1. Field of Invention
The present invention relates to apparatus and method of luminance adjustment of plasma display panel. More particularly, the present invention relates to luminance adjustment method on maintaining original image gradation of plasma display panel.
2. Description of Related Art
Current display apparatus can be separated to two categories that one is using cathode ray tube, and another one is flat panel display. Because flat panel display is lighter and thinner than cathode ray tube display, the display has characteristics of no distortion of display image and no magnetic field interference, flat panel display replaces cathode ray tube display gradually and becomes hot product in the display market.
Usual flat panel displays in the market are liquid crystal display and plasma display panel etc. Technical principle of plasma display panel is using ultraviolet ray produced by inert gases in electric discharge to stimulate color fluorescent powder and then converted to visible light which human eye can see. The advantage of plasma display panel compared to liquid crystal display is that the panel can be made to a large size for a display screen, therefore it has a dedicated application market, in addition, plasma display panel has advantages of wider viewing angle and longer lifetime.
In conventional technology, plasma display panel usually uses the adjustment of gray level to adjust luminance as shown in
In considering the foregoing descriptions, the present invention provides a solution to maintain gradation of holistic image and increase power use efficiency.
An object of the present invention is to provide an apparatus and a method for luminance adjustment so that image gradation will not be sacrificed.
Another object of the present invention is to provide an apparatus and a method for luminance adjustment which can reduce consumption power while display luminance is decreasing.
The present invention provides an apparatus of luminance adjustment, suitable for use in a plasma display panel. This apparatus of luminance adjustment includes a luminance controller, a gray level shifter, and a power controller. The luminance controller is used to output a gray level shifting signal and a power adjustment signal. The gray level shifter is used to receive a first luminance video signal and the gray level shifting signal. After the first luminance video signal is adjusted on level shift, according to the gray level shifting signal, a gray level shifted video signal is outputted. The power controller is used to receive the gray level shifted video signal and the power adjustment signal. After the gray level shifted video signal is adjusted in power according to the power adjustment signal, a sub-field controlling signal is outputted.
According to a preferred embodiment of this invention, the shifting adjustment of the first luminance video signal based on the gray level shifted signal is a linear shifting adjustment.
According to a preferred embodiment of this invention, the shifting adjustment of the first luminance video signal based on the gray level shifted signal is a non-linear shifting adjustment.
According to a preferred embodiment of this invention, the power adjustment of the gray level shifted signal based on the power adjustment signal is used to adjust the power consumption to achieve the luminance adjustment.
According to another preferred embodiment of this invention, the power adjustment of the gray level shifting signal based on the power adjustment signal is used to implement the luminance adjustment by the adjusting a sustain pulse frequency.
According to another embodiment of this invention, the power controller includes a display ratio shifter and an automatic power controller. The display ratio shifter is used to receive the power adjustment signal and convert this signal to a display ratio shifting signal. The automatic power controller is coupled to the display ratio shifter to receive a first luminance video signal, and uses the display ratio shifting signal to adjust the power consumption and luminance while displaying the received first luminance video signal, and output a sub-filed controller signal.
According to foregoing embodiment, the automatic power controller in the embodiment decides the sustain pulse frequency of the image displaying based on the received display ratio shifting signal. During displaying, the higher the sustain pulse frequency is, the higher the corresponding power is.
According to foregoing embodiment, the automatic power controller in the embodiment decides the sustain pulse frequency of the image displaying based on the received display ratio shifting signal. When the sustain pulse frequency keeps the same, during displaying, the higher the display ratio is, the higher the corresponding power is.
According to further another embodiment, the invention further includes a sub-field processor and a plasma display module. The sub-field processor is coupled to the plasma display module, and receives the signal, which has been adjusted in luminance (power), to control the luminance display of the plasma display module.
According to another embodiment, the invention further includes a sensor coupled to the luminance controller, and a luminance control signal of the luminance controller is automatically controlled according to an environment luminance.
The invention provides a method of luminance adjustment, suitable for use in a plasma display panel. The method of luminance adjustment includes the following steps. First, a first luminance video signal and a gray level shifting signal are received. After the first luminance video signal is adjusted on linear shift or non-linear shift according to the gray level shifting signal, a video gray level shifting signal is outputted. Then, the power adjustment signal and the video gray level shifting signal are received. After the video gray level shifting signal is adjusted on power according to the power adjustment signal, the sub-field controlling signal and the sustain pulse frequency, which have been adjusted, are outputted.
According to an embodiment, the power adjustment of the video gray level shifting signal according to the power adjustment signal is adjusting the power consumption to achieve the luminance adjustment.
According to another embodiment, the power adjustment of the video gray level shifting signal according to the power adjustment signal is adjusting the sustain pulse frequency to achieve the luminance adjustment.
According to further another embodiment, the power adjustment signal can be adjusted by a manual adjustment or automatically adjusted by sensing the environment luminance.
Since the invention take the manner of changing he power curve, so that there is no significant change of the gray level range of the image gradation on luminance adjustment. Therefore, the image luminance can be adjusted while the gradation of image remains. When the power consumption of the displayer is at lower luminance, the power consumption is reduced, so as to meet the purpose of power saving.
In order to the make the aforementioned and other objects, features and advantages of the present invention comprehensible, a preferred embodiment accompanied with figures is 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.
The features of the embodiment for the invention will be explained by reference of drawings. The spirit and scope of this invention are not limit to these embodiments for explanation. It should be noticed that these drawings cannot be looked as a dedicated size or scale. In the scope of this invention, any structure and material described in the following text can be modified properly.
As shown in
As shown in
From the foregoing descriptions, during luminance adjustment, the sustain pulse frequency fs can be used as a base for adjusting the power consumption, so as to keep the image quality at different luminance when the luminance is adjusted.
Referring to
In
First, the luminance controller 100 receives an external control signal S1. At the mean time, a first luminance video signal S2 is input to the gray level shifter 200, and the luminance controller 100 outputs a gray level shifting signal S3 and a power adjustment signal S4. Later, the gray level shifting signal S3 is input to the gray level shifter 200, and it causes a video gray level shifted signal S5 is output after the first luminance video signal S2 is adjusted via linear or non-linear shifting adjustment. The video gray level shifted signal S5 and the power adjustment signal S4 are input to the power controller 300, and after the video gray level shifted signal S5 is adjusted according to the power adjustment signal S4, a sub-field controlling signal S6 is generated and is received by the sub-field processor 400. And then, a scanning information signal S7, needed for driving the plasma display module 500, is generated.
Internal components of the plasma display module 500 include a scan line driver 510, an address line driver 520 and a plasma display panel 530, wherein the scan line driver 510 and the address line driver 520 are used to drive each pixel unit circuit inside the plasma display panel 530.
Aforesaid control signal S1 can be used for luminance adjustment by manual operation or this signal can automatically change by environment luminance detected by a sensor. For example, in a preferred embodiment, user can adjust a slope for the luminance to gray level according to user's preference via a manual adjustment mode. As illustrated at
For example, in another preferred embodiment, if a sensor (not shown in drawing) is coupled to the luminance controller 100, in the condition that the sensor itself can be used to sense an environment luminance, under the automatic operation mode, the effect to keep the same image quality can also be obtained by the operation of changing the foregoing slope of the luminance to the gray level.
The display ratio shifter 310 receives the power adjustment signal S4 from the luminance controller 100, and then the curve of the power to the display ratio is shifted, according to the power adjustment signal S4. And, this information is input to the automatic power controller 320. The automatic power controller 320 converts the video gray level shifted signal S5 to a sub-field controlling signal S6, and inputs the signal S6, to the sub-field processor 400.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
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