EP0540933A2

Method and apparatus for alignment of scan line optics with target medium.

Abstract

Positioning of a scan line (L) relative to a recording medium drum (15) of a polygon printer is established by independently adjusting blocks (35, 36) mounted on a scan line generating optics module (10). The blocks (35, 36) have inverted V-notches (38) that nest in two-point tangential contact onto cylindrical surfaces of drum bearings (33, 34). X, z, ϑx and ϑz positions are set by x and z direction adjustment screws (44, 45, 49, 50) mounted on frame (11) that move against blocks (35, 36) against the bias of springs (61) and the weight of the frame (11). Clamping screws (56, 57) pass through oversized holes (58) and z direction elongated slots (59) on blocks (35, 36) to releasably lock blocks (35, 36) after adjustment. Alignment of holes (58), slots (59) and notches (38) maintains a constant angle of incidence during adjustment. A notch (41) of projection (40) of frame (11) engages with a pin (42) on printer body (29) to set y and ϑy positioning.

EP0540933A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 20 October 2012, 13.9 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

36 claims: 5 independent, 31 dependent

  1. 1
    A printer, or the like, having a body member 29; means, mounted on the body member 29, for supporting a recording medium 14 for movement in an x (cross-scan) direction; a frame 11; means, mounted on the frame 11, for generating a beam along a z (beam path) direction and scanning the beam in a y (scan) direction along a scan line; and means, mechanically connecting the frame 11 to the body member, for positioning the scan line onto the recording medium 14; characterized in that:the means for supporting the recording medium 14 has two curved surfaces spaced in the y direction;and    the means for positioning the scan line comprises two blocks 35,36 mounted on the frame 11 and having upwardly-directed, inverted V-notches 38, respectively received in two-point tangential abutment over the curved surfaces;means for enabling selective independent adjustments of the positions of the blocks 35,36 in x and z directions relative to the frame 11;and means for releasably locking the blocks 35,36 in their selectively adjusted positions relative to the frame 11.
  2. 2
    A printer, or the like, as in Claim 1, characterized in that the means for positioning the scan line further comprises means, cooperative with the means for enabling selective independent adjustments, for maintaining a constant angle of incidence of the scan line onto the recording medium 14 for adjustments in position of the blocks 35,36 in the x and z directions relative to the frame 11.
  3. 3
    A printer, or the like, as in Claim 1, further characterized in that the means for positioning the scan line further comprises stop means to prevent rotation of the frame in a ϑ y rotational direction about the y direction.
  4. 4
    A printer, or the like, as in Claim 3, further characterized in that the means for positioning the scan line further comprises means to establish the positions of the blocks 35, 36 in the y direction relative to the frame 11.
  5. 5
    A printer, or the like, as in Claim 4, further characterized in that the body member includes another curved surface, axially aligned in the x direction;and the means to establish the positions of the blocks in the y direction comprises a projection 40 mounted on the frame 11 and having an upwardly-directed, inverted V-notch 41 received in two-point tangential abutment over the another curved surface.
  6. 6
    A printer, or the like, as in Claim 1, further characterized in that the means for permitting independent adjustments in the x direction comprises two x direction adjustment screws 44,45, means mounting the x direction adjustment screws 44,45 on the frame 11 for selective respective independent movement in the x direction against the blocks 35,36;and means, operating between the frame 11 and the blocks 35,36, for biasing the blocks 35,36 against the x direction adjustment screws 44,45.
  7. 7
    A printer, or the like, as in Claim 6, further characterized in that the means for biasing comprises leaf springs.
  8. 8
    A printer, or the like, as in Claim 6, further characterized in that the means for permitting independent adjustments in the z direction comprises two z direction adjustment screws 49,50;means mounting the z direction adjustment screws 49,50 on the frame 11 for selective respective independent movement in the z direction against the blocks 35,36;and means, operating between the frame 11 and the blocks 35,36, for biasing the blocks 35,36 against the z direction adjustment screws 49,50.
  9. 9
    A printer, or the like, as in Claim 1, further characterized in that the blocks 35,36 are formed with holes 58;and the means for releasably locking the blocks 35,36 comprises first clamping screws 56 have first shanks respectively passing through the holes 58 into engagement with the frame 11;the holes 58 being oversized relative to the first shanks.
  10. 10
    A printer, or the like, as in Claim 9, further characterized in that the blocks 35,36 are further formed with slots 59 elongated in the z direction and located below the holes 58;and the means for releasably locking the blocks 35,36 further comprises second clamping screws 57 having second shanks respectively passing through the slots 59 into engagement with the frame 11;the holes 58, slots 59 and V-notches 38 of the respective blocks 35,36 being in z direction alignment with each other.
