首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Printed multi-resonant antenna embedding two inductors in radiating strips for internal mobile phone LTE/WWAN operation
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Printed multi-resonant antenna embedding two inductors in radiating strips for internal mobile phone LTE/WWAN operation

机译:印刷多谐振天线,在辐射条中嵌入两个电感器,用于内部手机LTE / WWAN操作

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摘要

In this article, a planar printed antenna for eight-band LTE/WWAN operation applied in the internal mobile phone has been proposed and studied. The presented antenna consists of a feeding strip and a coupling strip, where two chip inductors with different inductances are loaded in place. The desired lower bands of LTE700/GSM850/900 operation can be achieved by the coupling strip loading an inductor of 12 nH and a longer branch loading another inductor of 24 nH in the feeding strip, which provide a quarter-wavelength dualresonance mode at 720 and 900 MHz. While a quarter-wavelength resonant mode at around 2.95 GHz can be generated by the shorter branch of the feeding strip, and other resonant modes at 1.92 and 2.23 GHz are contributed by the higher-order resonant modes of the long feeding strip and coupling strip, covering the desired upper bands of DCS1800/ PCS1900/UMTS2100/LTE2300/2500 operation. In fact, the desired resonant lengths in the lower frequencies can be decreased, and impedance matching can be properly adjusted with the help of the two embedded inductors. Besides, a chip inductor of 2.2 nH is helpful for improving all the bands' impedance matching. Detailed considerations of the antenna design and main parameters are studied and measured.
机译:在本文中,已经提出并研究了用于内部移动电话中的用于八频段LTE / WWAN操作的平面印刷天线。所展示的天线由一个馈电带和一个耦合带组成,两个电感不同的片式电感器被安装在适当的位置。 LTE700 / GSM850 / 900的所需较低频段可以通过耦合条在馈电条中加载一个12 nH的电感器和一个较长的分支加载另一个24 nH的电感器来实现,从而在720和200 MHz处提供四分之一波长双谐振模式。 900 MHz。虽然馈电条的较短分支可以产生大约2.95 GHz的四分之一波长谐振模式,而长馈电条和耦合条的更高阶谐振模式可以贡献1.92和2.23 GHz的其他谐振模式,涵盖DCS1800 / PCS1900 / UMTS2100 / LTE2300 / 2500操作所需的较高频段。实际上,可以降低低频所需的谐振长度,并且可以借助两个嵌入式电感器来适当地调整阻抗匹配。此外,2.2 nH的片式电感器有助于改善所有频段的阻抗匹配。研究和测量了天线设计和主要参数的详细考虑。

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