IP Library Granted Patent US 6,840,449
Granted Patent B2
US 6,840,449 · App. 10/299,726 · Granted Jan 11, 2005

Laser scanning system having multiple laser scanning stations for producing a 3-D scanning volume substantially free of spatially and temporally coincident scanning planes

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Quick Facts
Patent No.
US 6,840,449
App. No.
10/299,726
Granted
Jan 11, 2005
Kind
B2
Abstract

A holographic laser scanner of ultra-compact design capable of reading bar and other types of graphical indicia within a large scanning volume using holographic optical elements and visable laser diodes. The holographic optical elements are arranged on the scanning disc in such a manner so that none of the laser scanning planes generated within the 3-D scanning volume of the system are spatially and temporally coincident with any other laser scanning plane within the 3-D scanning volume. This novel feature of the present invention ensures that there is substantially zero cross-talk at the plurality of photodetectors provided within the system, significantly improving the performance of the system.

Claims (17)

1. A laser scanning system for producing a 3-D scanning volume substantially free of spatially and temporally coincident laser scanning planes, said laser scanning system comprising:

a housing;

a plurality of laser sources disposed within said housing, for producing a plurality of laser beams;

a laser beam scanning mechanism disposed within said housing, for scanning said plurality of laser beams and producing within a 3-D scanning volume, a plurality of laser scanning planes for scanning a code symbol;

a plurality of photodetectors disposed within said housing, each said photodetector being associated with one said laser source and being capable of detecting laser light reflected off a code symbol scanned by the laser beam produced by said associated laser source; and

wherein substantially none of said laser scanning planes within said 3-D scanning volume are spatially and temporally coincident with any other laser scanning plane in order to ensure that there is substantially zero cross-talk at said plurality of photodetectors.

2. The laser scanning system of claim 1 , wherein each said laser scanning plane has predefined beam characteristics; and

wherein said plurality of laser scanning planes intersect within said 3-D scanning volume and said predefined beam characteristics of said scanning planes cooperate within said 3-D scanning volume so as to produce an omnidirectional laser scanning pattern within said 3-D scanning volume for omnidirectional scanning anywhere therewithin, code symbols having a predetermined bar/space resolution.

3. The laser scanning system of claim 1 , wherein said laser beam scanning mechanism comprises a holographic scanning disc disposed within said housing, and rotatable about an axis of rotation, and having a plurality of holographic optical elements.

4. The laser scanning system of claim 3 , wherein each said laser source comprises a laser diode for producing a visible laser beam.

5. The laser scanning system of claim 4 , wherein said laser diodes are symmetrically arranged about said holographic scanning disc.

6. The laser scanning system of claim 3 , wherein each said holographic optical element is a volume hologram.

7. The laser scanning system of claim 6 , wherein each said volume hologram is a transmission-type volume hologram.

8. The laser scanning system of claim 3 , wherein said plurality of laser sources comprises at least three laser diodes, said plurality of holographic optical elements comprises at least sixteen volume transmission holograms, and said plurality of laser scanning planes comprises at least forty-eight laser scanning planes, none of which are spatially and temporally coincident with any other laser scanning plane, thereby ensuring that there is substantially zero cross-talk at said plurality of said photodetectors.

9. The laser scanning system of claim 1 , wherein said 3-D scanning volume has at least three focal zones, a depth of field of at least 10 inches.

10. The laser scanning system of claim 1 , wherein said 3-D scanning volume is in the shape of a 3-D polygonal shaped object.

11. The laser scanning system of claim 10 , wherein said 3-D polygonal shaped object has at least four substantially rectangular shaped side surfaces.

Assignments (6)
FIRST LIEN INTELLECTUAL PROPERTY SECURITY AGREEMENT RELEASE Recorded Aug 12, 2009
From: MORGAN STANLEY & CO. INCORPORATED
To: METROLOGIC INSTRUMENTS, INC.; METEOR HOLDING CORPORATION; OMNIPLANAR, INC.
Reel/Frame 023085/0754 →
SECOND LIEN INTELLECTUAL PROPERTY SECURITY AGREEMENT RELEASE Recorded Aug 12, 2009
From: MORGAN STANLEY & CO. INCORPORATED
To: METROLOGIC INSTRUMENTS, INC.; METEOR HOLDING CORPORATION; OMNIPLANAR, INC.
Reel/Frame 023085/0809 →
FIRST LIEN IP SECURITY AGREEMENT Recorded Feb 28, 2007
From: METROLOGIC INSTRUMENTS, INC.; METEOR HOLDING CORP.; OMNIPLANAR, INC.
To: MORGAN STANLEY & CO. INCORPORATED
Reel/Frame 018942/0315 →
SECOND LIEN IP SECURITY AGREEMENT Recorded Feb 28, 2007
From: METROLOGIC INSTRUMENTS, INC.; METEOR HOLDING CORP.; OMNIPLANAR, INC.
To: MORGAN STANLEY & CO. INCORPORATED
Reel/Frame 018942/0671 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2007
From: DICKSON, LEROY; CHECK, FRANK; GROOT, JOHN; KNOWLES, C. HARRY
To: METROLOGIC INSTRUMENTS, INC.
Reel/Frame 018787/0232 →
RELEASE OF SECURITY INTEREST Recorded Nov 15, 2004
From: PNC BANK, NATIONAL ASSOCIATION
To: METROLOGIC INSTRUMENTS, INC.
Reel/Frame 016026/0789 →