DUAL BAND F-ANTENNA FOR EUROPE AND NORTH AMERICA

Prasad Samudrala, Justin Jose, Amit Kulkarni
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Abstract

A single antenna for multiple bands are always beneficial from the design point of view. Here a single antenna which is fundamentally inverted F antenna is used, the uniqueness of the design is that , it uses trap technique to produce dual resonance from a single inverted F antenna . The trap used to block the current due to some frequencies and passes the current contributed by other frequencies. So in short , this trap is like a RF filter which has some passband as well as stop band. This trap approach uses a LC network to achieve this design goal .The two bands of interest are 865-870 MHz and 902-928 MHz .. The challenge of this design is that the frequency separation of the two bands is very small. In this case, and also the extra section for low frequency band is too small. Then, the influence of trap LC component variation due to tolerance to the two resonant frequencies is big, and so it is difficult to achieve good in band return loss within the LC tolerance. This is the main difficulty of this design. This issue is resolved by placing the low band section away from the end of the antenna. The antenna is designed on FR4 substrate material having thickness of 1.6 mm and hence it is a low cost solution which could use in various commercial applications which follows these bands.
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欧洲和北美双波段f天线
从设计的角度来看,多波段的单天线总是有益的。这里使用了一个单天线,基本上是倒F天线,设计的独特之处在于,它使用陷阱技术从一个倒F天线产生双谐振。该陷阱用于阻挡由某些频率产生的电流,并通过由其他频率产生的电流。简而言之,这个陷阱就像一个有通带和阻带的RF滤波器。该陷阱方法使用LC网络来实现此设计目标。两个感兴趣的频段是865-870 MHz和902-928 MHz。这种设计的挑战在于两个频段的频率间隔非常小。在这种情况下,对于低频段的额外部分也太小。然后,由于对两个谐振频率的容差,陷阱LC分量变化的影响很大,因此很难在LC容差范围内实现良好的带内回波损耗。这是本设计的主要难点。这个问题可以通过将低频段部分置于远离天线末端的位置来解决。天线设计在厚度为1.6毫米的FR4基板材料上,因此它是一种低成本的解决方案,可以用于遵循这些频段的各种商业应用。
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