WO2018119797A1 - 一种设有脉搏监测功能的智能腕带表 - Google Patents

一种设有脉搏监测功能的智能腕带表 Download PDF

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Publication number
WO2018119797A1
WO2018119797A1 PCT/CN2016/112771 CN2016112771W WO2018119797A1 WO 2018119797 A1 WO2018119797 A1 WO 2018119797A1 CN 2016112771 W CN2016112771 W CN 2016112771W WO 2018119797 A1 WO2018119797 A1 WO 2018119797A1
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Prior art keywords
control unit
main control
arm
monitoring function
pulse
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PCT/CN2016/112771
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English (en)
French (fr)
Inventor
江健良
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江健良
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Priority to PCT/CN2016/112771 priority Critical patent/WO2018119797A1/zh
Publication of WO2018119797A1 publication Critical patent/WO2018119797A1/zh

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    • GPHYSICS
    • G04HOROLOGY
    • G04RRADIO-CONTROLLED TIME-PIECES
    • G04R20/00Setting the time according to the time information carried or implied by the radio signal
    • GPHYSICS
    • G04HOROLOGY
    • G04RRADIO-CONTROLLED TIME-PIECES
    • G04R60/00Constructional details

Definitions

  • the present invention relates to a smart wristband watch provided with a pulse monitoring function.
  • a smart wristband watch with a pulse monitoring function comprising a main control unit and a touch display screen connected with the signal of the main control unit, and also includes a main The control unit signal is connected to the communication device;
  • the communication device includes a communication chip and a communication antenna; and further includes a button battery having a power supply for the main control unit, the touch display screen and the communication device; and a radio clock calibration unit, The radio clock calibration unit is connected to the main control unit signal;
  • the communication antenna includes a dielectric plate, and the medium plate is provided with two sets of microstrip units symmetrically up and down, each set of microstrip units includes a rectangular feeding arm, and the feeding arms are arranged a plurality of hexagonal feed holes are provided; a center of the feed arm extends upwardly with a first connecting strip, and a free end of the first connecting strip is provided with a circular first microstrip body, the first microstrip body V-shaped grooves are arranged on both sides of the feeding arm; two second connecting strips are further extended on both sides of the feeding arm, and the second connecting strips respectively extend upwardly with a second microstrip body having a right-angled trapezoid, and the second micro-belt body is upward Extending out of the third connecting strip, further comprising a ⁇ -shaped arch back radiating arm, the two legs of the arch back radiating arm are respectively connected with the two third connecting strips; the top side of the bow back radiating arm extends out of the plurality of arrangements
  • the main control unit is a CPU chip.
  • the touch display screen comprises a top layer of a release layer, an impact layer disposed at a lower end of the release layer, a touch sensing layer disposed at a lower end of the impact layer, and a display layer disposed at a lower end of the touch sensing layer.
  • the angle of the V-shaped groove is 30 degrees.
  • the number of the feed holes is 10-12.
  • the parasitic vibrator arm is provided with a plurality of rectangular endoscopic holes arranged together, and both sides of the endoscope hole are recessed inwardly with a semicircular recess.
  • the number of endless belts is eight.
  • a pulse detector is further included, the pulse detector is configured to monitor a pulse of the wearer; and the main control unit is connected to the pulse monitor signal;
  • the device further includes a Beidou positioning device, wherein the Beidou positioning device is connected to the main control unit;
  • the method further includes: a Bluetooth module for communicating with the mobile phone, the Bluetooth module and the main control unit Signal connection.
  • the chirp clock can be calibrated with time, which is convenient for tuning.
  • FIG. 2 is a plan view of an antenna of the present invention
  • FIG. 3 is a schematic structural view of a microstrip unit of the present invention.
  • FIG. 5 is a schematic diagram of a communication antenna of the present invention.
  • FIGS. 1 to 5 illustrate:
  • al-dielectric plate bl-feed arm; bl l-feed hole; bl2-first connection band; bl3-second connection band; b2- a microstrip body; b21-V-shaped groove; b3-second microstrip body; b31-first defect hole; b32-second defect hole; b33-third defect hole; b34-fourth defect hole; b4- Three connection belt; b5-back radiation arm; b51-first adjustment depression; b 52-second adjustment depression; b6-annular belt; b7-parasitic oscillator arm; b71-endoscopic hole.
  • a smart wristband watch with a pulse monitoring function includes a main control unit and a touch display connected to the main control unit signal, and includes There is a signal communication device connected to the main control unit; the communication device includes a communication chip and a communication antenna; and a button battery including a power supply for the main control unit, the touch display screen and the communication device; and a radio clock calibration unit
