利用三次泛音振动分析陶瓷谐振器的杂散振动

Jeong-ho Cho, Yong-hyeon Lee, M. Chun, Byung-ik Kim
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摘要

近年来已商品化的陶瓷谐振器中使用的各种振动模式,主要用于产生大于10mhz的频率,由两层复合产生的第三泛音振动(TE3模式振动)和第二次振动(TE2模式振动)。在TE2模态振动的情况下,已知在TE3模态振动中不存在产生伪响应的问题。本研究利用FEMLAB程序对pbtio3基陶瓷的TE3模态振动和TE2模态振动进行了仿真,并对仿真结果进行了比较,仿真结果表明,TE2模态产生的振动比TE3模态产生的振动更局部。我们试图通过分析电极重叠长度(L)与谐振器厚度(T)之比的影响来研究TE3模式振动中杂散响应的来源。研究发现,随着电极重叠长度的增加,TE3振动的抗谐振频率和杂散振动的谐振频率更接近于分裂阻抗形状,而在较短的重叠长度下,TE3振动的谐振阻抗变得不稳定。在制造的谐振器中,当L/T比为2.0 ~3.0时,TE3模式受杂散振动的影响较小。
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The spurious vibration analysis of ceramic resonator using 3rd overtone vibration
Various vibration modes used in ceramic resonators which have been commercialized recently, and they have been mainly used in generating frequencies greater than 10 MHz with the 3rd overtone vibration (TE3 mode vibration) and 2nd vibration (TE2 mode vibration) generated by laminating two layers. In the case of the TE2 mode vibration, it is known there is no problem of a spurious response generated in the TE3 mode vibration. In this study, the TE3 mode vibration and TE2 mode vibration of PbTiO3-based ceramics were simulated by the FEMLAB program and compared the results, which simulation revealed that the TE2 mode generated vibration in a more local area than TE3 mode. We tried to investigate the origin of the spurious response in TE3 mode vibration by analyzing the influences of the ratio of electrode overlap length (L) per thickness (T) of resonators. It was found that the anti-resonant frequency of a TE3 vibration and the resonant frequency of a spurious vibration became closer to split impedance shape with increasing the electrode overlap length, and the resonant impedance of TE3 vibration became unstable in short overlap length. It was expected that the TE3 mode would be less influenced by spurious vibrations in a L/T ratio of 2.0 ~3.0 in a manufactured resonator.
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