This application claims the priority benefit of Taiwan application serial no. 98125091, filed on Jul. 24, 2009. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The present invention relates to a paper feeding module and a scanning device using the same. More particularly, the present invention relates to a paper feeding module having rollers, and a scanning device using the same.
2. Description of Related Art
Recently, with a booming development of computer technology, and as price of a scanning device goes down due to a strong market competition, the scanning device becomes a popular computer peripheral in the market.
The scanning devices can be grouped into different types according to prices or functions thereof. In detail, the scanning devices are grouped into a handheld scanning device, a paper feeding scanning device, a business card scanning device, a film scanning device, and a platform scanning device, etc. Regarding the paper feeding scanning device, it has a paper picking roller and a paper feeding roller, wherein papers can be sequentially driven by the paper picking roller and the paper feeding roller to move forward to a scanning platform for scanning. However, since a rotating speed of the paper feeding roller is generally faster than that of the paper picking roller, the paper is pulled by the paper feeding roller and the paper picking roller, so that at a moment when the paper is divorced from the paper picking roller, a moving speed thereof is unstable, and accordingly a scanning quality is influenced.
The present invention is directed to a paper feeding module, which can improve scanning quality of a scanning device.
The present invention is directed to a scanning device, which has a better scanning quality.
The present invention provides a paper feeding module adapted to a scanning device, wherein the scanning device has a paper feeding path. The paper feeding module includes a first shaft, a first ring-shape structure, a paper picking roller and a paper feeding roller. The first shaft has a first stopping block. The first ring-shape structure rotatably covers the first shaft and has a second stopping block and a third stopping block, wherein the first shaft drives the first ring-shape structure to rotate while the second stopping block is pushed by the first stopping block. The paper picking roller rotatably covers the first shaft and is located on the paper feeding path, and has a fourth stopping block, wherein the first ring-shape structure drives the paper picking roller to rotate while the fourth stopping block is pushed by the third stopping block. The paper feeding roller is disposed on the paper feeding path.
The present invention provides a scanning device including a main body, a paper feeding module and a scanning platform. The main body has a paper feeding path. The paper feeding module is disposed in the main body and includes a first shaft, a first ring-shape structure, a paper picking roller and a paper feeding roller. The first shaft has a first stopping block. The first ring-shape structure rotatably covers the first shaft and has a second stopping block and a third stopping block, wherein the first shaft drives the first ring-shape structure to rotate while the second stopping block is pushed by the first stopping block. The paper picking roller rotatably covers the first shaft and is located on the paper feeding path, and has a fourth stopping block, wherein the first ring-shape structure drives the paper picking roller to rotate while the fourth stopping block is pushed by the third stopping block. The paper feeding roller is disposed on the paper feeding path. The scanning platform is disposed on the paper feeding path, wherein the paper feeding roller is located between the paper picking roller and the scanning platform.
In an embodiment of the present invention, the first ring-shape structure includes a first lantern ring and a second lantern ring. The first lantern ring rotatably covers the first shaft and has the second stopping block and a fifth stopping block. The second lantern ring rotatably covers the first shaft and has the third stopping block and a sixth stopping block, wherein the first lantern ring drives the second lantern ring to rotate while the sixth stopping block is pushed by the fifth stopping block.
In an embodiment of the present invention, the paper feeding module further includes a second shaft, a second ring-shape structure and a paper separating roller. The second shaft has a seventh stopping block. The second ring-shape structure rotatably covers the second shaft and has an eighth stopping block and a ninth stopping block, wherein the second shaft drives the second ring-shape structure to rotate while the eighth stopping block is pushed by the seventh stopping block. The paper separating roller is disposed on the paper feeding path and is located between the paper picking roller and the paper feeding roller, and rotatably covers the second shaft, wherein the paper separating roller has a tenth stopping block, and the second ring-shape structure drives the paper separating roller to rotate while the tenth stopping block is pushed by the ninth stopping block.
In an embodiment of the present invention, the second ring-shape structure includes a third lantern ring and a fourth lantern ring. The third lantern ring rotatably covers the second shaft and has the eighth stopping block and an eleventh stopping block. The fourth lantern ring rotatably covers the second shaft and has the ninth stopping block and a twelfth stopping block, wherein the third lantern ring drives the fourth lantern ring to rotate while the twelfth stopping block is pushed by the eleventh stopping block.
