WO2012139337A1 - 开关机图像的显示方法 - Google Patents
开关机图像的显示方法 Download PDFInfo
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- WO2012139337A1 WO2012139337A1 PCT/CN2011/076906 CN2011076906W WO2012139337A1 WO 2012139337 A1 WO2012139337 A1 WO 2012139337A1 CN 2011076906 W CN2011076906 W CN 2011076906W WO 2012139337 A1 WO2012139337 A1 WO 2012139337A1
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- image data
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/40—Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
- H04N21/47—End-user applications
- H04N21/482—End-user interface for programme selection
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/40—Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
- H04N21/43—Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
- H04N21/443—OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
- H04N21/4432—Powering on the client, e.g. bootstrap loading using setup parameters being stored locally or received from the server
Definitions
- the present invention relates to the field of electronic display devices, and in particular, to a method for displaying an image of a switch. Background technique
- Traditional TV and boot LOGO there are static or dynamic pictures, or pull-screen effects; Internet TV, computer TV, or general smart TV, you need to turn on the TV logo first, then run the smart module.
- the boot screen the entire boot interface of the intelligent module includes self-test, automatic update and automatic login. The user needs to wait for several stages, and the duration of each stage is not fixed.
- Traditional TV sets have relatively simple functions, relatively small amount of stored data, and short shutdown time. Generally, there is no design shutdown screen. A few TV sets have static or dynamic pictures.
- Computer TV integrated TVs and smart TVs require a long shutdown process. , including waiting for all processes to close, the program to be automatically updated, and then shutting down. Also during the shutdown process, the duration of each phase is not fixed.
- a method for setting a boot LOGO is provided in a Chinese patent application with the application number of CN200910032659.4, characterized in that: the method comprises the following steps: a. providing a television set comprising a microprocessor and the micro The processor is electrically connected to the control module and the display module; b. the TV is turned on; c. Initializes and exits the LOGO enable variable and the boot enable variable; d. The microprocessor controls the display module to display a blue screen and displays the boot LOGO Identification; e. Assign value to the power-on enable variable, exit the display of the boot LOGO logo; f. The microprocessor determines whether there is a channel signal; g.
- the microprocessor controls the display module to display a black screen or a blue screen; h.
- the processor controls the display module to cyclically display the boot LOGO; i. If there is a television signal in step f or h, the television section is played.
- the displayed manufacturer I)GO can be exited when the user can boot.
- the boot LOGO described above only serves to promote the advertisement for the manufacturer.
- the process of the smart TV on/off is divided into several stages, including, for example, self-test, system update, and the like.
- the self-test process will be displayed on the screen of the smart TV.
- the displayed content will cause the user to think that the TV has failed. Even if the user understands the process, it often appears at the time of booting. This kind of picture can also be annoying to the user. Summary of the invention
- a television (especially a smart TV) displays a defect in a system configuration process such as a self-test and a system update when the machine is turned on and off.
- the invention provides a display method for the image of the switch machine, so as to solve how the image is displayed when the television (especially the smart TV) is turned on and off, so that the technical problem of the system configuration process such as self-test and system update is not displayed. .
- the invention provides a display method for an image of a switch machine, comprising:
- Step S1 After the power-on operation or the power-off operation is triggered, the first processing module sends the image data stored in the first storage module to the second processing module, and the second processing module stores the received image data in the second storage module. Sending image data to a display device for display on the display device;
- Step S2 After the configuration operation starts, the second processing module sends the image data stored in the second storage module to the display device for display on the display device.
- the method further includes: Step S3: If the booting operation is triggered in step S1, when the dispensing operation ends, the second processing module no longer sends the image data stored in the second storage module to The device is displayed such that the content of the image data is no longer displayed on the display device.
- Step S2 the method further comprises: Step S3: If the shutdown operation is triggered in step S1, the display device is turned off when the preparation operation ends.
- the step S1 further includes: before the first processing module sends the image data stored in the first storage module to the second processing module, the first processing module performs format conversion on the image data.
- the signals into which the image data is formatted include: LVDS, Displayport, VbyOne, RGB, 656, HDMI, and TS stream signals.
- the step SI further comprises: before the second processing module stores the image data in the second storage module, the second processing module processes the image data to be suitable for display on the display device.
- the processing method performed by the second processing module on the image data includes frequency multiplication, motion Compensation, interlaced, progressive, and 3D conversion.
