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A RF mixer using 0.7μm CMOS for intra-corporal communication devices

机译:使用0.7μmCMOS的RF混频器用于体内通信设备

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This paper presents an up/down converter double-balanced Gilbert cell mixer for frequencies of 433, 870 and 928 MHz in the ISM band (industrial, scientific and medical). This mixer was designed with the on-semiconductor (former AMIS) 0.7μm CMOS technology. The Gilbert cell topology was selected due to its good figure of merit (FOM), which takes into account parameters such as the conversion gain (CG), isolation between the input ports, linearity and the noise figure. This mixer provides frequency translation by means of a true multiplication on four quadrants. The simulations showed a total power consumption of 3mW from a power supply of 5V, a CG of 10.5dB, an input referred third-order input intercept point (IIP3) of 29.72dBm and an input referred 1-dB compression point (IP1dB) of 13.15dBm. This paper also presents a comparison for the three bands in order to confirm the scalability and suitability of the mixer implemented. The target application of this mixer is to provide communication to/from intra-corporal communication devices.
机译:本文提出了一种用于ISM频段(工业,科学和医学)中433、870和928 MHz频率的上/下转换器双平衡吉尔伯特单元混频器。该混频器采用半导体(以前的AMIS)0.7μmCMOS技术设计。选择吉尔伯特单元拓扑是因为它具有良好的品质因数(FOM),它考虑了诸如转换增益(CG),输入端口之间的隔离度,线性度和噪声系数之类的参数。该混频器通过在四个象限上的真乘法来提供频率转换。仿真显示,电源5V,CG 10.5dB,输入参考三阶输入截取点(IIP3)为29.72dBm,输入参考1-dB压缩点(IP1dB)为3mW,总功耗为13.15dBm。本文还对这三个频段进行了比较,以确认所实现的混频器的可扩展性和适用性。该混合器的目标应用是向/从体内通信设备提供通信。

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