20-44 GHz容错可编程动态范围,内置CMRR平方律检测器,用于AGC应用

A. Amer, A. Y. Mohamed Abdalla, I. Eshrah
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摘要

本文介绍了一种可编程动态范围平方律功率检测器(PD)的设计和测量,该功率检测器用于工作在(20-44 GHz)频率范围的宽带毫米波收发器。该器件采用台积电0.18um BiCMOS工艺设计制造。通过理论分析和CAD谐波平衡仿真验证了探测器的性能。该检测器设计用于自动增益控制(AGC),通过将接收和发射功率设置到所需的最佳工作点范围来优化收发器性能。所提出的平方律检测器采用可编程电阻在可用检测范围之间切换,电流减法技术增加可用输出电压范围,电阻退化以减少不匹配,最后输入交叉电容器吸收由于退化引起的转换增益降低并提供高共模抑制(CMR)。在匹配的频率范围内,测量的输入动态范围增加了7db的可切换范围。当射频频率扫过工作频率范围时,对于给定的射频输入功率,检测器响应变化约±1 dBV。3.3 V电源的静态功耗为5.2mW。
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20-44 GHz Mismatch Tolerant Programmable Dynamic Range with Inherent CMRR Square Law Detector for AGC Applications
This paper describes the design and measurement of a programmable dynamic range square-law power detector (PD) for a wideband mm-Wave transceiver operating at (20-44 GHz) frequency range. The PD is designed and fabricated in TSMC 0.18um BiCMOS technology. Theoretical analysis and CAD harmonic balance simulation were performed to show the detector performance. This detector is designed for AutomaticGain-control (AGC) for optimizing transceivers performance by setting the received and transmitted power to the required sweet operating spot range. The proposed square-law detector uses programmable resistance to switch between the available detection range, current subtraction technique to increase the available output voltage range, resistor degeneration to reduce the mismatches, and finally input cross capacitors to absorb the conversion gain reduction due to the degeneration and to provide high common mode rejection (CMR). In the matched frequency range, the measured input dynamic range has increased by 7 dB switchable range. The detector response is varying by around ±1 dBV for a given input RF power, as the RF frequency is swept across the operating frequency range. Static power consumption is 5.2mW from a 3.3 V supply.
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