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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Tunable impedance matching network with wide impedance coverage for multi frequency standards RF front-end
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Tunable impedance matching network with wide impedance coverage for multi frequency standards RF front-end

机译:可调谐阻抗匹配网络,具有多频标准RF前端的宽阻抗覆盖范围

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AbstractTunability in RF front-end improves the link quality by maintaining low VSWR in operating environment through correcting the impedance to counteract the sudden impedance change in a user fluctuating operating environment. Introducing tunability to the RF front-end provides great benefits but carries also losses in the impedance network. A large number of RF switches tend to be used in impedance networks in order to achieve large impedance coverage at multi-operating frequencies. However, this increases the losses, sizes and also the implementation complexity of an impedance network. For this reason, a design technique is proposed in order to achieve a wide impedance coverage with a reduced number of RF switches in the impedance network through identifying the electrical distance for the maximum impedance coverage. The required electrical distance of series transmission line of thePi-network topology for the maximum impedance coverage has first been determined at a single operating frequency and then the electrical length has been reconfigured when switching to other operating frequency. Nearly 85% of the impedance coverage has been conserved by using the proposed technique compared to only 30% of the coverage remained in the conventionalPi-network while switching to other frequency. This technique significantly enhances the impedance coverage and reduces the number of RF switches needed in the impedance matching network especially at the multi frequency standards.]]>
机译:<![cdata [ 抽象 RF前端的可调性通过校正阻抗来通过校正阻抗来提高操作环境中的低VSWR,提高了链路质量用户波动操作环境中的突然阻抗发生变化。向RF前端引入可调性提供了很大的好处,但还在阻抗网络中进行损失。在阻抗网络中倾向于使用大量RF开关,以便在多功能频率下实现大的阻抗覆盖。然而,这增加了阻抗网络的损失,大小以及实现复杂性。因此,提出了一种设计技术,以便通过识别用于最大阻抗覆盖的电距离,通过识别阻抗网络中的RF开关的宽阻抗覆盖。 pi -network拓扑的所需电距离首先以单个工作频率确定最大阻抗覆盖,然后在切换时重新配置电长其他工作频率。通过使用所提出的技术,近85%的阻抗覆盖率得到了常规 pi -network的30%覆盖率,而仍然是剩余的30%的覆盖率相比,同时切换到其他频率。该技术显着提高了阻抗覆盖范围,并减少了阻抗匹配网络所需的RF开关的数量,尤其是多频率标准。 ] ]

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