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1.
基于开环双模谐振器设计了一种双频带通滤波器,由两个中心重合的正方形开口环谐振器组成。分析该谐振器的奇偶模谐振频率与传输零点,每个通带内有两个谐振模式。该滤波器中心频率分别为4.5 GHz和6.5 GHz,3 dB相对带宽FBW分别为11%、5%,两通带带内插入损耗分别小于0.6 dB、1.4 dB,带内回波损耗分别优于19.5 dB、16.5 dB,高频处阻带抑制达到50 dB,两通带之间隔离度达到53 dB,尺寸仅为6 mm×11 mm×1.09 mm。  相似文献   

2.
基于横向滤波器耦合结构,采用支节加载双模谐振器,设计了中心频率位于1.57 GHz(GPS应用)与2.4GHz(WLAN应用)的双频微带滤波器。由短路支节加载双模谐振器形成第一个通带,开路支节加载双模谐振器形成第二个通带,两个谐振器被输入/输出馈线隔离,每个通带的中心频率与带宽可以单独调节。测试结果表明:两个通带内的最小插损分别为2.18,1.35 dB,3 dB带宽分别为5.2%,6.8%,回波损耗均小于16 dB,三个传输零点分别位于1.28,2.08,2.71 GHz处。该滤波器具有尺寸小、带外选择性好等优点。  相似文献   

3.
设计了一种基于1/4波长阶梯阻抗谐振器(SIR)的交叉耦合微带双频带通滤波器,利用SIR终端加载的金属化短路通孔实现K倒置器,利用谐振器之间的级间耦合实现J倒置器,通过相邻谐振器之间的级联耦合和不相邻谐振器之间的交叉耦合,完成了四阶双频带通滤波器的设计。滤波器两个通带的中心频率分别为3.78GHz和8.69GHz,中心频率比大于2,对应的插入损耗分别为-1.28dB和-2.29dB,带内回波损耗分别为-12.38dB和-25.0dB。测量结果和仿真结果基本吻合,实现了双频带通滤波器的小型化和低损耗。  相似文献   

4.
提出了一种基于阶梯阻抗谐振器的紧凑、高选择性的微带双频带通滤波器,使用了两个发卡型阶梯阻抗谐振器交叉组成了伪交指结构谐振器,实现了小型化双频滤波器。采用0°馈电结构引入了三个传输零点,从而提高了频率选择特性。加工了微带双频带通滤波器实物,实测结果显示,两个通带中心频率分别为2.41GHz和5.26GHz,中心频率比大于2,带内插损分别为1.06dB和1.59dB,3dB相对带宽分别为22.8%、15.6%,仿真与实测吻合较好。与传统的分支加载、阶梯阻抗等双频滤波器相比,该滤波器具有设计简单、结构紧凑、低插入损耗及高频率选择特性等优点。  相似文献   

5.
采用平面双模谐振器设计了一款新颖的具有小中心频率比的紧凑型双频带滤波器。该滤波器的两个工作频段的中心频率分别为5G WiFi的两个有用频段5.2 GHz和5.8 GHz,中心频率比为1:1.1。实现了具有四个传输零点的双通带响应,其中位于两个频带中间的两个传输零点由谐振器自身产生,很好地抑制了通带间的无用频段。另外两个传输零点由源负载耦合结构产生。加工并测试了该滤波器,两个通带的3 dB相对带宽为5.8%和5.2%,通带内的插入损耗小于0.8 dB,四个传输零点分别位4.52, 5.50,5.50和6.50 GHz,实验和仿真结果吻合,验证了结构的有效性。  相似文献   

6.
文中提出了一种具有宽阻带的紧凑型双频带通滤波器,它采用了折叠短路枝节负载谐振器、紧凑型微 带单元谐振器(CMRC)和阶跃阻抗谐振器结构。由于多个谐振器产生了五个可控传输零点(TZ),该滤波器实现了两个 通带之间的良好隔离度以及宽阻带特性。制作并测试了尺寸紧凑的双频带通滤波器实验样品,测试结果显示,第一通 带和第二通带的中心频率/ 插入损耗分别为0. 66 GHz/0. 8 dB 和1. 73 GHz/0. 7 dB,阻带频率高达10. 5 GHz,抑制水平 超过15 dB。  相似文献   

