WO2013120305A1 - 双工作模式液晶显示器的实现方法 - Google Patents

双工作模式液晶显示器的实现方法 Download PDF

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Publication number
WO2013120305A1
WO2013120305A1 PCT/CN2012/072864 CN2012072864W WO2013120305A1 WO 2013120305 A1 WO2013120305 A1 WO 2013120305A1 CN 2012072864 W CN2012072864 W CN 2012072864W WO 2013120305 A1 WO2013120305 A1 WO 2013120305A1
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WIPO (PCT)
Prior art keywords
liquid crystal
crystal display
enable
control chip
timing control
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PCT/CN2012/072864
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English (en)
French (fr)
Inventor
吴泽鑫
张勇
Original Assignee
深圳市华星光电技术有限公司
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Application filed by 深圳市华星光电技术有限公司 filed Critical 深圳市华星光电技术有限公司
Priority to US13/508,730 priority Critical patent/US20130208029A1/en
Publication of WO2013120305A1 publication Critical patent/WO2013120305A1/zh

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Classifications

    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control 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
    • G09G3/2092Details of a display terminals using a flat panel, the details relating to the control arrangement of the display terminal and to the interfaces thereto
    • G09G3/2096Details of the interface to the display terminal specific for a flat panel
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control 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
    • G09G3/34Control 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 by control of light from an independent source
    • G09G3/3406Control of illumination source
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2300/00Aspects of the constitution of display devices
    • G09G2300/04Structural and physical details of display devices
    • G09G2300/0421Structural details of the set of electrodes
    • G09G2300/043Compensation electrodes or other additional electrodes in matrix displays related to distortions or compensation signals, e.g. for modifying TFT threshold voltage in column driver
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2330/00Aspects of power supply; Aspects of display protection and defect management
    • G09G2330/02Details of power systems and of start or stop of display operation
    • G09G2330/026Arrangements or methods related to booting a display

Definitions

  • This invention relates to liquid crystal displays, and more particularly to an implementation of a dual mode liquid crystal display. Background technique
  • Lighting fixtures are a must-have item in the bedroom, and flat panel lights are one of the lighting fixtures. They are characterized by simple structure and low power consumption, and are increasingly favored by users. The general flat lights are mounted on the ceiling and are beautiful and practical.
  • LCD monitors have become a must-have for every family.
  • many families put a relatively small LCD monitor indoors so that they can be watched while resting in bed.
  • News, TV series, movies or entertainment programs are usually mounted on the wall or placed on the TV to take up a certain amount of bedroom space.
  • liquid crystal display can have the function of the flat light at the same time, it is not necessary to separately install the flat light, which saves space and is convenient to use, and also saves the cost for the user to purchase and install the flat light. It is necessary for the industry to improve the liquid crystal display. It has two modes of operation, but it is also easy to implement and user-friendly. Summary of the invention
  • Another object of the present invention is to provide a method for realizing a dual operation mode liquid crystal display, which is easy to realize the illumination function of the liquid crystal display having a flat panel lamp, and is convenient for the user to operate.
  • the present invention provides an implementation method of a dual operation mode liquid crystal display, which comprises the following steps:
  • Step 1 providing a liquid crystal display, the liquid crystal display comprising: a display panel, a backlight module providing a light source to the display panel, a timing control chip electrically connected to the display panel, a data bus electrically connected to the timing control chip, and Electrically connecting an enable signal source of the timing control chip, the timing control chip has a built-in picture data, the timing control chip has an enable pin electrically connected to the enable signal source, and the enable signal source has high power Flat output signal and low level input Signal
  • Step 2 The enable signal source provides a signal to the enable pin.
  • the enable signal source sends a high level output signal to the enable pin, the liquid crystal display enters a first working mode, and the display panel displays a data bus transmission.
  • the data is sent; when the enable signal source sends a low level output signal to the enable pin, the liquid crystal display enters a second working mode, and the display panel displays screen data built in the timing control chip;
  • Step 3 Control the enable signal source to switch between the high and low output signals, thereby controlling the display panel to switch between the first and second operating modes by the enable pin.
