Energy storing sheet feeder
A sheet feeder includes a separation roller, a friction roller, a shaft and an energy storing element. The energy storing element stores energy when the friction roller is driven by the separation roller to rotate in the sheet-feeding direction and releases energy to make the friction roller rotate in a direction opposite to the sheet-feeding direction.
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1. Field of Invention
The invention relates to a sheet feeder, and more particularly to a sheet feeder, capable of storing energy.
2. Related Art
An automatic document feeder may be used in an image input/output apparatus, such as a scanner, a multi-function peripheral, a copier or even a printer, to feed documents or sheets one by one.
As shown in
As shown in
Thus, the conventional sheet feeder needs two power sources and one torque limiter, and the sliding friction states are often created between the friction roller, the torque limiter and the rotating shaft. Consequently, the manufacturing cost is high and the components tend to be worn to influence the subsequent sheet-separating function.
SUMMARY OF THE INVENTIONIt is therefore an object of the invention to provide an energy storing sheet feeder, wherein only one power source in conjunction with an energy storing element capable of storing and releasing energy are used to make the sheet-separating operation more reliable, and the cost of the sheet feeder and the wear between rollers can be reduced effectively.
To achieve the above-identified object, the invention provides an energy storing sheet feeder for feeding and separating a first sheet and a second sheet, which are stacked together. The sheet feeder includes a separation roller, a friction roller, a shaft and an energy storing element. The separation roller rotates in a sheet-feeding direction and driven by a driving device. The friction roller may be rotated by the separation roller. The shaft passes through the friction roller. The energy storing element stores energy when the friction roller is driven by the separation roller to rotate in the sheet-feeding direction and releases energy to make the friction roller rotate in a direction opposite to the sheet-feeding direction. The friction roller has a first forwarding state, a reversing state and a second forwarding state. In the first forwarding state of the friction roller, the separation roller rotates the friction roller to feed the first sheet alone or to feed the first sheet and the second sheet simultaneously, and the friction roller drives the energy storing element to make the energy storing element store the energy. In the reversing state of the friction roller, the energy storing element releases the energy to reverse the friction roller to push the second sheet away from a nip between the friction roller and the separation roller. In the second forwarding state of the friction roller, the separation roller drives the second/first sheet to make the second/first sheet rotate the friction roller and thus make the energy storing element store the energy.
According to the sheet feeder of the invention, in which the energy storage element is used to store the energy, the friction roller reverses when the energy storage element releases the energy when two sheets enter the nip between the friction roller and the separation roller. Thus, one of the sheets close to the friction roller may be ejected out of the passageway to prevent multiple sheets from being fed. It is to be noted that the energy storing element itself may have a clutch or be combined with a clutch so that the friction roller continues rotating when the energy storing element has stored the maximum energy.
Further scope of the applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
The present invention will be apparent from the following detailed description, which proceeds with reference to the accompanying drawings, wherein the same references relate to the same elements.
In order to make the energy storing element 40 store some energy during the initial setting process, the energy storing element 40 may be preloaded to store the predetermined energy. It is to be noted that when the energy storing element 40 has stored the maximum energy, no more energy can be stored in the energy storing element 40. However, the action of the energy storing element 40 would not impede the rotation of the friction roller 20 when a mechanism, such as a one-way clutch, is used.
The friction roller 20 has a first forwarding state, a reversing state and a second forwarding state. In the first forwarding state, as shown in
In the reversing state, that is, when the sheets S1 and S2 simultaneously enter a nip 60 between the friction roller 20 and the separation roller 10, as shown in
In the second forwarding state, as shown in
In addition, the energy storing sheet feeder may further include a spring or a force-applying mechanism 50 of a hydraulic device, which pushes the separation roller 10 against the friction roller 20. Alternatively, the weight of the separation roller 10 may be utilized to push the separation roller 10 against the friction roller 20. Such a design makes the feeder be adapted to the sheets with various thicknesses and immediately compensates for the worn separation roller or the worn friction roller.
According to the sheet feeder of the invention, no torque limiter has to be utilized, and the energy storing element is utilized to achieve the advantage of reducing the cost and the size effectively. Because only one single power source is used, the feeder can be assembled in a simpler manner. Because rolling friction states are created between the friction roller and the separation roller and between the friction roller and the sheet, the wear of the friction roller can be effectively reduced, and the lifetime of the friction roller may be thus lengthened.
While the invention has been described by way of example and in terms of a preferred embodiment, it is to be understood that the invention is not limited thereto. To the contrary, it is intended to cover various modifications. Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications.
Claims
1. An energy storing sheet feeder for feeding and separating a first sheet and a second sheet, which are stacked together, the sheet feeder comprising:
- a separation roller rotating in a sheet-feeding direction and driven by a driving device;
- a friction roller, which may be rotated by the separation roller;
- a shaft, which passes through the friction roller; and
- an energy storing element for storing energy when the friction roller is driven by the separation roller to rotate in the sheet-feeding direction and for releasing energy to make the friction roller rotate in a direction opposite to the sheet-feeding direction.
2. The sheet feeder according to claim 1, wherein the friction roller has a first forwarding state, a reversing state and a second forwarding state, wherein:
- in the first forwarding state, the separation roller rotates the friction roller to feed the first sheet alone or to feed the first sheet and the second sheet simultaneously, and the friction roller drives the energy storing element to make the energy storing element store the energy;
- in the reversing state, the energy storing element releases the energy to reverse the friction roller to push the second sheet away from a nip between the friction roller and the separation roller; and
- in the second forwarding state, the separation roller drives the second/first sheet to make the second/first sheet rotate the friction roller and thus make the energy storing element store the energy.
3. The sheet feeder according to claim 1, wherein the shaft moves relative to the rotating friction roller and the energy storing element is disposed between the shaft and the friction roller.
4. The sheet feeder according to claim 1, wherein the shaft is stationary relative to the rotating friction roller and the energy storing element is connected to the shaft.
5. The sheet feeder according to claim 1, wherein the energy storing element is a worm spring or a torsional spring.
6. The sheet feeder according to claim 5, wherein the energy storing element is preloaded to store predetermined energy in advance.
7. The sheet feeder according to claim 1, further comprising:
- a force-applying mechanism for pushing the separation roller against the friction roller.
8. The sheet feeder according to claim 7, wherein the energy storing element is a worm spring or a torsional spring.
9. The sheet feeder according to claim 8, wherein the energy storing element is preloaded to store predetermined energy in advance.
Type: Application
Filed: May 25, 2007
Publication Date: Dec 27, 2007
Applicant:
Inventor: Hsin Hong Chen (Jhunan Township)
Application Number: 11/802,873
International Classification: B65H 3/52 (20060101);