This application claims the benefit of Taiwan application Serial No 94123653, filed on Jul. 12, 2005, the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The invention relates in general to a scan system and a scanning method thereof, and more particularly to a scan system with multi-light sources and a scanning method thereof.
2. Description of the Related Art
Currently, the scanning of transparent document (positive film and negative film) is categorized according to whether the light source is movable or fixed. The two types of scanning are disclosed and their respective advantages and disadvantages are discussed below.
Referring to
Referring to
In terms of the scanning device 100a whose light source is fixed, despite the light is emitted via the light guide plate 102 is uniformed and parallel, the brightness of the light is weakened. In order to compensate the brightness of the light, the inputted voltage for driving the light source 101 needs to be increased.
In terms of the scanning device 100b whose light source is movable, the light source 101 and the optical module 102 move simultaneously, but a higher precision of mechanic control is required, leading to an increase in manufacturing cost. Moreover, the size of the optical module 103 is normally larger, hence becoming less practical.
It is therefore an object of the invention to provide a scan system with multi-light sources capable of providing uniformed brightness and high illuminating efficiency and a scanning method thereof.
The invention achieves the above-identified object by providing scan system with multi-light sources. The scan system is used for scanning a transparent document. The scan system includes a backlight module, an optical module and a control unit. The backlight module has several light sources spread over the backlight module. The transparent document is disposed between the backlight module and the optical module. The optical module is capable of moving with respect to the transparent document and the backlight module for capturing the image of the transparent document. The control unit is used for controlling the movement of the optical module and correspondingly controlling the backlight module to turn on at least parts of the light sources. When the optical module moves with respect to the transparent document to several positions at different time points, parts of the light sources corresponding to the positions are sequentially turned on. The light emitted by the light sources is projected into the optical module after passing through the transparent document.
The invention further achieves the above-identified object by providing a scanning method of transparent document. The transparent document is placed in the scan system The scan system includes a backlight module, an optical module and a control unit. The backlight module has several light sources, The control unit is used for controlling the optical module and the backlight module for enabling the optical module to receive parts of the light generated by the light sources. The scanning method includes the following steps. Firstly, the optical module is driven for enabling the optical module to move along one side of the transparent document Then, the movement of the optical module is calculated and a control signal is sent by the control unit. Next, the control signal is received by the backlight module. Lastly, parts of the light sources are turned on according to the control signal.
Other objects, features, and advantages of the invention will become apparent from the following detailed description of the preferred but non-limiting embodiments. The following description is made with reference to the accompanying drawings.
Referring to both
Referring to
The movement of the optical module 203 is driven by the step motor 202. By correctly calculating the lit-up time and correspondingly controlling the rotation speed or step number of the step motor 202, the light sources are turned on in turn, increasing the efficiency of illumination of and the uniformity of brightness of the scan system with multi-light sources 200. The distance of the movement of the optical module 203 is positively correlated with the steps of the step motor 202. The step numbers of the step motor 202 are determined by the number of pulses of a control signal controlling the step motor 202. The rotation speed of the step motor 202 can be adjusted by adjusting the number of pulses within a time unit. The theory and control method of scanning applied in the scan system with multi-light sources are disclosed below.
Referring to both
Referring to the curve 340c, curves illustrating the distribution of brightness of individual light source when the light sources are turned on sequentially are shown. The curve 340c is featured by the segment of the curve. For example, the segment i is convex in the middle but concave in both sides. The physical significance is that the position below the light sources 201a has the highest brightness, and that the farther away from the position below the light sources 201a, the lower the brightness will be consequently, and that the two sides have a non-uniformed distribution of brightness and are darker. Similarly, all the segments from segment i−2 to segment i+2 are the same, thus the continuous curve 340c with non-uniformed distribution of brightness is formed.
In order to resolve the problem of having non-uniformed distribution of brightness, the light sources are turned on sequentially. Referring to the curve 340b the curve 340b is obtained by overlapping the brightness curve of individual light source. That is, the curve 340b denotes the distribution of brightness with the light sources 201a-201f being turned on sequentially.
Suppose the position X2 of the optical module is below the segment i (the light sources 201c) when the optical module moves along the x-axis direction, the value of the corresponding brightness is A1. As the optical module continues to move towards the X direction, the brightness A1 diminishes, and the farther away from the position X2, the lower the brightness will be consequently. When the brightness is getting closer to a pre-determined value, such as A2 brightness for instance, wherein A2 is smaller than A1, the corresponding position of the optical module is X2a, and the light source (the light source 201d) corresponding to the segment i+1 will be turned on. That is, at the position of X2a, the brightness begins to be provided by the light sources 201c and 201d together As the optical module continues to move along the x-axis direction, the brightness increases gradually. As the brightness is increased to be close to the A2 brightness, the optical module corresponds to the position X2a′, and the light source (the light source 201c) corresponding to the segment i will be turned off. That is, at the position of X2a′, the brightness only needs to be provided by the light source 201d corresponding to the segment i+1 for the inadequate brightness to be compensated.
Similarly, whether the light source of a segment is turned on or not can be understood. As for the positions which have been scanned, the light sources of corresponding positions can be turned off without affecting then brightness distribution of the positions which have not been scanned yet. in the present embodiment, the time points of turning on the light sources can be calculated for enabling the brightness curve to approach the ideal curve 340a, which implies the distribution of brightness is near uniformed.
A scanning method is provided in the scan system with multi-light sources of the present embodiment. Referring to
Referring to
The way to turn on several light sources sequentially not only avoids having a large backlight module size if a movable type light source is adopted, but also avoid having a poor brightness if a fixed type light source is adopted. Hence, the scanning quality of the scan system is enhanced.
Despite the scan system with multi-light sources and the scanning method thereof of the invention are exemplified by the scanning of the transparent document, the scanning method of sequentially turning on several light sources is also applicable to the scanning of the reflective document. The difference is that when applied in the scanning of the reflective document, the backlight module and the optical module are disposed in the same side of the reflective document.
While the invention has been described by way of example and in terms of a preferred embodiment, it is to be understood that the invention is not limited thereto On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Date | Country | Kind |
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94123653 | Jul 2005 | TW | national |