Claims
- 33. A planar laser illumination and imaging (PLIIM) based system comprising:
a system housing having first, second and third light transmission apertures linearly aligned with and optically isolated from each other, and said third light transmission aperture being disposed between said first and second light transmission apertures; an area-type image formation and detection module disposed in system housing, and having image formation optics with a field of view projectable through said third light transmission aperture and within a 3-D scanning region in which an object is present during object illumination and imaging operations; a pair of planar laser illumination arrays (PLIAs) disposed in said system housing, each said planar laser array (PLIA) including a plurality of laser diodes arranged together in a linear manner and said planar laser illumination arrays being arranged in relation to said area-type image formation and detection module, and for producing a pair of planar laser illumination beams (PLIBs); and a pair of planar laser beam folding/sweeping mirrors for folding and sweeping said pair of planar laser illumination beams so that the optical paths of said planar laser illumination beams are oriented in an imaging direction that is coplanar with a section of said field of view of said area-type image formation and detection module as said planar laser illumination beams are swept through the 3-D scanning region during object illumination and imaging operations so that the object can be simultaneously illuminated by said planar laser illumination beams and imaged within said field of view of said area-type image formation and detection module, whereby a series of linear images of said object are sequentially detected by said area-type image formation and detection module over the photo-integration time period thereof so as to construct a two-dimensional image of said object.
- 34. The PLIIM based system of claim 33, which further comprises:
an image frame grabber for grabbing images formed and detected by said area-type image formation and detection module, an image data buffer for buffering said grabbed images; an image processing computer operably associated with said image data buffer, for processing said buffered images; and a camera control computer for controlling said area-type image formation and said detection module, and said pair of planar laser illumination arrays.
- 35. The PLIIM-based system of claim 34, which further comprises:
an image processing computer, operably connected to said image data buffer, for receiving and buffering said 2-D image, and for carrying out image processing algorithms (e.g. bar code symbol decoding algorithms) and operators on said two-dimensional digital images.
- 36. The PLIIM-based system of claim 33, wherein said image forming optics have a fixed focal distance and a fixed focal length providing a fixed field of view.
- 37. The PLIIM-based system of claim 33, wherein said image forming optics have a variable focal distance and a fixed focal length providing a fixed field of view.
- 38. The PLIIM-based system of claim 33, wherein said image forming optics have a variable focal distance and a fixed focal length providing a fixed field of view.
- 39. The PLIIM-based system of claim 33, wherein said image forming optics have a variable focal distance and a variable focal length providing a variable field of view.
- 40. The PLIIM-based system of claim 33, wherein said area-type image formation and detection module further comprises a 2-D array of photo-electronic detectors realized,
wherein each said planar laser illumination array comprises an array of planar laser illumination modules (PLIMs), and wherein each said PLIM comprises a laser diode source and optic for producing an planar laser illumination beam component.
- 41. The PLIIM-based system of claim 33, wherein said system housing has a unitary construction.
- 42. A hand-supportable bar code symbol reading system embodying the PLIIM-based system of claim 33.
- 43. A planar laser illumination and imaging (PLIIM) based system comprising:
a system housing having first, second and third light transmission apertures linearly aligned with and optically isolated from each other, and said third light transmission aperture being disposed between said first and second light transmission apertures; an area-type image formation and detection module disposed in system housing, and having image formation optics with a field of view projectable through said third light transmission aperture and within a 3-D scanning region in which an object is present during object illumination and imaging operations; a stationary field of view folding mirror, disposed in said system housing, for folding the field of view of said area-type image formation and detection module in a predetermined direction with respect to said third light transmission aperture; a pair of planar laser illumination arrays (PLIAs) disposed in said system housing, each said planar laser array (PLIA) including a plurality of laser diodes arranged together in a linear manner and said planar laser illumination arrays being arranged in relation to said area-type image formation and detection module, and for producing a pair of planar laser illumination beams (PLIBs); and a pair of planar laser beam folding/sweeping mirrors for folding and sweeping said pair of planar laser illumination beams so that the optical paths of said planar laser illumination beams are oriented in an imaging direction that is coplanar with a section of said field of view of said area-type image formation and detection module as said planar laser illumination beams are swept through the 3-D scanning region during object illumination and imaging operations so that the object can be simultaneously illuminated by said planar laser illumination beams and imaged within said field of view of said area-type image formation and detection module, whereby a series of linear images of said object are sequentially detected by said area-type image formation and detection module over the photo-integration time period thereof so as to construct a two-dimensional image of said object.
- 44. The PLIIM based system of claim 43 which further comprises:
an image frame grabber for grabbing images formed and detected by said area-type image formation and detection module, an image data buffer for buffering said grabbed images; an image processing computer operably associated with said image data buffer, for processing said buffered images; and a camera control computer for controlling said area-type image formation and said detection module, and said pair of planar laser illumination arrays.
