This application claims the priority benefit of Taiwan application serial no. 104130692, filed on Sep. 17, 2015. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
Field of the Invention
The invention relates to a display apparatus and a display driving method thereof, and particularly relates to a color electrophoretic display apparatus and a display driving method thereof.
Description of Related Art
Due to the influence of a manufacturing process and manufacturing materials, after reliability analysis of various temperatures performed on a color electrophoretic display (EPD) apparatus, by using a same low voltage to drive particles of a specific color, it is discovered that different driving results are obtained according to different test conditions. In order to resolve such problem, a driving waveform used for driving the particles of the specific color has to be specifically designed. However, due to an influence of a particle diffusion factor, such driving waveform probably causes a border with other color appeared between a boundary of the specific color and a black color. Spread of such border towards the back color portion is more severe, which results in a difference compared with an original image display.
The invention is directed to a color electrophoretic display apparatus and a display driving method thereof, which provides a good display quality.
The invention provides a color electrophoretic display apparatus including a display panel and a display driver. The display panel includes a plurality of pixels. The display driver is electrically connected to the display panel and configured to drive the pixels of the display panel to display one of a plurality of colors by using a plurality of driving signals having different signal waveforms. The driving signals include a first driving signal and a second driving signal. The display driver selects the first driving signal or the second driving signal according to image data, and drives at least one pixel of the display panel by using the first driving signal or the second driving signal to display one of a black color and a plurality of gray colors with different gray values in the plurality of colors.
In an embodiment of the invention, the first driving signal includes a first driving period. The second driving signal includes the first driving period and a second driving period. A signal waveform of the second driving signal in the first driving period is the same as a signal waveform of the first driving signal in the first driving period.
In an embodiment of the invention, the second driving signal is configured to driver a target pixel in the pixels. A signal waveform of the second driving signal in the second driving period is determined according to colors to be displayed by a plurality of pixels neighboring to the target pixel and a signal waveform of the first driving signal in a display period.
In an embodiment of the invention, the first driving period includes a display period. A signal waveform of the second driving signal in the second driving period is the same as a signal waveform of the first driving signal in the display period.
In an embodiment of the invention, the driving signals further include a third driving signal and a fourth driving signal. The display driver selects the third driving signal or the fourth driving signal according to the image data, and drives at least one pixel of the display panel by using the third driving signal or the fourth driving signal to display a first color and a second color in the plurality of colors, where the first color is a white color and the second color is one of a red color, a blue color and a green color.
In an embodiment of the invention, the display driver determines to select the first driving signal or the second driving signal to drive the target pixel according to a color to be displayed by a target pixel and colors to be displayed by a plurality of pixels neighboring to the target pixel.
In an embodiment of the invention, when the color to be displayed by the target pixel is selected from one of the black color and the gray colors with different gray values, and the colors to be displayed by the pixels neighboring to the target pixel include one of a red color, a blue color and a green color, the display driver selects the second driving signal to drive the target pixel.
In an embodiment of the invention, when the color to be displayed by the target pixel is selected from one of the black color and the gray colors with different gray values, and the colors to be displayed by the pixels neighboring to the target pixel do not include one of a red color, a blue color and a green color, the display driver selects the first driving signal to drive the target pixel.
The invention provides a display driving method for driving a plurality of pixels in a display panel of a color electrophoretic display apparatus to display an image. The display driving method includes following steps. Image data corresponding to the image is received, so as to output a plurality of driving signals having different signal waveforms according to the image data, where the driving signals include a first driving signal and a second driving signal. The first driving signal or the second driving signal is selected according to image data, and at least one pixel of the display panel is driven by using the first driving signal or the second driving signal to display one of a black color and a plurality of gray colors with different gray values.
In an embodiment of the invention, the first driving signal includes a first driving period. The second driving signal includes the first driving period and a second driving period. A signal waveform of the second driving signal in the first driving period is the same as a signal waveform of the first driving signal in the first driving period.
