The embodiments of the present invention relate to a three-dimensional glasses and a control chip thereof.
The three-dimensional (3D) stereoscopic display has become a major trend in the display field as the technology evolves. A 3D image viewed by viewer's eyes is indeed a combined image from a left-eye image and a right-eye image having a parallax, wherein the left-eye image is seen only by a left eye of the viewer and the right-eye image is seen only by his right eye. The 3D image is thus presented due to the visual persistence of the viewer's eyes.
Typically, a three-dimensional glasses is required for viewing a 3D image, for the glasses type 3D display technology.
A shutter type 3D glasses is one kind of conventional 3D glasses, with a structure as shown in
A current procedure of viewing a 3D image by using the shutter type 3D glasses is as follows.
A frequency transmitter transmits a signal to a voltage control chip at a frequency in synchronization with a refreshing frequency of a display viewed by a viewer, to control the voltage control chip for supplying a high level or a low level to the liquid crystal eyeglasses. By way of example, assuming both the first and second liquid crystal eyeglasses operate in the normal white mode, in the case of a refreshing frequency of 200 Hz for the display (that is, a displaying time for one image is 5 ms), the frequency transmitter transmits the signal to the voltage control chip at the timing of 5 ms by taking 0 ms as a beginning, and the voltage control chip supplies a high level to the first liquid crystal eyeglass upon receiving the signal, switching the first liquid crystal eyeglass to a light-blocking state, while the voltage control chip supplies a low level to the second liquid crystal eyeglass such that the second liquid crystal eyeglass is still in a light-transmitting state and allows light to pass; then, at the timing of 10 ms, the voltage control chip supplies a low level to the first liquid crystal eyeglass, switching it into the original normal white mode, and supplies a high level to the second liquid crystal eyeglass such that the second liquid crystal eyeglass is switched into a light-blocking state, and thus, at the same time, the viewer's eyes see the image only through one of the liquid crystal eyeglasses.
However, in the above mentioned glasses, the voltage control chip thereof is required to supply a low level and a high level at the same time, thereby requiring transmitting a large number of signals.
The embodiments of the present invention provide a 3D glasses capable of substantially decreasing the number of the signals required to be transmitted.
The present invention provides a 3D glasses, comprising: a normal black mode liquid crystal eyeglass; a normal white mode liquid crystal eyeglass; and a control chip, connected to both of the normal black mode liquid crystal eyeglass and the normal white mode liquid crystal eyeglass, wherein a voltage output terminal of the control chip simultaneously supplies a high level or a low level to the normal black mode liquid crystal eyeglass and the normal white mode liquid crystal eyeglass based on a predetermined high and low level switching frequency.
The pair of 3D glasses provided by the embodiments of the present invention comprises liquid crystal eyeglasses with different modes, such that the control chip only transmits one identical signal to both of the liquid crystal eyeglasses for controlling the mode switching of the two Liquid crystal eyeglasses. In such case, the number of the signals required to be transmitted is substantially decreased with the glasses in accordance with the embodiments of the present invention.
In order to clearly illustrate the technical solution of the embodiments of the invention, the drawings of the embodiments will be briefly described in the following; it is obvious that the described drawings are only related to some embodiments of the invention and thus are not limitative of the invention.
In order to make objects, technical details and advantages of the embodiments of the invention apparent, the technical solutions of the embodiment will be described in a clearly and fully understandable way in connection with the drawings related to the embodiments of the invention. It is obvious that the described embodiments are just a part but not all of the embodiments of the invention. Based on the described embodiments herein, those skilled in the art can obtain other embodiment(s), without any inventive work, which should be within the scope of the invention.
The embodiments of the present invention provides a 3D glasses comprising liquid crystal eyeglasses in different modes, such that the control chip is only required to transmit one same signal to both of the liquid crystal eyeglasses at the same time to control the mode switching of the two liquid crystal eyeglasses. Therefore, the 3D glasses in accordance with the embodiments of the present invention substantially decrease the number of the signals that needs to be transmitted.
A detailed description will be provided as below to explain a technical solution of the present invention.
