微分电路

  • 网络differentiator;differential circuit;differentiating circuit;derivation circuit
微分电路微分电路
  1. RC积分微分电路实验的误差分析方法

    Error Analysis in RC Integral and Differential Circuit Experiment

  2. 以RC微分电路为定时电路的设计已用PSPICE程序进行计算机验证。

    These twodesigns using RC differential circuit as the timer unit are verified by PSPICE simulation .

  3. 硬件部分设计采用胸部双电极单导联输入心电信号,放大后再经微分电路和全波整流电路的处理,最后通过可选择的电压窗口比较器输出最终的R波信号检测结果。

    The hardware design adopts electrocardiosignal amplifying with transthoracic lead , then differentiator and full wave rectification , at last the R wave is detected by the optional voltage comparator .

  4. 本文提出用电阻与电容组成的RC微分电路来测量皮结和梭子的加速度的方法。

    This paper deals with a simple method for measuring the acceleration of the picker by means of an RC differential circuit composed of resistor and capacitor .

  5. 本文从系统模型的时域分析出发,对一阶的RC微分电路和积分电路的激励及响应进行了分析。

    This article embarks from the system model time domain analysis , has analyzes encouragement and response of one steps of the RC differential circuit and circuit of total mark .

  6. 本研究应用RC微分电路对微量注射进样火焰原子吸收分光光度法所产生的吸收信号进行了处理,提高了信号的选择性和方法的灵敏度。

    Using RC differential electric circuit , this research deals with the signal produced by Microsample injection Flame AAS . The selectivity and the sensitivity of the method were improved .

  7. 系统VCO模块采用微分电路设计技术,可将电源噪音对时钟信号输出抖动的影响降至最低。

    The VCO module makes use of differential coefficient circuit design technology to lower the effect of power resource on the clock signal input shake .

  8. 瞬时缩展微分电路实现小波函数的方法

    Implementation of Wavelet Function Based on Instantaneous Companding Differential Circuits

  9. 有源微分电路设计

    Optimization Design of Active Differentiator Communication Circuits

  10. 涡轮分子泵叶片的微分电路模型以及组合叶轮压缩比的计算

    The models of differential circuits for the blades of turbomolecular pump and the calculation of its compression ratio

  11. 给出了一种结构简单、性能优良的微分电路,并提出了用该电路实现的电流模式跳耦结构高通滤波器。

    A current mode high pass filter based on a differential circuit having simple and leap frog structure with excellent performance is proposed .

  12. 采用高质量的信号源,干扰信号基本上可以消除,是一种有效提高微分电路信号质量的方法。

    High-grade signal source is used in the experiment , the disturbing signal basically may be eliminated and the differential signal quality can be effectively improved .

  13. 对彩电教科书中有关二次微分电路的分析提出了不同见解。并作了深入详细的分析。

    Different from that in current textbooks on color-TV , a view about the analysis on twice differential circuit is brought forward and reliable analysis is given in detail .

  14. 该电路由方波信号发生器、微分电路、全波整流电路和滤波电路组成。

    The carrier wave is rectangular wave , the circuit mainly is composed of rectangular wave occurrence circuit , differential circuit , the whole wave commutate circuit and filter circult .

  15. 该脉冲发生器利用逻辑门的竞争冒险作用产生类高斯脉冲的窄脉冲,然后通过一阶微分电路来获得一阶高斯脉冲。

    The pulse generator produces class gaussian narrow pulse using the competition adventure role of logic gate , and then gets a first order gaussian pulse through the first order differential circuit .

  16. 本文以两级最简单的微分电路为例,指出了微机模拟可避免示波器探针对电路参数的影响。

    In this paper the author has cited a simple example of a two-stage differentiator , and pointed out that the simulation by personal computer can avoid the effect of oscilloscope probe on circuit parameters .

  17. 通过对MEMS电容式加速度计的差分电容检测电路优缺点的比较,结合直流充放电检测方法和交流测量方法的优点,设计了微分检测电路,用方波作为载波。

    In order to detect the MEMS capacitive accelerometer signal , through compared of the advantage and the disadvantage of the difference capacity detection circuit , combined the direct current charge and discharge and alternating current measurement ways , a differential detection circuit is designed .

  18. 视频双微分补偿电路的仿真研究

    Simulation Research of Video Twice Differential Compensating Circuit

  19. 该超声波发射电路包括门控电路(RS触发器)及微分/整形电路,接收电路则由接收、放大及信号筛选、整形电路组成。

    This ultrasonic measurement system include transmitting part which contains the gating and differential circuits , and receiving part which contains the signal magnify and filtration circuits .

  20. 根据RC微分和积分电路的基本原理,通过实例,分析和设计一个RC积分和微分网络,并推出一种输出电压大于输入电压有极限的多级耦合结构。

    According to basic RC-differentiating and RC-integrating circuit and with practical examples , how to design an RC-integrating or differentiating network is shown step by step , that an output voltage greater than input voltage is developed .

  21. 含微分负电感电路的分叉与混沌

    Bifurcation and Chaos in a Circuit Containing a Nonlinear Conductor

  22. 微分方程的电路模型与图形解

    Circuit Model and Graphic Solution of Differential Equation

  23. 本文应用微分弛张振荡电路,对微小电感线圈的信号检测技术开展了研究。

    A novel different coefficient circuit is used in the study on signal detection of small inductance coil .

  24. 文中还介绍了单极性SPWM发生器、双微分门极驱动电路和无损耗缓冲吸收电路的工作原理。

    The principles of uni-polar SPWM generator , double-differential-gate-drive circuit and loss-less snubber are presented .

  25. 在电磁压制放电电路的模拟分析中,基于电磁学理论建立了放电过程的微分方程,对电路作了定性的分析;

    In the analysis of the circuit , the differential equation based on the theory of electromagnetism had been established ;

  26. 微分信号是由微分电路产生的一种尖峰脉冲信号,原来的微分电路很难获得理想的微分信号。

    The differential signal is the spike pulse signal that is produced by differential circuit . Original differential circuit is very difficult to obtain the ideal differential signal .