激励电压

  • 网络Excitation;EXCITATION VOLTAGE;VDC
激励电压激励电压
  1. 随着激励电压增加,PZT传感器所提供驱动能量逐渐增大。

    The driving energy of PZT sensor increases with excitation voltage .

  2. PTAT电压是从带隙基准电压源中获得,并与基准电压相加得到了所需温度特性的激励电压。

    The PTAT voltage is obtained from the bandgap reference voltage source circuit , which is summed with the reference voltage can get the excitation voltage of the desired temperature characteristics .

  3. 低激励电压微波MEMS开关的理论分析和仿真

    Theoretical Analysis and Simulation on a Low Voltage Actuated Microwave MEMS Switch

  4. 随着激励电压峰一峰值的增加,NO转化为NO2的转化率先上升后下降;

    With the increase of peak-to-peak applied voltage , the NO conversion rate first rises and then falls .

  5. 由于利用了膜结构以及扭转臂和杠杆的原理,这种独特的MEMS微波开关激励电压比较低、隔离度较高、插入损耗比较低、稳定性好。

    As utilizing principle of torsion spring and leverage , the unique MEMS microwave switch has low actuation voltage , high isolation , low insertion loss and good stability .

  6. 供电电压Vcc及流体压力P之间的关系,并指出,不仅桥电压而且总激励电压都对零点和灵敏度有影响。

    It is pointed out that not only the bridge voltage but also the supply voltage have influence on null point and sensitivity for pressure sensors .

  7. 结果表明:DBD的辐射特性受激励电压、激励频率、DBD结构等多种因素影响。

    As a result , the applied voltage , applied frequency and the configuration of DBD can effect on its radicalization .

  8. 在大气压、氮气条件下,对DBD相关放电参量随激励电压和激励频率的变化情况以及结构因素对DBD放电参量的影响作了实验研究。

    At the flow of N_2 , change of discharge parameters of DBD at atmospheric pressure with applied voltage and applied frequency changing and influence of configuration factor are investigated experimentally .

  9. 针对管材涡流探伤中存在的一些问题,研制出可匹配低激励电压ET-204型涡流仪的三点式探头,并采用阻抗平面显示技术选择最佳信噪比相位。

    To the problems in the tube eddy testing , some improved ways are given by using a three-point probe matching the eddy instrument model ET-204 with low field voltage , and selecting a phase having the optimum singnal-to-noise ratio with impedance plane technique .

  10. 试验获得的激励电压、频率对诱导气流速度影响的定量关系有助于进一步揭示辉光放电等离子体EHD的机理,也为等离子体在流动控制方面的应用奠定了基础。

    The results of the experiments can help to discover the mechanism of glow discharge plasma EHD , and to establish the foundation for the application of plasma flowing control .

  11. 振子共振时其动摩擦系数与静摩擦系数之比降为~0.1。箝位振子的激励电压仅为±80V(峰峰值)。

    When the vibrator is in the resonance state , the ratio of moving friction coeff cient to static one will decrease to-0.1 . The driving voltage of position-gripped vibrator is only ± 80V ( Vp-p ) .

  12. 射频气体放电激励电压电流及相位传感器的研制

    The Probe Measuring Voltage , Current and the Phase Angle of RF Discharges

  13. 容栅传感器激励电压分析

    Analysis of Exciting Voltage for the Capacitive Gate Transducer

  14. 激励电压为2.4kV;

    The excitation voltage is 2 . 4kV ;

  15. 讨论了系统在正弦激励电压信号下的响应。

    In addition , dynamic responses of the system in sine voltage excitation were discussed .

  16. 最后分析了在不同激励电压信号下系统的响应。

    In addition , dynamic responses of the system to different voltage signals are analyzed .

  17. 能量密度随激励电压的增加而线性增加,随频率的增大而增大。

    Power density increases linearly with applied voltage increasing and increases with applied frequency increasing .

  18. 回形引伸计的激励电压由商售的通用电源装置(信号调制器)来提供。

    Clip-gage excitation was supplied by a commercially available power supply ( signal conditioner ) .

  19. 谐振时,激励电压越高,喷射雾化效果越好。利用可译性提高可译度&读解《可译性与可译度》

    At the resonant state , the atomization degree increase gradually with increasing the exciting voltage .

  20. 其激励电压和输出也通过选择开关接到数字电压表上。

    And the excitation voltage and output were also fed through the selector switch to the digital voltmeter .

  21. 当电机的激励电压满足所谓充分激励的条件时,还可以同时作为参数辨识器;

    The estimator can be used for parameter identifier on condition that input voltage is a persistent excitation .

  22. 增大激励电压并且使作用于气缸上的超声振动频率处于谐振频率附近均可改善气缸的静摩擦特性。

    Increasing the exciting voltage and making the cylinder work at resonant frequency can both improve the static friction characteristics .

  23. 由于传感器的输入电阻较小,在激励电压之间增加了一个电压缓冲器。

    As the input resistance of the sensor is small , a voltage buffer following the excitation voltage is added .

  24. 通过分析放电结构以及激励电压对放电通道中粒子激发电离程度的影响说明了上述现象产生的原因。

    The reason is stated by analyzing the effects of discharge structure and driving voltage on particle stimulate ionization degree .

  25. 用激光外差测振装置测量了扬声器纸盆振动幅度与激励电压及激励频牢之间的关系。

    The relation between vibration amplitude and exciting voltage , also exciting frequencyof the loudspeaker are measured by laser heterodyne vibrometer .

  26. 实验表明,压电作动器上的激励电压与其输出位移之间存在很大的非线性迟滞回环。

    Experimental data from tests showed that there is significant hysteresis between the voltage applied to the actuator and the actuator output .

  27. 静态时,压电双晶片激励电压增加,则腔体中的气体速度增加。

    Under static state , the velocity of airflow in cavity is increased with the increase of the driven voltage of pump .

  28. 输入角速度相同时,压电双晶片的激励电压增加,传感器的两热电阻丝上的速度差也相应增加,这会导致惠斯登电桥上输出信号增加。

    The difference of the velocities on the two hot wires is increased with the driven voltage at the same inlet angle velocity .

  29. 在介质阻挡放电条件下,对甲烷、水汽和氧气的三元反应进行了研究,考察了原料气组成、激励电压、放电频率等因素对反应的影响。

    The effects of the composition of feed , discharge voltage and discharge frequency on methane / steam / oxygen reactions were studied .

  30. 对于具有对称性的线天线或其阵列,不论激励电压如何,均可采用广义奇偶模展开。

    In case of symmetrical geometry of wire antennas or arrays with any voltage excitation , generalized even-odd mode expansion method can be used .