WO2020155867A1 - 交互智能平板及红外触控模组的安装结构 - Google Patents

交互智能平板及红外触控模组的安装结构 Download PDF

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Publication number
WO2020155867A1
WO2020155867A1 PCT/CN2019/124344 CN2019124344W WO2020155867A1 WO 2020155867 A1 WO2020155867 A1 WO 2020155867A1 CN 2019124344 W CN2019124344 W CN 2019124344W WO 2020155867 A1 WO2020155867 A1 WO 2020155867A1
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Prior art keywords
frame
transmission line
cavity
circuit board
smart tablet
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English (en)
French (fr)
Inventor
谭景焕
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Guangzhou Shiyuan Electronics Thecnology Co Ltd
Guangzhou Shirui Electronics Co Ltd
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Guangzhou Shiyuan Electronics Thecnology Co Ltd
Guangzhou Shirui Electronics Co Ltd
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Publication of WO2020155867A1 publication Critical patent/WO2020155867A1/zh
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/042Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by opto-electronic means

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  • This application relates to the technical field of display devices, and in particular to an installation structure of an interactive smart tablet and an infrared touch module.
  • the touch technology of display devices generally includes resistive touch, capacitive touch, infrared touch and so on.
  • the infrared touch generally detects and locates the user's touch through an infrared matrix formed by an infrared touch module.
  • the infrared touch module of the traditional display device is generally installed in the frame of the display device, and the transmission line of the infrared touch module is generally directly stacked outside or inside the frame, which not only affects the installation of other parts of the display device, but also easily As a result, the transmission line of the infrared touch module is interfered or damaged by other components, which directly affects the service life of the display device.
  • a mounting structure for an infrared touch module includes a frame strip, on which a mounting cavity for installing a touch circuit board of the infrared touch module is formed, and the frame strip is provided with a frame for accommodating the infrared The accommodating slot of the transmission line of the touch module is communicated with the mounting cavity.
  • an installation cavity is formed on the frame bar and an accommodation slot is opened, wherein the installation cavity can be used to install the touch circuit board of the infrared touch module.
  • the accommodating groove is connected to the mounting cavity, the transmission line conveniently connected to the touch circuit board is accommodated in the accommodating groove.
  • the accommodating slot can effectively prevent the transmission line from being directly stacked outside or in the frame bar, and avoid affecting the installation of other parts of the interactive smart tablet.
  • the transmission line is contained in the accommodating slot, the transmission line is further prevented from being interfered or damaged by other parts, and the service life of the infrared touch module is effectively guaranteed.
  • the containing groove is a U-shaped groove.
  • An interactive smart tablet including:
  • An infrared touch module includes a touch circuit board and a transmission line, the transmission line is electrically connected to the touch circuit board;
  • the mounting cavity is used for mounting the touch circuit board, and the accommodating groove is used for accommodating the transmission line.
  • an installation cavity is formed on the frame bar and a receiving slot is opened, and the touch circuit board of the infrared touch module is installed in the installation cavity of the frame bar. Since the accommodating slot is connected to the mounting cavity, it is convenient for the transmission line connected to the touch circuit board to be accommodated in the accommodating slot, effectively avoiding the direct stacking of the transmission line outside or in the frame strip, and avoiding affecting other components of the interactive smart tablet. Installation of components. At the same time, since the transmission line is effectively contained in the accommodating slot, the transmission line is further prevented from being interfered or damaged by other components, and the service life of the infrared touch module is effectively guaranteed, thereby ensuring the service life of the interactive smart tablet.
  • a card slot is formed on the inner wall of the mounting cavity, the touch circuit board is detachably disposed in the card slot, and the accommodation slot is located on a side of the touch circuit board. side.
  • the card slot penetrates the end surface of one end of the frame strip, and the accommodation groove penetrates the end surface of one end of the frame strip.
  • an outer cavity for installing accessories is also formed on the frame strip, and the outer cavity and the installation cavity are arranged side by side.
  • the frame strip includes a frame body and a partition, the side wall of the frame body encloses a cavity, and the partition is disposed in the cavity to form the outer cavity and the Installation cavity.
  • the frame strip is a bottom frame.
  • it further includes a side frame, the side frame can abut on one end of the bottom frame, a fixing cavity is formed on the side frame, and a clamping groove is formed on the inner wall of the fixing cavity , The locking groove and the fixing cavity both penetrate through the end surface of the side frame facing one end of the bottom frame.
