WO2017201943A1 - 显示屏驱动方法及装置 - Google Patents
显示屏驱动方法及装置 Download PDFInfo
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- WO2017201943A1 WO2017201943A1 PCT/CN2016/101552 CN2016101552W WO2017201943A1 WO 2017201943 A1 WO2017201943 A1 WO 2017201943A1 CN 2016101552 W CN2016101552 W CN 2016101552W WO 2017201943 A1 WO2017201943 A1 WO 2017201943A1
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G3/00—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
- G09G3/20—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G3/00—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
- G09G3/20—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
- G09G3/2007—Display of intermediate tones
- G09G3/2077—Display of intermediate tones by a combination of two or more gradation control methods
Definitions
- the present invention relates to the field of display technologies, and in particular, to a display driving method and apparatus.
- the image quality file and the screen parameter file are packaged together with the main program of the display device in the memory chip of the motherboard, and the main program is packaged together with the image quality file and the screen file, resulting in different display.
- the screen needs to be configured with different main programs; in order to solve the above technical problems, the main program and the image quality file and the screen parameter file are separately stored in the storage device of the display device main board, and the image quality file and the screen parameter file are called when the device is turned on, but After the motherboard is burned, if the same motherboard is used to drive different models of the display, the image quality files and screen parameters saved in the motherboard will not be compatible with multiple models of display, that is, the compatibility between the motherboard and the display is low. .
- the main object of the present invention is to provide a display driving method and device, which aim to solve the problem that the same driving board cannot be driven by the driving main board when the same main board is incompatible with different display screens.
- a display driving method provided by the present invention includes:
- the step of driving the display screen of the display device according to the first screen file and the first image file comprises:
- the step of acquiring the first screen parameter file and the first image quality file stored by the sequential circuit board T-CON according to the first screen parameter file ID further includes:
- the display driving method further includes the steps of:
- the display driving method further includes:
- the method further includes:
- the step of acquiring the first screen file and the first image file stored by the sequential circuit board T-CON according to the first screen file ID is performed.
- the step of determining whether the first screen file ID is consistent with the first image file ID corresponding to the first image file stored by the sequential circuit board T-CON further comprises:
- the present invention further provides a display driving device, including:
- a first acquiring module configured to acquire, when the display device is started, a first screen file ID stored by the sequential circuit board T-CON;
- a second acquiring module configured to acquire, according to the first screen file ID, a first screen parameter file and a first image quality file stored by the sequential circuit board T-CON;
- the first driving module is configured to drive the display screen of the display device to operate according to the first screen file and the first image file.
- the first driving module is further configured to:
- the display driving device further includes:
- a first determining module configured to determine whether a second screen file ID currently stored by the motherboard of the display device is consistent with the first screen file ID
- the second obtaining module is further configured to: if the second screen file ID currently stored by the motherboard of the display device is inconsistent with the first screen file ID, obtain the location according to the first screen file ID The first screen parameter file and the first image quality file stored by the sequential circuit board T-CON;
- a second driving module configured to acquire the motherboard storage according to the second screen file ID if the second screen file ID currently stored by the motherboard of the display device is consistent with the first screen file ID
- the second screen file and the second image file, and the display screen of the display device is driven according to the second screen file and the second image file.
- the second obtaining module is further configured to:
- the display driving device further includes:
- a second determining module configured to determine whether the first screen file ID is consistent with the first image file ID corresponding to the first image file stored by the sequential circuit board T-CON;
- the second obtaining module is further configured to: when the first screen file ID is consistent with the first image file ID, acquire the sequential circuit board T-CON according to the first screen file ID The first screen file and the first image file.
- the display driving device further includes:
- a display module configured to display a prompt window to prompt the user to select a third image quality file consistent with the first screen file ID if the first screen file ID does not match the first image file ID ID;
- a loading module configured to load, according to the third image quality file ID, a third image quality file corresponding to the third image quality file ID to drive the display screen to run.
- the invention obtains the first screen parameter file ID stored by the sequential circuit board T-CON when the display device is started, and acquires the first screen parameter file stored in the sequential circuit board T-CON according to the first screen parameter file ID and the first After an image quality file, the display screen of the display device is driven according to the first screen file and the first image file. Since the first screen parameter file and the first image quality file for driving the display screen are stored in the timing circuit board T-CON, when the display device is started, the first of the timing circuit boards T-CON is called by the control board.
- the screen file and the first image file drive the display to operate normally, thus making the same motherboard compatible with different displays, so that the same motherboard drives different display operations.
- FIG. 1 is a schematic flow chart of a first embodiment of a display driving method according to the present invention.
- FIG. 2 is a schematic flow chart of a second embodiment of a display driving method according to the present invention.
- FIG. 3 is a schematic flow chart of a third embodiment of a display driving method according to the present invention.
- FIG. 4 is a schematic flow chart of a fourth embodiment of a display driving method according to the present invention.
- FIG. 5 is a schematic diagram of functional modules of a first embodiment of a display driving device according to the present invention.
- FIG. 6 is a schematic diagram of functional modules of a second embodiment of a display driving device according to the present invention.
- FIG. 7 is a schematic diagram of functional modules of a third embodiment of a display driving device according to the present invention.
- FIG. 8 is a schematic diagram of functional modules of a fourth embodiment of a display driving device according to the present invention.
- the present invention provides a method of displaying a display screen.
- FIG. 1 is a schematic flow chart of a first embodiment of a display driving method according to the present invention.
- the display driving method includes:
- Step S10 when the display device is started, acquiring the first screen parameter file ID stored by the sequential circuit board T-CON;
- the main board of the display device stores a screen file, an image file, a screen file ID, and an image file ID.
- the config/panel file in the motherboard stores the screen file ID, the image file ID, and the screen file.
- Image quality file, the motherboard's embedded memory (Embedded) Multi Media Card, EMMC) stores the main program, the main board calls the loading screen parameter file and the image quality file to drive the display screen through the main program; the display device's timing circuit board (Timing
- the controller includes a T-CON control chip and a T-CON memory chip, and the T-CON memory chip stores a first screen file corresponding to the display screen of the display device, a first image file, and a first screen.
- the file ID and the first image file ID are used to update the T-CON memory chip to store the first screen file and the first image file, and can be directly connected to the interface on the T-CON board through the burning tool for burning.
- 51PIN between the motherboard and the T-CON board The FFC interface is connected, and if the display device is an HDTV, the 51PIN
- the transmission standard of the FFC interface is V-BY-ONE, including the data signal pin and a set of I2C lines, respectively SCL and SDA, so that the motherboard loads the first image quality file, the first screen parameter from the T-CON memory chip.
- the file communicates through the I2C line when the file interacts with the T-CON board.
- the T-CON memory chip comprises an EEPROM memory chip and an SPI FLASH memory chip
- the display device includes a television set, a PC device, and a computer.
- the Mboot program of the display device is started, and the screen file ID, the image file ID, the screen file, and the image file stored in the config/panel file of the motherboard are obtained. And start KERNEL, so that the T-CON is powered on, and initialized to normal operation after power-on.
- the T-CON board sends the current working status signal to the main board through the I2C line, for example, the T-CON The board sends a signal of the current working state "1" to the main board through the I2C line, indicating that the T-CON board enters a normal working state.
