Moeller F, Belkerdid M A, Malocha D C, Buff W
RF Monolithics, Dallas, TX.
IEEE Trans Ultrason Ferroelectr Freq Control. 1998;45(3):537-8. doi: 10.1109/58.677597.
This paper presents the design and measurement of a SAW device to be used in a correlator receiver for a differential phase shift keying direct sequence spread spectrum (DPSK/DSSS) system. The DPSK modulation format allows noncoherent data demodulation while the SAW device correlator acts as the despreading operator. In a conventional DPSK receiver, the received signal is normally split into a lower and upper path. One of the paths contains a correlator, and the other path contains a one data bit delay element and another correlator. The outputs of both paths are then fed to a noncoherent data demodulator. The device presented in this paper combines both the delay element and the two correlators in a single SAW device; therefore, a better temperature tracking mechanism, simplicity, as well as the elimination of the broadband SAW delay line are achieved. The SAW structure contains a broadband SAW transducer, and two serially coded pseudo noise (PN) DPSK filters. The SAW based correlator was built on lithium tantalate. The center frequency was set to 150 MHz, with a 63 chip PN spreading code and a data rate of 300 Kbps. Experimental measurements of the SAW device autocorrelation results are presented.
本文介绍了一种用于差分相移键控直接序列扩频(DPSK/DSSS)系统相关器接收机的声表面波(SAW)器件的设计与测量。DPSK调制格式允许进行非相干数据解调,而SAW器件相关器充当解扩算子。在传统的DPSK接收机中,接收到的信号通常被分成上、下两路。其中一路包含一个相关器,另一路包含一个单数据比特延迟元件和另一个相关器。然后将两路的输出馈送到非相干数据解调器。本文介绍的器件将延迟元件和两个相关器集成在一个SAW器件中;因此,实现了更好的温度跟踪机制、简化以及消除了宽带SAW延迟线。SAW结构包含一个宽带SAW换能器和两个串行编码伪噪声(PN)DPSK滤波器。基于SAW的相关器是在钽酸锂上构建的。中心频率设定为150MHz,采用63芯片的PN扩频码,数据速率为300Kbps。给出了SAW器件自相关结果的实验测量。