  • FIG. 1 is a schematic diagram of a partial structure of an interactive smart tablet in an embodiment
  • FIG. 2 is a schematic diagram of a partial structure of the frame strip in FIG. 1.
  • the interactive smart tablet 10 in one embodiment is used in offices, teaching and other places to facilitate the demonstration or operation of the operator, and at the same time can prevent the transmission line of the infrared touch module from being directly stacked outside the frame strip or In the frame bar, avoid affecting the installation of other components of the interactive smart tablet 10, and further ensure that the transmission line of the infrared touch module is not interfered or damaged by other components, and effectively guarantee the service life of the interactive smart tablet 10.
  • the interactive smart tablet 10 includes an infrared touch module 100 and an installation structure of the infrared touch module.
  • the infrared touch module 100 includes a touch circuit board 110 and a transmission line 120, and the transmission line 120 is electrically connected to the touch circuit board 110.
  • the installation structure includes a frame strip 200 on which an installation cavity 210 is formed, and the frame strip 200 is further provided with an accommodation groove 220 which communicates with the installation cavity 210.
  • the mounting cavity 210 is used for mounting the touch circuit board 110, and the receiving groove 220 is used for receiving the transmission line 120.
  • a mounting cavity 210 is formed on the frame strip 200 and a receiving slot 220 is opened, and the touch circuit board 110 of the infrared touch module 100 is installed in the mounting cavity 210. Since the accommodating groove 220 is connected to the mounting cavity 210, the transmission line 120 conveniently connected to the touch circuit board 110 is accommodated in the accommodating groove 220, which effectively prevents the transmission line 120 from being directly stacked outside the frame bar 200 or in the frame bar 200 , To avoid affecting the installation of other components of the interactive smart tablet 10.
  • the transmission line 120 is effectively accommodated in the accommodating slot 220, the transmission line 120 is further prevented from being interfered or damaged by other components, and the service life of the infrared touch module 100 is effectively guaranteed, thereby ensuring the service life of the interactive smart tablet 10.
  • the containing groove 220 is a U-shaped groove.
  • the U-shaped groove can better accommodate and protect the transmission line 120, and avoid the occurrence of corners or protrusions on the inner wall of the accommodating groove 220, which may damage or damage the transmission line 120.
  • the touch circuit board 110 is arranged in the mounting cavity 210.
  • the accommodating efficiency of the transmission line 120 is improved.
  • the length of the transmission line 120 is effectively reduced, thereby reducing the material cost of the transmission line 120.
  • the two accommodating grooves 220 are respectively opened on opposite ends of the frame strip 200, which can conveniently accommodate the transmission lines 120 at both ends.
  • a card slot 230 is formed on the inner wall of the mounting cavity 210, the touch circuit board 110 is detachably disposed in the card slot 230, and the receiving slot 220 is located on one side of the touch circuit board 110. Since the accommodating slot 220 is located on one side of the touch circuit board 110, it is more convenient for the transmission line 120 connected to the touch circuit board 110 to be accommodated in the accommodating slot 220. At the same time, the touch circuit board 110 is detachably disposed in the card slot 230. Therefore, during the process of disassembling or installing the touch circuit board 110, a certain length of the transmission line 120 needs to be reserved to form a certain amount of movement margin, thereby causing The length of the transmission line 120 is relatively long. By arranging the redundant transmission line 120 in the accommodating slot 220, the redundant transmission line 120 can be effectively accommodated, and the transmission line 120 is prevented from being directly stacked outside the frame strip 200 or in the frame strip 200.
  • the card slot 230 penetrates through the end surface of one end of the frame strip 200, and the receiving groove 220 penetrates through the end surface of one end of the frame strip 200.
  • the transmission line 120 connected to the touch circuit board 110 can be arranged in the accommodating groove 220 from one end of the frame strip 200, which further facilitates the accommodating arrangement of the transmission line 120 on the touch circuit board 110.
  • an inner wall of the mounting cavity 210 is formed with two spaced protruding strips 231, the two protruding strips 231 and an inner wall of the mounting cavity 210 together form a first sliding groove 232, and opposite inner walls of the mounting cavity 210 are provided There is a second sliding groove 233, and the second sliding groove 233 is opposite to the first sliding groove 232 and forms a card groove 230.
  • One side of the touch circuit board 110 can be inserted into the first sliding slot 232, and the opposite side can be inserted into the second sliding slot 233.