- the motherboard When the motherboard receives the signal of the normal working state sent by the T-CON board, sends the currently stored screen file ID to the T-CON board, when the T-CON control chip in the T-CON board receives the signal After the screen file ID currently stored by the motherboard is obtained, the first screen file ID stored in the T-CON storage chip in the T-CON board is obtained.
- Step S20 acquiring a first screen parameter file and a first image quality file stored by the sequential circuit board T-CON according to the first screen parameter file ID;
- the first screen parameter file includes a power-on timing control parameter, a cross-current current control parameter, and an 8/10-bit parameter setting;
- the first image quality file includes a color saturation parameter, a color brightness parameter, and a color density parameter.
- Step S30 driving the display screen of the display device according to the first screen file and the first image file.
- the motherboard A of the television set A stores the screen reference file A and the image quality file A which are normally displayed on the display screen A.
- the main board calls the screen reference file A.
- the image quality file A provides the display A with a cross current current control signal of 99% of the pulse signal, so that the display screen A is normally displayed.
- the motherboard is configured to use the television set B to drive the display screen B to operate normally, the motherboard Obtaining the screen file B and the image file B saved in the T-CON memory chip of the TV B, and providing the cross current control signal to the display B according to the screen file B and the image file B is 1%.
- the pulse signal causes the display B to display normally.
- the first screen parameter file ID stored by the sequential circuit board T-CON is acquired, and the first screen parameter file stored in the sequential circuit board T-CON is obtained according to the first screen parameter file ID.
- the display screen of the display device is driven according to the first screen file and the first image file. Since the first screen parameter file and the first image quality file for driving the display screen are stored in the timing circuit board T-CON, when the display device is started, the first of the timing circuit boards T-CON is called by the control board.
- the screen file and the first image file drive the display to operate normally, thus making the same motherboard compatible with different displays, so that the same motherboard drives different display operations.
- step S30 specifically includes: loading the first screen file and the first image file to the motherboard, and driving the display according to the first screen file and the first image file in the motherboard.
- the screen file and the image quality file in the motherboard are deleted.
- the first screen parameter file and the first image quality file acquired from the T-CON memory chip are loaded into the motherboard, and the control is performed.
- the motherboard runs the display screen according to the first screen file and the first image file.
- the first screen file and the first image file are loaded to the motherboard, and the display screen is driven according to the first screen file and the first image file in the motherboard.
- the first screen parameter file and the first image quality file stored in the T-CON memory chip are corresponding files for driving the display operation, and the first screen parameter file and the first image quality file are automatically loaded into the motherboard, thereby making the motherboard
- Driving the display screen according to the first screen parameter file and the first image quality file not only realizes the operation of different display screens of the same motherboard driver, but also simplifies switching the screen parameter files stored in the motherboard when the same motherboard drives different display screens.
- the process of drawing quality files improves the switching efficiency.
- FIG. 2 is a schematic flowchart of a second embodiment of a display driving method according to the present invention.
- the display driving method include:
- Step S40 determining whether the second screen file ID currently stored by the motherboard of the display device is consistent with the first screen file ID
- step S20 that is, acquiring the first screen parameter file and the first image quality file stored by the sequential circuit board T-CON according to the first screen parameter file ID;
- the first screen file stored in the -CON memory chip and the first image file are loaded into the motherboard, so that the motherboard drives the display to operate according to the first screen file and the first image file.
- Step S50 if yes, acquiring the second screen file and the second image file stored by the motherboard according to the second screen file ID, and driving the display screen of the display device according to the second screen file and the second image file .
- the first time parameter file board T-CON is stored according to the first screen parameter file ID. a screen file and a first image file, if yes, obtaining a second screen file and a second image file stored by the motherboard according to the second screen file ID, and according to the second screen file and the second image file.
- FIG. 3 is a schematic flowchart of a third embodiment of a display driving method according to the present invention.
- the display driving method include:
- Step S60 determining whether the first screen file ID is consistent with the first image file ID corresponding to the first image file stored in the timing board T-CON;
- the image quality file needs to be updated, but since the first screen parameter file is unchanged, the motherboard does not issue the call and the first one.
- the request for the image quality file corresponding to the screen parameter file makes the display of the display screen poor.
- the first screen parameter file ID and the first image quality file ID are stored in the T-CON storage chip, and the first screen file ID and the first picture are obtained.
- the quality file ID is matched, and it is determined whether the first screen parameter file ID is consistent with the first image quality file ID.
- step S20 is performed to obtain the first screen file and the first image file stored by the sequential circuit board T-CON according to the first screen file ID.
- the first screen file ID is consistent with the first image file ID
- Loading the first screen file and the first image file loading the first screen file and the first image file into the motherboard, so that the motherboard is based on the first screen file and the first image file Drive the display to run.
- the time circuit board is obtained according to the first screen file ID.
- the first screen file and the first image quality file stored by the T-CON By judging whether the first screen parameter file ID and the first image quality file ID are consistent, the data stored in the T-CON board itself is prevented from being abnormal, and the display effect of the display screen is not good, which affects the user experience.
- FIG. 4 is a schematic flowchart of a third embodiment of a display driving method according to the present invention.
- the display driving method include:
- Step S70 if not, displaying a prompt window to prompt the user to select a third image quality file ID that is consistent with the first screen file ID;
- the T-CON board is facing the motherboard.
- Sending a prompt message such as A1 1, displaying a prompt window on the display screen according to the prompt message or displaying a prompt window on the display interface of the control device bound to the display device to prompt the user to select the first screen file
- the third image quality file ID with the same ID.
- Step S80 The third image quality file corresponding to the third image quality file ID is loaded according to the third image quality file ID, and the first screen parameter file is loaded according to the first screen parameter file ID to drive the display screen to run.
- the prompt window is provided with a third image quality file option, and the third image quality file option can be directly selected in the prompt window, and the third image quality file option can also be selected by remote control, according to the third image quality file ID.
- the third image quality file is loaded into the T-CON memory chip. After confirming the loading, the motherboard directly restarts and loads the third image quality file in the T-CON memory chip to drive the display screen to re-run.
- the motherboard system can be directly illuminated without any changes, and when the image quality debugging is completed, the image quality file is burned into the T-CON storage. In the chip, the screen work of this screen is completed, which greatly shortens the development cycle and convenience.
- the sequential circuit board T-CON by determining whether the first screen file ID is consistent with the first image file ID corresponding to the first image file stored by the sequential circuit board T-CON, if not, displaying a prompt window to prompt the user to select and The third image quality file ID corresponding to the file ID is matched, and the third image quality file corresponding to the third image quality file ID is loaded according to the third image quality file ID, and the first screen parameter file is loaded according to the first screen parameter file ID.
- the invention further provides a display driving device.
- FIG. 5 is a schematic diagram of functional modules of a first embodiment of a display driving device according to the present invention.
- the display driving device includes: a first acquiring module 10, a second acquiring module 20, and a first driving module 30.
- the first obtaining module 10 is configured to acquire, when the display device is started, the first screen file ID stored by the sequential circuit board T-CON;
- the main board of the display device stores a screen file, an image file, a screen file ID, and an image file ID.
