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A THz Detector Chip With Printed Circular Cavity as Package and Enhancement of Antenna Gain

机译:封装有印刷圆腔的THz检测芯片和增强天线增益

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A terahertz (THz) detector chip with a low-cost printed circular cavity package is proposed in this article. The chip consists of a differentially fed antenna and a Schottky diode at its terminal. The passive structure of the Schottky diode is modeled into the antenna. To improve its performance, the detectenna () chip is designed so that it can be mounted on the upper side of a Duroid substrate with a metal strip ring surrounding the chip. The ring is connected to the ground plane on the bottom of the substrate by vias to form a circular cavity. With the so-called circular cavity package, the radiation pattern of the antenna on the chip is not only converted from omnidirectional to unidirectional, but also with its surface wave well suppressed, the directivity of the antenna can increase, and hence improve its sensitivity. With this cavity, the isolation between adjacent elements can also be improved if it is used to build an array. The measured results show that a gain enhancement of can be achieved within the operating bandwidth. The maximum sensitivity is and the minimum noise equivalent power density (NEPD) is at 216 GHz.
机译:本文提出了一种具有低成本印刷圆形腔封装的太赫兹(THz)检测器芯片。该芯片由一个差分馈电天线和一个位于其端子的肖特基二极管组成。肖特基二极管的无源结构被建模为天线。为了提高其性能,对detectenna()芯片进行了设计,以便可以将其安装在Duroid基板的上侧,并在芯片周围带有金属带环。环通过通孔连接到基板底部的接地平面,以形成圆形空腔。使用所谓的圆形腔体封装,不仅可以将芯片上天线的辐射方向从全向转换为单向,而且可以很好地抑制其表面波,从而提高天线的方向性,从而提高灵敏度。使用该腔,如果用于构建阵列,也可以改善相邻元素之间的隔离度。测量结果表明,可以在工作带宽内实现的增益增强。最大灵敏度为,最小噪声等效功率密度(NEPD)为216 GHz。

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