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Development of an ultra-flat SAW filter module and its application to FASS: a frequency agile signal source

机译:超平坦声表面波滤波器模块的开发及其在FASS中的应用:频率捷变信号源

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The development of a fast, agile signal in the frequency range of 10 MHz to 3 GHz based on direct digital synthesis of signals from 14 to 58 MHz is described. A high-performance SAW (surface acoustic wave) filter module was designed to provide IF (intermediate frequency) filtering after the baseband signal was converted to a center frequency of 304 MHz. The 44-MHz-wide filter module showed typical passband ripple less than 0.4 dB peak-to-peak. Triple transit, electromagnetic feedthrough, and other spurious responses were rejected by at least 50 dB. The circuit, the SAW filter, and its package were designed with careful attention to parasitics in order to achieve this performance. The filtering was accomplished by two identical SAW filters on 128 degrees Y-rotated, X LiNbO/sub 3/ operated in cascade, with isolation amplifiers buffering each filter. The isolation amplifiers were designed to provide a low-impedance, balanced termination to each IDT (interdigital transducer), minimizing triple transit and EM feedthrough. The SAW filter was designed using the Remez exchange algorithm and optimized to compensate for and reduce second-order effects. An absorbing layer of polyimide was an important factor in assuring repeatably low spurious time-domain responses from the chip edges, while being compatible with 300 degrees C package sealing. An on-wafer test hardware and software system was developed to predict packaged-device ripple performance and a precision test fixture with two-port calibration standards was developed to test feedthrough and spurious time-domain responses in the same environment as the final circuit.
机译:描述了基于14到58 MHz信号的直接数字合成,在10 MHz到3 GHz频率范围内开发快速,敏捷的信号的方法。设计了一种高性能SAW(表面声波)滤波器模块,以在将基带信号转换为304 MHz的中心频率后提供IF(中频)滤波。宽44MHz的滤波器模块显示出典型的通带纹波,其峰峰值小于0.4 dB。三重传输,电磁馈通和其他杂散响应至少被拒绝了50 dB。电路,SAW滤波器及其封装在设计时要特别注意寄生因素,以实现此性能。滤波是通过两个相同的SAW滤波器以级联方式在Y轴旋转128度X LiNbO / sub 3 /上完成的,隔离放大器对每个滤波器进行缓冲。隔离放大器旨在为每个IDT(叉指式换能器)提供低阻抗,平衡端接,从而最大程度地减少了三重传输和EM馈通。使用Remez交换算法设计SAW滤波器,并对其进行优化以补偿和减少二阶效应。聚酰亚胺的吸收层是确保来自芯片边缘的可重复的低虚假时域响应的重要因素,同时与300摄氏度的封装密封兼容。开发了晶片上测试硬件和软件系统以预测封装器件的纹波性能,并开发了具有两端口校准标准的精密测试夹具,以在与最终电路相同的环境中测试馈通和杂散时域响应。

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