- the configuration operation includes a system self-test operation, an automatic update operation, an automatic login operation, and a shutdown system operation.
- the first storage module comprises: a flash memory, a micro hard disk
- the second storage module comprises: a DDR memory
- the image data comprises: an image file in the format of BMP, JPEG, GIF or PNG.
- the display device comprises: a PDP display, an LCD display, an LED display, and an OLED display.
- the image of the switch machine of the invention can be displayed when the television (especially the smart TV) is turned on and off, so that the system configuration process such as self-test and system update is not displayed, and the process of the switch is guaranteed to be normal.
- the system configuration process such as self-test and system update
- it provides a simple and clear screen of the switch, giving the user a better experience, thus using a simple method, changing the complex on-off process interface of the smart TV, and improving the user experience.
- FIG. 1 is a flow chart showing a display method of a switch image according to an embodiment of the present invention
- FIG. 2 is a flowchart of a display method of a boot image according to an embodiment of the present invention
- FIG. 3 is a shutdown according to another embodiment of the present invention.
- FIG. 1 is a flow chart of a method of displaying an image of a switch machine in accordance with an embodiment of the present invention.
- Figure 1 is a flow chart of a method of displaying an image of a switch machine in accordance with an embodiment of the present invention.
- Step 100 After the power-on operation or the shutdown operation is triggered, the first processing module sends the image data stored in the first storage module to the second processing module, and the second processing module stores the received image data in the second storage module.
- the image data is sent to the display device for display on the display device.
- the first processing module may perform format conversion on the image data, for example, an image in the format of BMP, JPEG, GIF or PNG, before the first processing module sends the image data stored in the first storage module to the second processing module. Convert files to LVDS, Displayport, VbyOne, RGB, 656, HDMI or TS streams.
- the second processing module may perform processing such as frequency multiplication, motion compensation, interlaced variable progressive, and 3D conversion on the image data, and the format of the processed signal It can be LVD S, MiniLVD S or VbyOne (the process can change the format or not change the format) to be suitable for display on the display device.
- processing such as frequency multiplication, motion compensation, interlaced variable progressive, and 3D conversion on the image data, and the format of the processed signal It can be LVD S, MiniLVD S or VbyOne (the process can change the format or not change the format) to be suitable for display on the display device.
- Step 102 After the configuration operation starts, the second processing module sends the image data stored in the second storage module to the display device for display on the display device.
- the first processing module can convert the image data into a signal format of an LVDS, Displayport, VbyOne, RGB, 656, HDMI or TS stream.
- Configuration operations include system self-test operations, automatic update operations, automatic login operations, and system shutdown operations.
- the first storage module may include: a flash memory, a micro hard disk, and the second storage module may include: a DDR memory.
- the image data can include: image files in the format BMP, JPEG, GIF or PNG.
- Display devices can include: PDP display, LCD display, LED display, OLED display.
- the shutdown operation can be a standby operation.
- the content of the image data may be LOGO or other patterns.
- the image of the switch machine of the invention can be displayed when the television (especially the smart TV) is turned on and off, so that the system configuration process such as self-test and system update is not displayed, and the process of the switch is guaranteed to be normal.
- the system configuration process such as self-test and system update
- it provides a simple and clear screen of the switch, giving the user a better experience, thus using a simple method, changing the complex on-off process interface of the smart TV, and improving the user experience.
- FIG. 2 is a flow chart of a method of displaying a boot image in accordance with one embodiment of the present invention. In the picture
- Step 200 After the booting operation is triggered, the first processing module sends the image data stored in the first storage module to the second processing module, and the second processing module stores the received image data in the second storage module and stores the image data. Send to the display device for display on the display device.
- the first processing module may perform format conversion on the image data, for example, an image in the format of BMP, JPEG, GIF, or PNG, before the first processing module sends the image data stored in the first storage module to the second processing module. Convert files to LVDS, Displayport, VbyOne, RGB, 656, HDMI or TS streams.
- the second processing module may perform processing such as frequency multiplication, motion compensation, interlaced variable progressive, and 3D conversion on the image data, and the format of the processed signal It can be LVDS, MiniLVDS or VbyOne (the process can change the format or not change the format) to be suitable for display on the display device.
- processing such as frequency multiplication, motion compensation, interlaced variable progressive, and 3D conversion on the image data, and the format of the processed signal It can be LVDS, MiniLVDS or VbyOne (the process can change the format or not change the format) to be suitable for display on the display device.