  • the radio clock calibration unit is connected with the main control unit signal; the radio clock calibration unit is configured to realize the calibration of the chirp clock, which is convenient for tuning.
  • the communication antenna includes a dielectric plate a1.
  • the dielectric plate a1 is provided with two sets of microstrip units symmetrically up and down, and each set of microstrip units includes a rectangular feeding arm bl, the feeding A plurality of hexagonal feed holes M l are arranged on the arm bl; a center of the feed arm bl extends upwardly with a first connecting strip bl2, and a free end of the first connecting strip M2 is provided with a circular first
  • the microstrip body b2, the first microstrip body b2 is provided with V-shaped grooves B 21 on both sides thereof; the two sides of the feeding arm b1 further extend upwardly with two second connecting strips bl3, and the second connecting strips bl3 respectively extend upward a second microstrip b3 having a right-angled trapezoid, the second microstrip b3 extending upwardly with a third connecting strip b4, further comprising a dome-shaped radiating arm b5, the two legs of
  • the antenna structure is finally determined by a microstrip circuit design of not less than 300 times, and by no less than 500 tests and parameter adjustments.
  • the antenna has a wide frequency range in the environment of simulating electromagnetic interference. And better isolation and directionality.
  • the actual test results are as follows.
  • the HFSS15 software calculates it as shown in Figure 4 and Figure 5. From the port reflections of S3 and S2 in Figure 4, the frequency range is very wide, from 2.05 GHz to 3.0 GHz; The need for detection, in addition, can be seen in the S3, its isolation is better, in the frequency range is greater than 25.5dB. In addition, as seen from Fig. 5, the directivity is good.
  • the test results and the simulation results are basically the same from the specific test.
  • the main control unit is a CPU chip.
  • the touch display screen comprises a top layer of a release layer, an impact layer disposed at a lower end of the release layer, a touch sensing layer disposed at a lower end of the impact layer, and a display layer disposed at a lower end of the touch sensing layer.
  • the angle of the V-shaped groove B21 is 30 degrees.
  • the number of the feed holes bl l is 10-12.
  • the parasitic vibrator arm b7 is provided with a plurality of rectangular endoscopic holes b71 arranged in series, and both sides of the endoscope hole b71 are recessed inwardly with a semicircular recess.
  • the number of endless belts b6 is eight. This setting can effectively improve the antenna performance and reduce the standing wave ratio.
  • a pulse detector is further included, the pulse detector is configured to monitor a pulse of the wearer; the main control unit is connected to the pulse monitor signal; preferably, further comprising a Beidou positioning device, the Beidou The positioning device is connected to the main control unit signal; preferably, the Bluetooth module for communicating with the mobile phone is further included
  • the Bluetooth module is connected to the main control unit signal.
  • the communication antenna is a non-size required antenna, and the above requirements are met as long as the holes and holes are provided in the bending direction; but if better stable performance is required, the specific size of the antenna can be optimized as follows:
  • the length and width of the dielectric plate a1 are: 84 mm and 58 mm, respectively; the line width and length of the feed arm bl are: 4.2 mm and 3.9 mm.
  • the side length of the feed hole bl l is: lmm, the distance between the centers of the two feed holes bl l is 3 mm; the line width of the first connection belt bl2 is 2.4 mm, the height is 6.2 mm; the radius of the first microstrip body b2 4.4 mm, the side length of the V-shaped groove B2 1 is 1.5 mm; the line width of the second connecting belt M3 is 2.4 mm, and the height thereof is 3.4 mm; the height of the second micro-belt body b3 is 10.6 mm, and the length of the bottom side is 23mm, the top side length is 11.8mm; the third connecting strip b4 has a line width of 2.4mm, and its height is: 2.3mm; the bow back radiating arm b5 has a line width of 9.4mm, a top side length of 54mm, and a height of: 12.4
  • the inner diameter of the annular band b6 is: 1.3 mm; the line width is 0.7 mm,
  • the second adjustment recess b52 has a width of 1.6 mm and a length of 3.9 mm.
  • the length and line width of the parasitic vibrator arm b7 are: 33 mm and 4.5 mm, respectively;
  • the line widths of the first and second holes b31 and b32 are: 1.2 mm; the length of the first hole b31 is 6.8 mm, and the length of the third hole b33 is longer than that of the fourth hole b34. All: 3.2mm.
  • the width and height of the endoscope hole b71 are respectively 2.4 mm and 2.3 mm; the radius of the semicircular recess is 0.6 mm.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electric Clocks (AREA)