- the config/panel file in the motherboard stores the screen file ID, the image file ID, and the screen file.
- Image quality file, the motherboard's embedded memory (Embedded) Multi Media Card, EMMC) stores the main program, the main board calls the loading screen parameter file and the image quality file to drive the display screen through the main program; the display device's timing circuit board (Timing
- the controller includes a T-CON control chip and a T-CON memory chip, and the T-CON memory chip stores a first screen file corresponding to the display screen of the display device, a first image file, and a first screen.
- the file ID and the first image file ID are used to update the T-CON memory chip to store the first screen file and the first image file, and can be directly connected to the interface on the T-CON board through the burning tool for burning.
- 51PIN between the motherboard and the T-CON board The FFC interface is connected, and if the display device is an HDTV, the 51PIN
- the transmission standard of the FFC interface is V-BY-ONE, including the data signal pin and a set of I2C lines, respectively SCL and SDA, so that the motherboard loads the first image quality file, the first screen parameter from the T-CON memory chip.
- the file communicates through the I2C line when the file interacts with the T-CON board.
- the T-CON memory chip comprises an EEPROM memory chip and an SPI FLASH memory chip
- the display device includes a television set, a PC device, and a computer.
- the Mboot program of the display device is started, and the first access module 10 obtains the screen file ID, the image file ID, and the screen stored under the config/panel file in the motherboard. Refer to the file and the image quality file, and start KERNEL, so that the T-CON is powered on, and initialized to normal operation after power-on.
- the T-CON board sends the current working status signal to the main board through the I2C line. For example, the T-CON board sends a signal of the current working state "1" to the main board through the I2C line, indicating that the T-CON board enters a normal working state.
- the motherboard When the motherboard receives the signal of the normal working state sent by the T-CON board, sends the currently stored screen file ID to the T-CON board, when the T-CON control chip in the T-CON board receives the signal After the screen file ID currently stored by the motherboard is obtained, the first screen file ID stored in the T-CON storage chip in the T-CON board is obtained.
- the second obtaining module 20 is configured to acquire, according to the first screen parameter file ID, the first screen parameter file and the first image quality file stored by the sequential circuit board T-CON;
- the first screen file and the first image file are obtained according to the first screen file ID.
- the first screen parameter file includes a power-on timing control parameter, a cross-current current control parameter, and an 8/10-bit parameter setting;
- the first image quality file includes a color saturation parameter, a color brightness parameter, and a color density parameter.
- the first driving module 30 is configured to drive a display screen of the display device according to the first screen file and the first image file;
- the first driving module 30 controls the motherboard according to the first screen parameter file and the first An image quality file drives the display of the display device to operate.
- the motherboard A of the television set A stores the screen reference file A and the image quality file A which are normally displayed on the display screen A.
- the main board calls the screen reference file A.
- the image quality file A provides the display A with a cross current current control signal of 99% of the pulse signal, so that the display screen A is normally displayed.
- the motherboard is configured to use the television set B to drive the display screen B to operate normally, the motherboard Obtaining the screen file B and the image file B saved in the T-CON memory chip of the TV B, and providing the cross current control signal to the display B according to the screen file B and the image file B is 1%.
- the pulse signal causes the display B to display normally.
- the first driving module 30 is further configured to load the first screen file and the first image file to the motherboard, and drive the display according to the first screen file and the first image file in the motherboard.
- the first driver module 30 deletes the screen file and the image file in the motherboard. After deleting the screen parameter file and the image quality file stored in the config/panel file in the motherboard, the first driver module 30 loads the first screen parameter file and the first image quality file acquired from the T-CON memory chip into the In the motherboard, the control board drives the display screen according to the first screen file and the first image file.
- the first obtaining module 10 acquires the first screen parameter file ID stored by the sequential circuit board T-CON
- the second obtaining module 20 acquires the sequential circuit board T- according to the first screen parameter file ID.
- the first screen module file and the first image quality file stored by the CON the first driver module 30 drives the display screen of the display device according to the first screen file and the first image file. Since the first screen parameter file and the first image quality file for driving the display screen are stored in the timing circuit board T-CON, when the display device is started, the first of the timing circuit boards T-CON is called by the control board.
- the screen file and the first image file drive the display to operate normally, thus making the same motherboard compatible with different displays, so that the same motherboard drives different display operations.
- the display driving device further includes: a first determining module 40 and a second Drive module 50.
- the first determining module 40 is configured to determine whether the second screen file ID currently stored by the motherboard of the display device is consistent with the first screen file ID;
- the second obtaining module 20 is further configured to: if the second screen file ID currently stored by the motherboard of the display device is inconsistent with the first screen file ID, obtain the sequential circuit board T-CON according to the first screen file ID.
- the second driving module 50 is configured to: if the second screen file ID currently stored by the motherboard of the display device is consistent with the first screen file ID, obtain the second screen stored by the motherboard according to the second screen file ID. The file and the second image quality file, and the display screen of the display device is driven according to the second screen file and the second image file.
- the first time parameter file board T-CON is stored according to the first screen parameter file ID. a screen file and a first image file, if yes, obtaining a second screen file and a second image file stored by the motherboard according to the second screen file ID, and according to the second screen file and the second image file.
- the display driving device further includes: a second determining module 60.
- the second determining module 60 is configured to determine whether the first screen file ID is consistent with the first image file ID corresponding to the first image file stored by the sequential circuit board T-CON;
- the image quality file needs to be updated, but since the first screen parameter file is unchanged, the motherboard does not issue the call and the first one.
- the request for the image quality file corresponding to the screen parameter file makes the display of the display screen poor.
- the first obtaining module 10 acquires the first screen file ID and the first image file ID in the T-CON storage chip, and the second determining module 60 The first screen parameter file ID and the first image quality file ID are matched, and it is determined whether the first screen parameter file ID and the first image quality file ID are consistent.
- the second obtaining module 20 is further configured to: if the first screen parameter file ID is consistent with the first image quality file ID, acquire the first screen parameter file stored by the sequential circuit board T-CON according to the first screen parameter file ID and The first quality document.
- the first screen parameter file and the first image quality file stored in the T-CON board, the first screen parameter file and the first image quality file are loaded into the motherboard, so that the motherboard is based on the first screen parameter file and The first image quality file drives the display to run.
- the time circuit board is obtained according to the first screen file ID.
- the first screen file and the first image quality file stored by the T-CON By judging whether the first screen parameter file ID and the first image quality file ID are consistent, the data stored in the T-CON board itself is prevented from being abnormal, and the display effect of the display screen is not good, which affects the user experience.
- the display driving device further includes: a display module 70 and a loading module 80.
- the display module 70 is configured to: if the first screen file ID is inconsistent with the first image file ID, display a prompt window to prompt the user to select a third image file ID that is consistent with the first screen file ID;
- the T-CON board is facing the motherboard.
- Sending a prompt message such as A1 1, the display module 70 displays a prompt window on the display screen according to the prompt message or displays a prompt window on the display interface of the control device bound to the display device to prompt the user to select and first The third image quality file ID with the same screen file ID.
- the loading module 80 is configured to load a third image quality file corresponding to the third image quality file ID according to the third image quality file ID, and load the first screen parameter file according to the first screen parameter file ID to drive the display screen to run. .
