On-Orbit Verification of a 4 × 4 Switch Matrix for Space Applications based on the Low Temperature Co-fired Ceramics Technology

We have developed a compact, high-performance, mechanically robust reconfigurable microwave switch matrix as well as peripheral components such as diode driver, voltage controlled oscillator, and power detector modules for satellite applications using the low temperature co-fired ceramics technology...

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Veröffentlicht in:Frequenz 2012-12, Vol.66 (11-12), p.355-362
Hauptverfasser: Humbla, Stefan, Kaleem, Saqib, Müller, Jens, Rentsch, Sven, Stephan, Ralf, Stöpel, Dirk, Vogt, Gabor, Hein, Matthias A.
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Sprache:eng
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Zusammenfassung:We have developed a compact, high-performance, mechanically robust reconfigurable microwave switch matrix as well as peripheral components such as diode driver, voltage controlled oscillator, and power detector modules for satellite applications using the low temperature co-fired ceramics technology (LTCC) and hybrid integration of integrated circuits. In order to verify the technology for space applications, we combined these components to build a system that enables automated verification of the switch matrix in space, accounting for power consumption, mass, overall geometrical dimensions, and mechanical robustness. The system passed a full space qualification. During a one year On-Orbit-Verification (OOV) mission aboard the German test satellite TET-1 (technology evaluation carrier) launched on July 22, 2012, the correct operation and reliability of the entire switch matrix system and thereby the used technology will be demonstrated.
ISSN:0016-1136
2191-6349
DOI:10.1515/freq-2012-0106