  • the enable signal source further includes an enable switch, and the enable signal source is switched between the high level output signal and the low level output signal by triggering the enable switch.
  • the trigger of the enable switch is implemented by a switch provided on the liquid crystal display.
  • the triggering of the enable switch is implemented by a push button switch of the remote controller corresponding to the liquid crystal display.
  • the timing control chip further includes a first input pin, a second input pin, and an output pin, wherein the data bus is electrically connected to the timing control chip through a first input pin of the timing control chip, and the display panel passes
  • the output pin of the timing control chip is electrically connected to the timing control chip
  • the second input pin of the timing control chip is provided with an external device interface, and is connected to the external device through the data line, and reads the screen data built in the timing control chip. write.
  • the external device interface is a USB interface or a serial interface.
  • the timing control chip has a plurality of built-in screen data.
  • the display panel controls the screen data embedded in the chip according to the setting display timing.
  • the picture data built in the timing control chip is a solid color picture or a user-defined picture.
  • the high level output signal is a 3.3V voltage signal and the low level output signal is a 0V voltage signal.
  • the first working mode is a television mode
  • the second working mode is a lighting mode
  • the implementation method of the dual working mode liquid crystal display of the present invention controls the data source displayed by the display panel by the change of the input level signal of the enable pin of the timing control chip in the liquid crystal display, thereby making the liquid crystal display selectable
  • the two working modes namely the TV mode and the lighting mode, and switching between the two working modes by controlling the signal switching of the enabling signal source are convenient to use.
  • the invention effectively integrates the liquid crystal display and the illumination panel lamp, takes up less space, has low use cost, is convenient for the user to operate, and can simultaneously set the liquid crystal display with illumination function on the ceiling, and the user can watch the television in bed.
  • the program is more conducive to fatigue and increased comfort.
  • FIG. 1 is a schematic flow chart of a method for implementing a dual-operation mode liquid crystal display according to the present invention
  • FIG. 2 is a schematic diagram of a circuit module for implementing a dual-operation mode liquid crystal display according to the present invention.
  • the present invention provides a method for implementing a dual working mode liquid crystal display, which includes the following steps:
  • Step 1 Providing a liquid crystal display
  • the liquid crystal display includes: a display panel 70, a backlight module (not shown) for providing a light source to the display panel 70, a timing control chip 60 electrically connected to the display panel 70, and data electrically connected to the timing control chip 60.
  • the bus 30 is electrically connected to the enable signal source 40 of the timing control chip 60.
  • the timing control chip 60 has a built-in picture data, and the timing control chip 60 includes an enable lead electrically connected to the enable signal source 40. Foot 61, the enable signal source 40 has a high level output signal and a low level output signal.
  • the timing control chip 60 further includes a first input pin 62, a second input pin 63, and an output pin 64.
  • the data bus 30 is electrically connected to the timing control chip 60 through the first input pin 62
  • the display panel 70 is electrically connected to the timing control chip 60 through the output pin 64.
  • the second input pin 63 of the timing control chip 60 is provided with an external device interface 100, and the timing control chip 60 passes through the external device interface 100 and the data line ( Not shown) Communication with an external device (not shown), and reading and writing of the screen data built in the timing control chip 60.
  • the external device interface 100 is a USB interface, or a serial interface.
  • the enable signal source 40 further includes an enable switch 41.
  • the enable switch 41 By triggering the enable switch 41, switching the output signal of the enable signal source 40 between the high level output signal and the low level output signal, for example, The enable switch 41 is triggered to enable the output voltage of the signal source 40 to be switched from the high-level output signal to the low-level output signal, and the enable switch 41 is triggered again to enable the signal source 40 to be output.
  • the output signal is switched from a low level output signal to a high level output signal.
  • the triggering of the enable switch 41 is implemented by the switch 51 provided on the liquid crystal display or by a push button switch of the remote controller 52 corresponding to the liquid crystal display.
  • the effective time of the enable switch 41 is 0ms to 100ms. The specific time can be determined by the specific design.
