1. Field of the Invention
The invention relates to a sheet-feeding apparatus and, more particularly, to a sheet-feeding apparatus equipped with a paper pressing mechanism.
2. Description of the Prior Art
As technology advances and develops, the sheet-feeding apparatuses, which are equipped with a sheet-feeding mechanism for feeding paper sheets into a paper path, (for example, machines like the scanner and printer) have become more widespread and popular. The sheet-feeding mechanism transports a paper sheet to and past a recording module (such as the image sensor for scanners and print head for printers) in order to produce scanned images or printed documents. If the sheet-feeding mechanism is not equipped with a special device for stabilizing the paper sheets on the paper tray, the single paper sheet being fed to the recording module may be misaligned and consequently the scanned image or the data on the printed document maybe skewed. The aforesaid phenomenon more often occurs on thin, soft or fluffy paper sheets, such as receipts and thermal papers.
Therefore, an objective of the invention is to provide a sheet-feeding apparatus equipped with a paper pressing mechanism, so as to solve the aforesaid problems.
According to an embodiment of the invention, a sheet-feeding apparatus comprises a passage, a sheet-feeding roller and a paper pressing mechanism. The sheet-feeding roller is disposed at an entrance of the passage. The paper pressing mechanism comprises a paper pressing device and a driving mechanism. The driving mechanism drives the paper pressing device to move towards and away from the sheet-feeding roller. The driving mechanism comprises a power source, a rotating shaft and an arm. The rotating shaft is connected to the power source. The arm is attached to the rotating shaft. As the rotating shaft rotates in a first direction, the arm actuates the paper pressing device to move away from the sheet-feeding roller. As the rotating shaft rotates in a second direction, the arm releases the paper pressing device, so the paper pressing device moves towards the sheet-feeding roller and presses a paper sheet upon the sheet-feeding roller.
By having the paper pressing mechanism in the sheet-feeding apparatus of the invention, problems like paper misalignment can be solved, no matter which type of paper is used.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Referring to
As shown in
In this embodiment, the paper pressing mechanism 14 comprises a paper pressing device 140 and a driving mechanism 142. The driving mechanism 142 drives the paper pressing device 140 to move towards and away from the sheet-feeding roller 12. The driving mechanism 142 comprises a power source 1420, a rotating shaft 1422, an arm 1424 and a worm drive 1426. The arm 1424 is attached to the rotating shaft 1422 and turns in synchronization with the rotating shaft 1422. The power source 1420, such as a motor, is used to drive the rotating shaft 1422 and power the movement of the paper pressing device 140. In this embodiment, the rotating shaft 1422 is connected to the power source 1420 via the worm drive 1426, with which the direction of transmission is not reversible (and always from the power source 1420 to the paper pressing device 140), even when the paper pressing device 140 encounters resistance larger than that it can absorb. The paper pressing device 140 comprises a movable holder 1400, a pressing member 1402 and two first resilient members 1404. The first resilient members 1404 and the pressing member 1402 are disposed at opposite ends of the movable holder 1400. Each first resilient member 1404 is, but not limited to, a compression spring, and the pressing member 1402 is a rotary member including, but not limited to, a rotating wheel or a roller.
As shown in
As shown in
When the scanning process is completed and no paper is placed on the sheet-feeding roller 12, a processor (or a controller) (not shown) of the sheet-feeding apparatus 1 controls the power source 1420 to drive the rotating shaft 1422 to rotate in a first direction A1. The first direction A1 is opposite to the second direction A2. When the power source 1420 drives the rotating shaft 1422 to rotate in the first direction A1, the rotating shaft 1422 drives the arm 1424 to turn in the first direction A1 so as to actuate the movable holder 1400 of the paper pressing device 140 to move away from the sheet-feeding roller 12, such that the paper pressing device 140 and the sheet-feeding roller 12 are spaced apart by the separation D1, as shown in
In this embodiment, the sheet-feeding apparatus 1 is further equipped with a paper sensor 18 for detecting whether a paper sheet is placed on the sheet-feeding roller 12, and the detection and non-detection of paper sheets by the paper sensor 18 trigger the driving mechanism 142. The paper sensor 18 may be an electronic optical sensor, a photo-interceptor or a lever-arm reed sensor, and is disposed near the sheet-feeding roller 12 in order to detect the presence of the paper sheet P accurately. Alternatively, the driving mechanism 142 may also be controlled manually.
When the sheet-feeding apparatus 1 is shutting down, the processor of the sheet-feeding apparatus 1 controls the power source 1420 to drive the rotating shaft 1422 to rotate in the second direction A2, such that the arm 1424 attached to the rotating shaft 1422 also turns in the second direction A2 and releases the movable holder 1400 of the paper pressing device 140. In the process, the first resilient member 1404 is being restored to its normal form, as shown in
Referring to
The paper pressing rod 22 is movably disposed opposite the paper tray 20. In this embodiment, the paper pressing rod 22 is installed in and guided by the channel track 26, where the paper pressing rod 22 can move forward and backward along the length of the channel track 26. The paper pressing rod 22 and the channel track 26 both are arc-shaped. In another embodiment, both of the paper pressing rod 22 and the channel track 26 may be linear. In other words, the shapes of the paper pressing rod 22 and the channel track 26 may vary according to practical applications and are not limited to the embodiment shown in the drawings herein. The second resilient member 24 is disposed in the channel track 26 and connected to an end of the paper pressing rod 22. In this embodiment, the second resilient member 24 may be, but not limited to, a compression spring. The paper pressing rod 22 has a toothed rack 220 and the rotating shaft 1422 has a cog wheel 1428. The cog wheel 1428 meshing with the toothed rack 220 drives the paper pressing rod 22 to move forward and backward relatively to the paper tray 20.
When the rotating shaft 1422 rotates, the rotating shaft 1422 drives not only the paper pressing device 140, but also the paper pressing rod 22. When the power source 1420 drives the rotating shaft 1422 to rotate in the first direction A1, the paper pressing rod 22 moves away from the paper tray 20 and is thereby spaced apart from the paper tray 20 by a separation D2. As shown in
As shown in
By having the paper pressing device 140 and the paper pressing rod 22, the invention can prevent tilting of the paper sheet P and ensure that the paper sheet P passing the image sensing module 30 is not skewed. Furthermore, a friction generated between the paper pressing rod 22 and the paper sheet P can correct the advancing direction of the paper sheet P.
Referring to
In comparison to the conventional art, the sheet-feeding apparatus of the invention utilizes the paper pressing mechanism to keep the paper sheet firmly pressing the sheet-feeding roller. Hence, the sheet-feeding roller could effectively transport the paper sheet in the destined direction, and the occurrence of paper misalignment during the paper feed would be avoided, no matter which type of paper is used. In addition, the paper pressing mechanism may also include a paper pressing rod for pinching the paper sheets with the supporting plate of the paper tray to prevent the tilting of the paper sheets.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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101221846 A | Nov 2012 | TW | national |
Number | Name | Date | Kind |
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6367795 | Matsuda et al. | Apr 2002 | B1 |
7357386 | Shikan et al. | Apr 2008 | B2 |
7621522 | Yasukawa et al. | Nov 2009 | B2 |
20130328261 | Cheng | Dec 2013 | A1 |
Number | Date | Country |
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09255167 | Sep 1997 | JP |
Number | Date | Country | |
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20140131939 A1 | May 2014 | US |