Abstract

一种设有脉搏监测功能的智能腕带表,包括有主控单元以及与主控单元信号连接的触摸显示屏,还包括有与主控单元信号连接的通信装置;通信装置包括有通信芯片以及通信天线;还包括有为主控单元、触摸显示屏以及通信装置提供电源的纽扣电池;还包括有无线电时钟校准单元,无线电时钟校准单元与主控单元信号连接;通过设置无线电时钟校准单元使得时钟能随时校准,方便调教。

Description

一种设有脉搏监测功能的智能腕带表
技术领域
[0001] 本发明涉及一种设有脉搏监测功能的智能腕带表。
背景技术
[0002] 目前, 智能腕带表已经非常普及, 但是由于电池有限, 且智能表费电, 没电的 吋候经常发现吋间不准了, 需要重新调制, 因此如果加一个无线电吋钟校准单 元则会非常有效的解决这个问题。 技术问题
问题的解决方案
技术解决方案
[0003] 本发明的目的在于克服以上所述的缺点, 提供一种设有脉搏监测功能的智能腕 带表。
[0004] 为实现上述目的, 本发明的具体方案如下: 一种设有脉搏监测功能的智能腕带 表, 包括有主控单元以及与主控单元信号连接的触摸显示屏, 还包括有与主控 单元信号连接通信装置; 所述通信装置包括有通信芯片以及通信天线; 还包括 有为主控单元、 触摸显示屏以及通信装置提供电源的纽扣电池; 还包括有无线 电吋钟校准单元, 所述无线电吋钟校准单元与主控单元信号连接;
[0005] 优选的, 所述通信天线包括有介质板, 介质板上设有上下对称的两组微带单元 , 每组微带单元包括有一个矩形的馈电臂, 所述馈电臂上排列设有多个六边形 的馈孔; 所述馈电臂的中心向上延伸出有第一连接带, 第一连接带的自由端设 有圆形的第一微带体, 第一微带体的两侧设有 V形槽; 馈电臂两侧还向上延伸出 有两个第二连接带, 第二连接带分别向上延伸出有直角梯形的第二微带体, 第 二微带体向上延伸出有第三连接带, 还包括有 π形的弓背辐射臂, 弓背辐射臂 的两个脚分别与两个第三连接带相连; 弓背辐射臂的顶侧延伸出有多个排列设 置的环状带, 弓背辐射臂的两侧设有第一调整凹陷, 第一调整凹陷的底边向内 设有第二调整凹陷; 还包括有一矩形的寄生振子臂, 寄生振子臂设于弓背辐射 臂的内凹区域; 每个所述第二微带体上靠近顶边设有一个矩形第一缺孔, 靠近 底边一侧设有 L形的第二缺孔, 第二缺孔的纵边向内设有三个矩形第三缺孔, 第 二缺孔的横边向上延伸出有一个矩形的第四缺孔。
[0006] 优选的, 所述主控单元为 CPU芯片。
[0007] 优选的, 所述触摸显示屏包括有顶层的放剐蹭层、 设于放剐蹭层下端的防冲击 层、 设于防冲击层下端的触摸感应层、 设于触摸感应层下端的显示层。
[0008] 优选的, 所述 V形槽的角度为 30度。
[0009] 优选的, 所述馈孔的数量为 10-12个。
[0010] 优选的, 寄生振子臂上设有多个排列在一起的矩形的内窥孔, 内窥孔的两侧向 内凹陷有半圆凹陷。
[0011] 优选的, 环状带的数量为八个。
[0012] 优选的, 还包括有脉搏检测器, 所述脉搏检测器用于监测佩戴者的脉搏; 所述 主控单元与脉搏监测器信号连接;
[0013] 优选的, 还包括有北斗定位装置, 所述北斗定位装置与主控单元信号连接; [0014] 优选的, 还包括有用于与手机通信的蓝牙模块, 所述蓝牙模块与主控单元信号 连接。
发明的有益效果
有益效果
[0015] 通过设置无线电吋钟校准单元实现了吋钟能随吋校准, 方便调教。
对附图的简要说明
附图说明
[0016] 图 1是本发明的原理图;
[0017] 图 2是本发明的天线的俯视图;
[0018] 图 3是本发明的微带单元的结构示意图;
[0019] 图 4是本发明的通信天线的电气性能仿真测试图;
[0020] 图 5是本发明的通信天线的方向性图;
[0021] 图 1至图 5中的附图标记说明:
[0022] al-介质板; bl-馈电臂; bl l-馈孔; bl2-第一连接带; bl3-第二连接带; b2-第 一微带体; b21-V形槽; b3-第二微带体; b31-第一缺孔; b32-第二缺孔; b33-第 三缺孔; b34-第四缺孔; b4-第三连接带; b5-弓背辐射臂; b51-第一调整凹陷; b 52-第二调整凹陷; b6-环状带; b7-寄生振子臂; b71-内窥孔。
本发明的实施方式
[0023] 下面结合附图和具体实施例对本发明作进一步详细的说明, 并不是把本发明的 实施范围局限于此。
[0024] 如图 1至图 5所示, 本实施例所述的一种设有脉搏监测功能的智能腕带表, 包括 有主控单元以及与主控单元信号连接的触摸显示屏, 还包括有与主控单元信号 连接通信装置; 所述通信装置包括有通信芯片以及通信天线; 还包括有为主控 单元、 触摸显示屏以及通信装置提供电源的纽扣电池; 还包括有无线电吋钟校 准单元, 所述无线电吋钟校准单元与主控单元信号连接; 通过设置无线电吋钟 校准单元实现了吋钟能随吋校准, 方便调教。
