1. Field of the Invention
The invention relates to a document feeder, especially a duplex document feeder capable of inverting documents and feeding the documents to an image processing machine for dealing with both surfaces of the documents.
2. The Related Art
According to the progress of the image processing technology, many image processing machines are popularly used, such as printers, scanners, fax machines, copy machines, etc. A duplex document feeder capable of inverting documents is developed for cooperating with image processing machines described above for processing both surfaces of the documents.
A conventional duplex document feeder 900 is shown in
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The structure and operation of the conventional duplex document feeder 900 is complex. In is must to tune the friction between the elastic piece 9023 and the first driving gear 9020 for raising and putting down the plate 901 in the predetermined position. The conventional duplex document feeder 900 works incorrectly if the friction between the elastic piece 9023 and the first driving gear 9020 is abnormal.
An object of the present invention is to provide a duplex document feeder has simple structure for guiding a sheet to pass through the feeding path and the sheet inverting path for dealing with both surfaces of the sheet.
According to the present invention, the duplex document defines a feeding path and a sheet inverting path and has a frame with a bottom plate, a charging means, a feeding means, a sheet inverting means, a driving means and a guiding plate with elastic force. The charging means, the guiding plate and the feeding means are located along the feeding path. The feeding means and the sheet inverting means are located along the sheet inverting path.
The guiding plate blocks up the feeding path while the feeding path is empty. The charging means conveys a sheet into the feeding path and to press the guiding plate to leave from the feeding path. Therefore, the sheet may be conveyed through the feeding path and to the feeding means. The sheet is conveyed to an image processing machine by the feeding means for dealing with one surface of the sheet.
While the sheet is conveyed into the sheet inverting path, the guiding plate returns to block up the feeding path by elastic force thereof. So, the sheet may be conveyed through the sheet inverted path and to the image processing machine again for dealing with the other surface of the sheet. Therefore, the duplex document has a simple structure for guiding the sheet to pass through the feeding path and the sheet inverting path for dealing with both surfaces of the sheet.
The present invention will be apparent to those skilled in the art by reading the following description of a preferred embodiment thereof, with reference to the attached drawings, in which:
FIG, 2 shows a bottom view of the duplex document feeder according to the present invention;
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In this case, seen from one end to the other end of the feeding path 1, the charging means 6, the guiding plate 5 and the feeding means 8 are shown in turn. The sheet inverting path 2 forms as a cycle shape. In the sheet inverting path 2, the feeding means 8, the guiding plate 5 and the sheet inverting means 7 are shown in turn.
The frame 3 has a bottom plate 30, a front plate 31 obliquely extending upwards from the bottom plate 30, opposite side plates 32 connected to the bottom plate 30 and the front plate 31. In this case, the bottom plate 30 and the front plate 31 form an obtuse angle therebetween.
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Plurality of engaging portions 303 are formed on the bottom surface 302 of the bottom plate 30 and close to the oblique surface 301. The engaging portion 303 has a connecting portion 304, an engaging arm 305, and at least one bulge 306. The connecting portion 304 is projected from the bottom surface 302 of the bottom plate 30. The engaging arm 305 extends from a lower portion of the connecting portion 303 and towards the sheet inverting means 7. The bulge 306 is projected from the top of the engaging arm 305 and towards the bottom surface 302 of the bottom plate 30.
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The connecting portion 304 of the engaging portion 303 passes through the hole 52 of the guiding plate 5. The bulge 306 of the engaging portion 303 is against the level portion 51 of the guiding plate 5. In this case, the oblique portion 50 of the guiding plate 5 attaches the oblique surface 301 of the bottom plate 30 and extends toward the feeding means 8 along the exterior angle defined by the oblique surface 301 and the bottom surface 302, the level portion 51 of the guiding plate 5 attaches the bottom surface 302 of the bottom plate 30.
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Each first inverting roller 71 connects one of the second inverting rollers 72 and one of the third inverting rollers 73, wherein the second inverting rollers 72 and the third inverting rollers 73 are separated to each other. The inverting gear 74 is connected to one end of the inverting shaft 70 and meshed to one of the gears of the driver means 4.
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The sheet is conveyed along the feeding path 1 and through the front plate 31 and the bottom plate 30 of the frame 3 and to the guiding plate 5. The sheet presses the guiding plate 5 via the conveying force formed by the charging means 6. Because the sheet presses the guiding plate 5 and the guiding plate 5 is the elastic plate, the guiding plate 5 is bent downwards. Therefore, the sheet can be conveyed through the guiding plate 5 and toward the feeding means 8.
The first and second feeding rollers 80, 81 extract the sheet form the feeding path 1. The guiding plate 5 returns to bounce upwards along the exterior angle defined by the oblique surface 301 and the bottom surface 302 of the bottom plate 30 of the frame 3 while the sheet is depart from the charging means 6 and is stop pressing the guiding plate 5.
While the feeding means 8 conveys the sheet to the sheet inverting path 2, the pulse motor 40 of the driver means 4 drives the charging roller 60 of the charging means 6 to rotate in anti-clockwise direction. The other sheets located outside the feeding path 1 are therefore blocked from being fed into feeding path 1 by the charging roller 60 of the charging means 6. The guiding plate 5 is still in a bounce status and the sheet may he conveyed through the guiding plate 5 and to the sheet inverting means 7.
In this case, the pulse motor 40 of the driver means 4 drives the inverting gear 74 of the sheet inverting means 7 to rotate in clockwise direction. The sheet is conveyed into the sheet inverting means 7 and between the first inverting roller 71 and the second inverting roller 72. Then, the sheet is guided to be inverted and conveyed between the first inverting roller 71 and the third inverting roller 73. Then, the sheet inverting means 7 conveys the sheet to the feeding means 8. Therefore, the feeding means 8 extracts the sheet form the sheet inverting path 2.
As described aforesaid, the guiding plate 5 has a function as a switch arranged between the feeding path 1 and the sheet inverting path 2. While the sheet is not fed into the feeding path 1, the guiding plate 5 is as a switch and blocked up the feeding path 1. The guiding plate 5 is pressed by the sheet and then bent downwards. Therefore, the guiding plate 5 is shift out of the feeding path 1.
So, the sheet may be conveyed through the feeding path 1 and to the sheet inverting path 2. While the sheet is conveyed into the sheet inverting path 2, the guiding plate 5 returns to bounce upwards and block up the feeding path 1. So, the sheet may be conveyed through the sheet inverted path 2 Therefore, the duplex document feeder 100 has a simple structure for guiding the sheet to pass through the feeding path and the sheet inverting path.
Furthermore, the present invention is not limited to the embodiments described above; various additions, alterations and the like may be made within the scope of the present invention by a person skilled in the art. For example, respective embodiments may be appropriately combined.