Printing apparatus and roll paper conveyance control method
US-8931878-B2 · Jan 13, 2015 · US
US9539831B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9539831-B2 |
| Application number | US-201213429727-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 26, 2012 |
| Priority date | Apr 15, 2011 |
| Publication date | Jan 10, 2017 |
| Grant date | Jan 10, 2017 |
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This invention has been made to cause a printing apparatus for conveying roll paper and performing printing to simultaneously attain a stable conveyance accuracy and prevent skewed conveyance independently of LF roller driving conditions and disturbance conditions that variously change as the roll paper state changes. For this purpose, a feed motor is used as a load generator for the roll paper. A section from a conveyance operation by the LF roller to the next conveyance operation is divided into a plurality of sub-sections. A feed mechanism is controlled by switching between a feeder load generation section and a feeder load zero section for each sub-section.
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What is claimed is: 1. A conveyance apparatus for pulling out, in a conveyance direction, a sheet wound into a roll around a roll shaft and conveying the pulled out sheet by a conveyance roller, comprising: a conveyance motor configured to rotate the conveyance roller; a first control unit configured to control said conveyance motor such that a rotation velocity of the conveyance roller in the conveyance direction increases in an acceleration region of the conveyance roller, becomes constant in a steady region of the conveyance roller, and decreases in a deceleration region of the conveyance roller; a feed motor configured to rotate, about the roll shaft, a rolled portion that is a portion of the sheet wound into the roll; and a second control unit configured to control driving of said feed motor, wherein a single conveyance in intermittent conveyance of the pulled out sheet includes the acceleration region, the steady region and the deceleration region, and said second control unit is further configured to control said feed motor so as to: rotate the rolled portion by a predetermined torque, in the conveyance direction in the steady region, rotate the rolled portion by a torque obtained by adding, to the predetermined torque, a torque in the conveyance direction necessary for accelerating rotation of the rolled portion in the acceleration region, rotate the rolled portion by a torque obtained by adding, to the predetermined torque, a torque in the conveyance direction necessary for decelerating rotation of the rolled portion in the deceleration region, and apply a back tension to the sheet between the rolled portion and the conveyance roller in a state where said first control unit does not execute driving of said conveyance motor for conveyance by the conveyance roller after a first conveyance in the intermittent conveyance and before a second conveyance following the first conveyance. 2. The apparatus according to claim 1 , further comprising: an adjustment unit configured to adjust a magnitude of a predetermined torque to be generated in the steady region, based on at least one of a radius of the rolled portion, a width of the sheet in a direction perpendicular to the conveyance direction, and a type of the sheet. 3. The apparatus according to claim 2 , wherein said adjustment unit is further configured to adjust the magnitude of the predetermined torque by looking up a table that associates the radius, the width, and the type with a torque value. 4. The apparatus according to claim 2 , further comprising: a detection unit configured to detect the radius of the rolled portion; an input unit configured to input the width of the sheet and the type of the sheet; and a memory unit configured to store the radius of the rolled portion, the width of the sheet, and the type of the sheet, wherein said detection unit outputs the radius of the rolled portion to said memory unit, said input unit outputs the width of the sheet and the type of the sheet, which are input, to said memory unit, and the radius of the rolled portion, the width of the sheet, and the type of the sheet stored in said memory unit are output to said adjustment unit. 5. A printing apparatus comprising: a conveyance apparatus according to claim 1 ; and a printing unit configured to print on a sheet conveyed by the conveyance apparatus. 6. The apparatus according to claim 1 , wherein the second control unit divides a conveyance operation, comprised of: by driving said feed motor and said conveyance motor, accelerating the roll paper from a stopped state to a steady state; decelerating the roll paper; and stopping the roll paper, into a plurality of sections and control to change a torque applied by said feed motor to the roll paper in each of the divided sections. 7. The apparatus according to claim 6 , wherein the plurality of sections are divided into: a first section from accelerating the roll paper from the stopped state to ending control of the acceleration; a second section from ending the first section to decelerating and stopping the roll paper through conveyance at a constant velocity; and a third section from ending the second section to starting the acceleration of the roll paper for a next conveyance operation, and the second section is further divided into: a control section α where a velocity of the roll paper reaches a maximum velocity; a control section β from ending the control section α to decreasing the velocity of the roll paper to zero through the constant velocity; and a control section γ from ending the control section β to changing the velocity of the roll paper from zero to zero again through a negative velocity. 8. The apparatus according to claim 7 , wherein said second control unit is further configured to control to cause said conveyance motor to accelerate said conveyance roller and cause said feed motor to apply a torque corresponding to an inertia of the roll paper in the first section, control to cause said feed motor to further increase the velocity of the roll paper so as to slack the edge portion of the roll paper in the control section α of the second section, control to apply a torque to said feed motor in a direction reverse to that in the control section α so as to decrease the velocity of the roll paper, and then control driving of said feed motor and said conveyance motor such that the velocity of the roll paper matches a velocity of said conveyance roller in the control section β of the second section, control to apply the torque to said feed motor in the reverse direction so as to wind back the slack of the edge portion of the roll paper in the control section γ of the second section, and control to apply the torque to said feed motor in the reverse direction while maintaining the velocity of the roll paper at zero in the third section. 9. The apparatus according to claim 8 , further comprising: a conveyance encoder provided for feedback control of said conveyance motor and configured to generate information to estimate a position, a velocity, and an acceleration of said conveyance roller; and a feed encoder provided for feedback control of said feed motor and configured to generate information to estimate a position, a velocity, and an acceleration of the roll paper. 10. The apparatus according to claim 9 , wherein a torque generated on said feed motor under control of said second control unit is based at least on the position, the velocity, and the acceleration of said conveyance roller generated by said conveyance encoder. 11. The apparatus according to claim 1 , wherein said first control unit controls said conveyance motor by open loop control, and said conveyance motor includes a pulse motor. 12. The apparatus according to claim 1 , wherein the predetermined torque in the steady region is a torque in a direction opposite to the conveyance direction. 13. The apparatus according to claim 1 , wherein a back tension is applied by the first control unit to the sheet between the rolled portion and the conveyance roller and by the second control unit in the acceleration region, the steady region and the deceleration region. 14. The apparatus according to claim 1 , wherein the second control unit adjusts a torque to the rolled portion by controlling a current for driving the feed motor.
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