In this paper,an integrated substrate gap waveguide(ISGW)filtering antenna is proposed at millimeter wave band,whose surface wave and spurious modes are simultaneously suppressed.A secondorder filtering response is ob...In this paper,an integrated substrate gap waveguide(ISGW)filtering antenna is proposed at millimeter wave band,whose surface wave and spurious modes are simultaneously suppressed.A secondorder filtering response is obtained through a coupling feeding scheme using one uniform impedance resonator(UIR)and two stepped-impedance resonators(SIRs).To increase the stopband width of the antenna,the spurious modes are suppressed by selecting the appropriate sizes of the ISGW unit cell.Furthermore,the ISGW is implemented to improve the radiation performance of the antenna by alleviating the propagation of surface wave.And an equivalent circuit is investigated to reveal the working principle of ISGW.To demonstrate this methodology,an ISGW filtering antenna operating at a center frequency of 25 GHz is designed,fabricated,and measured.The results show that the antenna achieves a stopband width of 1.6f0(center frequency),an out-of-band suppression level of 21 dB,and a peak realized gain of 8.5 dBi.展开更多
描述了一种应用于S波段接收通道的高线性度下变频模块设计,针对模块的增益、线性度、杂谐波抑制等关键技术指标进行了详细的理论和仿真分析,并硬件实现了该模块。该模块主要采用SMD器件,包括有源混频器、高OIP3放大器和LC滤波器等。测...描述了一种应用于S波段接收通道的高线性度下变频模块设计,针对模块的增益、线性度、杂谐波抑制等关键技术指标进行了详细的理论和仿真分析,并硬件实现了该模块。该模块主要采用SMD器件,包括有源混频器、高OIP3放大器和LC滤波器等。测试结果显示,模块增益为21 d B,杂谐波抑制度大于65 d Bc,对特定频点的抑制度大于40 d Bc,IIP3大于24 d Bm,表明该模块满足指标要求,能够充分适应高性能接收通道的应用要求。展开更多
基金This work was supported by the National Key research and development program of China(No.2021YFB 2900401)the national natural science foundation of China(No.62361057,No.61861046)+1 种基金the key natural science foundation of Shenzhen(No.JCYJ20220818102209020)the key research and development program of Shenzhen(No.ZDSYS20210623091807023).
文摘In this paper,an integrated substrate gap waveguide(ISGW)filtering antenna is proposed at millimeter wave band,whose surface wave and spurious modes are simultaneously suppressed.A secondorder filtering response is obtained through a coupling feeding scheme using one uniform impedance resonator(UIR)and two stepped-impedance resonators(SIRs).To increase the stopband width of the antenna,the spurious modes are suppressed by selecting the appropriate sizes of the ISGW unit cell.Furthermore,the ISGW is implemented to improve the radiation performance of the antenna by alleviating the propagation of surface wave.And an equivalent circuit is investigated to reveal the working principle of ISGW.To demonstrate this methodology,an ISGW filtering antenna operating at a center frequency of 25 GHz is designed,fabricated,and measured.The results show that the antenna achieves a stopband width of 1.6f0(center frequency),an out-of-band suppression level of 21 dB,and a peak realized gain of 8.5 dBi.
文摘描述了一种应用于S波段接收通道的高线性度下变频模块设计,针对模块的增益、线性度、杂谐波抑制等关键技术指标进行了详细的理论和仿真分析,并硬件实现了该模块。该模块主要采用SMD器件,包括有源混频器、高OIP3放大器和LC滤波器等。测试结果显示,模块增益为21 d B,杂谐波抑制度大于65 d Bc,对特定频点的抑制度大于40 d Bc,IIP3大于24 d Bm,表明该模块满足指标要求,能够充分适应高性能接收通道的应用要求。