This non-provisional application claims priority under 35 U.S.C. ยง 119(a) to Patent Application No. 110113830 filed in Taiwan, R.O.C. on Apr. 16, 2021, the entire contents of which are hereby incorporated by reference.
An image scanning device is provided, especially an image scanning device that uses a single drive roller wheel to entrain a document to move.
Image scanning equipment is commonly used in various fields.
In addition,
In view of this, an embodiment of the present invention provides an image scanning device adapted to scan a document, where the image scanning device includes a casing, a paper feeding wheel, a transparent plate, a light bar, and an elastic support member.
The casing has a paper feeding channel in communication with an outlet and an inlet on a surface of the casing. The paper feeding wheel is disposed in the casing and is partially located in the paper feeding channel.
The transparent plate is disposed in the casing and at least partially located in the paper feeding wheel. The transparent plate includes a first surface and a second surface opposite to each other, where the first surface faces the paper feeding wheel. The document enters through the inlet and passes between the paper feeding wheel and the first surface. The light bar is located on the second surface of the transparent plate, where the light bar includes a substrate and a plurality of light-emitting elements, where the light-emitting elements are distributed on the substrate in an extension direction of the substrate, where a position at which the paper feeding wheel is tangent to the first surface defines a tangent position, and a position at which the light-emitting elements are projected onto the first surface in a normal direction of the first surface defines a scanning position, where a scanning spacing exists between the tangent position and the scanning position. One end of the elastic support member is fixed to the casing, and an other end of the elastic support member is supported by the transparent plate to provide a pushing force for pushing the light bar and the transparent plate toward the paper feeding wheel.
In the image scanning device described above, in an embodiment, the scanning spacing is less than 5 mm.
In the image scanning device described above, in an embodiment, the scanning spacing is in a range of 2 mm to 3 mm.
In the image scanning device described above, in an embodiment, the casing further includes a base, where the base includes a groove, the transparent plate covers an opening of the groove, the light bar and the elastic support member are located in the groove, and the elastic support member is connected to the light bar.
In the image scanning device described above, in an embodiment, the groove includes two extension walls extending from side walls of the groove and located above the light bar.
In the image scanning device described above, in an embodiment, the casing includes an upper casing portion and a lower casing portion, where one end of the upper casing portion is pivotally connected to the lower casing portion, the paper feeding wheel is located in the upper casing portion, the transparent plate, the light bar, and the elastic support member are located in the lower casing portion, and the upper casing portion is engaged with the lower casing portion to form the paper feeding channel.
The present invention also provides image scanning equipment according to an embodiment, including any image scanning device as described above and an office machine, and the image scanning device is mounted to the office machine.
In the above image scanning equipment, in an embodiment, the image scanning device is located on one side of the office machine, the inlet is located above the outlet, and a direction from the inlet towards the outlet is perpendicular to the ground.
In the above image scanning equipment, in an embodiment, the office machine includes two driven rollers and two driving rollers, where the two driven rollers are respectively located on two sides of the driving rollers and are tangent to the same plane as the driving rollers. The two driving rollers are respectively located on two sides of the transparent plate, and the two driving rollers are jointly tangent to a plane on which the first surface of the transparent plate is located.
The image scanning device of the embodiment of the present invention has a single drive shaft wheel (the paper feeding wheel), and a scanning spacing exists between the position at which the paper feeding wheel is tangent to the transparent plate and the position at which the light-emitting elements are projected onto the transparent plate in a forward direction. Therefore, during scanning, the document is moved by the paper feeding wheel and then scanned by the light bar. Through such a structure, the problem of dirt on the transparent plate after long-term use can be effectively solved, and can cause the document to be smooth without wrinkles during the scanning, to obtain clear images, thus effectively solving the problem of the related art.
