Medium conveyance device

US9896285B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9896285-B2
Application numberUS-201615132354-A
CountryUS
Kind codeB2
Filing dateApr 19, 2016
Priority dateMay 29, 2015
Publication dateFeb 20, 2018
Grant dateFeb 20, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A medium conveyance device includes: a first conveyance unit that applies a first conveyance force in a conveyance direction to a lowest medium among media on a medium stacker; a second conveyance unit disposed downstream in the conveyance direction of the first conveyance unit and that applies a second conveyance force in the conveyance direction to the medium being conveyed in the conveyance direction; a detector that detects that a rear end of the lowest medium receiving the first conveyance force passes through the first conveyance unit; and a controller that controls the first and second conveyance units. Upon determining that the rear end of the lowest medium receiving the first conveyance force passes through the first conveyance unit, the controller switches the first conveyance unit from a conveyance state of applying the first conveyance force to a non-conveyance state of not applying the first conveyance force.

First claim

Opening claim text (preview).

What is claimed is: 1. A medium conveyance device comprising: a first conveyance unit that applies a first conveyance force in a conveyance direction to a lowest medium among media stacked on a medium stacker; a second conveyance unit disposed downstream in the conveyance direction of the first conveyance unit and that applies a second conveyance force in the conveyance direction to the medium being conveyed in the conveyance direction; a detector that includes one or more sensors disposed upstream from the second conveyance unit in the conveyance direction and configured to detect a length, along the conveyance direction, of the stacked media set in the medium stacker; and a controller that controls the first conveyance unit and the second conveyance unit, wherein based on the detected length, along the conveyance direction, of the stacked media set in the medium stacker, the controller changes the first conveyance force applied to the lowest medium, wherein the detected length of the stacked media set in the medium stacker is a length of the stacked media set in the medium stacker detected before the lowest medium in the stacked media is conveyed from the medium stacker. 2. The medium conveyance device according to claim 1 , further comprising: a movement restrictor that defines a passage between the second conveyance unit and the movement restrictor to allow the lowest medium being conveyed in the conveyance direction to pass through the passage, wherein the movement restrictor restricts a movement in the conveyance direction of a second lowest medium among the media stacked on the medium stacker, the second lowest medium being stacked on the lowest medium being conveyed in the conveyance direction. 3. The medium conveyance device according to claim 2 , wherein an distance between the second conveyance unit and a part of the movement restrictor located closest to the second conveyance unit is larger than a thickness of the medium to be conveyed in the conveyance direction. 4. The medium conveyance device according to claim 3 , wherein the distance between the second conveyance unit and the part of the movement restrictor located closest to the second conveyance unit is smaller than twice the thickness of the medium to be conveyed in the conveyance direction. 5. The medium conveyance device according to claim 2 , wherein the movement restrictor comprises: a first separation unit opposed to the second conveyance unit with a first distance in between: and a second separation unit disposed downstream in the conveyance direction of the first separation unit and opposed to the second conveyance unit with a second distance in between, the second distance being narrower than the first distance. 6. The medium conveyance device according to claim 1 , wherein the first conveyance unit comprises: a first auxiliary roller that applies the first conveyance force to a bottom surface of the lowest medium; and a first driver controlled by the controller and that rotates or stops rotation of the first auxiliary roller. 7. The medium conveyance device according to claim 6 , wherein the one or more sensors of the detector comprises a first medium sensor disposed at a first reference position located upstream in the conveyance direction of the first auxiliary roller and that detects a state at the first reference position of the stacked media when the controller determines, based on a result of detection by the first medium sensor, that the stacked media is present at the first reference position, the controller rotates the first auxiliary roller rotated by the first driver. 8. The medium conveyance device according to claim 7 , wherein when the controller determines, based on the result of detection by the first medium sensor, that the stacked media is not present at the first reference position, the controller refrains from rotating the first auxiliary roller. 9. The medium conveyance device according to claim 6 , wherein the first conveyance unit comprises: a second auxiliary roller that is provided downstream in the conveyance direction of the first auxiliary roller and applies the first conveyance force to the bottom surface of the lowest medium; and a second driver controlled by the controller and that rotates or stops rotation of the second auxiliary roller. 10. The medium conveyance device according to claim 9 , wherein the one or more sensors of the detector comprises a second medium sensor disposed at a second reference position between the first auxiliary roller and the second auxiliary roller and that detects a state at the second reference position of the stacked media when the controller determines from a result of detection by the second medium sensor that the stacked media is present at the second reference position, the controller rotates the second auxiliary roller rotated by the second driver. 11. The medium conveyance device according to claim 10 , wherein when the controller determines from the result of detection by the second medium sensor that the stacked media is not present at the second reference position, the controller refrains from rotating the second auxiliary roller. 12. The medium conveyance device according to claim 10 , wherein the one or more sensors of the detector comprises a third medium sensor disposed at a third reference position between the second auxiliary roller and the second conveyance unit and that detects a state at the third reference position of the stacked media, and when the controller determines from a result of detection by the third medium sensor that the stacked media is present at the third reference position, the controller drives the second conveyance unit. 13. The medium conveyance device according to claim 1 , wherein the second conveyance unit comprises: a conveyance belt that applies the second conveyance force to the medium being conveyed in the conveyance direction; conveyance belt rollers on which the conveyance belt is wound; and a conveyance belt driver that rotates any one of the conveyance belt rollers. 14. The medium conveyance device according to claim 1 , wherein the one or more sensors comprises plural sensors spaced away from one another in the conveyance direction in the medium stacker. 15. A medium conveyance device comprising: a first conveyance unit that applies a first conveyance force in a conveyance direction to a lowest medium in media stacked in a medium stacker, wherein the first conveyance unit comprises: a first auxiliary roller that applies the first conveyance force to a bottom surface of the lowest medium; a first driver that rotates or stops rotation of the first auxiliary roller; a second auxiliary roller that applies the first conveyance force to the bottom surface of the lowest medium; and a second driver that rotates or stops rotation of the second auxiliary roller; a second conveyance unit disposed downstream in the conveyance direction of the first conveyance unit and that applies a second conveyance force in the conveyance direction to the lowest medium being conveyed in the conveyance direction; a detector that includes one or more sensors configured to detect a height of the stacked media in the medium stacker in a height direction; and a controller that controls the first conveyance unit and the second conveyance unit, wherein based on the detected height of the stacked media in the medium stacker, the controller changes the first conveyance force applied to the lowest medium. 16. The medium conveyance device according to claim 15 , wherein the one or more sensors of th

Assignees

Inventors

Classifications

  • the retainers positioned over articles separated from the bottom of the pile · CPC title

  • responsive to absence of articles, e.g. exhaustion of pile (B65H7/14 takes precedence) · CPC title

  • separating from the bottom of pile (B65H3/0615, B65H3/0623 take precedence) · CPC title

  • the retainers positioned over articles separated from the bottom of the pile · CPC title

  • B65H3/042Primary

    separating from the bottom of the pile · CPC title

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What does patent US9896285B2 cover?
A medium conveyance device includes: a first conveyance unit that applies a first conveyance force in a conveyance direction to a lowest medium among media on a medium stacker; a second conveyance unit disposed downstream in the conveyance direction of the first conveyance unit and that applies a second conveyance force in the conveyance direction to the medium being conveyed in the conveyance …
Who is the assignee on this patent?
Oki Data Kk
What technology area does this patent fall under?
Primary CPC classification B65H3/042. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Feb 20 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).