  • the high level output signal is a 3.3V voltage signal
  • the low level output signal is a 0V voltage signal.
  • Step 2 The enable signal source 40 provides a signal to the enable pin 61.
  • the enable signal source 40 sends a high level output signal to the enable pin 61
  • the liquid crystal display enters a first working mode
  • the display panel 70 displaying data transmitted from the data bus 30;
  • the enable signal source 40 sends a low level output signal to the enable pin 61
  • the liquid crystal display enters a second working mode
  • the display panel 70 displays the timing control chip 60 Picture data;
  • the first working mode is a television mode, and the second working mode is a lighting mode.
  • the first and second modes of operation can be changed as needed.
  • Step 3 Controlling the enable signal source 40 to switch between the high and low level output signals, thereby controlling the display panel 70 to switch between the first and second modes of operation by the enable pin 61.
  • the enable switch 41 is triggered by a switch 51 provided on the liquid crystal display or a push button switch of the remote controller 52 corresponding to the liquid crystal display, and the output signal of the enable signal source 40 is output at a high level and a low level output. Switching between signals causes the input signal on the enable pin 61 of the timing control chip 60 to switch between the high level output signal and the low level output signal when the enable pin 61 of the timing control chip 60 is When the low-level output signal is controlled, the timing control chip 60 sends the built-in screen data pre-stored by the timing control chip 60 to the source driver 80, and sends a control signal to the gate driver 90, thereby coordinating the operation of the source driver 80 and the gate driver 90, and the display panel 70 The built-in picture data pre-stored by the timing control chip 60 is displayed, and the liquid crystal display enters a second working mode, that is, an illumination mode; when the enable pin 61 of the timing control chip 60 is controlled by a high level output signal, the timing control chip 60 The data transmitted from the data
  • the timing control chip 60 can be configured with a plurality of types of picture data, and the plurality of picture data built in the timing control chip 60 can be modified by an external device.
  • the picture data can be orange, yellow, blue, and purple.
  • Solid color screen data which can also be one or more photo data.
  • the timing control chip 60 is in the illumination mode, the screen data is displayed on the display panel 70.
  • the display mode may continuously display one screen for the display panel, or may alternately display multiple screens, such as red orange, yellow, green, blue, purple, and solid colors.
  • the screens are sequentially displayed, or sequentially display a plurality of photos pre-stored by the user in the timing control chip 60, and have an electronic photo album function, and the screen display side
  • the mode and screen switching time can be set by the corresponding changeover switch 51, or the remote controller 52, etc., and the screen switching time in this embodiment is preferably 1 minute.
  • it can also be connected to an external device through a USB interface or a serial interface disposed on the second input pin 63 of the timing control chip 60, thereby providing external picture data, so that the liquid crystal display is used as a lighting device. Not only can it provide illumination, but it can also display different images for added comfort.
  • the biggest difference between a liquid crystal display and a flat panel light is: the liquid crystal display needs to use a liquid crystal display panel, and the flat panel light only needs a light transmissive plate, but the liquid crystal display panel can also transmit light without affecting the lighting effect, then the above method can be used
  • the liquid crystal display and the flat panel light are integrated to form a liquid crystal display with illumination function, which not only realizes the function integration of the bedroom articles, but also reduces the space and the use cost.
  • the liquid crystal display can be disposed on the wall, the TV refuses, and the ceiling. When the LCD monitor is placed on the ceiling, the user can lie in bed to watch the TV program, increasing comfort.
  • the implementation method of the dual working mode liquid crystal display of the present invention controls the data source displayed by the display panel through the change of the input level signal of the enable pin of the timing control chip in the liquid crystal display, thereby achieving the liquid crystal display having the selectable
  • the two working modes namely the TV mode and the lighting mode, and switching between the two working modes by controlling the signal switching of the enabling signal source are convenient to use.
  • the invention effectively integrates the liquid crystal display and the illumination panel lamp, reduces the occupied space, has low use cost and is convenient for the user to operate, and can simultaneously set the liquid crystal display with illumination function on the ceiling, and the user can watch the television in bed.
