WO2019000607A1 - 宠物穿戴设备 - Google Patents

宠物穿戴设备 Download PDF

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Publication number
WO2019000607A1
WO2019000607A1 PCT/CN2017/097715 CN2017097715W WO2019000607A1 WO 2019000607 A1 WO2019000607 A1 WO 2019000607A1 CN 2017097715 W CN2017097715 W CN 2017097715W WO 2019000607 A1 WO2019000607 A1 WO 2019000607A1
Authority
WO
WIPO (PCT)
Prior art keywords
antenna
feed point
antenna feed
wearing device
pet wearing
Prior art date
Application number
PCT/CN2017/097715
Other languages
English (en)
French (fr)
Inventor
叶丹
王忠山
Original Assignee
深圳市沃特沃德股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市沃特沃德股份有限公司 filed Critical 深圳市沃特沃德股份有限公司
Publication of WO2019000607A1 publication Critical patent/WO2019000607A1/zh

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/27Adaptation for use in or on movable bodies
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/36Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/50Structural association of antennas with earthing switches, lead-in devices or lightning protectors
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/52Means for reducing coupling between antennas; Means for reducing coupling between an antenna and another structure

Definitions

  • the present invention relates to the field of communication devices, and in particular, to a pet wear device.
  • An antenna acts as a transducer that transforms a guided wave propagating on a transmission line into an electromagnetic wave propagating in an unbounded medium (usually free space), or vice versa, used as a transmission in a radio device. Or a component that receives electromagnetic waves.
  • An antenna acts as a transducer that transforms a guided wave propagating on a transmission line into an electromagnetic wave propagating in an unbounded medium (usually free space), or vice versa, used as a transmission in a radio device.
  • a component that receives electromagnetic waves An antenna acts as a transducer that transforms a guided wave propagating on a transmission line into an electromagnetic wave propagating in an unbounded medium (usually free space), or vice versa, used as a transmission in a radio device.
  • a component that receives electromagnetic waves An antenna acts as a transducer that transforms a guided wave propagating on a transmission line into an electromagnetic wave propagating in an unbounded medium (usually free space), or vice versa, used as a transmission in a radio
  • some pet wearing devices of the wearable product class limit the area and height of the antenna components in the device due to size, internal structure and design, etc., so that the performance of the signal of the partial frequency in the antenna is degraded during transmission. , user experience is poor.
  • the main object of the present invention is to propose a pet wearing device, which aims to increase the area and height of an antenna in a pet wearing device, reduce interference between different antennas, and improve signal reception performance.
  • the pet wearing device of the present invention includes a main board, a first group of antennas, and a connecting component;
  • one side of the main board is provided with a first upper antenna feed point, and the other side is provided with a first lower antenna feed point corresponding to the first upper antenna feed point, the first upper antenna feed point and the first The lower antenna feed point is turned on;
  • the first group of antennas includes a first upper antenna and a first lower antenna; the first upper antenna is connected to a first upper antenna feed point through the connecting component; the first lower antenna passes the connection The component is connected to the first lower antenna feed point.
  • the first upper antenna feed point includes a 2G/3G high frequency antenna feed point
  • the first lower antenna feed point includes a 2G/3G low frequency antenna feed point
  • the first upper antenna includes 2G/3G HF antenna
  • said The lower antenna includes a 2G/3G low frequency antenna.
  • the first upper antenna further includes a 2G/3G high frequency ground line
  • the first lower antenna further includes 2G/
  • the 3G low frequency ground line, the first upper antenna feed point further includes a 2G/3G high frequency antenna feed ground, and the first lower antenna feed point further includes a 2G/3G low frequency antenna feed ground.
  • the second group of antennas are respectively connected to the two ends of the main board, wherein one side of the main board is provided with a second upper antenna feeding point, and a second lower antenna feed point corresponding to the second upper antenna feed point is disposed on one side, and the second upper antenna feed point is electrically connected to the second lower antenna feed point;
  • the second group antenna includes a second upper antenna and a second lower antenna; the second upper antenna is connected to the second upper antenna feed point through the connecting component; the second lower antenna passes the connection The component is connected to the second lower antenna feed point.
  • the second upper antenna feed point includes a GPS antenna feed point
  • the second lower antenna feed point includes a WiFi/BT antenna feed point
  • the second upper antenna includes a GPS antenna
  • the second lower antenna includes a Wi Fi/BT antenna.
