1. Field of the Invention
The present invention relates to an optical scanning device, particularly to a design of scanning documents in epicyclic movement.
2. Background Description
Referring to
The circuit structures of both the known traditional platform style optical scanner and the innovation of the present invention mainly relates to a scanning device, which is able to link with a computer to process the output of the image signal; wherein the CCD (Charge Couple Device) in the image sensing unit senses to drive, via a built-in analog multiplexer, the analog signal is asynchronously output, next the CCD enlarging converter magnifies the image signal and offsets the direct current, afterward via a analog/digital converter, the asynchronous analog signal is converted into the storable digital image signal, finally the image signal is saved in memory buffer, and the position control device controls the mirror and the position of the lamp to scan the document waiting to be scanned. Briefly, the known optical scanning technique is: using CCD sensor to sense to drive, the analog signal is asynchronously output driven by a built-in analog multiplexer, the direct current is offset by a voltage converter in order to acquire the more precise waveform, next magnifying the image signal prevents the interruption, then the analog signal is converted into the digital image signal and saved into a memory buffer, position control device controls the mirror and the position of the lamp to scan the document waiting to be scanned.
As for mechanism structure, the scanning structure of the known traditional platform style scanner is a desktop optical scanning structure. The known desktop scanner takes CCD (Charge Couple Device) optical scanning device using cathode lamp for the light source as the main unit to scan the documents. Regarding the scanner nowadays, though the optical scanning unit generally called CIS (Contact Image Sensor) has replaced CCD, there still exist the space and usage limitation of the structure of the known traditional platform scanner, such as occupy too much the applicable space, need to be placed on table, inconvenient to be carried around and so on; therefore, the inventor proposed the present invention, the character of the present invention is right to improve the known traditional bulky voluminous platform style scanner's drawbacks of wasting the applicable space and inconvenient usage and storage. As shown in
In view of the drawbacks of the structure of the known traditional platform scanner stated above, the primary purpose of the present invention is to greatly reduce the occupied space while scanning with the structure of the curvilinear optical scanning. The dimension of the scanner unit is not restricted by the paper size anymore, for instance, a normal size scanner can not scan a letter size paper popular in Western in single time; it is a shortcoming of the typical scanning device in linear motion.
Especially for a common user, the applicable horizontal space on or under table is limited, the present invention is able to break the traditional styling of the scanner, so that the scanner unit can be vertically up extended; that is, the scanning motion is changed from linear to curvilinear in order to save the applicable space. In addition, because the curvilinear style scanner is much smaller, easy to be carried and effortless to be manufactured, the present invention also achieves the secondary purpose of the manufacturing cost down, convenient usage and easy storage.
Moreover, the special chain motion mechanism can be designed into the epicyclic or planetary style scanner to drive the optical sensing unit, thus, the scanner can also scan the articles with irregular curves, in particular to scan in circular motion of rolling on the circumference of the article's waist; furthermore, the present invention can perform the continuous or discontinuous multi-curve scanning.
It is the object to provide an optical scanning device, particularly to a design of scanning in planetary circular motion driven by a motor; wherein it only needs to start a motor built on an shaft in a roller, the optical scanner built on the roller scan in planetary circular motion driven by a brace, further the optical scanner's cathode lamp scanning enters from the opening outside the roller into a cylindrical document tunnel. The character of the present invention is primarily to improve the drawbacks of the known bulky voluminous platform style scanner, such as waste of the applicable space and the inconvenient usage, further to advance to the method of optical scanning in cylindrical structure, finally to accomplish the purposes of saving space, handy in use and easy storage.
The foregoing and other objects, aspects and advantages will be better understood from the following detailed description of a preferred embodiment of the invention with reference to the drawings, in which:
In order to provide a clear description and better understanding, charts/diagrams are not drawn in portion and relative scale. The size of some parts is also exaggerated compared in scale to other related parts. To be more concise, irrelative details are not drawn completely.
The present invention is mainly to improve the structure of the known traditional desktop optical scanning device.
As for
Additionally, the present invention proposed that in the image scanning unit 71 there are installed with: a scanning light source 81, a lens group 82 and an image sensor 83. The scanning light source 81 offers the light needed for scanning; the light beams passing thru the document stand 75 get onto the document then get reflected into the lens group; after the proper reflecting and focusing effect, the light beams get into the image sensor 83, so it generates the scanned image signal and outputs to the signal processor at back end (not shown in the drawing) for the following operations. Other than being installed in the image scanning unit as the present invention proposed, the scanning light source 81 can be installed in somewhere else, for example, on the shaft in synchronal motion. Furthermore, the lens group 82 can consist of numerous mirrors or lenses; and CCD (Charge Couple Device) can be installed inside of the image sensor 83.
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Although preferred embodiments of the present invention have been described in the forgoing description and illustrated in the accompanying drawings, it will be understood that the invention is not limited to the embodiments disclosed, but is capable of numerous rearrangements, modifications, and substituting of parts and elements without departing from the spirit and scope of the invention. Accordingly, the present invention is intended to encompass such rearrangements, modifications, and substitutions of parts and elements as fall within the scope of the appended claims.