Low noise second harmonic Gunn diode oscillator using square-shaped slot line resonator

K. Kawasaki, Takayuki Tanaka, M. Aikawa
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引用次数: 1

Abstract

This paper presents a low noise second harmonic Gunn diode oscillator using square-shaped slot line resonator. A multi-layer MIC technology is adopted to reduce the circuit size of the oscillator. The oscillator consists of Gunn diodes, slot line resonators and microstrip lines. The Gunn diodes are embedded in the slot line resonators. The output circuit is formed using the microstrip line. A second harmonic signal can be obtained from the output circuit. A square-shaped slot line resonator is used in order to achieve the low phase noise and the suppression of undesired harmonics. The second harmonic oscillator is designed and fabricated in K band. The output power is +8.89 dBm at the design frequency of 18.75 GHz (2f0) with the phase noise of −116.2 dBc/Hz at the offset frequency of 1MHz. Excellent suppression of the undesired fundamental frequency signal (f0) of −33dBc is achieved. Moreover, the circuit size is reduced by three-tenths relative to that of the previous model of the proposed oscillator.
采用方形槽线谐振腔的低噪声二次谐波Gunn二极管振荡器
本文提出了一种采用方形槽线谐振腔的低噪声二次谐波甘恩二极管振荡器。采用多层MIC技术减小了振荡器的电路尺寸。该振荡器由Gunn二极管、槽线谐振器和微带线组成。Gunn二极管嵌入在槽线谐振器中。输出电路由微带线构成。从输出电路可以得到二次谐波信号。为了达到低相位噪声和抑制非期望谐波的目的,采用了方形槽线谐振器。设计并制作了K波段的二次谐振子。在设计频率为18.75 GHz (2f0)时输出功率为+8.89 dBm,在偏移频率为1MHz时相位噪声为- 116.2 dBc/Hz。实现了对- 33dBc的非期望基频信号(f0)的出色抑制。此外,电路尺寸减少了十分之三,相对于以前的模型所提出的振荡器。
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