CN112992047A - 移动装置的显示模块调整方法及发光二极管阵列驱动系统 - Google Patents

移动装置的显示模块调整方法及发光二极管阵列驱动系统 Download PDF

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CN112992047A
CN112992047A CN202010429689.5A CN202010429689A CN112992047A CN 112992047 A CN112992047 A CN 112992047A CN 202010429689 A CN202010429689 A CN 202010429689A CN 112992047 A CN112992047 A CN 112992047A
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CN112992047B (zh
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金际远
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    • 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
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Abstract

本发明提供一种移动装置的显示模块调整方法及发光二极管阵列驱动系统。移动装置的显示模块调整方法包括下列步骤:获取一移动装置的一显示模块的一第一图像信息;传送第一图像信息至一服务器;根据第一图像信息的至少一需调整区域,提供一显示模块调整方案至移动装置;根据显示模块调整方案调整移动装置的显示模块,且获取一第二图像信息,且传送第二图像信息至服务器;以及根据第二图像信息确认一调整结果。

Description

移动装置的显示模块调整方法及发光二极管阵列驱动系统
技术领域
本发明涉及一种移动装置的显示模块调整方法以及发光二极管阵列驱动系统,尤其涉及一种低成本的移动装置的显示模块调整方法以及发光二极管阵列驱动系统。
背景技术
现今的移动装置如果显示屏幕有暗点或是出现瑕疵时,使用者需要整机进行送修,对于时间成本以及维修成本的需求都相当庞大。此外,显示屏幕的发光组件在设置成本上也占有相当比例。
因此,提供一种低成本的移动装置的显示模块调整方法以及发光二极管阵列驱动系统,就成为业界的一个重要课题。
发明内容
本发明所要解决的技术问题在于,针对现有技术的不足提供一种发光二极管阵列驱动系统,其特征在于,包括:一驱动模块,包括多个驱动单元,多个驱动单元分别电性连接多条信号驱动线;以及一发光二极管阵列,包括多个发光二极管模块,多个发光二极管模块阵列地排列,同一行或是同一列的多个发光二极管模块电性连接多条信号驱动线的其中之一;其中,驱动模块的多个驱动单元分别提供一驱动信号至多条信号驱动线,连接至同一条信号驱动线的多个发光二极管模块根据一顺序分别获取驱动信号中的至少一驱动单元信号,以驱动多个发光二极管模块。
优选地,每一发光二极管模块包括:一计数器,计算驱动信号的数量或是时间;一信号获取器,电性连接计数器,获取对应发光二极管的顺序的驱动单元信号;以及一发光二极管单元,电性连接信号获取器,接收驱动单元信号,以进行发光。
优选地,连接不同的信号驱动线的多个发光二极管模块彼此不互相电性连接。
优选地,当信号驱动线连接的多个发光二极管模块是一第一数量时,连接信号驱动线的驱动单元在每一单位时间中提供第一数量的驱动单元信号至信号驱动线。
优选地,还包括:一控制模块,电性连接驱动模块,提供一具有地址信息的控制信号至驱动模块。
本发明还公开了一种移动装置的显示模块调整方法,其特征在于,包括下列步骤:获取一移动装置的一显示模块的一第一图像信息;传送第一图像信息至一服务器;根据第一图像信息的至少一需调整区域,提供一显示模块调整方案至移动装置;根据显示模块调整方案调整移动装置的显示模块,且获取一第二图像信息,且传送第二图像信息至服务器;以及根据第二图像信息确认一调整结果。
优选地,显示模块是一液晶显示模块、一有机发光二极管显示模块或一发光二极管显示模块。
优选地,显示模块调整方案是一固件或是一调整参数。
优选地,第一图像信息是一画面全黑的图像信息或是一画面全亮的图像信息。
优选地,根据移动装置的显示模块的一坐标以及第一图像信息的至少一需调整区域的一位置以及一需调整内容,提供显示模块调整方案。
本发明的其中一有益效果在于,本发明所提供的显示模块调整方法可以有效减少使用者的送修时间,并且可以降低送修所花费的成本。此外,本发明提供的发光二极管阵列驱动系统,可以精简电路结构而且可以降低设置成本以及维修成本。
为使能更进一步了解本发明的特征及技术内容,请参阅以下有关本发明的详细说明与图式,然而所提供的图式仅用于提供参考与说明,并非用来对本发明加以限制。
附图说明
图1是本发明第一实施例的移动装置显示设备调整方法的示意图。
图2是本发明第一实施例的移动装置显示设备调整方法的步骤流程图。
图3是本发明第二实施例的发光二极管阵列驱动系统的示意图。
图4是本发明第二实施例的发光二极管模块的示意图。
图5是本发明第二实施例的驱动单元信号示意图。
具体实施方式