  • the touch circuit board 110 can slide in the card slot 230, and since the card slot 230 penetrates through the end surface of one end of the frame bar 200, the touch circuit board 110 can be slid out from one end of the frame bar 200 to facilitate the touch circuit board
  • the disassembly and installation of 110 facilitates the disassembly and connection of the touch circuit board 110 and the transmission line 120.
  • the accommodating groove 220 is opened on the side wall of the installation cavity 210, and the side wall of the installation cavity 210 is provided with a first sliding groove 232.
  • the accommodating groove 220 can be effectively located on one side of the touch circuit board 110, so that the transmission line 120 connected to the touch circuit board 110 can be easily accommodated in the accommodating groove 220.
  • the frame strip 200 is further formed with an outer cavity 240 for installing accessories, and the outer cavity 240 and the mounting cavity 210 are arranged side by side.
  • the accessory can be one or two of camera assembly, audio assembly, microphone assembly, etc.
  • the frame strip 200 includes a frame body 250 and a partition 260.
  • the side wall of the frame body 250 encloses a cavity.
  • the partition 260 is disposed in the frame body 250 and divides the cavity into an outer cavity 240 and a mounting cavity 210 .
  • the partition 260 can effectively avoid the mutual influence and interference of the components in the outer cavity 240 and the installation cavity 210, and ensure the stability of the components in the outer cavity 240 or the installation cavity 210.
  • the touch circuit board 110 and the partition 260 are disposed opposite to each other, which can prevent the partition 260 from affecting the electronic components of the touch circuit board 110.
  • the frame strip 200 is a bottom frame. Since the width of the bottom frame is relatively wide, the accommodating slot 220 can be effectively opened on the bottom frame to avoid affecting the installation of other components on the bottom frame.
  • the frame strip 200 can also be a side frame or a top frame, as long as the accommodating groove 220 can be opened.
  • the interactive smart tablet 10 further includes a side frame 300, which can abut on one end of the bottom frame, a fixing cavity is formed on the side frame 300, and a clamping groove is formed on the inner wall of the fixing cavity to be clamped. Both the groove and the fixing cavity penetrate through the end surface of the side frame 300 toward one end of the bottom frame.