  11. 11
    A printer, or the like, having a body member 29; a drum 15, including a drum surface for supporting a recording medium 14 and having opposite ends, movably supported on the body member 29 for rotation about a y (scan) direction to move the supported recording medium 14 in an x (cross-scan) direction; a frame 11 having front and rear portions; an optical system 12, mounted on the frame 11, for generating a beam along a z (beam path) direction and scanning the beam in the y direction along a scan line; and means, mechanically connecting the frame 11 to the body member, for positioning the scan line onto the recording medium 14; characterized in that:the printer further comprises bearings 33,34, respectively located proximate the drum opposite ends and having cylindrical surfaces;and    the means for positioning the scan line comprises two x-z planar blocks 35,36 mounted on the frame 11 front portion and having upwardly-directed, isosceles triangular, inverted V-notches 38 respectively received in two-part tangential abutment over the cylindrical surfaces;means, attached to the frame 11 and extending into contact with the blocks 35,36, for enabling selective independent adjustments of the positions of the blocks 35,36 in the x and z directions relative to the frame 11;and means, attached to the frame 11, for releasably locking the blocks 35,36 in their selectively adjusted positions relative to the frame.
  12. 12
    A printer, or the like, as in Claim 11, wherein the blocks 35,36 have front, rear and top surfaces;and the means for enabling selective independent adjustments in the x direction comprises two x direction adjustment screws 44,45;means mounting the x direction adjustment screws 44,45 on the frame 11 for selective independent movement in the x direction respectively against ones of the front and rear surfaces of the blocks 35,36;and spring means, operating between the frame 11 and others of the front and rear surfaces, for biasing the ones of the front and rear surfaces against the x direction adjustment screws 44,45.
  13. 13
    A printer, or the like, as in Claim 12, further characterized in that the means for enabling selective independent adjustments in the z direction comprises two z direction adjustment screws 49,50;means mounting the z direction adjustment screws 49,50 on the frame 11 for selective independent movement in the z direction respectively against the top surfaces of the blocks 35,36.
  14. 14
    A printer, or the like, as in Claim 13, further characterized in that the blocks 35,36 are formed with holes 58 and slots 59, the slots 59 being elongated in the z direction and respectively located in z direction alignment intermediate the holes 58 and the V-notches 38;and the means for releasably locking the blocks 35,36 comprises first clamping screws 56 with first shanks respectively passing through the holes 58 into engagement with the frame, the holes being oversized relative to the first shanks, and second clamping screws 57 having second shanks respectively passing through the slots 59 into engagement with the frame 11.
  15. 15
    A printer, or the like, as in Claim 14, further characterized in that the body member 29 includes another cylindrical surface, axially aligned in the x direction;and the means for positioning the scan line further comprises a projection 40 mounted on the rear of the frame and having an upwardly-directed, inverted V-notch 41 received in two-point tangential abutment over the another cylindrical surface.
  16. 16
    A printer, or the like, having a body member 29; a shaft 32 having opposite ends journalled on the body member 29 for rotation about a y (scan) direction; a drum 15 mounted on the shaft 32 and including a cylindrical surface for supporting a recording medium 14 for movement in the x (cross-scan) direction with rotation of the shaft 32; a rigid frame 11 having front and rear portions; an optical system 12, mounted on the frame 11, for generating a beam along a z (beam path) direction and scanning the beam in the y direction along a scan line; and apparatus for rigidly mechanically connecting the frame 11 to the body member 29, to position the scan line on the recording medium 14, characterized in that the apparatus comprises:bearings 33,34, respectively located proximate the shaft 32 opposite ends and having cylindrical surfaces;x-z planar blocks 35,36 mounted on the frame front portion and having upwardly-directed, isosceles triangular, inverted V-notches 38 respectively received in tangential abutment over the cylindrical surfaces;means, attached to the frame 11 and extending into contact with the blocks 35,36, for enabling selective independent adjustment of the positions of the blocks 35,36 in the x direction relative to the frame 11;means, attached to the frame 11 and extending into contact with the blocks 35,36, for enabling selective independent adjustment of the positions of the blocks 35,36 in the z direction relative to the frame 11;means, cooperative with the means for enabling adjustment in the x direction, for maintaining a constant angle of incidence of the scan line onto the recording medium 14 for adjustments in the position of the blocks 35,36 in the x directions relative to the frame 11;and    means, attached to the frame 11, for releasably locking the blocks 35,36 in their selectively adjusted positions relative to the frame 11.
