The present invention relates to a duplex printing apparatus, and more particularly to a duplex printing apparatus for performing a duplex printing operation.
With rapid development of electronic industries, a diversity of printing apparatuses such as copiers, printers, scanners or multifunction peripherals become essential information apparatuses in offices. Among these printing apparatuses, the printers are the most popular. In the early stage, a printer can perform a single-side printing operation. For performing duplex printing operations by such a printer, a first page of a document file shown on a computer screen is firstly printed on a first side of a blank paper. After the first page of a document file has been printed, the paper containing the printed image of the first page should be manually turned over and then placed on the paper input tray of the printer. Next, a second page of the document file is printed on a second side of the paper. However, the process of manually turning over the paper is troublesome. This drawback becomes more serious if the document contains a great number of pages. Recently, a duplex printing apparatus has been developed for automatically performing a duplex printing operation.
Hereinafter, a procedure of performing a duplex printing operation by the conventional duplex printing apparatus 100 will be illustrated with reference to
Until the tail edge of the paper is nipped between the paper ejecting driving roller 1121 and the paper ejecting follower roller 1122 of the paper ejecting roller assembly 112, the paper guide slice 113 is switched to close the path leading to the paper ejecting channel 107. Meanwhile, the paper ejecting driving roller 1121 is rotated in a reverse direction and cooperates with the paper ejecting follower roller 1122 to feed the paper into the inverting channel 108. After the paper is fed into the inverting channel 108, the paper is successively transported by the second paper transfer roller assembly 110, the third paper transfer roller assembly 111 and the fourth paper transfer roller assembly 114 into the paper feeding channel 105. Next, the first paper transfer roller assembly 109 transports the paper into the print region 104. At this moment, the image of the second page of the document file has been read and transmitted to the laser scanning unit 1031. During the paper is transported across the print region 104, developing and printing operations as described for the image of the first page are performed on the second side of the paper. After the toner image is transferred to second side of the paper, the paper with the toner image is exited from the print region 104 and fed into the paper ejecting channel 107. When the paper is transported across the region between the heating roller 1038 and the pressing roller 1039, the paper is heated and pressed by the heating roller 1038 and the pressing roller 1039, which function as fusing units. After the heating and pressing operation has done, the paper is transported to the paper ejecting tray 102 by the paper ejecting roller assembly 112 and thus the duplex printing operation is completed. Meanwhile, the paper guide slice 113 is switched to open the path leading to the paper ejecting channel 107.
Although the use of the conventional duplex printing apparatus becomes more convenient because it is not required to manually turn over the paper, there are still some drawbacks. For example, during the process of turning over the paper by the conventional duplex printing apparatus, the paper should be transported across the inverting channel and sent to the print region again. The arrangement of the inverting channel increases the length of the duplex printing apparatus. Therefore, the overall volume of the duplex printing apparatus is increased, which is detrimental to the space utilization. Moreover, since the inverting channel is relatively longer, it is time-consuming to print an image on the second side of the paper and the duplex printing operation has a reduced printing speed.
The present invention relates to a duplex printing apparatus, and more particularly to a duplex printing apparatus with an increased printing speed.
In accordance with an aspect of the present invention, there is provided a duplex printing apparatus for printing images on a first side and a second side of a paper. The duplex printing apparatus includes a paper input tray, a paper ejecting tray, a scanning and developing print unit, a paper feeding channel, a paper pick-up roller, a paper ejecting channel, an inverting channel, a first paper transfer roller assembly, a second paper transfer roller assembly, a third paper transfer roller assembly and a paper ejecting roller assembly.
