1. Field of the Invention
The present invention relates to a paper-stopped linkage mechanism. In particular, this invention relates to a paper-stopped linkage mechanism that is applied to a multi-function office machine and can stop the redundant paper.
2. Description of the Related Art
The office machines, such as the copy machine, the fax machine, the printer, and the scanner, are the necessaries in the office. They can enhance the working quality and efficiency. However, each office machine needs a space. It will be a problem for the user when the user's space is small. As the technology has been developed, a multi-function office machine is developed. All functions are integrated into one machine. The required space is reduced and the user's working efficiency is improved.
Reference is made to
However, the paper stopper mechanism 10a of the prior art is located at the lower side and uses the linkage principle to ascend and descend the paper stopper mechanism 10a, and the paper feeder mechanism 20a is located at the upper side. When the paper is fed, the paper feeder mechanism 20a descends and the blocking board 11a of the paper stopper mechanism 10a also descends due to the linkage 30a. In order to prevent another paper from being fed, the paper feeder mechanism 20a ascends and the blocking board 11a also ascends due to the linkage 30a. Therefore, both the paper stopper mechanism 10a and the paper feeder mechanism 20a move in the same direction. Because the paper stopper mechanism 10a and the paper feeder mechanism 20a are respectively located at the lower side and the upper side and are linked by the linkage 30a, the gear set 70a, and the clutch 80a, the paper stopper mechanism 10a cannot be driven immediately.
One particular aspect of the present invention is to provide a paper-stopped linkage mechanism. The paper stopper mechanism can be driven immediately.
The paper-stopped linkage mechanism is located at the upper cover of the office machine. The paper-stopped linkage mechanism includes a paper feeder mechanism movably located at the upper cover, a paper stopper mechanism movably located at the upper cover, and a linkage swingingly pivoted with the upper cover. The paper feeder mechanism has at least one paper-feeding roller. The paper-feeding roller is connected with a gear set. The linkage has a first linking portion and a second linking portion. The first linking portion is connected with the paper feeder mechanism. The second linking portion is connected with the paper stopper mechanism. The paper feeder mechanism and the paper stopper mechanism are linked by the linkage and move in the opposite directions.
The present invention has the following characteristics. Both the paper feeder mechanism and the paper stopper mechanism are located at the upper cover and are linked by a linkage. When the paper feeder mechanism descends to feed the paper, the blocking board immediately ascends due to the linkage. Thereby, the paper-feeding function is achieved. When the paper feeder mechanism ascends, the blocking board immediately descends to stop the paper due to the linkage. Both the paper feeder mechanism and the paper stopper mechanism move in the opposite directions. Because both the paper feeder mechanism and the paper stopper mechanism are located at the upper cover and are linked by the linkage, the paper stopper mechanism can be driven immediately.
For further understanding of the invention, reference is made to the following detailed description illustrating the embodiments and examples of the invention. The description is only for illustrating the invention and is not intended to be considered limiting of the scope of the claim.
The drawings included herein provide a further understanding of the invention. A brief introduction of the drawings is as follows:
Reference is made to
The paper feeder mechanism 2 is located the inner side of the upper cover 1 and is driven by a gear set 23 to ascend and descend. The paper feeder mechanism 2 is located at the upper cover and can move upwards and downwards. The paper feeder mechanism 2 has one frame 21 and two paper-feeding rollers 22 pivoted with the frame 21. The two paper-feeding rollers 22 are connected with the gear set 23 and the power from a power source, such as a motor (not shown in the figure), is transmitted to the two paper-feeding rollers 22 via the gear set 23. Therefore, the two paper-feeding rollers 22 are driven to feed the paper forwards. The paper feeder mechanism 2 is also driven by the gear set 23 to perform ascending and descending operations.
In this embodiment, the paper stopper mechanism 3 is a blocking board 31. The blocking board 31 fits in the sliding slot 112 of the ascending-descending portion 111 of the base 11 so that the blocking board 31 is installed at the base 11 of the upper cover 1 and can move upwards and downwards. When the blocking board 31 ascends, the paper-feeding path is opened. When the blocking board 31 descends, the paper-feeding path is blocked. The blocking board 31 has a through hole 311.
