This application is based on Patent Application No. 2000-69319 filed Mar. 13, 2000 in Japan, the content of which is incorporated hereinto by reference.
1. Field of the Invention
The present invention relates to a printing apparatus and printing method for printing an image on a printing medium while relatively moving a printing head provided with a plurality of printing elements and the printing medium.
2. Description of the Prior Art
In a prior art printing apparatus such as of an ink-jet type, a dimensional error specific to the printing head, a mounting error associated with attachment and detachment of the printing head, and printing characteristics specific to the printing head have been greatly affecting the printing condition of the image.
However, if the printing condition of the image is varied due to such dimensional error, printing characteristics and mounting error of the printing head specific to the printing head, it was difficult to sufficiently meet the requirements for improved performance of the printing apparatus.
It is therefore an object of the present invention to provide a printing apparatus and printing method capable of printing an image stably and with high accuracy while avoiding effects of a dimensional error and printing characteristics specific to the printing head and a mounting error of the printing head.
In a first aspect of the present invention, there is provided a printing apparatus for printing an image on a printing medium while relatively moving a printing head provided with a plurality of printing elements and the printing medium characterized by comprising:
detection means capable of moving along with the printing head relative to the printing medium for detecting image printed on the printing medium; and
control means for controlling the printing head according to a detection result of the detection means.
In a second aspect of the present invention, there is provided a printing method for printing an image on a printing medium while relatively moving a printing head provided with a plurality of printing elements and the printing medium characterized in that:
an image printed on the printing medium is detected by detection means moving along with the printing head relative to the printing medium; and
the printing head is controlled according to a detection result of the detection means.
In the present invention, detection means is used. The detection means is capable of detecting the image printed on the printing medium by moving along with the printing head relative to the printing medium. The printing head is controlled according to the detection result of the detection means. To be more concrete, the driving of the plurality of printing elements in the printing head is controlled. Actual printing result information by the plurality of printing elements in the printing head is fed back, thereby these printing elements are controlled according to the actual situation. As a result, the image can be printed stably and with high accuracy by avoiding effects of a dimensional error printing characteristics specific to the printing head and a mounting error of the printing head.
Further, by providing the detection means and replaceably mounting the printing head to the carriage of a serial-type printing apparatus, control contents for the printing head can be corrected. Thereby, particularly, the effects of the printing characteristics of each of the replaceable printing heads and mounting error due to attachment and detachment of the printing head are avoided. As a result, stable printing can be achieved without variation of printing characteristics specific to the printing head.
In this case, the plurality of printing elements in the printing head mounted on the carriage can be arranged in a direction crossing with the primary scanning direction of the carriage. And, the plurality of detection elements in the detection means can be disposed at predetermined positions of the carriage so that the detection elements are along a specified direction crossing with the primary scanning direction of the carriage. Using the plurality of detection elements, the printing image can be surely detected. Further, the plurality of detection elements may be those which detect printing images or printing pixels printed by at least two printing elements. Still further, the control means can control drive timings of the plurality of printing elements in the printing head according to a difference in detection time of the printing image or printing pixel by the plurality of detection elements. Thereby, deviations of printing positions can be corrected.
Further, by the detection means provided commonly for the plurality of printing heads, an image printed by each of the plurality of printing heads can be detected. Thereby, the actual situations of the plurality of printing heads are efficiently detected, and the detection results can be utilized in controlling these printing heads.
Yet further, as the detection means, a light source for emitting light and a photoelectric conversion element for receiving reflected light from the printing medium can be used. Yet further, as the printing head, it is possible to use an ink-jet printing head provided with a plurality of ink ejectable printing elements.
The above and other objects, features and advantages of the present invention will become more apparent from the following description of embodiments thereof taken in conjunction with the accompanying drawings.
In the following, embodiments of the present invention will be described with reference to the drawings. The present embodiment is an application example of an ink-jet printing apparatus and ink-jet printing method for forming an image on a printing medium.
