The present invention relates to an image sensor, specifically, to a full spectrum recognition image sensor capable of reading and recognition image information for all of ultraviolet light, visible light and infrared light.
In the above image reading apparatus, light emitted from the light source 1 transmits through the light-transmitting plate 5, and is irradiated onto the original 10 outside. On the black area of text on the original 10, light is absorbed, and on other areas of white background for the original, almost 100% of the light is reflected. Then the reflected light passes through the glass plate 5, is collected by the lens 2, and is irradiated onto the photosensitive part 3 on the sensor substrate 4. The photosensitive part 3 is composed of many photosensitive pixels, and a driving circuit capable of photoelectrically converting light irradiated onto each photosensitive pixel and outputting signals. The received light, after being converted into electrical signals, is output outward via the driving circuit as image (text) information. The original is moved uninterruptedly, and thus the image (text) information recorded thereon is read out continuously.
There are the following problems in regard to the above image reading apparatus. When the reflected light information of the original is required to be read, both of the light source and the photosensitive part need to be configured to be in a state suited to read the reflected light. Thus at this time, information of exciting light in the original cannot be read. When information of exciting light is required to be read, the light source and the photosensitive part need to be configured to be in a state suited to read the exciting light. Thus at this time, the reflected light information cannot be read. When both reflected light information and exciting light information are required to be read and recognized, a plurality of different types of sensors need to be used. In result, the cost and volume of the image reading apparatus increase, and the subsequent processing section of data thereof is quite complex. These have a strong impact on the application field of the image sensor, and limit the development of the product.
The purpose of the present invention is to overcome the shortcomings in the prior art, and provide a full spectrum recognition image sensor capable of not only reading reflected light information but also reading exciting light information.
A full spectrum recognition image sensor comprises a sensor substrate, photosensitive parts set on the sensor substrate and arranged in a straight line, a lens set on an upper portion of the sensor substrate, a light source set beside the lens, and a framework capable of accommodating said sensor substrate, said lens and said light source, wherein a light-transmitting plate for carrying an original is set on an upper portion of the framework, the light source is a full spectrum light source capable of emitting light including ultraviolet light, visible light and infrared light, and the photosensitive parts on the sensor substrate consist of two parts, one part of which is a reflected light photosensitive part for receiving reflected light information generated by irradiating an original with the light source, and another part of which is an exciting light photosensitive part for receiving exciting light information generated by irradiating an original with the light source.
The visible light in the full spectrum light source in the present invention can be white light, also can be visible light with a single wavelength, or be visible light with a variety of different wavelengths. A separate control electrode is set for light of every wavelength in the spectrum light source. By applying a certain amount of voltage to the control electrode corresponding to light of this wavelength, light emission control can be independently performed on light of this wavelength.
The reflected light photosensitive part receives the reflected image information generated when an original is irradiated by visible light or infrared light. The exciting light photosensitive part receives exciting light image information generated when an original is irradiated by ultraviolet light.
In the present invention, an ultraviolet light filter film is coated on the surface of the exciting light photosensitive part, so as to obtain clear image information of exciting light.
The effect of the present invention is in that not only the reflected light information of an original but also the exciting light information of the original can be read, by using one sensor. This greatly improves the functions of the sensor, thus enabling the image sensor to be developed and applied better in the forgery-prevention detection field.
The present invention is described in detail below with reference to the drawings.
In the above image reading apparatus, the light source 1 is a full spectrum light source capable of emitting ultraviolet light 204, visible light 200 and infrared light 205, wherein the visible light is tricolor visible light (red light 201, green light 202 and blue light 203). The structure of the light source is shown in
Because when the original is irradiated by the ultraviolet light 204, in addition to the exciting light, some reflected light of the ultraviolet light 204 is generated simultaneously. Also, it is possible for the reflected light to pass through the lens to reach the exciting light photosensitive part, and interfere with exciting light signals. So the reflected light of the ultraviolet light 204 is required to be removed. The method adopted in the present embodiment is to coat an ultraviolet light filter film on the surface of the exciting light photosensitive part. This filter film can filter off ultraviolet light without affecting passing of exciting light whose component is visible light. The structure and processing method of the filter film are the same as those of the published China Utility Model Patent No. 2008202390350. The characteristic of the filter film is as shown in
In the present embodiment, the full spectrum light source is dividing structurally into two parts. The structural cross-sectional diagram thereof is as shown in
In the above embodiments, an ultraviolet light filter film is coated on the surface of the exciting light photosensitive part. However, a filter film or a filter plate with similar nature can be used in another location of the optical path between the exciting light photosensitive part and the reflected light of to the original.
Number | Date | Country | Kind |
---|---|---|---|
2009 1 0207369 | Oct 2009 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/CN2009/075313 | 12/4/2009 | WO | 00 | 9/6/2011 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2011/044739 | 4/21/2011 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5946017 | Carley | Aug 1999 | A |
6611716 | Chow et al. | Aug 2003 | B2 |
6720560 | Edgar et al. | Apr 2004 | B1 |
7092013 | Bacarella et al. | Aug 2006 | B2 |
7283658 | Maruya | Oct 2007 | B2 |
7349104 | Geng | Mar 2008 | B2 |
7535504 | Frame et al. | May 2009 | B2 |
8310737 | Nagao et al. | Nov 2012 | B2 |
20050078851 | Jones et al. | Apr 2005 | A1 |
Number | Date | Country |
---|---|---|
2537061 | Feb 2003 | CN |
1430770 | Jul 2003 | CN |
201323623 | Oct 2009 | CN |
2000-182032 | Jun 2000 | JP |
Entry |
---|
International Search Report of PCT/CN2009/075313, date of mailing Jul. 22, 2010. |
Number | Date | Country | |
---|---|---|---|
20120002250 A1 | Jan 2012 | US |