A carrier-frequency-independent BPSK demodulator with 100% data-rate-to-carrier-frequency ratio

F. Asgarian, M. Amir
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引用次数: 25

Abstract

A novel noncoherent BPSK demodulator is presented for wirelessly-powered biomedical implants. The received data are detected based on rising or falling edge of the digitized carrier, while all components of the circuit are independent of the carrier frequency. Besides simplicity and ultra low-power consumption, the proposed demodulator benefits from an outstanding data-rate-to-carrier-frequency ratio of 100%. Thus, it can easily achieve high data rates with lower carrier frequencies, which is desirable in implantable biomedical applications such as visual prostheses. The circuit is designed and simulated in a 0.18-μm standard CMOS technology and merely consumes 119-μW@1.8V at a data rate of 10 Mbps. The proposed idea is also supported by experimental results of a proof-of-concept prototype.
具有100%数据率与载波频率比的载波频率无关的BPSK解调器
提出了一种用于无线供电生物医学植入物的新型非相干BPSK解调器。根据数字化载波的上升沿或下降沿检测接收到的数据,而电路的所有元件与载波频率无关。除了简单和超低功耗之外,所提出的解调器还得益于100%的出色数据率与载波频率比。因此,它可以很容易地以较低的载波频率实现高数据速率,这在植入式生物医学应用中是理想的,例如视觉假体。该电路采用0.18 μm标准CMOS工艺设计和仿真,数据速率为10mbps时功耗仅为119 μW@1.8V。提出的想法也得到了概念验证原型的实验结果的支持。
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