  • the second upper antenna feed point further includes a GPS antenna feed ground
  • the second lower antenna feed point further includes a WiFi/BT antenna feed ground
  • the second upper antenna further includes a GPS ground
  • the second lower antenna further includes a WiFi/BT ground.
  • the connecting component is an antenna ejector pin.
  • the housing further includes a housing, the housing includes an upper housing and a lower housing, and the main board is disposed between the upper housing and the inner portion of the lower housing;
  • the first upper antenna and the second upper antenna are respectively disposed at two ends of the upper shell; the first upper antenna and the second lower antenna are respectively disposed at two ends of the lower shell.
  • first upper antenna and the second upper antenna are embedded in the upper casing, and the first upper antenna and the second lower antenna are embedded in the lower casing.
  • the 2G/3G low frequency antenna is feedingly set to two
  • the 2G/3G high frequency antenna is feedingly set to two.
  • the frequencies of the signals transmitted by the first upper antenna and the first lower antenna are different.
  • first upper antenna feed point and the second upper antenna feed point are disposed at two ends of one side of the main board
  • first lower antenna feed point and the second lower antenna feed point are disposed at two ends of the other side of the main board.
  • the antenna thimble is made of a copper material.
  • a fixing member is further included, and the fixing member is disposed on the lower case.
  • a plurality of through holes are disposed on the lower case.
  • the pet wearing device transmits signals through the first upper antenna and the first lower antenna, and the first upper antenna and the first lower antenna are respectively connected to the front and back sides of the main board, and are increased.
  • the signal transmission area and height reduce the interference between the antennas and improve the signal transmission and reception rate.
  • FIG. 1 is a schematic structural view of a side view direction of a pet wearing device according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of another side view of a pet wearing device according to an embodiment of the present invention.
  • FIG. 3 is a schematic front view of a main board of a pet wearing device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram showing the reverse structure of a main board of a pet wearing device according to an embodiment of the present invention.
  • a pet wearing device includes a main board 1, an antenna, a feeding point, and a connecting member 4.
  • the antenna includes a first set of antennas
  • the feed point includes a first upper antenna feed point 5 and a first lower antenna feed point 6.
  • One side of the main board 1 is provided with a first upper antenna feed point 5, and the other side is provided with a first lower antenna feed point 6 corresponding to the first upper antenna feed point 5, the first upper antenna feed point 5 and the first lower
  • the antenna feed point 6 is turned on in the form of a trace
  • the first upper antenna feed point 5 and the first lower antenna feed point 6 both include a feed point and a feed ground.
  • the connecting component 4 is provided in plurality.
  • the first set of antennas includes a first upper antenna 2 and a first lower antenna 3.
  • the first upper antenna 2 and the first lower antenna 3 are used for transmitting signals of a certain frequency range.
  • the first lower antenna 3 is connected to the first upper antenna feed point 5 via the connecting member 4, and the first lower antenna 3 is connected to the first lower antenna feed point 6 via the connecting member 4.
  • the pet wear device transmits signals through the first upper antenna 2 and the first lower antenna 3.
  • the frequencies of the signals transmitted by the first upper antenna 2 and the first lower antenna 3 are different, and the signals of different frequencies are opposite to the antenna.
  • the bandwidth requirements for transmission are also different.
  • only the antenna feed point is disposed on the front surface of the main board, and the first upper antenna 2 and the first lower antenna 3 of different bandwidths are connected through the connecting component by transmitting signals through the unified antenna.
  • the first upper antenna 2 and the first lower antenna 3 of different bandwidths are debugged one by one, which reduces the debugging difficulty.
  • the frequencies of the signals transmitted by the first upper antenna 2 and the first lower antenna 3 may be the same, that is, the bandwidths are the same, and the first upper antenna 2 and the first lower antenna 3 of the same bandwidth are respectively connected by the connecting component 4.
  • the first upper antenna feed point 5 may include a 2G/3G high frequency antenna feed point
  • the first lower antenna feed point 6 includes a 2G/3G low frequency antenna feed point
  • first The upper antenna 2 includes a 2G/3G high frequency antenna
  • the first lower antenna 3 includes a 2G/3G low frequency antenna.
  • the 2G/3G HF antenna and the 2G/3G LF antenna are respectively disposed on the front and back sides of the main board 1.
  • the connecting parts 4 are two, which are respectively applied to the 2G/3G HF antenna and the 2G / 3G HF antenna feeding point. Connection, connection of 2G/3G low frequency antenna to 2G/3G low frequency antenna feed point.
