WO2016165394A1 - 一种手表天线和手表 - Google Patents

一种手表天线和手表 Download PDF

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Publication number
WO2016165394A1
WO2016165394A1 PCT/CN2015/098737 CN2015098737W WO2016165394A1 WO 2016165394 A1 WO2016165394 A1 WO 2016165394A1 CN 2015098737 W CN2015098737 W CN 2015098737W WO 2016165394 A1 WO2016165394 A1 WO 2016165394A1
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Prior art keywords
slit
watch
antenna
seam
metal
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PCT/CN2015/098737
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English (en)
French (fr)
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郑小飞
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中兴通讯股份有限公司
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Publication of WO2016165394A1 publication Critical patent/WO2016165394A1/zh

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    • GPHYSICS
    • G04HOROLOGY
    • G04RRADIO-CONTROLLED TIME-PIECES
    • G04R60/00Constructional details
    • G04R60/06Antennas attached to or integrated in clock or watch bodies

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  • This document relates to, but is not limited to, the field of wearable devices, and more particularly to a watch antenna and watch.
  • Related watch antennas include: a printed circuit board (PCB), a connecting component, and a metal frame used as a radiation body of the antenna; wherein the metal frame is disposed around the PCB, and a first gap is disposed between the metal frame and the PCB
  • the metal frame is further provided with a feeding portion and a grounding portion connected to the PCB through the first slit; the metal shielding layer of the display screen is suspended on the PCB, and the metal shielding layer of the display screen is grounded to the PCB through the connecting member, and the display screen is
  • a second gap is disposed between the metal shielding layer and the metal frame, and the metal shielding layer of the display screen and the connecting member form a parasitic portion.
  • the performance of the antenna is related to the width of the gap between the first slit and the metal shield of the display screen, the position of the connecting portion of the antenna covering the parasitic portion of the antenna, the inductance value of the inductance in the connecting member, and the antenna
  • the grounding part of the radiating body and the position of the feeding part are all related, and the implementation is complicated.
  • the embodiment of the invention proposes a watch antenna and a watch to solve the technical problem of how to easily implement the antenna.
  • the embodiment of the invention provides a watch antenna, comprising:
  • a slit on the metal case a feed portion on the slit, a transmitting circuit, and a receiving Printed circuit board PCB of the circuit;
  • the gap is a non-metallic material, and the absolute value of the difference between the length of the slit and half of the central wavelength is less than or equal to a preset threshold; the feeding portion located on the slot is connected to the feeding portion on the PCB through the RF cable. And connected to one side of the gap.
  • the width of the slits is equal everywhere.
  • the slit is square or arcuate.
  • the gap is located at an upper portion, or a middle portion, or a bottom portion of the metal case.
  • the circumference of the dial on the metal case is greater than half of the center wavelength.
  • the embodiment of the invention further provides a watch comprising: a metal case, a printed circuit board PCB having a transmitting circuit and a receiving circuit;
  • the metal case is provided with a slit, and the gap is provided with a feeding portion;
  • the gap is a non-metallic material, and the absolute value of the difference between the length of the slit and half of the center wavelength is less than or equal to a preset threshold; the feeding portion located on the slot is connected to the feeding portion on the PCB through the RF cable, and Connected to one side of the gap.
  • the method further includes: a metal strap or a non-metal strap attached to the metal case.
  • the width of the slits is equal everywhere.
  • the slit is square or arcuate.
  • the gap is located at an upper portion, or a middle portion, or a bottom portion of the metal case.
  • the circumference of the dial on the metal case is greater than half of the center wavelength.
  • the embodiment of the invention includes: a slit on the metal case, a feeding portion on the slit, a printed circuit board PCB having a transmitting circuit and a receiving circuit; wherein the slit is a non-metallic material, the slit
  • the absolute value of the difference between the length and half of the center wavelength is less than or equal to a preset threshold; the feed portion located on the slot is connected to the feed portion on the PCB through the RF cable and connected to one side of the slot.