7.
为了更好地满足无线通信系统对微波电路双频/多频段的需求,基于微带-槽线双层结构设计了一款应用于S波段的双频滤波功分器。首先,在单个半波长微带谐振器基础上,利用枝节加载技术设计一款双模谐振器,实现双频带通滤波器设计,并将该滤波器与Wilkinson功分器进行集成,实现双频滤波功分器设计;其次,利用微带线和槽线的对偶关系,在不增加电路尺寸的基础上,引入双模槽线谐振器与微带谐振器进行垂直级联,从而展宽滤波功分器的两个通带带宽;最后利用枝节加载技术优化馈电网络。由于双模微带-槽线谐振器和馈电网络自身的特性,在每个通带的两侧分别产生一个传输零点,实现较高的带外选择性,且每个传输零点单独可控。双频滤波功分器的两个通带中心频率分别工作于2.17 GHz和3.55 GHz,相对带宽分别为8.29%(2.08~2.26 GHz)和8.15%(3.41~3.7 GHz)。仿真结果和实测结果基本吻合。  相似文献   

8.
王斌  荆麟  黄文 《压电与声光》2017,39(3):452-455
针对超宽带系统易受窄带信号干扰的问题,设计了一种可以抑制无线局域网络(WLAN)和卫星通信信号干扰的双陷波超宽带带通滤波器。该滤波器的主要谐振结构由T型枝节加载的多模谐振器组成,改进的T型枝节增加了两个传输零点,同时减小了滤波器尺寸;通过耦合方开环谐振器,实现了两个陷波特性,调节谐振器尺寸,可以得到所需的陷波频率。测试结果表明,该滤波器的尺寸仅16.7mm×8.5mm,中心频率为6.9GHz,通带为3.0~10.8GHz,陷波中心频率在5.8GHz和8.04GHz,衰减最低点分别为-27dB和-18dB,仿真与测量结果有较好的一致性。  相似文献   

9.
文中提出了一种基于折叠型SIR 谐振器的双通带频率可控的微带滤波器,它由SIR 谐振器特性结合 传输线理论实现。该滤波器设计为具有两个自由度,调节谐振器的导带宽度可以对两个通带之间的频率及其间隔 进行调节。文中还研究了调整谐振器导带长度对滤波器频率特性的影响。测试结果表明,该微带滤波器有两个通 带,其中心频率分别为2. 79 GHz 和3. 90 GHz,带内最小插入损耗分别为-0. 96 dB 和-3. 0 dB,带内最小回波损耗分 别为-42 dB 和-18 dB,相对带宽分别为5. 7%和6. 7%。仿真和测试结果的一致性证实了滤波器设计的有效性。  相似文献   

10.
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   

11.
In this paper, two compact tuneable bandpass filters (BPFs) based on the coupled feed lines are introduced. To approach a compact size, the coupled feed lines are bended. To design a high performance single-band bandpass filter (BPF), coupled feed lines are loaded by T-shaped stubs (as main resonators) and rectangular stubs (as suppressor stubs). Also, the mechanism of coupled feed lines combining with T-shaped open stubs is analyzed to show a tunable passband. The dual-band BPF includes two big radial-stubs, two small radial-stubs, two T-shaped structures and spiral coupled feed lines. The LC model of big radial-stubs is analyzed to compute the equation of transmission zero using its transfer function. The passband frequency of single-band BPF resonates at 2.12 GHz (3G) with corresponded insertion loss of 0.83 dB. Also, for dual-band BPF, the measured insertion-losses of first and second passbands are close to 0.8 and 1.1 dB, respectively. The frequency responses of BPFs are easily adjusted by altering the physical dimensions, demonstrating a adjustable performance. To verify the correct operation of circuits, the proffered filters are implemented and tested.  相似文献   

12.
汪洋  郭瑜  余超  毛晓炜 《微波学报》2020,36(2):23-27
提出了一种新型毫米波双通带基片集成波导(SIW)滤波器,该滤波器由双模基片集成波导和双模带线谐振器构成。其中双模带线谐振器嵌入到双模基片集成波导谐振腔中,不占据额外的电路面积,利用双模带线谐振器的TEM模和双模基片集成波导谐振腔的两个简并模式TE102、TE201,可分别形成两个相互独立的通带,因此该滤波器的设计具有很大的灵活性。所设计的双通带滤波器具有三个传输零点,实现了良好的带外抑制和带间隔离度。该双通带滤波器工作于28.4GHz和32.2GHz,3dB带宽分别为2%和3%。最终的测试结果和仿真结果相吻合,证明了该设计方法的可靠性。  相似文献   

13.
贺莹  赵永久 《微波学报》2014,30(6):18-21
提出了一种应用于宽带系统和窄带系统的双频微带滤波器,其宽带通带和窄带通带分别通过三阶交 指型滤波结构和双模微带谐振器来控制。两部分的相互加载效应可进一步增强源-负载耦合,提高通带的选择性。 在50赘馈线上加载两个不同尺寸的反向四分之一波长谐振器(QWR)耦合短路枝节,可以在通带之间及上下边缘处 产生多个传输零点,提高了通带选择性和隔离度。最终,本文设计了一个工作于3.2GHz(宽带)和5.8GHz(WLAN) 的双频滤波器用以验证上述设计方法,测试和仿真结果吻合良好。  相似文献   

