• 电容耦合电阻率法CCR一种新颖的物探方法利用电容地下供电利用电容来测量地表耦合电位

    Capacitivity -Coupled Resistivity (CCR) Method is a new geophysical exploration method, which uses capacitor to supply current to underground and measures coupled electric potential as well.

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  • 设计者使用各种方法使晶体管温度系数电阻达到耦合粘合它们二者为一体,到给它们共同散热器

    Designers use various methods of thermally coupling the transistor and the tempco, ranging from glueing the two together, to mounting them both on a common heat sink.

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  • 每行通过继电器触点漏泄电阻电容耦合每一列。

    Each row is also coupled to each column through the relay contact leakage resistance and capacitance.

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  • 测量中,电阻电容经常耦合在一起,两者互相影响,直接测量时存在困难

    But resistance and capacitance are often coupled together and interact with each other, which makes them difficult to be measured directly.

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  • 分析表明考虑次级线圈电阻耦合电容的容抗,次级线圈匝数倒数及其二次项表示电流输出型磁通门的灵敏度具有更高精度

    The analysis also shows that using reciprocal turns and its square to describe the sensitivity can be more precise, if the copper resistance and the impedance of the coupling capacitor are considered.

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  • 利用电容耦合不是开关逻辑网络进行逻辑求值,相对减小导通电阻绝热损失

    The ERCCL logic is not implemented through a switch logic network but through capacitance coupling, which reduces its turn-on resistance and adiabatic losses.

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  • 提出了纯金属电阻率的简化模型:一个统计模型,一个电子一声子耦合模型。

    Two simplified models, statistical model and electron-phonon coupling model, for the ideal metal electrical resistivity have been put forward.

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  • 对于电感耦合电路必须考虑电感直流电阻

    For inductively coupled circuits, you must also consider the winding resistance of the inductor.

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  • 利用驱动、自传感特性压电陶瓷粘贴外部结构表面结合动态阻抗概念提出种机电耦合在线电阻抗技术用于结构健康诊断

    Combined with impedance concept, a method for on line structure health monitoring based on self sensing piezoelectric patches, which are bonded on the surface of the structure, is presented.

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  • 模型同时考虑激光器调制器之间耦合这种由于隔离电阻不够大而导致的电耦合将导致激光器激射波长发生漂移,即产生啁啾

    The simulation is focused on the dependence of the frequency chirp of the integrated laser-modulator on the isolation resistance between laser and modulator.

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  • 论文分析了阻耦合情况下传统电阻电容测量方法提出测量方法用于阻容网络的参数解

    By analyzing traditional methods of resistance and capacitance measurement, soft sensing is applied to decouple resistance-capacitance network in this paper.

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  • 基于电子系统半经典模型分析电阻耦合单电子晶体管电学特性,得到电学性能背景电荷分布变化的特点。

    According to the semi classical model, by means of electrical characteristics analysis of R SET, it was proposed that the electrical performance of R SET was not affected by the background charge.

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  • 电阻应变对比实验表明单模熔锥耦合耦合不但对应变敏感而且变化单调性。

    The result compared to the resistance strain gauge used widely in structure indicates that not only the coupling ratio of the coupler is sensitive to strain, but also the function is monetary.

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  • 介绍了基于有限元法模拟电阻点焊形成过程中的轴对称电、热、力耦合场的模拟模型

    Based on FEM, an axis symmetric finite element electro-thermo-mechanical model in the formation of molten core of resistance spot welding is introduced.

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  • 以异质材料低碳钢与纯镍电阻点焊例建立了电阻点焊熔核形成过程电热耦合有限差分模型

    A three dimensional finite difference electric thermos model for resistance spot welding nugget process of dissimilar materials is introduced.

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  • 另一种类型终端电阻——AC耦合的终端电阻增加电容器串联在终端电阻上就消除它的DC负载效应

    Another type of termination, ac coupled termination, adds a small capacitor in series with the termination resistor to eliminate the DC loading effect.

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  • 耦合干扰源为零电源电阻其他情况下平行微带线电场耦合之串音比较

    Cross Talk between parallel Microstrip lines due to Electric Field coupling for different R-C values Compared with weak coupling and zero source resistance assumption in the culprit circuit.

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  • 发现通过激励电阻拾振电阻分布电容耦合的激励信号同频干扰的最终来源

    It is found that the exciting signal coupled through the distributed capacitor between the exciting resistor and the sensing resistor is the final source of CFD.

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  • 模型考虑了电、热、力的耦合以及材料参数温度变化,在电热耦合模型中计入接触电阻闪光烧损对产热过程的影响;

    In addition the material physical parameter variation with temperature was considered in the model. The contact resistance and flash melt were considered in the electric-heat coupling model;

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  • 模型考虑了电、热、力的耦合以及材料参数温度变化,在电热耦合模型中计入接触电阻闪光烧损对产热过程的影响;

    In addition the material physical parameter variation with temperature was considered in the model. The contact resistance and flash melt were considered in the electric-heat coupling model;

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