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1)  micro gyroscope
微陀螺
1.
Digital amplitude demodulation for micro gyroscope with levitated rotor based on DSP;
基于DSP的悬浮转子微陀螺数字幅度解调
2.
Design of capacitance structure of micro gyroscope with electromagnetically levitated rotor;
磁悬浮转子微陀螺电容结构设计
3.
This detection circuit could direct output digital signal,has a inherent self-test feature and could prevent the latch up of the micro gyroscope.
接口电路是悬浮转子微陀螺研制中的关键技术之一。
2)  micromachined gyroscope
微陀螺
1.
Design of drive circuit for rotation of micromachined gyroscope with magnetic-suspension rotor;
磁悬浮转子微陀螺旋转驱动电路设计
2.
MGELR is hopeful to obtain micromachined gyroscope with high precision.
电磁悬浮转子微陀螺(MGELR)是一种新型的角速率传感器,它和传统机械陀螺具有相同的工作机理。
3.
The micromachined gyroscope with an electromagnetic levitated rotor (MGELR) was modeled and analyzed using finite element, and the influence of loop number, depth and inner diameter of levitation coil on levitating force was obtained.
在磁悬浮转子微陀螺(MGELR)中,悬浮线圈是定子线圈的重要组成部分,它产生的电磁力将微转子浮起。
3)  micro-gyroscope
微陀螺
1.
Digital Image Correlation and High-speed Imaging Methods for Dynamic Micro-gyroscope Characterization Measurement;
基于高速图像采集与时间序列图像相关的微陀螺动力学特性测试
2.
Magnetic suspension system of the design could avoid friction problems caused by mechanical bearing and localization that are key issues in other kind of micro-gyroscopes,so as to achieve high precision as ordinary gyroscopes.
微陀螺是微小卫星、微飞行器等装备中不可缺少的惯性器件 ,磁悬浮转子陀螺能克服机械支承和定位的摩擦 ,使之可以达到普通陀螺的精度要求。
3.
Along with the development of the modern physics, micro-electronics, computer and inertial technology, the micro-mechanical micro-gyroscope with its unique characteristics has become a development trend for inertial sensor and it possesses a good application prospect .
但是微陀螺传统的检测方式在一定程度上局限了微陀螺小型化和灵敏高等要求,因此将新理论与新材料应用于微机械陀螺就显得非常迫切了。
4)  Microgyroscope
微陀螺
1.
A Decoupled Microgyroscope with Electrostatic Force Feedback;
解耦型静电力闭环微陀螺
2.
This paper chiefly describes the structure, operational principle of several typical resonant acceleration microsensors and microgyroscopes, and analyzes their application features.
对几种典型的谐振式加速度微传感器和微陀螺的结构、工作原理等方面进行了概述,分析了各自的应用特点。
3.
The relation between the static force and the resonance frequency is studied for the capacitive microgyroscopes,and then a rapid convergent algorithm is presented for the tuning of the capacitive microgyroscopes based on this relation.
针对电容式微陀螺谐振结构,研究了静电力对谐振频率的影响规律,提出了一种快速收敛的静电力调频算法,建立了微陀螺调频实验系统,该系统采用扫频方法测量谐振频率,利用计算机控制调频收敛过程,并对微陀螺进行了调频实验,调频过程用时少于5分钟,实验结果表明该调频算法具有较快的收敛速度。
5)  microgyro
微陀螺
1.
With the excellent features of small volume, low weight ,low price, long life-span and easiness for volume-production, microgyros based on MEMS have a wide application prospect.
基于MEMS技术的微陀螺(microgyro)具有体积小、重量轻、价格低、寿命长和易于批量生产等诸多优点,具有广阔的应用前景。
6)  micromachined gyro
微陀螺
1.
In this paper,the basic structure and operation of quartz micromachined gyro are discussed.
该文介绍了石英微陀螺的基本结构和工作原理,叙述了石英晶体化学各向异性刻蚀的工作机理和加工方法。
补充资料:寄微之 时微之为虢州长史。
【诗文】:
高天默默物茫茫,各有来由致损伤。
鹦为能言长剪翅,龟缘难死久搘床。
莫嫌冷落抛闲地,犹胜炎蒸卧瘴乡。
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