以下是通过特定的具体实施例来说明本发明所提供有关“发光装置”的实施方式,本领域技术人员可由本说明书所提供的内容了解本发明的优点与效果。本发明可通过其他不同的具体实施例加以施行或应用,本说明书中的各项细节也可基于不同观点与应用,在不背离本发明的构思下进行各种修改与变更。另外,本发明的附图仅为简单示意说明,并非依实际尺寸的描绘,事先声明。以下的实施方式将进一步详细说明本发明的相关技术内容,但所提供的内容并非用以限制本发明的保护范围。
应当可以理解的是,虽然本文中可能会使用到“第一”、“第二”、“第三”等术语来描述各种组件或者信号,但这些组件或者信号不应受这些术语的限制。这些术语主要是用以区分一组件与另一组件,或者一信号与另一信号。另外,本文中所使用的术语“或”,应视实际情况可能包含相关联的列出项目中的任一个或者多个的组合。
[第一实施例]
请参阅图1以及图2,图1是本发明第一实施例的移动装置显示设备调整方法的示意图。图2是本发明第一实施例的移动装置显示设备调整方法的步骤流程图。
请参阅图1,本实施例中的移动装置1可以获取移动装置1的显示模块11的图像信息,并将获取到的图像信息传送到服务器9。也就是,当移动装置1的显示模块11出现暗点、漏光、或是其他瑕疵,用户就可以用移动装置1具有的屏幕获取功能,获取显示模块11的至少一图像信息。用户再将获取到的至少一图像信息通过网络传送至服务器9上。服务器9可以是移动装置1的制造商或是特约维修厂商设置的服务器。
用户将移动装置1的图像信息传到服务器9后,服务器9会发送一维修信息给维修中心8,以使维修人员针对移动装置1的图像信息进行分析以及提供解决方案。在本实施例中,移动装置1是一智能手机、平板计算机或是穿戴式电子装置,在本发明中不做限制。在确认问题以及解决方案之后,维修中心8的维修人员可以通过服务器9提供一显示模块调整方案给用户。用户可以根据显示模块调整方案对移动装置1进行调整。
请参阅图2,本实施例的移动装置的显示模块调整方法则是包括下列步骤:
获取一移动装置的一显示模块的一第一图像信息(步骤S110);
传送第一图像信息至一服务器(步骤S120);
根据第一图像信息的至少一需调整区域,提供一显示模块调整方案至移动装置(步骤S130);
根据显示模块调整方案调整移动装置的显示模块,且获取一第二图像信息,且传送第二图像信息至服务器(步骤S140);以及
根据第二图像信息确认一调整结果(步骤S150)。
在步骤S110中,在移动装置1的显示模块出现暗点、漏光、或是其他瑕疵时,用户可以利用移动装置1的屏幕获取功能,获取显示模块的至少一图像信息,也就是获取显示模块的一第一图像信息。在本实施例中,第一图像信息是一画面全黑的图像信息或是一画面全亮的图像信息。在其他实施例中,厂商可以提供多个图像信息的获取模式,让用户依序地获取对应的图像信息,以使维修中心8的维修人员容易判断或是确认显示模块11的问题所在,在本发明中不做限制。在本实施例中,显示模块11是一液晶显示模块、一有机发光二极管显示模块或一发光二极管显示模块,在本发明中不做限制。
在步骤S120中,用户利用移动装置1传送第一图像信息至服务器9。在此同时,用户也可以同时将移动装置1的型号、操作系统规格等信息提供给服务器9。维修中心8的维修人员可以通过移动装置1的型号、操作系统规格等信息较为快速的提供调整方案。
在步骤S130中,维修中心8的维修人员根据使用者上传至服务器9的第一图像信息,确认第一图像信息中的至少一需调整区域。此外,由于用户同时也将移动装置1的型号、操作系统规格等信息传送至服务器9,维修中心8的维修人员可以根据移动装置1的型号取得显示模块11的尺寸大小、分辨率、驱动程序以及显示模块11的坐标信息。维修人员可以将用户提供的移动装置1的第一图像信息利用显示模块11的坐标信息进行定位,以确定第一图像信息中的需调整区域的坐标。维修人员确定第一图像信息中的需调整区域的坐标之后,会根据需调整区域的问题提供显示模块调整方案。也就是,维修中心的维修人员会根据移动装置1的显示模块11的一坐标信息以及第一图像信息的至少一需调整区域的一位置以及一需调整内容,提供显示模块调整方案。
在维修人员确认显示模块调整方案之后,维修人员可以将显示模块调整方案上传至服务器9,使用者再由服务器9存取显示模块调整方案。或是由服务器9提供显示模块调整方案给用户的移动装置1,在本发明中不做限制。在本实施例中,显示模块调整方案是一固件或是一调整参数,在本发明中不做限制。
在步骤S140以及步骤S150中,用户在接收到显示模块调整方案后,就可以根据显示模块调整方案调整移动装置1的显示模块11。在调整后,用户则需要获取显示模块11的一第二图像信息,并将第二图像信息传送至服务器9。维修中心8的维修人员则可以根据使用者上传的第二图像信息确认调整结果。若是已经解决先前问题,则可以结束调整程序。若是仍未能解决先前问题,则需重复步骤S110至步骤S150,直至问题解决。
[第二实施例]
请参阅图3以及图4,图3是本发明第二实施例的发光二极管阵列驱动系统的示意图。图4是本发明第一实施例的发光二极管模块的示意图。
本实施例的发光二极管阵列驱动系统1包括一控制模块10、一驱动模块DX以及一发光二极管阵列LED01。驱动模块DX包括多个驱动单元D1-DN。多个驱动单元D1-DN分别电性连接多条信号驱动线L1-LN。发光二极管阵列LED01包括多个发光二极管模块11-14、21-24、N1-N4。在本实施例中,发光二极管模块的数量不做限制。控制模块10电性连接驱动模块DX,提供一具有地址信息的控制信号至驱动模块。控制信号会包括哪一行(驱动单元的地址信息)以及哪一个发光二极管模块的顺序的地址信息。
