IP Library Granted Patent US 8,530,849
Granted Patent B2
US 8,530,849 · App. 12/564,611 · Granted Sep 10, 2013

Electron beam scanner

Inventors: Douglas Perry Boyd (Las Vegas, NV); Samuel Moon-Ho Song (Las Vegas, NV)
Assignee: Telesecurity Sciences, Inc.
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Quick Facts
Patent No.
US 8,530,849
App. No.
12/564,611
Granted
Sep 10, 2013
Kind
B2
Abstract

An electron beam scanner includes a stationary source producing an electron beam and a detector positioned to partially circumscribe a scan field, the detector divided into a pair of detector rings arranged adjacent to one another and separated by a gap extending at least partially about a circumference of the detector. The electron beam scanner also includes a target arranged concentric with the detector and located opposite the detector across the scan field, the target having end portions circumferentially overlapping the detector and radially aligned with the gap between the detector rings, such that when the electron beam impinges on the target the target transmits radiation through the gap across the scan field to an associated section of the detector.

Claims (19)

1. An electron beam scanner comprising:

a stationary source producing an electron beam;

a detector positioned to partially circumscribe a scan field, the detector divided into a pair of detector rings arranged adjacent to one another and separated by a gap extending at least partially about a circumference of the detector; and

a target arranged concentric with the detector and located opposite the detector across the scan field, the target having end portions circumferentially overlapping the detector and radially aligned with the gap between the detector rings, such that when the electron beam impinges on the target the target transmits radiation through the gap across the scan field to an associated section of the detector.

2. An electron beam scanner in accordance with claim 1 further comprising a second target concentric with the detector and located opposite the detector across the scan field, the second target having end portions circumferentially overlapping the detector and radially aligned with the gap between the detector rings such that when the electron beam impinges on the second target the second target transmits radiation through the gap across the scan field to an associated section of the detector.

3. An electron beam scanner in accordance with claim 1 further comprising a second target concentric with the detector and located opposite the detector across the scan field, the second target having end portions circumferentially overlapping the detector and radially aligned with the gap between the detector rings, the target transmits radiation through the gap across the scan field to a first detector ring in the pair of detectors, the second target transmits radiation through the gap across the scan field to a second detector ring in the pair of detectors.

4. An electron beam scanner in accordance with claim 1 further comprising:

a second stationary source producing a second electron beam; and

a second target arranged concentric with the detector and located opposite the detector across the scan field, the second target having end portions circumferentially overlapping the detector and radially aligned with the gap between the detector rings, such that when the electron beam produced by the second stationary source impinges on the second target, the second target transmits radiation through the gap across the scan field to an associated section of the detector.

5. An electron beam scanner in accordance with claim 1 further comprising:

a second stationary source producing a second electron beam; and

a second target arranged concentric with the detector and located opposite the detector across the scan field, the second target having end portions circumferentially overlapping the detector and radially aligned with the gap between the detector rings, the target transmits radiation through the gap across the scan field to a first detector ring in the pair of detectors, the second target transmits radiation through the gap across the scan field to a second detector ring in the pair of detectors.

6. An electron beam scanner in accordance with claim 1 further comprising a collimator positioned between the target and the detector.

7. An electron beam scanner in accordance with claim 1 wherein the detector comprises a plurality of detector cells, the size of the gap being a multiple of the size of a single detector cell.

8. An electron beam scanner in accordance with claim 1 wherein the detector comprises a radiation shield formed on a radially outer surface of the detector.

9. An electron beam scanner in accordance with claim 1 wherein the detector comprises a radiation shield formed on a radially outer surface of the detector, the radiation shield having a gap defined therethrough, the gap between the detector rings being substantially aligned with the gap defined through the shield.

10. A detector for an electron beam scanner, said detector comprising:

a detector positioned to partially circumscribe a scan field, the detector divided into a pair of detector rings arranged adjacent to one another and separated by a gap extending at least partially about a circumference of the detector; and

an x-ray shield extending at least partially through the gap.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2018
From: BRS LIMITED LIABILITY COMPANY
To: RZM TECHNOLOGIES JOINT STOCK COMPANY
Reel/Frame 046008/0519 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2018
From: IMATREX INC.
To: BRS LIMITED LIABILITY COMPANY
Reel/Frame 044524/0510 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2017
From: TELESECURITY SCIENCES, INC.
To: IMATREX INC.
Reel/Frame 043926/0212 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2009
From: BOYD, DOUGLAS PERRY; SONG, SAMUEL MOON-HO
To: TELESECURITY SCIENCES, INC.
Reel/Frame 023267/0897 →
Continuity (2)
Provisional Application 61099011 · Sep 22, 2008
Related Publication 20100072384A1 · Mar 25, 2010