1. Field of the Invention
The present invention relates to a method and an apparatus for controlling a display device, especially to a method and an apparatus for displaying an image on an LCD device and controlling the backlight of the LCD device.
2. Description of the Prior Art
A contrast ratio is a key factor that determines the display quality of a display device, especially a liquid crystal display (LCD) device. The contrast ratio is affected by many factors such as the characteristics of the LCD panel, the quality of the image signal, the backlight that irradiates the LCD panel, and etc. People have been working so hard to improve the contrast ratio of the display device and some methods have been therefore disclosed. However, the conventional methods did not enhance the contrast ratio effectively.
It is therefore a primary objective of the claimed invention to provide a method and an apparatus for displaying an image on a display unit and controlling a backlight module which irradiates the display unit.
According to an embodiment of the claimed invention, a display apparatus is disclosed. The display apparatus includes a receiving circuit, an image processing circuit, a display unit, a luminance analysis circuit, a backlight module, and a backlight controller. The receiving circuit receives and processes an incoming signal to generate an image signal. The image processing circuit, which is coupled to the receiving circuit, processes the image signal and generates a driving signal. The display unit is coupled to the image processing unit and driven by the driving signal to display contents of the image signal. The luminance analysis circuit, which is coupled to the receiving circuit, analyzes the image signal and generates a luminance analysis result. The backlight module irradiates the display unit, and the backlight controller, which is coupled to the luminance analysis circuit and the backlight module, generates a control signal according to the luminance analysis result to control the backlight module.
According to another embodiment of the claimed invention, a control circuit for controlling a display unit and a backlight module, which irradiates the display unit, is disclosed. The control circuit includes an image processing circuit, a luminance analysis circuit, and a backlight controller. The image processing circuit receives and processes an image signal containing a plurality of image frames to be displayed on the display unit. The luminance analysis circuit receives the image signal and analyzes luminance values of the image signal to generate a luminance analysis result. The backlight controller, which is coupled to the luminance analysis circuit, generates a control signal to control the backlight module according to the luminance analysis result.
According to still another embodiment of the claimed invention, a method for displaying contents of an image signal on a display unit and controlling a backlight module utilized to irradiate the display unit according to an analysis of the image signal is disclosed. The method includes: processing the image signal and generating a driving signal to drive the display unit; displaying contents of the image signal; analyzing luminance values of the image signal to generate a luminance analysis result; and generating a control signal to control the backlight module according to the luminance analysis result.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Certain terms are used throughout the description and following claims to refer to particular components. As one skilled in the art will appreciate, electronic equipment manufacturers may refer to a component by different names. This document does not intend to distinguish between components that differ in name but not function. In the following description and in the claims, the terms “include” and “comprise” are used in an open-ended fashion, and thus should be interpreted to mean “include, but not limited to . . . ”. Also, the term “couple” is intended to mean either an indirect or direct electrical connection. Accordingly, if one device is coupled to another device, that connection may be through a direct electrical connection, or through an indirect electrical connection via other devices and connections.
Please refer to
The image signal is then transmitted to the control circuit 120. The control circuit 120 includes an image processing unit 122, a luminance analysis circuit 124, and a backlight controller 126. The image processing circuit 122 is coupled to receive the image signal and then performs operations on the image signal such as scaling, gamma correction, interpolation, filtering, etc, and outputs a driving signal to drive the display unit 130 such that the image frames of the image signal can therefore be shown on the display unit 130. The image signal is also received by the luminance analysis circuit 124. The luminance analysis circuit 124 collects the luminance value of each pixel of an image frame, and analyzes the luminance values to generate a luminance analysis result. This luminance analysis result stands for the luminance information or the brightness of the image frame. For example, a high luminance analysis result may represent a high brightness of an image frame.
The backlight controller 126 generates a control signal to control the backlight module 140 which irradiates the display unit 130. The backlight module 140 includes two MOSFET's Q1 and Q2, which respectively receive the control signal at the gate terminal. The backlight module 140 also includes a voltage transformer 142, a lamp 144, and a resistor 146. The voltage transformer 142 is connected to the two MOSFET's Q1, Q2, a voltage Vin and a ground point. The lamp 144 is connected between the voltage transformer 142 and the resistor 146, and irradiates the display unit 130.
The control signal generated by the backlight controller 126 is a PWM signal. The brightness of the lamp 144 is related to the duty cycle of the PWN signal; therefore, by adjusting the duty cycle of the PWM signal, the brightness of the lamp 144 can be changed. The backlight controller 126 generates the control signal according to the luminance analysis result. The detailed description of how the luminance analysis circuit 124 generates the luminance analysis result is illustrated below.
Please refer to
The luminance data is then calculated by the calculating circuit 220. The calculating circuit 220 calculates the number of pixels of each luminance level, i.e., the pixel numbers PN1 to PN8, or calculates the average luminance value of one image frame. For example, with respect to the exemplary luminance data shown in
Then the calculating circuit 220 generates a luminance index, which stands for the brightness feature of the image frame. In the embodiment, the pixel numbers of each luminance level, PN1 to PN8, or the average luminance value, avg_LV, can be chosen to represent the luminance index, L_index, which is further transmitted to the luminance index analyzing circuit 230.
The luminance index analyzing circuit 230 analyzes the luminance index to generate the luminance analysis result. The memory 240, which is coupled to the luminance index analyzing circuit 230, stores lookup tables corresponding to the luminance index. For different bases of luminance indexes, the luminance index analyzing circuit 230 refers to different lookup tables to generate the luminance analysis result. For example, the memory 240 may store three different lookup tables, corresponding respectively to the pixel number of the lowest luminance level PN1, the pixel number of the highest luminance level PN8, and the average luminance value avg_LV. The type of the luminance index taken into consideration can be determined by the user. In another embodiment, where the luminance index does not contain just a pixel number or the average luminance value; however on the contrary, it may contain a set of values consisting selectively of PN1 to PN8 and age_LV, the luminance index analyzing circuit 230 will refer to the lookup table according to the set of values. For example, if PN1 and avg_LV are selected to be the set of values to represent the luminance index, the luminance index analyzing circuit 230 refers to a lookup table according to PN1 and avg_LV.
The luminance analysis result is a voltage signal or a current signal. Referring back to
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Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
This application claims the benefit of U.S. Provisional application No. 60/825,411, filed Sep. 13, 2006, the subject matter of which is incorporated herein by reference.
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60825411 | Sep 2006 | US |