In an embodiment of the invention, the pixels include a target pixel, and the step of selecting the first driving signal or the second driving signal according to the image data, and driving the at least one pixel of the display panel by using the first driving signal or the second driving signal to display one of the black color and the gray colors with different gray values includes following steps. A signal waveform of the second driving signal in the second driving period is determined according to colors to be displayed by a plurality of pixels neighboring to the target pixel and a signal waveform of the first driving signal in a display period. The second driving signal is selected to drive the target pixel.
In an embodiment of the invention, the first driving period includes a display period. A signal waveform of the second driving signal in the second driving period is the same as a signal waveform of the first driving signal in the display period.
In an embodiment of the invention, the driving signals further include a third driving signal and a fourth driving signal. The display driving method further includes following steps. The third driving signal or the fourth driving signal is selected according to the image data, and at least one pixel of the display panel is driven by using the third driving signal or the fourth driving signal to display a first color and a second color in the plurality of colors, where the first color is a white color and the second color is one of a red color, a blue color and a green color.
In an embodiment of the invention, the pixels include a target pixel, and the step of selecting the first driving signal or the second driving signal according to the image data, and driving the at least one pixel of the display panel by using the first driving signal or the second driving signal to display one of the black color and the gray colors with different gray values includes following steps. It is determined to select the first driving signal or the second driving signal to drive the target pixel according to a color to be displayed by the target pixel and colors to be displayed by a plurality of pixels neighboring to the target pixel.
In an embodiment of the invention, the step of selecting the first driving signal or the second driving signal according to the image data, and driving the at least one pixel of the display panel by using the first driving signal or the second driving signal to display one of the black color and the gray colors with different gray values includes following steps. When the color to be displayed by the target pixel is selected from one of the black color and the gray colors with different gray values, and the colors to be displayed by the pixels neighboring to the target pixel include one of a red color, a blue color and a green color, the second driving signal is selected to drive the target pixel.
In an embodiment of the invention, the step of selecting the first driving signal or the second driving signal according to the image data, and driving the at least one pixel of the display panel by using the first driving signal or the second driving signal to display one of the black color and the gray colors with different gray values includes following steps. When the color to be displayed by the target pixel is selected from one of the black color and the gray colors with different gray values, and the colors to be displayed by the pixels neighboring to the target pixel do not include one of a red color, a blue color and a green color, the first driving signal is selected to drive the target pixel.
According to the above descriptions, in the exemplary embodiments of the invention, the display driver selects different driving signals according to the image data, and drives the pixels of the display panel to display one of the black color and the gray colors with different gray values, so as to provide a good display quality.
In order to make the aforementioned and other features and advantages of the invention comprehensible, several exemplary embodiments accompanied with figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
A plurality of embodiments are provided below to describe the invention, though the invention is not limited to the provided embodiments, and the provided embodiments can be suitably combined. A term “couple” used in the full text of the disclosure (including the claims) refers to any direct and indirect connections. For example, if a first device is described to be coupled to a second device, it is interpreted as that the first device is directly coupled to the second device, or the first device is indirectly coupled to the second device through other devices or connection means. Moreover, a terminal “signal” may refer to at least one current, voltage, charge, temperature, data, electromagnetic wave or any other one or a plurality of signals. A term “color” may include a black color, a gray color, a white color or other colors, and the other colors may include but are not limited a red color, a green color or a blue color.