- the processing module converts the JPEG format LOGO image file stored in the flash memory into an unprocessed LVDS signal, since the unprocessed LVDS signal cannot be directly Displaying on a PDP display, an LCD display, an LED display, an OLED display, therefore, the use of an LVDS signal processing chip to pass an unprocessed LVDS signal through a process such as frequency doubling is well known to those skilled in the art.
- the processed LVDS signal will be stored in the DDR memory directly on the PDP display, LCD display, LED display, OLED display, and in the PDP display, LCD display, LED display I)GO is displayed on the OLED display.
- Step 202 After the configuration operation starts, the second processing module sends the image data stored in the second storage module to the display device for display on the display device.
- the TV starts self-test, system update, and automatic login.
- the above processing modules cannot work at the same time.
- a signal processing chip such as an LVDS chip needs to have a DDR.
- the signals stored in the memory are sent to the PDP display, LCD display, LED display, and OLED display to display the LOGO and cover the above self-test, system update and automatic login process.
- Step 204 When the preparation operation ends, the second processing module no longer sends the image data stored in the second storage module to the display device, so that the content of the image data is no longer displayed on the display device.
- the TV's self-test, system update, and automatic login are completed, the LOGO is no longer displayed on the display device, and the TV program starts to be displayed.
- the television (especially the smart TV) can display the image when the computer is turned on, so that the system configuration process such as self-test and system update is not displayed, and the normal operation of the on-off process is ensured.
- the system configuration process such as self-test and system update
- the normal operation of the on-off process is ensured.
- providing a simple and clear boot screen giving the user a better experience, thus using a simple method, changing the complex boot process interface of the smart TV, and improving the user experience.
- FIG. 3 is a flow chart of a method of displaying a shutdown image in accordance with another embodiment of the present invention.
- Figure 3 is a flow chart of a method of displaying a shutdown image in accordance with another embodiment of the present invention.
- Step 300 After the shutdown operation is triggered, the first processing module sends the image data stored in the first storage module to the second processing module, and the second processing module stores the received image data in the second storage module and stores the image data. Send to the display device for display on the display device.
- the first processing module may perform format conversion on the image data, for example, an image in the format of BMP, JPEG, GIF, or PNG, before the first processing module sends the image data stored in the first storage module to the second processing module. Convert files to LVDS, Displayport, VbyOne, RGB, 656, HDMI or TS streams.
- the second processing module may perform processing such as frequency multiplication, motion compensation, interlaced variable progressive, and 3D conversion on the image data, and the format of the processed signal It can be LVDS, MiniLVDS or VbyOne (the process can change the format or not change the format) to be suitable for display on the display device.
- processing such as frequency multiplication, motion compensation, interlaced variable progressive, and 3D conversion on the image data, and the format of the processed signal It can be LVDS, MiniLVDS or VbyOne (the process can change the format or not change the format) to be suitable for display on the display device.
- the module converts the JPEG format LOGO image file stored in the flash memory into an unprocessed LVDS signal, since the unprocessed LVDS signal cannot be directly displayed on the PDP display, the LCD display, the LED display, or the OLED display. Therefore, the LVDS signal processing chip is used to display the unprocessed LVDS signal directly on the PDP display, the LCD display, the LED display, and the OLED display, such as frequency doubling processing, which is well known to those skilled in the art. signal. Then, the processed LVDS signal will be stored in the DDR memory directly on the PDP display, LCD display, LED display, OLED display, and in the PDP display, LCD display, LED display I)GO is displayed on the OLED display.
- Step 302 After the configuration operation starts, the second processing module sends the image data stored in the second storage module to the display device for display on the display device.
- the TV starts to shut down the system.
- the above processing modules cannot work at the same time.
- the LVDS signal processing chip needs to send the signals stored in the DDR memory to the PDP display, the LCD display, the LED display, and the OLED.
- the LOGO is displayed to cover the above process of shutting down the system.
- Step 304 When the dispensing operation ends, the display device is turned off. For example, when the system shutdown operation ends, the PDP display, LCD display, LED display, and OLED display are turned off.
- the above LOGO is only an example, and is not intended to be limited, and any desired pattern can be displayed when the machine is turned on and off.
- the display method of the shutdown image of the invention the image can be displayed when the television (especially the smart TV) is turned off, so that the process of system update, system shutdown, etc. is not displayed, and the process of ensuring the normal operation of the switch is provided.
