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method for the manufacture of a gaas mesfets with increased schottkysperrschicht

机译:肖特基二极管的制造方法的制造方法

摘要

This invention is concerned with the production of Schottky barrier gate contacts in MESFET devices. The contact is produced by wet-chemical removal of native oxide in a sealed inert gas ambient and blow-drying the wet-etched surface with the inert gas prior to deposition of gate electrode metal on GaAs by electron beam evaporation in an inert gas ambient. Use of Pt, due to its higher metal work function, as the gate contact metal results in a Schottky barrier height of 0.98 eV for Pt on n-type GaAs. This is considerably higher than the barrier height of conventionally processed TiPtAu contacts (0.78 eV). To lower the sheet resistivity of the gate contact, Pt is preferably used as a multi-layer contact in combination with metals having lower sheet resistivity, with Pt being in direct contact with the n-type GaAs surface. MESFETs fabricated using PtAu bilayer contacts show reverse currents an order of magnitude lower than TiPtAu-contacted companion devices, higher reverse breakdown voltages and much lower gate leakage. The use of this technology of native oxide removal and the PtAu bilayer contact provides a much simpler method of enhancing the barrier height on n-type GaAs than other techniques such as counter-doping the near-surface or inserting an interfacial layer. IMAGE
机译:本发明涉及在MESFET器件中肖特基势垒栅触点的生产。通过在密封的惰性气体环境中湿化学去除天然氧化物并在惰性气体环境中通过电子束蒸发将栅电极金属沉积在GaAs上之前,用惰性气体吹干湿法蚀刻的表面,从而产生接触。由于其较高的金属功函数,使用Pt作为栅极接触金属会导致n型GaAs上Pt的肖特基势垒高度为0.98 eV。这大大高于常规处理的TiPtAu触点的势垒高度(0.78 eV)。为了降低栅极接触的薄层电阻率,优选将Pt与具有较低薄层电阻率的金属组合用作多层接触,并且Pt与n型GaAs表面直接接触。使用PtAu双层触点制造的MESFET的反向电流比接触TiPtAu的配套器件低一个数量级,反向击穿电压更高,栅极漏电流也低得多。与其他技术(例如反掺杂近表面或​​插入界面层)相比,使用本机去除自然氧化物和PtAu双层接触的技术提供了一种简单得多的方法来增强n型GaAs上的势垒高度。 <图像>

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