1. 南京电子器件研究所微波毫米波单片集成和模块电路重点实验室,江苏,南京,210016
2. 南京电子器件研究所微波毫米波模块电路事业部,江苏,南京,210016
5. 南京信息工程大学电子与信息工程学院,江苏,南京,210044
纸质出版:2015
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姚常飞, 陈振华, 周明, 等. 基于功率合成技术的75~115GHz六倍频源[J]. 电子学报, 2015,43(9):1864-1869.
YAO Chang-fei, CHEN Zhen-hua, ZHOU Ming, et al. 75~115GHz Power Combined Frequency Sextupler Sources[J]. Acta Electronica Sinica, 2015, 43(9): 1864-1869.
姚常飞, 陈振华, 周明, 等. 基于功率合成技术的75~115GHz六倍频源[J]. 电子学报, 2015,43(9):1864-1869. DOI: 10.3969/j.issn.0372-2112.2015.09.027.
YAO Chang-fei, CHEN Zhen-hua, ZHOU Ming, et al. 75~115GHz Power Combined Frequency Sextupler Sources[J]. Acta Electronica Sinica, 2015, 43(9): 1864-1869. DOI: 10.3969/j.issn.0372-2112.2015.09.027.
本文采用混合集成技术
实现了75~115GHz的W波段六倍频功率合成信号源.其Ku波段输入信号经有源二倍频、功分及放大后
输出两路各约24dBm的Ka波段信号
以驱动75~115GHz三倍频器
变阻二极管基于南京电子器件研究所(NEDI)的GaAs工艺线设计实现
三倍频信号经功率合成后输出.考虑到倍频二极管各种寄生参数的影响
本文采用去嵌入阻抗计算方法
提取二极管的输入阻抗及三次谐波输出阻抗
综合分析匹配电路
优化倍频器效率.在75~115GHz测得六倍频源输出功率大于8.0dBm、输出功率平坦;在112GHz测得最大输出功率为10.2dBm
合成倍频效率大于1.3%
其性能达到了国外同类产品水平
可将微波信号源扩展至75~115GHz
解决了W波段TR组件本振源及发射源的产生问题.
A 75~115GHz power combined frequency sextupler is developed with hybrid integrated technology.The frequency of the input Ku-band signal is doubled by an active doubler
and then its output power is amplified to 24dBm.The power is applied to pump 75~115GHz tripler in which the varistor multiplying diode is realized by GaAs foundry of Nanjing electronic devices institute (NEDI)
and the tripler output power is combined.Considering parasitic parameters of the diodes
diode input and output optimum impedance is calculated with embedding analysis for matching circuit optimization.Measured results indicate the output power of the sextupler is higher than 8.0dBm
and power response is flat in 75~115GHz.The highest tested power is 10.2dBm at 110GHz
and combined multiplying efficiency is higher than 1.3%.The sextupler performance achieves the level of similar foreign products
which can expand the existing microwave signals to 75~115GHz and be applied for W-band TR modules.
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