In the present embodiment, the display driver 110 respectively drives corresponding pixels in the display panel 120 by using the first driving signal DS1 and the second driving signal DS2 having different signal waveforms. The first driving signal DS1 and the second driving signal DS2 respectively include a first driving period T1 and a second driving period T2. The first driving period T1 includes a non-display period TN and a display period TD. In the non-display period TN, the first driving signal DS1 and the second driving signal DS2 are respectively used for driving the display panel 120, and signal waveforms thereof are adapted to perform a direct current (DC) balance operation and a refresh operation to the pixels therein, such that each of the pixels may maintain an initial state and clear a residual previous image. In the present embodiment, the DC balance operation, for example, refers to counteract driving energy to make particles in the solution to maintain the initial state, so as to remove the influence of the time-varying solution viscosity on particle driving. The refresh operation, for example, refers to clear a previous image, so as to remove a blur phenomenon. Moreover, in the present embodiment, the signal waveforms of the first driving signal DS1 and the second driving signal DS2 in the non-display period TN are not limited to that shown in
In the present embodiment, in the first driving period T1, the first driving signal DS1 and the second driving signal DS2 have the same signal waveform, and are respectively used for driving the pixels to display colors corresponding to the signal waveforms, for example, gray colors or the black color. The gray colors include gray colors with different gray values. In the second driving period T2, the second driving signal DS2 further drives the corresponding pixel through an extra signal waveform, so as to compensate a color distortion of the corresponding pixel generated due to the influence of the neighboring pixels.
In the present embodiment, the signal waveform of the second driving signal DS2 in the second driving period T2 is the same to the signal waveform of the second driving signal DS2 in the display period TD of the first driving period T1, though the invention is not limited thereto. In an embodiment, a width of the signal waveform of the second driving signal DS2 in the second driving period T2 can be greater than or smaller than that of the signal waveform of the second driving signal DS2 in the display period TD of the first driving period T1, and a strength thereof can be greater than or smaller than that of the signal waveform of the second driving signal DS2 in the display period TD of the first driving period T1. The signal waveform of the second driving signal DS2 in the second driving period T1 can be adjusted according to an actual design requirement, which is not limited by the invention.
To be specific, when the display driver 110 drives the pixels in the display panel 120 by using the first driving signal DS1, since colors displayed by a part of the pixels are probably different to the colors to be originally displayed by the part of pixels due to an influence of a particle diffusion driving factor of the neighboring pixels or an influence of other factor that causes incorrect driving of the pixels, the pixels present a color distortion, for example, in a displayed image, a border of other color is appeared in a range of a specific region. Therefore, in the present embodiment, the display driver 110 may drive the pixels occurring the phenomenon of color distortion by using the second driving signal DS2 according to the image data DD of the colors displayed by each of the pixels in the display panel 120, so as to compensate the pixels occurring the phenomenon of color distortion, such that the pixels may correctly display the colors to be displayed. Namely, the display driver 110 selects the first driving signal DS1 or the second driving signal DS2 according to the image data DD to drive the pixels of the display panel 120 to display a gray color or the black color. For example, as shown in
On the other hand, as shown in
In the present embodiment, the signal waveforms of the third driving signal DS3 and the fourth driving signal DS4 in the non-display period TN are the same as that of the first driving signal DS1 and the second driving signal DS2, and are respectively adapted to perform the DC balance operation and the refresh operation to the pixels. Then, in the display period TD, the third driving signal DS3 and the fourth driving signal DS4 have different signal waveforms, and are respectively used for driving the corresponding pixels to display the white color and other color, for example, the red color. Therefore, in the present embodiment, the display driver 110 selects the third driving signal DS3 or the fourth driving signal DS4 according to the image data DD, and drives the pixels of the display panel 120 to display the white color or the red color.
A driving method that the display driver 110 selects the first driving signal DS1 or the second driving signal DS2 to drive a target pixel to display the black color or the gray color is described below.
In the present embodiment, as shown in
To be specific, in the embodiment of
In the embodiment of
In other words, in the embodiments of
To be specific, in the embodiment of
Moreover, enough instructions and recommendations of the display driving method of the color electrophoretic display apparatus can be learned from the descriptions of the embodiments of
In summary, in the exemplary embodiments of the invention, the display driver selects the first driving signal or the second driving signal to drive the target pixel according to the color to be displayed by the target pixel and the colors to be displayed by the pixels neighboring to the target pixels. If the color to be displayed by the target pixel is the gray color or the black color, and the colors to be displayed by the pixels neighboring to the target pixel includes one of the red color, the blue color and the green color, the display driver selects the second driving signal to drive the target pixel, so as to provide a good display quality.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
---|---|---|---|
104130692 | Sep 2015 | TW | national |