To the transportation roller 11, rotation of the transportation motor (not shown) appropriately reduced by a gear train 14 is transmitted. Numeral 12 is a pinch roller which is disposed at a position pressing against the transportation roller 11. The paper 30 is pressed between the transportation roller 11 and the pinch roller 12, so that the transportation force is surely transmitted. A transmission roller 34 rotates the paper discharge roller 13 slightly faster than the transportation roller 11. An area between the transportation roller 11 and the paper discharge roller 13 is a printing area, which is set as a larger area than a maximum printing width by all nozzles of the printing head 2, thereby in the printing area, flatness of the paper 30 is secured. The right side position in
In
The printing head 2 can be mounted between a contact portion 3a and a head holder 21 of the carriage 3. By rotation of a lever 22, a contact portion 2a (see
When the array of the ink ejection openings 40a to 40l of the printing head 2 is inclined as shown in
In the present embodiment, among ink ejection openings at one end side and the other end side of the ink ejection opening array (nozzle array), one of a greater deviation amount from the center C (in the present embodiment, the ink ejection opening 40l side) is determined as an adjustment subject side. Ink droplet ejection timing of the ink ejection openings (in the present embodiment, ink ejection openings 40i, 40j, 40k, and 40l) out of the tolerable deviation range of 1 dot as the minimum printing resolution is shifted by 1 dot printing time. The ink ejection openings out of the tolerable deviation range of 1 dot can be selected from the relation of the distance P determined from the detection time difference of the detection elements 50a and 50b, the printing width W, and the arrangement position of the ink ejection openings.
As a result of this ejection timing adjustment, printing dots are formed as shown in
Further, a control system of the printing apparatus according to the present invention can be a system configuration including a CPU, ROM and RAM. In this case, the CPU executes a processing for the above-described ejection timing adjustment according to a program stored in the ROM. For example, the CPU first determines whether or not a difference in detection time of printing dots 41a and 41l by the detection elements 50a and 50b is greater than the time for 1 dot as the minimum printing resolution. When the detection time is greater than 1 dot printing time, it is determined that print timing adjustment is necessary, and an ink ejection opening to be subjected to ejection timing adjustment is selected as described above. In the selection, a data table can be used. Then, a control signal is sent to a control circuit of the printing head 2 so that ejection timing of an ink droplet from the selected ink ejection opening is shifted. The RAM can be used as a work area for the processing of the CPU. Further, under the control of the CPU, through a driver, the printing head 2, the carriage motor 7, and the transportation motor are controlled. Still further, it is also possible that under the control of the CPU, printing data is received from external devices such as a host apparatus, and an image is printed according to the printing data.
In the above-described embodiment, a total of two detection elements are provided at positions corresponding to the ink ejection openings at both ends of the nozzle array. However, alternatively, detection elements may be provided so as to oppose all the ink ejection openings, in this case, the deviation amount can be corrected independently for every ink ejection opening. Further, detection elements may be provided so that each one corresponds to every group of a plurality of ink ejection openings.
Still further, by setting the tolerable deviation range of printing dot to smaller than 1 dot, the adjusting amount of the ejection timing can be finely set according to the tolerable deviation. Therefore, the deviation of printing dot formation position can be corrected more accurately. Yet further, the design center C may be inclined by a predetermined angle relative to the primary scanning direction. In this case, the printing head can be controlled so that deviation amount of the printing element from the inclined center C is corrected.
Yet further, it is possible to provide a common detection element for a plurality of printing heads, so that images printed by the respective printing heads are detected. Therefore, the actual situations such as printing characteristics and mounting error and the like of the plurality of printing heads can be efficiently detected, so that the detection result is utilized in controlling the printing heads. In this case, for example, the printing heads are driven one by one, and images printed by the respective printing heads are successively detected, so that the detection results are utilized in respective controls of the printing heads.
Yet further, the present invention can also be applied to printing heads provided with various printing elements such as thermal transfer type heads and the like, in addition to the printing head provided with the ink-jet printing element.
The present invention has been described in detail with respect to preferred embodiments, and it will now be apparent from the foregoing to those skilled in the art that changes and modifications may be made without departing from the invention in its broader aspects, and it is the intention, therefore, that the appended claims cover all such changes and modifications as fall within the true spirit of the invention.
Number | Date | Country | Kind |
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2000-069319 | Mar 2000 | JP | national |
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Number | Date | Country | |
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20010026297 A1 | Oct 2001 | US |