- the simple and clear shutdown screen gives the user a better experience, thus using a simple method to change the complex boot process interface of the smart TV, which improves the user experience.
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Description
开关机图像的显示方法
技术领域
本发明涉及电子显示装置领域,尤其涉及一种开关机图像的显示方法。 背景技术
传统电视及的开机 LOGO, 有静态或是动态的画面, 或者是拉幕式效 果; 网络电视、 电脑电视一体机, 或是一般的智能电视, 则是需要先开启 电视机 LOGO, 再运行智能模块的开机画面, 智能模块的整个开机界面包 括自检、 自动更新及自动登录, 用户需要等待几个阶段, 并且各阶段持续 时间并不固定。 传统电视机因为功能比较简单、 存储数据量比较小、 关机 时间短, 一般没有设计关机画面, 少数电视机会有静态或是动态的画面; 电脑电视一体机、 智能电视, 则需要比较漫长的关机过程, 包括等待所有 进程关闭、 程序自动更新完毕, 然后关机, 同样在关机过程中, 各阶段持 续时间不固定。
在申请号为 CN200910032659.4 的中国专利申请中提供了一种设置开 机 LOGO的方法,其特征在于: 所述方法包括如下步骤: a. 提供一电视机, 其包括一微处理器及与该微处理器电性连接的控制模组及显示模组; b. 电 视机开机; c. 初始化退出 LOGO使能变量和开机使能变量; d. 微处理器 控制显示模组显示蓝屏,并显示开机 LOGO标识; e. 为开机使能变量赋值, 退出开机 LOGO标识的显示; f. 微处理器判断是否有频道信号; g. 若无 信号, 微处理器控制显示模组显示黑屏或蓝屏; h. 微处理器控制显示模组 循环显示开机 LOGO; i. 若步骤 f或 h中, 若有电视信号, 则播放电视节 。
利用上述方法, 可以使得用户能够开机的时候退出所显示出的厂家 I )GO。
然而,上面所描述的开机 LOGO只起到了为厂家进行广告宣传的作用, 目前智能电视开关机过程分成好几个阶段, 包括比如自检、 系统更新等等,
在自检进行过程中, 会在智能电视的屏幕上显示出自检过程, 在初次使用 时, 所显示出的内容会令用户认为电视出现了故障, 即使用户了解该过程, 在开机时经常出现这种画面也会令用户感到厌烦。 发明内容
针对现有技术中, 电视(尤其是智能电视)在开关机时会显示出自检、 系统更新等系统配置过程的缺陷。 本发明提出了一种开关机图像的显示方 法, 以解决如何在电视(尤其是智能电视) 在开关机时会显示出图像, 从 而不会显示出自检、 系统更新等系统配置过程的技术问题。
本发明提出了一种开关机图像的显示方法, 包括:
步骤 S1 : 开机操作或关机操作触发后, 第一处理模块将第一存储模块 中存储的图像数据发送给第二处理模块, 第二处理模块将接收到的图像数 据存储在第二存储模块中并将图像数据发送给显示设备, 以在显示设备上 进行显示; 以及
步骤 S2: 配置操作开始后, 第二处理模块将第二存储模块中存储的图 像数据发送给显示设备, 以在显示设备上进行显示。
优选地, 在步骤 S2之后, 进一步包括: 步骤 S3 : 如果在步骤 S1中触 发的是开机操作, 则当配制操作结束时, 第二处理模块不再将第二存储模 块中存储的图像数据发送给显示设备, 从而使得显示设备上不再显示图像 数据的内容。
优选地, 在步骤 S2之后, 进一步包括: 步骤 S3 : 如果在步骤 S1中触 发的是关机操作, 则当配制操作结束时, 显示设备关闭。
优选地, 步骤 S1还包括: 在第一处理模块将第一存储模块中存储的图 像数据发送给第二处理模块之前,第一处理模块对图像数据进行格式转换。
优选地, 图像数据被格式转换成的信号包括: LVDS、 Displayport, VbyOne、 RGB , 656、 HDMI以及 TS流信号。
优选地, 步骤 SI还包括: 在第二处理模块将图像数据存储在第二存储 模块之前, 第二处理模块对图像数据进行处理, 以适于在显示设备上显示。
优选地, 第二处理模块对图像数据所进行的处理方式包括倍频、 运动
补偿、 隔行变逐行以及 3D转换。
优选地, 其特征在于, 配置操作包括系统自检操作、 自动更新操作、 自动登录操作以及关闭系统操作。