[0025] 优选的, 所述通信天线包括有介质板 al, 介质板 al上设有上下对称的两组微带 单元, 每组微带单元包括有一个矩形的馈电臂 bl, 所述馈电臂 bl上排列设有多 个六边形的馈孔 M l ; 所述馈电臂 bl的中心向上延伸出有第一连接带 bl2, 第一 连接带 M2的自由端设有圆形的第一微带体 b2, 第一微带体 b2的两侧设有 V形槽 B 21; 馈电臂 bl两侧还向上延伸出有两个第二连接带 bl3, 第二连接带 bl3分别向 上延伸出有直角梯形的第二微带体 b3, 第二微带体 b3向上延伸出有第三连接带 b 4, 还包括有 Π形的弓背辐射臂 b5, 弓背辐射臂 b5的两个脚分别与两个第三连接 带 b4相连; 弓背辐射臂 b5的顶侧延伸出有多个排列设置的环状带 b6, 弓背辐射 臂 b5的两侧设有第一调整凹陷 b51, 第一调整凹陷 b51的底边向内设有第二调整 凹陷 b52; 还包括有一矩形的寄生振子臂 b7, 寄生振子臂 b7设于弓背辐射臂 b5的 内凹区域; 每个所述第二微带体 b3上靠近顶边设有一个矩形第一缺孔 b31, 靠近 底边一侧设有 L形的第二缺孔 b32, 第二缺孔 b32的纵边向内设有三个矩形第三缺 孔 b33, 第二缺孔 b32的横边向上延伸出有一个矩形的第四缺孔 b34。 通过不小于 300次的微带电路结构设计, 以及通过不低于 500次试验和参数调整下, 最终确 定了上述天线结构, 在模拟其电磁波干扰环境下, 该天线具备较宽的频率范围 以及较好的隔离度和方向性。 具体实际测试结果如下表 HFSS15软件计算其如图 4 和图 5, 从图 4中从 S3和 S2的端口反射来看, 其频率范围很宽, 可以从 2.05GHz— 直到 3.0GHz; 因此完全满足电场探测的需要, 另外, 送 S3中可以看出, 其隔离 度较好, 在频率范围大于 25.5dB。 另外, 从图 5中看出, 其方向性很好。 另外, 从具体测试中也测试结果和仿真结果基本一致。
[0026] 优选的, 所述主控单元为 CPU芯片。 优选的, 所述触摸显示屏包括有顶层的放 剐蹭层、 设于放剐蹭层下端的防冲击层、 设于防冲击层下端的触摸感应层、 设 于触摸感应层下端的显示层。
[0027] 优选的, 所述 V形槽 B21的角度为 30度。 优选的, 所述馈孔 bl l的数量为 10-12个 。 寄生振子臂 b7上设有多个排列在一起的矩形的内窥孔 b71, 内窥孔 b71的两侧 向内凹陷有半圆凹陷。 优选的, 环状带 b6的数量为八个。 如此设置, 可以有效 提高天线性能, 降低驻波比。
[0028] 优选的, 还包括有脉搏检测器, 所述脉搏检测器用于监测佩戴者的脉搏; 所述 主控单元与脉搏监测器信号连接; 优选的, 还包括有北斗定位装置, 所述北斗 定位装置与主控单元信号连接; 优选的, 还包括有用于与手机通信的蓝牙模块
, 所述蓝牙模块与主控单元信号连接。
[0029] 本通信天线为非尺寸要求天线, 只要在弯折方向上、 设置的孔、 洞的方式上达 到上述要求; 但如果需要更佳稳定的性能吋, 本天线的具体尺寸可以优化为: 介质板 al的长宽分别为: 84mm和 58mm; 馈电臂 bl的线宽为和长度为: 4.2mm和 3.9mm。 馈孔 bl l的边长为: lmm, 两个馈孔 bl l中心之间的距离为 3mm; 第一连 接带 bl2的线宽为 2.4mm, 高为 6.2mm; 第一微带体 b2的半径为 4.4mm, V形槽 B2 1的边长为 1.5mm; 第二连接带 M3的线宽为 2.4mm, 其高度为 3.4mm; 第二微带 体 b3的高为 10.6mm, 底边长为 23mm, 顶边长为 11.8mm; 第三连接带 b4的线宽 为 2.4mm, 其高度为: 2.3mm; 弓背辐射臂 b5的线宽为 9.4mm, 顶边长为 54mm , 高为: 12.4mm; 环状带 b6的内径半径为: 1.3mm; 线宽为 0.7mm, 两个环状带 b6圆心之间的距离为 6.3mm, 第一调整凹陷 b51的宽为 1.5mm, 长为 6.9mm: 第二 调整凹陷 b52的宽为 1.6mm,长为: 3.9mm。 寄生振子臂 b7的长和线宽分别为: 33 mm以及 4.5mm; [0030] 第一缺孔 b31和第二缺孔 b32的线宽均是: 1.2mm; 第一缺孔 b31的长为: 6.8mm , 第三缺孔 b33长为和第四缺孔 b34的长均为: 3.2mm。 内窥孔 b71的宽和高分别 : 2.4mm和 2.3mm; 半圆凹陷的半径为: 0.6mm。
[0031] 以上所述仅是本发明的一个较佳实施例, 故凡依本发明专利申请范围所述的构 造、 特征及原理所做的等效变化或修饰, 包含在本发明专利申请的保护范围内