In an embodiment of the present invention, the paper feeding module further includes a first gear, a second gear and a gear set. The first gear is fixed to the first shaft. The second gear is fixed to the second shaft. The gear set is coupled between the first gear and the second gear.
In the present invention, the first shaft can drive a paper to move towards the paper feeding roller while the first ring-shape structure drives the paper picking roller to rotate. When the paper simultaneously contacts the paper picking roller and the paper feeding roller, the paper feeding roller with a relatively high rotating speed (compared to that of the first shaft) can dive the fourth stopping block of the paper picking roller to divorce from the third stopping block of the first ring-shape structure through the paper, so that the paper picking roller and the paper feeding roller may have a same tangential speed. Therefore, a problem that the paper is pulled by the paper picking roller and the paper feeding roller due to different tangential speeds of the paper picking roller and the paper feeding roller can be avoided, so that a moving speed of the paper is stable, and accordingly the scanning quality is improved.
In order to make the aforementioned and other features and advantages of the present invention comprehensible, several exemplary embodiments accompanied with figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
Reference will now be made in detail to the present preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
The first shaft 122 has a first stopping block 122a. The first ring-shape structure 124 rotatably covers the first shaft 122 and has a second stopping block 124a and a third stopping block 124b, wherein the first shaft 122 drives the first ring-shape structure 124 to rotate while the second stopping block 124a is pushed by the first stopping block 122a. The paper picking roller 126 rotatably covers the first shaft 122 and is located on the paper feeding path 112, and has a fourth stopping block 126a, wherein the first ring-shape structure 124 drives the paper picking roller 126 to rotate while the fourth stopping block 126a is pushed by the third stopping block 124b.
The paper feeding roller 128 is disposed on the paper feeding path 112. The scanning platform 130 is disposed on the paper feeding path 112, wherein the paper feeding roller 128 is located between the paper picking roller 126 and the scanning platform 130.
It should be noticed that when the scanning device 100 drives the paper 50 to simultaneously contact the paper feeding roller 128 and the paper picking roller 126 (shown in
Referring to
Next, referring to
Referring to
During the operation flow shown in
The paper separating roller 125 disposed on the paper feeding path 112 and located between the paper picking roller 126 and the paper feeding roller 128 can separate the papers through friction, so as to ensure the paper 50 fed to the paper feeding roller 128 is a single paper. Moreover, the second ring-shape structure 123 includes a third lantern ring 1232 and a fourth lantern ring 1234. The third lantern ring 1232 rotatably covers the second shaft 121 and has the eighth stopping block 123a and an eleventh stopping block 123c. The fourth lantern ring 1234 rotatably covers the second shaft 121 and has the ninth stopping block 123b and a twelfth stopping block 123d. The third lantern ring 1232 drives the fourth lantern ring 1234 to rotate while the twelfth stopping block 123d is pushed by the eleventh stopping block 123c.
It should be noticed that an operation flow and functions (which are referred to that the paper separating roller 125 can be driven by the paper feeding roller 128 and rotated in the same tangential speed as that of the paper feeding roller 128) of the second shaft 121, the second ring-shape structure 123 (the third lantern ring 1232 and the fourth lantern ring 1234) and the paper separating roller 125 are similar as that of the first shaft 122, the first ring-shape structure 124 (the first lantern ring 1242 and the second lantern ring 1244) and the paper picking roller 126, and therefore detailed descriptions thereof are not repeated.
In summary, the first shaft can drive a paper to move towards the paper feeding roller while the first ring-shape structure drives the paper picking roller to rotate. When the paper simultaneously contacts the paper picking roller and the paper feeding roller, the paper feeding roller with a relatively high rotating speed (compared to that of the first shaft) can dive the fourth stopping block of the paper picking roller to divorce from the third stopping block of the first ring-shape structure through the paper, so that the paper picking roller and the paper feeding roller may have a same tangential speed. Therefore, a problem that the paper is pulled by the paper picking roller and the paper feeding roller due to different tangential speeds of the paper picking roller and the paper feeding roller can be avoided, so that a moving speed of the paper is stable, and accordingly the scanning quality is improved. Moreover, the first ring-shape structure can be designed to be composed of the first lantern ring and the second lantern ring, so as to prolong a rotation time of the paper picking roller relative to the first shaft, so that the duration for the paper picking roller and the paper feeding roller having the same tangential speed is prolonged.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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98125091 | Jul 2009 | TW | national |