DE-SKEW MECHANISM
A de-skew mechanism includes a driving shaft installed on a frame of an image forming device and driven by a motor, an active roller installed on the driving shaft and driven by the driving shaft, and an idle roller driven by the active roller for driving a medium with the active roller. A nip is formed between the active roller and the idle roller. The de-skew mechanism further includes a correcting member installed on the driving shaft in a rotatable manner and located upstream of the nip for correcting skew of the medium in a correcting position, and a restoring member connected to the correcting member for loading torque to the correcting member so as to drive the connecting member from the correcting position to a releasing position where the medium pass therethrough.
1. Field of the Invention
The present invention relates to a de-skew mechanism, and more particularly, to a de-skew mechanism capable of correcting skew of a medium effectively and without damage.
2. Description of the Prior Art
When printing to paper with a fax machine, a printer, or a multi-function product, a paper-feeding mechanism is utilized for feeding paper one sheet at a time into machines so as to proceed to faxes, printouts, copies, and so on. For preventing skew images on print media, several methods are applied to get rid of skew feed of print media due to skew position or tolerance.
U.S. Pat. No. 6,011,948 discloses a de-skew mechanism applied to an image forming device. Please refer to
It is therefore a primary objective of the claimed invention to provide a de-skew mechanism capable of correcting skew of a medium effectively and without damage for solving the above-mentioned problem.
According to the claimed invention, a de-skew mechanism includes a driving shaft installed on a frame of an image forming device and driven by a motor, an active roller installed on the driving shaft and driven by the driving shaft, and an idle roller driven by the active roller for driving a medium with the active roller. A nip is formed between the active roller and the idle roller. The de-skew mechanism further includes a correcting member installed on the driving shaft in a rotatable manner and located upstream of the nip for correcting skew of the medium in a correcting position, and a restoring member connected to the correcting member for loading torque to the correcting member so as to drive the connecting member from the correcting position to a releasing position where the medium pass therethrough.
According to the claimed invention, the correcting member includes a connecting portion connected to the restoring member, and a correcting portion for blocking the medium so as to correct the skew of the medium.
According to the claimed invention, the correcting portion is a protrusion.
According to the claimed invention, a surface of the correcting portion for blocking the medium is a plane.
According to the claimed invention, the de-skew mechanism further includes a stopping member for stopping rotation of the restoring member.
According to the claimed invention, the stopping member is a blocker protruding from the frame of the image forming device.
According to the claimed invention, the restoring member is a weight.
According to the claimed invention, the weight is connected with the connecting portion integrally.
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.
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In this embodiment, a surface of the correcting portion 242 for blocking the medium M can be a plane for contacting with the medium M smoothly so as to correct the skew of the medium M easily.
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The medium M driven by the input roller 220 forms a curved loop during the conveying path 243 when pushing the correcting portion 242. Please refer to
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The torque loaded to the correcting member 244 by the restoring member 100 is increasing due to deviation from the correcting position of the correcting member 244 so that the torque drives the correcting member 244 to rotate from the releasing position to the correcting position for next correction.
When the correcting member 244 rotates from the releasing position to the correcting position, the correcting member 244 might rotate over the original correcting position. For preventing it, the stopping member 111 disposed in the rear of the restoring member 100 is utilized for stopping rotation of the restoring member 100 properly so that the correcting member 244 can return to the correcting position stably.
The de-skew mechanism of the present invention can be utilized in a paper-feeding mechanism of a printer, a fax, a multifunction product (MFP), and so on. The paper-feeding mechanism can be a single paper-feeding mechanism or a duplex paper-feeding mechanism. The medium can be a medium for forming images thereon, such as paper, sheet, a photograph, and so on.
In contrast to the prior art, the de-skew mechanism of the present invention is capable of correcting the skew of the medium effectively as the medium is conveyed and corrected simultaneously. Besides, the de-skew mechanism of the present invention is capable of conveying and correcting the medium without damage.
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.
Claims
1. A de-skew mechanism comprising:
- a driving shaft installed on a frame of an image forming device and driven by a motor;
- an active roller installed on the driving shaft and driven by the driving shaft;
- an idle roller driven by the active roller for driving a medium with the active roller, a nip being formed between the active roller and the idle roller;
- a correcting member installed on the driving shaft in a rotatable manner and located upstream of the nip for correcting skew of the medium in a correcting position; and
- a restoring member connected to the correcting member for loading torque to the correcting member so as to drive the connecting member from the correcting position to a releasing position where the medium pass therethrough.
2. The de-skew mechanism of claim 1 wherein the correcting member comprises a connecting portion connected to the restoring member, and a correcting portion for blocking the medium so as to correct the skew of the medium.
3. The de-skew mechanism of claim 2 wherein the correcting portion is a protrusion.
4. The de-skew mechanism of claim 2 wherein a surface of the correcting portion for blocking the medium is a plane.
5. The de-skew mechanism of claim 1 further comprising a stopping member for stopping rotation of the restoring member.
6. The de-skew mechanism of claim 5 wherein the stopping member is a blocker protruding from the frame of the image forming device.
7. The de-skew mechanism of claim 1 wherein the restoring member is a weight.
8. The de-skew mechanism of claim 2 wherein the restoring member is a weight.
9. The de-skew mechanism of claim 3 wherein the restoring member is a weight.
10. The de-skew mechanism of claim 4 wherein the restoring member is a weight.
11. The de-skew mechanism of claim 5 wherein the restoring member is a weight.
12. The de-skew mechanism of claim 6 wherein the restoring member is a weight.
13. The de-skew mechanism of claim 7 wherein the weight is connected with the connecting portion integrally.
14. The de-skew mechanism of claim 8 wherein the weight is connected with the connecting portion integrally.
15. The de-skew mechanism of claim 9 wherein the weight is connected with the connecting portion integrally.
16. The de-skew mechanism of claim 10 wherein the weight is connected with the connecting portion integrally.
17. The de-skew mechanism of claim 11 wherein the weight is connected with the connecting portion integrally.
18. The de-skew mechanism of claim 12 wherein the weight is connected with the connecting portion integrally.
Type: Application
Filed: May 27, 2008
Publication Date: Jul 30, 2009
Inventors: Chang-Lung Yu (Hsinchu City), Chen-Tsai Tsai (Hsinchu City), Hsueh-Chou Hsu (Hsinchu County), Tien-Ho Hsu (Hsinchu City)
Application Number: 12/127,772
International Classification: B65H 9/00 (20060101);