Referring to
The image scanning device 1 is adapted to scan a document 2 (as shown in
When the image scanning device 1 is used, the document 2 is, for example, paper, which contains characters or patterns, and the document 2 enters through the inlet 11a and passes between the paper feeding wheel 12 and the first surface 131. The light bar 14 is located on the second surface 132 of the transparent plate 13 and is close to the outlet 11b. The light bar 14 includes a substrate 143 and a plurality of light-emitting elements 142, and the light-emitting element 142 is, for example, a light-emitting diode (LED). The plurality of light-emitting elements 142 are distributed on the substrate 143 in an extension direction of the substrate 143, where a position at which the paper feeding wheel 12 is tangent to the first surface 131 defines a tangent position P3 (that is, the tangent is located at a position of the first surface 131). A position at which the light-emitting elements 142 that are linearly arranged are projected onto the first surface 131 in a normal direction of the first surface 131 defines a scanning position P2 (that is, the position of the projection line), and a scanning spacing H exists between the tangent position P3 and the scanning position P2, as shown in
In an embodiment, the scanning spacing H is less than 5 mm. Preferably, the scanning spacing H is in a range of 2 mm to 3 mm.
One end of the elastic support member 15 is fixed to the casing 11, and an other end of the elastic support member 15 is supported by the transparent plate 13, so as to provide a pushing force F for pushing the light bar 14 and the transparent plate 13 toward the paper feeding wheel 12. In some embodiments, the elastic support member 15 is a spiral spring, while in some embodiments, there are a plurality of elastic support members 15.
As shown in
In addition, in this embodiment, the casing 11 further includes a base 113. The base 113 includes a groove 1131, the transparent plate 13 covers an opening 1132 of the groove 1131, the light bar 14 and the elastic support member 15 are located in the groove 1131, and the elastic support member 15 is connected to the light bar 14. In addition, the groove 1131 includes two extension walls 1131a extending from side walls of the groove 1131 and located above the light bar 14.
As described above, in some embodiments, the elastic support member 15 is directly connected to the light bar 14 to provide the pushing force F for pushing the light bar 14 and the transparent plate 13 toward the paper feeding wheel 12. However, in some embodiments, the elastic support member 15 is connected to a bottom wall of the groove 1131, and may also provide the pushing force F for pushing the light bar 14 and the transparent plate 13, so that the paper feeding channel 11c is narrow to optimize the scanning effect of the document 2.
The image scanning device of at least one embodiment of the present invention has a single drive roller (the paper feeding wheel), and a scanning spacing exists between the position at which the paper feeding wheel is tangent to the transparent plate and the position at which the light-emitting elements are projected onto the transparent plate in a forward direction. Therefore, during the scanning, the document is moved by the paper feeding wheel and then scanned by the light bar. Through such a structure, the problem of dirt on the transparent plate after long-term use can be effectively solved, and the document can be caused to be smooth without wrinkles during the scanning, to obtain clear images, thus effectively solving the problem of the related art. In addition, in an embodiment, the image scanning device is mounted to the office machine, so that the direction from the inlet towards the outlet is perpendicular to the ground, which is used for scanning in such a way. By gravity, the scanning can be made smoother.
Number | Date | Country | Kind |
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110113830 | Apr 2021 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
10841441 | Chen | Nov 2020 | B2 |
20040263921 | Iwago | Dec 2004 | A1 |
20080285093 | Sheng | Nov 2008 | A1 |
20090231643 | Tan | Sep 2009 | A1 |
20090284808 | Hamada | Nov 2009 | A1 |
20170264772 | Takahashi | Sep 2017 | A1 |
20220131994 | Hozono | Apr 2022 | A1 |
20220337715 | Chang | Oct 2022 | A1 |
Number | Date | Country |
---|---|---|
101043571 | Sep 2007 | CN |
200945876 | Nov 2009 | TW |
M405122 | Jun 2011 | TW |
201440483 | Oct 2014 | TW |
Number | Date | Country | |
---|---|---|---|
20220337715 A1 | Oct 2022 | US |