- the prompt window is provided with the option of loading a third image quality file, and the option of loading the third image quality file can be directly selected in the prompt window, and the option of loading the third image quality file can be selected by remote control, and the loading module 80 according to the third drawing
- the quality file ID loads the third image quality file into the T-CON memory chip.
- the motherboard directly restarts, and the loading module 80 loads the third image quality file in the T-CON memory chip, so that the motherboard drives the display. The screen is re-run.
- the motherboard system can be directly illuminated without any changes, and when the image quality debugging is completed, the image quality file is burned into the T-CON storage. In the chip, the screen work of this screen is completed, which greatly shortens the development cycle and convenience.
- the sequential circuit board T-CON by determining whether the first screen file ID is consistent with the first image file ID corresponding to the first image file stored by the sequential circuit board T-CON, if not, displaying a prompt window to prompt the user to select and The third image quality file ID corresponding to the file ID is matched, and the third image quality file corresponding to the third image quality file ID is loaded according to the third image quality file ID, and the first screen parameter file is loaded according to the first screen parameter file ID.
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Abstract
一种显示屏驱动方法及装置,该方法包括:在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID(S10);根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件(S20);根据第一屏参文件以及第一画质文件驱动显示屏设备的显示屏运行(S30)。该装置和方法使得同一主板与不同显示屏兼容,从而实现同一主板驱动不同显示屏运行。
Description
技术领域
本发明涉及显示屏技术领域,尤其涉及一种显示屏驱动方法及装置。
背景技术
随着显示屏技术的发展,显示设备如液晶电视已逐渐进入寻常百姓家。为了满足用户需求,显示屏的型号越来越多,而不同型号的显示屏对应的型号技术参数以及画质数据会存在一定的差异,这样需要对应不同规格的显示屏设计不同的驱动主板,从而增加了显示屏与驱动主板的配置难度以及配置成本。
现有技术中,往往将画质文件以及屏参文件与显示设备的主程序一起打包存储在主板的存储芯片中,由于主程序与画质文件以及屏参文件打包在一起,导致针对不同的显示屏需要配置不同的主程序;为解决上述技术问题,将主程序与画质文件以及屏参文件分开保存于显示设备主板的存储装置中,在开机时调用该画质文件以及屏参文件,但由于主板烧录完成后,若采用同一主板驱动不同型号的显示屏,会导致主板中保存的画质文件以及屏参文件不能兼容多种型号的显示屏,即主板与显示屏的兼容性较低。
发明内容
本发明的主要目的在于提供一种显示屏驱动方法及装置,旨在解决同一驱动主板与不同显示屏不兼容时,无法通过该驱动主板驱动显示屏运行的问题。
为实现上述目的,本发明提供的一种显示屏驱动方法,包括:
在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID;
根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件;
根据所述第一屏参文件以及第一画质文件驱动所述显示屏设备的显示屏运行。
优选地,所述根据所述第一屏参文件以及第一画质文件驱动所述显示屏设备的显示屏运行的步骤具体包括:
将所述第一屏参文件以及第一画质文件加载至所述主板,根据所述主板中的所述第一屏参文件以及第一画质文件驱动所述显示屏运行。
优选地,所述根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件的步骤之前还包括:
判断所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID是否一致;
若否,则执行所述根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件的步骤;
所述判断所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID是否一致的步骤之后,所述显示屏驱动方法还包括步骤:
若是,则根据所述第二屏参文件ID获取所述主板存储的第二屏参文件以及第二画质文件,并根据所述第二屏参文件以及第二画质文件驱动所述显示屏设备的显示屏运行。
优选地,当所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID不一致时,所述显示屏驱动方法还包括:
控制所述主板删除与所述第二屏参文件ID关联的所述第二屏参文件以及所述第二画质文件,并根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件。
优选地,所述获取时序电路板T-CON存储的第一屏参文件ID的步骤之后还包括:
判断所述第一屏参文件ID与所述时序电路板T-CON存储的所述第一画质文件对应的第一画质文件ID是否一致;
若是,则执行所述根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件的步骤。
优选地,所述判断所述第一屏参文件ID与所述时序电路板T-CON存储的所述第一画质文件对应的第一画质文件ID是否一致的步骤之后还包括:
若否,则显示提示窗口,以提示用户选取与所述第一屏参文件ID一致的第三画质文件ID;
根据所述第三画质文件ID加载所述第三画质文件ID对应的第三画质文件,并根据所述第一屏参文件ID加载所述第一屏参文件,以驱动所述显示屏运行。
此外,为实现上述目的,本发明还提供一种显示屏驱动装置,包括:
第一获取模块,用于在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID;
第二获取模块,用于根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件;
第一驱动模块,用于根据所述第一屏参文件以及第一画质文件驱动所述显示屏设备的显示屏运行。