优选地, 其特征在于, 第一存储模块包括: 闪存、 微硬盘, 第二存储 模块包括: DDR 存储器, 并且图像数据包括: 格式为 BMP、 JPEG, GIF 或者 PNG的图像文件。
优选地,显示设备包括: PDP显示屏、 LCD显示屏、 LED显示屏、 OLED 显示屏。
通过本发明的开关机图像的显示方法, 可以在电视(尤其是智能电视) 在开关机时会显示出图像, 从而不会显示出自检、 系统更新等系统配置过 程, 在保证开关机过程正常工作的同时, 提供简单明了的开关机画面, 给 用户更好的体验, 从而使用简易的方法, 改变了智能电视的复杂的开关机 过程界面, 提升了用户体验感。
本发明的其它特征和优点将在随后的说明书中阐述, 并且, 部分地从 说明书中变得显而易见, 或者通过实施本发明而了解。 本发明的目的和其 他优点可通过在所写的说明书、 权利要求书、 以及附图中所特别指出的结 构来实现和获得。 附图说明
附图用来提供对本发明的进一步理解, 并且构成说明书的一部分, 与 本发明的实施例一起用于解释本发明, 并不构成对本发明的限制。 在附图 中:
图 1是根据本发明实施例的开关机图像的显示方法的流程图; 图 2是根据本发明一个实施例的开机图像的显示方法的流程图; 图 3是根据本发明另一个实施例的关机图像的显示方法的流程图。 具体实施方式
以下结合附图对本发明的优选实施例进行说明, 应当理解, 此处所描 述的优选实施例仅用于说明和解释本发明, 并不用于限定本发明。
图 1 是根据本发明实施例的开关机图像的显示方法的流程图。 在图 1 中:
步骤 100: 开机操作或关机操作触发后, 第一处理模块将第一存储模 块中存储的图像数据发送给第二处理模块, 第二处理模块将接收到的图像 数据存储在第二存储模块中并将图像数据发送给显示设备, 以在显示设备 上进行显示。 其中, 在第一处理模块将第一存储模块中存储的图像数据发 送给第二处理模块之前, 第一处理模块可以对图像数据进行格式转换, 例 如将格式为 BMP、 JPEG , GIF 或者 PNG 的图像文件转换为 LVDS、 Displayport, VbyOne、 RGB , 656、 HDMI或者 TS流的信号。 然后, 在第 二处理模块将图像数据存储在第二存储模块之前, 第二处理模块可以对图 像数据进行诸如倍频、 运动补偿、 隔行变逐行以及 3D转换的处理, 经过处 理的信号的格式可以是 LVD S、 MiniLVD S或者 VbyOne (处理过程可以改 变格式也可以不改变格式) , 以适于在显示设备上显示。
步骤 102: 配置操作开始后, 第二处理模块将第二存储模块中存储的 图像数据发送给显示设备, 以在显示设备上进行显示。
其中, 第一处理模块可以将图像数据转换成 LVDS、 Displayport , VbyOne, RGB , 656、 HDMI或者 TS流的信号格式。 配置操作包括系统自 检操作、 自动更新操作、 自动登录操作以及关闭系统操作。 第一存储模块 可以包括: 闪存、 微硬盘, 并且第二存储模块可以包括: DDR存储器。 图 像数据可以包括: 格式为 BMP、 JPEG, GIF或者 PNG的图像文件。 显示 设备可以包括: PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏。 关机操作可以是待机操作。 其中, 图像数据的内容可以是 LOGO或者其他 图案。
通过本发明的开关机图像的显示方法, 可以在电视(尤其是智能电视) 在开关机时会显示出图像, 从而不会显示出自检、 系统更新等系统配置过 程, 在保证开关机过程正常工作的同时, 提供简单明了的开关机画面, 给 用户更好的体验, 从而使用简易的方法, 改变了智能电视的复杂的开关机 过程界面, 提升了用户体验感。
下面将分别通过开机和关机两个具体实施例来描述本发明。
具体实施例 1
图 2是根据本发明一个实施例的开机图像的显示方法的流程图。 在图
2中:
步骤 200: 开机操作触发后, 第一处理模块将第一存储模块中存储的 图像数据发送给第二处理模块, 第二处理模块将接收到的图像数据存储在 第二存储模块中并将图像数据发送给显示设备, 以在显示设备上进行显示。 其中, 在第一处理模块将第一存储模块中存储的图像数据发送给第二处理 模块之前, 第一处理模块可以对图像数据进行格式转换, 例如将格式为 BMP、JPEG、GIF或者 PNG的图像文件转换为 LVDS、Displayport、 VbyOne、 RGB, 656、 HDMI或者 TS流的信号。 然后, 在第二处理模块将图像数据 存储在第二存储模块之前, 第二处理模块可以对图像数据进行诸如倍频、 运动补偿、 隔行变逐行以及 3D转换的处理, 经过处理的信号的格式可以是 LVDS、 MiniLVDS或者 VbyOne (处理过程可以改变格式也可以不改变格 式) , 以适于在显示设备上显示。
