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Highly miniaturized wideband negative group delay circuit using effective negative dielectric permittivity stopband microstrip lines

机译:使用有效的负介电常数阻带微带线的高度小型化的宽带负群延迟电路

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In this paper, a effective negative dielectric permittivity (e) phenomenon is used to obtain compact negative group delay circuit (NGDC). Rectangular complementary split ring resonator (RCSRR) etched on the ground of microstrip line (MSL) is utilized to stimulate this behaviour. Firstly, the desired location of the target delay (f) is solely determined using the unit dimensions. Then, the target GD is fully controlled using external resistor (R) connected across the external rectangle of the previously determined RCSRR. Design curves of the proposed structure are established and employed to design NGDC with GD of -5 ns at fo of 3.5 GHz. The designed NGDC accomplishes 62% size diminution compared to the smallest circuit size that has ever been achieved before. Moreover, 0.30 GHz zero NGD bandwidth (BW) is achieved. Excellent agreement is noticed between the simulation results of the proposed design and the measurements of the fabricated circuit.
机译:在本文中,有效的负介电常数(e)现象用于获得紧凑的负组延迟电路(NGDC)。在微带线(MSL)的地面上蚀刻的矩形互补开口环谐振器(RCSRR)用于刺激这种行为。首先,仅使用单位尺寸确定目标延迟(f)的期望位置。然后,使用跨先前确定的RCSRR的外部矩形连接的外部电阻器(R)完全控制目标GD。建立所提出结构的设计曲线,并将其用于设计GDDC为-5 ns且在3.5 GHz的fo时的NGDC。与以前实现的最小电路尺寸相比,设计的NGDC实现了62%的尺寸减小。此外,实现了0.30 GHz零NGD带宽(BW)。在拟议设计的仿真结果与制造电路的测量结果之间发现了极好的一致性。

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