission detector module at a distal end of the coupling arm, the transmission detector module and the portable x-ray scanner mechanically coupled together via the coupling arm defining an opening configured to receive the target to be interposed therebetween for an x-ray scanning operation with the coupling arm extending partially around the target,

wherein the coupling arm includes a mounting bracket configured for mechanically coupling the transmission detector module to the portable x-ray scanner, the mounting bracket being detachable from the portable x-ray scanner, the transmission detector module, or both.

2 . The target inspection system of claim 1 , wherein the transmission detector module is configured to be connected to the coupling arm at only one end.

3 . The inspection system of claim 1 , wherein the coupling arm is rigid.

4 . The inspection system of claim 1 , wherein the coupling arm is flexible.

5 . The target inspection system of claim 1 , wherein the transmission detector module is configured to have an effective active detection area that is adjustable with respect to a given field of the x-rays that are transmitted through the target.

6 . The target inspection system of claim 1 , wherein the mechanical coupling between the coupling arm and the transmission detector module is a rotational mechanical coupling that is configured to enable the transmission detector module to be rotated to adjust the effective active detection area.

7 . The inspection system of claim 1 , wherein the arm is spring loaded such that it remains disengaged from the inspection object or engaged with the inspection object absent application of external force.

8 . The inspection system of claim 1 , further including an actuator configured to move the arm into an engaged position with respect to the inspection object or into a disengaged position with respect to the inspection object.

9 . The inspection system of claim 1 , wherein a mechanism is configured to permit the arm to be mechanically decoupled from the portable x-ray scanner upon application of external force.

10 . The inspection system of claim 1 , wherein the coupling mechanism of the coupling arm to the scanner or the coupling arm to the transmission detector module includes a magnetic linkage.

11 . The target inspection system of claim 1 , wherein the coupling arm is mechanically coupled to the portable x-ray scanner at the proximal end of the coupling arm via a hinge mechanism.

12 . The target inspection system of claim 11 , wherein the hinge mechanism is configured to permit the coupling arm to be mechanically decoupled from the portable x-ray scanner upon application of external force.

13 . The target inspection system of claim 12 , wherein the hinge mechanism includes a magnetic linkage.

14 . The target inspection system of claim 1 , wherein the coupling arm is configured to be mechanically decoupled from the portable x-ray scanner, the transmission detector, or both.

15 . The target inspection system of claim 1 , wherein the coupling arm includes one or more adjustable joints situated between the proximal and distal ends of the coupling arm.

16 . The target inspection system of claim 8 , wherein the coupling arm includes two or more adjustable joints situated between the proximal and distal ends of the coupling arm.

17 . The target inspection system of claim 1 , wherein the portable x-ray scanner includes two or more connection points on different respective sides of the portable x-ray scanner.

18 . The target inspection system of claim 1 , wherein the transmission detector module includes a scintillator material configured to be mechanically coupled to the coupling arm.

19 . The target inspection system of claim 18 , wherein the scintillator material includes at least one strip of scintillator phosphor screen, the transmission detector module further including one or more ribbons of wavelength shifting fibers (WSFs) optically coupled to the at least one strip of scintillator phosphor screen.

20 . The target inspection system of claim 19 , the transmission detector module further including a photodetector, at least one end of a ribbon of the one or more ribbons of WSFs being optically coupled to the photodetector.

21 . The target inspection system of claim 20 , wherein the photodetector is a photomultiplier tube (PMT).

22 . The target inspection system of claim 1 , wherein the coupling arm has an adjustable length.

23 . The target inspection system of claim 1 , wherein the transmission detector module includes a non-pixelated detector that detects x-rays of the scanning beam that are transmitted through the target over a scan of the scanning beam.

24 . The target inspection system of claim 1 , wherein the transmission detector module is configured to provide information about a spectral content of the transmitted x-rays.

25 . The target inspection system of claim 1 , wherein the portable x-ray scanner includes a backscatter detector that is configured to detect x-rays of the scanning beam that are backscattered by the target.

