一个4.6mW, 22dBm IIP3全MOSCAP基于34-314MHz可调谐连续时间滤波器,65nm

Rakesh Kumar Palani, R. Harjani
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引用次数: 3

摘要

提出了一种仅使用MOSCAPs作为滤波电容的基于逆变器的滤波器设计。进一步在设计中,负载电容补偿负反馈网络,允许大部分电流流入负载。这将导致整体功率效率的提高。作为概念验证,采用台积电65nm技术制造了基于3阶逆变器的34-314 MHz可调谐连续时间通道选择滤波器,用于软件定义无线电。通过在低摆幅节点使用高密度可调谐moscap,该滤波器在从1.1V电源汲取4.2mA的情况下实现了+25.24 dBm的OIP3,占地面积为0.007mm2。测量的互调失真在温度变化120°时变化5dB,在电源变化200mV时变化6.5dB。此外,该滤波器在输入端呈现高阻抗节点,在输出端呈现低阻抗节点,从而简化了系统集成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 4.6mW, 22dBm IIP3 all MOSCAP based 34–314MHz tunable continuous time filter in 65nm
A inverter based filter design is proposed that uses only MOSCAPs as filter capacitors. Further in the design the load capacitance compensates the negative feedback network allowing the majority of current to flow into the load. This results in an increase in the overall power efficiency. As a proof of concept, a 3rd order inverter based 34-314 MHz tunable continuous time channel select filter for software-defined radios is fabricated in TSMCs 65nm technology. By using the high density tunable MOSCAPs at a low swing node, the filter achieves an OIP3 of +25.24 dBm while drawing 4.2mA from a 1.1V supply and occupies an area of 0.007mm2. The measured intermodulation distortion varies by 5dB across a 120° variation in temperature and 6.5dB across a 200mV variation in power supply. Further, the filter presents a high impedance node at the input and a low impedance node at the output easing system integration.
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