IP Library Granted Patent US 7,793,841
Granted Patent B2
US 7,793,841 · App. 11/980,084 · Granted Sep 14, 2010

Laser illumination beam generation system employing despeckling of the laser beam using high-frequency modulation of the laser diode current and optical multiplexing of the component laser beams

Assignee: Metrologic Instruments, Inc.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,793,841
App. No.
11/980,084
Granted
Sep 14, 2010
Kind
B2
Abstract

A laser illumination beam generation system including a laser diode (LD) for producing a laser beam in response to a diode current supplied thereto, wherein the laser beam has a central characteristic wavelength. Diode current drive circuitry generates the diode current and supplies the same to the VLD. A high frequency modulation (HFM) circuitry modulates the diode current supplied to the laser diode, so as to produce a spectral side-band components about the central characteristic wavelength, and thereby reduces the coherence of the laser illumination beam as well as its coherence length. An optical multiplexing (OMUX) device receives the laser beam as an input beam and generates multiple laser beams therefrom and recombines the multiple laser beams so as to produce a composite output laser illumination beam having reduce coherence.

Claims (24)

1. A laser illumination beam generation system comprising

a laser diode (LD) for producing a laser beam in response to a diode current supplied to said laser diode, wherein said laser beam has a central characteristic wavelength and a coherence length;

a diode current drive circuit for generating said diode current and supplying said diode current to said laser diode;

a high frequency modulation (HFM) circuit for modulating said diode current supplied to said laser diode, so as to produce a spectral side-hand components about said central characteristic wavelength, and thereby reducing the coherence length of said laser beam; and

an optical multiplexing (OMUX) device for receiving said laser beam as an input beam and generating multiple laser beams therefrom and recombining said multiple laser beams so as to produce a composite output laser illumination beam having reduced coherence.

2. The laser illumination beam generation system of claim 1 , which further comprises:

a cylindrical illumination lens array, disposed beyond said OMUX module, for planarizing said composite output laser beam and producing a planar laser illumination beam (PLIB) having a substantially reduced coherence length,

whereby a substantially reduced level of speckle pattern noise is observed in a digital image of an object illuminated by said PLIB and detected by a digital image detection array.

3. The laser illumination beam generation system of claim 1 , wherein said laser diode is selected from the group consisting of a visible laser diode (VLD) and a IR laser diode (IR-LD).

4. The laser illumination beam generation system of claim 1 , which further comprises a flexible circuit supporting (i) said laser diode and (ii) said HFM circuit mounted in close proximity to said laser diode; and wherein said flexible circuit in turn is connected to a microprocessor-controlled current driver circuit.

5. The laser illumination beam generation system of claim 4 , wherein said microprocessor-controlled current driver circuit is controlled by a control subsystem.

6. The laser illumination beam generation system of claim 5 , wherein said control subsystem is realized on a PC board.

7. The laser illumination beam generation system of claim 1 , which further comprises a flexible circuit supporting (i) laser diode, (ii) said HFM circuit mounted in close proximity to said laser diode, and (iii) a microprocessor-controlled diode current driver circuit which is connected to said HFM circuit and interfaced with a control subsystem.

8. The laser illumination beam generation system of claim 7 , wherein said control subsystem is realized on a PC board.

9. The laser illumination beam generation system of claim 1 , wherein said OMUX device comprises a glass plate bearing mirror and semi-transparent reflective coatings.

10. The laser illumination beam generation system of claim 2 , in combination with a digital linear image sensor, aligned with said PLIB in a coplanar relationship, to provide a planar laser illumination and imaging (PLIIM) module for producing a coplanar illumination and imaging plane, said PLIIM module further comprising a PC board supporting said digital linear image sensor, said HFM and said diode current drive circuit, image capture and buffer circuitry, and said control subsystem.

11. A laser illumination beam generation system comprising:

a laser diode for producing a laser beam having a central characteristic wavelength and a coherence length;

diode current drive circuitry for producing a diode drive current to drive said laser diode and produce said laser beam;

high frequency modulation (HFM) circuitry for modulating said diode drive current at a sufficiently high frequency to cause said laser diode to produce said laser beam having a spectral side-band components about said central characteristic wavelength, and reducing the coherence length of said laser beam; and

an optical beam multiplexing (OMUX) module for receiving said laser beam as an input beam, and generating as output, a plurality of laser beam components that are recombined to produce a composite laser beam having substantially reduced coherence length for use in illumination applications where a substantial reduction in speckle pattern noise is achieved.

12. The laser illumination beam generation system of claim 11 , wherein said laser diode is selected from the group consisting of a visible laser diode (VLD) and an invisible laser diode such as an IR laser diode (IRLD).

13. The laser illumination beam generation system of claim 12 , wherein said illumination applications are selected from the group consisting of digital imaging, projection television, and photolithographic illumination operations.

14. The laser illumination beam generation system of claim 11 , wherein said illumination applications are selected from the group consisting of digital imaging, projection television, and photolithographic illumination operations.

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
Continuation In Part 1182049700 · Jun 19, 2007
Continuation In Part 1182001000 · Jun 15, 2007
Continuation In Part 1180917300 · May 13, 2007
Continuation In Part 1180917400 · May 31, 2007
Continuation In Part 1180924000 · May 31, 2007
Continuation In Part 1180923800 · May 31, 2007
Continuation In Part 1178876900 · Apr 20, 2007
Continuation In Part PCTUS070976300 · Apr 20, 2007
Continuation In Part 1173186600 · Mar 30, 2007
Continuation In Part 1173190500 · Mar 30, 2007
Continuation In Part 1172995900 · Mar 29, 2007
Continuation In Part 1172952500 · Mar 29, 2007
Continuation In Part 1172994500 · Mar 29, 2007
Continuation In Part 1172965900 · Mar 29, 2007
Continuation In Part 1172995400 · Mar 29, 2007
Continuation In Part 1181043700 · Mar 29, 2007
Continuation In Part 1171353500 · Mar 2, 2007
Continuation In Part 1181165200 · Mar 2, 2007
Continuation In Part 1171378500 · Mar 2, 2007
Continuation In Part 1171258800 · Feb 28, 2007
Continuation In Part 1171260500 · Feb 28, 2007
Continuation In Part 1171186900 · Feb 27, 2007
Continuation In Part 1171187000 · Feb 27, 2007
Continuation In Part 1171185900 · Feb 27, 2007
Continuation In Part 1171185700 · Feb 27, 2007
Continuation In Part 1171190600 · Feb 27, 2007
Continuation In Part 1171190700 · Feb 27, 2007
Continuation In Part 1171185800 · Feb 27, 2007
Continuation In Part 1171187100 · Feb 27, 2007
Continuation In Part 1164081400 · Dec 18, 2006
Continuation In Part PCTUS064814800 · Dec 18, 2006
Continuation In Part 1148925900 · Jul 19, 2006
Continuation In Part 1140826800 · Apr 20, 2006
Continuation In Part 1130589500 · Dec 16, 2005
Continuation In Part 1098922000 · Nov 15, 2004
Continuation In Part PCTUS048938900 · Nov 15, 2004
Continuation In Part 1071278700 · Nov 13, 2003
Continuation In Part 1018632000 · Jun 27, 2002
Continuation In Part 1018626800 · Jun 27, 2002
Continuation In Part 0999058500 · Nov 21, 2001
Continuation In Part 0978166500 · Feb 12, 2001
Continuation In Part 0978002700 · Feb 9, 2001
Continuation In Part 0972188500 · Nov 24, 2000
Related Publication 20080142602A1 · Jun 19, 2008