优选地,所述第一驱动模块还用于:
将所述第一屏参文件以及第一画质文件加载至所述主板,根据所述主板中的所述第一屏参文件以及第一画质文件驱动所述显示屏运行。
优选地,所述显示屏驱动装置还包括:
第一判断模块,用于判断所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID是否一致;
所述第二获取模块,还用于若所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID不一致,则根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件;
第二驱动模块,用于若所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID一致,则根据所述第二屏参文件ID获取所述主板存储的第二屏参文件以及第二画质文件,并根据所述第二屏参文件以及第二画质文件驱动所述显示屏设备的显示屏运行。
优选地,所述第二获取模块还用于:
当所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID不一致时,控制所述主板删除与所述第二屏参文件ID关联的所述第二屏参文件以及所述第二画质文件,并根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件。
优选地,所述显示屏驱动装置还包括:
第二判断模块,用于判断所述第一屏参文件ID与所述时序电路板T-CON存储的所述第一画质文件对应的第一画质文件ID是否一致;
所述第二获取模块,还用于若所述第一屏参文件ID与所述第一画质文件ID一致,则根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件。
优选地,所述显示屏驱动装置还包括:
显示模块,用于若所述第一屏参文件ID与所述第一画质文件ID不一致,则显示提示窗口,以提示用户选取与所述第一屏参文件ID一致的第三画质文件ID;
加载模块,用于根据所述第三画质文件ID加载所述第三画质文件ID对应的第三画质文件,以驱动所述显示屏运行。
本发明通过在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID,在根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件后,根据第一屏参文件以及第一画质文件驱动显示屏设备的显示屏运行。由于将驱动显示屏正常运行的第一屏参文件以及第一画质文件存储在时序电路板T-CON中,在显示设备启动时,通过控制主板调用该时序电路板T-CON中的第一屏参文件以及第一画质文件来驱动显示屏正常运行,因此使得同一主板与不同显示屏兼容,从而实现同一主板驱动不同显示屏运行。
附图说明
图1为本发明显示屏驱动方法的第一实施例的流程示意图;
图2为本发明显示屏驱动方法的第二实施例的流程示意图;
图3为本发明显示屏驱动方法的第三实施例的流程示意图;
图4为本发明显示屏驱动方法的第四实施例的流程示意图;
图5为本发明显示屏驱动装置的第一实施例的功能模块示意图;
图6为本发明显示屏驱动装置的第二实施例的功能模块示意图;
图7为本发明显示屏驱动装置的第三实施例的功能模块示意图;
图8为本发明显示屏驱动装置的第四实施例的功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
基于上述问题,本发明提供一种方法显示屏驱动方法。
参照图1,图1为本发明显示屏驱动方法的第一实施例的流程示意图。
在本实施例中,所述显示屏驱动方法包括:
步骤S10,在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID;
显示设备的主板存储有屏参文件、画质文件、屏参文件ID以及画质文件ID,如该主板中的config/panel文件下存储有屏参文件ID、画质文件ID、屏参文件以及画质文件,该主板的内嵌式存储器(Embedded
Multi Media
Card,EMMC)中存储有的主程序,该主板通过该主程序调用加载屏参文件以及画质文件来驱动显示屏运行;该显示设备的时序电路板(Timing
Controller,T-CON)包括T-CON控制芯片以及T-CON存储芯片,该T-CON存储芯片存储有该显示设备的显示屏对应的第一屏参文件、第一画质文件、第一屏参文件ID以及第一画质文件ID,对于更新T-CON存储芯片中已经存储第一屏参文件和第一画质文件,可通过烧录工具直接连接T-CON板上的接口进行烧录;该主板与该T-CON板之间通过51PIN
FFC接口相连,若该显示设备为高清电视,则该51PIN
FFC接口的传输标准为V-BY-ONE,包括数据信号脚以及一组I2C线路,分别为SCL和SDA,使得该主板从该T-CON存储芯片中加载第一画质文件、第一屏参文件或者与该T-CON板进行指令交互时,通过该I2C线路进行通讯。其中,该T-CON存储芯片包括EEPROM存储芯片和SPI
FLASH存储芯片;该显示设备包括电视机、PC设备以及计算机。
在本实施例中,在显示屏设备开机后,该显示屏设备的Mboot程序启动,获取该主板中config/panel文件下存储的屏参文件ID、画质文件ID、屏参文件以及画质文件,并启动KERNEL,使得T-CON板上电,并在上电后初始化进入正常工作状态,该T-CON板通过I2C线路将当前的工作状态的信号发送给该主板,例如,该T-CON板通过I2C线路将当前的工作状态“1”的信号发送给该主板,表示T-CON板进入正常工作状态。当该主板接收到该T-CON板发送的正常工作状态的信号时,向该T-CON板发送当前存储的屏参文件ID,当该T-CON板中的T-CON控制芯片接收到该主板当前存储的屏参文件ID后,获取该T-CON板中的T-CON存储芯片中存储的第一屏参文件ID。
步骤S20,根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件;
在获取到第一屏参文件ID时,由于该时序电路板T-CON存储芯片中存储的第一屏参文件ID与第一画质文件ID一致,因此根据该第一屏参文件ID可获取到第一屏参文件以及第一画质文件。其中,该第一屏参文件包括上电时序控制参数、横流电流控制参数以及8/10bit参数设置;该第一画质文件包括颜色饱和度参数、颜色亮度参数以及颜色浓度参数。
步骤S30,根据第一屏参文件以及第一画质文件驱动显示屏设备的显示屏运行。
在获取到该时序电路板T-CON存储芯片中存储的第一屏参文件以及第一画质文件后,控制该主板根据该第一屏参文件以及第一画质文件驱动该显示设备的显示屏运行。
下面通过一个具体实施例详细说明上述方法是如何实现的。
电视机A的主板中保存了驱动显示屏A正常显示的屏参文件A以及画质文件A,在电源向该显示屏A提供正常运行的横流电流的状态下,该主板调用该屏参文件A以及画质文件A向该显示屏A提供横流电流控制信号为99%的脉冲信号,使得显示屏A正常显示,当将该主板装配置电视机B用来驱动显示屏B正常运行时,该主板获取保存在该电视机B的T-CON存储芯片中保存的屏参文件B以及画质文件B,根据该屏参文件B以及画质文件B向该显示屏B提供横流电流控制信号为1%的脉冲信号,使得该显示屏B正常显示。
本实施例通过在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID,在根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件后,根据第一屏参文件以及第一画质文件驱动显示屏设备的显示屏运行。由于将驱动显示屏正常运行的第一屏参文件以及第一画质文件存储在时序电路板T-CON中,在显示设备启动时,通过控制主板调用该时序电路板T-CON中的第一屏参文件以及第一画质文件来驱动显示屏正常运行,因此使得同一主板与不同显示屏兼容,从而实现同一主板驱动不同显示屏运行。
进一步的,基于步骤S30,该步骤S30具体包括:将第一屏参文件以及第一画质文件加载至主板,根据主板中的第一屏参文件以及第一画质文件驱动显示屏运行。
在确定主板中已存储的屏参文件ID与T-CON存储芯片中存储的第一屏参文件ID不一致时,删除该主板中的屏参文件以及画质文件。在删除该主板中config/panel文件下存储的屏参文件以及画质文件后,将从T-CON存储芯片中获取到的第一屏参文件以及第一画质文件加载到该主板中,控制主板根据该第一屏参文件以及第一画质文件驱动显示屏运行。