多个发光二极管模块11-14、21-24、N1-N4是以阵列方式进行排列。同一行的多个发光二极管模块则是电性连接多条信号驱动线L1-LN的其中之一。也就是,排列在同一行的多个发光二极管模块11-14会电性连接第一信号驱动线L1。排列在同一行的多个发光二极管模块21-24会电性连接第二信号驱动线L2。排列在同一行的多个发光二极管模块N1-N4会电性连接第N信号驱动线L2。
驱动模块DX的多个驱动单元D1-DN分别提供一驱动信号至多条信号驱动线L1-LN。也就是,每一个驱动单元会分别提供驱动信号给各自连接的信号驱动线L1-LN。信号驱动线L1-LN会传输驱动信号给多个发光二极管模块11-14、21-24、N1-N4。
进一步地说,连接至同一条信号驱动线的多个发光二极管模块11-14、21-24、N1-N4根据一顺序分别获取驱动信号中的至少一驱动单元信号,以驱动多个发光二极管模块11-14、21-24、N1-N4。
本实施例中的发光二极管阵列LED01的多个发光二极管模块11-14、21-24、N1-N4虽然是以阵列式排列,但是由于在这个电路架构中,缺少了常用的扫描线或是信号线,而是将信号线以及扫描线合而为一。而且在同一行的多个发光二极管模块11-14、21-24、N1-N4是电性连接同一条信号驱动线。而设置在不同行的发光二极管模块11-14、21-24、N1-N4则是不会互相电性连接。
请参阅图4,图4是仅以连接第一信号驱动线L1的第一发光二极管模块11以及第二发光二极管模块12作为叙述范例。
第一发光二极管模块11包括一第一计数器111、一第一信号获取器112以及第一发光二极管单元113。
第一计数器111电性连接第一信号驱动线L1。第一信号获取器112电性连接第一计数器111。第一发光二极管单元113则电性连接第一信号获取器112。第一信号获取器112包括一滤波电路以及一放大电路。
第二发光二极管模块12包括一第二计数器121、一第二信号获取器122以及第二发光二极管单元123。
第二计数器121电性连接第一信号驱动线L1。第二信号获取器122电性连接第二计数器121。第二发光二极管单元123则电性连接第二信号获取器122。第二信号获取器122包括一滤波电路以及一放大电路。
第一计数器111以及第二计数器121都是用于计算驱动信号的信号数量。第一信号获取器112以及第二信号获取器122则是分别用于获取对应第一发光二极管113以及第二发光二极管单元123各自的顺序的第一驱动单元信号S1或是第二驱动单元信号S2。第一信号获取器112以及第二信号获取器122在分别接收第一驱动单元信号S1以及第二驱动单元信号S2之后,就可以将第一驱动单元信号S1以及第二驱动单元信号S2分别提供给第一发光二极管单元113以及第二发光二极管单元123,以驱动第一发光二极管单元113以及第二发光二极管单元123进行发光。
发光二极管模块各自的顺序则是从最靠近驱动单元的发光二极管模块开始算起。最靠近驱动单元的发光二极管模块的顺序是第一,接着之后的发光二极管模块是第二、第三。
请参阅图5,第一发光二极管单元113以及第二发光二极管单元123可以从信号驱动线L1上接收到对应的第一驱动单元信号S1、第一驱动单元信号S2。也就是,当信号驱动线L1上电性连接的发光二极管模块数量是一第一数量时,对应的驱动单元也就会在单位时间内提供第一数量的驱动单元信号到信号驱动线L1上。第一数量是一自然数,第一数量大于等于1。第二时间T2的第二驱动单元信号S2、第三时间T3的第三驱动单元信号S3则分别为驱动第二发光二极管单元123以及第三发光二极管单元(图中未示出)的信号。
在图5中每一驱动单元信号S1-S3的讯框时间是第一时间T1,由于发光二极管阵列LED01每一列设置的发光二极管模块是4个,因此驱动单元会每隔一个单位时间发送四个驱动单元信号。也就是每个单位时间是4个第一时间T1。由于发光二极管模块的数量可以根据实际需求调整,因此驱动单元发送信号的单位时间也会根据发光二极管模块的数量而调整。
本实施例的发光二极管阵列驱动系统1可以应用于先前实施例的调整方法中,也可以应用于发光二极管显示设备或是其他背光模块中。此外,发光二极管阵列驱动系统1也可以以直式设置。
举例来说,本实施例中的发光二极管阵列驱动系统1设置在一直下式的液晶显示设备的背光模块中。本实施例中的发光二极管阵列驱动系统1的坐标叙述可以以驱动单元作为第一坐标,发光二极管模块的叙述则是第二坐标。也就是,连接第一驱动单元D1的第一发光二极管模块11。维修人员就可以利用驱动单元作为第一坐标(直向或是横向)的定位,再利用发光二极管模块作为第二坐标(横向或是直向)的定位,即可进行精确的描述。
[实施例的有益效果]
本发明的其中一有益效果在于,本发明所提供的显示模块调整方法可以有效减少使用者的送修时间,并且可以降低送修所花费的成本。此外,本发明提供的发光二极管阵列驱动系统,可以精简电路结构而且可以降低设置成本以及维修成本。
以上所提供的内容仅为本发明的优选可行实施例,并非因此局限本发明的权利要求范围,所以凡是运用本发明说明书及图式内容所做的等效技术变化,均包含于本发明的权利要求范围内。

