Media conveyance device, printing device, and media conveyance method

US9731920B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9731920-B2
Application numberUS-201213585507-A
CountryUS
Kind codeB2
Filing dateAug 14, 2012
Priority dateAug 17, 2011
Publication dateAug 15, 2017
Grant dateAug 15, 2017

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  1. Title

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  2. Abstract

    A short plain-language summary of the technical disclosure.

  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 conveyance device holds a sheet medium in a roll and includes a drive roller that feeds the sheet medium from the roll to a conveyance path; and a roll rotating unit that rotates the roll forward to convey the sheet medium toward the drive roller and in reverse to rewind the sheet medium and that has multiple drive modes with different speeds of rotation. A control unit controls driving the drive roller and the roll rotating unit, such that, when starting a reverse conveyance operation that rewinds the sheet medium, the control unit selects the drive mode to be used in the reverse conveyance operation based on a first conveyance distance, which is the distance the sheet medium is to be conveyed in the reverse conveyance operation, and the diameter of the roll stored as roll diameter information and as calculated after an immediately previous reverse conveyance operation.

First claim

Opening claim text (preview).

What is claimed is: 1. A conveyance device that holds a sheet medium in a roll, the conveyance device comprising: a drive roller that feeds the sheet medium from the roll to a conveyance path; a roll rotating unit including a motor that rotates the roll forward to convey the sheet medium toward the drive roller in a forward conveyance operation and in reverse to rewind the sheet medium in a reverse conveyance operation; a control unit configured to receive a conveyance command including distance data indicating a conveyance distance in the reverse conveyance operation, and to drive the motor of the roll rotating unit in the reverse conveyance operation to rewind the sheet medium; a first rotation detection unit, disposed to the drive roller, that generates a first electronic value indicative of a rotation of the drive roller and outputs the first electronic value to the control unit; and a second rotation detection unit, disposed to the roll rotating unit, that generates a second electronic value indicative of a rotation of the roll rotating unit and outputs the second electronic value to the control unit; wherein the control unit calculates a roll diameter of the roll based on the first electronic value and the second electronic value received during a specific period in the forward conveyance operation, and stores the calculated roll diameter as roll diameter information, wherein, when the control unit receives the conveyance command, the control unit acquires the distance data included in the received conveyance command, acquires the stored roll diameter information, and selects a drive mode, from a first drive mode and a second drive mode, for driving the motor of the roll rotating unit based on the acquired distance data and the acquired roll diameter information, wherein a speed of the motor driven in the first drive mode is greater than a speed of the motor driven in the second drive mode. 2. The conveyance device described in claim 1 , wherein the drive mode is selected so that a first condition, which is that the conveyance distance indicated by the acquired distance data is greater than a total distance the sheet medium is conveyed both during acceleration and during deceleration of the motor of the roll rotating unit in the selected drive mode, is satisfied. 3. The conveyance device described in claim 2 , wherein the drive mode is selected so that a second condition, which is that a conveyance speed of the motor of the roll rotating unit is lower than a conveyance speed of the drive roller in the selected drive mode, is also satisfied. 4. The conveyance device described in claim 3 , wherein, from among a plurality of drive modes satisfying the first condition and the second condition, the drive mode with the highest speed of rotation of the motor is selected and set as the drive mode to be used. 5. The conveyance device described in claim 1 , wherein drive mode selection information correlating the selected drive mode to the conveyance distance indicated by the acquired distance data and the stored roll diameter information is stored, and the drive mode selection information is referenced to determine the drive mode. 6. The conveyance device described in claim 1 , wherein calculating the roll diameter and storing the roll diameter information comprises executing the steps of: calculating the roll diameter based on values detected by the first rotation detection unit and second rotation detection unit during the specific period, after the second rotation detection unit detects rotation after the forward conveyance operation starts, or after the sheet medium is conveyed a predetermined conveyance distance in the forward conveyance operation, and updating the stored roll diameter information with a more recently calculated roll diameter. 