  17. 17
    A printer, or the like, as in Claim 16, further characterized in that the means for positioning the scan line further comprises stop means to prevent rotation of the frame 11 in a ϑ y rotational direction about the y direction.
  18. 18
    A printer, or the like, as in Claim 17, further characterized in that the means for positioning the scan line further comprises means to establish the positions of the blocks 35,36 in the y direction relative to the frame 11.
  19. 19
    A printer, or the like, as in Claim 18, further characterized in that the body member 29 includes another cylindrical surface, axially aligned in the x direction;the means to establish the positions of the blocks 35,36 in the y direction comprises a y-z projection 40 mounted on the frame 11 and having an upwardly-directed, inverted V-notch 41 received in two-point tangential abutment over the another cylindrical surface.
  20. 20
    A printer, or the like, as in Claim 17, further characterized in that the blocks 35,36 are further formed with holes 58 and slots 59 elongated in the z direction and located below the holes 58;and the means for releasably locking the blocks 35,36 and means for maintaining the constant angle of incidence further comprise first clamping screws 56 having first shanks respectively passing through the holes 58 into engagement with the frame 11, and second clamping screws 57 having second shanks respectively passing through the slots 59 into engagement with the frame 11;the holes 58 being oversized relative to the first shanks, and the holes 58, slots 59 and V-notches 38 of the respective blocks 35,36 being in z direction alignment with each other.
  21. 21
    A method for positioning an optical system 12, or the like; the optical system 12 being mounted on a frame 11 and being suitable for generating a beam along a z (beam path) direction and scanning the same along a scan line in a y (scan) direction; and the receiving medium 14 being supported for movement in an x (cross-scan) direction on the printer; the method being characterized in that it comprises the stages of:providing two curved surfaces on the printer;providing two blocks 35,36 attached to the frame, the blocks 35,36 having upwardly-directed, inverted V-notches 38;providing an alignment fixture 65 having two curved surfaces, relatively dimensioned, configured and adapted to correspond to the printer curved surfaces, and having a beam receiving element dimensioned, configured and adapted relative to the fixture curved surfaces to correspond to the position of the receiving medium relative to the printer curved surfaces;placing the frame 11, with the blocks 35,36 attached, onto the fixture 65 with the block notches brought 38 over the fixture curved surfaces;selectively adjusting the positions of the blocks 35,36 relative to the frame 11 to establish a positional relationship between the scan line and the beam receiving element, corresponding to a desired positional relationship between the scan line and the receiving medium 14;locking the blocks 35,36 in their selectively adjusted positions relative to the frame 11;and    placing the frame 11, with the blocks 35,36 locked, onto the printer, with the block notches 38 brought over the printer curved surfaces.
  22. 22
    A method as in Claim 21, wherein the selectively adjusting step comprises selectively independently adjusting the x and z direction positions of the blocks 35,36 relative to the frame 11, to establish the relationship between the scan line and the beam receiving element in ϑ x and ϑ z rotational directions, as well as in the x and z directions.
  23. 23
    A method as in Claim 21, wherein the selectively adjusting step comprises selectively adjusting the positions of the blocks 35,36, while maintaining a constant angle of incidence of the scan line generating beam relative to the beam receiving element.
  24. 24
    A method as in Claim 21, wherein the printer curved surface providing step comprises providing two cylindrical surfaces on the printer;the alignment fixture 65 providing step comprises providing an alignment fixture 65 having two cylindrical surfaces corresponding to the printer cylindrical surfaces;the placing the frame 11 onto the fixture 65 step comprises placing the frame 11 onto the fixture 65 with the block notches 38 brought into two-point tangential abutment over the fixture cylindrical surfaces;and the placing the frame 11 onto the printer step comprises placing the frame 11 onto the printer with the block notches 38 brought into two-point tangential abutment over the printer cylindrical surfaces.
  25. 25
    A method as in Claim 21, further comprising providing a projection 40 having an upwardly-directed, inverted V-notch 41 on the frame;and providing another curved surface on the printer spaced from the two printer curved surfaces;and wherein the placing the frame 11 onto the printer step further comprises placing the frame 11 onto the printer, with the projection notch 41 brought over the printer another curved surface, to establish y and ϑy direction relationships between the scan line the recording medium.
