WO2021168740A1 - 触控传感器和具有其的电子设备 - Google Patents

触控传感器和具有其的电子设备 Download PDF

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Publication number
WO2021168740A1
WO2021168740A1 PCT/CN2020/076985 CN2020076985W WO2021168740A1 WO 2021168740 A1 WO2021168740 A1 WO 2021168740A1 CN 2020076985 W CN2020076985 W CN 2020076985W WO 2021168740 A1 WO2021168740 A1 WO 2021168740A1
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Prior art keywords
antenna
touch
touch sensor
grids
channel
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PCT/CN2020/076985
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English (en)
French (fr)
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唐根初
陈禄禄
蔡荣
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安徽精卓光显技术有限责任公司
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Priority to PCT/CN2020/076985 priority Critical patent/WO2021168740A1/zh
Publication of WO2021168740A1 publication Critical patent/WO2021168740A1/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
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/24Supports; Mounting means by structural association with other equipment or articles with receiving set

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  • the present invention relates to the field of antenna technology, and in particular, to a touch sensor and an electronic device having the same.
  • each terminal is developing antenna and Touch integration schemes, so as to achieve a transparent base.
  • the antenna design plan made on the material is getting more and more attention.
  • an object of the present invention is to provide a touch sensor, which effectively reduces the thickness of the touch sensor, reduces the manufacturing process of the touch sensor, and reduces the cost.
  • Another object of the present invention is to provide an electronic device with the above touch sensor.
  • a touch sensor includes: a grid electrode layer, the grid electrode layer includes a plurality of touch drive channels, a plurality of sensing channels, and an antenna channel, and a plurality of the touch drive channels Arranged alternately with a plurality of said sensing channels, electrically isolated from two adjacent touch driving channels, each said touch driving channel includes a plurality of first grids, and the plurality of said first grids are connected to each other
  • Each of the sensing channels includes a plurality of second grids, the two second grids of two adjacent sensing channels are electrically connected by a conductive bridge, and the antenna channel includes at least one antenna segment One end of the antenna segment is coupled to at least one of the second grids, and the antenna channel, the multiple touch drive channels, and the multiple sensing channels are all located in the same plane.
  • FIG. 1 is a schematic diagram of a touch sensor according to an embodiment of the present invention
  • Fig. 2 is a schematic diagram of an electronic device according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of the connection between the touch sensor and the communication control component of the electronic device shown in FIG. 2;
  • FIG. 4 is a top view of the connection between the touch sensor and the communication control component shown in FIG. 3;
  • FIG. 5 is a schematic diagram of the position of the visible area and the ANT electrode assembly of the electronic device shown in FIG. 2.
  • 100 touch sensor; 101: cover plate; 102: grid electrode layer; 200: electronic device;
  • antenna channel 1: antenna channel; 11: antenna section; 111: first antenna section; 112: second antenna section;
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, the features defined with “first” and “second” may explicitly or implicitly include one or more of these features. Further, in the description of the present invention, unless otherwise specified, “plurality” means two or more.
  • the touch sensor 100 includes a grid electrode layer 102.
  • the grid electrode layer 102 includes a plurality of touch driving channels 2, a plurality of sensing channels 3, and an antenna channel 1.
  • the control driving channel 2 is electrically isolated.
  • Each touch driving channel 2 includes a plurality of first grids 21, which are connected to each other, and each sensing channel 3 includes a plurality of second grids 31, which are adjacent to each other.
  • the two second grids 31 of each sensing channel 3 are electrically connected by a conductive bridge 4,
  • the antenna channel 1 includes at least one antenna section 11, and one end of the antenna section 11 is coupled and connected to the at least one second grid 31, and the antenna channel 1.
  • the multiple touch driving channels 2 and the multiple sensing channels 3 are all located in the same plane.
  • a plurality of first grids 21 arranged at intervals in the vertical direction constitute the touch drive channel 2, and are arranged at intervals in the horizontal direction (for example, the left and right direction in FIG. 1).
  • the plurality of second grids 31 in each of the sensing channels 3 constitute the sensing channel 3, and two adjacent second grids 31 in each sensing channel 3 are electrically connected by a conductive bridge 4.
