The present application claims priority to Japanese Application No. P2001-185635 filed Jun. 1, 2001, which application is incorporated herein by reference to the extent permitted by law.
The present invention relates to a stereo picture recognition device and a method of displaying the stereo picture for recognizing, without sensing flicker, the stereo picture which is displayed by a time-sharing system.
As is seen in
As is seen in
Taking into account right-and-left parallax for the thus led respective right image and left image allows the viewer to sense (feel) stereoscopic about the picture.
As is seen in
As is seen in
This causes the viewer to sense flicker in a surrounding landscape, especially when the external light is bright, to thereby make the viewer tired. Moreover, when frequency of light transmitting through the liquid crystal shutter glasses 2 is close to frequency of an illumination (such as a fluorescent lamp and the like), the flicker is encouraged.
As is seen in
For reducing the flicker, the light attenuation filter 18 (ND filter) is added to the stereo picture recognition device in
It is therefore an object of the present invention to provide a stereo picture recognition device and a method of displaying the stereo picture, so that the viewer can be free from sensing any flicker even when the viewer views around the display surface.
It is another object of the present invention to provide the stereo picture recognition device and the method of displaying the stereo picture, so as to bring about improved brightness (more specifically, several times brighter than according to the earlier technology).
According to a first aspect of the present invention, there is provided a stereo picture recognition device which comprises a time-sharing picture display shutting means disposed between a display surface of a display device and a viewer. The time-sharing picture display shutting means has a function of shutting off only an area covered by a viewing angle which corresponds to a display area of the display device.
According to a second aspect of the present invention, there is provided a stereo picture recognition device which comprises a liquid crystal shutter portion for transmitting and shutting off a light which is emitted from a picture displayed on a display surface of a display device toward each of a right eye and a left eye of a viewer. The transmission and shutoff of the light is carried out substantially synchronously with a change in the picture displayed and is carried out alternately for the right eye and the left eye. The liquid crystal shutter portion comprises: a first polarization filter which is so disposed as to oppose the display surface of the display device; a pair of second polarization filters, each of which is disposed at a front portion of one of the right eye and the left eye of the viewer; and a liquid crystal sealing body disposed between the first polarization filter and the second polarization filters.
According to a third aspect of the present invention, there is provided a method of displaying a stereo picture. The method comprises: i) emitting a light from a picture toward each of a right eye and a left eye of a viewer, which picture is displayed on a display surface of a display device; ii) transmitting and shutting off the light toward each of the right eye and the left eye by means of a liquid crystal shutter portion substantially synchronously with a change in the picture displayed; and iii) leading the picture to each of the right eye and the left eye, in which the picture led to the right eye and the picture led to the left eye are different from each other. The transmission and shutoff of the light is carried out alternately for the right eye and the left eye. The liquid crystal shutter portion comprises: a first polarization filter which is so disposed as to oppose the display surface of the display device, a pair of second polarization filters, each of which is disposed at a front portion of one of the right eye and the left eye of the viewer, and a liquid crystal sealing body disposed between the first polarization filter and the second polarization filters.
The other objects and features of this invention will become understood from the following description with reference to the accompanying drawings.
a) is a waveform of a video signal,
b) is a time chart showing transmission period and shutoff period of a left liquid crystal shutter 2L, and
c) is a time chart showing transmission period and shutoff period of a right liquid crystal shutter 2R.
As is seen in
There is provided a CRT 1 (a stereo picture display), a polarization filter 21 (polarization converting means), and a pair of liquid crystal shutter glasses 22 for viewing a screen (picture plane) of the CRT 1. The CRT 1 in
With this constitution, it is only in the display area of the CRT 1 that the liquid crystal shutter glasses 22 function as a shutter. In other words, the liquid crystal shutter glasses 22 do not function as a shutter for a surround area. The principle of this is specifically described hereinafter referring to
As is seen in
The first linear polarization filter 31, the second linear polarization filter 32, and the liquid crystal sealing body 33 constitute a liquid crystal shutter which is a time-sharing picture display shutting means under the present invention.
In an area covered by a viewing angle A corresponding to the display surface of the CRT 1, the liquid crystal shutter acts as a shutter for the left eye 100L (right eye 100R as well) of the viewer 100, to thereby allow the viewer 100 to recognize the display of the CRT 1 as a stereo picture. On the other hand, in an area covered by a viewing angle B and a viewing angle C which are free from shutter function, the viewer 100 can view the surround area naturally without sensing any flicker.
Moreover, it is only the second linear polarization filter 32 that attenuates surround brightness. The second linear polarization filter 32 has transmission of about 50%, causing substantially no harmful effect on daily life.
The present invention is not limited to the linear polarization filter method in
As is seen in
There are also provided a pair of liquid crystal shutter glasses 45 for circular polarization. The liquid crystal shutter glasses 45 are constituted of a second linear polarization filter 46, a liquid crystal sealing body 47 (glass plate), and a second ¼ wavelength plate 48. The second linear polarization filter 46 is so disposed as to oppose the left eye 100L (right eye 100R as well) of the viewer 100. The liquid crystal sealing body 47 is disposed in the vicinity of the second linear polarization filter 46. The second ¼ wavelength plate 48 is disposed in the vicinity of the liquid crystal sealing body 47.