The linkage 4 has a pivot portion 41, a first linking portion 42 extending from one side of the pivot portion 41, and a second linking portion 43 extending from the other side of the pivot portion 41. In this embodiment, the first linking portion 42 has a diverged shape. The second linking portion 43 has a hooked shape. The linkage 4 uses the pivot portion 41 to pivot with the pivoting portion 113 of the base 11 so that the linkage is pivoted with the base 11 of the upper cover 1 and can swing. The first linking portion 42 of the linkage 4 is straddled on a linkage 24 located at one side of the frame 21 of the paper feeder mechanism 2 so that the first linking portion 42 of the linkage 4 is connected with the paper feeder mechanism 2. The second linking portion 43 of the linkage 4 hooks the through hole 311 of the blocking board 31 so that the second linking portion 43 of the linkage 4 is connected with the paper stopper mechanism. Thereby, the paper feeder mechanism 2 and the paper stopper mechanism 3 located at the upper cover 1 are linked by the linkage 4.
Reference is made to
Reference is made to
When the gear set 23 drives the paper feeder mechanism 2 to descend, the twisted spring 25 rotates in one direction to reduce the inner diameter and lock the shaft part 221 so that the paper-feeding rollers 22 rotate. At this time, the paper is fed due to the friction force of the robber of the paper-feeding rollers 22. When the gear set 23 rotates in the inverse direction to drive the paper feeder mechanism 2 to ascend, the convex block 232 of the clutching gear 231 pushes the traverse rod 251 of the twisted spring 25 so that the twisted spring 25 rotates in the inverse direction. The inner diameter of the twisted spring increases to loose the shaft part 221. Therefore, the paper-feeding rollers 22 cannot be rotated.
Both the paper feeder mechanism 2 and the paper stopper mechanism 3 are located at the upper cover 1 and are linked by the linkage 4. When the paper feeder mechanism 2 descends to feed the paper, the blocking board 31 immediately ascends due to the linkage 4. Thereby, the paper-feeding function is achieved. Alternatively, when the paper feeder mechanism 2 ascends, the blocking board 31 immediately descends to stop the paper due to the linkage 4. Both the paper feeder mechanism 2 and the paper stopper mechanism 3 move in the opposite directions. Because both the paper feeder mechanism 2 and the paper stopper mechanism 3 are located at the upper cover 1 and are linked by the linkage 4, the paper stopper mechanism 4 can be driven immediately.
Furthermore, the present invention also utilizes the predetermined interference with small distance between the twisted spring 25 and the shaft part 221 and the characteristic of the twisted spring 25. When the twisted spring 25 rotates in one direction to reduce the inner diameter and lock the shaft part 221, the paper-feeding rollers 22 are rotated to achieve the paper-feeding function. When the twisted spring 25 rotates in an inverse direction, the inner diameter of the twisted spring 25 increases to loose the shaft part 221 and the paper-feeding rollers 22 cannot be rotated. Therefore, the scanning quality is enhanced when the automatic paper-feeding mechanism feeds the paper to perform the scanning process.
The description above only illustrates specific embodiments and examples of the invention. The invention should therefore cover various modifications and variations made to the herein-described structure and operations of the invention, provided they fall within the scope of the invention as defined in the following appended claims.
Number | Name | Date | Kind |
---|---|---|---|
5141217 | Lim et al. | Aug 1992 | A |
6431541 | Kuo et al. | Aug 2002 | B2 |
6651972 | Hsiao et al. | Nov 2003 | B2 |
6991227 | Kim | Jan 2006 | B2 |
7530563 | Kuo | May 2009 | B2 |
20040071486 | Manabe et al. | Apr 2004 | A1 |
20070001374 | Lee | Jan 2007 | A1 |
Number | Date | Country | |
---|---|---|---|
20090194937 A1 | Aug 2009 | US |