  • the antenna channel 1 includes at least one antenna section 11, one end of the antenna section is coupled to at least one second grid 31, that is, one end of the antenna section can be connected to one second grid 31, or the antenna section is located in two adjacent second grids. Between grid 31.
  • the antenna channel 1, the touch drive channel 2 and the sensing channel 3 are all located in the same plane.
  • Antenna channel 1 can be used to transmit or receive electromagnetic waves. In this way, by arranging the antenna channel 1, the touch driving channel 2 and the sensing channel 3 in the same layer, the thickness of the touch sensor 100 is effectively reduced, the manufacturing process of the touch sensor is reduced, and the cost is reduced.
  • the two adjacent second grids 31 of each sensing channel 3 are electrically connected through the conductive bridge 4, and the antenna section 11 of the antenna channel 1 is connected to the phase Between the two second grids 31 adjacent to the two sensing channels 3, the antenna channel 1, the touch drive channel 2 and the sensing channel 3 can be arranged in the same plane, thereby effectively reducing the touch sensor
  • the thickness of 100 reduces the manufacturing process of the touch sensor 100 and reduces the cost.
  • the antenna channel 1 is provided on the edge of the grid electrode layer 102, there are multiple antenna segments 11, and the multiple antenna segments 11 include multiple first antenna segments 111 and multiple second antenna segments 112, One ends of the plurality of first antenna segments 111 are respectively connected to the plurality of second grids 31 of the plurality of sensing channels 3 at the outermost edge, and the plurality of second antenna segments 112 are respectively connected to the plurality of adjacent sensing channels 3 at the outermost edge. Between the two second grids 31.
  • “plurality” means two or more. For example, in the example of FIG.
  • the uppermost end of the touch sensor 100 is the edge of the sensing channel 3
  • the first antenna segment 111 is connected to the upper end of the second grid 31 at the edge
  • the second antenna segment 112 is connected to the two edges at the edge. Between the second grid 31. Since the touch frequency of the edge of the screen of the electronic device is low, the impact on the touch function can be minimized.
  • a plurality of second antenna segments 112 are respectively connected between the two second grids 31 of two adjacent sensing channels 3 at the outermost edge.
  • the touch function of the touch sensor is further guaranteed.
  • the touch sensor 100 further includes a plurality of insulating members 5, and each insulating member 5 is provided between the conductive bridge 4 and a portion of the touch drive channel 2 corresponding to the conductive bridge 4.
  • the insulating member 5 is located at the overlapping portion of the conductive bridge 4 and the touch drive channel 2 and the conductive bridge 4. This arrangement effectively ensures the insulation effect between the overlapped portion of the touch drive channel 2 and the conductive bridge 4, and avoids a short circuit between the touch drive channel 2 and the sensing channel 3.
  • the adjacent multiple sensing channels at the most edge of the grid electrode layer 102 are used as touch components or antenna components in 3 time divisions.
  • the sensing channels 3 are used as touch components for half of the time, and the other half of the time are used as touch components.
  • Antenna components As a result, the functions of touch control and antenna are effectively realized, and the antenna and touch control are integrated in the same layer.
  • two adjacent sensing channels at the outermost edge of the grid electrode layer 102 are used as touch components or antenna components in 3 time divisions. Since the touch use frequency at the extreme edge of the sensing channel 3 is low, the impact on the touch function can be minimized.
  • both ends of each insulating member 5 extend to the surfaces of two adjacent second grids 31 respectively.
  • the left and right ends of the insulating member 5 respectively extend to the surfaces of the two adjacent second meshes 31 on the left and right sides.
  • the length of the insulating member 5 is greater than that of the two adjacent second meshes. The distance between grid 31. As a result, the insulation range is enlarged, so that a better insulation effect can be achieved.
  • each insulating member 5 is greater than the width of the conductive bridge 4.
  • the insulating member 5 may be symmetrically arranged with respect to the central axis in the length direction of the conductive bridge 4, and the width of the insulating member 5 in the vertical direction shown in FIG. 1 is greater than that of the conductive bridge 4 in the vertical direction. width. This arrangement can also effectively ensure the insulation effect at the conductive bridge 4, thereby ensuring the smoothness of signal transmission.
