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1)  loop gain characteristic
环路增益特性
2)  loop gain characteristic,loop noise bandwdth
回路增益特性<电>
3)  loop-gain characteristic
回路增益特性
4)  open-loop gain characteristic
开环增益特性
5)  loop gain
环路增益
1.
A new desuperheating water valve has been designed accordingto the principle that the flow characteristic of the valve matching the loop gain of the control system should bea constant.
按照阀的工作流量特性匹配控制系统的环路增益为常数这个原则,设计新的减温水控制阀,使它的工作流量特性满足过热蒸汽汽温控制的需要,提高了过热汽蒸汽温控制质量,增加发电效率。
2.
By adopting a simple and easy, we get the calculation formula of common-emitter and common-base configuration loop gain of oscillator circuit of three-point capacitance, hence work out an improved design of quiescence collector current and feedback.
采用一种简便方法,得到了共基和共射组态电容三点式振荡电路环路增益的近似计算公式,并由此找出了静态集电极电流和反馈系数的优化设计方案。
3.
Traditional loop gain simulation method is based on two-port network models,which is complex to analysis and it is not suitable to get quantitative analysis of the loop gain fast.
传统的反馈环路增益仿真方法基于有源双端口网络,分析复杂,不利于快速得到环路的定量分析。
6)  gain characteristic
增益特性
1.
A new theoretical explanation for the gain characteristics of the tensile-strainedquantum well (QW) is advanced from the density-matrix theory taking into account the effects of subband-mixing on both the valance subband structures and the transition dipole moments for the first time.
在运用变形计算法计算了Ga1-xInxAs/GaInAsP/InP应变量子阱子能带结构的基础上,综合考虑了子能带耦合效应对价带子能带与跃迁矩阵元的作用及状态密度对增益线宽的影响,首次从理论上发现张应变量子阱中的TM模具有比压应变或无应变量子阱中的主模式TE模更为优异的增益特性。
2.
Novel formulas to analyze the gain characteristics of Er3+/Yb3+ co-doped waveguide amplifiers(EYCDWA)are derived from the rate equations and the light propagation equations under the uniform dopant and steady-state conditions,neglecting the amplified spontaneous emission and introducing initial energy transfer efficiency.
利用这些公式分析了泵浦光功率、信号光功率、掺杂浓度、波导长度对放大器增益特性的影响,并与单掺铒波导放大器(EDWA)进行了比较,得到了一些具有实用价值的模拟结果。
3.
Furthermore,the gain characteristic of EDF is measured and fitted with a formula derived from the qualitative explanation.
通过理论衍生的公式对增益特性曲线进行了拟合,并结合增益特性曲线对光双稳态的产生给出了定量的解释。
补充资料:介电损耗特性
分子式:
CAS号:

性质:电介质的介电损耗因数和介电常数受到频率、温度、电压及湿度等种种外界条件影响而变化的性质。通过给出高分子材料的介电损耗特性,可为使用者提供更加全面的性能信息。从而为合理使用材料提供依据。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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