Micro-hotplate based temperature stabilization system for CMOS SAW resonators

Author:

Nordin Anis Nurashikin,Voiculescu Ioana,Zaghloul Mona

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference10 articles.

1. Hopcroft M, Melamud R, Chandler RN, Park WT, Kim B, Yama G, Paatridge A, Lutz M, Kenny T (2004) Active temperature compensation for micromachined resonators. In: Proceedings of solid-state sensor, actuator and microsystems workshop, Hilton Head Island, USA, 6–10 June 2004. Transducer Research Foundation, San Diego

2. Ja C, Hopcroft M, Agarwal M, Chandorkar S, Candler R, Subramaniam V, Melamud R, Bhat S, Kim B, Park K, Kenny T (2006) In-chip device-layer thermal isolation of MEMS resonator for lower power budget. In: Proceedings of ASME International mechanical engineering congress and exposition, Chicago, IL, 5–10 Nov 2006. ASME, New York

3. Lakdawala H, Fedder GK (2004) Temperature stabilization of CMOS capacitive accelerometers. J Micromechanics and Microengineering 14:559–566

4. Nordin AN, Zaghloul ME (2007) Modeling and fabrication of CMOS surface acoustic wave resonators. IEEE trans on microwave theory and techniques,vol 55. IEEE, New Jersey, pp 992–1001

5. Nordin AN, Voiculescu I, Zaghloul ME (2008) On-chip hotplate for temperature control of CMOS SAW resonators. In: Proceedings of Design, test and packaging of MEMS and MOEMS, Nice, France, 9–11 April 2008. EDA, Grenoble

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