Claims
- 1. A sheet feeder comprising:a cassette for containing a plurality of sheets stacked therein; a holding member for holding the stacked sheets in the cassette from above; at least one pickup roller arranged on a first rotation axis extending in a direction perpendicular to a transporting direction, in which an uppermost sheet is fed from the cassette and transported, said at least one pickup roller feeding and transporting the uppermost sheet while the pickup roller is kept in contact with the uppermost sheet during one rotation of the pickup roller; and a rotatable subsidiary holding member which: (i) is arranged on a second rotation axis extending in the direction perpendicular to the transporting direction, (ii) rotates in synchronization with a rotation of the pickup roller and in the same direction as the pickup roller rotates, (iii) contacts the uppermost sheet from above to hold a warp of the sheets during one rotation of the rotatable subsidiary holding member before the pickup roller contacts the uppermost sheet, and (iv) keeps contacting the uppermost sheet until after the pickup roller contacts the uppermost sheet.
- 2. The sheet feeder according to claim 1, wherein a distance between the second rotation axis of the rotatable subsidiary holding member and a surface of the rotatable subsidiary holding member which contacts the uppermost sheet is equal to or greater than a distance between the first rotation axis of the pickup roller and a surface of the pickup roller which contacts the uppermost sheet.
- 3. The sheet feeder according to claim 1, wherein the rotatable subsidiary holding member is separated from the uppermost sheet during one rotation of the rotatable subsidiary holding member before the pickup roller is separated from the uppermost sheet.
- 4. The sheet feeder according to claim 1, wherein the rotatable subsidiary holding member is made of a low-frictional material, and when the rotatable subsidiary holding member is in contact with the uppermost sheet, friction between the uppermost sheet and the rotatable subsidiary holding member is suppressed.
- 5. The sheet feeder according to claim 1, wherein:two pickup rollers are arranged individually on both sides of the uppermost sheet as viewed in a direction of the first rotation axis, the first rotation axis and the second rotation axis are arranged identical with each other, and the rotatable subsidiary holding member is arranged between the two pickup rollers, so that the rotatable subsidiary holding member is arranged on a center portion of the uppermost sheet as viewed in a direction of the second rotation axis.
- 6. A sheet feeder comprising:a cassette adapted to contain a plurality of sheets stacked in the cassette; at least one pickup roller which feeds an uppermost sheet from the cassette by one rotation of the pickup roller while the pickup roller is kept in contact with the uppermost sheet; and a holding member which suppresses a warp of the uppermost sheet by contacting a central portion of the uppermost sheet, as viewed in a right angled direction to a sheet feeding direction in which the uppermost sheet is fed from the cassette, before the pickup roller contacts the uppermost sheet.
- 7. The sheet feeder according to claim 6, wherein the holding member includes a holding roller which rotates in synchronization with a rotation of the pickup roller and in a same direction of rotation as the pickup roller.
- 8. The sheet feeder according to claim 7, wherein a diameter of the holding roller is equal to or greater than a diameter of the pickup roller.
- 9. The sheet feeder according to claim 7, wherein the holding roller is made of synthetic resin.
- 10. The sheet feeder according to claim 6, wherein two pickup rollers are provided and arranged individually on both sides of the uppermost sheet in the right angled direction to the sheet feeding direction, and the holding member is arranged between the two pickup rollers.
- 11. The sheet feeder according to claim 6, wherein the holding member includes a cam.
- 12. The sheet feeder according to claim 11, wherein the cam contacts the uppermost sheet to hold the sheets by one rotation of the cam before the pickup roller contacts the uppermost sheet.
- 13. The sheet feeder according to claim 6, further comprising a transport guide which is arranged on a downstream side of the cassette, and which guides the sheet fed from the cassette in a direction perpendicular to the sheet feeding direction.
- 14. An image forming apparatus comprising:an image forming unit which forms an image on a sheet; a cassette adapted to contain a plurality of sheets stacked in the cassette; at least one pickup roller which feeds an uppermost sheet from the cassette to the image forming unit by one rotation of the pickup roller while the pickup roller is kept in contact with the uppermost sheet; and a holding member which suppresses a warp of the uppermost sheet by contacting a central portion of the uppermost sheet, as viewed in a right angled direction to a sheet feeding direction in which the uppermost sheet is fed from the cassette, before the pickup roller contacts the uppermost sheet.
- 15. The image forming apparatus according to claim 14, wherein the holding member includes a holding roller which rotates in synchronization with a rotation of the pickup roller and in a same direction of rotation as the pickup roller.
- 16. The image forming apparatus according to claim 15, wherein a diameter of the holding roller is equal to or greater than a diameter of the pickup roller.
- 17. The image forming apparatus according to claim 14, further comprising a transport guide which is arranged in a downstream side of the cassette, and which guides the sheet fed from the cassette in a direction perpendicular to the sheet feeding direction.
- 18. A sheet feeder comprising:a sheet stacker adapted to contain a plurality of sheets stacked in the sheet stacker; two pickup rollers arranged on a rotation axis extending in a direction perpendicular to a transporting direction, in which the uppermost sheet is fed from the sheet stacker and transported, said pickup rollers feeding and transporting the uppermost sheet by one rotation of the pickup rollers while the pickup rollers are kept in contact with the uppermost sheet; and a rotatable subsidiary holding member which: (i) is arranged on the rotation axis between the pickup rollers and on a center portion of the uppermost sheet as viewed in a direction of the rotation axis, (ii) rotates in synchronization with the rotation of the pickup rollers and in a same direction of rotation as the pickup rollers, and (iii) contacts the uppermost sheet to suppress a warp of the sheets stacked in the sheet stacker by one rotation of the rotatable subsidiary holding member before the pickup rollers contact the uppermost sheet; wherein a distance between the rotation axis and a surface of the rotatable subsidiary holding member which contacts the uppermost sheet is equal to or greater than a distance between the rotation axis and a surface of each of the pickup rollers which contacts the uppermost sheet.
