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Design and Fabrication of Barker Coded Surface Acoustic Wave (SAW) Correlator at 2.45 GHz for Low-Power Wake-up Receivers

机译:低功率唤醒接收器的2.45 GHz Barker编码表面声波(SAW)相关器的设计与制造

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Low-power receivers use direct-detection receiver architecture for its design simplicity and its low power dissipation. However, the direct-detection based receivers suffer from co-channel interference which significantly degrades the communication reliability. Co-channel interference robustness can be improved by using a BPSK Barker code modulated Surface Acoustic Wave (SAW) correlator as a prior stage to the RF direct detection circuit. This paper reports in details the design, fabrication and measurements of a 2.45 GHz SAW correlator with 13 bits length Barker code. The device is fabricated on Lithium Niobate LiNbO3 substrate and it is composed of an input non-coded Inter Digital Transducers (IDT), a Piezoelectric substrate and an output coded IDT. The device wavelength λ is set to 1.6 µm, considering a phase velocity of the wave equal to 3970 m.s-1. Several configurations of the device were designed and fabricated, particularly varying the aperture and the non-coded IDT length to find out the optimal device configuration. All devices were found to operate with Insertion Loss (IL) ranging from 12 to 15 dB at 2.45 GHz with a tip probing measurement setup, while a packaged sample has an IL of 12.45 dB at 2.44 GHz mounted on a PCB with external 50 Ω LC matching network. Additionally, time-domain measurement for the packaged device shows that the output has a correlation peak with a peak-to-side-lobe (PSL) ratio of 4:1 for a −0.5 dBm input BPSK Barker code signal.
机译:低功耗接收器使用直接检测接收器体系结构,以简化设计并降低功耗。然而,基于直接检测的接收机遭受同信道干扰,这严重降低了通信可靠性。通过将BPSK巴克码调制的表面声波(SAW)相关器用作RF直接检测电路的前级,可以提高同信道干扰的鲁棒性。本文详细报告了具有13位长巴克码的2.45 GHz SAW相关器的设计,制造和测量。该器件在铌酸锂LiNbO3衬底上制造,由输入非编码的数字间互感器(IDT),压电衬底和输出的IDT组成。考虑到波的相速度等于3970 m.s-1,将设备波长λ设置为1.6 µm。设计和制造了设备的几种配置,特别是改变了孔径和未编码的IDT长度,以找出最佳的设备配置。发现所有器件都可以通过尖端探测测量设置在2.45 GHz的插入损耗(IL)范围为12至15 dB,而封装样品安装在具有外部50ΩLC的PCB上时在2.44 GHz时的IL为12.45 dB匹配网络。此外,对于封装器件的时域测量表明,对于-0.5 dBm输入BPSK巴克码信号,输出具有4:1的峰-旁瓣(PSL)比的相关峰。

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