WO2022160504A1 - 一种带天线的一体化触控面板 - Google Patents

一种带天线的一体化触控面板 Download PDF

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Publication number
WO2022160504A1
WO2022160504A1 PCT/CN2021/093307 CN2021093307W WO2022160504A1 WO 2022160504 A1 WO2022160504 A1 WO 2022160504A1 CN 2021093307 W CN2021093307 W CN 2021093307W WO 2022160504 A1 WO2022160504 A1 WO 2022160504A1
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Prior art keywords
frame
antenna
block
fixedly installed
touch panel
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PCT/CN2021/093307
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English (en)
French (fr)
Inventor
王雷
刘二利
夏伟伟
徐林
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北海翰博士科技有限公司
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Publication of WO2022160504A1 publication Critical patent/WO2022160504A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR 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
    • G06F3/0412Digitisers structurally integrated in a display

Definitions

  • the invention relates to the technical field of industrial equipment, in particular to an integrated touch panel with an antenna.
  • the purpose of the present invention is to provide an integrated touch panel with an antenna to solve the above-mentioned problems in the background art.
  • an integrated touch panel with an antenna comprising a frame, a panel is fixedly installed on the frame, and a touch screen is fixedly installed on the panel, and the frame is fixed on
  • An integrated board and a slide rail are installed, and a signal end block is slidably installed in the slide rail, an antenna is fixedly installed on the signal end block, a counterweight is fixedly installed on the frame, and a damping rod is slidably installed on the frame, A spring and an anti-collision ball are fixedly installed on the damping rod, a battery is fixedly installed in the frame, and a power-on switch is electrically connected to the battery, a guide rail is fixedly installed in the frame, and a screw rod is rotatably installed in the guide rail, The screw rod is connected with a motor and a nut seat, and a limit block is fixedly installed on the nut seat, a sliding rod is slidably installed on the limit block, and an end block is fixed
  • the frame and the panel form an installation space, in which touch elements are installed, the touch screen is installed in the middle of the panel, the integrated board is electrically connected to the touch screen, and the integrated board is connected to the signal terminal block.
  • the sliding rail is provided on the side of the integrated board, the antenna is vertically installed on the signal end block, and the sliding rail is provided with an antenna pull-out channel.
  • the counterweight is arranged at the bottom of the frame, and the damping rod is slidably installed in two corners of the bottom of the frame, the anti-collision ball is a rubber ball structure, and the spring is sleeved on the damping rod, and the spring Connected to the inner wall of the frame, the battery and the power-on switch are arranged on the side of the rear end of the damping rod.
  • the guide rail is arranged on the side of the slide rail, the screw rod is installed through a bearing, the limit block is installed on the surface of the nut seat, and the limit block is provided with a chute, and the slide rod runs through the chute to carry out installed, and the end block is a friction block.
  • the positioning groove is provided on the side of the sliding rod, and the fixing member is a shrapnel steel ball structure.
  • the fixing member is a shrapnel steel ball structure.
  • the inclined groove is provided at the The bottom of the sliding rod, the recovery piece is a push rod structure, and the reset piece is an oblique block structure.
  • a self-recovery signal enhancement antenna is arranged on the touch panel, which has a self-protection function.
  • the touch panel When the touch panel is accidentally dropped, make its bottom face down, and the anti-collision ball will fall to the ground first, which effectively prevents the antenna from being broken in direct contact.
  • the motor When the motor is energized, the antenna can be driven to retract into the slide rail to further prevent the antenna from being damaged;
  • the drive end block is automatically separated from the signal end block to prevent the antenna from being brought out again during reset and avoid misoperation.
  • Fig. 1 is the front view of the overall structure of the present invention
  • Fig. 2 is the schematic diagram of the partial structure of the present invention.
  • FIG. 3 is an enlarged schematic diagram of area A in FIG. 2 .
  • frame 1 panel 2, touch screen 3, integrated board 4, slide rail 5, signal end block 6, antenna 7, counterweight 8, damping rod 9, spring 10, anti-collision ball 11, battery 12, Power-on switch 13, guide rail 14, screw rod 15, motor 16, nut seat 17, limit block 18, slide rod 19, end block 20, positioning groove 21, fixing piece 22, chute 23, recovery piece 24, reset piece 25 .
  • an integrated touch panel with an antenna comprising a frame 1, a panel 2 is fixedly mounted on the frame 1, and a touch screen is fixedly mounted on the panel 2 3.
  • An integrated board 4 and a slide rail 5 are fixedly installed on the frame 1, and a signal end block 6 is slidably installed in the slide rail 5, an antenna 7 is fixedly installed on the signal end block 6, and a counterweight block 8 is fixedly installed on the frame 1 , and a damping rod 9 is slidably installed on the frame 1, a spring 10 and an anti-collision ball 11 are fixedly installed on the damping rod 9, and a battery 12 is fixedly installed in the frame 1, and a power-on switch 13 is electrically connected to the battery 12, and the frame A guide rail 14 is fixedly installed in 1, and a screw rod 15 is rotatably installed in the guide rail 14, a motor 16 and a nut seat 17 are connected to the screw rod 15, and a limit block 18 is fixedly installed on the nut seat 17, and the limit block
