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A Novel Delay-Based GFSK Demodulator in 65 nm CMOS for Low Power Biomedical Applications

机译:用于低功耗生物医学应用的新型基于延迟的GFSK解调器,采用65 nm CMOS封装

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This article describes how, in recent years, with the development of microelectronics, implantable electronic devices have been playing a significant role in modem medicine. Examples of such electronic implant devices are, for instance, retinal prosthesis and brain implants. It brings great challenges in low power radio frequency (RF) and analog designs. This article presents a low power Gaussian frequency shift keying (GFSK) demodulator designed for Medical Implant Communications Service (MICS) band Receiver. This demodulator utilizes a novel structure that a wide IF range can be handled and presents the smallest Δf/f ratio in any published GFSK demodulators. In theory the demodulation method can be applied to any RF frequency. The demodulator draws 550uA from a 1 V power supply. A maximum data rate of 400 Kbits/s can be achieved within the 300 KHz channel bandwidth defined by MICS. A simulated signal-to-noise ratio (SNR) of 15.2dB at AWGN channel is obtained to achieve 10-3 bit error rate (BER). This demodulator is fabricated on 65-nm CMOS and occupies 0.12mm2 silicon area.
机译:本文介绍了近年来,随着微电子技术的发展,植入式电子设备如何在现代医学中发挥重要作用。这种电子植入装置的例子是例如视网膜假体和脑植入物。它在低功率射频(RF)和模拟设计中带来了巨大挑战。本文介绍了一种专为医疗植入通信服务(MICS)频段接收器设计的低功率高斯频移键控(GFSK)解调器。该解调器利用一种新颖的结构,可以处理较宽的IF范围,并在任何已发布的GFSK解调器中呈现最小的Δf/ f比。理论上,该解调方法可以应用于任何RF频率。解调器从1 V电源汲取550uA。在MICS定义的300 KHz信道带宽内,可以达到400 Kbit / s的最大数据速率。在AWGN信道上获得了15.2dB的模拟信噪比(SNR),以实现10-3比特误码率(BER)。该解调器是在65 nm CMOS上制造的,占用的硅面积为0.12mm2。

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