  • 2G/3G HF antenna and 2G/3G LF antenna are used to transmit 2G/3G high-frequency signals and 2G/3G low-frequency signals.
  • 2G/3G can be set on both sides of the main board 1 as needed.
  • the area and height of the high-frequency antenna and the 2G/3G low-frequency antenna do not cause interference with each other, improving the transmission performance of the antenna.
  • the debugged 2G high-frequency signals include DCS1800 and PCS1900.
  • the debugged 3G high-frequency signals include BAN Dl (2100) and BAND2 (1900).
  • the debugged 2G low-frequency signals include GSM900 and GSM850.
  • the debugged 3G low-frequency signals include BAND5. (850) and BAND8 (900), the above signals are debugged, which reduces the difficulty of debugging.
  • the first upper antenna 2 in this embodiment further includes a 2G/3G high frequency ground line
  • the first lower antenna 3 further includes 2G/3G.
  • the low frequency ground line correspondingly, the first upper antenna feed point 5 may further include a 2G/3G high frequency antenna feed ground
  • the first lower antenna feed point 6 further includes a 2G/3G low frequency antenna feed ground.
  • the pet wearing device further adds two connecting members 4 for respectively connecting the 2G/3G high-frequency ground wire to the 2G/3G high-frequency antenna feed ground, the 2G/3G low-frequency ground wire and the 2G/3G low-frequency antenna. Feed connection.
  • the 2G/3G high-frequency ground line and the 2G/3G low-frequency ground line can be two respectively.
  • the 2G/3G high-frequency antenna feed ground and the 2G/3G low-frequency antenna feed ground can also be two, respectively. 4 is 4.
  • the antenna in this embodiment further includes a second group of antennas, and the feed point further includes a second upper antenna feed point 9 and a second lower antenna feed point 10.
  • the second upper antenna feed point 9 and the first upper antenna feed point 5 are respectively disposed at two ends of the main board 1 and are on the front surface of the main board, and the second lower antenna feed point 10 and the first lower antenna feed point 6 are respectively disposed on Both ends of the main board 1 are on the opposite side of the main board, and the second upper antenna feed point 9 is opposite to and aligned with the second lower antenna feed point 10, and the second upper antenna feed point 9 and the second lower antenna feed point 10 is also turned on by the trace form, the second upper antenna feed point 9 and the second lower antenna feed point 10 both include a feed point and a feed ground; the second set of antennas includes a range for transmitting a certain frequency range.
  • a second upper antenna 7 and a second lower antenna 8 of the signal the second upper antenna 7 is connected to the second upper antenna feed point 9 via the connecting member 4, and the second lower antenna 8
  • the frequencies of the signals transmitted by the second upper antenna 7 and the second lower antenna 8 are different, and different frequency signals have different bandwidth requirements for antenna transmission.
  • only the antenna feed point is provided on the front side of the main board, and the signal is transmitted through the unified antenna.
  • the second upper antenna 7 and the second lower antenna 8 of different bandwidths are respectively connected to the front and back sides of the main board 1 through the connecting component 4, so that the second upper antenna 7 and the second lower antenna 8 of different bandwidths respectively transmit signals of different frequencies. There is no mutual interference, and the performance of the antenna in the pet wearing device is improved.
  • the second upper antenna 7 and the second lower antenna 8 of different bandwidths are debugged one by one, which reduces the debugging difficulty.
  • the frequencies of the signals transmitted by the second upper antenna 7 and the second lower antenna 8 may be the same, that is, the bandwidths are the same, and the second upper antenna 7 and the second lower antenna 8 of the same bandwidth are respectively connected by the connecting component 4.
  • the signal transmission and reception area is increased, and the signal transmission and reception performance is improved.
  • the second upper antenna feed point 9 may include a GPS antenna feed point
  • the second upper antenna 7 includes a GPS antenna
  • the second lower antenna feed point 10 includes a WiFi/BT antenna feed.
  • Point the second lower antenna 8 includes a WiFi/BT antenna.
  • the GPS antenna and the WIFI/BT antenna are respectively disposed on the front and back sides of the main board 1
  • the transmission area and height of the antenna are increased, the interference problem between different antennas is reduced, and the transmission performance of the antenna is improved.
  • the frequency of the GPS signal is 1575.42MHZ
  • the frequency of the WIFI/BT signal is 2.4GHz.
  • the signal is debugged by the bifurcation, which reduces the difficulty of debugging.
