一种32分路数字控制可编程横向滤波器,采用LSI GaAs集成电路(和SAW延迟线)

J. Culver, D. E. Zimmerman, C.M. Panasik
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引用次数: 7

摘要

描述了一种数字控制可编程横向滤波器(DCPTF),它使用LiNbO/sub - 3/表面声波(SAW)延迟线和两个GaAs大规模集成(LSI)电路来控制32个分接权重的幅度和符号。将射频(RF)信号应用于输入换能器,该换能器产生表面声波,该声波沿着LiNbO/sub - 3/衬底传播到输出电极阵列。每个输出电极检测与声波相关的电信号。由于输出电极之间的延迟,每个电信号都是原始输出的延迟副本。然后信号流入射频分接加权放大器输入端。每个相位的放大器输出都连接到各自的求和母线上。负抽头重量与外部180度混合产生。与以前报道的ptf相比,DCPTF的大小大大减少,性能几乎没有牺牲。该滤波器是完全可编程的,并且仅受带宽(以300 MHz为中心的100 MHz)和抽头数量的限制。
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A 32 tap digitally controlled programmable transversal filter using LSI GaAs ICs (and SAW delay line)
A digitally controlled programmable transversal filter (DCPTF) is described that uses a LiNbO/sub 3/ surface-acoustic-wave (SAW) delay line and two GaAs large-scale-integrated (LSI) circuits to control magnitude and sign of the 32 tap weights. A radio-frequency (RF) signal is applied to an input transducer, which generates a surface acoustic wave that propagates down the LiNbO/sub 3/ substrate to an array of output electrodes. Each output electrode detects the electrical signal associated with the acoustic wave. Because of the delay between output electrodes, each electric signal is a delayed copy of the original output. The signal then flows into the RF tap-weighting-amplifier input. The amplifier outputs of each phase are connected to their respective summing buses. Negative tap weights are generated with an external 180 degrees hybrid. The DCPTF constitutes a significant reduction in size over previously reported PTFs with little sacrifice in performance. The filter is completely programmable and is constrained only by the bandwidth (100 MHz centered at 300 MHz) and the number of taps.<>
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