14.
A miniaturized dual-band bandpass filter (BPF) using stepped impedance resonator (SIR) and defected ground structure (DGS) is presented. In order to get two desired passbands, two different transmission paths and source–load cross coupling have been implemented. One path is the SIR, and the other is the DGS. Meanwhile, it is easy to obtain good frequency selectivity by introducing several transmission zeros. The coupling scheme and current distributions are applied to demonstrate the flexible design approach. A dual-band BPF is designed, simulated, and fabricated to demonstrate the performance of the proposed dual-band filter. The measured results show that the fabricated dual-band BPF has two passbands centered at 2.41 and 3.52 GHz with the fractional bandwidth of 5.8 and 7.7%, respectively. The measured insertion loss is about 2 dB and 2.2 dB at the lower and upper passbands. The measured results show good agreement with the simulated ones.  相似文献   

15.
Compact dual-band bandpass filter (BPF) for the 5th generation mobile communication technology (5G) radio frequency (RF) front-end applications was presented based on multilayer stepped impedance resonators (SIRs). The multilayer dual-band SIR BPF can achieve high selectivity and four transmission zeros (TZs) near the passband edges by the quarter-wavelength tri-section SIRs. The multilayer dual-band SIR BPF is fabricated on a 3-layer FR-4 substrate with a compact dimension of 5.5 mm ×5.0 mm ×1.2 mm. The measured two passbands of themultilayer dual-band SIR BPF are 3.3 GHz -3.5 GHz and 4.8 GHz -5.0 GHz with insertion loss (IL) less than 2 dB respectively. Both measured and simulated results suggest that it is a possible candidate for the application of 5G RF front-end at sub-6 GHz frequency band.  相似文献   

16.
This letter presents a dual-band combline bandpass filter (BPF) loaded by lumped series resonators. The proposed filter configuration can easily generate two desired passbands by controlling the resonant frequencies of the comblines as well as the series resonators. Furthermore, the skirt frequency characteristics between the two passbands are improved by transmission zeros introduced by source-load coupling via a lumped element capacitor. Two-pole dual-BPF with center frequencies of 1.2 and 1.54 GHz is designed and the measured results agree well with simulated results.  相似文献   

17.
In this letter, a T-shaped microstrip feeding arrangement is proposed to design wideband bandpass filter (BPF) using shorted slot-line resonators. This feed line produces frequency selective external coupling which is utilized to suppress unwanted harmonics. Up to sixth order harmonics are suppressed. Other advantages are low passband group delay variation, ease of fabrication, low insertion loss (IL), and compact size. A fabricated BPF of fractional bandwidth 56.3% at midband frequency 2.3 GHz has a maximum IL of 1.2 dB in its passband and 30-dB upper stopband extends over 11.53 GHz  相似文献   

18.
A Ka-band low-temperature co-fired ceramic (LTCC) narrow bandpass filter (BPF) is presented first. This BPF shows a very narrow 3 dB fractional bandwidth of 4.5% centered at 28.7 GHz. The advantages of multilayered LTCC technology such as high integration and vertical stacking capabilities were employed to design a three-dimensional interdigital end-coupled embedded microstrip narrow BPF. The difficulties in controlling the precise distance between two adjacent resonators in LTCC end-coupled BPF were overcome by locating the resonators on different layers. The measured insertion loss is 3 dB at 28.7 GHz.  相似文献   

19.
双频带通滤波器的优化设计   总被引:1,自引:0,他引:1  
利用阶跃阻抗谐振器优化,设计了一个工作在无线局域网(2.4/5.2GHz)的双频带通滤波器。通过奇、偶模分析,在阶跃阻抗谐振器理论计算公式基础上,根据不同的阻抗比条件,阶跃阻抗谐振器谐振频率比与阶跃阻抗高、低阻抗电长度之比的关系曲线,可以方便地确定阶跃阻抗谐振器的谐振频率和电长度,通过sonnet电路仿真软件验证了设计的合理性,并给出了用于无线通信2.4、5.2 GHz双频带通滤波器的设计结果。该带通滤波器可以分别在2.4、5.2 GHz处得到较好的通带性。由于交叉耦合的存在,该双频带通滤波器在两个通带端各有一个传输零点,以此来提高滤波器的通带频率选择性。最后,测量结果与仿真结果基本吻合。  相似文献   

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