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constant voltage相关的网络例句

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与 constant voltage 相关的网络例句 [注:此内容来源于网络,仅供参考]

This can also be divided into two categories: one is to discuss the influence of power factor by way of dividing power circuit into capacitive and emotional under the circumstance of unchangeable voltage and frequency of output power, and the other is discussed the influence from voltage and frequency of power to power factor with the situation of constant component parameters.

具体又分为两种情况:一种是在电源的输出电压和频率都不变的条件下,把电路分为容性和感性,讨论了元件参数对功率因数的影响,另一种是讨论了在元件参数不变的条件下,电源的频率和电压对功率因数的影响。

Firstly, according to the effect of the integration time constant of three-phase PFC controlled by one-cycle control, the single and triple integrator realization are compared, and how to determine the value of the time constant is investigated theoretically from the view of switch voltage stress and system stability.

针对三相PFC中积分时间常数的影响,分别讨论了三积分器实现方案与单积分器实现方案中积分时间常数变化对功率因数校正效果的影响,并从开关电压应力和系统稳定性的角度讨论了积分时间常数的确定原则。

Transmit Softclipping Time Constant Receiving Input Sidetone Network Input Line Current Regulation Stop Value Microphone Input Microphone Input Transmit Gain Adjustment Transmit and Receive Part Power Supply Ground Line Current Source Power Supply Voltage Stabilizer Positive Line Unregulated Microcontroller Power Supply Receive Gain Adjustment Negative Earphone Output Positive Earphone Output Ringer Buzzer Output Ring Power Supply Reset Power On Ring Indicator Oscillator Input Mask, Ring Melody Input Data Input Data Clock Input Microcontroller Stabilized Power Supply Reference Voltage (VCC/2) DTMF Filter

1第1页,本页显示记录1-8,共8条记录分1页显示发送Softclipping时间常数接收输入侧音网络输入线电流调节停止价值麦克风输入麦克风输入发射增益调整发送和接收部分电源地线电流源电源稳压器的正电源线无管制的单片机接收增益调整负耳机输出耳机输出正林格蜂鸣器输出电源供应环环指标振荡器输入掩码电复位,环旋律输入数据输入数据时钟输入单片机的稳定电源参考电压(Vcc / 2)双音多频滤波器

It includes high power high voltage constant-current-charging system, capacitors bank, discharge control system, power supply of preignition for Xe-flashlamps, general control and diagnostic system. The power conditioning system drives flashlamps that pump the SSHCL. Flashlamps are driven by high voltage Silicon Controlled Rectifiers switched, resonant charged, discharge pulse forming network. The system uses microchip and digital circle which is based on CAN-bus for control and diagnostics. Energy diagnosis and thermal management are controlled by computers.

其中大功率高压恒流充电装置采用了L-C串联谐振电路,充电功率大,效率较高;储能装置采用了多节脉冲成形网络,可产生波形良好的强电流放电脉冲;放电控制装置采用高压大功率晶闸管,开关速度快,工作稳定;预燃与触发装置采用了开关电源电路,效率高、功耗小;总控与测量装置采用基于CAN总线的数字电路和单片机技术,控制冷却系统在激光器出光时对脉冲氙灯进行水冷,并对全系统进行控制和状态检测,同时具有过压、过流、过热等保护功能。

Because the formula of output voltage is the same as the one using other methods,the pulse width can be ascertained by choosing time constant based on the relation between voltage and current,and the proportional counter tube can be applied to different count ratio.

所得的输出电压的表达式与应用其他方法所得出的结果相同,因此可根据输出电压的波形与电路时间常数的关系,选择时间常数以确定输出脉冲宽度,使正比计数管适用于不同的计数率。

The technique made full use of the characteristic of PR controller which can realize zero steady-state error in AC input signal in stationary frame. In the method, the active and reactive current component in the vector control strategy were transformed in the stationary frame to achieve the objective of keeping the DC-link voltage constant, adjusting the power factor and decoupling the active and reactive power. Compared with conventional double close-loop proportional integral controller, the PR technique is better in harmonic compensation without the complex rotating frame transformation and the couple or feedback voltage which is easily influenced by temperature and circuit parameters. The control algorithm is easy to be realized while the robustness and power quality is improved.

该方法充分利用了PR控制器能够在静止坐标系下对交流输入信号无静差控制的优势,将矢量控制策略下的有功电流和无功电流分量转换到静止坐标系下进行调节,实现网侧变换器维持直流电压稳定和调节功率因数的控制任务和双馈电机有功、无功功率的解耦控制,与传统的双闭环PI控制相比,该策略无需繁琐的坐标旋转变换,不存在受温度及电路参数影响的耦合项和前馈补偿项,且易于实现对系统低次谐波电流的补偿,减小了控制算法实现难度,提高了控制系统的鲁棒性和电网电能质量。

Often divided into two types:(1) sine wave oscillator, according to the network oscillation frequency of the different loop selected further divided into RC sinusoidal oscillator, LC sinusoidal oscillators, quartz crystal oscillators, voltage-controlled oscillator, voltage-controlled crystal oscillator and other forms;(2) non-sinusoidal oscillation device, also known as relaxation oscillator, is the use of capacitor charging and discharging and active device (transistor, FET, single-junction transistor, etc.) to generate the pulse-off square wave, rectangular wave, triangle wave, sawtooth wave, or these basic waveforms synthetic waveform and its frequency by the LC time constant charge and discharge circuits to decide.

常分两大类型:(1)正弦波振荡器,根据振荡环路中选频网络的不同,又分为RC正弦波振荡器、LC正弦波振荡器、石英晶体振荡器、压控振荡器、压控石英晶体振荡器等多种形式;(2)非正弦波振荡器,又称张弛振荡器,是利用电容充放电及有源器件(晶体管、场效应管、单结晶体管等)的通断来产生脉冲方波、矩形波、三角波、锯齿波或这些基本波形的合成波形,其工作频率由LC充放电电路的时间常数来决定。

It including the pitch point electric current equation andthe return route voltage equation two parts, former pointed out that,regarding any pitch point (3 or 3 above legs points of intersection),flows in and flows out the pitch point various electric currents algebra and is zero, this is the constant condition request, latter pointed out, regarding any closed path, each part of loss of voltage algebra and is zero, this is the electrostatic field ring circuit theorem result, two constituted the complete system of equations.

它包括沥青点电流方程强大的回路电压方程由两部分组成,前者指出,对于任何节点( 3层或3条以上的腿分的交汇点),流入和流出草地点不同电流代数和是为零,这是恒定的条件要求,后者指出,对于任何封闭道路,每部分的损失电压代数和为零,这是静电场的环形电路定理的结果,构成了两个完整的系统方程式。

Constant power output characteristics can avoid prodigality caused by super-brightness when voltage of high-voltage sodium lamp exceeds 220V.

5, 恒功率输出特性避免高压钠灯在高于220V电压会产生超亮度浪费。

When the power system load in a small disturbance, the system itself to maintain the stability of the power transmission capacity, the use of automatic excitation regulator device may reduce the reactance of the generator, and then further to maintain the transformer high-voltage bus voltage constant, so compensation not only its own reactor, but also compensation for the step-up transformer reactance, thus greatly improving the power limits of generators, which greatly increased the static stability of power system.

当电力系统的负载发生微小的扰动时,系统本身保持稳定送电的能力,使用自动励磁调节装置,则可减小发电机的电抗,再进一步维持变压器高压母线的电压恒定,这样不仅完全补偿了自身的电抗,而且还补偿了升压变压器的电抗,这样就大大提高了发电机的极限功率,即大大地提高了电力系统的静态稳定。

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