  • each touch driving channel 2 includes a plurality of first grids 21, and two adjacent first grids 21 are connected by a connecting section, wherein the width of each insulating member 5 is greater than or equal to The length of the connection segment.
  • a plurality of first grids 21 are connected by connecting segments to form a first touch driving channel 2. Therefore, by providing the connecting section, the signal transmission between the first grids 21 is ensured, and by setting the width of the insulating member 5 to be greater than or equal to the length of the connecting section, the insulation effect at the connecting section can be further effectively ensured.
  • each insulating member 5 is equal to the length of the connecting section.
  • the insulation effect at the connecting section is effectively ensured, and the use of materials of the insulating member 5 is reduced, so that the cost can be saved.
  • a groove 32 is formed on each second grid 31, and the end of the antenna segment 11 is fitted in the groove 32.
  • the second grid 31 is square, and each second grid 31 is provided with two grooves 32, and the two grooves 32 are respectively located at opposite corners of the second grid 31 ( For example, the upper and lower diagonals in FIG. 1), the end of the antenna segment 11 fits in the groove 32. Therefore, the second grid 31 serves as a passive component for receiving touch signals, which reduces the influence on the antenna signal. At the same time, the coupling connection between the antenna section 11 and the second grid 31 is realized.
  • the function of touch and antenna mode can partially convert the touch drive channel 2 into an antenna pattern to realize signal transmission and reception. It is ensured that the touch drive channel 2, the sensing channel 3, and the antenna channel 11 are arranged in the same layer, thereby reducing the thickness of the touch sensor 100 without adding additional manufacturing processes for the antenna channel 1, reducing the manufacturing process and reducing the cost.
  • the electronic device 200 includes a cover 101 and a touch sensor 100.
  • the touch sensor 100 is the touch sensor 100 according to the embodiment of the first aspect of the present invention, and the touch sensor 100 is provided on one side of the cover 101.
  • the electronic device 200 of the embodiment of the present invention by providing the touch sensor 100 of the embodiment of the first aspect of the present invention, since the antenna channel 1, the touch drive channel 2 and the sensing channel 3 are arranged in the same plane, it reduces The cost of the electronic device 200 saves space, is easy to integrate, and is positioned closer to the surface of the fuselage, which better achieves the effects of good performance and low interference.
  • a section of the antenna section 11 where the antenna channel 1 is located at the outermost edge of the electronic device 200 is connected to the communication control component 6 of the electronic device 200 through a compression or welding connection.
  • the antenna section 11 at the extreme edge is connected to the communication control component 6 of the electronic device 200 through the connection of solder 8, and the trace circuit board 9 is connected to the edge of the touch sensor 100. Due to the communication The control component 6 and the Trace circuit board 9 cannot be directly connected, so when the communication control component 6 and the Trace circuit board 9 are soldered, the copper powder 7 is used for transition between the two to ensure that the communication control component 6 and the Trace circuit board 9 are electrically connected. connect. As a result, the accuracy of signal transmission between the ANT electrode assembly 1 and the communication control assembly 6 is effectively ensured.
  • the antenna channel 1 is located at the top edge area of the viewing area 10 of the electronic device 200, and the top of the viewing area 10 is the vertical top when the electronic device 200 is in use.
  • the electronic device 200 may be any of various types of computer system devices that are mobile or portable and perform wireless communication.
  • the electronic device 200 may be a mobile phone or a smart phone (for example, a phone based on iPhoneTM, AndroidTM), a portable game device (for example, Nintendo DSTM, Play Station PortableTM, Game-boy AdvanceTM, iPhoneTM) , Laptops, PDAs, portable Internet devices, music players and data storage devices, other handheld devices and such as watches, earphones, pendants, headsets, etc.
  • the electronic device 200 can also be other wearable devices (For example, head-mounted devices (HMD) such as electronic glasses, electronic clothes, electronic bracelets, electronic necklaces, electronic tattoos, or smart watches).
