Jamneala Tiberiu, Small Martha, Ruby Rich, Larson John D
Avago Technologies Inc, San Jose, CA, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Oct;55(10):2320-6. doi: 10.1109/TUFFC.931.
We discuss the operation of novel coupled-resonator filters with single-layer acoustic couplers. Our analysis employs the physical Mason model for acoustic resonators. Their simpler fabrication process is counterbalanced by the high acoustic attenuation of suitable coupler materials. At high levels of attenuation, both the phase and the acoustic impedance must be treated as complex quantities to accurately predict the filter insertion loss. We demonstrate that the typically poor near-band rejection of coupled resonator filters can be improved at the die level by connecting a small capacitance between the input and output of the filter to produce a pair of tunable transmission minima. We make use of these theoretical findings to fabricate coupled resonators filters operating at 2.45 GHz.
我们讨论了具有单层声学耦合器的新型耦合谐振器滤波器的工作原理。我们的分析采用了声学谐振器的物理梅森模型。其更简单的制造工艺被合适耦合器材料的高声衰减所抵消。在高声衰减水平下,为了准确预测滤波器的插入损耗,相位和声阻抗都必须视为复数量。我们证明,通过在滤波器的输入和输出之间连接一个小电容以产生一对可调传输最小值,可以在芯片级改善耦合谐振器滤波器通常较差的近带抑制。我们利用这些理论发现制造了工作在2.45 GHz的耦合谐振器滤波器。