  • the frame 1 and the panel 2 form an installation space, in which touch elements are installed, and the touch screen 3 is installed in the middle of the panel 2 , the integrated board 4 is electrically connected to the touch screen 3 , and the integrated board 4 is connected to the signal terminal block 6 .
  • the basic structure of the touch panel is formed by the frame 1, the edge sealing and the installation of the touch screen 3 are carried out on the panel 2, the circuit structure is installed by the integrated board 4, and the signal terminal block 6 is connected, so as to use the touch screen 3.
  • Controlled automation equipment ;
  • the slide rail 5 is arranged on the side of the integrated board 4, and the antenna 7 is vertically installed on the signal end block 6, and the slide rail 5 is provided with an antenna pull-out channel.
  • the antenna 7 is pulled out for use, and the antenna 7 can also be retracted for protection;
  • the counterweight 8 is arranged at the bottom of the frame 1, and the damping rod 9 is slidably installed in the two corners of the bottom of the frame 1, the anti-collision ball 11 is a rubber ball structure, and the spring 10 is sleeved on the damping rod 9, and the spring 10 is connected to the inner wall of the frame 1, the battery 12 and the power-on switch 13 are arranged on the side of the tail end of the damping rod 9, and the overall center of gravity of the touch panel is adjusted by the counterweight 8, so that the bottom of the touch panel is turned down when it is accidentally dropped , and the anti-collision ball 11 at the bottom falls preferentially, which effectively prevents the antenna 7 from being broken in direct contact.
  • the damping rod 9 and the spring 10 can play the effect of buffering and shock absorption, and the inward movement of the damping rod 9 can trigger the power-on switch 13. make the battery 12 supply power to the motor 16;
  • the guide rail 14 is arranged on the side of the slide rail 5, the screw rod 15 is installed through the bearing, the limit block 18 is installed on the surface of the nut seat 17, and the limit block 18 is provided with a chute, and the slide rod 19 is installed through the chute, And the end block 20 is a friction block, and the motor 16 adopts the way of positive and negative wiring.
  • the motor 16 adopts the way of positive and negative wiring.
  • it When it is energized, it can drive the lead screw 15 to rotate, thereby driving the nut seat 17 to move back and forth in the guide rail 14. Its initial position is located in the guide rail 14.
  • the top, move to the bottom and then return to the top, the limit block 18 is movably installed on the slide bar 19, when the end block 20 of the slide bar 19 is in contact with the signal end block 6, the signal end block 6 can be driven by frictional force to move;
  • the positioning groove 21 is provided on the side of the sliding rod 19, and the fixing member 22 is a shrapnel steel ball structure.
  • the inclined groove 23 is provided on the sliding rod 19.
  • the recovery member 24 is a push rod structure
  • the reset member 25 is a sloping block structure.
  • the basic structure of the touch panel is formed by the frame 1, and the panel 2 is edge-sealed and the touch screen 3 is installed, the circuit structure is installed by the integrated board 4, and the signal terminal block 6 is connected, so as to The touch screen 3 is used to control the automation equipment.
  • the guide structure of the signal end block 6 is formed by the slide rail 5.
  • the antenna 7 can be pulled out from it for use, or the antenna 7 can be retracted in it for protection.
  • Block 8 adjusts the overall center of gravity of the touch panel. When the touch panel is accidentally dropped, the bottom of the touch panel faces downward, and the anti-collision ball 11 at the bottom falls first, which effectively prevents the antenna 7 from being broken in direct contact and the damping rod.
  • the damping rod 9 and the spring 10 can have the effect of buffering and shock absorption, and the inward movement of the damping rod 9 can trigger the power-on switch 13, so that the battery 12 can supply power to the motor 16.
  • 15 rotates, thereby driving the nut seat 17 to move back and forth in the guide rail 14, its initial position is located at the top of the guide rail 14, moves to the bottom and then returns to the top, the limit block 18 is movably installed on the sliding rod 19, when the sliding rod 19
  • the limit block 18 moves to the top of the guide rail 14, it is pushed by the reset piece 25 and protrudes from the limit block 18, and the end block 20 is connected with the signal end block 6, so when the touch panel falls , the motor 16 is energized, the sliding rod 19 can drive the signal end block 6 to move back, so that the antenna 7 is retracted into the sliding rail 5 to avoid damage, and then the sliding rod 19 moves to the bottom.
  • the end block 20 is separated from the signal end block 6, so when the sliding rod 19 moves back to the top, it will not make the antenna 7 extend again, effectively protecting the antenna 7,
  • the fixing member 22 and the positioning groove 21 can simply fix the sliding rod 19 , so as to ensure that the end block 20 has sufficient friction force and can push the signal end block 6 .