7. The conveyance device described in claim 6 , wherein an error process is executed when the roll diameter calculated in a current specific period is greater than the roll diameter calculated in a previous specific period or is not in a predetermined tolerance range. 8. A method for execution on a conveyance device that holds a sheet medium in a roll and includes a drive roller that feeds the sheet medium from the roll to a conveyance path, a roll rotating unit including a motor that rotates the roll forward to convey the sheet medium toward the drive roller in a forward conveyance operation and in reverse to rewind the fed sheet medium in a reverse conveyance operation, a first rotation detection unit disposed to the drive roller, and a second rotation detection unit disposed to the roll rotating unit, the method comprising: acquiring a first electronic value indicative of rotation of the driver roller output by the first rotation detection unit; acquiring a second electronic value indicative of rotation of the roll rotating unit output by the second rotation detection unit; calculating the roll diameter based on the acquired first electronic value and the acquired second electronic value output during a specific period in the forward conveyance operation, and storing the calculated roll diameter as the roll diameter information; receiving a conveyance command including distance data indicating a conveyance distance in the reverse conveyance operation; acquiring the distance data included in the received conveyance command; acquiring the stored roll diameter information; and selecting a drive mode, from a first drive mode and a second drive mode, for driving the motor of the roll rotating unit based on the acquired distance data and the acquired roll diameter information; wherein the speed of the motor driven in the first drive mode is greater than the speed of the motor driven in the second drive mode. 9. The method described in claim 8 , wherein the drive mode with the highest speed of rotation of the motor is selected from among a plurality of drive modes satisfying a first condition, which is that the conveyance distance indicated b the acquired distance data is greater than a total distance the sheet medium is conveyed both during acceleration and during deceleration of the motor of the roll rotating unit in the selected drive mode, and also satisfying a second condition, which is that a conveyance speed of the motor of the roll rotating unit is lower than a conveyance speed of the drive roller in the selected drive mode, and set as the drive mode to be used. 10. The conveyance method described in claim 8 , wherein drive mode selection information correlating the selected drive mode to the conveyance distance indicated by the acquired distance data and the stored roll diameter information is stored, and the drive mode selection information is referenced to determine the drive mode. 11. The method described in claim 8 , wherein calculating the roll diameter and storing the roll diameter information comprises executing the steps of: calculating the roll diameter based on values detected by the first rotation detection unit and second rotation detection unit during the specific period, after the second rotation detection unit detects rotation after the forward conveyance operation starts, or after the sheet medium is conveyed a predetermined conveyance distance in the forward conveyance operation, and updating the stored roll diameter information with a more recent calculated roll diameter. 12. The conveyance method described in claim 11 , wherein an error process is executed when the roll diameter calculated in a current specific period is greater than the roll diameter calculated in a previous specific period or is not in a predetermined tolerance range. 13. A conveyance device that holds a m

Assignees

Inventors

Classifications

  • Remaining length of web roll · CPC title

  • B65H18/10Primary

    Mechanisms in which power is applied to web-roll spindle · CPC title

  • indicating an entity which is measured, estimated, evaluated, calculated or determined but which does not constitute an entity which is adjusted or changed by the control process per se · CPC title

  • Calculating methods; Mathematic models · CPC title

  • Encoders, e.g. linear · CPC title

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What does patent US9731920B2 cover?
A conveyance device holds a sheet medium in a roll and includes a drive roller that feeds the sheet medium from the roll to a conveyance path; and a roll rotating unit that rotates the roll forward to convey the sheet medium toward the drive roller and in reverse to rewind the sheet medium and that has multiple drive modes with different speeds of rotation. A control unit controls driving the d…
Who is the assignee on this patent?
Noguchi Akihiko, Seiko Epson Corp
What technology area does this patent fall under?
Primary CPC classification B65H18/10. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 15 2017 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).