Light of the picture displayed on the display surface of the CRT 1 is polarized into a circular polarization 49 between an area defined by the second ¼ wavelength plate 48 of the liquid crystal shutter glasses 45, and thereafter is polarized into a linear polarization 50 between an area defined by the second ¼ wavelength plate 48 and the liquid crystal sealing body 47.
The circular polarization 49 is defined as follows: Light progressing in a Z-axis 49Z is shifted by ¼ wavelength in an X-axis 49X and also shifted by ¼ wavelength in a Y-axis 49Y different from the X-axis 49X.
Otherwise, the circular polarization 49 is defined as follows: Once the light is circularly polarized, the polarization surface rotates around the Z-axis 49Z. Therefore, the X-axis 49X and the Y-axis 49Y arbitrarily cause ¼ wavelength shift on each of the axes.
When the newly assumed X-axis 49X and Y-axis 49Y coincide with each other on an axis of the second ¼ wavelength plate 48, the light passing through the second ¼ wavelength plate 48 causes a wavelength shift of a multiple of ½ wavelength in the X-axis 49X and the Y-axis 49Y, to thereby cause the linear polarization 50. Thereafter, the liquid crystal sealing body 47 electrically controls rotation of the polarization surface so as to, then, allow the light pass through the second linear polarization filter 46. The above summarizes how light having the circular polarization 49 is controlled when the light passes through the liquid crystal shutter glasses 45.
In the above circular polarization filter method according to the second preferred embodiment in
According to the first preferred embodiment in
As is seen in
The light reflected from the optical modulation display device 60 is projected, by way of a projection lens 65, to a screen 66, to thereby display the picture. There is also provided a device display control circuit 67 in
As is seen in
The first polarization filter 71, the second polarization filter 73, and the liquid crystal sealing body 74 constitute a liquid crystal shutter 75.
Herein, the liquid crystal shutter 75 operates substantially in the same manner as the liquid crystal shutter (which is constituted of the first linear polarization filter 31, the second linear polarization filter 32, and the liquid crystal sealing body 33) in
As is seen in
The first polarization filter 81, the second polarization filter 84, the first ¼ wavelength plate 82, the second ¼ wavelength plate 86, and the liquid crystal sealing body 85 constitute a liquid crystal shutter 87.
Herein, the liquid crystal shutter 87 operates substantially in the same manner as the liquid crystal shutter (liquid crystal shutter glasses 45) in
As is seen in
As is seen in
Moreover, as is seen in
A right video signal 11R for the right eye 100R and a left video signal 11L for the left eye 100L are inputted into the device display control circuit 67 in
Within an area covered by the viewing angle corresponding to the display surface of the screen 66, each of the liquid crystal shutter 75 (
It is only the second polarization filter 73 in
According to the preferred embodiments above, the liquid crystal shutting means is fitted to the head portion of the viewer 100 as liquid crystal shutter glasses. Of the time-sharing picture display shutting means, the first polarization filter is fitted to the display surface of the display device. The present invention is, however, not limited to this.
More specifically, as is seen in
In
Allowing one of a support portion (supported to CRT 1), a bent portion and a head portion of the hold arm 101 to be movable enables the viewer 100 to view the display screen of the CRT 1 with the liquid crystal shutting means 102 disposed in a predetermined position.
Like in
The liquid crystal shutting means 102 in
In the case of using the optical modulation display device (such as those shown in
The means for holding the liquid crystal shutting means 102 is not limited to the hold arm 101. More specifically, the means for holding the liquid crystal means 12 can be disposed at a position other than the head of the viewer 100.
The entire contents of Japanese Patent Application No. 2001-166033 with a filing date of Jun. 1, 2001 is herein incorporated by reference.
Although the invention has been described above by reference to certain embodiments of the invention, the invention is not limited to the embodiments described above. Modifications and variations of the embodiments described above will occur to those skilled in the art in light of the above teachings.
The scope of the invention is defined with reference to the following claims.
Number | Date | Country | Kind |
---|---|---|---|
P2000-185635 | Jun 2000 | JP | national |
P2001-166033 | Jun 2001 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
4281341 | Byatt | Jul 1981 | A |
4792850 | Liptoh et al. | Dec 1988 | A |
5007715 | Verhulst | Apr 1991 | A |
5993004 | Moseley et al. | Nov 1999 | A |
6115177 | Vossler | Sep 2000 | A |
6252624 | Yuasa et al. | Jun 2001 | B1 |
6266106 | Murata et al. | Jul 2001 | B1 |
6278501 | Lin | Aug 2001 | B1 |
6348957 | Yamazaki et al. | Feb 2002 | B1 |
6359664 | Faris | Mar 2002 | B1 |
6456432 | Lazzaro et al. | Sep 2002 | B1 |
6510002 | Tsang | Jan 2003 | B1 |
Number | Date | Country | |
---|---|---|---|
20020044350 A1 | Apr 2002 | US |