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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)
  • Position Input By Displaying (AREA)

Abstract

本发明涉及工业设备技术领域,具体为一种带天线的一体化触控面板,包括框架,所述框架上固定安装有面板,且面板上固定安装有触控屏,所述框架上固定安装有集成板和滑轨,且滑轨中滑动安装有信号端块,所述信号端块上固定安装有天线,所述框架上固定安装有配重块,且框架上滑动安装有阻尼杆,所述阻尼杆上固定安装有弹簧和防撞球,且框架中固定安装有电池,且电池上电性连接有通电开关,所述框架中固定安装有导轨,且导轨中转动安装有丝杆;触控面板上设置自回收式信号增强天线,其具有自我防护功能,通过防撞球的受力触发自回收机构,在触控面板掉落时,通过电机通电,能够带动使得天线回缩进滑轨中,防止天线受损。

Description

一种带天线的一体化触控面板 技术领域
本发明涉及工业设备技术领域,具体为一种带天线的一体化触控面板。
背景技术
随着工业技术的发展,现在的工业生产中经常会用到各种自动化的生产设备,通过精确的传感***以及机械手臂,能够完成自动的生产制造过程,有效的进行产品的批量制造,提高产品一致性。而现在的自动化设备通常使用一体化触控面板来进行控制,这些触控面板一般固定在设备上,而随着设备体积的增大,单一位置难以完全监测设备的整体运转,所以除了增加触控面板的数量,现在还采用手持的移动式触控面板来控制设备,这些触控面板通常搭配有天线来增加信号辐射范围。
技术问题
移动式的触控面板由于具有活动形,而车间的环境较为复杂,触控面板的安全性难以保证,经常会出现摔落的情况,使得屏幕出现裂隙,特别是细长的天线,不具有保护措施,出现断裂时维修十分麻烦。鉴于此,我们提出一种带天线的一体化触控面板。
技术解决方案
本发明的目的在于提供一种带天线的一体化触控面板,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种带天线的一体化触控面板,包括框架,所述框架上固定安装有面板,且面板上固定安装有触控屏,所述框架上固定安装有集成板和滑轨,且滑轨中滑动安装有信号端块,所述信号端块上固定安装有天线,所述框架上固定安装有配重块,且框架上滑动安装有阻尼杆,所述阻尼杆上固定安装有弹簧和防撞球,且框架中固定安装有电池,且电池上电性连接有通电开关,所述框架中固定安装有导轨,且导轨中转动安装有丝杆,所述丝杆上连接有电机和螺母座,且螺母座上固定安装有限位块,所述限位块上滑动安装有滑杆,且滑杆上固定安装有端块,所述滑杆上设置有定位槽,且限位块上设置有固定件,所述滑杆上设置有斜槽,所述导轨上固定安装有回收件,且框架上固定安装有复位件。
优选的,所述框架以及面板构成安装空间,其中安装有触控元件,且触控屏安装在面板的中部,所述集成板与触控屏电性连接,且集成板与信号端块连接。
优选的,所述滑轨设置在集成板的侧面,且天线竖直安装在信号端块上,且滑轨设置有天线拉出通道。
优选的,所述配重块设置在框架的底部,且阻尼杆滑动安装在框架的底部两个边角中,所述防撞球为胶球结构,且弹簧套接在阻尼杆上,且弹簧与框架内壁连接,所述电池以及通电开关设置在阻尼杆尾端的侧面。