- 45. The PLIIM-based system of claim 44 which further comprises:
an image processing computer, operably connected to said image data buffer, for receiving and buffering said 2-D image, and for carrying out image processing algorithms (e.g. bar code symbol decoding algorithms) and operators on said two-dimensional digital images.
- 46 The PLIIM-based system of claim 43, wherein said image forming optics have a fixed focal distance and a fixed focal length providing a fixed field of view.
- 47 The PLIIM-based system of claim 43, wherein said image forming optics have a variable focal distance and a fixed focal length providing a fixed field of view.
- 48. The PLIIM-based system of claim 43, wherein said image forming optics have a variable focal distance and a fixed focal length providing a fixed field of view.
- 49. The PLIIM-based system of claim 43, wherein said image forming optics have a variable focal distance and a variable focal length providing a variable field of view.
- 50. The PLIIM-based system of claim 43, wherein said system housing has a unitary construction.
- 51. A hand-supportable bar code symbol reading system embodying the PLIIM-based system of claim 43.
- 52. A planar laser illumination and imaging (PLIIM) based system comprising:
a system housing having first, second and third light transmission apertures linearly aligned with and optically isolated from each other, and said third light transmission aperture being disposed between said first and second light transmission apertures; an area-type image formation and detection module disposed in system housing, and having image formation optics with a field of view projectable through said third light transmission aperture and within a 3-D scanning region in which an object is present during object illumination and imaging operations; a planar laser illumination array (PLIA) disposed in said system housing, each said planar laser array (PLIA) including a plurality of laser diodes arranged together in a linear manner and said planar laser illumination arrays being arranged in relation to said area-type image formation and detection module, and for producing a planar laser illumination beam (PLIB); and a planar laser beam folding/sweeping mirror for folding and sweeping said planar laser illumination beam so that the optical path of said planar laser illumination beam is oriented in an imaging direction that is coplanar with a section of said field of view of said area-type image formation and detection module as said planar laser illumination beam is swept through the 3-D scanning region during object illumination and imaging operations so that the object is simultaneously illuminated by said planar laser illumination beam and imaged within said field of view of said area-type image formation and detection module, whereby a series of linear images of said object are sequentially detected by said area-type image formation and detection module over the photo-integration time period thereof so as to construct a two-dimensional image of said object.
- 53. The PLIIM based system of claim 52, which further comprises:
an image frame grabber for grabbing images formed and detected by said area-type image formation and detection module, an image data buffer for buffering said grabbed images; an image processing computer operably associated with said image data buffer, for processing said buffered images; and a camera control computer for controlling said area-type image formation and said detection module, and said pair of planar laser illumination arrays.
- 54. The PLIIM-based system of claim 52, which further comprises:
an image processing computer, operably connected to said image data buffer, for receiving and buffering said 2-D image, and for carrying out image processing algorithms (e.g. bar code symbol decoding algorithms) and operators on said two-dimensional digital images.
- 55. The PLIIM-based system of claim 52, wherein said image forming optics have a fixed focal distance and a fixed focal length providing a fixed field of view.
- 56. The PLIIM-based system of claim 52, wherein said image forming optics have a variable focal distance and a fixed focal length providing a fixed field of view.
- 57. The PLIIM-based system of claim 52, wherein said image forming optics have a variable focal distance and a fixed focal length providing a fixed field of view.
- 58. The PLIIM-based system of claim 52, wherein said image forming optics have a variable focal distance and a variable focal length providing a variable field of view.
- 59. The PLIIM-based system of claim 52, wherein said system housing has a unitary construction.
- 60. A hand-supportable bar code symbol reading system embodying the PLIIM-based system of claim 52.
- 61. The PLIIM-based system of claim 52, wherein said area-type image formation and detection module further comprises a 2-D array of photo-electronic detectors realized,
wherein each said planar laser illumination array comprises an array of planar laser illumination modules (PLIMs), and wherein each said PLIM comprises a laser diode source and optic for producing an planar laser illumination beam component.
CROSS-REFERENCE TO RELATED U.S. APPLICATIONS
[0001] This is a Continuation of copending U.S. application Ser. No. 09/721,885 filed Nov. 24, 2000, which is a Continuation-in-Part of copending application Ser. No. 09/327,756 filed Jun. 7, 1999, and PCT/US00/15624 filed Jun. 7, 2000, published as WO 00/75856 A1; each said application being commonly owned by Assignee, Metrologic Instruments, Inc., of Blackwood, N.J., and incorporated herein by reference as if fully set forth herein.
Continuations (1)
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Number |
Date |
Country |
Parent |
09721885 |
Nov 2000 |
US |
Child |
10067509 |
Feb 2002 |
US |
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
09327756 |
Jun 1999 |
US |
Child |
09721885 |
Nov 2000 |
US |
Parent |
PCT/US00/15624 |
Jun 2000 |
US |
Child |
09721885 |
Nov 2000 |
US |