IP Library Granted Patent US 7,784,698
Granted Patent B2
US 7,784,698 · App. 11/980,080 · Granted Aug 31, 2010

Digital image capturing and processing system for automatically recognizing graphical intelligence graphically represented in digital images of objects

Assignee: Metrologic Instruments, Inc.
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Quick Facts
Patent No.
US 7,784,698
App. No.
11/980,080
Granted
Aug 31, 2010
Kind
B2
Abstract

A digital image capturing and processing system including a system housing having an imaging window; illumination and imaging stations for generating and projecting illumination and imaging planes or zones through the imaging window, and into a 3D imaging volume definable relative to the imaging window, for digital imaging an object passing through the 3D imaging volume, and generating digital linear images of the object as the object intersects the illumination and imaging planes or zones during system operation. A digital image processor processes the digital images and automatically recognizes graphical intelligence (e.g. bar code symbols, alphanumeric characters etc) graphically represented in the digital images.

Claims (20)

1. A digital image capturing and processing system for automatically recognizing graphical intelligence graphically represented in digital images of objects, comprising:

a system housing having an imaging window;

a plurality of coplanar illumination and imaging stations, disposed in said system housing, for generating and projecting a plurality of coplanar illumination and imaging planes through said imaging window, and into a 3D imaging volume definable relative to said imaging window, so as to produce a complex of coplanar illumination and imaging planes for omni-directional digital imaging of an object passing through said 3D imaging volume, and generating digital linear images of said object as said object intersects coplanar illumination and imaging planes within said 3D imaging volume during system operation; and

a digital image processor for processing said digital linear images and automatically recognizing graphic intelligence graphically represented in said digital linear images;

wherein each said coplanar illumination and imaging station includes an illumination device for producing a planar illumination beam (PLIB), and a linear image sensing array providing a field of view (FOV) extending substantially along said PLIB so as to form one said coplanar illumination and imaging plane (PLIB/FOV) that is projected through said imaging window and into said 3D imaging volume, for capturing digital linear images of the object moving through said 3D imaging volume.

2. The digital image capturing and processing system of claim 1 , wherein each said coplanar illumination and imaging station further comprises:

an automatic illumination control subsystem for controlling the production of illumination into said 3D imaging volume, as objects are detected moving within said 3D imaging volume; and

an image capturing and buffering subsystem for capturing and buffering digital linear images from each said linear image sensing array.

3. The digital image capturing and processing system of claim 1 , wherein said graphical intelligence includes symbols selected from the group consisting of bar code symbols, data matrix symbols and alphanumeric characters.

4. A digital image capturing and processing system for automatically recognizing graphical intelligence graphically represented in digital images of objects, comprising:

a system housing having an imaging window;

one or more coextensive illumination and imaging stations, disposed in said system housing, for generating and projecting one or more coextensive illumination and imaging zones through said imaging window, and into a 3D imaging volume definable relative to said imaging window, for digital imaging of objects passing through said 3D imaging volume, and generating digital area-type images of said object as said object intersects said one or more coextensive illumination and imaging zones within said 3D imaging volume during system operation; and

a digital image processor for processing said digital area-type images and automatically recognizing graphic intelligence graphically represented in said digital area-type images;

wherein each said coextensive illumination and imaging station includes

(i) an area-type image sensing array with optics providing a field of view (FOV) on said area-type image sensing array, and

(ii) an illumination device for producing an area-type illumination beam along said FOV, so as to form one said coextensive illumination and imaging zone that is projected through said imaging window and into said 3D imaging volume, for capturing digital area-type images of the object moving through said 3D imaging volume.

5. The digital image capturing and processing system of claim 4 , wherein each said each said coextensive illumination and imaging station further comprises:

an automatic illumination control subsystem for controlling the production of illumination into said 3D imaging volume, as objects are detected moving within said 3D imaging volume; and

an image capturing and buffering subsystem for capturing and buffering digital area-type images from said area-type image sensing array.

6. The digital image capturing and processing system of claim 4 , wherein said graphical intelligence includes symbols selected from the group consisting of bar code symbols, data matrix symbols and alphanumeric characters.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2008
From: KNOWLES C., HARRY; ZHU, XIAOXUN; GOOD, TIMOTHY; XIAN, TAO; KOTLARSKY, ANATOLY; VEKSLAND, MICHAEL; HERNANDEZ, MARK; GARDNER, JOHN; ESSINGER, STEVEN; GIORDANO, PATRICK; KEARNEY, SEAN; SCHMIDT, MARK; FURLONG, JOHN; CIARLANTE, NICHOLAS; LIU, YONG; REN, JIE; TAO, XI; LIU, JIBIN; ZHUO, MING; ELLIS, DUANE
To: METROLOGIC INSTRUMENTS, INC.
Reel/Frame 020779/0845 →
Continuity (45)
Continuation 1188008700 · Jul 19, 2007
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Continuation In Part PCTUS200604814800 · Dec 18, 2006
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Continuation In Part PCTUS200438938900 · Nov 15, 2004
Continuation In Part 0999058500 · Nov 21, 2001
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Continuation In Part 0972188500 · Nov 24, 2000
Related Publication 20090101719A1 · Apr 23, 2009