  • HMD head-mounted devices
  • the electronic device 200 may also be any one of a plurality of electronic devices 200, including but not limited to cellular phones, smart phones, other wireless communication devices, personal digital assistants, audio players, and other media Players, music recorders, video recorders, cameras, other media recorders, radios, medical equipment, vehicle transportation equipment, calculators, programmable remote controls, pagers, laptop computers, desktop computers, printers, netbook computers, personal digital Assistants (PDA), portable multimedia players (PMP), moving picture experts group (MPEG-1 or MPEG-2) audio layer (MP3) players, portable medical equipment, digital cameras and combinations thereof.
  • PDA personal digital Assistants
  • PMP portable multimedia players
  • MPEG-1 or MPEG-2 moving picture experts group
  • MP3 moving picture experts group
  • the electronic device 200 can perform multiple functions (for example, playing music, displaying videos, storing pictures, and receiving and sending phone calls).
  • the electronic device 200 may be a portable device such as a cell phone, a media player, other handheld devices, wrist watch devices, pendant devices, earpiece devices, or
  • the electronic device 200 such as any one of various types of computer system devices that are mobile or portable and performs wireless communication, or any one of the other configurations and operations of any one of the plurality of electronic devices 200, is relevant to those of ordinary skill in the art. The personnel are all known and will not be described in detail here.

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Abstract

一种触控传感器(100)和具有其的电子设备,触控传感器(100)包括网格电极层(102),网格电极层(102)包括多个触控驱动通道(2)、多个感应通道(3)和天线通道(1),多个触控驱动通道(2)和多个感应通道(3)交错排布,相邻两个触控驱动通道(2)电隔绝,每个触控驱动通道(2)包括多个第一网格(21),多个第一网格(21)相互连接,每个感应通道(3)包括多个第二网格(31),相邻两个感应通道(3)的两个第二网格(31)之间通过导电架桥(4)电连接,天线通道(1)包括至少一个天线段(11),天线段(11)的一端与至少一个第二网格(31)耦合连接,天线通道(1)、多个触控驱动通道(2)和多个感应通道(3)均位于同一平面内。

Description

触控传感器和具有其的电子设备 技术领域
本发明涉及天线技术领域,具体而言,涉及一种触控传感器和具有其的电子设备。
