首页> 外文期刊>Circuits, Devices & Systems, IET >Design of a ±0.15 dB accurate baseband detector for FMCW radars employing inherent PVT cancellation
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Design of a ±0.15 dB accurate baseband detector for FMCW radars employing inherent PVT cancellation

机译:采用固有PVT抵消的FMCW雷达的±0.15 dB精确基带检测器设计

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摘要

This study presents design methodologies for high accuracy baseband detectors for use in automatic gain control (AGC) loops. These loops are used in many applications to stabilise the signal level in a transceiver chain. In a wireless frequency modulated continuous wave (FMCW) radar receiver for example, it is desired to maintain a constant baseband signal level at the receiver output prior to the analogue-to-digital converter. Due to the AGC loop feedback action, the accuracy of this output level directly depends on the detector accuracy. In this study, a detector design employing inherent cancellation of process, voltage and temperature (PVT) variations without the need for any complex compensation schemes is proposed. Measurement results of a fabricated test chip are in good agreement with simulations achieving ±0.15 dB accuracy over temperature, supply and part-to-part variations. The fabricated detector prototype on an IBM 0.18 μm technology has an active area of 0.05 mm2 and draws 1 mA from a 3 V supply. An integrated AGC loop including the proposed detector achieves a 52 dB dynamic range consuming an overall 9 mW power. To the best of the authors' knowledge, the proposed detector has the highest uncalibrated accuracy reported up to date.
机译:这项研究提出了用于自动增益控制(AGC)环路的高精度基带检测器的设计方法。这些环路在许多应用中用于稳定收发器链中的信号电平。例如,在无线调频连续波(FMCW)雷达接收机中,需要在模数转换器之前在接收机输出端保持恒定的基带信号电平。由于AGC回路的反馈作用,该输出电平的精度直接取决于检测器的精度。在这项研究中,提出了一种探测器设计,该探测器设计采用固有的过程,电压和温度(PVT)变化抵消功能,而无需任何复杂的补偿方案。预制测试芯片的测量结果与仿真结果吻合良好,仿真结果在温度,电源和零件之间的变化范围内均达到±0.15 dB的精度。采用IBM 0.18μm技术制造的探测器原型具有0.05 mm2的有效面积,并从3 V电源汲取1 mA电流。包括建议的检测器的集成AGC环路实现了52 dB的动态范围,消耗了9 mW的总功率。据作者所知,建议的检测器具有迄今报告的最高未校准精度。

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