  26. 26
    A method as in Claim 21, wherein the selectively adjusting step comprises selectively adjusting the position of the blocks 35,36 relative to the frame 11 using means mounted on the frame 11.
  27. 27
    A method as in Claim 26, wherein in the selectively adjusting step the positions of the blocks 35,36 are adjusted relative to the frame 11 against bias applied by biasing means mounted on the frame 11.
  28. 28
    A method as in Claim 26, wherein the adjusting step comprises moving x and z direction adjustment screws 56,57 which are mounted on the frame 11, against the blocks 35,37.
  29. 29
    A method as in Claim 21, wherein the blocks 35,36 locking step comprises locking the blocks 35,36 using first clamping screws 56 having first shanks that pass through holes 58 in the blocks 35,36 and into engagement with the frame 11, the holes 58 being oversized relative to the first shanks.
  30. 30
    A method as in Claim 29, wherein the block locking step further comprises also locking the blocks using second clamping screws 57 having second shanks that pass through slots 59 in the blocks 35,36, the slots 59 being elongated in the z direction and located between the holes 58 and the notches 38.
  31. 31
    A method for positioning an optical system 12 relative to a scan line receiving medium 14 in a printer, or the like; the optical system 12 being mounted on a frame 11 having a front and a rear, and being suitable for generating a beam along a z (beam path) direction and including a rotating polygon for scanning the same along a scan line in a y (scan) direction; and the receiving medium 14 being supported for movement in an x (cross-scan) direction on an outside cylindrical surface of a rotatable drum 15 on the printer; the method being characterized in that it comprises the steps of:providing two cylindrical surfaces on the printer on opposite ends of the drum 15;providing two blocks 35,36 mounted to depend in x-z planar positions from opposite sides of the front of the frame 11, the blocks 35,36 having upwardly-directed, inverted V-notches 38;providing an alignment fixture 65 having two end cylindrical surfaces, relatively dimensioned, configured and adapted to correspond to the printer cylindrical surfaces;and having an intermediate portion with a plurality of beam receiving elements aligned in the y direction, the beam receiving elements being dimensioned, configured and adapted relative to the fixture cylindrical surfaces to correspond to the position of the receiving medium relative to the printer cylindrical surfaces;placing the frame 11, with the blocks 35,36 attached, onto the fixture 65 with the block notches 38 brought into two-point tangential abutment over the fixture cylindrical surfaces;selectively independently adjusting the x and z positions of the blocks relative to the frame to establish x, z, ϑ x and ϑ z positional relationships between the scanä line and the beam receiving elements, corresponding to desired x, z, ϑ x and ϑ z positional relationships between the scan line and the receiving medium;locking the blocks 35,36 in their selectively independently adjusted positions relative to the frame 11;and    placing the frame 11, with the blocks 35,36 locked, onto the printer, with the block notches 38 brought into two-point tangential abutment over the printer cylindrical surfaces.
  32. 32
    A method as in Claim 31, wherein the selectively adjusting step comprises selectively independently adjusting the x and z positions of the blocks 35,36, while maintaining a constant angle of incidence of the scan line generating beam relative to the beam receiving element.
  33. 33
    A method as in Claim 32, further comprising providing means at the rear of the frame to establish a ϑ y direction relationship between the scan line and the recording medium 14, when the frame 11 is placed onto the printer in the placing the frame 11 onto the printer step.
  34. 34
    A method as in Claim 33, wherein the ϑ y direction establishing means providing step comprises providing a projection 40 mounted to depend in y-z planar position from the rear of the frame 11 below the polygon, the projection 40 having an upwardly-directed, inverted V-notch 41, and providing another cylindrical surface, aligned in the x direction rearward of the two printer cylindrical surfaces;and wherein the placing the frame 11 on the printer step comprises placing the frame 11 on the printer, with the projection notch 41 brought into two-point tangential abutment over the printer another cylindrical surface to establish both y and ϑ y direction relationships between the scan line and the recording medium.
  35. 35
    A method as in Claim 34, wherein the selectively independently adjusting step comprises moving x and z direction adjustment screws which are mounted on the frame, against the blocks.
  36. 36
    A method as in Claim 35, wherein the block locking step comprises locking the blocks using first and second clamping screws 56,57 having first and second shanks;the first shanks passing through holes 58 in the blocks 35,36 and into engagement with the frame 11, the first holes 58 being oversized relative to the first shanks;and the second shanks passing through slots 59 in the blocks 35,36 and into engagement with the frame 11, the slots 59 being elongated in the z direction and located between the holes 58 and the block notches 38.
Independent claims36