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1.
对二阶Pi型电感耦合LTCC滤波器中各个元件的电容及电感寄生效应进行了分析,提出了一种新的寄生电感耦合分析方法,并根据分析结果设计了一个二阶Pi型电感耦合和一个二阶Pi型电容耦合LTCC带通滤波器,其中,电感耦合滤波器的设计指标为:中心频率2.45GHz,相对带宽32.65%,带内插入损耗2dB,回波损耗18 dB;电...  相似文献   

2.
在设计高频声表面波(SAW)滤波器的过程中,若只考虑封装壳和键合线的电磁寄生参数而忽略汇流条的电磁寄生参数,则SAW滤波器的实际性能易受汇流条寄生参数影响而出现通带波动和驻波增大等问题。该文拟用电声-电磁联合仿真方法设计高频SAW滤波器以解决汇流条寄生参数对SAW滤波器性能的影响。通过此方法研制的滤波器通带插入损耗小于1dB,波动0.5dB,通带内驻波最大值2.1,-1.5dB带宽75.7MHz,-3dB带宽84MHz(相对带宽为4.8%),-30dB带宽112MHz,BW-3 dB/BW-30 dB矩形系数1.33。包含封装壳、键合线及汇流条的寄生参数的理论仿真结果与实验测试结果吻合较好,表明了采用此模型设计高频SAW滤波器的可行性。  相似文献   

3.
基于纵向耦合五换能器结构,采用41°-YX-LiNbO3基片材料,通过优化设计,研制出中心频率232 MHz,3 dB带宽23.5 MHz的声表面波滤波器。该产品的插入损耗-3 dB,相对带宽达到10.1%,矩形系数小于2.5,阻带抑制大于40 dB,产品综合性能指标优异,有很好的实用性。  相似文献   

4.
采用微带线设计的平行耦合滤波器(MCL-BPF)在通带以外往往产生谐波,出现寄生频段。利用缺陷地结构(Defected Ground Structure,DGS)的单极点带阻特性和慢波效应可以改善寄生通带,抑制谐波输出。对2.4GHz的传统微带平行耦合滤波器和改进型带通滤波器进行了仿真设计与加工测试。实测结果与仿真数据良好吻合,所提出基于斜哑铃型DGS的带通滤波器(S-DGS-BPF)可抑制至四阶谐波,抑制度达到-22dB以下,阻带为3-10GHz,中心频率处回波损耗为-26.93dB。并且改进型滤波器的尺寸缩小了约10%。  相似文献   

5.
基于分布间隙纵向耦合五换能器结构,加入谐振器单元,采用41°〖WTBX〗Y X〖WTBZ〗 LiNbO3基片材料,通过优化设计,研制出中心频率232 MHz,3 dB带宽23.2 MHz的声表面波滤波器。该产品的插入损耗为-1.9 dB,相对带宽达到10%,矩形系数2.2,阻带抑制大于50 dB,产品综合性能指标优异,有很好的实用性。  相似文献   

6.
采用LTCC技术实现滤波器时,大电感值会引起加工复杂、寄生参数多等问题。文中通过部分电路等效法(PEEC)、三角形和星形联结等效变换法,将二阶直接耦合滤波器中的三角形连接电感等效为两个并联的耦合电感,减少了电感数量及感值。使得滤波器的设计复杂程度降低,标准化程度及一致性更高,封装更小。最终实现了一个中心频率70 MHz、相对带宽14.28%、插入损耗1.83 dB、回波损耗<-15 dB的小型化中频滤波器。  相似文献   

7.
针对当前通信系统需要滤波器支持多频段、小型化和高性能等要求,提出了一种基于T型枝节加载SIR的频率独立可控双频微带滤波器结构。针对该谐振器,利用提出的特殊电耦合结构实现滤波器的小型化,并引入零度馈电结构构造传输零点来改善阻带抑制,最终得到覆盖WLAN 2.4 GHz和WLAN 5.2 GHz两个频段且占用尺寸仅为16.5 mm×21.7 mm的双频微带带通滤波器。由仿真结果显示,两个通带的中心频率分别为2.45 GHz和5.2 GHz,带内最小插入损耗分别为0.35 dB和0.47 dB,带内最小回波损耗分别为-44 dB和-34.8 dB,3 dB相对带宽分别为28.9%和11.3%,阻带抑制也因引入三个传输零点而大大改善。该滤波器结构整体尺寸小、插损低、频带宽且带外抑制特性好,具有一定的实际应用价值。  相似文献   