  • the fixed cavity of the side frame 300 is also provided with a touch circuit board 110
  • the transmission line 120 connects two adjacent touch circuit boards 110
  • the transmission line 120 connected to the two adjacent touch circuit boards 110 can be connected by the side frame 300 extends toward one end of the bottom frame, and is further disposed in the accommodating groove 220.
  • the clamping slot penetrates through the end surface of the side frame 300 facing the bottom frame, which further facilitates the transmission line 120 connecting two adjacent touch circuit boards 110 to be accommodated in the accommodating slot 220.
  • the connections of other components of the interactive smart tablet 10 can also be arranged in the accommodating groove 220 of the frame strip 200, so that the structure of the interactive smart tablet 10 is cleaner.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

一种交互智能平板(10)及红外触控模组(100)的安装结构。交互智能平板(10)包括红外触控模组(100)及红外触控模组(100)的安装结构。红外触控模组(100)包括触控电路板(110)及传输线(120),传输线(120)电连接于触控电路板(110)上。安装结构包括边框条(200),边框条(200)上形成有安装腔(210),边框条(200)上开设有容置槽(220)。使用时,将红外触控模组(100)的触控电路板(110)安装在边框条(200)的安装腔(210)内。由于容置槽(220)与安装腔(210)相连通,因此方便传输线(120)容纳在容置槽(220)内,有效避免了传输线(120)直接堆叠在边框条(200)外或边框条(200)内,避免影响交互智能平板(10)其他零部件的安装。同时,由于传输线(120)有效容纳在容置槽(220)内,进一步避免传输线(120)被其他零部件干扰或破坏,有效保证红外触控模组(100)的使用寿命,进而保证交互智能平板(10)的使用寿命。

Description

交互智能平板及红外触控模组的安装结构
本申请要求于2019年2月2日提交至中国国家知识产权局、申请号为201920186348.2、发明名称为“交互智能平板及红外触控模组的安装结构”的专利申请的优先权。
技术领域
本申请涉及显示设备技术领域,特别是涉及一种交互智能平板及红外触控模组的安装结构。
背景技术
目前,显示设备的触控技术一般包括电阻式触控、电容式触控、红外线式触控等。其中,红外线式触控一般通过红外触控模组形成的红外线矩阵来检测并定位用户的触摸。然而,传统的显示设备的红外触控模组一般安装在显示设备的边框内,红外触控模组的传输线一般直接堆叠在边框外或边框内,不仅影响显示设备其他零部件的安装,还易导致红外触控模组的传输线被其他零部件干扰甚至破坏,直接影响显示设备的使用寿命。
发明内容
基于此,有必要针对上述问题,提供一种避免红外触控模组的传输线与其他零部件相互干扰影响的交互智能平板及红外触控模组的安装结构。
一种红外触控模组的安装结构,包括边框条,所述边框条上形成有用于安装红外触控模组的触控电路板的安装腔,所述边框条上开设有用于容纳所述红外触控模组的传输线的容置槽,所述容置槽与所述安装腔相连通。
上述红外触控模组的安装结构在使用时,在边框条上形成安装腔并开设容置槽,其中,安装腔能够用于安装红外触控模组的触控电路板。由于容置槽与安装腔相连通,因此方便连接在触控电路板上的传输线容纳在容置槽内。通过容置槽能够有效避免了传输线直接堆叠在边框条外或边框条内,避免影响交互智能平板其他零部件的安装。同时,由于传输线容纳在容置槽内,进一步避免传输线被其他零部件干扰或破坏,有效保证红外触控模组的使用寿命。
在其中一个实施例中,所述容置槽为U形槽。
在其中一个实施例中,所述容置槽为至少两个,至少两个所述容置槽分别开设于所述边框条的相对两端。
一种交互智能平板,包括:
红外触控模组,包括触控电路板及传输线,所述传输线电连接于所述触控电路板上;及
如上所述的红外触控模组的安装结构,所述安装腔用于安装所述触控电路板,所述容置槽用于容纳所述传输线。
上述交互智能平板在安装使用时,在边框条上形成安装腔并开设容置槽,将红外触控模组的触控电路板安装在边框条的安装腔内。由于容置槽与安装腔相连通,因此方便连接在触控电路板上的传输线容纳在容置槽内,有效避免了传输线直接堆叠在边框条外或边框条内,避免影响交互智能平板其他零部件的安装。同时,由于传输线有效容纳在容置槽内,进一步避免传输线被其他零部件干扰或破坏,有效保证红外触控模组的使用寿命,进而保证交互智能平板的使用寿命。