本实施例通过将第一屏参文件以及第一画质文件加载至主板,根据主板中的第一屏参文件以及第一画质文件驱动显示屏运行。由于T-CON存储芯片中存储的第一屏参文件以及第一画质文件是驱动显示运行的对应文件,通过将第一屏参文件以及第一画质文件自动加载到主板中,因此使得主板根据该第一屏参文件以及第一画质文件驱动该显示屏运行,不仅实现了同一主板驱动不同显示屏运行,而简化了同一主板驱动不同显示屏时切换主板中已存储的屏参文件以及画质文件的流程,提高了切换效率。
进一步的,基于所述第一实施例,请参照图2,为本发明提出的显示屏驱动方法的第二实施例的流程示意图,在该第二实施例中,S20之前,该显示屏驱动方法包括:
步骤S40,判断显示屏设备的主板当前存储的第二屏参文件ID与第一屏参文件ID是否一致;
若否,则执行步骤S20,即根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件;
在本实施例中,在获取到时序电路板T-CON存储的第一屏参文件ID后,判断该第一屏参文件ID与主板当前存储的第二屏参文件ID是否一致,若第一屏参文件ID与第二屏参文件ID不一致,表明该主板当前存储的第二屏参文件以及第二画质文件分别与该T-CON存储芯片中存储的第一屏参文件以及第一画质文件不对应,则该T-CON板向该主板发送如A0=1的提示信息,则该主板删除config/panel文件下当前存储的第二屏参文件以及第二画质文件,将该T-CON存储芯片中存储的第一屏参文件以及第一画质文件加载到该主板中,从而使得该主板根据该第一屏参文件以及第一画质文件驱动该显示屏运行。
步骤S50,若是,则根据第二屏参文件ID获取主板存储的第二屏参文件以及第二画质文件,并根据第二屏参文件以及第二画质文件驱动显示屏设备的显示屏运行。
若第一屏参文件ID与第二屏参文件ID一致,表明该主板当前存储的第二屏参文件以及第二画质文件分别与T-CON存储芯片中存储的第一屏参文件以及第一画质文件相对应,则该T-CON板向该主板发送如A0=0的提示信息,提示该主板使用当前存储的第一屏参文件以及画质文件驱动该显示屏运行。
本实施例通过判断显示屏设备的主板当前存储的第二屏参文件ID与第一屏参文件ID是否一致,若否,则根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件,若是,则根据第二屏参文件ID获取主板存储的第二屏参文件以及第二画质文件,并根据第二屏参文件以及第二画质文件驱动显示屏设备的显示屏运行,使得同一主板与不同显示屏兼容,从而实现同一主板驱动不同显示屏运行。
进一步的,基于所述第一实施例,请参照图3,为本发明提出的显示屏驱动方法的第三实施例的流程示意图,在该第三实施例中,S10之后,该显示屏驱动方法包括:
步骤S60,判断第一屏参文件ID与时序电路板T-CON存储的第一画质文件对应的第一画质文件ID是否一致;
如果T-CON存储芯片中存储的第一屏参文件与第一画质文件不是对应的,需要更新画质文件,但由于第一屏参文件不变,主板不会再发出调用与该第一屏参文件对应的画质文件的请求,使得显示屏的显示效果不佳。
因此在本实施例中,在T-CON板上电后,获取T-CON存储芯片中存储第一屏参文件ID以及第一画质文件ID,将该第一屏参文件ID以及第一画质文件ID进行匹配,判断第一屏参文件ID与该第一画质文件ID是否一致。
若是,则执行步骤S20,即根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件。
若该第一屏参文件ID与该第一画质文件ID一致,则T-CON板向该主板发送如A1=0的提示信息,则根据该第一屏参文件ID获取该T-CON板中存储的第一屏参文件以及第一画质文件,将该第一屏参文件以及第一画质文件加载到该主板中,使得该主板根据该第一屏参文件以及第一画质文件驱动该显示屏运行。
本实施例通过判断第一屏参文件ID与时序电路板T-CON存储的第一画质文件对应的第一画质文件ID是否一致,若是,则根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件。由于通过判断第一屏参文件ID与第一画质文件ID是否一致,避免了T-CON板本身存储的数据异常,而导致显示屏的显示效果不佳,影响用户体验。
进一步的,基于所述第三实施例,请参照图4,为本发明提出的显示屏驱动方法的第三实施例的流程示意图,在该第三实施例中,S60之后,该显示屏驱动方法包括:
步骤S70,若否,则显示提示窗口,以提示用户选取与第一屏参文件ID一致的第三画质文件ID;
在本实施例中,若该第一屏参文件ID与该第一画质文件ID不一致,表明该T-CON存储芯片中存储的第一画质文件有问题,该T-CON板向该主板发送如A1=1的提示消息,根据该提示消息在该显示屏显示提示窗口或者在与该显示屏设备绑定的控制设备的显示界面上显示提示窗口,以提示用户选取与第一屏参文件ID一致的第三画质文件ID。
步骤S80,根据第三画质文件ID加载第三画质文件ID对应的第三画质文件,并根据第一屏参文件ID加载第一屏参文件,以驱动显示屏运行。
该提示窗口配有加载第三画质文件选项,可直接在该提示窗口选择加载第三画质文件选项,也可通过遥控方式选择加载第三画质文件选项,根据该第三画质文件ID加载第三画质文件至T-CON存储芯片中,在确认加载后,主板直接重新启动,加载T-CON存储芯片中的第三画质文件,以驱动该显示屏重新运行。
需要说明的是,在新增配屏项目后,所配主板系统不需做变更则可直接点亮屏,而当画质调试确认完成后,则将该画质文件烧录进T-CON存储芯片中,则此屏的配屏工作即完成,大大缩短了开发周期和便利性。
本实施例通过判断第一屏参文件ID与时序电路板T-CON存储的第一画质文件对应的第一画质文件ID是否一致,若否,则显示提示窗口,以提示用户选取与第一屏参文件ID一致的第三画质文件ID,根据第三画质文件ID加载第三画质文件ID对应的第三画质文件,并根据第一屏参文件ID加载第一屏参文件,使得主板与显示屏进行配屏调试过程中,实现画质文件的更新更加简单。
本发明进一步提供一种显示屏驱动装置。
参照图5,图5为本发明显示屏驱动装置的第一实施例的功能模块示意图。
在本实施例中,所述显示屏驱动装置包括:第一获取模块10、第二获取模块20、第一驱动模块30。
所述第一获取模块10,用于在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID;
显示设备的主板存储有屏参文件、画质文件、屏参文件ID以及画质文件ID,如该主板中的config/panel文件下存储有屏参文件ID、画质文件ID、屏参文件以及画质文件,该主板的内嵌式存储器(Embedded
Multi Media
Card,EMMC)中存储有的主程序,该主板通过该主程序调用加载屏参文件以及画质文件来驱动显示屏运行;该显示设备的时序电路板(Timing
Controller,T-CON)包括T-CON控制芯片以及T-CON存储芯片,该T-CON存储芯片存储有该显示设备的显示屏对应的第一屏参文件、第一画质文件、第一屏参文件ID以及第一画质文件ID,对于更新T-CON存储芯片中已经存储第一屏参文件和第一画质文件,可通过烧录工具直接连接T-CON板上的接口进行烧录;该主板与该T-CON板之间通过51PIN
FFC接口相连,若该显示设备为高清电视,则该51PIN
FFC接口的传输标准为V-BY-ONE,包括数据信号脚以及一组I2C线路,分别为SCL和SDA,使得该主板从该T-CON存储芯片中加载第一画质文件、第一屏参文件或者与该T-CON板进行指令交互时,通过该I2C线路进行通讯。其中,该T-CON存储芯片包括EEPROM存储芯片和SPI
FLASH存储芯片;该显示设备包括电视机、PC设备以及计算机。
在本实施例中,在显示屏设备开机后,该显示屏设备的Mboot程序启动,通过第一获取模块10获取该主板中config/panel文件下存储的屏参文件ID、画质文件ID、屏参文件以及画质文件,并启动KERNEL,使得T-CON板上电,并在上电后初始化进入正常工作状态,该T-CON板通过I2C线路将当前的工作状态的信号发送给该主板,例如,该T-CON板通过I2C线路将当前的工作状态“1”的信号发送给该主板,表示T-CON板进入正常工作状态。当该主板接收到该T-CON板发送的正常工作状态的信号时,向该T-CON板发送当前存储的屏参文件ID,当该T-CON板中的T-CON控制芯片接收到该主板当前存储的屏参文件ID后,获取该T-CON板中的T-CON存储芯片中存储的第一屏参文件ID。
