1) crystal oscillator compensation
晶振补偿
1.
The algorithm of local clock crystal oscillator compensation and PI control,and the method of acquiring timestamp in MAC level are proposed.
为了满足这个同步精度,文章对IEEE1588精密时钟同步机制和算法进行了研究,分析了LXI仪器系统中影响同步的因素,提出了采用本地时钟晶振补偿和PI控制算法,在MAC层获取时间戳并进行完善的方法,提高了同步精度,满足了LXI A类和B类仪器对时钟同步的要求。
3) MCXO
微机补偿晶体振荡器
1.
We design a new small size of microcomputer compensated crystal oscillator(MCXO),which bases on AT-cut crystal and uses microcomputer as its core.
现代电子技术对电子器件的小型化和低功耗有着越来越高的要求,我们设计了一种以微处理器为核心的基于AT切晶体谐振器的小型微机补偿晶体振荡器(MCXO)。
4) bimorph crystal
双层晶体,振荡互补偿晶体;耦联晶片
5) vibration compensation
振动补偿
1.
Study on Vibration Compensation System for Geometry Parameters of OCS;
接触网几何参数振动补偿系统研究
2.
Real-time vibration compensation for active magnetic bearing systems based on LMS algorithm
基于LMS算法的磁悬浮轴承系统振动补偿
3.
Minimum displacement criterion and Minimum force criterion of vibration compensation of AMB are presented according to the influence of vibration on AMB.
根据不平衡振动对磁悬浮轴承系统的影响,引出了常用的两种主动磁悬浮轴承振动补偿的准则,即最小位移准则和最小作用力准则,并给出了两种相应的解决方案:影响系数法和LMS算法。
6) amplitude compensation
振幅补偿
1.
Sensitivity analysis of AVO inversion in a case of multi-wave amplitude compensation in viscoelastic medium;
黏弹性介质多波振幅补偿情形下AVO反演的敏感性分析
2.
Based on analysis of seismic section features and seismic acquisition and processing in deep series of strata in Biyang depression, new technologies such as pre-stack surface wave and multiple suppression, shot point re-fix,surface consistent amplitude compensation and bin expansion are applied to re- process the initial 3-D seismic data in this area.
通过对泌阳凹陷深层系地震剖面特征及该区采集、处理情况分析,提出采用叠前压制面波、多次波的新方法,充分应用炮点重新定位、地表一致性振幅补偿、面元扩展等新技术,对该区三维原始资料进行连片再处理后,提高了深层资料信噪比。
3.
The poststack processing technique described in this paper consists of Lp modulo adaptive predictive statistical deconvolution, high-frequency content compensation, amplitude compensation and colour content correction.
本文介绍的叠后高分辨率资料处理流程主要包括Lp模自适应预测统计反褶积、高频成分补偿、振幅补偿及有色成分校正。
补充资料:石英晶体(见晶体振荡器)
石英晶体(见晶体振荡器)
quartz crystal
shjy一门g{{门g士J石英晶体(quartz crystal)见晶体振荡器。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条