scholarly journals Joint Effect of Heterogeneous Intrinsic Noise Sources on Instability of MEMS Resonators

2016 ◽  
Vol 19 (2) ◽  
pp. 59
Author(s):  
Olga Jakšić ◽  
Ivana Jokić ◽  
Miloš Frantlović ◽  
Danijela Randjelović ◽  
Dragan Tanasković ◽  
...  

This article's focus is on the numerical estimation of the overall instability of microelectromechanical-system-based (MEMS) resonators, caused by intrinsic noise mechanisms that are different in nature (electrical, mechanical or chemical). Heterogeneous intrinsic noise sources in MEMS resonators that have been addressed here are Johnson–Nyquist noise, 1/f noise, noise caused by temperature fluctuations and adsorptiondesorption induced noise. Their models are given first (based on analytical modeling or based on empirical expressions with experimentally obtained parameters). Then it is shown how each one contributes to the phase noise, a unique figure of merit of resonators instability. Material dependent constants  and knee position in noise spectrum, needed for empirical formulae referring to 1/f noise, have been obtained experimentally, by measurements of noise of MEMS components produced in the Centre of Microelectronic Technologies of the Institute of Chemistry, Technology and Metallurgy in Belgrade. According to these measurements,  varies in the range from 0.776.10-4 to 2.26.10-4 and cut off frequency for 1/f noise varies from 147 Hz to 1 kHz. The determined values are then used for the modeling of micro-resonator phase noise with electrical origin and overall phase noise of a micro-resonator. Numerical example for calculation of overall phase noise is given for a micro-cantilever, produced by the same technology as measured components. The outlined noise analysis can be easily extended and applied to noise analysis of MEMS resonator of an arbitrary shape.

Author(s):  
Luca Avallone ◽  
Mario Mercandelli ◽  
Alessio Santiccioli ◽  
Michael Peter Kennedy ◽  
Salvatore Levantino ◽  
...  
Keyword(s):  

Author(s):  
Abhijit Banerjee ◽  
Larissa Aguiar Dantas de Britto ◽  
Gefeson Mendes Pacheco

Author(s):  
Baoxin Yuan ◽  
Herong Zeng ◽  
Wankui Yang ◽  
Songbao Zhang

The finite element method based on unstructured mesh has good geometry adaptability, it has been used to solve reactor physics problems, manual description of geometric modeling and meshing makes the current finite element code very complicated, it greatly restricts the application of this method in the numerical calculation of reactor physics. Using the CAD pre-processing software ICEM-CFD, three dimensional geometry is divided into tetrahedral or hexahedral meshes, two dimensional geometry is divided into triangular or quadrilateral meshes, the main code of neutron calculation for nuclear noise analysis based on finite element method is developed. The steady state parameters are calculated and tested through benchmark problem, the test results show that the code has the corresponding computing capabilities. Finally, the neutron noise spectrum is calculated for the 3D PWR benchmark problem published by IAEA, and the noise distribution under given frequency is given.


2002 ◽  
Vol 3 (4) ◽  
pp. 71-75 ◽  
Author(s):  
K.V. Puglia
Keyword(s):  

2013 ◽  
Vol 61 (1) ◽  
pp. 482-491 ◽  
Author(s):  
Elena Fernandez ◽  
Franco Ramirez ◽  
Almudena Suarez ◽  
Sergio Sancho

2014 ◽  
Vol 19 (4) ◽  
pp. 473-486 ◽  
Author(s):  
Ahmet Gokceoglu ◽  
Yaning Zou ◽  
Mikko Valkama ◽  
Paschalis C. Sofotasios

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