所述第二获取模块20,用于根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件;
在第一获取模块10获取到第一屏参文件ID时,由于该时序电路板T-CON存储芯片中存储的第一屏参文件ID与第一画质文件ID一致,因此第二获取模块20根据该第一屏参文件ID可获取到第一屏参文件以及第一画质文件。其中,该第一屏参文件包括上电时序控制参数、横流电流控制参数以及8/10bit参数设置;该第一画质文件包括颜色饱和度参数、颜色亮度参数以及颜色浓度参数。
所述第一驱动模块30,用于根据第一屏参文件以及第一画质文件驱动显示屏设备的显示屏运行;
在第二获取模块20获取到该时序电路板T-CON存储芯片中存储的第一屏参文件以及第一画质文件后,第一驱动模块30控制该主板根据该第一屏参文件以及第一画质文件驱动该显示设备的显示屏运行。
下面通过一个具体实施例详细说明上述方法是如何实现的。
电视机A的主板中保存了驱动显示屏A正常显示的屏参文件A以及画质文件A,在电源向该显示屏A提供正常运行的横流电流的状态下,该主板调用该屏参文件A以及画质文件A向该显示屏A提供横流电流控制信号为99%的脉冲信号,使得显示屏A正常显示,当将该主板装配置电视机B用来驱动显示屏B正常运行时,该主板获取保存在该电视机B的T-CON存储芯片中保存的屏参文件B以及画质文件B,根据该屏参文件B以及画质文件B向该显示屏B提供横流电流控制信号为1%的脉冲信号,使得该显示屏B正常显示。
所述第一驱动模块30,还用于将第一屏参文件以及第一画质文件加载至主板,根据主板中的第一屏参文件以及第一画质文件驱动显示屏运行。
在确定主板中已存储的屏参文件ID与T-CON存储芯片中存储的第一屏参文件ID不一致时,第一驱动模块30删除该主板中的屏参文件以及画质文件。在删除该主板中config/panel文件下存储的屏参文件以及画质文件后,第一驱动模块30将从T-CON存储芯片中获取到的第一屏参文件以及第一画质文件加载到该主板中,控制主板根据该第一屏参文件以及第一画质文件驱动显示屏运行。
本实施例通过在显示屏设备启动时,第一获取模块10获取时序电路板T-CON存储的第一屏参文件ID,第二获取模块20根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件,第一驱动模块30根据第一屏参文件以及第一画质文件驱动显示屏设备的显示屏运行。由于将驱动显示屏正常运行的第一屏参文件以及第一画质文件存储在时序电路板T-CON中,在显示设备启动时,通过控制主板调用该时序电路板T-CON中的第一屏参文件以及第一画质文件来驱动显示屏正常运行,因此使得同一主板与不同显示屏兼容,从而实现同一主板驱动不同显示屏运行。
进一步的,基于上述第一实施例,提出本发明显示屏驱动装置的第二实施例,在本实施例中,参照图6,所述显示屏驱动装置还包括:第一判断模块40、第二驱动模块50。
所述第一判断模块40,用于判断显示屏设备的主板当前存储的第二屏参文件ID与第一屏参文件ID是否一致;
所述第二获取模块20,还用于若显示屏设备的主板当前存储的第二屏参文件ID与第一屏参文件ID不一致,则根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件;
在本实施例中,在第一获取模块10获取到时序电路板T-CON存储的第一屏参文件ID后,第一判断模块40判断该第一屏参文件ID与主板当前存储的第二屏参文件ID是否一致,若第一屏参文件ID与第二屏参文件ID不一致,表明该主板当前存储的第二屏参文件以及第二画质文件分别与该T-CON存储芯片中存储的第一屏参文件以及第一画质文件不对应,则该T-CON板向该主板发送如A0=1的提示信息,则该主板删除config/panel文件下当前存储的第二屏参文件以及第二画质文件,第二获取模块20将该T-CON存储芯片中存储的第一屏参文件以及第一画质文件加载到该主板中,从而使得该主板根据该第一屏参文件以及第一画质文件驱动该显示屏运行。
所述第二驱动模块50,用于若显示屏设备的主板当前存储的第二屏参文件ID与第一屏参文件ID一致,则根据第二屏参文件ID获取主板存储的第二屏参文件以及第二画质文件,并根据第二屏参文件以及第二画质文件驱动显示屏设备的显示屏运行。
若第一屏参文件ID与第二屏参文件ID一致,表明该主板当前存储的第二屏参文件以及第二画质文件分别与T-CON存储芯片中存储的第一屏参文件以及第一画质文件相对应,则该T-CON板向该主板发送如A0=0的提示信息,提示第二驱动模块50使用当前存储的第一屏参文件以及画质文件驱动该显示屏运行。
本实施例通过判断显示屏设备的主板当前存储的第二屏参文件ID与第一屏参文件ID是否一致,若否,则根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件,若是,则根据第二屏参文件ID获取主板存储的第二屏参文件以及第二画质文件,并根据第二屏参文件以及第二画质文件驱动显示屏设备的显示屏运行,使得同一主板与不同显示屏兼容,从而实现同一主板驱动不同显示屏运行。
进一步的,基于上述第一实施例,提出本发明显示屏驱动装置的第三实施例,在本实施例中,参照图7,所述显示屏驱动装置还包括:第二判断模块60。
所述第二判断模块60,用于判断第一屏参文件ID与时序电路板T-CON存储的第一画质文件对应的第一画质文件ID是否一致;
如果T-CON存储芯片中存储的第一屏参文件与第一画质文件不是对应的,需要更新画质文件,但由于第一屏参文件不变,主板不会再发出调用与该第一屏参文件对应的画质文件的请求,使得显示屏的显示效果不佳。
因此在本实施例中,在T-CON板上电后,第一获取模块10获取T-CON存储芯片中存储第一屏参文件ID以及第一画质文件ID,第二判断模块60将该第一屏参文件ID以及第一画质文件ID进行匹配,判断第一屏参文件ID与该第一画质文件ID是否一致。
所述第二获取模块20,还用于若第一屏参文件ID与第一画质文件ID一致,则根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件。
若该第一屏参文件ID与该第一画质文件ID一致,则T-CON板向该主板发送如A1=0的提示信息,则第二获取模块20根据该第一屏参文件ID获取该T-CON板中存储的第一屏参文件以及第一画质文件,将该第一屏参文件以及第一画质文件加载到该主板中,使得该主板根据该第一屏参文件以及第一画质文件驱动该显示屏运行。
本实施例通过判断第一屏参文件ID与时序电路板T-CON存储的第一画质文件对应的第一画质文件ID是否一致,若是,则根据第一屏参文件ID获取时序电路板T-CON存储的第一屏参文件以及第一画质文件。由于通过判断第一屏参文件ID与第一画质文件ID是否一致,避免了T-CON板本身存储的数据异常,而导致显示屏的显示效果不佳,影响用户体验。
进一步的,基于上述第三实施例,提出本发明显示屏驱动装置的第四实施例,在本实施例中,参照图8,所述显示屏驱动装置还包括:显示模块70、加载模块80。
所述显示模块70,用于若第一屏参文件ID与第一画质文件ID不一致,则显示提示窗口,以提示用户选取与第一屏参文件ID一致的第三画质文件ID;
在本实施例中,若该第一屏参文件ID与该第一画质文件ID不一致,表明该T-CON存储芯片中存储的第一画质文件有问题,该T-CON板向该主板发送如A1=1的提示消息,显示模块70根据该提示消息在该显示屏显示提示窗口或者在与该显示屏设备绑定的控制设备的显示界面上显示提示窗口,以提示用户选取与第一屏参文件ID一致的第三画质文件ID。
所述加载模块80,用于根据第三画质文件ID加载第三画质文件ID对应的第三画质文件,并根据第一屏参文件ID加载第一屏参文件,以驱动显示屏运行。
该提示窗口配有加载第三画质文件选项,可直接在该提示窗口选择加载第三画质文件选项,也可通过遥控方式选择加载第三画质文件选项,加载模块80根据该第三画质文件ID加载第三画质文件至T-CON存储芯片中,在确认加载后,主板直接重新启动,加载模块80加载T-CON存储芯片中的第三画质文件,以使主板驱动该显示屏重新运行。
需要说明的是,在新增配屏项目后,所配主板系统不需做变更则可直接点亮屏,而当画质调试确认完成后,则将该画质文件烧录进T-CON存储芯片中,则此屏的配屏工作即完成,大大缩短了开发周期和便利性。
