DUPLEX SCANNING APPARATUS

Abstract
A duplex scanning apparatus includes a sheet feeding tray, a sheet pick-up roller and a sheet separation roller. The sheet feeding tray includes a first opening and a second opening. The sheet pick-up roller and the sheet separation roller are partially received in the first opening and the second opening of the sheet feeding tray, respectively, so that the sheet pick-up roller and the sheet separation roller are sustained against documents on the sheet feeding tray. For performing duplex scanning operations on the stack of paper sheets, the documents are successively scanned from the bottommost paper sheet to the uppermost paper sheet. As a consequence, the scanned documents are stacked in the discharging tray in the same order as that of the original stack.
Description

BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a schematic cross-sectional view of a conventional duplex scanning apparatus having a single scanning module; and



FIG. 2 is a schematic cross-sectional view of a duplex scanning apparatus according to a preferred embodiment of the present invention.





DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT

Referring to FIG. 2, a schematic cross-sectional view of a duplex scanning apparatus according to a preferred embodiment of the present invention is illustrated. The duplex scanning apparatus 200 as shown in FIG. 2 comprises a flatbed image scanning portion 201, a scanning module 202, a sheet feeding tray 204, a first discharging tray 205, a second discharging tray 206, a sheet pick-up roller 207, a sheet separation roller 208, a first transfer roller assembly 209, a second transfer roller assembly 210, a first discharging roller assembly 211, a second discharging roller assembly 215, a third discharging roller assembly 216, a feeding path 217, an input path 218, a first discharging path 219, a second discharging path 220, an inverting path 221, a frictional separation strip 222, a first discharge guiding rod 225, an inverting guiding rod 226 and a second discharge guiding rod 227. The sheet feeding tray 204 further includes a first opening 223 and a second opening 224. The sheet pick-up roller 207 and the sheet separation roller 208 are partially received in the first opening 223 and the second opening 224, respectively, so that the documents on the sheet feeding tray 204 are sustained against the sheet pick-up roller 207 and the sheet separation roller 208. The second discharging roller assembly 215 includes a driving roller 212 and an inverting follower roller 213. The third discharging roller assembly 216 includes the driving roller 212 and an discharging follower roller 214.


The first discharge guiding rod 225 is switched between a first position leading the document to the feeding path 217 and a second position leading the document to the first discharging path 219. The inverting guiding rod 226 is switched between a first position leading the document to the feeding path 217 and a second position leading the document to the inverting path 221. The second discharge guiding rod 227 is switched between a first position leading the document to the second discharging path 220 and a second position leading the document to the inverting path 221. The frictional separation strip 222 is responsible for offering a frictional force to transport the document. In addition, due to the frictional separation strip 222, only the document in direct contact with the sheet pick-up roller 207 and the sheet separation roller 208 is allowed to transport the feeding document into the input path 218, but the other documents are hindered from being transported to the input path 218.


As previously described, the conventional duplex scanning apparatus transports and scans the top paper sheet from the stack of paper sheets. In contrast, the duplex scanning apparatus of the present invention transports and scans the bottom paper sheet from the stack of paper sheets 230. That is, for performing duplex scanning operations on the stack of paper sheets, the documents are successively scanned from the bottommost paper sheet to the uppermost paper sheet. For each paper sheet, the bottom side thereof is firstly scanned and then the top side thereof is scanned.


Please refer to FIG. 2 again. Hereinafter, the procedure of performing a single-side scanning operation by the duplex scanning apparatus 200 is illustrated. First of all, the documents 230 to be scanned are placed on the sheet feeding tray 204 such that the sheet pick-up roller 207 and the sheet separation roller 208 are sustained against the documents 230. Then, the sheet pick-up roller 207 transports a first document 230 into the feeding path 217 through the input path 218. Then, the first transfer roller assembly 209 transports the document 230 to the scan region 203. When the document 230 is transported across the scan region 203, the scanning module 202 scans the document 230. Next, the first discharge guiding rod 225 is switched to the second position leading the document to the first discharging path 219, and the first discharging roller assembly 211 is rotated to transport the document 230 across the first discharging path 219 to the first discharging tray 205. Meanwhile, the bottom side of the first document 230 has implemented the single-side scanning operation. The remainder documents 230 on the sheet feeding tray 204 successively implement the single-side scanning operations identical to that for the first document 230. As a consequence, the documents 230 are stacked in the first discharging tray 205 in the same order as that of the original stack.


Please refer to FIG. 2 again. Hereinafter, the procedure of performing a duplex scanning operation by the duplex scanning apparatus 200 is illustrated. First of all, the documents 230 to be scanned are placed on the sheet feeding tray 204 such that the sheet pick-up roller 207 and the sheet separation roller 208 are sustained against the documents 230. By the sheet pick-up roller 207, the sheet separation roller 208 and the frictional separation strip 222, the first document 230 is transported into the feeding path 217 through the input path 218. Then, the first transfer roller assembly 209 transports the document 230 to the scan region 203. When the document 230 is transported across the scan region 203, the scanning module 202 scans a first side of the document 230. Next, the first discharge guiding rod 225 is maintained at the second position leading the document to the feeding path 217, and the first discharging path 219 is closed. Next, the second discharge guiding rod 227 is switched to second position leading the document 230 to the inverting path 221, and the second discharging path 220 is closed. Meanwhile, the second transfer roller assembly 210 transports the document 230 through the inverting path 221. Next, the inverting guiding rod 226 is switched to close the feeding path 217, and the driving roller 212 of the second discharging roller assembly 215 is rotated anti-clockwise to transport the document 230 to the second discharging tray 206. Meanwhile, the first side of the document 230 has been scanned.