  • the GPS antenna feeding point on the main board 1 and the WIFI/BT antenna feed are added.
  • the electric point, the GPS antenna and the WIFI/BT antenna are also added, which can improve the diversity of the signal transmitted by the pet wearing device.
  • the second upper antenna feed point 9 may also be a GPS/WIFI/BT three-antenna feed point, and the second upper antenna 7 and the second lower antenna 8 are both GPS/WIFI/BT three-antenna An antenna.
  • the second upper antenna 7 in this embodiment further includes a GPS ground line
  • the second lower antenna 8 further includes a WIFI/BT ground line
  • the second upper antenna feed point 9 may further include a GPS antenna feed area
  • the second lower antenna feed point 10 further includes a WIFI/BT antenna feed ground
  • the pet wearing device further includes two connecting members for respectively connecting the GPS ground wire to the GPS antenna feeding ground, and the WIFI/BT ground wire to the WIFI/BT antenna feeding ground.
  • the connecting component 4 in this embodiment is an antenna ejector pin, which is soldered to the feeding point through the antenna thimble to connect the corresponding antenna with the feeding point, which is convenient for assembly and maintenance.
  • the antenna ejector pin is Made of copper material.
  • the pet wearing device in this embodiment further includes a housing, and the housing includes an upper housing 11 and a lower housing 12, and the main board 1 is disposed between the upper housing 11 and the inner portion of the lower housing 12, the first upper antenna 2, and the second
  • the upper antennas 7 are disposed on the inner wall or the side wall of the upper casing 11, or embedded in the upper casing 11, and are respectively disposed at opposite ends of the upper casing 11.
  • the first upper antenna 3 and the second lower antenna 8 are disposed on the inner wall or the side wall of the lower casing 12, or are embedded in the lower casing 12, and are respectively disposed at opposite ends of the lower casing 12.
