This application claims the benefit of Taiwan Patent Application No. 099139929, filed on Nov. 19, 2010, which is hereby incorporated by reference for all purposes as if fully set forth herein.
1. Field of Invention
The present invention relates to a backlight system of a Liquid Crystal Display (LCD), and more particularly to a backlight module driving system and a driving method thereof.
2. Related Art
As shown in
However, the screen data to be seen by the left-eye or the right-eye is written into a pixel unit of the display during the writing of the data. Since in fact, the backlight module continues acting during the writing of the data, and the shutter glasses are in a disabled state during the writing of the data, both the shutter glasses and the display do not present changes of the image into which the screen data is written. Therefore, the backlight module is in a useless power consumption state during most of the time, thus resulting in gratuitous waste of energy, increasing power consumption of an LCD panel, making a result of comparison between operating efficiency of the LCD panel, a life of a component, and actually consumed energy uneconomical, and increasing unnecessary power consumption cost.
Therefore, how to decrease power consumption of a display when the display presents a 3D image becomes a problem manufactures should contemplate.
The objective of the present invention is to provide a backlight system and a light source providing method, so as to decrease power consumption of a display by adjusting luminance of a backlight module during operation of presenting a 3D image.
Accordingly, the present invention is directed to a backlight module driving system, which is applied to an LCD. The system comprises a graphics processor, a timing controller, a backlight module, and a backlight driver.
The graphics processor is used to provide a 3D image signal. The timing controller is connected to the graphics processor, and is used to generate a Liquid Crystal (LC) driving control signal according to the 3D image signal, and generate a corresponding light adjusting signal according to a data writing time and a VBI time of the LC driving control signal. The backlight driver is connected to the backlight module and the timing controller, and is used to receive and analyze the light adjusting signal, so as to disable the backlight module during the data writing time and enable the backlight module during the VBI time.
Accordingly, the present invention provides a backlight module driving method, which is applied to an LCD. The method comprises the following steps. A timing controller generates an LC driving control signal according to a 3D image signal provided by a graphics processor, and generates a light adjusting signal according to a data writing time and a VBI time of the LC driving control signal. A backlight driver analyzes the light adjusting signal, so as to disable the backlight module during the data writing time and enable the backlight module during the VBI time.
Characteristics of the present invention are as follows. In the present invention, when a 3D image signal is displayed, a backlight module is controlled by a backlight driver to switch luminance. During data writing, the backlight module is disabled, or the luminance is decreased; and during a VBI, the backlight module is enabled, or the luminance is increased; so as to reduce actual power consumption and improve image quality when an LCD presents a 3D image screen, thus requiring less electricity and lower power consumption than that in the prior art. Therefore, the consumed power of an LCD panel is effectively decreased, life of components is elongated, actual energy consumption is decreased, and unnecessary power consumption cost is avoid.
The present invention will become more fully understood from the detailed description given herein below for illustration only, and thus are not limitative of the present invention, and wherein:
Preferred embodiments of the present invention are described below in detail with reference to the accompanying drawings.
Referring to
As shown in
The graphics processor 21 is used to provide a 3D image signal 41 for the timing controller 22 continuously. The timing controller 22 generates an LC driving control signal 42 according to the 3D image signal 41 that controls action of the LCD panel 25 and includes a scan signal and a screen data writing signal. The timing controller 22 further generates a corresponding light adjusting signal 43 according to a data writing time and a VBI time of the LC driving control signal 42, and the light adjusting signal 43 includes control information and configurations for controlling the backlight driver 23.
When or before transmitting the 3D image signal 41, the graphics processor 21 firstly enables the backlight driver 23 (that is, a backlight enabling line 211 is used to transmit a backlight enabling signal) to make the backlight driver 23 be in a standby state. When being enabled, the backlight driver 23 also firstly provides power for the backlight module 24 to make the backlight module 24 be in a standby state.
As shown in
As stated above, the timing controller 22 provides the light adjusting signal 43 for the backlight driver 23. After analyzing the light adjusting signal 43, the backlight driver 23 disables the backlight module 24 during a data writing time T1. It should be noted herein that the disabling the backlight module 24 refers to adjusting the luminance of light emitted by the backlight module 24, so that the luminance of the light source is adjusted to a minimum value, and power to the backlight module 24 is switched. Additionally, a VBI T2 follows the data writing time T1, and during the VBI T2 the timing controller 22 does not performs any action of screen update or writing. In this case, the backlight driver 23 enables the backlight module 24 during the VBI T2. It should be noted that, the enabling the backlight module 24 refers to adjusting the luminance of the light emitted by the backlight module 24, so that the luminance of the light source is adjusted to the original luminance before the backlight module 24 is disabled, preset luminance, or a highest value of the luminance.
According to
As shown in
Referring to
Many pixel units 253 arranged in intersecting columns and rows are disposed on the LCD panel 25. Herein from top to bottom, three test points are set, which are a first test point TP1, a second test point TP2, and a third test point TP3. According to
Referring to
A graphics processor 21 is used to provide a source image signal 41′, which may be a 2 dimensional (2D) image signal or a 3D image signal 41. When the signal detector 27 obtains the source image signal 41′, the signal detector 27 analyzes signal data included in the source image signal 41′, and calculates a time ratio of a VBI time to a sum of a data writing time and the VBI time, that is 100%×the VBI time/(the data writing time+the VBI time), which is a VBI value.
