Planar Schottky diodes for submillimeter wave applications
Chih-I Lin, A. Simon, M. Rodrı́guez-Gironés, H.L. Hartnagel, P. Zimmermann, R. Zimmermann, R. Henneberger
Abstract
Chih-I Lin, A. Simon, M. Rodrı́guez-Gironés, H.L. Hartnagel, P. Zimmermann, R. Zimmermann, R. Henneberger
Abstract
The main limitation of whisker-contacted diode technology is that no integration is possible. Therefore, the development of competitive planar Schottky barrier diodes has been put forward in the last decade. The quasi-vertical planar Schottky diode was proposed several years ago and the necessary technologies are developed for a reliable fabrication. We show the recent status of this type of planar Schottky diodes. At 200 GHz an output power of 5 mW (12.5% efficiency) has been achieved with a quasi-vertical planar varactor diode. Recent activities concentrate on anti-parallel Schottky mixer diodes and integration of diodes (0.8 /spl mu/m anode diameter) with several receiver components. These diodes offer characteristics comparable to substrateless diodes with the same diode parameters.
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The main limitation of whisker-contacted diode technology is that no integration is possible. Therefore, the development of competitive planar Schottky barrier diodes has been put forward in the last decade. The quasi-vertical planar Schottky diode was proposed several years ago and the necessary technologies are developed for a reliable fabrication. We show the recent status of this type of planar Schottky diodes. At 200 GHz an output power of 5 mW (12.5% efficiency) has been achieved with a quasi-vertical planar varactor diode. Recent activities concentrate on anti-parallel Schottky mixer diodes and integration of diodes (0.8 /spl mu/m anode diameter) with several receiver components. These diodes offer characteristics comparable to substrateless diodes with the same diode parameters.
Key concepts: Schottky diode, Diode, Optoelectronics, Varicap, Planar, Materials science, Fabrication, Schottky barrier