CA2156152C

Method and apparatus for illumination and imaging of a surface employing light-emitting diodes

Abstract

An apparatus for illuminating and imaging a surface (14) includes atwo-dimensional array of LEDs (120) for providing uniform illuminationto tile surface, the LEDs being mounted on a planar surface (110) witha centrally defined aperture (112) and a CCD-based camera (210) withappropriate lensing (220) for obtaining an image of the illuminated surfaceand providing a signal representative of that obtained image to a processingunit, the CCD-based camera lensing being disposed through the centrallydefined aperture in the planar surface of the LED array, and the LED arrayand CCD-camera lensing being disposed inside an opaque shroud (300).

CA2156152C, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 17 February 2014, 12.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

16 claims: 2 independent, 14 dependent

  1. 1
    WE CLAIM:1. An illumination and imaging apparatus, comprising: (a) a two-dimensional array of LEDs for illuminating a surface;and (b) means for obtaining an image of the illuminated surface and providing an output signal representative of said obtained image;wherein said array is supported on a planar surface, an aperture being defined centrally through said planar surface.
  2. 2
    The apparatus of claim 1, wherein said image obtaining means is a CCD-based camera.
  3. 3
    The apparatus of claim 1, wherein said array is supported on a planar surface with an aperture defined centrally through said planar surface.
  4. 4
    The apparatus of claim 3, wherein said CCD-based camera has lensing, said lensing being disposed through the aperture defined in said planar surface.
  5. 5
    The apparatus of claim 4, wherein said array and the lensing of said CCD-based camera are mounted inside an upper portion of a generally sleeve-like shroud having a generally vertical opaque wall, defining a lower opening.
  6. 6
    The apparatus of claim 5, wherein said lower opening is defined by a lower edge of said vertical shroud wall, said edge lying substantially in a plane.
  7. 7
    The apparatus of claim 5, wherein substantially all of the interior surface of said shroud below said array is reflective of light emitted by said array. -17
  8. 8
    The apparatus of claim 3, wherein said LEDs are mounted on said planar surface in a series of horizontal rows, with equal spacing between said LEDs within each said horizontal row, and said horizontal rows being equally spaced from one another.
  9. 9
    The apparatus of claim 7, wherein each said horizontal row is offset by half the center-to-center spacing of said LEDs in preceding and succeeding horizontal rows.
  10. 10
    A method for illuminating and imaging a target surface, comprising the steps of:(a) manually positioning a two-dimensional array of LEDs in a selected position with respect to the target surface, said array being supported on a planar surface with a centrally defined aperture disposed there through;(b) illuminating the target surface by use of said two-dimensional array of LEDs;and (c) obtaining an image of the illuminated target surface and providing an output signal representative of the obtained image.
  11. 11
    The method of claim 10, wherein said step of image obtaining comprises using a CCD-based camera.
  12. 12
    The method of claim 11, wherein said step of image obtaining comprises using;a CCD-based camera, and wherein said CCD-based camera has lensing, said lensing being disposed through said aperture in said planar surface to a predetermined position with respect to the surface.
  13. 13
    The method of claim 10, wherein said step of image obtaining comprises using a CCD-based camera having lensing, wherein said array and the lensing of said CCD-based camera are disposed inside an upper portion of a generally sleeve-like shroud having a generally vertical opaque -18 wall with a lower edge, the lower edge of said generally vertical opaque wall defining a lower opening, said edge lying substantially in a plane.
  14. 14
    The method of claim 11, wherein said LEDs are mounted on said planar surface in a series of horizontal rows, with equal spacing between said LEDs within each said horizontal row, and said horizontal rows being equally spaced from one another.
  15. 15
    The method of claim 13, wherein each said horizontal row is offset by half the center-to-center spacing of said LEDs in preceding and succeeding horizontal rows.
  16. 16
    The method of claim 13, further comprising the step of manually placing said edge in contact with the target surface and maintaining said edge in contact with the target surface during said steps (b) and (c). -19