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首页> 外文期刊>Journal of Micromechanics and Microengineering >Three techniques for the fabrication of high precision, mm-sized metal components based on two-photon lithography, applied for manufacturing horn antennas for THz transceivers
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Three techniques for the fabrication of high precision, mm-sized metal components based on two-photon lithography, applied for manufacturing horn antennas for THz transceivers

机译:用于制造高精度的三种技术,基于双光子光刻的高精度MM尺寸的金属部件,施加用于制造THz收发器的喇叭天线

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摘要

This paper proposes a novel packaging solution which integrates micro-machined 3D horn antennas with millimeter-wave and THz tranceivers. This packaging solution is shown to be a valid competitor to existing technologies like metallic split-block waveguides and low temperature cofired ceramics. Three different fabrication methods based on two-photon lithography are presented to form the horn antennas. The first uses two-photon lithography to form the bulk of the antenna. This structure is then metalised through physical vapor deposition (PVD) and copper plating. The second fabrication method makes use of a soft polydimethylsiloxane (PDMS) mold to easily replicate structures and the third method forms the horn antenna through electroforming. A prototype is accurately positioned on top of a 400 GHz 28 nm CMOS transmitter and glued in place with epoxy, thus providing a fully packaged solution. Measurement results show a 12 dB increase in the antenna gain when using the packaged solution. The fabrication processes are not limited to horn antennas alone and can be used to form a wide range of mm-sized metal components.
机译:本文提出了一种新型的包装解决方案,其与毫米波和THz Thziver集成了微加工的3D喇叭天线。该包装解决方案被证明是现有技术的有效竞争对手,如金属分裂块波导和低温COFIRED陶瓷等现有技术。提出了基于两光子光刻的三种不同的制造方法以形成喇叭天线。首先使用双光子光刻来形成大部分天线。然后通过物理气相沉积(PVD)和镀铜来金属化该结构。第二种制造方法利用软聚二甲基硅氧烷(PDMS)模具以易于复制结构,第三种方法通过电铸形成喇叭天线。原型被精确地定位在400GHz 28nm CMOS发射器的顶部,并用环氧树脂粘合到位,从而提供完全包装的解决方案。测量结果显示使用封装解决方案时的天线增益增加12 dB。制造过程不限于喇叭天线,可用于形成宽范围的MM尺寸的金属部件。

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