Nova Patents
EP1567436B1

Multi-pass deskew method and apparatus

Abstract

This record has no abstract on file.

EP1567436B1, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Expired 18 November 2023, 2.9 years ago.

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

12 claims: 4 independent, 8 dependent

  1. 1
    A method for aligning print media (310) on a feedpath (370), comprising:(a) aligning a sheet (410) of said print media using a deskew mechanism (300);(b) measuring the skew (420) of said sheet as it is fed out of said deskew mechanism, said measuring (420) being implemented by a plurality of sensors (346,347, 348,350, 352,354, 356,357 and 358) positioned on said feedpath (370) to detect a leading edge of said sheet (310) as it emerges from said deskew mechanism (300), said sensors being spaced apart along an axis (350) which is substantially perpendicular to a direction of movement of said sheet along said feedpath, such that said leading edge is detected by at least two of said plurality of sensors;(c) comparing said measured skew with a specified skew (430), and if said measured skew is greater than said specified skew, reversing said sheet (440) through said deskew mechanism to form a buckle in said sheet and repeating steps (a) through (c);and (d) detecting a trailing edge of said sheet (310) and calculating the length of said sheet on the basis of said detecting.
  2. 7
    The method of any preceding claim, wherein at least one of the plurality of sensors is aligned to a first side of said feedpath and at least another of said plurality of sensors is moveable along said axis, the method further comprising aligning a first side edge of the sheet to the first side of the feedpath and moving said at least one moveable sensor along said axis to align said moveable sensor to the other side edge of the sheet.
  3. 8
    A deskew apparatus comprising:a feedpath (370) along which print medium (310) is supplied;a deskew mechanism (300) configured to achieve a desired alignment of a leading edge of said print medium relative to said feedpath;a plurality of spaced apart optical sensors (346,347, 348,350, 352,354, 356,357 and 358) positioned downstream of said deskew mechanism along an axis that is substantially perpendicular to said feed path, said sensing member being enabled to generate data indicative of an actual alignment of said leading edge relative to said feedpath;a controller (382) enabled to reverse a direction of said print medium in response to determination via said data that said actual alignment is outside of a tolerance of said desired alignment, said controller being configured to continue said reversing to return said leading edge to said deskew mechanism to induce buckling in said sheet;and a plurality of spaced apart second optical sensors (352, 356, 357, 358) or a side of said deskew mechanism (300) opposite to said first optical sensors, said second optical sensors being cooperative with said controller to monitor orientation of a tailing edge of said print mechanism.
  4. 12
    The deskew apparatus of any of claims 8 to 11, further comprising a carriage moveable along a carriage transport rail along said axis, wherein at least one of the plurality of sensors is aligned to a first side of said feedpath and at least another of said plurality of sensors is mounted on said carriage, the deskew apparatus being arranged to receive said sheet to align a first side edge of the sheet to the first side of the feedpath and move said at least one moveable sensor along said axis in said carriage to align said moveable sensor to the other side edge of the sheet.