首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A Low-Phase Error Cascode CMOS Variable Gain Amplifier With 180#x00B0; Phase Control for Phase Array Systems
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A Low-Phase Error Cascode CMOS Variable Gain Amplifier With 180#x00B0; Phase Control for Phase Array Systems

机译:用于相控阵系统的低相位误差共源共栅CMOS可变增益放大器,具有180°相位控制

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摘要

A comprehensive analysis is derived to understand the mechanism of phase errors in cascode CMOS variable gain amplifiers (VGAs). According to the analysis, source#x2013;drain parasitic capacitors ( $C_{mathrm {ds}}$ ) of common gate (CG) transistors in off-region are the main causes for phase errors. An independent cascode current canceling (ICCC) VGA is proposed to relax phase errors by minimizing the effect of $C_{mathrm {ds}}$ within a broadband. The proposed VGA achieves a 16-dB gain control with a 1.6#x00B0; phase error and a 0.2-dB gain error from 15 to 25 GHz by 40-nm CMOS technology. Owing to the cascode structure, the peak gain of the VGA is 12 dB with only one stage including input#x2013;output pads consuming 16-mW power from 1.1-V voltage. Besides, the VGA can also serve as a 180#x00B0; phase shifter (PS) due to ICCC structure with a 1.5#x00B0; phase error and a 0.2-dB gain error from 15 to 25 GHz. The measured #x2212;3-dB bandwidth is 5 GHz, and output 1-dB compression point (OP1dB) is over 2.5 dBm in the maximum gain state. The core area is 0.065 mm 2 excluding input#x2013;output pads.
机译:通过全面的分析,了解共源共栅CMOS可变增益放大器(VGA)中相位误差的机理。根据分析,失调区共栅极(CG)晶体管的源漏寄生电容($C_{mathrm {ds}}$)是造成相位误差的主要原因。该文提出一种独立的共源共栅电流消除(ICCC)VGA,通过最小化宽带内$C_{mathrm {ds}}$的影响来放松相位误差。所提出的VGA通过40nm CMOS技术实现了16 dB增益控制,相位误差为1.6°,增益误差为0.2 dB。由于采用共源共栅结构,VGA 的峰值增益为 12dB,只有一个级(包括输入输出焊盘),在 1.1V 电压下消耗 16mW 功率。此外,VGA 还可以用作 180° 移相器 (PS),因为 ICCC 结构在 15 至 25 GHz 范围内具有 1.5° 的相位误差和 0.2 dB 的增益误差。测得的−3 dB带宽为5 GHz,最大增益状态下的输出1 dB压缩点(OP1dB)超过2.5 dBm。核心面积为 0.065 mm 2,不包括输入输出焊盘。

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