IP Library › Granted Patent US 10,427,431
Granted Patent B2
US 10,427,431 · App. 15/903,493 · Granted Oct 1, 2019

Sheet supplying apparatus and printing apparatus

Inventors: Shuichi Masuda (Yokohama, JP); Masashi Kamada (Kawasaki, JP); Masato Eiyama (Yokohama, JP); Yuki Igarashi (Tokyo, JP); Masashi Negishi (Kawasaki, JP); Ryoya Shinjo (Kawasaki, JP); Ryo Kobayashi (Kawasaki, JP); Tomohiro Suzuki (Kawasaki, JP)
Assignee: Canon Kabushiki Kaisha
B41J15/04B41J11/0095B65H5/068B65H5/28B65H5/36B65H7/14B65H7/20B65H16/10B65H19/10B65H19/105B65H2301/33312B65H2301/41509B65H2407/21B65H2553/41B65H2553/51
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Quick Facts
Patent No.
US 10,427,431
App. No.
15/903,493
Granted
Oct 1, 2019
Kind
B2
Abstract

A sheet supplying apparatus, in which a user can select either automatic sheet feeding or manual sheet feeding, includes a driving unit configured to cause a roll including a wound consecutive sheet to rotate in a first direction for feeding the sheet or a second direction opposite to the first direction, a first sensor that detects a leading end portion of the sheet separated from an outer circumferential surface of the roll, a second sensor that detects the leading end portion which is manually set in a conveyance path by the user, and a determination unit configured to determine whether or not automatic sheet feeding is performed on the basis of a detection result of the second sensor.

Claims (28)

1. A sheet supplying apparatus, comprising:

a driving unit configured to cause a roll including a wound consecutive sheet to rotate in a first direction for feeding the sheet or a second direction opposite to the first direction;

a first sensor that detects a leading end portion of the sheet separated from an outer circumferential surface of the roll; and

a second sensor that detects the leading end portion of the sheet, the second sensor being positioned downstream of the first sensor with respect to a direction in which the sheet is fed, wherein

in a case in which the second sensor detects the leading end portion of the sheet, the driving unit causes the roll to rotate in the first direction, and

in a case in which the second sensor does not detect the leading end portion of the sheet, the driving unit causes the roll to rotate in the second direction, and when the first sensor detects the leading end portion of the sheet, the driving unit changes a rotation direction of the roll from the second direction to the first direction.

2. The sheet supplying apparatus according to claim 1 , wherein the second sensor is installed at a position at which the leading end portion of the sheet separated from the outer circumferential surface does not pass through in a case where the roll is caused to rotate in the second direction.

3. The sheet supplying apparatus according to claim 1 , wherein, in a case in which the second sensor does not detect the leading end portion of the sheet within a predetermined time period after the user sets the roll in the sheet supplying apparatus, the driving unit starts the rotation of the roll in the second direction, and in a case in which the second sensor detects the leading end portion of the sheet within the predetermined time period after the user sets the roll in the sheet supplying apparatus, the driving unit starts the rotation of the roll in the first direction.

4. The sheet supplying apparatus according to claim 3 , further comprising a third sensor that detects a spool member of the roll,

wherein, in a case in which the third sensor detects the spool member, the roll is determined to be set.

5. The sheet supplying apparatus according to claim 1 , wherein, in a case in which the second sensor does not detect the leading end portion of the sheet, the driving unit starts the rotation of the roll in the first direction in accordance with the detection of the leading end portion by the second sensor.

6. The sheet supplying apparatus according to claim 1 , wherein, in a case in which the second sensor does not detect the leading end portion of the sheet, the driving unit starts the rotation of the roll in the first direction in accordance with an instruction of the user.

7. The sheet supplying apparatus according to claim 1 , wherein the first sensor is an optical sensor including a light emitting unit and a light receiving unit and is installed at a position at which the sheet separated from the outer circumferential surface passes through, and an output value of the first sensor increases as a distance from the sheet decreases.

8. A printing apparatus, comprising:

a sheet supplying apparatus including:

a driving unit configured to cause a roll including a wound consecutive sheet to rotate in a first direction for feeding the sheet or a second direction opposite to the first direction,

a first sensor that detects a leading end portion of the sheet separated from an outer circumferential surface of the roll, and

a second sensor that detects the leading end portion of the sheet, the second sensor being positioned downstream of the first sensor with respect to a direction in which the sheet is fed; and

a printing unit that prints an image on a sheet supplied from the sheet supplying apparatus, wherein

in a case in which the second sensor detects the leading end portion of the sheet, the driving unit causes the roll to rotate in the first direction, and

in a case in which the second sensor does not detect the leading end portion of the sheet, the driving unit causes the roll to rotate in the second direction, and when the first sensor detects the leading end portion of the sheet, the driving unit changes a rotation direction of the roll from the second direction to the first direction.

9. The printing apparatus according to claim 8 , wherein the second sensor is installed at a position at which the leading end portion of the sheet separated from the outer circumferential surface does not pass through in a case where the roll is caused to rotate in the second direction.

10. The printing apparatus according to claim 8 , wherein, in a case in which the second sensor does not detect the leading end portion of the sheet within a predetermined time period after the user sets the roll in the sheet supplying apparatus, the driving unit starts the rotation of the roll in the second direction, and in a case in which the second sensor detects the leading end portion of the sheet within the predetermined time period after the user sets the roll in the sheet supplying apparatus, the driving unit starts the rotation of the roll in the first direction.

11. The printing apparatus according to claim 10 , further comprising a third sensor that detects a spool member of the roll,

wherein, in a case in which the third sensor detects the spool member, the roll is determined to be set.

12. The printing apparatus according to claim 8 , wherein, in a case in which the second sensor does not detect the leading end portion of the sheet, the driving unit starts the rotation of the roll in the first direction in accordance with the detection of the leading end portion by the second sensor.

13. The printing apparatus according to claim 8 , wherein, in a case in which the second sensor does not detect the leading end portion of the sheet, the driving unit starts the rotation of the roll in the first direction in accordance with an instruction of the user.

14. The printing apparatus according to claim 8 , wherein the first sensor is an optical sensor including a light emitting unit and a light receiving unit and is installed at a position at which the sheet separated from the outer circumferential surface passes through, and an output value of the first sensor increases as a distance from the sheet decreases.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2018
From: MASUDA, SHUICHI; KAMADA, MASASHI; EIYAMA, MASATO; IGARASHI, YUKI; NEGISHI, MASASHI; SHINJO, RYOYA; KOBAYASHI, RYO; SUZUKI, TOMOHIRO
To: CANON KABUSHIKI KAISHA
Reel/Frame 046286/0440 →
Priority Claims (1)
JP 2017-046440 · Mar 10, 2017 · national
Continuity (1)
Related Publication 20180257405A1 · Sep 13, 2018
Cited By (4)
US 12,251,930 US 12,264,024 US 12,410,033 US 12,583,702