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A novel aperture-isolation circuit for use in phased array systems

机译:用于分阶段阵列系统的新型光圈隔离电路

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A novel electronically controlled matching network has been demonstrated as an aperture-isolation circuit. This approach offers smaller size, lower weight, and potentially lower cost than circulators. The circuit presently demonstrated has loss comparable to a circulator, however, in certain applications (e.g., lower frequency of operation) and with improved devices, it is anticipated that this approach will offer lower insertion loss than circulators. Monolithic microwave IC (MMIC)-compatible GaAs p-i-n diodes have demonstrated a cutoff frequency of 2.4 THz and a breakdown voltage of 95 V. The aperture-isolation MMIC was designed to match radiating element impedances with reflection coefficients of tip to 0.5 of any phase. The designed frequency band was 9.2-10.2 GHz. The vertical p-i-n diode structure, circuit design, and performance are described.
机译:已经证明了一种新颖的电子控制匹配网络作为光圈隔离电路。这种方法提供较小的尺寸,重量较低,并且可能降低成本低于循环器。目前证明的电路具有与循环器相当的损失,然而,在某些应用中(例如,较低的操作频率)和具有改进的设备,预计该方法将提供比循环器更低的插入损耗。单片微波IC(MMIC)-Compatibe GaAs P-I-N二极管已经证明了2.4THz的截止频率和95V的击穿电压。孔径隔离MMIC设计成匹配具有尖端反射系数的辐射元件阻抗至任何相0.5。设计的频段为9.2-10.2 GHz。描述了垂直P-I-N二极管结构,电路设计和性能。

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