Abstract:
An analysis of the electromechanical coupling coefficient for surface acoustic wave (SAW) devices developed in complementary metal oxide semiconductor (CMOS) is presented...Show MoreMetadata
Abstract:
An analysis of the electromechanical coupling coefficient for surface acoustic wave (SAW) devices developed in complementary metal oxide semiconductor (CMOS) is presented in this work. This SAW resonator uses zinc oxide (ZnO) as its piezoelectric thin film. The resonator's interdigitated electrodes were designed such that it produces 1 GHz resonance frequency. Finite element simulation of the CMOS SAW resonator was conducted using COMSOL Mutliphysics™. Three different analyses namely eigenfrequency, frequency domain and time domain analyses were conducted. The thicknesses of ZnO were varied from 2 μm to 5.5 μm with step size of 0.5 μm. Simulation results indicate maximum electromechanical coupling coefficient is achieved when normalized thickness is in the range of 0.63 < (hzno/λ) < 0.78. Experimental measurements were conducted on the fabricated CMOS SAW resonator and compared with the simulation results.
Date of Conference: 01-04 April 2014
Date Added to IEEE Xplore: 16 March 2015
ISBN Information:
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- IEEE Keywords
- Index Terms
- Thin Films ,
- Zinc Oxide ,
- Acoustic Waves ,
- Coefficient Analysis ,
- Coupling Coefficient ,
- Surface Acoustic Wave ,
- Electromechanical Coupling Coefficient ,
- Piezoelectric Thin Film ,
- Surface Acoustic Wave Resonator ,
- Simulation Results ,
- Finite Element ,
- Frequency Domain ,
- Resonance Frequency ,
- Time-domain Analysis ,
- Interdigitated Electrodes ,
- Maximum Coupling ,
- Piezoelectric Film ,
- Eigenvalues ,
- Fundamental Frequency ,
- Series Resonance ,
- Piezoelectric Materials ,
- Finite Element Model Simulation ,
- Electric Voltage ,
- Zinc Oxide Thin Films ,
- Finite Element Model ,
- Finite Element Method ,
- Electric Vector ,
- Stiffness Matrix ,
- Resonator Design
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Thin Films ,
- Zinc Oxide ,
- Acoustic Waves ,
- Coefficient Analysis ,
- Coupling Coefficient ,
- Surface Acoustic Wave ,
- Electromechanical Coupling Coefficient ,
- Piezoelectric Thin Film ,
- Surface Acoustic Wave Resonator ,
- Simulation Results ,
- Finite Element ,
- Frequency Domain ,
- Resonance Frequency ,
- Time-domain Analysis ,
- Interdigitated Electrodes ,
- Maximum Coupling ,
- Piezoelectric Film ,
- Eigenvalues ,
- Fundamental Frequency ,
- Series Resonance ,
- Piezoelectric Materials ,
- Finite Element Model Simulation ,
- Electric Voltage ,
- Zinc Oxide Thin Films ,
- Finite Element Model ,
- Finite Element Method ,
- Electric Vector ,
- Stiffness Matrix ,
- Resonator Design
- Author Keywords