基于CMOS技术的s波段微波测量线性单位分贝射频功率检测器

Jules Guiliary Ravanne, Y. L. Then, H. T. Su, I. Hijazin
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引用次数: 0

摘要

本文研究了采用180nm标准CMOS工艺在s波段应用的低功率线性单位分贝射频功率检测器的实现和设计。所提出的电路旨在应用于无线通信和农业部门的传感设备。采用对数放大器实现宽动态范围线性分贝输出。在对数放大器之前放置电流源负载RMS功率检测器,以提高射频功率检测器的灵敏度。利用mosfet饱和区平方定律原理进行功率检测。对数放大器采用5个相同的差分限幅放大器,对宽动态范围的输入信号进行放大和压缩。每个限制放大器被设计为11.2 dB增益单元。采用180nm CMOS工艺参数对电路进行了设计和仿真。仿真结果表明,射频功率检测器可以检测到−50 dBm ~ 0 dBm范围内的功率。电源检测器工作频率为2ghz ~ 4ghz,供电电压为1.8 V。总功耗为0.610 mW。
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A Linear-in-decibel RF Power Detector for Microwave Measurements in the S-band Frequency using CMOS Technology
This paper investigates the implementation and design of a low-power linear-in-decibel RF power detector using a 180-nm standard CMOS process for applications in the S-band frequency. The proposed circuit aims at applications in wireless communication and as sensing devices in the agricultural sector. A logarithmic amplifier is employed to achieve wide dynamic range linear-in-decibel output. A current-source-load RMS power detector is placed before the logarithmic amplifier to improve the RF power detector sensitivity. MOSFETS square-law principle in the saturation region is exploited to perform power detection. The logarithmic amplifier is realized using five identical differential limiting amplifiers, amplifying and compressing the wide dynamic range input signal. Each limiting amplifier is designed as 11.2 dB gain cells. The circuit is designed and simulated using 180-nm CMOS process parameters. The simulation results demonstrate that the RF power detector can detect power from −50 dBm to 0 dBm. The power detector operating frequency is from 2 GHz to 4 GHz, and its supply voltage is 1.8 V. The total power dissipation is 0.610 mW.
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