Claims

权利要求书
[权利要求 1] 一种设有脉搏监测功能的智能腕带表, 其特征在于: 包括有主控单元 以及与主控单元信号连接的触摸显示屏, 还包括有与主控单元信号连 接通信装置; 所述通信装置包括有通信芯片以及通信天线; 还包括有 为主控单元、 触摸显示屏以及通信装置提供电源的纽扣电池; 还包括 有无线电吋钟校准单元, 所述无线电吋钟校准单元与主控单元信号连 接; 所述通信天线包括有介质板, 介质板上设有上下对称的两组微带 单元, 每组微带单元包括有一个矩形的馈电臂, 所述馈电臂上排列设 有多个六边形的馈孔; 所述馈电臂的中心向上延伸出有第一连接带, 第一连接带的自由端设有圆形的第一微带体, 第一微带体的两侧设有
V形槽; 馈电臂两侧还向上延伸出有两个第二连接带, 第二连接带分 别向上延伸出有直角梯形的第二微带体, 第二微带体向上延伸出有第 三连接带, 还包括有 π形的弓背辐射臂, 弓背辐射臂的两个脚分别与 两个第三连接带相连; 弓背辐射臂的顶侧延伸出有多个排列设置的环 状带, 弓背辐射臂的两侧设有第一调整凹陷, 第一调整凹陷的底边向 内设有第二调整凹陷; 还包括有一矩形的寄生振子臂, 寄生振子臂设 于弓背辐射臂的内凹区域; 每个所述第二微带体上靠近顶边设有一个 矩形第一缺孔, 靠近底边一侧设有 L形的第二缺孔, 第二缺孔的纵边 向内设有三个矩形第三缺孔, 第二缺孔的横边向上延伸出有一个矩形 的第四缺孔; 还包括有脉搏检测器, 所述脉搏检测器用于监测佩戴者 的脉搏; 所述主控单元与脉搏监测器信号连接; 还包括有北斗定位装 置, 所述北斗定位装置与主控单元信号连接。
[权利要求 2] 根据权利要求 1所述的一种设有脉搏监测功能的智能腕带表, 其特征 在于: 所述主控单元为 CPU芯片。
[权利要求 3] 根据权利要求 1所述的一种设有脉搏监测功能的智能腕带表, 其特征 在于: 所述触摸显示屏包括有顶层的放剐蹭层、 设于放剐蹭层下端的 防冲击层、 设于防冲击层下端的触摸感应层、 设于触摸感应层下端的 显示层。
[权利要求 4] 根据权利要求 1所述的一种设有脉搏监测功能的智能腕带表, 其特征 在于: 所述 V形槽的角度为 30度。
[权利要求 5] 根据权利要求 1所述的一种设有脉搏监测功能的智能腕带表, 其特征 在于: 所述馈孔的数量为 10-12个。
[权利要求 6] 根据权利要求 1所述的一种设有脉搏监测功能的智能腕带表, 其特征 在于: 寄生振子臂上设有多个排列在一起的矩形的内窥孔, 内窥孔的 两侧向内凹陷有半圆凹陷。
[权利要求 7] 根据权利要求 1所述的一种设有脉搏监测功能的智能腕带表, 其特征 在于: 环状带的数量为八个。
PCT/CN2016/112771 2016-12-28 2016-12-28 一种设有脉搏监测功能的智能腕带表 WO2018119797A1 (zh)

