Design and performance of a miniaturized prototype SAW convolver on YZ-LiNbO3 are reported. The small and compact device fits into an SMD package of size 18×8.2×2.4 mm3. Output summing is realized with two bond wires, and external matching circuitry incorporates only simple lumped elements such as SMD components and copper coils. At a center frequency of 350 MHz, an integration time of 3 μs and a bandwidth of 50 MHz, i.e. a time-bandwidth product of 150, have been obtained. The achieved efficiency of -70 dBm\$\textbackslashpm\$0.5 dB may be improved considerably. The deviation from linear phase was less than \$\textbackslashpm\$50. Uniformity and corresponding phase were within \$\textbackslashpm\$0.5 dB and \$\textbackslashpm\$50, respectively
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Design and performance of a miniaturized prototype SAW convolver on YZ-LiNbO3 are reported. The small and compact device fits into an SMD package of size 18×8.2×2.4 mm3. Output summing is realized with two bond wires, and external matching circuitry incorporates only simple lumped elements such as SMD components and copper coils. At a center frequency of 350 MHz, an integration time of 3 μs and a bandwidth of 50 MHz, i.e. a time-bandwidth product of 150, have been obtained. The achieved efficien...
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