一种具有高转换增益和有效抑制非期望谐波的ka波段GaAs MMIC四倍器

Yuehong Dong, Yuehang Xu, R. Xu, B. Yan
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引用次数: 1

摘要

本文提出了一种基于0.15um GaAs PHEMT工艺的ka波段单片四频器,具有高转换增益和有效抑制非期望谐波的特点。该四倍器由输入功率放大器、一级有源四倍器和四次谐波放大器级联构成。为保证四倍器输入功率适当,使四倍器的转换损耗最小,设计了单级输入功率放大器。再加上四倍频部分后面的放大器对四次谐波进行放大,整个电路实现了较高的转换增益。通过四倍频部分内部的谐波抑制结构和四倍频部分与其后面的放大器之间的开路短段,可以有效地抑制不需要的谐波。仿真结果表明,当8.5 GHz输入信号的功率为-2 dBm时,MMIC四联器的转换增益为18.23 dB。基波抑制61 dBc,二次谐波抑制45 dBc,三次谐波抑制33 dBc,五次谐波抑制40 dBc。整体芯片尺寸为2.88×2.06 mm2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Ka-band GaAs MMIC quadrupler with high conversion gain and efficient rejection of undesired harmonics
A Ka-band monolithic frequency quadrupler with high conversion gain and efficient rejection of undesired harmonics based on 0.15um GaAs PHEMT process is presented in this paper. The quadrupler is constructed cascading an input power amplifier, a one-stage active quadrupling part and an amplifier of the fourth harmonic. Input power amplifier with one stage is designed for guarantee of proper input power of the quadrupler, so that the quadrupling part takes in its least conversion loss. Coupled with amplifying of the fourth harmonic by the amplifier behind the quadrupling part, the whole circuit realizes a high conversion gain. Efficient rejection of undesired harmonics can be reached by harmonic restrain structure inside the quadrupling part and a open stub between the quadrupling part and the amplifier behind it. According to the simulation results, when power of input signal at 8.5 GHz is -2 dBm, the conversion gain of the MMIC quadrupler is 18.23 dB. The rejection of fundamental is 61 dBc and rejection of unwanted harmonic is 45 dBc for second harmonic, 33 dBc for the third and 40 dBc for the fifth. The overall chip size is 2.88×2.06 mm2.
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