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SAW filters based on parallel-connected coupled resonator filters with offset frequencies

机译:基于具有偏移频率的并联耦合谐振器滤波器的SAW滤波器

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The concept of coupled resonators is applied to synthesize surface acoustic wave filters. Employing two parallel-connected filter tracks, with a frequency shift imposed between them, a wide passband with low insertion loss together with well-controlled rejections is achieved. The operation of the two-track device is based on the mutual interaction of the individual transfer functions for the pair of tracks. Each track serves to contribute a part of the passband, enabling a wide band. Outside of the pass-band, the signals passing through the two channels may cancel each other, thus facilitating efficient control over the rejections. However, obtaining rejection stopbands at just the predetermined frequencies requires precise values for the materials parameters and a reliable fabrication process. Prototype devices fabricated with this approach are demonstrated both on quartz and, for the first time, on 42deg-LiTaO3. Results for two-track devices having either two or three transducers per track and operating either single-ended or with a balanced output are presented. The devices are designed employing the coupling-of-modes model and transmission-matrix approach, and the separate tracks are optimized simultaneously and independently. The center frequencies are 868 MHz and 1960 MHz. On quartz, a minimum insertion loss of 4 dB and a passband width of 0.23% are achieved at 868 MHz. On 42deg-LiTaO3, the corresponding figures of merit are 1.3 dB for minimum insertion loss and 4.1% bandwidth at 1960 MHz. The filters on 42deg-LiTaO3 also have remarkably flat passbands
机译:耦合谐振器的概念被应用于合成声表面波滤波器。使用两个并联连接的滤波器轨道,并在它们之间施加频率偏移,可实现宽通带,低插入损耗以及良好控制的抑制。两轨道设备的操作基于一对轨道的各个传递函数的相互交互作用。每个磁道用于贡献一部分通带,从而实现宽带。在通带之外,通过两个通道的信号可能会相互抵消,从而有助于有效控制抑制。然而,仅在预定频率处获得抑制阻带需要材料参数的精确值和可靠的制造过程。用这种方法制造的原型设备已在石英上以及首次在42deg-LiTaO3上进行了演示。给出了每轨有两个或三个换能器并以单端或平衡输出方式运行的两轨设备的结果。器件采用模式耦合模型和传输矩阵方法进行设计,并且同时独立地优化了单独的磁道。中心频率为868 MHz和1960 MHz。在石英上,在868 MHz频率下的最小插入损耗为4 dB,通带宽度为0.23%。在42deg-LiTaO3上,最小插入损耗的相应品质因数为1.3 dB,在1960 MHz时的带宽为4.1%。 42deg-LiTaO3上的滤波器的通带也非常平坦

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