  • the above technical solution realizes the antenna through the gap on the metal case, and the bandwidth of the antenna is only related to the position of the feeding portion on the slot, and the performance of the antenna is only related to the position of the slot on the metal case and the length of the slot, therefore, The antenna is simply implemented.
  • FIG. 1 is a three-dimensional schematic view of a wristwatch according to an embodiment of the present invention.
  • FIG. 2 is a schematic cross-sectional view of a watch dial according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram showing a return loss of a watch antenna according to an embodiment of the present invention.
  • 1 is a metal case
  • 2 is a slit
  • 3 is a feeding part on the slit
  • 4 is a watch band
  • 5 is a radio frequency cable
  • 6 is a PCB.
  • an embodiment of the present invention provides a watch antenna, including:
  • the slit 2 is a non-metal material, and the absolute value of the difference between the length of the slit 2 and half of the central wavelength is less than or equal to a preset threshold; the feeding portion 3 located on the slit 2 passes through the RF cable 5 and the PCB 6 The upper feed portions are connected and connected to one side of the slit 2.
  • the center wavelength is determined by a working electromagnetic wave frequency and a refractive index of a metal material of the case;
  • the preset threshold is a difference between a propagation wavelength of the electromagnetic wave center frequency in the vacuum and a propagation wavelength in the metal material of the case; wherein the electromagnetic wave propagates in the metal material of the case; the electromagnetic wave propagates in the vacuum. Divided by the refractive index of the metal material;
  • the slit 2 serves as a radiator of the watch antenna, and the feeding portion 3 on the slit 2 serves as an excitation point of the watch antenna.
  • the width of the slit 2 is equal.
  • the width can be 1 millimeter (mm).
  • the slit 2 is a square shape, or a circular arc shape or the like.
  • the slit 2 is located at the upper portion, or the middle portion, or the bottom portion of the metal case 1.
  • the performance of the watch antenna is optimal.
  • the circumference of the dial on the metal case 1 is greater than half of the central wavelength.
  • the center wavelength is determined by a working electromagnetic wave frequency and a refractive index of the metal material;
  • the metal case 1 is square, or round, or elliptical.
  • the antenna is realized by the slot 2 on the metal case 1.
  • the bandwidth of the antenna is only related to the position of the feeding portion 3 on the slot 2, and the performance of the antenna is only in the metal case 1 with the slot 2
  • the position on the upper side is related to the length of the slit 2, and therefore, the antenna is simply realized.
  • the center wavelength is determined by a working electromagnetic wave frequency and a refractive index of the metal material.
  • Figure 3 is a graphical representation of the return loss of a watch antenna. As shown in FIG. 3, the return loss between 2.4 and 2.5 gigahertz (GHz) is less than -6 decibels (dB), that is, the bandwidth of the watch antenna is 2.4 to 2.5 GHz.
  • GHz gigahertz
  • dB decibels
  • the embodiment of the present invention further provides a watch comprising: a metal case 1, a PCB 6 having a transmitting circuit and a receiving circuit;
  • the metal case 1 is provided with a slit 2, and the gap 2 is provided with a feeding portion 3;
  • the gap 2 is a non-metal material, and the absolute value of the difference between the length of the slit 2 and half of the center wavelength is less than or equal to a preset threshold; the feeding portion 3 located on the slot 2 passes through the RF cable 5 and the feed on the PCB 6.
  • the electric parts are connected and connected to one side of the slit 2.
  • the center wavelength is determined by a working electromagnetic wave frequency and a refractive index of the metal material.
  • it further comprises: a metal watch band 4 or a non-metal watch band 4 connected to the metal case 1 .
  • the width of the slit 2 is equal.
  • the width may be 1 mm.
  • the slit 2 is a square shape, or a circular arc shape or the like.
  • the slit 2 is located at the upper portion, or the middle portion, or the bottom portion of the metal case 1.
  • the performance of the watch antenna is optimal.
  • the circumference of the dial on the metal case 1 is greater than half of the central wavelength.
  • the center wavelength is determined by a working electromagnetic wave frequency and a refractive index of the metal material.
  • the metal case 1 is square, or round, or elliptical.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electric Clocks (AREA)
  • Support Of Aerials (AREA)

Abstract

一种手表天线和手表,包括:位于金属表壳(1)上的缝隙(2)、位于缝隙(2)上的馈电部分(3)、具有发射电路和接收电路的印制电路板PCB(6);其中,缝隙(2)为非金属材料,缝隙(2)的长度与中心波长的一半之间的差值的绝对值小于或等于预设阈值;位于缝隙(2)上的馈电部分(3)通过射频线缆(5)与PCB(6)上的馈电部分(3)相连,并与缝隙(2)的一边相连。上述技术方案通过金属表壳(1)上的缝隙(2)来实现天线,天线的带宽只与缝隙(2)上的馈电部分(3)的位置相关,天线的性能只与缝隙(2)在金属表壳(1)上的位置和缝隙(2)的长度相关,因此,简单地实现了天线。

