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Performance of a Simple Architecture of an Analog CMOS Detector for MB-UWB Receiver

机译:用于MB-UWB接收器的模拟CMOS检测器的简单架构的性能

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This paper presents an implementation study of an analog CMOS pulse detector. The detector includes four stages: squarer, current amplification, an integrator and a sample and hold. The main objective is to realize the pulse detection function with less complexity design, low power consumption and low mass fabrication cost. Also, it must operates in the 3.1-10.6GHz UWB band for a multi-band impulse radio receiver. The noise performance of the detector is studied. Transistors mismatches and imperfection of the current amplifier are theoretically studied in order to evaluate their effects on the global circuit performances. CADENCE's spectre simulation results in 0.35μm CMOS technology are presented to validate this approach. Monte-Carlo simulation results are equally given in order to enforce the analytical studies. The proposed detector consumes only 2mW with a ±1.8V supply.
机译:本文介绍了模拟CMOS脉冲检测器的实施研究。检测器包括四个阶段:方块,电流放大,积分器和样品并保持。主要目的是实现脉冲检测功能,具有较差的复杂性设计,低功耗和低质量制造成本。此外,它必须在3.1-10.6GHz UWB频段中运行多频带脉冲无线电接收器。研究了检测器的噪声性能。理论上研究了电流放大器的晶体管不匹配和缺陷,以评估它们对全局电路性能的影响。节奏的幽默仿真结果提出了0.35μm的CMOS技术,以验证这种方法。 Monte-Carlo仿真结果旨在实施分析研究。所提出的探测器仅消耗2MW,电源±1.8V。

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