背景技术
当前世界各国都在进行5G产品的开发,为了达到节省空间、便于集成、位置更靠机身表面、性能好、干扰小的效果,各终端均进行天线及Touch集成方案的开发,从而在透明基材上做的天线设计方案越来越受关注。
相关技术中,为了实现天线前置及与Touch集成,采用的是在Touch电极组件表面增加一层ANT电极组件,然而,这就导致了天线厚度的增加,且增加了ANT电极组件相关图形制作、贴合等制作工序,从而提高了成本。
发明内容
本发明旨在至少解决现有技术中存在的技术问题之一。为此,本发明的一个目的在于提出一种触控传感器,有效地降低了触控传感器的厚度,减少了触控传感器的制作工序,降低了成本。
本发明的另一个目的在于提出一种具有上述触控传感器的电子设备。
根据本发明第一方面实施例的触控传感器,包括:网格电极层,所述网格电极层包括多个触控驱动通道、多个感应通道和天线通道,多个所述触控驱动通道和多个所述感应通道交错排布,相邻两个所述触控驱动通道电隔绝,每个所述触控驱动通道包括多个第一网格,多个所述第一网格相互连接,每个所述感应通道包括多个第二网格,相邻两个所述感应通道的两个所述第二网格之间通过导电架桥电连接,所述天线通道包括至少一个天线段,所述天线段的一端与至少一个所述第二网格耦合连接,所述天线通道、所述多个所述触控驱动通道和所述多个所述感应通道均位于同一平面内。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本发明实施例的触控传感器的示意图;
图2是根据本发明实施例的电子装置的示意图;
图3是图2中所示的电子装置的触控传感器和通信控制组件连接的示意图;
图4是图3中所示的触控传感器和通信控制组件连接的俯视图;
图5是图2中所示的电子装置的可视区和ANT电极组件的位置的示意图。
附图标记:
100:触控传感器;101:盖板;102:网格电极层;200:电子装置;
1:天线通道;11:天线段;111:第一天线段;112:第二天线段;
2:触控驱动通道;21:第一网格;3:感应通道;31:第二网格;32:凹槽;
4:导电架桥;5:绝缘件;6:通信控制组件;7:铜粉;
8:焊锡;9:Trace线路板,10:可视区。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,术语“中心”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
需要说明的是,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。进一步地,在本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上。
下面详细描述本发明的实施例,参考附图描述的实施例是示例性的,下面详细描述本发明的实施例。
下面参考图1-图4描述根据本发明第一方面实施例的触控传感器。
如图1所示,根据本发明第一方面实施例的触控传感器100,包括网格电极层102。
具体而言,网格电极层102包括多个触控驱动通道2、多个感应通道3和天线通道1,多个触控驱动通道2和多个感应通道3交错排布,相邻两个触控驱动通道2电隔绝,每个触控驱动通道2包括多个第一网格21,多个第一网格21相互连接,每个感应通道 3包括多个第二网格31,相邻两个感应通道3的两个第二网格31之间通过导电架桥4电连接,天线通道1包括至少一个天线段11,天线段11的一端与至少一个第二网格31耦合连接,天线通道1、多个触控驱动通道2和多个感应通道3均位于同一平面内。
例如,在图1的示例中,纵向(例如,图1中的上下方向)间隔设置的多个第一网格21构成触控驱动通道2,横向(例如,图1中的左右方向)间隔设置的多个第二网格31构成感应通道3,每个感应通道3中相邻的两个第二网格31之间通过导电架桥4电连接。天线通道1包括至少一个天线段11,天线段的一端与至少一个第二网格31耦合连接,即天线段的一端可以与一个第二网格31相连,或者天线段位于相邻两个第二网格31之间。天线通道1、触控驱动通道2和感应通道3均位于同一平面内。天线通道1可以用于发射或接收电磁波。如此,通过将天线通道1、触控驱动通道2和感应通道3均设置于同一层内,有效地降低了触控传感器100的厚度,减少了触控传感器的制作工序,从而降低了成本。
根据本发明实施例的触控传感器100,通过将每个感应通道3的相邻两个第二网格31之间通过导电架桥4电连接,且使天线通道1的天线段11连接在相邻两个感应通道3的两个第二网格31之间,可以很好地实现将天线通道1、触控驱动通道2和感应通道3设置在同一平面内,从而有效地降低了触控传感器100的厚度,减少了触控传感器100的制作工序,降低了成本。