本实施例通过判断第一屏参文件ID与时序电路板T-CON存储的第一画质文件对应的第一画质文件ID是否一致,若否,则显示提示窗口,以提示用户选取与第一屏参文件ID一致的第三画质文件ID,根据第三画质文件ID加载第三画质文件ID对应的第三画质文件,并根据第一屏参文件ID加载第一屏参文件,使得主板与显示屏进行配屏调试过程中,实现画质文件的更新更加简单。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (12)
- 一种显示屏驱动方法,其特征在于,所述显示屏驱动方法包括以下步骤:在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID;根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件;根据所述第一屏参文件以及第一画质文件驱动所述显示屏设备的显示屏运行。
- 如权利要求1所述的显示屏驱动方法,其特征在于,所述根据所述第一屏参文件以及第一画质文件驱动所述显示屏设备的显示屏运行的步骤具体包括:将所述第一屏参文件以及第一画质文件加载至所述主板,根据所述主板中的所述第一屏参文件以及第一画质文件驱动所述显示屏运行。
- 如权利要求1所述的显示屏驱动方法,其特征在于,所述根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件的步骤之前还包括:判断所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID是否一致;若否,则执行所述根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件的步骤;所述判断所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID是否一致的步骤之后,所述显示屏驱动方法还包括步骤:若是,则根据所述第二屏参文件ID获取所述主板存储的第二屏参文件以及第二画质文件,并根据所述第二屏参文件以及第二画质文件驱动所述显示屏设备的显示屏运行。
- 如权利要求3所述的显示屏驱动方法,其特征在于,当所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID不一致时,所述显示屏驱动方法还包括:控制所述主板删除与所述第二屏参文件ID关联的所述第二屏参文件以及所述第二画质文件,并根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件。
- 如权利要求1所述的显示屏驱动方法,其特征在于,所述获取时序电路板T-CON存储的第一屏参文件ID的步骤之后还包括:判断所述第一屏参文件ID与所述时序电路板T-CON存储的所述第一画质文件对应的第一画质文件ID是否一致;若是,则执行所述根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件的步骤。
- 如权利要求5所述的显示屏驱动方法,其特征在于,所述判断所述第一屏参文件ID与所述时序电路板T-CON存储的所述第一画质文件对应的第一画质文件ID是否一致的步骤之后还包括:若否,则显示提示窗口,以提示用户选取与所述第一屏参文件ID一致的第三画质文件ID;根据所述第三画质文件ID加载所述第三画质文件ID对应的第三画质文件,并根据所述第一屏参文件ID加载所述第一屏参文件,以驱动所述显示屏运行。
- 一种显示屏驱动装置,其特征在于,所述显示屏驱动装置包括:第一获取模块,用于在显示屏设备启动时,获取时序电路板T-CON存储的第一屏参文件ID;第二获取模块,用于根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件;第一驱动模块,用于根据所述第一屏参文件以及第一画质文件驱动所述显示屏设备的显示屏运行。
- 如权利要求7所述的显示屏驱动装置,其特征在于,所述第一驱动模块还用于:将所述第一屏参文件以及第一画质文件加载至所述主板,根据所述主板中的所述第一屏参文件以及第一画质文件驱动所述显示屏运行。
- 如权利要求7所述的显示屏驱动装置,其特征在于,所述显示屏驱动装置还包括:第一判断模块,用于判断所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID是否一致;所述第二获取模块,还用于若所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID不一致,则根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件;第二驱动模块,用于若所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID一致,则根据所述第二屏参文件ID获取所述主板存储的第二屏参文件以及第二画质文件,并根据所述第二屏参文件以及第二画质文件驱动所述显示屏设备的显示屏运行。
- 如权利要求9所述的显示屏驱动装置,其特征在于,所述第二获取模块还用于:当所述显示屏设备的主板当前存储的第二屏参文件ID与所述第一屏参文件ID不一致时,控制所述主板删除与所述第二屏参文件ID关联的所述第二屏参文件以及所述第二画质文件,并根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件。
- 如权利要求7所述的显示屏驱动装置,其特征在于,所述显示屏驱动装置还包括:第二判断模块,用于判断所述第一屏参文件ID与所述时序电路板T-CON存储的所述第一画质文件对应的第一画质文件ID是否一致;所述第二获取模块20,还用于若所述第一屏参文件ID与所述第一画质文件ID一致,则根据所述第一屏参文件ID获取所述时序电路板T-CON存储的第一屏参文件以及第一画质文件。
- 如权利要求11所述的显示屏驱动装置,其特征在于,所述显示屏驱动装置还包括:显示模块,用于若所述第一屏参文件ID与所述第一画质文件ID不一致,则显示提示窗口,以提示用户选取与所述第一屏参文件ID一致的第三画质文件ID;加载模块,用于根据所述第三画质文件ID加载所述第三画质文件ID对应的第三画质文件,以驱动所述显示屏运行。
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| CN112148335A (zh) * | 2019-06-27 | 2020-12-29 | 青岛海尔多媒体有限公司 | 升级方法和装置 |
| CN113641316A (zh) * | 2021-07-08 | 2021-11-12 | 瑞芯微电子股份有限公司 | 一种屏自适应兼容方法和存储设备 |
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| CN105895004B (zh) * | 2016-05-25 | 2019-08-27 | 深圳创维-Rgb电子有限公司 | 显示屏驱动方法及装置 |
| CN110636364B (zh) * | 2019-09-24 | 2022-08-30 | 深圳创维-Rgb电子有限公司 | 一种图像画质处理方法、智能电视及存储介质 |
| CN111221489B (zh) * | 2019-12-31 | 2022-08-30 | 瑞芯微电子股份有限公司 | 一种兼容多种型号显示屏的方法、装置、设备和介质 |
| CN111161668B (zh) * | 2020-03-18 | 2023-03-28 | 深圳市亿晟科技有限公司 | 一种基于安卓系统广告机的显示驱动控制方法 |
| CN112652274A (zh) * | 2020-12-24 | 2021-04-13 | 联想(北京)有限公司 | 一种背光控制方法及装置 |
| CN116453440A (zh) * | 2022-01-07 | 2023-07-18 | 惠州视维新技术有限公司 | 驱动参数的匹配方法、驱动参数的配置方法及显示装置 |
| CN115359744B (zh) * | 2022-08-16 | 2023-04-28 | 海的电子科技(苏州)有限公司 | 多通道mipi模组点屏方法、设备及存储介质 |
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