- 19. The sheet feeder according to claim 18, wherein the surface of the rotatable subsidiary holding member which contacts the uppermost sheet is made of a low-frictional material, and when the surface is in contact with the uppermost sheet, friction between the uppermost sheet and the surface is suppressed.
- 20. A sheet feeder comprising:a sheet stacker adapted to contain a plurality of sheets stacked in the sheet stacker; two pickup rollers arranged on a rotation axis extending in a direction perpendicular to a transporting direction, in which the uppermost sheet is fed from the sheet stacker and transported, each of the pickup rollers including an outer circumferential surface which contacts and is separated from the uppermost sheet during one rotation of the pickup roller, said pickup rollers feeding and transporting the uppermost sheet by one rotation of the pickup rollers while each outer circumferential surface of the pickup rollers is kept in contact with the uppermost sheet, and each outer circumferential surface of the pickup rollers having a necessary length in a circumferential direction to transport the uppermost sheet from the sheet stacker to a position outside the sheet stacker; and a rotatable subsidiary holding member arranged on the rotation axis between the two pickup rollers, said rotatable subsidiary holding member including an outer circumferential surface which contacts and is separated from the uppermost sheet during one rotation of the rotatable subsidiary holding member, and said outer circumferential surface of the rotatable subsidiary holding member contacting the uppermost sheet to suppress a warp of the sheets stacked in the sheet stacker while the pickup rollers are kept in contact with the uppermost sheet.
- 21. The sheet feeder according to claim 20, wherein the rotatable subsidiary holding member is arranged on a center portion of the uppermost sheet as viewed in a direction of the rotation axis.
- 22. The sheet feeder according to claim 20, wherein the outer circumferential surface of each of the pickup rollers has an arc shape and includes a leading end placed at a front side as viewed in a rotating direction of the pickup rollers and a terminal end placed at a back side, and wherein the outer circumferential surface of the rotatable subsidiary holding member also has an arc shape and includes a leading end placed at a front side as viewed in a rotating direction of the rotatable subsidiary holding member and a terminal end placed at a back side.
- 23. The sheet feeder according to claim 22, wherein the rotatable subsidiary holding member rotates in synchronization with the rotation of the pickup rollers and in a same direction of rotation as the pickup rollers, and wherein the leading end of the rotatable subsidiary holding member is placed in front of the leading end of each pickup roller in the rotating direction of the pickup rollers and the rotatable subsidiary holding member.
- 24. The sheet feeder according to claim 22, wherein the rotatable subsidiary holding member is arranged on a center portion of the uppermost sheet as viewed in a direction of the rotation axis.
- 25. A method of feeding a plurality of sheets stacked in a sheet stacker comprising:feeding an uppermost sheet from the sheet stacker and transporting the uppermost sheet by rotating two pickup rollers on a rotation axis extending in a direction perpendicular to a transporting direction, in which the uppermost sheet is fed from the sheet stacker and transported, said pickup rollers feeding and transporting the uppermost sheet by one rotation of the pickup rollers while the pickup rollers are kept in contact with the uppermost sheet; and suppressing a warp of the sheets stacked in the sheet stacker by rotating a rotatable subsidiary holding member on the rotation axis in synchronization with the rotation of the pickup rollers and in a same direction of rotation as the pickup rollers, said rotatable subsidiary holding member being arranged between the two pickup rollers and on a center portion of the uppermost sheet as viewed in a direction of the rotation axis, and said rotatable subsidiary holding member contacting the uppermost sheet to suppress the warp of the sheets stacked in the sheet stacker by one rotation of the rotatable subsidiary holding member before the pickup rollers contact the uppermost sheet; wherein a distance between the rotation axis and a surface of the rotatable subsidiary holding member which contacts the uppermost sheet is equal to or greater than a distance between the rotation axis and a surface of each of the pickup rollers which contacts the uppermost sheet.
- 26. A method of feeding a plurality of sheets stacked in a sheet stacker comprising:feeding an uppermost sheet from the sheet stacker and transporting the uppermost sheet by rotating two pickup rollers on a rotation axis extending in a direction perpendicular to a transporting direction, in which the uppermost sheet is fed from the sheet stacker and transported, each of the pickup rollers including an outer circumferential surface which contacts and is separated from the uppermost sheet during one rotation of the pickup roller, said pickup rollers feeding and transporting the uppermost sheet by one rotation of the pickup rollers while each outer circumferential surface is kept in contact with the uppermost sheet, and each outer circumferential surface of the pickup rollers having a necessary length in a circumferential direction to transport the uppermost sheet from the sheet stacker to a position outside the sheet stacker; and suppressing a warp of the sheet stacked in the sheet stacker by rotating on the rotation axis a rotatable subsidiary holding member arranged between the two pickup rollers, said rotatable subsidiary holding member including an outer circumferential surface which contacts and is separated from the uppermost sheet during one rotation of the rotatable subsidiary holding member, and said outer circumferential surface of the rotatable subsidiary holding member contacting the uppermost sheet to suppress the warp of the sheets stacked in the sheet stacker while the pickup rollers are kept in contact with the uppermost sheet.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-201164 |
Jul 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is based upon and claims the benefit of priority from the prior Japanese Patent Application No. 2000-201164, filed Jul. 3, 2000, the entire contents of which are incorporated herein by reference.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
8-133504 |
May 1996 |
JP |