8.
通过理论仿真,该文研制了一种改进型的3IDT-LCR结构,并基于该结构在42°Y-X LiTaO3压电基片上研制出一种低损耗、小矩形系数的SAW滤波器。滤波器标称频率为253.75 MHz,实测插入损耗1.05 dB,低端带外抑制接近80 dB,高端带外抑制接近65 dB,-1 dB带宽10.52 MHz,-3 dB带宽12.54 MHz,-40 dB带宽16.68 MHz,矩形系数1.33。实测结果表明,该改进型3IDT-LCR结构的SAW滤波器具备低插入损耗、小矩形系数和高带外抑制的特点。  相似文献   

9.
基于T 型谐振器结构,设计了一款新型小型化可重构滤波器。它可以通过开/ 关射频开关,实现三种滤波器的重新配置。这三种模式分别为带阻滤波器(BSF)、宽阻带带阻滤波器(WB鄄BSF)和双模带通滤波器(DB-BPF)。设计并制造了一款小型可重构滤波器实物(εr =2.65,h =1 mm)。其中,带阻滤波器的阻带中心频率为3.89 GHz,-3 dB相对带宽为90.9% (2.12 - 5.65 GHz);宽带带阻滤波器的阻带中心频率为3.54 GHz,-3 dB 相对带宽为137.85%(1.1~5.98 GHz);双模带通滤波器的两个通带中心频率分别为1.53 GHz 和6.89 GHz,-3 dB 相对带宽分别为17. 6%(1.4~1.67 GHz)和1.16% (6.85~6.93 GHz),两通带之间回波损耗优于15 dB。实物测试结果与仿真结果基本一致。  相似文献   

10.
该文提出了一种具有3个传输零点的高带外抑制小型化带通滤波器。通过耦合控制可在梳状线滤波器响应中引入3个传输零点。通过源/负载耦合和传输线上刻蚀的马刺线可降低带外抑制,使滤波器获得更好的性能。设计并制作了一款小型化带通滤波器实物,仿真结果表明,该文设计的滤波器工作中心频率和相对带宽分别为2.12 GHz和20%,该滤波器的回波损耗优于40 dB,插入损耗小于0.2 dB,带外抑制小于40 dB。此外,该滤波器还具有结构简单紧凑、易加工等特点,实物测试结果与仿真结果基本一致。  相似文献   

11.
针对超外差接收机中前端预选宽频段、低损耗与高带外抑制度的需求,文中在电感耦合方式的LC电调滤波器基础上,增加了寄生通带抑制滤波器,设计了一款基于20~800 MHz调谐范围的电调滤波器。通过实际测试得到在调谐范围内,滤波器插入损耗<1.5dB,1 dB相对带宽约20%~30%,输入输出端口驻波<1.5,二倍频处抑制度>40 dBc,寄生通带抑制滤波器能将二次谐波和三次谐波寄生通带的抑制度分别提高40 dBc和30 dBc以上,从而利于滤波器在预选部分实现中频、镜频和本振反向等抑制作用。  相似文献   

12.
The design and experimental results of a four-pole coplanar waveguide (CPW) quasi-elliptic filter using high-temperature superconductor (HTS) films are presented. Quarter-wavelength meander-line resonators are used in the filter topology. Although the resonators are aligned in two lines, no bond-wire bridges are required to balance the ground planes in the design and measurement. The slot-line mode of the filter was shifted to be higher than its third harmonic. The filter is highly miniaturized and the performance is significantly improved by the use of superconductors. The main circuit of the filter only has an area of about 6.6 mm /spl times/ 2.4 mm on a magnesium oxide substrate, coated with 600-nm-thick YBCO HTS thin film on single side of the substrate. The 3-dB bandwidth is about 1.6% centered at 2.95 GHz. The performance measured at 30 K, without any tuning, gives an insertion loss of better than 0.4 dB and a return loss of about 12 dB in the passband. The first spurious mode is about triple the center frequency.  相似文献   