例如, 在按下电视机遥控器的开机键, 从而触发开机操作之后, 处理 模块将闪存中存储的 JPEG格式的 LOGO图像文件转换为未经处理的 LVDS 信号, 由于未经处理的 LVDS信号无法直接在 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上进行显示, 因此, 利用 LVDS信号处理芯片 将未经处理的 LVDS信号通过诸如倍频处理为本领域普通技术人员所公知 的能够直接在 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上进 行显示的信号。然后,处理过的 LVDS信号将能够直接在 PDP显示屏、 LCD 显示屏、 LED显示屏、 OLED显示屏上进行显示的信号存储在 DDR存储器 中, 并在 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上显示出 I )GO。
步骤 202: 配置操作开始后, 第二处理模块将第二存储模块中存储的 图像数据发送给显示设备, 以在显示设备上进行显示。
例如, 电视机开始进行自检、 系统更新和自动登录, 此时, 上述处理 模块无法同时工作, 这样, 诸如 LVDS芯片的信号处理芯片就需要将 DDR
存储器中所存储的信号发送到 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上, 从而显示出 LOGO而遮盖住了上述自检、 系统更新和自 动登录的过程。
步骤 204: 当配制操作结束时, 第二处理模块不再将第二存储模块中 存储的图像数据发送给显示设备, 从而使得显示设备上不再显示图像数据 的内容。
例如, 当电视机的自检、 系统更新和自动登录完成时, 显示设备上不 再显示 LOGO, 而开始显示电视节目。
通过本发明的开机图像的显示方法, 可以在电视(尤其是智能电视) 在开机时会显示出图像, 从而不会显示出自检、 系统更新等系统配置过程, 在保证开关机过程正常工作的同时, 提供简单明了的开机画面, 给用户更 好的体验, 从而使用简易的方法, 改变了智能电视的复杂的开机过程界面, 提升了用户体验感。 具体实施例 2
图 3是根据本发明另一个实施例的关机图像的显示方法的流程图。 在 图 3中:
步骤 300: 关机操作触发后, 第一处理模块将第一存储模块中存储的 图像数据发送给第二处理模块, 第二处理模块将接收到的图像数据存储在 第二存储模块中并将图像数据发送给显示设备, 以在显示设备上进行显示。 其中, 在第一处理模块将第一存储模块中存储的图像数据发送给第二处理 模块之前, 第一处理模块可以对图像数据进行格式转换, 例如将格式为 BMP、JPEG、GIF或者 PNG的图像文件转换为 LVDS、Displayport、 VbyOne、 RGB, 656、 HDMI或者 TS流的信号。 然后, 在第二处理模块将图像数据 存储在第二存储模块之前, 第二处理模块可以对图像数据进行诸如倍频、 运动补偿、 隔行变逐行以及 3D转换的处理, 经过处理的信号的格式可以是 LVDS、 MiniLVDS或者 VbyOne (处理过程可以改变格式也可以不改变格 式) , 以适于在显示设备上显示。
例如, 在按下电视机遥控器的关机键, 从而触发关机操作之后, 处理
模块将闪存中存储的 JPEG格式的 LOGO图像文件转换为未经处理的 LVDS 信号, 由于未经处理的 LVDS信号无法直接在 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上进行显示, 因此, 利用 LVDS信号处理芯片 将未经处理的 LVDS信号通过诸如倍频处理为本领域普通技术人员所公知 的能够直接在 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上进 行显示的信号。然后,处理过的 LVDS信号将能够直接在 PDP显示屏、 LCD 显示屏、 LED显示屏、 OLED显示屏上进行显示的信号存储在 DDR存储器 中, 并在 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上显示出 I )GO。
步骤 302: 配置操作开始后, 第二处理模块将第二存储模块中存储的 图像数据发送给显示设备, 以在显示设备上进行显示。