  • the lower casing 12 is further provided with a plurality of through holes 14, and the through holes 14 facilitate heat dissipation to prevent damage caused by excessive temperature of the electronic components in the casing.
  • the pet wearing device of the present embodiment further includes a fixing member 13 .
  • the fixing member 13 is disposed on one side wall of the lower casing 12 , and the other end is movably fastened to the other side wall of the lower casing 12 .
  • the wearing cord is used to put the pet wearing device on the pet.
  • the pet wearing device transmits signals through the first upper antenna 2 and the first lower antenna 3, and the first upper antenna 2 and the first lower antenna 3 are respectively connected to the front and back sides of the main board 1.

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  • Variable-Direction Aerials And Aerial Arrays (AREA)
  • Details Of Aerials (AREA)

Abstract

本发明提出的一种宠物穿戴设备,包括主板、第一组天线以及连接部件;所述主板的一面设置有第一上天线馈点,另一面设置有与所述第一上天线馈点对应的第一下天线馈点。本发明提出的宠物穿戴设备,旨在增大宠物穿戴设备中天线的面积与高度,减少不同天线之间的干扰,提高信号接收的性能。

Description

技术领域
[0001] 本发明涉及通讯设备领域, 特别是涉及一种宠物穿戴设备。
背景技术
[0002] 天线作为一种变换器, 它把传输线上传播的导行波, 变换成在无界媒介 (通常 是自由空间) 中传播的电磁波, 或者进行相反的变换, 在无线电设备中用来作 为发射或接收电磁波的部件。 凡是利用电磁波来传递信息的, 都依靠天线来进 行工作。 现有终端设备的需要传输多种类型的信号, 例如 2G、 3G、 WiFi、 GPS 以及 BT (蓝牙) 信号。 不同类型的信号由于频率不同, 需要的天线部件的结构 也不同, 现有的终端设备由于多种原因的限制, 很难确保各种信号的传输性能 。 例如一些穿戴产品类的宠物穿戴设备, 由于尺寸大小、 内部结构以及外观设 计等原因, 使得设备内的天线部件的面积和高度受到限制, 从而使得天线中的 部分频率的信号在传输吋的性能下降, 用户体验差。
技术问题
[0003] 本发明的主要目的为提出一种宠物穿戴设备, 旨在增大宠物穿戴设备中天线的 面积与高度, 减少不同天线之间的干扰, 提高信号接收的性能。
问题的解决方案
技术解决方案
[0004] 本发明提出的宠物穿戴设备, 包括主板、 第一组天线以及连接部件;
[0005] 所述主板的一面设置有第一上天线馈点, 另一面设置有与所述第一上天线馈点 对应的第一下天线馈点, 所述第一上天线馈点与第一下天线馈点相导通;
[0006] 所述第一组天线包括第一上天线和第一下天线; 所述第一上天线通过所述连接 部件与第一上天线馈点连接; 所述第一下天线通过所述连接部件与第一下天线 馈点连接。
[0007] 进一步地, 所述第一上天线馈点包括 2G/3G高频天线馈电点, 所述第一下天线 馈点包括 2G/3G低频天线馈电点, 所述第一上天线包括 2G/3G高频天线, 所述第 一下天线包括 2G/3G低频天线。
[0008] 进一步地, 所述第一上天线还包括 2G/3G高频地线, 所述第一下天线还包括 2G/
3G低频地线, 所述第一上天线馈点还包括 2G/3G高频天线馈电地, 所述第一下天 线馈点还包括 2G/3G低频天线馈电地。
[0009] 进一步地, 还包括第二组天线, 所述第一组天线与第二组天线分别连接于所述 主板两端; 其中, 所述主板的一面设置有第二上天线馈点, 另一面设置有与所 述第二上天线馈点对应的第二下天线馈点, 所述第二上天线馈点与第二下天线 馈点相导通;
[0010] 所述第二组天线包括第二上天线和第二下天线; 所述第二上天线通过所述连接 部件与第二上天线馈点连接; 所述第二下天线通过所述连接部件与第二下天线 馈点连接。
