Abstract

Piezoelectric quartz crystal plates are essential for the manufacturing of quartz crystal resonators of various types with wide applications in communications and sensor technology. The orientation of crystal plates will determine the material properties, thus the vibration features, functioning modes, frequency, and performance that are related to applications. For this reason, analysis of vibrations of crystal plates with the consideration of thermal properties of plates and orientations will be of great interests for resonator design and material selection. Through rotations, we can calculate the physical properties as functions of angles and bias fields, thus enabling the calculation of resonator properties for the identification of optimal cuts. Such a procedure can also be applied to similar crystals for a detailed examination of possible orientations to maximize the potential of materials in acoustic wave resonators.

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