  • the program is more conducive to fatigue and increased comfort.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Control Of Indicators Other Than Cathode Ray Tubes (AREA)

Abstract

一种双工作模式液晶显示器的实现方法,其包括以下步骤:步骤1、提供液晶显示器,包括显示面板(70)、时序控制芯片(60)及使能信号源(40),该时序控制芯片(60)具有与使能信号源(40)电性连接的使能引脚(61),该使能信号源(40)具有高电平与低电平输出信号;步骤2、使能信号源(40)提供信号给使能引脚(61),当使能信号源(40)发出高电平输出信号到该使能引脚(61)时,该液晶显示器进入第一工作模式,该显示面板(70)显示数据总线(30)传来的数据;当使能信号源(40)发出低电平输出信号到该使能引脚(61)时,该液晶显示器进入第二工作模式,该显示面板(70)显示时序控制芯片(60)内置的画面数据;步骤3、控制使能信号源(40)使其在高、低电平输出信号之间切换,从而通过该使能引脚(61)控制该显示面板(70)在第一与第二工作模式间切换。

Description

双工作模式液晶显示器的实现方法 技术领域
本发明涉及液晶显示器, 尤其涉及双工作模式液晶显示器的实现方 法。 背景技术
照明灯具是卧室中的必备品, 而平板灯是照明灯具中的一种, 其以结 构简单, 耗电量少等优点, 也越来越受到广大用户的青睐。 一般的平板灯 都镶嵌在天花板上, 美观实用。
随着社会的发展, 液晶显示器几乎成为各个家庭的必备品, 除了放置 于客厅的大尺寸液晶显示器外, 许多家庭都会在室内放置一台相对小尺寸 液晶显示器, 以便在床上休息时也可观看新闻、 电视剧、 电影或娱乐节 目, 然而, 卧室内的液晶显示器一般装于墙体上或置于电视拒上, 占用了 一定的卧室空间。
如果可以让液晶显示器同时具有平板灯的功能, 则可以不需要单独安 装平板灯, 节省空间, 方便使用, 同时也节约了使用者购买与安装平板灯 的成本, 业界有必要对液晶显示器进行改进, 使其具备两种工作模式, 而 且还要易于实现, 且便于使用者操作。 发明内容
本发明的目的在于提供一种双工作模式液晶显示器的实现方法, 其使 液晶显示器具有平板灯的照明功能, 将液晶显示器与照明平板灯有效的整 合在一起, 占用空间少, 使用成本低。
本发明的另一目的在于提供一种双工作模式液晶显示器的实现方法, 其容易实现液晶显示器具有平板灯的照明功能, 同时方便使用者操作。
为实现上述目的, 本发明提供一种双工作模式液晶显示器的实现方 法, 其包括以下步骤:
步骤 1、 提供液晶显示器, 所述液晶显示器包括: 显示面板、 提供光 源给显示面板的背光模组、 电性连接于显示面板的时序控制芯片、 电性连 接于该时序控制芯片的数据总线、 及电性连接该时序控制芯片的使能信号 源, 该时序控制芯片内置有一种画面数据, 该时序控制芯片具有与使能信 号源电性连接的使能引脚, 该使能信号源具有高电平输出信号与低电平输 出信号;
步骤 2、 使能信号源提供信号给使能引脚, 当使能信号源发出高电平 输出信号到该使能引脚时, 该液晶显示器进入第一工作模式, 该显示面板 显示数据总线传来的数据; 当使能信号源发出低电平输出信号到该使能引 脚时, 该液晶显示器进入第二工作模式, 该显示面板显示时序控制芯片内 置的画面数据;
步骤 3、 控制使能信号源使其在高、 低电平输出信号之间切换, 从而 通过该使能引脚控制该显示面板在第一与第二工作模式间切换。
所述使能信号源还包括一使能开关, 通过触发该使能开关实现使能信 号源在高电平输出信号与低电平输出信号之间的切换。