A judging value is stored in the signal detector 27. When the signal detector 27 judges that the above VBI value is greater than the judging value, the signal detector 27 produces a signal testing result indicating that the source image signal 41′ is the 3D image signal 41, and transmits the signal testing result together with the 3D image signal 41 to the timing controller 22.
The timing controller 22 may adjust the data writing time and the VBI time of an LC driving control signal 42 to comply with an LC driving mode in which an LCD panel 25 displays the 3D image signal 41. Then, the timing controller 22 enables a backlight processing mode of the 3D image signal 41 of the backlight driver 23 through the mode switching circuit 231, and provides the above light adjusting signal 43 for the backlight driver 23 through the pulse-width light adjusting circuitry 232, so that the backlight driver 23 switches luminance of the backlight module 24 according to the data writing time and the VBI time.
When the signal detector 27 judges that the above VBI value is not greater than a judging value, the signal detector 27 produces a signal testing result indicating that the source image signal 41′ is a 2D image signal, and transmits the signal testing result together with the 2D image signal to the timing controller 22.
The timing controller 22 may adjust the data writing time and the VBI time of the LC driving control signal 42 to comply with an LC driving mode in which the LCD panel 25 displays the 2D image signal. Then, the timing controller 22 enables a backlight processing mode of the 2D image signal of the backlight driver 23 through the mode switching circuit 231, and controls the backlight driver 23 to make the backlight module 24 emit light continuously.
The judging value used by the signal detector 27 is a specific value between VBI=32% (which is used for a 3D image) and VBI=10% (which is used for a 2D image), for example VBI=20%, but the present invention is not limited thereto, and values such as 15%, 25%, and 22% are all applicable. However, an update frequency of the 2D image signal is at least 60 Hz/screen or above, and the timing controller 22 enables the LCD panel 25 to display the screen according to the update frequency.
In addition, specification information of an LCD 2, such as resolution of the LCD 2, a scan frequency to be used for displaying a 2D image or a 3D image, is recorded in a memory unit 26. When the graphics processor 21 obtains a source image medium provided by a mainframe 1, the graphics processor 21 forms the 2D image signal or the 3D image signal 41 according to the above specification information. In addition, the judging value used by the signal detector 27 may also be recorded in the memory unit 26, and the judging value may be transferred to the signal detector 27 by the graphics processor 21.
Additionally, the backlight module 24 performs light switching between bright to dark repeatedly in a high speed, the time during which the backlight module 24 emits the light is very short, and a left-eye lens 31 and a right-eye lens 32 of shutter glasses 3 are enabled and disabled repeatedly, so that eyes of a user are blocked intermittently, and the eyes of the user cannot receive enough light in time, which makes the luminance of screen viewed by the user lower than the actual luminance of the screen. Therefore, when the graphics processor 21 provides the 3D image signal 41, the backlight driver 23 operates in the backlight processing mode of the 3D image signal 41, the backlight driver 23 provides high power for drive the backlight module 24, so as to increase the luminance of the backlight module 24 at the moment being enabled. So that with the eyes of the user being affected by the intermittent blocking and the high luminance of the light provided by the backlight module 24, the user can view the screen with suitable luminance. When the graphics processor 21 provides the 2D image signal, the backlight driver 23 operates in a backlight processing mode of the 2D image signal. That is to say, the backlight module 24 does not need to perform luminance switching, so that the backlight driver 23 only needs to provide preset operating power for drive the backlight module 24 normally.
Referring to
A timing controller generates an LC driving control signal according to a 3D image signal provided by a graphics processor, and generates a corresponding light adjusting signal according to a data writing time and a VBI time of the LC driving control signal (Step S110).
A backlight driver analyzes the light adjusting signal, so as to disable a backlight module during the data writing time, and enable the backlight module during the VBI time (Step S120).
Referring to
A signal detector obtains a source image signal provided by the graphics processor (Step S210).
The signal detector judges whether the source image signal is a 2D image signal or a 3D image signal (Step S220). In a detailed process of the step shown in
When it is judged that the time ratio of the VBI time to the sum of the data writing time and the VBI time corresponding to the source image signal 41′ is greater than the judging value, it is determined that the source image signal is a 3D image signal (Step S222).
When the signal detector 27 judges that the above VBI value is greater than the judging value, the signal detector 27 produces a signal testing result indicating that the source image signal 41′ is a 3D image signal 41, and transmits the signal testing result together with the 3D image signal 41 to the timing controller 22. Then, the procedure proceeds to Step S110.
When it is judged that the time ratio of the VBI time to the sum of the data writing time and the VBI time corresponding to the source image signal 41′ is smaller than the judging value, it is determined that the source image signal is a 2D image signal (Step S223).
When the source image signal 41′ is the 2D image signal, the signal detector 27 provides the signal testing result and the 2D image signal for the timing controller (Step S224).
The timing controller adjusts the data writing time and the VBI time of the LC driving control signal to comply with an LC driving mode in which an LCD panel displays the 2D image signal (Step S225).
In view of the above, implementation or embodiments of the technical solutions presented by the present invention to solve problems are described herein, which is not intended to limit the scope of implementation of the present invention. Equivalent modification and improvement in accordance with the claims of the present invention or made according to the claims of the present invention is covered by the claims of the present invention.
Number | Date | Country | Kind |
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099139929 | Nov 2010 | TW | national |