根据本发明的一些实施例,天线通道1设在网格电极层102的边缘,天线段11为多个,多个天线段11包括多个第一天线段111和多个第二天线段112,多个第一天线段111的一端分别与最边缘的多个感应通道3的多个第二网格31相连,多个第二天线段112分别连接在最边缘的相邻多个感应通道3的两个第二网格31之间。在本发明的描述中,“多个”的含义是两个或两个以上。例如,在图1的示例中,触控传感器100的最上端为感应通道3的边缘,第一天线段111与边缘处的第二网格31上端连接,第二天线段112连接在边缘处两个第二网格31之间。由于电子设备屏幕边缘的触控使用频率较低,由此,可以最大限度地降低对触控功能的影响。
可选地,在图1的示例中,多个第二天线段112分别连接在最边缘的相邻两个感应通道3的两个第二网格31之间。由此,进一步保证触控传感器的触控功能。
根据本发明的一些实施例,触控传感器100进一步包括多个绝缘件5,每个绝缘件5设在导电架桥4和触控驱动通道2的与导电架桥4对应的部分之间。例如,参照图1,绝缘件5位于导电架桥4与触控驱动通道2和导电架桥4的重叠部分处。如此设置,有效地保证了触控驱动通道2与导电架桥4重叠部分之间的绝缘效果,避免触控驱动通道 2与感应通道3之间发生短路。
进一步地,网格电极层102最边缘的相邻多个感应通道3分时作为触控组件或天线组件,例如在一个周期内,感应通道3在一半时间内作为触控组件,另一半时间作为天线组件。由此,有效地实现了触控与天线的功能,达到了将天线及触控集成于同一层内。
可选地,网格电极层102最边缘的相邻两个感应通道3分时作为触控组件或天线组件。由于感应通道3最边缘的触控使用频率较低,由此,可最大限度的降低对触控功能的影响。
可选地,每个绝缘件5的两端分别延伸至相邻两个第二网格31的表面上。例如,在图1示例中,绝缘件5的左右两端分别延伸至左右两侧相邻的两个第二网格31的表面上,此时绝缘件5的长度大于相邻两个第二网格31之间的距离。由此,加大了绝缘的范围,从而能起到更好地绝缘效果。
可选地,每个绝缘件5的宽度大于导电架桥4的宽度。例如,结合图1,绝缘件5可以关于导电架桥4的长度方向上的中心轴线对称设置,绝缘件5在图1中所示的上下方向上的宽度大于导电架桥4在上下方向上的宽度。如此设置,同样可以有效保证导电架桥4处的绝缘效果,从而保证了信号传递的顺畅性。
根据本发明的一些实施例,每个触控驱动通道2包括多个第一网格21,相邻两个第一网格21之间通过连接段连接,其中每个绝缘件5的宽度大于等于连接段的长度。例如,在图1的示例中,多个第一网格21通过连接段连接构成了一个第一触控驱动通道2。由此,通过设置连接段,保证了第一网格21之间信号的传递,而且,通过将绝缘件5的宽度设置为大于等于连接段的长度,可以进一步有效保证连接段处的绝缘效果。
可选地,每个绝缘件5的宽度与连接段的长度相等。由此,既有效地保证了连接段处的绝缘效果,又减少了绝缘件5材料的使用,从而可以节约成本。
根据本发明的一些实施例,每个第二网格31上形成有凹槽32,天线段11的端部配合在凹槽32内。例如,在图1的示例中,第二网格31呈正方形,每个第二网格31上设有两个凹槽32,两个凹槽32分别位于第二网格31的对角处(例如,图1中的上下两个对角),天线段11的端部配合在凹槽32内。由此,第二网格31作为了接收触控信号的被动组件,降低了对天线信号的影响。同时,实现了天线段11与第二网格31的耦合连接,通过耦合连接(如pattern通道耦合,即采用可视区边缘的几个T第二网格31通道作为分时天线,可同时实现触控与天线的功能)方式可以将触控驱动通道2局部转换为天线图形,实现信号的发射及接收。保证了触控驱动通道2、感应通道3与天线通道11设置在同一层内,从而可以降低触控传感器100的厚度,无需额外增加天 线通道1的制作工序,制程减少,降低了成本。
根据本发明第二方面实施例的电子设备200,参照图2,包括盖板101和触控传感器100。其中,触控传感器100为根据本发明上述第一方面实施例的触控传感器100,触控传感器100设在盖板101的一侧。
根据本发明实施例的电子设备200,通过设有本发明上述第一方面实施例的触控传感器100,由于天线通道1、触控驱动通道2和感应通道3设置在同一平面内,进而降低了电子设备200的成本,节省了空间,便于集成,且位置更靠机身表面,更好的达到性能好、干扰小的效果。
根据本发明的一些实施例,天线通道1位于电子设备200最边缘位置的天线段11的一段通过压合或焊接的连接方式与电子设备200的通信控制组件6连接。如图3和图4所示,最边缘位置的天线段11通过焊锡8的连接方式与电子设备200的通信控制组件6连接,触控传感器100边缘处连接Trace(追踪)线路板9,由于通信控制组件6与Trace线路板9无法直接相连,故在通信控制组件6与Trace线路板9进行焊锡8时两者之间采用铜粉7进行过渡,保证通信控制组件6与Trace线路板9实现电连接。由此,有效地保证了ANT电极组件1与通信控制组件6之间信号传递的准确性。