After the majority of the document 230 has entered the second discharging tray 206, the inverting guiding rod 226 is switched to close the inverting path 221 and the driving roller 212 of the second discharging roller assembly 215 is rotated clockwise to transport the document 230 from the second discharging tray 206 to the feeding path 217. Then, the first transfer roller assembly 209 transports the document 230 into the scan region 203. When the document 230 is transported across the scan region 203, the scanning module 202 scans a second side of the document 230. The first discharge guiding rod 225 is maintained at the second position leading the document to the feeding path 217. The first discharging roller assembly 211 is rotated to transport the document 230 across the first feeding path 217. Next, the second discharge guiding rod 227 is switched to the first position leading the document 230 to second discharging path 220, and the second transfer roller assembly 210 transports the document 230 through the second discharging path 220. Next, the third discharging roller assembly 216 transports the document 230 to the second discharging tray 206. The remainder documents 230 on the sheet feeding tray 204 successively implement the duplex scanning operations identical to that for the first document 230. As a consequence, the documents 230 are stacked in the second discharging tray 206 in the same order as that of the original stack.


Especially, for performing duplex scanning operations on the stack of paper sheets, the documents are successively scanned from the bottommost paper sheet to the uppermost paper sheet. The frictional forces resulted from the document, the frictional separation strip and the roller should be elaborately controlled. It is preferred that the frictional force u3 between the document and the roller is greater than the frictional force u1 between the document and the frictional separation strip, and the frictional force u1 is greater than the frictional force u2 between the documents.


From the above description, when the duplex scanning apparatus of the present invention performs the duplex scanning operation, the document needs to pass through the scan region for two times. That is, the duplex scanning operation by the present invention can be referred as a two-pass scanning operation. In comparison with the conventional three-pass scanning operation, the number of transporting the document through the scan region is reduced. Consequently, the time period of performing the duplex scanning operation is shortened.


In addition to the function of discharging the document, the second discharging tray 206 is also served as an inverting region. As a consequence, the operative space for accommodating the inverting region as described in the prior art is saved, and the length and the overall volume thereof are reduced. Since the paths for transporting the documents are specially designed, the number of the rollers is reduced. As a consequence, the rollers have increased reliability and durability, so that the shelf life of the duplex scanning apparatus is extended. For example, the reliability of an A-type roller is 0.95 and the reliability of a B-type roller is 0.90. In a case that the duplex scanning apparatus has one A-type roller and four B-type rollers, the reliability of this duplex scanning apparatus is 0.623295 (=0.95×0.9×0.9×0.9×0.9). In another case that the duplex scanning apparatus has one A-type roller and one B-type roller, the reliability of this duplex scanning apparatus is 0.855 (=0.95×0.9). That is, as the number of the rollers is decreased, the reliability and the shelf life of the duplex scanning apparatus are increased. Moreover, since the number of the rollers is decreased, the duplex scanning apparatus is more cost-effective.


While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.

Claims
  • 1. A duplex scanning apparatus comprising: a flatbed image scanning portion including a scanning module for scanning a document in a scan region;a sheet feeding tray for placing therein said document to be scanned, wherein said sheet feeding tray includes a first opening and a second opening;a sheet pick-up roller partially received in said first opening of said sheet feeding tray to be sustained against said document;a sheet separation roller partially received in said second opening of said sheet feeding tray to be sustained against said document;a first discharging tray for supporting said document;a second discharging tray for supporting said document;a feeding path arranged between said second discharging tray and a second transfer roller assembly and passing through said scan region;an input path arranged between said sheet feeding tray and said feeding path;a first discharging path arranged between said feeding path and said first discharging tray;a first discharging roller assembly disposed at said feeding path and proximate said first discharging tray for continuously transporting said document in said feeding path or transporting said document into said first discharging path;an inverting path arranged between said second transfer roller assembly and said second discharging tray;a second discharging path disposed above said inverting path arranged and between said second transfer roller assembly and said second discharging tray;a second discharging roller assembly disposed at said inverting path and proximate said second discharging tray for transporting said document from said inverting path into said second discharging tray or transporting said document from said second discharging tray into said feeding path; anda third discharging roller assembly disposed at said second discharging path and proximate said second discharging tray for transporting said document to said second discharging tray.
  • 2. The duplex scanning apparatus according to claim 1 wherein said second discharging roller assembly comprises: a driving roller for transporting said document from said inverting path into said second discharging tray or transporting said document from said second discharging tray into said feeding path by changing the rotational direction thereof; andan inverting follower roller.
  • 3. The duplex scanning apparatus according to claim 2 wherein said third discharging roller assembly comprises said driving roller and an discharging follower roller.
  • 4. The duplex scanning apparatus according to claim 1 further comprising a first transfer roller assembly disposed at said feeding path and proximate said input path.
Priority Claims (1)
Number Date Country Kind
095129324 Aug 2006 TW national