所述使能开关的触发由设于该液晶显示器上的切换开关实现。
所述使能开关的触发由该液晶显示器对应的遥控器的一按键开关实 现。
所述时序控制芯片还包括第一输入引脚、 第二输入引脚及输出引脚, 所述数据总线通过时序控制芯片的第一输入引脚与时序控制芯片电性连 接, 所述显示面板通过时序控制芯片的输出引脚与时序控制芯片电性连 接, 所述时序控制芯片第二输入引脚设有一外部设备接口, 通过数据线与 外部设备进行连接, 对时序控制芯片内置的画面数据进行读写。
所述外部设备接口为 USB接口、 或串行接口。
所述时序控制芯片内置有多种画面数据, 当该液晶显示器进入第二工 作模式时, 该显示面板依设定显示时序控制芯片内置的画面数据。
所述时序控制芯片内置的画面数据为纯色画面、 或为用户自定义的照 片。
所述高电平输出信号为 3.3V电压信号, 低电平输出信号为 0V电压信 号。
所述第一工作模式为电视模式, 第二工作模式为照明模式。
本发明的有益效果: 本发明双工作模式液晶显示器的实现方法通过液 晶显示器中时序控制芯片的使能引脚的输入电平信号的变化控制显示面板 显示的数据来源, 从而使液晶显示器具备可选择的两种工作模式, 即电视 模式与照明模式, 而且通过控制使能信号源的信号切换来实现在两种工作 模式间切换, 使用方便。 本发明将液晶显示器与照明平板灯有效的整合在 一起, 占用空间少, 使用成本低, 方便使用者操作, 同时可以将该具有照 明功能的液晶显示器镶嵌于天花板上, 用户可以躺在床上观看电视节目, 更有利于緩解疲劳, 增加舒适度。 为了能更进一步了解本发明的特征以及技术内容, 请参阅以下有关本 发明的详细说明与附图, 然而附图仅提供参考与说明用, 并非用来对本发 明加以限制。 附图说明
下面结合附图, 通过对本发明的具体实施方式详细描述, 将使本发明 的技术方案及其它有益效果显而易见。
附图中,
图 1为本发明双工作模式液晶显示器的实现方法的流程示意图; 图 2为本发明双工作模式液晶显示器的实现方法的电路模块示意图。 具体实施方式
为更进一步阐述本发明所釆取的技术手段及其效果, 以下结合本发明 的优选实施例及其附图进行详细描述。
请参阅图 1 及图 2, 本发明提供一种双工作模式液晶显示器的实现方 法, 其包括以下步骤:
步骤 1、 提供液晶显示器;
所述液晶显示器包括: 显示面板 70、 提供光源给显示面板 70 的背光 模组(未图示) 、 电性连接于显示面板 70 的时序控制芯片 60、 电性连接 于该时序控制芯片 60的数据总线 30、 及电性连接该时序控制芯片 60的使 能信号源 40, 该时序控制芯片 60 内置有一种画面数据, 该时序控制芯片 60 包括一与使能信号源 40 电性连接的使能引脚 61 , 该使能信号源 40具 有高电平输出信号与低电平输出信号。
所述时序控制芯片 60还包括第一输入引脚 62、 第二输入引脚 63及输 出引脚 64, 该数据总线 30通过该第一输入引脚 62与时序控制芯片 60电 性连接, 显示面板 70通过该输出引脚 64与时序控制芯片 60 电性连接, 该时序控制芯片 60的第二输入引脚 63设有一外部设备接口 100, 该时序 控制芯片 60 通过该外部设备接口 100 及数据线 (未图示) 与外部设备 (未图示)进行通讯连接, 进而对时序控制芯片 60 内置的画面数据进行 读写。 该外部设备接口 100为 USB接口、 或串行接口。