[0011] 进一步地, 所述第二上天线馈点包括 GPS天线馈电点, 所述第二下天线馈点包 括 WiFi/BT天线馈电点, 所述第二上天线包括 GPS天线, 所述第二下天线包括 Wi Fi/BT天线。
[0012] 进一步地, 所述第二上天线馈点还包括 GPS天线馈电地, 所述第二下天线馈点 还包括 WiFi/BT天线馈电地, 所述第二上天线还包括 GPS地线, 所述第二下天线 还包括 WiFi/BT地线。
[0013] 进一步地, 所述连接部件为天线顶针。
[0014] 进一步地, 还包括壳体, 所述壳体包括上壳以及下壳, 所述主板设置于所述上 壳与下壳内部之间;
[0015] 所述第一上天线和第二上天线分别设于所述上壳的两端; 所述第一上天线和第 二下天线分别设于所述下壳的两端。
[0016] 进一步地, 所述第一上天线和第二上天线嵌于所述上壳, 所述第一上天线和第 二下天线嵌于所述下壳。
[0017] 进一步地, 所述 2G/3G低频天线馈电地设置为两个, 所述 2G/3G高频天线馈电 地设置为两个。
[0018] 进一步地, 所述第一上天线以及所述第一下天线传输的信号的频率不同。
[0019] 进一步地, 所述第一上天线馈点和第二上天线馈点设置于所述主板一面的两端 , 所述第一下天线馈点和第二下天线馈点设置于所述主板另一面的两端。
[0020] 进一步地, 所述天线顶针为铜制材料制成。
[0021]
[0022] 进一步地, 还包括固定部件, 所述固定部件设置于所述下壳上。
[0023] 进一步地, 所述下壳上设置有多个通孔。
发明的有益效果
有益效果
[0024] 本发明的有益效果为: 宠物穿戴设备通过所述第一上天线以及第一下天线来传 输信号, 第一上天线以及第一下天线分别连接于主板的正反面两侧, 增大了信 号的接发面积与高度, 减少天线间的干扰, 提高信号的收发率。
对附图的简要说明
附图说明
[0025] 图 1为本发明一实施例中的宠物穿戴设备的一侧视方向的结构示意图;
[0026] 图 2为本发明一实施例中的宠物穿戴设备的另一侧视方向的结构示意图; [0027] 图 3为本发明一实施例中的宠物穿戴设备的主板正面结构示意图;
[0028] 图 4为本发明一实施例中的宠物穿戴设备的主板反面结构示意图。
[0029]
[0030] 本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0031] 应当理解, 此处所描述的具体实施例仅仅用以解释本发明, 并不用于限定本发 明。
[0032] 参照图 1至图 4, 本发明一实施例中的宠物穿戴设备包括主板 1、 天线、 馈点及 连接部件 4。 天线包括第一组天线, 馈点包括第一上天线馈点 5、 第一下天线馈 点 6。
[0033] 主板 1的一面设置有第一上天线馈点 5, 另一面设置有与第一上天线馈点 5对应 的第一下天线馈点 6, 第一上天线馈点 5与第一下天线馈点 6通过走线形式相导通 , 第一上天线馈点 5与第一下天线馈点 6均包括有馈电点和馈电地。 连接部件 4设 置为多个, 第一组天线包括第一上天线 2和第一下天线 3, 第一上天线 2以及第一 下天线 3用于传输一定频率范围的信号, 第一上天线 2通过连接部件 4与第一上天 线馈点 5连接, 第一下天线 3通过连接部件 4与第一下天线馈点 6连接。
[0034] 宠物穿戴设备通过第一上天线 2以及第一下天线 3来传输信号, 本实施例中, 第 一上天线 2以及第一下天线 3传输的信号的频率不同, 不同频率信号对天线传输 的带宽要求也不相同。 相较于现有的宠物穿戴设备的只有主板的正面上设置有 天线馈点, 并通过统一的天线的来传输信号相比, 不同带宽的第一上天线 2以及 第一下天线 3通过连接部件 4分别连接于主板 1的正面、 反面, 使得不同带宽的第 一上天线 2以及第一下天线 3对应传输不同频率的信号吋, 不存在相互干扰, 提 高宠物穿戴设备中天线的性能; 同吋在调试过程中, 对不同带宽的第一上天线 2 以及第一下天线 3进行逐一调试, 降低了调试难度。 在其它实施例中, 第一上天 线 2以及第一下天线 3传输的信号的频率也可以相同, 即带宽相同, 相同带宽的 第一上天线 2、 第一下天线 3通过连接部件 4分别连接于主板 1的正面、 反面, 增 大信号的收发面积, 提高信号收发性能。
[0035] 本实施例中的宠物穿戴设备, 第一上天线馈点 5可以包括 2G/3G高频天线馈电点 , 第一下天线馈点 6包括 2G/3G低频天线馈电点, 第一上天线 2包括 2G/3G高频天 线, 第一下天线 3包括 2G/3G低频天线。 2G/3G高频天线以及 2G/3G低频天线分别 设置于主板 1的正反面两侧, 连接部件 4为两个, 分别应用于 2G/3G高频天线与 2G /3G高频天线馈电点的连接, 2G/3G低频天线与 2G/3G低频天线馈电点的连接。 通 过 2G/3G高频天线以及 2G/3G低频天线分幵来传输 2G/3G的高频信号以及 2G/3G的 低频信号, 能根据需要在主板 1的正反两侧来分幵设置 2G/3G高频天线以及 2G/3G 低频天线的面积和高度, 不会互相造成干扰, 提高天线的传输性能。 在调试吋 , 调试的 2G高频信号包括 DCS1800以及 PCS1900, 调试的 3G高频信号包括 BAN Dl(2100)以及 BAND2(1900), 调试的 2G低频信号包括 GSM900以及 GSM850, 调 试的 3G低频信号包括 BAND5(850)以及 BAND8(900), 分幵对上述信号进行调试 , 降低了调试难度。