Description

一种手表天线和手表 技术领域
本文涉及但不限于可穿戴设备领域,尤指一种手表天线和手表。
背景技术
智能可穿戴设备正在走进人们的生活。人们对产品的体验度要求越来越高,全金属手表具有良好的质感,是可穿戴设备发展的大势所趋。
相关的手表天线包括:印制电路板(PCB,Printed Circuit Board)、连接部件和用作天线辐射主体的金属边框;其中,金属边框设于PCB周围,金属边框与PCB之间设置有第一缝隙,金属边框还设置有通过第一缝隙与PCB连接的馈电部分以及接地部分;显示屏的金属屏蔽层悬空设置在PCB上,显示屏的金属屏蔽层通过连接部件与PCB连接接地,显示屏的金属屏蔽层与金属边框之间设置有第二缝隙,显示屏的金属屏蔽层以及连接部件形成寄生部分。
手表天线中,由于天线的性能与第一缝隙和显示屏的金属屏蔽层之间的缝隙的宽度相关,天线的频段覆盖与寄生部分的连接部件的位置、连接部件中电感的电感值大小、天线辐射主体的接地部分和馈电部分的位置均相关,实现比较复杂。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本发明实施例提出了一种手表天线和手表,以解决如何能够简单地实现天线的技术问题。
本发明实施例提出了一种手表天线,包括:
位于金属表壳上的缝隙、位于缝隙上的馈电部分、具有发射电路和接收 电路的印制电路板PCB;
其中,缝隙为非金属材料,缝隙的长度与中心波长的一半之间的差值的绝对值小于或等于预设阈值;位于缝隙上的馈电部分通过射频线缆与PCB上的馈电部分相连,并与缝隙的一边相连。
可选地,所述缝隙的宽度处处相等。
可选地,所述缝隙为方形,或圆弧形。
可选地,所述缝隙位于所述金属表壳的上部,或中部,或底部。
可选地,所述金属表壳上表盘的周长大于所述中心波长的一半。
本发明实施例还提出了一种手表,包括:金属表壳、具有发射电路和接收电路的印制电路板PCB;
其中,金属表壳上设置有缝隙,缝隙上设置有馈电部分;
缝隙为非金属材料,缝隙的长度与中心波长的一半之间的差值的绝对值小于或等于预设阈值;位于缝隙上的馈电部分通过射频线缆与PCB上的馈电部分相连,并与缝隙的一边相连。
可选地,还包括:与所述金属表壳相连的金属表带或非金属表带。
可选地,所述缝隙的宽度处处相等。
可选地,所述缝隙为方形,或圆弧形。
可选地,所述缝隙位于所述金属表壳的上部,或中部,或底部。
可选地,所述金属表壳上表盘的周长大于所述中心波长的一半。
与相关技术相比,本发明实施例包括:位于金属表壳上的缝隙、位于缝隙上的馈电部分、具有发射电路和接收电路的印制电路板PCB;其中,缝隙为非金属材料,缝隙的长度与中心波长的一半之间的差值的绝对值小于或等于预设阈值;位于缝隙上的馈电部分通过射频线缆与PCB上的馈电部分相连,并与缝隙的一边相连。上述技术方案通过金属表壳上的缝隙来实现天线,天线的带宽只与缝隙上的馈电部分的位置相关,天线的性能只与缝隙在金属表壳上的位置和缝隙的长度相关,因此,简单地实现了天线。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为本发明实施例手表的三维示意图;
图2为本发明实施例手表表盘的截面示意图;
图3为本发明实施例手表天线的回波损耗的曲线示意图;
图中,1为金属表壳,2为缝隙,3为缝隙上的馈电部分,4为表带,5为射频线缆,6为PCB。
本发明的实施方式
为了便于本领域技术人员的理解,下面结合附图对本发明作进一步的描述,并不能用来限制本发明的保护范围。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的各种方式可以相互组合。
参见图1和图2,本发明实施例提出了一种手表天线,包括:
位于金属表壳1上的缝隙2、位于缝隙2上的馈电部分3、具有发射电路和接收电路的PCB 6。
其中,缝隙2为非金属材料,缝隙2的长度与中心波长的一半之间的差值的绝对值小于或等于预设阈值;位于缝隙2上的馈电部分3通过射频线缆5与PCB 6上的馈电部分相连,并与缝隙2的一边相连。
可选的,所述中心波长由工作电磁波频率和表壳的金属材料折射率确定;
可选的,所述预设阈值为电磁波中心频率在真空中传播波长与表壳的金属材料中传播波长的差值;其中,电磁波在表壳的金属材料中传播波长=电磁波在真空中传播波长除以金属材料折射率;
其中,缝隙2作为手表天线的辐射体,缝隙2上的馈电部分3作为手表天线的激励点。
其中,缝隙2的宽度处处相等。可选的,宽度可以是1毫米(mm)。
其中,缝隙2为方形,或圆弧形等。
其中,缝隙2位于金属表壳1的上部,或中部,或底部。当缝隙2位于 金属表壳1的上部时,手表天线的性能最佳。
其中,金属表壳1上表盘的周长大于中心波长的一半。可选的,所述中心波长由工作电磁波频率和金属材料折射率确定;
其中,金属表壳1为方形,或圆形,或椭圆形等。
其中,PCB 6的四周存在一定的空隙,保证PCB 6上的除馈电部分之外的电路不会与金属表壳1导通。
通过本发明实施例的方案,通过金属表壳1上的缝隙2来实现天线,天线的带宽只与缝隙2上的馈电部分3的位置相关,天线的性能只与缝隙2在金属表壳1上的位置和缝隙2的长度相关,因此,简单地实现了天线。
具体实现过程中,首先通过计算手表天线的中心波长的一半,然后在金属表壳1上开出长度大概为中心波长的一半的等宽缝隙2,在缝隙2上任意选择一个位置作为馈电部分3,查看手表天线的带宽,通过调整缝隙2上馈电部分3的位置和缝隙2的长度、宽度,直到满足天线带宽。调试过程比较简单。可选的,所述中心波长由工作电磁波频率和金属材料折射率确定。
图3为手表天线的回波损耗的曲线示意图。如图3所示,在2.4~2.5吉赫兹(GHz)之间的回波损耗小于-6分贝(dB),即该手表天线的带宽为2.4~2.5GHz。
本发明实施例还提出了一种手表,包括:金属表壳1、具有发射电路和接收电路的PCB 6;
其中,金属表壳1上设置有缝隙2,缝隙2上设置有馈电部分3;
缝隙2为非金属材料,缝隙2的长度与中心波长的一半之间的差值的绝对值小于或等于预设阈值;位于缝隙2上的馈电部分3通过射频线缆5与PCB6上的馈电部分相连,并与缝隙2的一边相连。可选的,所述中心波长由工作电磁波频率和金属材料折射率确定。
可选的,所述预设阈值为电磁波中心频率在真空中传播波长与在表壳的金属材料中传播波长的差值;其中,电磁波在表壳的金属材料中传播波长= 电磁波在真空中传播波长除以金属材料折射率;
可选地,还包括:与金属表壳1相连的金属表带4或非金属表带4。
其中,缝隙2的宽度处处相等。可选地,宽度可以是1mm。
其中,缝隙2为方形,或圆弧形等。
其中,缝隙2位于金属表壳1的上部,或中部,或底部。当缝隙2位于金属表壳1的上部时,手表天线的性能最佳。
其中,金属表壳1上表盘的周长大于中心波长的一半。可选的,所述中心波长由工作电磁波频率和金属材料折射率确定。
其中,金属表壳1为方形,或圆形,或椭圆形等。
本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的精神和范围,均应涵盖在本发明的权利要求范围当中。
工业实用性
上述技术方案可简单地实现天线。

