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Slanted finger inter-digital transducers for the design of improved performance small shape factor mid-bandwidth SAW filters

机译:倾斜的手指叉指式换能器,用于设计改进的性能,小形状因数,中带宽SAW滤波器

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The virtues of slanted finger inter-digital transducers, or SFITs, for the realization of wide band SAW filters are well proven. A combination of low in-band ripples and good stop band attenuation gives SFITs the added edge over conventional IDT techniques. However, when it comes to small shape factor mid-bandwidth filters, conventional IDT design has been the first choice, often leading to large filter chip lengths. What is ignored though is the size and performance advantage that SFITs can offer, in such cases. This paper describes how SFITs can be useful for the realization of high performance small shape factor SAW filters in a compact size. To illustrate the point, a linear-phase SAW filter using SFITs with a 10% fractional bandwidth at a centre frequency of 15.6 MHz and a 30 dB to 3 dB shape factor of 1.23 is designed and fabricated on Y-Z LiNbO3. A side lobe suppression of 35 dB is achieved. It is also shown how the use of conventional IDT technique for achieving the same specifications leads to a large filter length.
机译:倾斜手指叉指换能器或SFIT用于实现宽带SAW滤波器的优点已得到充分证明。低带内纹波和良好的阻带衰减相结合,为SFIT提供了比传统IDT技术更多的优势。但是,当涉及到小形状因数的中带宽滤波器时,传统的IDT设计一直是首选,通常会导致滤波器芯片长度变长。在这种情况下,可忽略的是SFIT可以提供的规模和性能优势。本文介绍了SFIT如何以紧凑的尺寸实现高性能小形状因数SAW滤波器。为了说明这一点,在Y-Z LiNbO3上设计并制造了使用SFIT的线性相位SAW滤波器,其中心频率为15.6 MHz时分数带宽为10%,形状因子为30 dB至3 dB。实现了35 dB的旁瓣抑制。还显示了使用传统的IDT技术来实现相同的规格如何导致大的滤波器长度。

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