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Combination of Ceramic Laser Micromachining and Printed Technology as a Way for Rapid Prototyping Semiconductor Gas Sensors.
Samotaev, Nikolay; Oblov, Konstantin; Dzhumaev, Pavel; Fritsch, Marco; Mosch, Sindy; Vinnichenko, Mykola; Trofimenko, Nikolai; Baumgärtner, Christoph; Fuchs, Franz-Martin; Wissmeier, Lena.
Afiliação
  • Samotaev N; Micro and Nanoelectronics Department, MEPhI (Moscow Engineering Physics Institute), National Research Nuclear University, 115409 Moscow, Russia.
  • Oblov K; Micro and Nanoelectronics Department, MEPhI (Moscow Engineering Physics Institute), National Research Nuclear University, 115409 Moscow, Russia.
  • Dzhumaev P; Micro and Nanoelectronics Department, MEPhI (Moscow Engineering Physics Institute), National Research Nuclear University, 115409 Moscow, Russia.
  • Fritsch M; Fraunhofer IKTS Institute, 01277 Dresden, Germany.
  • Mosch S; Fraunhofer IKTS Institute, 01277 Dresden, Germany.
  • Vinnichenko M; Fraunhofer IKTS Institute, 01277 Dresden, Germany.
  • Trofimenko N; Fraunhofer IKTS Institute, 01277 Dresden, Germany.
  • Baumgärtner C; Fraunhofer IKTS Institute, 01277 Dresden, Germany.
  • Fuchs FM; KERAFOL Keramische Folien GmbH & Co. KG, 92676 Eschenbach, Germany.
  • Wissmeier L; KERAFOL Keramische Folien GmbH & Co. KG, 92676 Eschenbach, Germany.
Micromachines (Basel) ; 12(12)2021 Nov 25.
Article em En | MEDLINE | ID: mdl-34945292
ABSTRACT
The work describes a fast and flexible micro/nano fabrication and manufacturing method for ceramic Micro-electromechanical systems (MEMS)sensors. Rapid prototyping techniques are demonstrated for metal oxide sensor fabrication in the form of a complete MEMS device, which could be used as a compact miniaturized surface mount devices package. Ceramic MEMS were fabricated by the laser micromilling of already pre-sintered monolithic materials. It has been demonstrated that it is possible to deposit metallization and sensor films by thick-film and thin-film methods on the manufactured ceramic product. The results of functional tests of such manufactured sensors are presented, demonstrating their full suitability for gas sensing application and indicating that the obtained parameters are at a level comparable to those of industrial produced sensors. Results of design and optimization principles of applied methods for micro- and nanosystems are discussed with regard to future, wider application in semiconductor gas sensors prototyping.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article