Claims (7)

  1. 一种手表天线,包括:
    位于金属表壳上的缝隙、位于缝隙上的馈电部分、具有发射电路和接收电路的印制电路板PCB;
    其中,缝隙为非金属材料,缝隙的长度与中心波长的一半之间的差值的绝对值小于或等于预设阈值;位于缝隙上的馈电部分通过射频线缆与PCB上的馈电部分相连,并与缝隙的一边相连。
  2. 根据权利要求1所述的手表天线,其中,所述缝隙的宽度处处相等。
  3. 根据权利要求1所述的手表天线,其中,所述缝隙为方形,或圆弧形。
  4. 根据权利要求1所述的手表天线,其中,所述缝隙位于所述金属表壳的上部,或中部,或底部。
  5. 根据权利要求1所述的手表天线,其中,所述金属表壳上表盘的周长大于所述中心波长的一半。
  6. 一种手表,包括如权利要求1~5中任一项所述的手表天线。
  7. 根据权利要求6所述的手表,还包括:与所述金属表壳相连的金属表带或非金属表带。
PCT/CN2015/098737 2015-09-02 2015-12-24 一种手表天线和手表 WO2016165394A1 (zh)

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CN107425262A (zh) * 2017-06-13 2017-12-01 东南大学 制作在玻璃表盘上的缝隙耦合平面四臂螺旋圆极化天线
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