Claims (10)

1.一种发光二极管阵列驱动系统,其特征在于,包括:
一驱动模块,包括多个驱动单元,所述多个驱动单元分别电性连接多条信号驱动线;以及
一发光二极管阵列,包括多个发光二极管模块,所述多个发光二极管模块排列成阵列,同一行或是同一列的所述多个发光二极管模块电性连接所述多条信号驱动线的其中之一;
其中,所述驱动模块的多个驱动单元分别提供一驱动信号至所述多条信号驱动线,连接至同一条所述信号驱动线的所述多个发光二极管模块根据一顺序分别获取所述驱动信号中的至少一驱动单元信号,以驱动所述多个发光二极管模块。
2.如权利要求1所述的发光二极管阵列驱动系统,其特征在于,每一所述发光二极管模块包括:
一计数器,计算所述驱动信号的数量或时间;
一信号获取器,电性连接所述计数器,获取对应所述发光二极管模块的所述顺序的所述驱动单元信号;以及
一发光二极管单元,电性连接所述信号获取器,接收所述驱动单元信号,以进行发光。
3.如权利要求1所述的发光二极管阵列驱动系统,其特征在于,连接不同的所述信号驱动线的多个所述发光二极管模块彼此不互相电性连接。
4.如权利要求1所述的发光二极管阵列驱动系统,其特征在于,当所述信号驱动线连接的所述多个发光二极管模块是一第一数量时,连接所述信号驱动线的所述驱动单元在每一单位时间中提供所述第一数量的所述驱动单元信号至所述信号驱动线。
5.如权利要求1所述的发光二极管阵列驱动系统,其特征在于,还包括:一控制模块,电性连接所述驱动模块,提供一具有地址信息的控制信号至所述驱动模块。
6.一种移动装置的显示模块调整方法,其特征在于,包括下列步骤:
获取一移动装置的一显示模块的一第一图像信息;
传送所述第一图像信息至一服务器;
根据所述第一图像信息的至少一需调整区域,提供一显示模块调整方案至所述移动装置;
根据所述显示模块调整方案调整所述移动装置的所述显示模块,且获取一第二图像信息,且传送所述第二图像信息至所述服务器;以及
根据所述第二图像信息确认一调整结果。
7.如权利要求6所述的显示模块调整方法,其特征在于,所述显示模块是一液晶显示模块、一有机发光二极管显示模块或一发光二极管显示模块。
8.如权利要求6所述的显示模块调整方法,其特征在于,所述显示模块调整方案是一固件或一调整参数。
9.如权利要求6所述的显示模块调整方法,其特征在于,所述第一图像信息是一画面全黑的图像信息或一画面全亮的图像信息。
10.如权利要求6所述的显示模块调整方法,其特征在于,根据所述移动装置的所述显示模块的一坐标以及所述第一图像信息的所述至少一需调整区域的一位置以及一需调整内容,提供所述显示模块调整方案。
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