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Array concepts for solid-state and vacuum microelectronics millimeter-wave generation

机译:固态和真空微电子毫米波产生的阵列概念

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摘要

The authors have proposed that the increasing demand for contact watt-level coherent sources in the millimeter- and submillimeter-wave region can be satisfied by fabricating two-dimensional grids loaded with oscillators and multipliers for quasi-optical coherent spatial combining of the outputs of large numbers of low-power devices. This was first demonstrated through the successful fabrication of monolithic arrays with 2000 Schottky diodes. Watt-level power outputs were obtained in doubling to 66 GHz. In addition, a simple transmission-line model was verified with a quasi-optical reflectometer that measured the array impedance. This multiplier array work is being extended to novel tripler configurations using blocking barrier devices. The technique has also been extended to oscillator configurations where the grid structure is loaded with negative-resistance devices. This was first demonstrated using Gunn devices. More recently, a 25-element MESFET grid oscillating at 10 GHz exhibited power combining and self-locking. Currently, this approach is being extended to a 100-element monolithic array of Gunn diodes. This same approach should be applicable to planar vacuum electron devices such as the submillimeter-wave BWO (backward wave oscillator) and vacuum FET.
机译:作者提出,可以通过制造装有振荡器和乘法器的二维网格来满足毫米波和亚毫米波区域中接触瓦特级相干源的日益增长的需求,以对大型输出的准光学相干空间进行组合低功耗设备的数量。这首先通过成功制造带有2000肖特基二极管的单片阵列得到证明。功率级输出功率翻倍至66 GHz。此外,使用测量阵列阻抗的准光学反射仪验证了简单的传输线模型。使用阻塞屏障器件,该乘法器阵列的工作正在扩展到新颖的三重器配置。该技术也已扩展到振荡器配置,在该配置中,栅极结构装有负电阻器件。这首先是使用Gunn设备演示的。最近,以10 GHz频率振荡的25个元素的MESFET网格展现了功率组合和自锁功能。当前,这种方法正在扩展到100元素的耿氏二极管单片阵列。相同的方法应适用于平面真空电子器件,例如亚毫米波BWO(后向波振荡器)和真空FET。

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