在其中一个实施例中,所述安装腔的内壁上形成有卡槽,所述触控电路板可拆卸地设置于所述卡槽内,所述容置槽位于所述触控电路板的一侧。
在其中一个实施例中,所述卡槽贯穿所述边框条的一端的端面,所述容置槽贯穿所述边框条的一端的端面。
在其中一个实施例中,所述边框条上还形成有用于安装附件的外腔,所述外腔与所述安装腔并列设置。
在其中一个实施例中,所述边框条包括边框本体及隔板,所述边框本体的侧壁围成一空腔,所述隔板设置于所述空腔内以形成所述外腔与所述安装腔。
在其中一个实施例中,所述边框条为底边框。
在其中一个实施例中,还包括侧边框,所述侧边框能够抵接在所述底边框的一端上,所述侧边框上形成有固定腔,所述固定腔的内壁上开设有卡接槽,所述卡接槽与所述固定腔均贯穿所述侧边框朝向所述底边框的一端的端面。
附图说明
图1为一实施例中的交互智能平板的局部结构示意图;
图2为图1中边框条的局部结构示意图。
具体实施方式
请参阅图1及图2,一实施例中的交互智能平板10,用于办公、教学等场所,方便操作人员演示或操作,同时能够避免红外触控模组的传输线直接堆叠在边框条外或边框条内,避免影响交互智能平板10其他零部件的安装,进一步保证红外触控模组的传输线不被其他零部件干扰或破坏,有效保证交互智能平板10的使用寿命。具体地,交互智能平板10包括红外触控模组100及红外触控模组的安装结构。
红外触控模组100包括触控电路板110及传输线120,传输线120电连接于 触控电路板110上。安装结构包括边框条200,边框条200上形成有安装腔210,边框条200上进一步开设有容置槽220,容置槽220与安装腔210相连通。安装腔210用于安装触控电路板110,容置槽220用于容纳传输线120。
上述交互智能平板10在安装使用时,在边框条200上形成安装腔210并开设有容置槽220,将红外触控模组100的触控电路板110安装在安装腔210内。由于容置槽220与安装腔210相连通,因此方便连接在触控电路板110上的传输线120容纳在容置槽220内,有效避免了传输线120直接堆叠在边框条200外或边框条200内,避免影响交互智能平板10其他零部件的安装。同时,由于传输线120有效容纳在容置槽220内,进一步避免传输线120被其他零部件干扰或破坏,有效保证红外触控模组100的使用寿命,进而保证交互智能平板10的使用寿命。
一实施例中,容置槽220为U形槽。通过U形槽能够更好地容纳并保护传输线120,避免容置槽220的内壁出现棱角或凸起等,对传输线120造成伤害或破坏。
具体到本实施例中,容置槽220为至少两个,至少两个容置槽220分别开设于边框条200的相对两端。触控电路板110设置在安装腔210内,通过设置至少两个容置槽220,方便容纳连接在触控电路板110两端的传输线120,使得传输线120能够就近容纳在容置槽220内,进一步提高传输线120的容纳效率。同时使得传输线120的长度有效降低,进而降低传输线120的材料成本。
具体地,容置槽220为两个,两个容置槽220分别开设于边框条200的相对两端上,能够方便容纳位于两端的传输线120。
一实施例中,安装腔210的内壁上形成有卡槽230,触控电路板110可拆卸地设置于卡槽230内,容置槽220位于触控电路板110的一侧。由于容置槽220 位于触控电路板110的一侧,更加方便连接在触控电路板110上的传输线120容纳在容置槽220内。同时,触控电路板110可拆卸地设置于卡槽230内,因此,触控电路板110在拆卸或安装的过程中,需要预留一定长度的传输线120,形成一定的活动余量,进而导致传输线120的长度较长。通过将多余的传输线120设置容置槽220内,能够有效收纳多余的传输线120,避免了传输线120直接堆叠在边框条200外或边框条200内。
具体地,卡槽230贯穿边框条200的一端的端面,容置槽220贯穿边框条200的一端的端面。连接在触控电路板110上的传输线120能够由边框条200的一端的设置在容置槽220内,进一步方便触控电路板110上的传输线120的容纳设置。
进一步地,安装腔210的一内壁上形成有两个间隔设置的凸条231,两个凸条231与安装腔210的一内壁共同形成一第一滑槽232,安装腔210的相对内壁上开设有第二滑槽233,第二滑槽233与第一滑槽232相对设置并形成卡槽230。触控电路板110的一侧边能够插设于第一滑槽232内,相对的另一侧边能够插设于第二滑槽233内。触控电路板110能够在卡槽230内滑动,同时由于卡槽230贯穿边框条200的一端的端面,因此,使得触控电路板110能够由边框条200的一端滑出,方便触控电路板110的拆卸与安装,进而方便触控电路板110与传输线120的拆卸与连接。
具体到本实施例中,容置槽220开设于安装腔210的侧壁上,且该安装腔210的侧壁上开设有第一滑槽232。进而能够使得容置槽220有效位于触控电路板110的一侧,方便连接在触控电路板110上的传输线120容纳在容置槽220内。
一实施例中,边框条200上还形成有用于安装附件的外腔240,外腔240与 安装腔210并列设置。通过设置外腔240能够方便其他附件的安装。其中,附件可以为摄像头组件、音响组件、麦克风组件等中的一个或两个。
具体地,边框条200包括边框本体250及隔板260,边框本体250的侧壁围成一空腔,隔板260设置于边框本体250内,并将该空腔分隔为外腔240与安装腔210。通过设置隔板260能够有效避免外腔240与安装腔210内的零部件相互影响干扰,保证外腔240或安装腔210内零部件使用的稳定性。进一步地,触控电路板110与隔板260相对设置,可以避免隔板260影响触控电路板110的电子元器件。