[0036] 本实施例中的第一上天线 2还包括 2G/3G高频地线, 第一下天线 3还包括 2G/3G 低频地线, 对应地, 第一上天线馈点 5还可以包括 2G/3G高频天线馈电地, 第一 下天线馈点 6还包括 2G/3G低频天线馈电地。 同样地, 宠物穿戴设备还进一步增 加两个连接部件 4, 分别应用于 2G/3G高频地线与 2G/3G高频天线馈电地的连接, 2G/3G低频地线与 2G/3G低频天线馈电地的连接。 2G/3G高频地线与 2G/3G低频地 线可以分别为两个, 对应地, 2G/3G高频天线馈电地与 2G/3G低频天线馈电地也 可以分别为两个, 连接部件 4为 4个。
[0037] 本实施例中的天线还包括第二组天线, 馈点还包括第二上天线馈点 9、 第二下 天线馈点 10。 第二上天线馈点 9与第一上天线馈点 5分别设于主板 1的两端, 且同 在主板的正面上, 第二下天线馈点 10与第一下天线馈点 6分别设于主板 1的两端 , 且同在主板的反面上, 并且第二上天线馈点 9与第二下天线馈点 10相背且对齐 设置, 第二上天线馈点 9与第二下天线馈点 10也通过走线形式相导通, 第二上天 线馈点 9与第二下天线馈点 10同样地均包括有馈电点和馈电地; 第二组天线包括 用于传输一定频率范围的信号的第二上天线 7和第二下天线 8, 第二上天线 7通过 连接部件 4与第二上天线馈点 9连接, 第二下天线 8通过连接部件 4与第二下天线 馈点 10连接。
[0038] 本实施例中第二上天线 7以及第二下天线 8传输的信号的频率不同, 不同频率信 号对天线传输的带宽要求也不相同。 相较于现有的宠物穿戴设备的只有主板的 正面上设置有天线馈点, 并通过统一的天线的来传输信号相比。 不同带宽的第 二上天线 7以及第二下天线 8通过连接部件 4分别连接于主板 1的正面、 反面, 使 得不同带宽的第二上天线 7以及第二下天线 8对应传输不同频率的信号, 不存在 相互干扰, 提高宠物穿戴设备中天线的性能; 同吋在调试过程中, 对不同带宽 的第二上天线 7以及第二下天线 8进行逐一调试, 降低了调试难度。 在其它实施 例中, 第二上天线 7以及第二下天线 8传输的信号的频率也可以相同, 即带宽相 同, 相同带宽的第二上天线 7以及第二下天线 8通过连接部件 4分别连接于主板 1 的正面、 反面, 增大信号的收发面积, 提高信号收发性能。
[0039] 本实施例中的宠物穿戴设备, 第二上天线馈点 9可以包括 GPS天线馈电点, 第 二上天线 7包括 GPS天线, 第二下天线馈点 10包括 WiFi/BT天线馈电点, 第二下天 线 8包括 WiFi/BT天线。 GPS天线以及 WIFI/BT天线分别设置于主板 1的正反面两 侧, 连接部件 4为两个, 分别应用于 GPS天线与 GPS天线馈电点的连接, WIFI/BT 天线与 WIFI/BT天线馈电点的连接。 通过在主板 1的正反面两侧分幵设置 GPS天 线以及 WIFI/BT天线, 增大天线的接发面积和高度, 减少不同天线间的干扰问题 , 提高天线的传输性能。 在调试吋, GPS信号的频率为 1575.42MHZ, WIFI/BT 信号的频率为 2.4GHz, 分幵对信号进行调试, 降低了调试难度; 增加主板 1上的 GPS天线馈电点以及 WIFI/BT天线馈电点, 还增加 GPS天线以及 WIFI/BT天线, 能提高宠物穿戴设备传输信号的多样性。 在其它实施例中, 第二上天线馈点 9也 可以为 GPS/WIFI/BT三天线合一馈电点, 第二上天线 7、 第二下天线 8均为 GPS/ WIFI/BT三天线合一天线。
[0040] 本实施例中的第二上天线 7还包括 GPS地线, 第二下天线 8还包括 WIFI/BT地线 , 对应地, 第二上天线馈点 9还可以包括 GPS天线馈电地, 第二下天线馈点 10还 包括 WIFI/BT天线馈电地。 同样地, 宠物穿戴设备进一步包括两个连接部件, 分 别应用于 GPS地线与 GPS天线馈电地的连接, WIFI/BT地线与 WIFI/BT天线馈电 地的连接。
[0041] 本实施例中的连接部件 4为天线顶针, 通过天线顶针焊接于馈点以将对应的天 线与馈点连接, 便于组装以及维修, 优选地, 为了保证信号传输的效果, 天线 顶针为铜制材料制成。