13.
具有良好选择性及带外抑制的小型低通滤波器   总被引:1,自引:0,他引:1  
宋翔宇  李恩 《微波学报》2010,26(Z1):333-335
本文提出了一种具有良好选择性以及宽带带外抑制的小型低通滤波器结构。滤波器的每一级由一段微带线和交指电容构成。基于对每一级结构的分析,我们可以确定通带的范围。为了进一步提高带外的抑制性,对单级滤波器进行了周期性的级联。通过产生多个带外衰减极点来实现带外的宽带抑制。此滤波器3dB 截止频率3.67GHz,带内插损-0.9dB,带内回波损耗低于-13dB。通带到阻带的选择度为160dB/GHz。带外抑制从3.8GHz 到13.1GHz 低于-20dB。  相似文献   

14.
A parallel coupled-line planar bandpass filter (BPF) with branch-line shape using coplanar waveguide technology on GaAs substrate is presented. The unit parallel coupled-line BPF utilises a parallel coupled-line resonator with an open-ended stub which has suppression response of spurious band. Four unit parallel coupled-line BPFs are integrated with branch-line shape and open-circuit stubs on input and output ports are also integrated for improvement of rejection performance. The proposed fourth-order filter was fabricated on GaAs substrate with dielectric thickness of 50 m and gold thickness of 1.2 mum. The fabricated fourth-order BPF shows a 3 dB bandwidth from 177 to 209 GHz frequency range with insertion loss of 6.5 dB, rejection of 38 dB and return loss better than 12 dB. It has a high resolution fractional bandwidth of 17%.  相似文献   

15.
Kang  W. Hong  W. Zhou  J.Y. 《Electronics letters》2008,44(6):421-422
A novel miniaturised dual-mode bandpass filter with multi-arc resonators is proposed. The size of the dual-mode filter can be reduced significantly by using the microstrip dual-mode resonator consisting of multi-arcs; meanwhile insertion loss and spurious response suppression are improved A prototype filter is designed and implemented at 3.6 GHz with 2.8% fractional bandwidth, which shows a low passband insertion loss of 1.02 dB and a wide stopband with rejection better than 20 dB up to about 8.5 GHz.  相似文献   

16.
基于T型支节加载均匀阻抗谐振器,设计了一款新型小型化差分三通带滤波器,并对该滤波器进行了改进设计。所设计滤波器的三个通带中心频率分别为2,6.4,9.2 GHz。-3 dB相对带宽分别为20%(1.85~2.25 GHz)、7%(6.21~6.71 GHz)、5%(8.98~9.44 GHz),通带内插入损耗小于1.5 dB。为了实现良好的共模抑制,在该滤波器中心对称处增加了开路支节,高频处的共模抑制得到显著提高。该滤波器结构简单,能够实现良好的性能,仿真结果与理论分析一致。  相似文献   

17.
本文介绍了一种基于LTCC(低温共烧陶瓷)技术的Ka 波段三阶窄带滤波器,中心频率35.78GHz,带宽0.8GHz(2.24%),带内插损小于0.1dB(未考虑介质和金属损耗)。并且在输入输出端口、各枝节之间引入交调耦合分量,在带外形成三个传输零点,带外抑制EM 仿真结果为:>20dB@f>36.9GHz,>30dB@f<34.9GHz。此滤波器可用于毫米波收发 组件中,对镜频信号和杂波进行抑制。  相似文献   

18.
A novel structure is presented to optimize the design of narrow band dual mode patch filters. Using this method, a narrow band dual mode high power HTS filter with center frequency 2.015 GHz, fractional bandwidth less than 0.35%, return loss greater than 20 dB, near band-edge rejection close to ${-}45$ dB, and insertion loss less than 0.2 dB has been designed and fabricated. The filter can work at a power of 11.7 W without obvious deterioration of its transmission response.   相似文献   

19.
The design and experimental study of a Ka-band gyrotron-travelling-wave tube (gyro-TWT) amplifier operating in the circular TE01 mode at fundamental cyclotron harmonic are presented. A mode-selective technique was adopted in the interaction circuit of the gyro-TWT to suppress spurious modes TE11 and TE21. A saturated peak power of 86 kW was obtained with saturated gain of 33 dB , an efficiency of 21.3%, in operating voltage 62 kV, electron current 6.5 A and -3 dB bandwidth of 2 GHz (~6%) .  相似文献   

20.
Kuroki  F. Nishida  S. 《Electronics letters》2004,40(19):1190-1191
A technique to construct a low-loss printed bandpass filter was demonstrated by using a higher mode strip line at 30 GHz. A three-pole, 0.1 dB Chebyshev ripple bandpass filter with a 2% relative bandwidth was designed and fabricated. The insertion loss was found to be 0.7 dB.  相似文献   

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