具体到本实施例中,边框条200为底边框。由于底边框的宽度较宽,因此能够在底边框上有效开设容置槽220,避免影响其他部件在底边框上的安装。当然,在其他实施例中,边框条200还可以为侧边框或顶边框,只要能够开设容置槽220即可。
一实施例中,交互智能平板10还包括侧边框300,侧边框300能够抵接在底边框的一端上,侧边框300上形成有固定腔,固定腔的内壁上开设有卡接槽,卡接槽与固定腔均贯穿侧边框300朝向底边框的一端的端面。
其中,侧边框300的固定腔内同样设置有触控电路板110,传输线120连接相邻两个触控电路板110,连接在相邻两个触控电路板110上的传输线120能够由侧边框300朝向底边框的一端伸出,并进一步设置在容置槽220内。通过卡接槽贯穿侧边框300朝向底边框的一端的端面,进一步方便连接相邻两个触控电路板110的传输线120容纳在容置槽220内。
当然,在其他实施例中,交互智能平板10的其他零部件的连线也可设置在边框条200的容置槽220,使得交互智能平板10的结构更加整洁。同时避免连线或传输线120设置在边框条200内,影响边框条200内的零部件的工作及使 用,进一步避免连线或传输线120设置在边框条200外,到时交互智能平板10结构不整洁,同时容易被设置在边框条200上的背板等结构压坏,影响连线或传输线120的稳定性。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对实用新型专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种红外触控模组的安装结构,其中,包括边框条,所述边框条上形成有用于安装红外触控模组的触控电路板的安装腔,所述边框条上开设有用于容纳所述红外触控模组的传输线的容置槽,所述容置槽与所述安装腔相连通。
  2. 根据权利要求1所述的红外触控模组的安装结构,其中,所述容置槽为U形槽。
  3. 根据权利要求1所述的红外触控模组的安装结构,其中,所述容置槽为至少两个,至少两个所述容置槽分别开设于所述边框条的相对两端。
  4. 一种交互智能平板,其中,包括:
    红外触控模组,包括触控电路板及传输线,所述传输线电连接于所述触控电路板上;及
    如权利要求1-3任一项所述的红外触控模组的安装结构,所述安装腔用于安装所述触控电路板,所述容置槽用于容纳所述传输线。
  5. 根据权利要求4所述的交互智能平板,其中,所述安装腔的内壁上形成有卡槽,所述触控电路板可拆卸地设置于所述卡槽内,所述容置槽位于所述触控电路板的一侧。
  6. 根据权利要求5所述的交互智能平板,其中,所述卡槽贯穿所述边框条的一端的端面,所述容置槽贯穿所述边框条的一端的端面。
  7. 根据权利要求4所述的交互智能平板,其中,所述边框条上还形成有用于安装附件的外腔,所述外腔与所述安装腔并列设置。
  8. 根据权利要求7所述的交互智能平板,其中,所述边框条包括边框本体及隔板,所述边框本体的侧壁围成一空腔,所述隔板设置于所述空腔内以形成所述外腔与所述安装腔。
  9. 根据权利要求4-8任一项所述的交互智能平板,其中,所述边框条为底 边框。
  10. 根据权利要求9所述的交互智能平板,其中,还包括侧边框,所述侧边框能够抵接在所述底边框的一端上,所述侧边框上形成有固定腔,所述固定腔的内壁上开设有卡接槽,所述卡接槽与所述固定腔均贯穿所述侧边框朝向所述底边框的一端的端面。
PCT/CN2019/124344 2019-02-02 2019-12-10 交互智能平板及红外触控模组的安装结构 Ceased WO2020155867A1 (zh)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN204066068U (zh) * 2014-07-03 2014-12-31 深圳市摩拓触摸科技有限公司 一种触摸一体机
CN204719702U (zh) * 2015-06-23 2015-10-21 深圳市鸿合创新信息技术有限责任公司 大型红外触摸屏边框
CN107665067A (zh) * 2016-07-29 2018-02-06 深圳市艾博德科技股份有限公司 一种红外触摸屏一体机边框结构
JP2018055729A (ja) * 2018-01-10 2018-04-05 シャープ株式会社 座標入力装置および画像表示装置
CN207965855U (zh) * 2018-01-29 2018-10-12 深圳市利恩信息技术股份有限公司 红外触摸屏结构
CN209343315U (zh) * 2019-02-02 2019-09-03 广州视源电子科技股份有限公司 交互智能平板及红外触控模组的安装结构

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN204066068U (zh) * 2014-07-03 2014-12-31 深圳市摩拓触摸科技有限公司 一种触摸一体机
CN204719702U (zh) * 2015-06-23 2015-10-21 深圳市鸿合创新信息技术有限责任公司 大型红外触摸屏边框
CN107665067A (zh) * 2016-07-29 2018-02-06 深圳市艾博德科技股份有限公司 一种红外触摸屏一体机边框结构
JP2018055729A (ja) * 2018-01-10 2018-04-05 シャープ株式会社 座標入力装置および画像表示装置
CN207965855U (zh) * 2018-01-29 2018-10-12 深圳市利恩信息技术股份有限公司 红外触摸屏结构
CN209343315U (zh) * 2019-02-02 2019-09-03 广州视源电子科技股份有限公司 交互智能平板及红外触控模组的安装结构

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