优选的,所述导轨设置在滑轨的侧面,且丝杆通过轴承安装,所述限位块安装在螺母座的表面,且限位块上设置有滑槽,所述滑杆贯穿滑槽进行安装,且端块为增摩块。
优选的,所述定位槽设置在滑杆的侧面,且固定件为弹片钢球结构,所述固定件设置有两个,分别对应滑杆的回缩状态和伸出状态,所述斜槽设置在滑杆的底部,且回收件为推杆结构,且复位件为斜块结构。
有益效果
与现有技术相比,本发明的有益效果是:一方面,触控面板上设置自回收式信号增强天线,其具有自我防护功能,首先通过配重块进行触控面板整体的重心调整,在触控面板不慎掉落时使得其底部朝下,防撞球优先落地,有效的防止了天线直接触地发生折断,并且通过防撞球的受力触发自回收机构,在触控面板掉落时,通过电机通电,能够带动使得天线回缩进滑轨中,更进一步的防止天线受损;另一方面,自回收机构中的滑杆上设置有动态工作结构,能够在移动到极限位置时带动端块自动的与信号端块分离,防止在复位时将天线再次带出,避免误操作的产生。
附图说明
图1为本发明整体结构的正视图;
图2为本发明部分结构的示意图;
图3为图2中A区域放大示意图。
图中:框架1、面板2、触控屏3、集成板4、滑轨5、信号端块6、天线7、配重块8、阻尼杆9、弹簧10、防撞球11、电池12、通电开关13、导轨14、丝杆15、电机16、螺母座17、限位块18、滑杆19、端块20、定位槽21、固定件22、斜槽23、回收件24、复位件25。
本发明的实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1至图3,本发明提供一种技术方案:一种带天线的一体化触控面板,包括框架1,框架1上固定安装有面板2,且面板2上固定安装有触控屏3,框架1上固定安装有集成板4和滑轨5,且滑轨5中滑动安装有信号端块6,信号端块6上固定安装有天线7,框架1上固定安装有配重块8,且框架1上滑动安装有阻尼杆9,阻尼杆9上固定安装有弹簧10和防撞球11,且框架1中固定安装有电池12,且电池12上电性连接有通电开关13,框架1中固定安装有导轨14,且导轨14中转动安装有丝杆15,丝杆15上连接有电机16和螺母座17,且螺母座17上固定安装有限位块18,限位块18上滑动安装有滑杆19,且滑杆19上固定安装有端块20,滑杆19上设置有定位槽21,且限位块18上设置有固定件22,滑杆19上设置有斜槽23,导轨14上固定安装有回收件24,且框架1上固定安装有复位件25。
框架1以及面板2构成安装空间,其中安装有触控元件,且触控屏3安装在面板2的中部,集成板4与触控屏3电性连接,且集成板4与信号端块6连接,通过框架1构成触控面板的基础结构,而面板2进行了封边以及触控屏3的安装,通过集成板4进行了电路结构的安装,并且连接信号端块6,从而使用触控屏3进行了自动化设备的控制;
滑轨5设置在集成板4的侧面,且天线7竖直安装在信号端块6上,且滑轨5设置有天线拉出通道,通过滑轨5构成信号端块6的导向结构,可以将天线7从其中拉出使用,也可以将天线7回缩在其中进行保护;
