The present invention relates generally to an optical image reading device and a method for adjusting the same, and more particularly to an optical image reading device, the amplification rate of which can accurately be adjusted without changing the original design, thereby achieving the effect of compensation and shrinkage of the image or object distances.
Conventional optical image reading devices, such as a charge couple device module (CCDM), changes the amplification rate by adjusting the position of the lens and the electro-optical transformer (electro-optical sensor). As shown in
However, if the amplification rate of the optical image reading device is adjusted by directly shifting the position of the lens 1a or the electro-optical sensor 2a, the modulation transfer function will also be affected, which renders the adjustment more complicated and time consuming.
In light of the above, the inventor of the present invention has devoted himself to the study of this problem, and developed a new optical image reading device that can solve the problem as set forth above.
The present invention is to provide an optical image reading device that has an adjustable amplification rate and a method for adjusting the same. The optical image reading device includes a transparent object being disposed within the object distance or the image distance. Since the refractive index of the transparent object is larger than that of the air, the compensation and shrinkage of the object or image distances can be achieved accurately without changing the position of the lens and the electro-optical sensor. The amplification rate of the optical image reading device is thus accurately adjusted.
In order to achieve the above and other objectives, the optical image reading device of the present invention scans the image of a scanned object. The optical image reading device includes a lens, an electro-optical device, and at least a transparent object. The distance between the lens and the scanned object defines the object distance, while the distance between the lens and the electro-optical device defines the image distance. The transparent object is disposed within the object distance or the image distance. Consequently, by changing the path of the scanning light through the transparent object, the required compensation or shrinkage of distance is achieved.
In order to achieve the above and other objectives, the amplification rate adjustment method includes the step of disposing at least a transparent object within the object distance that is defined by the distance between a lens and a scanned object, or within the image distance that is defined by the distance between a lens and an electro-optical element. Since the refractive index of the transparent object is larger than that of the air, the effect of compensation and shrinkage of the object distance or the image distance can be achieved.
In order to better understanding the features and technical contents of the present invention, the present invention is hereinafter described in detail by incorporating with the accompanying drawings. However, the accompanying drawings are only for the convenience of illustration and description, no limitation is intended thereto.
The present invention provides an optical image reading device having an adjustable amplification rate and method for adjusting the same. In the optical image reading device, at least a transparent object is inserted between the object distance or the image distance. Since the refractive index of the transparent object is larger than that of the air, the compensation, shrinkage of object or image distances can be achieved without changing the position of the lens and the electro-optical sensor. The amplification rate of the optical image reading device can thus be adjusted accurately.
As shown in
As shown in
D′=(D−X)+(X/I)
Therefore, by substituting the above numbers into the formula, one obtains the thickness X=3.04 mm. Thus, the required compensation distance of the optical image reading device is calculated from the amplification rate. According to the required compensation distance and the refractive index of the transparent object 3, the required thickness of the transparent object 3 is obtained, thereby achieving the required compensation.
As shown in
d′=(d−X)+(X/I)
Meanwhile, as shown in
Therefore, the amplification rate of the optical image reading device can be adjusted by either disposing the transparent object 3 within the object distance D or the image distance d, without adjusting the position of the lens 1 or the electro-optical device 2. This means that no substantial change of object distance D or image distance d is required. For this reason, the adjustment is quick and easy, and will not affect the modulation transfer function.
In summary, the present invention can indeed achieve the prospected purpose, and satisfies the novelty and non-obviousness requirement of the patent law, a grant of letters patent is thus respectively requested.
Since, any person having ordinary skill in the art may readily find various equivalent alterations or modifications in light of the features as disclosed above, it is appreciated that the scope of the present invention is defined in the following claims. Therefore, all such equivalent alterations or modifications without departing from the subject matter as set forth in the following claims is considered within the spirit and scope of the present invention.
This application is a divisional application of U.S. patent application Ser. No. 11/016,822, filed on Nov. 24, 2004.
Number | Date | Country | |
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Parent | 11016822 | Nov 2004 | US |
Child | 11620496 | Jan 2007 | US |