所述使能信号源 40还包括一使能开关 41 , 通过触发该使能开关 41实 现使能信号源 40 的输出信号在高电平输出信号与低电平输出信号之间的 切换, 例如, 触发该使能开关 41 , 使能信号源 40输出电压由高电平输出 信号切换为低电平输出信号, 再次触发该使能开关 41 , 使能信号源 40输 出信号由低电平输出信号切换为高电平输出信号。 所述使能开关 41 的触 发由设于该液晶显示器上的切换开关 51 实现或由该液晶显示器对应的遥 控器 52 的一按键开关实现, 所述使能开关 41 的有效时间为 0ms 至 100ms, 具体时间可由具体设计决定。 优选高电平输出信号为 3.3V电压信 号, 低电平输出信号为 0V电压信号。
步骤 2、 使能信号源 40提供信号给使能引脚 61 , 当使能信号源 40发 出高电平输出信号到该使能引脚 61 时, 该液晶显示器进入第一工作模 式, 该显示面板 70显示数据总线 30传来的数据; 当使能信号源 40发出 低电平输出信号到该使能引脚 61 时, 该液晶显示器进入第二工作模式, 该显示面板 70显示时序控制芯片 60内置的画面数据; 所述第一工作模式 为电视模式, 第二工作模式为照明模式。 第一与第二工作模式可根据需要 进行更改设定。
步骤 3、 控制使能信号源 40使其在高、 低电平输出信号之间切换, 从 而通过该使能引脚 61控制该显示面板 70在第一与第二工作模式间切换。
通过设于该液晶显示器上的切换开关 51 或由该液晶显示器对应的遥 控器 52的一按键开关触发该使能开关 41 , 使能信号源 40输出信号在高电 平输出信号与低电平输出信号之间切换, 从而使得时序控制芯片 60 的使 能引脚 61 上的输入信号在高电平输出信号与低电平输出信号之间切换, 当该时序控制芯片 60的使能引脚 61在低电平输出信号控制时, 该时序控 制芯片 60向源驱动 80发送时序控制芯片 60预存的内置画面数据, 向栅 驱动 90发出控制信号, 从而协调源驱动 80和栅驱动 90工作, 显示面板 70显示时序控制芯片 60预存的内置画面数据, 该液晶显示器进入第二工 作模式, 即照明模式; 当该时序控制芯片 60的使能引脚 61在高电平输出 信号控制时, 该时序控制芯片 60向源驱动 80发送数据总线 30传来的数 据, 向栅驱动 90发出控制信号, 从而协调源驱动 80和栅驱动 90工作, 显示面板 70显示数据总线 30传来的数据, 该液晶显示器进入第一工作模 式, 即电视模式。
值得一提的是, 所述时序控制芯片 60 可内置有多种画面数据, 通过 外部设备可以对该时序控制芯片 60 内置的多种画面数据进行修改, 例 如, 该画面数据可为橙黄绿蓝靛紫纯色画面数据, 也可为一张或多张照片 数据。 当该时序控制芯片 60处于照明模式时, 通过显示面板 70显示该些 画面数据, 该显示方式可以为显示面板持续显示一种画面, 也可以为多个 画面交替显示, 如红橙黄绿蓝靛紫纯色画面依次显示, 或依次显示用户预 存到时序控制芯片 60 中的多张照片, 具备电子相册功能, 该画面显示方 式与画面切换时间可以通过相应切换开关 51、 或遥控器 52等进行设定, 本实施例中画面切换时间优选 1 分钟。 同时, 还可以通过设置于该时序控 制芯片 60 第二输入引脚 63 上的 USB接口、 或串行接口与外部设备连 接, 进而提供外置的画面数据, 使得该液晶显示器在做照明灯使用时, 不 但能提供光照, 同时还可以显示不同的画面, 增加舒适度。
液晶显示器与平板灯的最大区别在于: 液晶显示器需要使用到液晶显 示面板, 而平板灯只需要透光板, 但液晶显示面板同样可以透光, 并不影 响照明效果, 那么利用上述方式就可以将液晶显示器与平板灯整合在一起 形成一种具有照明功能的液晶显示器, 这样不但实现了卧室用品的功能整 合, 减少了占用空间及使用成本, 该液晶显示器可设置于墙体、 电视拒、 天花板上, 当该液晶显示器设置于天花板上, 用户可以躺在床上观看电视 节目, 增加舒适度。