配重块8设置在框架1的底部,且阻尼杆9滑动安装在框架1的底部两个边角中,防撞球11为胶球结构,且弹簧10套接在阻尼杆9上,且弹簧10与框架1内壁连接,电池12以及通电开关13设置在阻尼杆9尾端的侧面,通过配重块8进行触控面板整体的重心调整,在触控面板不慎掉落时使得其底部朝下,而底部的防撞球11优先落地,有效的防止了天线7直接触地发生折断,阻尼杆9以及弹簧10能够起到缓冲减震的效果,并且阻尼杆9内移能够触发通电开关13,使得电池12对电机16供电;
导轨14设置在滑轨5的侧面,且丝杆15通过轴承安装,限位块18安装在螺母座17的表面,且限位块18上设置有滑槽,滑杆19贯穿滑槽进行安装,且端块20为增摩块,电机16采用正反接线的方式,在其通电时能够带动丝杆15转动,从而带动螺母座17在导轨14中往复移动一圈,其初始位置位于导轨14的顶部,移动到底部再回到顶部,限位块18进行了滑杆19的活动安装,滑杆19的端块20与信号端块6接触时,能够通过摩擦力带动信号端块6移动;
定位槽21设置在滑杆19的侧面,且固定件22为弹片钢球结构,固定件22设置有两个,分别对应滑杆19的回缩状态和伸出状态,斜槽23设置在滑杆19的底部,且回收件24为推杆结构,且复位件25为斜块结构,当滑杆19随着限位块18移动到导轨14的顶部时,其受到复位件25的推动,从限位块18中伸出,端块20与信号端块6连接,所以在触控面板掉落时,电机16通电,滑杆19能够带动信号端块6回移,从而使得天线7回缩进滑轨5中避免受损,随后滑杆19移动到底部之后,其斜槽23受到回收件24的推动,从而带动滑杆19回缩,端块20与信号端块6分离,所以滑杆19在回移到顶部时,并不会使得天线7再次伸出,有效的对天线7进行了保护,固定件22和定位槽21能够进行滑杆19的简单固定,保证端块20具有充足的摩擦力,能够推动信号端块6;
工作原理:首先,通过框架1构成触控面板的基础结构,而面板2进行了封边以及触控屏3的安装,通过集成板4进行了电路结构的安装,并且连接信号端块6,从而使用触控屏3进行了自动化设备的控制,通过滑轨5构成信号端块6的导向结构,可以将天线7从其中拉出使用,也可以将天线7回缩在其中进行保护,通过配重块8进行触控面板整体的重心调整,在触控面板不慎掉落时使得其底部朝下,而底部的防撞球11优先落地,有效的防止了天线7直接触地发生折断,阻尼杆9以及弹簧10能够起到缓冲减震的效果,并且阻尼杆9内移能够触发通电开关13,使得电池12对电机16供电,电机16采用正反接线的方式,在其通电时能够带动丝杆15转动,从而带动螺母座17在导轨14中往复移动一圈,其初始位置位于导轨14的顶部,移动到底部再回到顶部,限位块18进行了滑杆19的活动安装,当滑杆19随着限位块18移动到导轨14的顶部时,其受到复位件25的推动,从限位块18中伸出,端块20与信号端块6连接,所以在触控面板掉落时,电机16通电,滑杆19能够带动信号端块6回移,从而使得天线7回缩进滑轨5中避免受损,随后滑杆19移动到底部之后,其斜槽23受到回收件24的推动,从而带动滑杆19回缩,端块20与信号端块6分离,所以滑杆19在回移到顶部时,并不会使得天线7再次伸出,有效的对天线7进行了保护,固定件22和定位槽21能够进行滑杆19的简单固定,保证端块20具有充足的摩擦力,能够推动信号端块6。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。
 