As shown in
As shown in
Alternatively, the frequency transmitted 41 may supply a frequency signal directly to the control chip 42, the frequency receiving unit 51 of the control chip 42 receives the frequency signal transmitted by the frequency transmitter 41 and transmits a control signal for switching between high and low levels to the voltage output unit 52 based on the frequency signal so that a high level or a low level is inputted into the normal white mode liquid crystal eyeglass 23 and the normal black mode liquid crystal eyeglass 22.
The embodiments of the present invention provide a 3D glasses comprising liquid crystal eyeglasses in different modes, such that the control chip is only required to transmit one same signal to both of the liquid crystal eyeglasses at the same time to control the mode switching of the two liquid crystal eyeglasses. Therefore, the 3D glasses in accordance with the embodiments of the present invention substantially decreases the number of the signals required to be transmitted.
In order to decrease the manufacturing cost of a 3D eyeglasses, the second embodiment of the present invention provides another 3D eyeglasses. As shown in
As shown in
In the above embodiment, the normal black mode liquid crystal eyeglass is switched into a light-transmitting state when receiving a high level, and the normal black mode liquid crystal eyeglass remains in a light-blocking state when receiving a low level.
The normal white mode liquid crystal eyeglass is switched into a light-blocking state when receiving a high level and the normal white mode liquid crystal eyeglass remains in a light-transmitting when receiving a low level.
Alternatively, the frequency adjusting unit 61 is used to adjust the frequency thereof based on a predetermined frequency or a received refreshing frequency of the display, and generates and transmits a frequency signal to the frequency receiving unit based on the adjusted frequency. The frequency receiving unit 51 is used to transmit a control signal for switching between high and low levels to the voltage output unit 52 based on the received frequency signal. And the voltage output unit 52 supplies a high level or a low level to both of the normal white mode liquid crystal eyeglass 23 and the normal black mode liquid crystal eyeglass 22 concurrently through the voltage output terminal based on the received control signal.
Alternatively, the switching frequency between high and low levels is identical to the refreshing frequency of the display, in order to ensure a synchronization of an image seen through the 3D liquid crystal eyeglasses and an image displayed on the display.
The embodiments of the present invention provide a 3D glasses comprising liquid crystal eyeglasses in different modes, such that the control chip is only required to transmit one same signal to both of the liquid crystal eyeglasses at the same time to control the mode switching of the two liquid crystal eyeglasses. Therefore, the 3D glasses in accordance with the embodiments of the present invention substantially decreases the number of the signals required to be transmitted. Meanwhile, the control chip may receive the refreshing frequency of the display directly, or the operator may preset a frequency for the control chip, to decrease the manufacturing cost of the 3D glasses substantially.
The third embodiment of the present invention provides a control chip for a three-dimensional glasses with a normal black mode liquid crystal eyeglass and a normal white mode liquid crystal eyeglass, as shown in
Furthermore, as shown in
Alternatively, the frequency adjusting unit 61 of the control chip adjusts the frequency thereof based on a predetermined frequency or a refreshing frequency of a display, and generates and transmits a frequency signal based on the adjusted frequency to the frequency receiving unit 51. The frequency receiving unit 51 is used to transmit a control signal for switching between high and low levels to the voltage output unit based on the received frequency signal.
The control chip in accordance with the embodiment of the present invention may apply to 3D glasses, thereby substantially decreasing the manufacturing cost of the 3D glasses.
The embodiments of the present invention provide a 3D glasses comprising liquid crystal eyeglasses in different modes, such that the control chip is only required to transmit one same signal to both of the liquid crystal eyeglasses at the same time to control the mode switching of the two liquid crystal eyeglasses. Therefore, the 3D glasses in accordance with the embodiments of the present invention substantially decreases the number of the signals required to be transmitted. Meanwhile, the 3D glasses may comprise a control chip, such control chip may receive a refreshing frequency of a display directly, or an operator may preset a frequency for the control chip, to decrease the manufacturing cost of the 3D glasses substantially.
The embodiment of the invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to those skilled in the art are intended to be included within the scope of the following claims.
Number | Date | Country | Kind |
---|---|---|---|
201220066887.0 | Feb 2012 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/CN2013/071905 | 2/26/2013 | WO | 00 | 12/17/2013 |