在压电材料中测量电声异调
Tomasz Karpisz1,2, Robert L Lirette1,2, Aaron M Hagerstrom1
1National Institute of Standards and Technology, Boulder, CO USA.
概括
我们开发了一种新的微波干扰仪,用于测量压电材料中的电声信号混合. 这种技术的特征是非线性属性对于下一代电子设备至关重要.
科学领域:
- * 材料物理学的材料物理.
- * 电气工程 电气工程
- * 声学 声学 声学 声学
背景情况:
- * 非线性信号混合 (异调) 对于电活性设备至关重要.
- *电声异调使得使用压电材料的被动元件能够被动控制.
- * 现有有限的技术来表征材料特性,使电声异构成为可能.
研究的目的:
- * 展示了一种新的微波干扰仪,用于测量电信号和声信号之间的二级非线性混合.
- * 用于描述在压电材料中的电声异质体信号.
- * 调查基本信号频率和功率对混合产品的影响.
主要方法:
- * 使用了使用电磁和声波的微波干扰仪进行概念验证.
- * 通过在压电材料中的信号混合生成的测量总和差频率.
- *分析了异质信号的性质,以确认其电声起源.
主要成果:
- *成功检测到电磁频谱中的和和差频率,表明信号混合.
- * 证明混合产品强度对输入信号的频率和功率的依赖.
- * 证实了测量的异质信号的电声性质.
结论:
- *开发的微波干扰仪有效地测量了压电材料中的非线性电声特性.
- *对这些非线性特性进行表征对于推进压电材料模型至关重要.
- * 这项工作有助于开发下一代压电器件.
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