倍增因子

  • 网络multiplication factor
倍增因子倍增因子
  1. 本文论述了暗电流I和光倍增因子Mp与温度T的关系,并测量了InGaAs/InGaAsP/InPSAGM-APD的暗电流&温度变化率与Mp-T特性。

    In this paper , the dependences of the dark current and optical multiplication factor on temperature for InGaAs / InGaAsP / InP SAGM-APD have been investigated and measured .

  2. 对不同的人群倍增因子计算方法进行了比较并提出改进建议。

    Different methods for computing crowd multiplication factor are compared and improvement advice is presented .

  3. 分布式光纤温度传感器APD最佳倍增因子的分析

    Analysis of the optimum gain of APD in distributed fiber temperature sensors

  4. 本文根据PN结雪崩噪声理论、有限倍增因子和合适的二极营模式提出了微波固体噪声二极管噪声功率谱密度的表示式,并对其谱特性进行分析。

    An expression is presented to determine the spectral noise power density of microwave solid state noise diodes based on the theory of PN junction avalanche multiplication , the limited multiplication and the adaptable diode model .

  5. 环形窄缝通道内干涸后摩擦倍增因子的试验研究

    Experimental Study on Two-Phase Fractional Multiplier of Post Dry-Out Mist Flow in Vertical Narrow Annuli

  6. 这也是为什么,我最后使用一个倍增因子,而不是用一个加法因子。

    And that 's why , I ended up using a multiplicative factor , rather than an additive factor .

  7. 该模型利用梯度和倍增因子相结合的优化算法实现特征系数的学习;

    This NNSC model utilizes the optimized method that combines the gradient and multiplicative algorithm to learn the feature coefficients , and only the gradient algorithm to learn feature vectors .

  8. 对于包括裂变反应在内的中子输运源项反演问题,研究关于源项有效倍增因子的k-特征值问题的求解。

    Considering the inversion of the source term for neutron transport in such as fission reaction , the numerical solution of the effective multiplication factor related to k-eigenvalue problem is investigated .

  9. 本文分析了雪崩光电管内倍增因子与偏压的关系,介绍了偏压的虚警控制原理,所述电路适用于温度和背景光强大幅度变化的连续探测的光电系统。

    This paper analyzes the relationship between the multiplication factor and the bias of avalanche photodiodes , and presents the principle of false alarm control of the bias . The control circuit is suitable for continuous detection photoelectric systems with large temperature and background light intensity variation .

  10. 因此,电荷载流子倍增寄存器工作频率越高,其电荷倍增因子越小。

    It means that the higher the frequency of CCM is , the smaller the charge multiplication factor is .