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Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5410749A (en) * 1992-12-09 1995-04-25 Motorola, Inc. Radio communication device having a microstrip antenna with integral receiver systems
US5646634A (en) * 1994-10-19 1997-07-08 Asulab S.A. Miniaturized antenna for converting an alternating voltage into a microwave and vice versa, notably for horological applications
CN203503788U (zh) * 2013-09-16 2014-03-26 京信通信系统(中国)有限公司 微带天线
CN204031248U (zh) * 2014-04-01 2014-12-17 深圳市燕峰科技有限公司 一种智能手表电话
CN105159052A (zh) * 2015-10-10 2015-12-16 邝嘉豪 一种智能手表
CN105161846A (zh) * 2015-10-10 2015-12-16 江健良 一种多功能健康检测手表
CN105204323A (zh) * 2015-11-09 2015-12-30 江健良 防水健康监测智能手表
CN105223804A (zh) * 2015-11-09 2016-01-06 邝嘉豪 一种设有防水胶的健康监测智能手表
CN105609938A (zh) * 2016-01-19 2016-05-25 李万 一种宽频带天线
CN105867106A (zh) * 2016-06-18 2016-08-17 欧志洪 蓝牙智能腕带表
CN205750314U (zh) * 2015-11-18 2016-11-30 深圳市众谷智能科技有限公司 一种智能手表
CN106681132A (zh) * 2016-12-28 2017-05-17 江健良 一种设有脉搏监测功能的智能腕带表

Patent Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5410749A (en) * 1992-12-09 1995-04-25 Motorola, Inc. Radio communication device having a microstrip antenna with integral receiver systems
US5646634A (en) * 1994-10-19 1997-07-08 Asulab S.A. Miniaturized antenna for converting an alternating voltage into a microwave and vice versa, notably for horological applications
CN203503788U (zh) * 2013-09-16 2014-03-26 京信通信系统(中国)有限公司 微带天线
CN204031248U (zh) * 2014-04-01 2014-12-17 深圳市燕峰科技有限公司 一种智能手表电话
CN105159052A (zh) * 2015-10-10 2015-12-16 邝嘉豪 一种智能手表
CN105161846A (zh) * 2015-10-10 2015-12-16 江健良 一种多功能健康检测手表
CN105204323A (zh) * 2015-11-09 2015-12-30 江健良 防水健康监测智能手表
CN105223804A (zh) * 2015-11-09 2016-01-06 邝嘉豪 一种设有防水胶的健康监测智能手表
CN205750314U (zh) * 2015-11-18 2016-11-30 深圳市众谷智能科技有限公司 一种智能手表
CN105609938A (zh) * 2016-01-19 2016-05-25 李万 一种宽频带天线
CN105867106A (zh) * 2016-06-18 2016-08-17 欧志洪 蓝牙智能腕带表
CN106681132A (zh) * 2016-12-28 2017-05-17 江健良 一种设有脉搏监测功能的智能腕带表

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