Claims (6)

  1. 一种带天线的一体化触控面板,包括框架(1),其特征在于:所述框架(1)上固定安装有面板(2),且面板(2)上固定安装有触控屏(3),所述框架(1)上固定安装有集成板(4)和滑轨(5),且滑轨(5)中滑动安装有信号端块(6),所述信号端块(6)上固定安装有天线(7),所述框架(1)上固定安装有配重块(8),且框架(1)上滑动安装有阻尼杆(9),所述阻尼杆(9)上固定安装有弹簧(10)和防撞球(11),且框架(1)中固定安装有电池(12),且电池(12)上电性连接有通电开关(13),所述框架(1)中固定安装有导轨(14),且导轨(14)中转动安装有丝杆(15),所述丝杆(15)上连接有电机(16)和螺母座(17),且螺母座(17)上固定安装有限位块(18),所述限位块(18)上滑动安装有滑杆(19),且滑杆(19)上固定安装有端块(20),所述滑杆(19)上设置有定位槽(21),且限位块(18)上设置有固定件(22),所述滑杆(19)上设置有斜槽(23),所述导轨(14)上固定安装有回收件(24),且框架(1)上固定安装有复位件(25)。
  2. 根据权利要求1所述的一种带天线的一体化触控面板,其特征在于:所述框架(1)以及面板(2)构成安装空间,其中安装有触控元件,且触控屏(3)安装在面板(2)的中部,所述集成板(4)与触控屏(3)电性连接,且集成板(4)与信号端块(6)连接。
  3. 根据权利要求1所述的一种带天线的一体化触控面板,其特征在于:所述滑轨(5)设置在集成板(4)的侧面,且天线(7)竖直安装在信号端块(6)上,且滑轨(5)设置有天线拉出通道。
  4. 根据权利要求1所述的一种带天线的一体化触控面板,其特征在于:所述配重块(8)设置在框架(1)的底部,且阻尼杆(9)滑动安装在框架(1)的底部两个边角中,所述防撞球(11)为胶球结构,且弹簧(10)套接在阻尼杆(9)上,且弹簧(10)与框架(1)内壁连接,所述电池(12)以及通电开关(13)设置在阻尼杆(9)尾端的侧面。
  5. 根据权利要求1所述的一种带天线的一体化触控面板,其特征在于:所述导轨(14)设置在滑轨(5)的侧面,且丝杆(15)通过轴承安装,所述限位块(18)安装在螺母座(17)的表面,且限位块(18)上设置有滑槽,所述滑杆(19)贯穿滑槽进行安装,且端块(20)为增摩块。
  6. 根据权利要求1所述的一种带天线的一体化触控面板,其特征在于:所述定位槽(21)设置在滑杆(19)的侧面,且固定件(22)为弹片钢球结构,所述固定件(22)设置有两个,分别对应滑杆(19)的回缩状态和伸出状态,所述斜槽(23)设置在滑杆(19)的底部,且回收件(24)为推杆结构,且复位件(25)为斜块结构。
     
PCT/CN2021/093307 2021-02-01 2021-05-12 一种带天线的一体化触控面板 WO2022160504A1 (zh)

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