[0042] 本实施例中的宠物穿戴设备还包括壳体, 壳体包括上壳 11以及下壳 12, 主板 1 设置于上壳 11与下壳 12内部之间, 第一上天线 2、 第二上天线 7设置于上壳 11内 壁或侧壁上, 或嵌于上壳 11内, 且分别设于上壳 11相对的两端。 同样地, 第一 上天线 3、 第二下天线 8设置于下壳 12内壁或侧壁上, 或嵌于下壳 12内, 且分别 设于下壳 12相对的两端。 优选地, 上述下壳 12上还设置有多个通孔 14, 上述通 孔 14便于进行散热, 防止壳体内的电子器件温度过高造成损坏。
[0043] 本实施例中的宠物穿戴设备还包括固定部件 13, 上述固定部件 13—端设置于上 述下壳 12的一侧壁上, 另一端活动扣接于下壳 12的另一侧壁, 以将穿戴绳扣于 下壳 12的表面, 穿戴绳用于将宠物穿戴设备穿套于宠物身上。
[0044] 综上所述, 宠物穿戴设备通过第一上天线 2以及第一下天线 3来传输信号, 第一 上天线 2以及第一下天线 3分别连接于主板 1的正反两侧, 增大了信号的接发面积 与高度, 提高信号的收发率。
以上所述仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利 用本发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运 用在其他相关的技术领域, 均同理包括在本发明的专利保护范围内。

Claims

权利要求书
一种宠物穿戴设备, 其特征在于, 包括主板、 第一组天线以及连接部 件;
所述主板的一面设置有第一上天线馈点, 另一面设置有与所述第一上 天线馈点对应的第一下天线馈点, 所述第一上天线馈点与第一下天线 馈点相导通;
所述第一组天线包括第一上天线和第一下天线; 所述第一上天线通过 所述连接部件与第一上天线馈点连接; 所述第一下天线通过所述连接 部件与第一下天线馈点连接。
根据权利要求 1所述的宠物穿戴设备, 其特征在于, 所述第一上天线 馈点包括 2G/3G高频天线馈电点, 所述第一下天线馈点包括 2G/3G低 频天线馈电点, 所述第一上天线包括 2G/3G高频天线, 所述第一下天 线包括 2G/3G低频天线。
根据权利要求 2所述的宠物穿戴设备, 其特征在于, 所述第一上天线 还包括 2G/3G高频地线, 所述第一下天线还包括 2G/3G低频地线, 所 述第一上天线馈点还包括 2G/3G高频天线馈电地, 所述第一下天线馈 点还包括 2G/3G低频天线馈电地。
根据权利要求 1所述的宠物穿戴设备, 其特征在于, 还包括第二组天 线, 所述第一组天线与第二组天线分别连接于所述主板两端; 其中, 所述主板的一面设置还有第二上天线馈点, 另一面还设置有与所述第 二上天线馈点对应的第二下天线馈点, 所述第二上天线馈点与第二下 天线馈点相导通;
所述第二组天线包括第二上天线和第二下天线; 所述第二上天线通过 所述连接部件与第二上天线馈点连接; 所述第二下天线通过所述连接 部件与第二下天线馈点连接。
根据权利要求 4所述的宠物穿戴设备, 其特征在于, 所述第二上天线 馈点包括 GPS天线馈电点, 所述第二下天线馈点包括 WiFi/BT天线馈 电点, 所述第二上天线包括 GPS天线, 所述第二下天线包括 WiFi/BT 天线。
根据权利要求 5所述的宠物穿戴设备, 其特征在于, 所述第二上天线 馈点还包括 GPS天线馈电地, 所述第二下天线馈点还包括 WiFi/BT天 线馈电地, 所述第二上天线还包括 GPS地线, 所述第二下天线还包括 WiFi/BT地线。
根据权利要求 5所述的宠物穿戴设备, 其特征在于, 所述连接部件为 天线顶针。
根据权利要求 4所述的宠物穿戴设备, 其特征在于, 还包括壳体, 所 述壳体包括上壳以及下壳, 所述主板设置于所述上壳与下壳内部之间 所述第一上天线和第二上天线分别设于所述上壳的两端; 所述第一上 天线和第二下天线分别设于所述下壳的两端。
根据权利要求 8所述的宠物穿戴设备, 其特征在于, 所述第一上天线 和第二上天线嵌于所述上壳, 所述第一上天线和第二下天线嵌于所述 下壳。
根据权利要求 3所述的宠物穿戴设备, 其特征在于, 所述 2G/3G低频 天线馈电地设置为两个, 所述 2G/3G高频天线馈电地设置为两个。 根据权利要求 3所述的宠物穿戴设备, 其特征在于, 所述第一上天线 以及所述第一下天线传输的信号的频率不同。
根据权利要求 4所述的宠物穿戴设备, 其特征在于, 所述第一上天线 馈点和第二上天线馈点设置于所述主板一面的两端, 所述第一下天线 馈点和第二下天线馈点设置于所述主板另一面的两端。
根据权利要求 7所述的宠物穿戴设备, 其特征在于, 所述天线顶针为 铜制材料制成。
根据权利要求 8所述的宠物穿戴设备, 其特征在于, 还包括固定部件 , 所述固定部件设置于所述下壳上。
根据权利要求 8所述的宠物穿戴设备, 其特征在于, 所述下壳上设置 有多个通孔。
PCT/CN2017/097715 2017-06-28 2017-08-16 宠物穿戴设备 WO2019000607A1 (zh)

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