进一步地,如图5所示,天线通道1位于电子设备200的可视区10顶部边缘区域,可视区10顶部为电子设备200使用时垂直方向的顶部。由此,有效地保证触控传感器100能够准确的拾取触控信号,以及保证触控传感器100分时作为触控组件或天线组件进行工作。
可选地,电子设备200可以为移动或便携式并执行无线通信的各种类型的计算机系统设备中的任何一种。具体地,电子设备200可以为移动电话或智能电话(例如,基于iPhone TM,基于Android TM的电话),便携式游戏设备(例如Nintendo DS TM,Play Station Portable TM,Game-boy Advance TM,iPhone TM)、膝上型电脑、PDA、便携式互联网设备、音乐播放器以及数据存储设备,其他手持设备以及诸如手表、入耳式耳机、吊坠、头戴式耳机等,电子设备200还可以为其他的可穿戴设备(例如,诸如电子眼镜、电子衣服、电子手镯、电子项链、电子纹身或智能手表的头戴式设备(HMD))。
可选地,电子设备200还可以是多个电子设备200中的任何一个,多个电子设备200包括但不限于蜂窝电话、智能电话、其他无线通信设备、个人数字助理、音频播放器、其他媒体播放器、音乐记录器、录像机、照相机、其他媒体记录器、收音机、医疗设备、车辆运输仪器、计算器、可编程遥控器、寻呼机、膝上型计算机、台式计算机、打印机、上网本电脑、个人数字助理(PDA)、便携式多媒体播放器(PMP)、运动图像专家组(MPEG-1 或MPEG-2)音频层(MP3)播放器,便携式医疗设备以及数码相机及其组合。在一些情况下,电子设备200可以执行多种功能(例如,播放音乐,显示视频,存储图片以及接收和发送电话呼叫)。如果需要,电子设备200可以是诸如蜂窝电话、媒体播放器、其他手持设备、腕表设备、吊坠设备、听筒设备或其他紧凑型便携式设备的便携式设备。
根据本发明实施例的电子设备200如移动或便携式并执行无线通信的各种类型的计算机系统设备中的任何一种或多个电子设备200中的任何一个的其他构成以及操作对于本领域普通技术人员而言都是已知的,这里不再详细描述。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨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,本发明的范围由权利要求及其等同物限定。

Claims (10)

  1. 一种触控传感器,其特征在于,包括:
    网格电极层,所述网格电极层包括多个触控驱动通道、多个感应通道和天线通道,多个所述触控驱动通道和多个所述感应通道交错排布,相邻两个所述触控驱动通道电隔绝,每个所述触控驱动通道包括多个第一网格,多个所述第一网格相互连接,每个所述感应通道包括多个第二网格,相邻两个所述感应通道的两个所述第二网格之间通过导电架桥电连接,所述天线通道包括至少一个天线段,所述天线段的一端与至少一个所述第二网格耦合连接,所述天线通道、所述多个所述触控驱动通道和所述多个所述感应通道均位于同一平面内。
  2. 根据权利要求1所述的触控传感器,其特征在于,所述天线通道设在所述网格电极层的边缘,所述天线段为多个,多个所述天线段包括多个第一天线段和多个第二天线段,多个所述第一天线段的一端分别与最边缘的多个所述感应通道的多个所述第二网格相连,多个所述第二天线段分别连接在最边缘的相邻多个所述感应通道的两个所述第二网格之间。
  3. 根据权利要求2中任一项所述的触控传感器,其特征在于,所述多个所述第二天线段分别连接在最边缘的相邻两个所述感应通道的两个第二网格之间。
  4. 根据权利要求2所述的触控传感器,其特征在于,进一步包括:
    多个绝缘件,每个所述绝缘件设在所述导电架桥和所述触控驱动通道的与所述导电架桥对应的部分之间。
  5. 根据权利要求2所述的触控传感器,其特征在于,所述网格电极层最边缘的相邻多个感应通道分时作为触控组件或天线组件。
  6. 根据权利要求2所述的触控传感器,其特征在于,所述网格电极层件最边缘的相邻两个感应通道分时作为触控组件或天线组件。
  7. 根据权利要求1-6中任一项所述的天线,其特征在于,所述与天线段连接的第二网格上形成有凹槽,所述天线段的端部配合在所述凹槽内。
  8. 一种电子设备,其特征在于,包括:
    盖板;
    触控传感器,所述触控传感器设在所述盖板的一侧,所述触控传感器为根据权利要求1-7中任一项所述的触控传感器。
  9. 如权利要求8所述的电子设备,其特征在于,所述天线通道位于电子设备最边缘位 置的天线段的一段通过压合或焊接的连接方式与电子设备的通信控制组件连接。
  10. 如权利要求8所述的电子设备,其特征在于,所述天线通道位于电子设备的可视区顶部边缘区域,所述可视区顶部为电子设备使用时垂直方向的顶部。
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