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Multi-Mode Narrow-Frame Antenna for 4G/5G Metal-Rimmed Mobile Phones

机译:用于4G / 5G金属 - 镶嵌手机的多模窄框架天线

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摘要

A novel multi-mode narrow-frame antenna is presented for 4G/5G metal-rimmed mobile phones in this paper. The proposed antenna is constituted by a monopole antenna and a coupling strip, which is printed on FR4 substrate with thickness of 0.8 mm. The overall area occupied by the antenna is only 60 × 10.4 mm2, which can be used as a promising narrow-frame antenna. The simulated results shows that the return loss of the antenna can provide four operating bandwidths of 822– 961 (band 1), 1697–3075 (band 2), 3280–3835 (band 3) and 4475–5050 MHz (band 4), which respectively cover 824–960, 1710–2690, 3300–3600 and 4800–5000 MHz in 4G/5G communication systems. In order to verify the accuracy of theoretical analysis and simulated results, the proposed antenna is fabricated and measured. The experimental results are basically consistent with the simulated results, suggesting that the presented antenna has attractive performance for mobile phones.
机译:本文为4G / 5G金属 - 镶嵌手机提出了一种新型多模窄框天线。所提出的天线由单极天线和联接条构成,该联接条在厚度为0.8mm的FR4基板上印刷。天线占用的总面积仅为60×10.4 mm2,可用作有前途的窄帧天线。模拟结果表明,天线的回波损耗可以提供822的961(带1),1697的3075(带2),3280-3835(带3)和4475 -5050MHz(频段4),其分别在4G / 5G通信系统中覆盖824的960,1710,1710,3600和4800 - 3600和4800-4800 - 3600和4800 - 在4G / 5G通信系统中。为了验证理论分析和模拟结果的准确性,所提出的天线是制造和测量的。实验结果基本上与模拟结果一致,表明所呈现的天线对移动电话具有吸引力的性能。

著录项

  • 来源
  • 作者

    M. Yang; Y. F. Sun; T. Q. Liao;

  • 作者单位

    Key Lab of Intelligent Computing and Signal Processing Ministry of Education Anhui University Hefei 230601 China Electronics and Information Engineering Department Bozhou University Bozhou 236800 China;

    Key Lab of Intelligent Computing and Signal Processing Ministry of Education Anhui University Hefei 230601 China;

    Key Lab of Intelligent Computing and Signal Processing Ministry of Education Anhui University Hefei 230601 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Frame antenna; metal rim; multi-mode; nona-band operation;

    机译:框架天线;金属边缘;多模;非频带操作;

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