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Characteristics of the piezoelectric vibratory gyrosensor constructed using a trident tuning-fork resonator

机译:使用三叉形音叉谐振器构造的压电振动陀螺传感器的特性

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The vibratory gyrosensor is an instrument that detects angular velocity by the measurement of the Coriolis force. The authors have developed a compact and reliable vibratory gyrosensor using a trident tuning-fork resonator, which has high performance characteristics. The construction of an ideal vibratory gyrosensor requires solutions to problems associated with external shock and vibrations as well as energy loss through the mounting. Therefore, we developed a new vibratory gyrosensor that uses a trident tuning-fork. In developing the vibratory gyrosensor, the dimensional conditions necessary for a stable mounting of the trident tuning-fork were clarified, and the temperature drift characteristics of the gyrosensor more minimized. The present paper describes in detail the characteristics of proposed gyrosensor for practical use. The proposed vibratory gyrosensor using a trident tuning-fork resonator achieved high-performance and was found to be more practical than the beam type or ordinary tuning-fork type gyrosensors.
机译:振动型陀螺仪是一种通过测量科里奥利力来检测角速度的仪器。作者已经开发出使用三叉戟音叉谐振器的紧凑且可靠的振动陀螺仪,该陀螺仪具有高性能特性。理想的振动型陀螺传感器的结构需要解决与外部冲击和振动以及通过安装的能量损失相关的问题。因此,我们开发了一种使用三叉戟音叉的新型振动陀螺传感器。在开发振动型陀螺传感器时,明确了稳定安装三叉戟音叉所需的尺寸条件,并且使陀螺传感器的温度漂移特性最小化。本文详细介绍了实际应用中所提出的陀螺传感器的特性。提出的使用三叉戟音叉型谐振器的振动型陀螺仪实现了高性能,并且被发现比梁型或普通音叉型陀螺仪更实用。

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