综上所述, 本发明双工作模式液晶显示器的实现方法, 通过液晶显示 器中时序控制芯片的使能引脚的输入电平信号的变化控制显示面板显示的 数据来源, 从而达到液晶显示器具有可选择的两种工作模式, 即电视模式 与照明模式, 而且通过控制使能信号源的信号切换来实现在两种工作模式 间切换, 使用方便。 本发明将液晶显示器与照明平板灯有效的整合在一 起, 减少占用空间, 使用成本低, 方便使用者操作, 同时可以将该具有照 明功能的液晶显示器镶嵌于天花板上, 用户可以躺在床上观看电视节目, 更有利于緩解疲劳, 增加舒适度。
以上所述, 对于本领域的普通技术人员来说, 可以根据本发明的技术 方案和技术构思作出其他各种相应的改变和变形, 而所有这些改变和变形 都应属于本发明权利要求的保护范围。

Claims

权 利 要 求
1、 一种双工作模式液晶显示器的实现方法, 包括以下步骤: 步骤 1、 提供液晶显示器, 所述液晶显示器包括: 显示面板、 提供光 源给显示面板的背光模组、 电性连接于显示面板的时序控制芯片、 电性连 接于该时序控制芯片的数据总线、 及电性连接该时序控制芯片的使能信号 源, 该时序控制芯片内置有一种画面数据, 该时序控制芯片具有与使能信 号源电性连接的使能引脚, 该使能信号源具有高电平输出信号与低电平输 出信号;
步骤 2、 使能信号源提供信号给使能引脚, 当使能信号源发出高电平 输出信号到该使能引脚时, 该液晶显示器进入第一工作模式, 该显示面板 显示数据总线传来的数据; 当使能信号源发出低电平输出信号到该使能引 脚时, 该液晶显示器进入第二工作模式, 该显示面板显示时序控制芯片内 置的画面数据;
步骤 3、 控制使能信号源使其在高、 低电平输出信号之间切换, 从而 通过该使能引脚控制该显示面板在第一与第二工作模式间切换。
2、 如权利要求 1 所述的双工作模式液晶显示器的实现方法, 其中, 所述使能信号源还包括一使能开关, 通过触发该使能开关实现使能信号源 在高电平输出信号与低电平输出信号之间的切换。
3、 如权利要求 2 所述的双工作模式液晶显示器的实现方法, 其中, 所述使能开关的触发由设于该液晶显示器上的切换开关实现。
4、 如权利要求 2 所述的双工作模式液晶显示器的实现方法, 其中, 所述使能开关的触发由该液晶显示器对应的遥控器的一按键开关实现。
5、 如权利要求 1 所述的双工作模式液晶显示器的实现方法, 其中, 所述时序控制芯片还包括第一输入引脚、 第二输入引脚及输出引脚, 所述 数据总线通过时序控制芯片的第一输入引脚与时序控制芯片电性连接, 所 述显示面板通过时序控制芯片的输出引脚与时序控制芯片电性连接, 所述 时序控制芯片第二输入引脚设有一外部设备接口, 通过数据线与外部设备 进行连接, 对时序控制芯片内置的画面数据进行读写。
6、 如权利要求 5 所述的双工作模式液晶显示器的实现方法, 其中, 所述外部设备接口为 USB接口、 或串行接口。
7、 如权利要求 1 所述的双工作模式液晶显示器的实现方法, 其中, 所述时序控制芯片内置有多种画面数据, 当该液晶显示器进入第二工作模 式时, 该显示面板依设定显示时序控制芯片内置的画面数据。
8、 如权利要求 1 所述的双工作模式液晶显示器的实现方法, 其中, 所述时序控制芯片内置的画面数据为纯色画面、 或为用户自定义的照片。
9、 如权利要求 1 所述的双工作模式液晶显示器的实现方法, 其中, 所述高电平输出信号为 3.3V电压信号, 低电平输出信号为 0V电压信号。
10、 如权利要求 1 所述的双工作模式液晶显示器的实现方法, 其中, 所述第一工作模式为电视模式, 第二工作模式为照明模式。
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