Inkjet printer, method of controlling inkjet printer and computer program
US-2015352867-A1 · Dec 10, 2015 · US
US2017182809A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017182809-A1 |
| Application number | US-201615267171-A |
| Country | US |
| Kind code | A1 |
| Filing date | Sep 16, 2016 |
| Priority date | Dec 23, 2015 |
| Publication date | Jun 29, 2017 |
| Grant date | — |
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A printing device includes a roller; a stepper motor; a head; and a controller, The roller is for conveying a printing medium in a conveying direction. The stepper motor is configured to rotate in synchronization with a pulse signal and rotate the roller. The head is configured to perform printing on the printing medium conveyed by the roller. The controller is configured to perform: decelerating the stepper motor from a first speed to a second speed; identifying a rotational speed of the stepper motor during deceleration of the stepper motor; performing synchronous printing in which the head is driven at timing in synchronization with the pulse signal when the rotational speed is greater than or equal to a prescribed speed; and performing timer printing in which the head is driven at a prescribed period when the rotational speed is less than the prescribed speed.
Opening claim text (preview).
What is claimed is: 1 . A printing device comprising: a roller for conveying a printing medium in a conveying direction; a stepper motor configured to rotate in synchronization with a pulse signal and rotate the roller: a head configured to perform printing on the printing medium conveyed by the roller; and a controller configured to perform: decelerating the stepper motor from a first speed to a second speed; identifying a rotational speed of the stepper motor during deceleration of the stepper motor; performing synchronous printing in which the head is driven at timing in synchronization with the pulse signal when the rotational speed is greater than or equal to a prescribed speed; and performing timer printing in which the head is driven at a prescribed period when the rotational speed is less than the prescribed speed. 2 . The printing device according to claim 1 , wherein the second speed is equal to the prescribed speed; wherein the controller is further configured to perform halting rotation of the stepper motor when the rotational speed is less than the prescribed speed; and wherein the performing timer printing is performed after the rotation of the stepper motor is halted. 3 . The printing device according to claim 1 , wherein the second speed is less than the prescribed speed; and wherein the performing timer printing is performed during the deceleration of the stepper motor. 4 . The printing device according to claim 2 , wherein the rotation of the stepper motor is halted under an excitation state of the stepper motor. 5 . The printing device according to claim 2 , wherein the controller is further configured to perform accelerating the stepper motor from a halted state to the first speed after the rotation of the stepper motor is halted; and wherein acceleration time required for accelerating the stepper motor from the halted state to the first speed is shorter than deceleration time required for decelerating the stepper motor from the first speed to the second speed. 6 . The printing device according to claim 5 , wherein a maximum deceleration value for a rate of decrease in the rotational speed per unit time when the decelerating decelerates the stepper motor from the first speed to the second speed is smaller than a maximum acceleration value for a rate of increase in the rotational speed per unit time when the accelerating accelerates the stepper motor from the halted state to the first speed. 7 . The printing device according to claim 1 , wherein the performing synchronous printing forms N-number dots in the conveying direction and the performing timer printing forms an (N+1)-th dot in the conveying direction after an N-h dot is formed, N being an integer greater than 1; and wherein a first time from formation of an (N−1)-th dot to formation of the N-th dot is shorter than a second time from formation of the N-th dot to formation of the (N+1)-th dot.
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