26 . The target inspection system of claim 1 , further including an output interface configured to output image data for providing an image of the target for inspection of the target.

27 . The target inspection system of claim 26 , wherein the output interface is further configured to output transmission image data.

28 . The target inspection system of claim 1 , further including one or more lasers mounted at the portable x-ray scanner and configured to indicate a position of the scanning beam of x-rays for alignment of the transmission detector module with the scanning beam.

29 . A method of target inspection, the method comprising:

mechanically coupling a portable x-ray scanner that is configured to be handheld to a transmission detector module via a coupling arm to form a target inspection assembly, including mechanically coupling the coupling arm to the portable x-ray scanner at a proximal end of the coupling arm, the coupling arm mechanically coupled to the transmission detector module at a distal end of the coupling arm, wherein the mechanically coupling the portable x-ray scanner to the transmission detector module further forms an opening between the portable x-ray scanner and the transmission detector module;

interposing a target between the portable x-ray scanner and the transmission detector module, at the opening, in an interposed configuration, with coupling arm extending partially around the target;

outputting a scanning beam of x-rays from the portable x-ray scanner; and

detecting, using the transmission detector module, x-rays of the scanning beam that are transmitted through the target in the interposed configuration with the coupling arm extending partially around the target,

wherein the coupling arm includes a mounting bracket configured for mechanically coupling the transmission detector module to the portable x-ray scanner, the mounting bracket being detachable from the portable x-ray scanner, the transmission detector module, or both.

30 . A target inspection system comprising:

means for mechanically coupling a portable x-ray scanner that is configured to be handheld to a transmission detector module via a coupling arm to form a target inspection assembly, including mechanically coupling the coupling arm to the portable x-ray scanner at a proximal end of the coupling arm, the coupling arm mechanically coupled to the transmission detector module at a distal end of the coupling arm, wherein the mechanically coupling the portable x-ray scanner to the transmission detector module further forms an opening between the portable x-ray scanner and the transmission detector module;

means for interposing a target between the portable x-ray scanner and the transmission detector module with the coupling arm extending partially around the target, at the opening, in an interposed configuration;

means for outputting a scanning beam of x-rays from the x-ray scanner; and

means for detecting, using the transmission detector module, x-rays of the scanning beam that are transmitted through the target in the interposed configuration with the coupling arm extending partially around the target,

wherein the coupling arm includes a mounting bracket configured for mechanically coupling the transmission detector module to the portable x-ray scanner, the mounting bracket being detachable from the portable x-ray scanner, the transmission detector module, or both.

31 . A target inspection system comprising:

a portable x-ray scanner configured to output a scanning beam of x-rays; and

a transmission detector module configured to detect x-rays of the scanning beam of x-rays that are transmitted through a target when the target is interposed between the portable x-ray scanner and the transmission detector module, wherein the transmission detector module is configured to have an effective active detection area that is adjustable with respect to a given field of the x-rays that are transmitted through the target.

32 . The target inspection system of claim 30 , wherein the portable x-ray scanner is configured to be handheld.

33 . The target inspection system of claim 31 , wherein the portable x-ray scanner is configured to be handheld.

34 . The target inspection system of claim 31 , further including a rotational mechanical coupling between the portable x-ray scanner and the transmission detector module, the rotational coupling configured to enable the transmission detector module to be rotated to adjust the effective active detection area.

Assignments (2)
SECURITY INTEREST Recorded Jun 2, 2026
From: VIKEN DETECTION CORPORATION
To: MS PRIVATE CREDIT ADMINISTRATIVE SERVICES LLC, AS AGENT
Reel/Frame 074825/0646 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2023
From: ROTHSCHILD, PETER J.
To: VIKEN DETECTION CORPORATION
Reel/Frame 062822/0210 →
Continuity (5)
Continuation In Part PCTUS2021072141 · Oct 29, 2021
Provisional Application 63363947 · Apr 29, 2022
Provisional Application 63268422 · Feb 23, 2022
Provisional Application 63107783 · Oct 30, 2020
Related Publication 20230236140A1 · Jul 27, 2023
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