Nova Patents
EP0367299B1

Portable laser diode scanning head

Abstract

This record has no abstract on file.

EP0367299B1, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 28 February 2006, 20.6 years ago.

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

45 claims: 13 independent, 32 dependent

  1. 1
    A laser scanning system for reading indicia comprising:a laser light diode located in a casing having a first aperture for emergence of a non-collimated normally divergent laser beam, and optic means including a focusing means (62) disposed in a first optical path of said laser beam directed toward said indicia, whereby at least a portion of said beam is reflected by said indicia back toward the system, characterized in that a second aperture (56) is located in the non-collimated beam in said first optical path in the immediate vicinity of said focusing means (62) for jointly focusing the laser beam to have a beam cross section of a predetermined profile and energy within the working distance range of the system, said second aperture (56) has a cross section which is smaller than the beam cross section at the second aperture (56) to permit only a portion of the laser beam to pass through the second aperture.
  2. 4
    The system as recited in any of the preceding claims, characterized in that the focusing means is a lens (62).
  3. 6
    The system as recited in any of the preceding claims, characterized in that an elongated cylindrical optical tube (50) is provided having at one end region a cylindrical bore (52) in which an annular portion of the casing is snugly received.
  4. 8
    The system of any of the claims 6 or 7, characterized in that a biasing means (64) is located within the optical tube (50), and has one end bearing against the casing of the laser light diode, and another end bearing against said focusing means (62).
  5. 10
    The system as recited in any of the preceding claims, characterized in that the second aperture (56) is located on the downstream side of the focusing means (62).
  6. 12
    The system as recited in any of the preceding claims, characterized in that the second aperture (56) is positioned in the center of the laser diode beam having an oval shape cross-section so that the intensity of light is approximately uniform in the planes both perpendicular and parallel to the n-p junction emitter of the laser light diode.
  7. 14
    The sytem as recited in any of claims 12 to 13, characterized in that the approximate distance between the emitter of the laser diode and the second aperture (56) ranges from about 9.7 mm to about 9.9 mm, and the focal distance of the focusing means (62) ranges from about 9.5 mm to about 9.7 mm.
  8. 19
    The system of any of the claims 1 to 16 characterized by:(a) optical scanning means (66) for reflection of said laser beam therefrom toward said indicia located in the vicinity of a reference plane, thereby reflecting light off the indicia, at least a returning portion of which travels along a second optical path;(b) means (70) for moving the scanning means;(c) sensor means (80) mounted for detecting the variable intensity of said returning portion, and for generating an electrical signal indicative of the detected variable light intensity;(d) a movable, generally concave collecting mirror (76) for collecting said returning portion, and for directing it to the sensor means (80), and (e) a means for jointly and simultaneously moving said scanning means (66) and said collecting mirror.
  9. 22
    The system of any of the claims 19-21, wherein said means for moving the scanning means is a motor (70) which drives the scanning means in an oscillating motion.
  10. 24
    The system of claims 21 or 23, wherein said planar mirror and said concave mirror are of a one-piece construction.
  11. 25
    The system of any of the claims 19 to 24 wherein said scanning means and said collecting mirror are secured to one another to move together.
  12. 26
    The system of any of the claims 19 to 25 wherein means are provided for mounting said scanning means (66) and said collecting mirror (76) for joint, simultaneous movement.
  13. 27
    The system of any of the claims 19 to 26 comprising:a forward portion facing towards said indicia, a rearward portion, wherein the sensor means (80) is mounted in the forward portion and points towards said rearward portion and wherein the collecting mirror (76) is located in the rearward portion.
  14. 29
    The system of any of the claims 1-16 arranged in a hand-held scanning head (10) for reading said indicia, said head comprising:(a) a body portion (14), (b) scanning means mounted in said body portion (14) for scanning said laser beam across the indicia, and (c) a handle portion (12) detachably fixed to said body portion (14) and accommodating at least one printed circuit board such that said circuit board is adapted to be electrically connected to said scanning means, whereby a function of the scanning head may be changed by changing said at least one printed circuit board or by adding a further printed circuit board.
  15. 30
    The system of any of the claims 17-28 arranged in a hand-held scanning head (10) for reading said indicia, said head comprising:(a) a body portion (14) in which    said scanning means is mounted for scanning the indicia, and (b) a handle portion (12) detachably fixed to said body portion (14) and accommodating at least one printed circuit board such that said circuit board is adapted to be electrically connected to said scanning means, whereby a function of the scanning head may be changed by changing said at least one printed circuit board or by adding a further circuit board.
  16. 33
    The system of any of the claims 29 to 32 characterized in that the handle portion (12) has a radially-outwardly extending upper flange portion (40) of generally rectangular cross-section which is resilient and deflectable in a radially-inward direction, such that for the insertion of the upper flange portion (40) into a neck portion (36) of the body portion (14), the upper flange portion (40) bears against a collar portion (38) of the body portion and is radially-inwardly deflected until the flange portion (40) clears the collar portion (38), at which time, the upper flange portion (40), due to its inherent resilience, snaps back to its initial undefelected position and engages behind the collar portion (38) with a snap-type locking action.
  17. 35
    The sytem of any of the claims 29-34 characterized by a manually-actuatable trigger means (32) on the body portion (14) for actuating the the laser scanning system to initiate a reading of the indicia upon manual actuation of the trigger means by the user.
  18. 40
    The system as set forth in any of the claims 29-36 wherein said body portion (14) is composed of two housing portions, namely, upper housing (180) and lower housing (182) which are assembled together, preferably by a snap-fit engagement.
  19. 43
    The system of any the claims 19-26 wherein the laser diode, the optical scanning means (66), and the means (70) for moving the optical scanning means are all mounted within and on an optical cradle (200).
  20. 45
    The system of any of the claims 1 to 44 wherein said indicia are bar code symbols.
Independent claims20