例如, 电视机开始进行关闭系统, 此时, 上述处理模块无法同时工作, 这样, LVDS 信号处理芯片就需要将 DDR存储器中所存储的信号发送到 PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏上,从而显示出 LOGO 而遮盖住了上述关闭系统的过程。
步骤 304: 当配制操作结束时, 显示设备关闭。 例如, 当关闭系统操 作结束时, PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏关闭。
其中, 上述的 LOGO只是一个实例, 并不旨在进行限定, 在开关机时 可以显示出任何所期望的图案。
通过本发明的关机图像的显示方法, 可以在电视(尤其是智能电视) 关机时会显示出图像, 从而不会显示出系统更新、 系统关闭等过程, 在保 证开关机过程正常工作的同时, 提供简单明了的关机画面, 给用户更好的 体验, 从而使用简易的方法, 改变了智能电视的复杂的开机过程界面, 提 升了用户体验感。
以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于 本领域的技术人员来说, 本发明可以有各种更改和变化。 凡在本发明的精 神和原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明 的保护范围之内。
Claims
1. 一种开关机图像的显示方法, 包括:
步骤 S1 : 开机操作或关机操作触发后, 第一处理模块将第一存储模块 中存储的图像数据发送给第二处理模块, 所述第二处理模块将接收到的所 述图像数据存储在第二存储模块中并将所述图像数据发送给显示设备, 以 在所述显示设备上进行显示; 以及
步骤 S2: 配置操作开始后, 所述第二处理模块将所述第二存储模块中 存储的所述图像数据发送给所述显示设备, 以在所述显示设备上进行显示。
2. 根据权利要求 1所述的开关机图像的显示方法, 其特征在于, 在所 述步骤 S2之后, 进一步包括: 步骤 S3 : 如果在步骤 S1中触发的是所述开 机操作, 则当所述配制操作结束时, 所述第二处理模块不再将所述第二存 储模块中存储的所述图像数据发送给所述显示设备, 从而使得所述显示设 备上不再显示所述图像数据的内容。
3. 根据权利要求 1所述的开关机图像的显示方法, 其特征在于, 在所 述步骤 S2之后, 进一步包括: 步骤 S3 : 如果在步骤 S1中触发的是所述关 机操作, 则当所述配制操作结束时, 所述显示设备关闭。
4. 根据权利要求 1所述的开关机图像的显示方法, 其特征在于, 所述 步骤 S1还包括:在所述第一处理模块将所述第一存储模块中存储的所述图 像数据发送给所述第二处理模块之前, 所述第一处理模块对所述图像数据 进行格式转换。
5. 根据权利要求 4所述的开关机图像的显示方法, 其特征在于, 所述 图像数据被格式转换成的信号包括: LVDS、 Displayport, VbyOne, RGB , 656、 HDMI以及 TS流信号。
6. 根据权利要求 4所述的开关机图像的显示方法, 其特征在于, 步骤 S1还包括: 在所述第二处理模块将所述图像数据存储在所述第二存储模块 之前, 所述第二处理模块对所述图像数据进行处理, 以适于在所述显示设 备上显示。
7. 根据权利要求 6所述的开关机图像的显示方法, 其特征在于, 所述 第二处理模块对所述图像数据所进行的处理方式包括倍频、 运动补偿、 隔 行变逐行以及 3D转换。
8. 根据权利要求 4至 7中任意一项所述的开关机图像的显示方法, 其 特征在于, 如果在步骤 S1中触发的是所述开机操作, 则所述配置操作包括 系统自检操作、 自动更新操作、 以及自动登录操作。
9. 根据权利要求 4至 7中任意一项所述的开关机图像的显示方法, 其 特征在于, 如果在步骤 S1中触发的是所述关机操作, 则所述配置操作包括 自动更新操作以及关闭系统操作。
10. 根据权利要求 4至 7中任意一项所述的开关机图像的显示方法, 其特征在于, 所述第一存储模块包括: 闪存、 微硬盘, 所述第二存储模块 包括: DDR 存储器, 并且所述图像数据包括: 格式为 BMP、 JPEG, GIF 或者 PNG的图像文件。
11. 根据权利要求 4至 7中任意一项所述的开关机图像的显示方法, 其特征在于, 所述显示设备包括: PDP显示屏、 LCD显示屏、 LED显示屏、 OLED显示屏。
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