The paper input tray is used for placing the paper thereon. The paper ejecting tray is disposed above the paper input tray for supporting the printed paper thereon. The scanning and developing print unit is disposed in a print region for reading the images and printing the images on the paper. The paper feeding channel is arranged between the paper input tray and the print region for leading the paper to the print region such that the images are printed on the first side of the paper when the paper is transported across the print region. The paper pick-up roller is disposed beside the paper input tray for transporting the paper into the paper feeding channel. The paper ejecting channel is arranged between the print region and the paper ejecting tray for leading the paper to the paper ejecting tray. The inverting channel is arranged between the print region and the paper ejecting tray for leading the paper to the print region again such that the images are printed on the second side of the paper when the paper is transported across the print region. The first paper transfer roller assembly is arranged at the junction between the paper feeding channel and the inverting channel for transporting the paper into the print region. The second paper transfer roller assembly is disposed in the paper ejecting channel for transporting the paper. The third paper transfer roller assembly is disposed in the inverting channel for transporting the paper to into the print region. The paper ejecting roller assembly is used for transporting the paper to either the paper ejecting tray or the inverting channel.
In an embodiment, the scanning and developing print unit includes a laser scanning unit, an optical photoconductive drum, a charging roller, a developer roller, a toner adding roller, a transferring roller and a blade.
In an embodiment, the second paper transfer roller assembly includes a heating roller and a pressing roller.
In an embodiment, the paper ejecting roller assembly includes a paper ejecting driving roller and a paper ejecting follower roller. The paper ejecting driving roller can be rotated in either a positive direction or a reverse direction.
The above objects and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
The duplex printing apparatus 200 of the present invention is distinguished from the conventional duplex printing apparatus 100 in that the inverting channel 208 is arranged between the print region 204 and the paper ejecting tray 202 and the third paper transfer roller assembly 211 is disposed in the inverting channel 208. Moreover, since the heating and pressing function is imparted to the second paper transfer roller assembly 210, no additional heating roller and pressing roller are required. That is, in addition to the function of transporting papers, both roller 2101 and 2102 of the second paper transfer roller assembly 210 can function as a heating roller and a pressing roller, respectively. In addition, the paper guide slice 213 is arranged at the junction between the paper ejecting channel 207 and the inverting channel 208.
Hereinafter, a procedure of performing a duplex printing operation by the duplex printing apparatus 200 will be illustrated with reference to
Until the tail edge of the paper is nipped between the paper ejecting driving roller 2121 and the paper ejecting follower roller 2122 of the paper ejecting roller assembly 212, the paper guide slice 213 is switched to open the path leading to the inverting channel 208. Meanwhile, the paper ejecting driving roller 2121 is rotated in a reverse direction and cooperates with the paper ejecting follower roller 2122 to feed the paper into the inverting channel 208. After the paper is fed into the inverting channel 208, the paper is successively transported by the third paper transfer roller assembly 111 to the first paper transfer roller assembly 209. Next, the first paper transfer roller assembly 209 transports the paper into the print region 204. At this moment, the image of the second page of the document file has been read and transmitted to the scanning and developing print unit 203. During the paper is transported across the print region 204, developing and printing operations as described for the image of the first page are performed on the second side of the paper. After the toner image is transferred to second side of the paper, the paper with the toner image is transported by the transferring roller 2036 into the paper ejecting channel 207. When the paper is transported across the second paper transfer roller assembly 210, the paper is heated and pressed by the second paper transfer roller assembly 210 so as to facilitate fusing the toner onto the paper. At this moment, the paper guide slice 213 is switched to close the path leading to the inverting channel 208. After the printing operation on the second page of the document file is completed, the paper containing the printed second page is transported to the paper ejecting tray 202 by the paper ejecting roller assembly 212 and thus the duplex printing operation is completed.
In the above embodiment, the duplex printing apparatus of the present invention is distinguished by the inverting channel. The inverting channel is arranged between the print region and the paper ejecting tray. In comparison with the conventional duplex printing apparatus, the inverting channel is much shorter and thus the printing speed is enhanced.
It is noted that, however, those skilled in the art will readily observe that numerous modifications and alterations of the connection member may be made while retaining the teachings of the invention. For example, two papers can be successively printed by the duplex printing apparatus of the present invention during each duplex printing cycle. That is, four pages of the document file can be successively printed out by the duplex printing apparatus of the present invention during each duplex printing cycle. Hereinafter, a procedure of performing a duplex printing operation by the duplex printing apparatus 200 will be also illustrated with reference to
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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097106977 | Feb 2008 | TW | national |