1. Field of the Invention
The present invention relates to the technical field of setting adjustment of a panel and, more particularly, to a panel adjustment method applied in a factory production.
2. Description of Related Art
Thin film transistor liquid crystal displays (TFT LCDs) are the most rapid developing product after the semiconductor devices. However, for consideration of costs and material sources, LCD manufacturers do not insistently use the panels from the same supplier.
For a fast cost change in the global panel market, the LCD manufacturers are changing the panel suppliers frequently. Accordingly, the same type of LCDs may use two or more different types of panels from different factories. Since different types of panels have different features, LCDs on the production line require a calibration process to ensure that the same type of LCDs can have the same display feature and effect.
The calibration is performed on the contrast and brightness of an LCD as the internal elements are fixed. Thereby it obtains an optimal corresponding ratio and an optimal representation to an LCD frame. Typically, calibrating the “golden LCD” having the high definition which is then used as a standard for calibration of all the same type of LCDs requires a professional hardware engineer for two to four hours. The LCD manufacturers need a professional calibration to increase the entire display quality and ensure that all types of panels can have a same display effect, which is not satisfactory to the LCD manufacturers. Accordingly, due to the consideration of cost control, it is desirable to provide an improved calibration to mitigate and/or obviate the aforementioned problems.
The object of the present invention is to provide a panel adjustment method, which increases the display quality of an LCD and presents the same effect on all types of panels.
According to a feature of the invention, a panel adjustment method is provided, which is executed on a host to adjust settings of a panel connected to the host through a serial bus. The method includes the steps of:
According to another feature of the invention, a computer readable recording medium is provided, which loads a program for execution on a host to adjust settings of a panel connected to the host through a serial bus. The program includes: a first procedure, which determines whether the panel is supported by the host; a second procedure, which reads the settings of the panel from database of the host to accordingly set the panel when the panel is supported by the host, and further determines whether the panel is correctly set; a third procedure, which determines whether the panel is at a frame buffer mode when the panel is correctly set; a fourth procedure, which determines whether generating a header file is required when the panel is at the frame buffer mode; a fifth procedure, which places the settings and a panel name in an include file and stores the include file when generating the header file is required; and a sixth procedure, which) compiles the include file to thereby generate a binary file, and loads the binary file into the panel.
Other objects, advantages, and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
The panel adjustment method is implemented as a software program with a computer language and stored in a hard disk 170 or a flash drive 180.
As shown in
Conversely, when step S205 determines that the panel 120 is not supported by the host 110, step S215 is executed to further input the settings of the panel 120. In step S215, a panel specification field “Panel Spec”, an advanced setting field “Advanced Setting”, an output frequency field “Output Freq”, a horizontal display field “Display Horizontal” and a vertical display field “Display Vertical” are the essential input settings.
When the panel 120 is supported by the host 110, step S210 reads the settings of the panel 120 from the database of the host 110 to accordingly set the panel 120 and further determines whether the panel 120 is correctly set.
When the panel is not correctly set, step S215 is executed to further input the settings of the panel 120.
When the panel is correctly set, step S220 determines whether the panel 120 is at a frame buffer mode.
Step S220 is based on the size of memory (not shown) from the panel 120 to determine whether the panel 120 is at the frame buffer mode. When the size of the memory is greater than a threshold, it is determined that the panel 120 is at frame buffer mode, and otherwise it is determined that the panel 120 is at a bypass mode. When the memory of the panel 120 is essentially used as a frame buffer. However, only when the memory of the panel 120 is greater than the threshold, the memory is regarded as the frame buffer, and otherwise the memory is regarded as a bypass buffer in the bypass mode.
When the panel is at the frame buffer mode, step S225 determines whether to generate a header file (.h file) for change.
When generating the header file is not required in step S225, a button “Update Flash” of
When generating the header file is required, it indicates that the panel 120 to be recorded by the host 110 uses another panel, and in this case step S235 inputs an include file and a panel name. The settings and the panel name are placed in the include file, and the include file is stored. For example, the AUO32″ panel supplied by AU Optronics Corp. is changed into a CMO32″ panel supplied by CHIMEI Corp. Namely, the include file CM032.h and the panel name CMO32#1 is input in order to include the panel name CMO32#1 and associated settings in the include file CMO32.h.
Step S240 recompiles the include file to thereby generate a binary file, and step S270 loads the binary file into the panel.
When step S220 determines that the panel is at a bypass mode, the settings of the panel are computed, which is done by pressing the button “Start Bypass” of
Step S250 selects a bypass table file. Step S255 determines whether the bypass table file contains a setting field for the panel 120. The bypass table file has a filename extension “.h”.
In step S260, when step S255 determines that the bypass table file contains the setting field, the settings computed in step S245 is used to update the setting field of the bypass table file, and step S240 is executed.
In step S265, when step S255 determines that the bypass table file does not contain the setting field, an associated field is added in order to use the settings computed in step S245 to update the setting field of the bypass table file, and then step S240 is executed.
The method of the invention can be implemented with a computer language and stored in a computer readable medium which can be recognized and read by a microprocessor or in a product and device that contains the medium. The medium can be a hard disk, floppy, optical disk, ZIP, MO, RAM and so on. Since the method to update the operating system is completely disclosed as cited above, a person skilled in computer language can code the required software program with reference to this description, so a further detail is not described any more.
As cited, the invention concludes the parameters for different panels and computes the timing for the panels in program. When the panel 120 is at a frame buffer mode, a header file (.h) is produced and compiled to thereby produce a binary file, and the flash is directly updated to save the compiling time. When the panel 120 is at a bypass mode, the pixel clock is automatically computed to thereby adjust the settings Hsync and Vsync of the panel 120 to thereby reduce the time taken to calibrate the settings of the panel 120 by a professional hardware engineer and ensure that the same effect can be presented on all used panels. Thus, the picture quality of the LCD is entirely increased.
Although the present invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible, modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
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96146083 A | Dec 2007 | TW | national |
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