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Design and broadband verification of RF amplifier for 4G/ 5G front-end modules

机译:用于4G / 5G前端模块的RF放大器的设计和宽带验证

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The RF amplifier for broadband front end module of 4G or 5G terminals should be capable of handling transmission rate over 100Mbps to over 1Gbps with low BER and low non-linearity spectrum products. This paper reports broadband verification of a front-end RF amplifier designed for broadband 4G and 5G transmission. The RF amplifier employs an Infineon SiGe Bipolar transistor matched to 50Ω load and source impedance through 3-section and 2-section L-C network, respectively. Broadband S-parameter characteristic was verified showing encircling S21behavior around S21=7 over hundreds of MHz centering at 2.4GHz. The S11and S22show encircling curves centering the origin with relatively small radius. The broadband performance of LTE FDD 64QAM signal transmission thru the RF Amplifier was verified on the signal spectrum and modulation quality by utilizing Keysight M9381A Vector Signal Generator (VSG), M9391A Vector Signal Analyzer (VSA) and VSA 89600. Broadband signal of LTE FDD 64QAM was generated by Keysight M9381A Vector Signal Generator (VSG) by setting 64QAM modulation and LTE signaling parameters resulting broadband LTE FDD signal with bandwidth of 20MHz at frequency of 1.8GHz and 2.4GHz. The LTE FDD 64QAM signal spectrum and modulation constellation measured at the output of front-end RF Amplifier by Keysight M9391A VSA and VSA 89600 subsequently. Broadband modulation constellation, spectrum as well as EVM summary of the LTE FDD signal were observed by VSA 89600 at frequency 1.8 and 2.4GHz. Out-of band noise spectrum and non-linearity products of the 20MHz LTE FDD 64QAM signal increase at the output of front-end RF amplifier at frequency 1.8GHz, though less visible at 2.4GHz. The 64QAM vector-point constellation of the LTE FDD 64QAM signal in 2.4GHz is relatively still intact, eventhough the EVM slightly degrades to 11.478 % from 10.772% after amplified by front-end RF amplifier.
机译:用于4G或5G终端的宽带前端模块的RF放大器应具有低BER和低非线性频谱产品的传输速率,能够处理100Mbps至1Gbps以上的传输速率。本文报告了为宽带4G和5G传输而设计的前端RF放大器的宽带验证。射频放大器采用英飞凌SiGe双极晶体管,分别通过3节和2节L-C网络与50Ω负载和源阻抗匹配。宽带S参数特性经过验证,显示出环绕的S 21 S周围的行为 21 在以2.4GHz为中心的数百MHz上= 7。 S 11 和S 22 显示以原点为中心,半径相对较小的环绕曲线。通过使用是德科技M9381A矢量信号发生器(VSG),M9391A矢量信号分析仪(VSA)和VSA 89600在信号频谱和调制质量上验证了通过RF放大器进行LTE FDD 64QAM信号传输的宽带性能。LTE FDD 64QAM的宽带信号是由Keysight M9381A矢量信号发生器(VSG)生成的,方法是设置64QAM调制和LTE信令参数,从而在1.8GHz和2.4GHz频率下获得带宽为20MHz的宽带LTE FDD信号。随后,由Keysight M9391A VSA和VSA 89600在前端RF放大器的输出端测量了LTE FDD 64QAM信号频谱和调制星座图。 VSA 89600在1.8 GHz和2.4 GHz频率下观察到LTE FDD信号的宽带调制星座图,频谱以及EVM摘要。 20MHz LTE FDD 64QAM信号的带外噪声频谱和非线性乘积在频率为1.8GHz的前端RF放大器的输出处增加,但在2.4GHz处不明显。在2.4GHz的LTE FDD 64QAM信号上,其64QAM矢量点星座仍相对完好无损,尽管EVM在经过前端RF放大器放大后从10.772 \%降到了11.478 \%。

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