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regulator circuit
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  调节器电路
     A Multifunctional Automobile Voltage Regulator Circuit and Its Chip Design
     多功能汽车电压调节器电路及其芯片设计
短句来源
     A new type of voltage regulator circuit is proposed.
     给出了一种新型的汽车电压调节器电路结构.
短句来源
     According to the characteristic of permanent magnet alternator for auto,the voltage regulator circuit and the charge indication circuit are designed And a new voltage regulator circuit with limit current function is put forward by use of a current mirror
     根据车用永磁交流发电机的特性 ,设计了与之适配的电压调节器及充电指示电路 ,并提出了利用镜像电流源而具有限流功能的新型电压调节器电路
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  “regulator circuit”译为未确定词的双语例句
     The circuits of the testing bed include all the sensors select, the sensors regulator circuit design, the filter circuit design, the digital display watch design, the A/D card design, the relay module design.
     试验台电路部分的设计包括传感器的选择及其调整电路的设计、滤波电路的设计、数字显示表的设计、A/D卡的设计和继电器模块的设计。
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     Design of Power Regulator Circuit of Proportioning System of Magnesium
     金属镁配料系统调功器电路的设计
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     Aim to the high power consumption and low ripple of TMS320DM642, this paper chooses LT1767 to design the regulator circuit. It analyses some important problem during design, compares some popular regulator circuit scheme, also analyses the power parameters requirement of TMS320DM642.
     本文采用功耗大、纹波系数要求高的LT1767EMS8开关电源设计了稳压电路,分析了设计时的一些重要问题,并比较了几种稳压电路方案的优缺点,同时分析了TMS320DM642对电源的指标要求。
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     Firstly the sub-blocks including bias circuit, bandgap reference , and voltage regulator circuit are introduced, and then the temperature coefficient adjustment of voltage generated by bandgap reference is analyzed.
     介绍了该电路的各子模块电路,包括偏置电路、带隙基准电路和输出电压调节电路,详细分析了带隙基准电路所产生的基准电压的温度系数及其调节原理。
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     Using the voltage regulator circuit of an airplane, we studied the testability design method of electronic products based on Pspice simulation software, and gave the new idea for researching and developing test equipments.
     结合某飞机的调压电路给出了利用Pspice仿真软件研究电子产品测试性设计的方法,为测试设备的研制和开发提供一些新的思路。
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  相似匹配句对
     Transistor Regulator with Protective Circuit
     带安全防护电路的晶体管调节器
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     Problems Concerning Commutating Regulator and Its Circuit
     整流调节器和相关的电路问题分析
短句来源
     ITAE Regulator
     ITAE 调节器
短句来源
     Regulation of the Regulator
     对规制者的规制——兼谈行政规制的效益原则
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     FPGA circuit
     FPGA电路设计
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  regulator circuit
The schematic in Figure 3 shows the complete two regulator circuit along with the control mechanism we just discussed.
      
The radiation tolerant voltage regulator is based on the traditional series voltage regulator circuit.
      
The solid state, linear primary regulator circuit controls the peak 400 Hz 3-phase voltage to the beam voltage rectifier in the high voltage DC unit.
      
The high-voltage regulator circuit is of the conventional series type, with one special feature.
      
The main loop compensation in Figure 1's regulator circuit is provided by R1 and C4 at the COMP pin.
      
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The characteristics of a current regulator circuit with CRD are discussed. Hence the fundamental expressions for its current stabilizing coefficient and current-temperature coefficient are derived. Results of analyses and calculations show the advantages of larger output current, excellent stabilization,simplicity of circuit and easiness of adjustment.It is a hopeful project to be recommended as a current regulator with low current-temperature coefficient.

本文对一种含CRD的恒流电路进行了具体的讨论,从而导出电流稳定性参数的基本表示式。文中所作的分析和计算表明:该电路具有输出电流大,稳定性高,结构简单和调节方便等优点。可以期望,它将为恒流源的低温度系数问题提供一种新的解决途径。

The charging regulator circuits of the De-Qing type are now in common use in high-power high-voltage line-type modulators,especially in Linac modulators.Experimentation shows that its regulation accuracy will not be high if no necessary measures are taken. The main factors affecting the regulation accuracy include:certain inherent delays in the comparator and trigger circuit and in the turn-on time of the semiconductor switch;charging delays created by the charging transformer leakage inductance...

The charging regulator circuits of the De-Qing type are now in common use in high-power high-voltage line-type modulators,especially in Linac modulators.Experimentation shows that its regulation accuracy will not be high if no necessary measures are taken. The main factors affecting the regulation accuracy include:certain inherent delays in the comparator and trigger circuit and in the turn-on time of the semiconductor switch;charging delays created by the charging transformer leakage inductance and the primary magnetizing inductance of the pulse transformer;changes in the HV supply voltage;the type of the De-Qing network used(oscillatory or damped)and the reference threshold voltage accuracy in the cornparator system. A quantitative analysis is given,indicating the dependence and relation between these various factors.Some important conclusions have been reached. Finally,some simple and practical methods for improving the regulation accuracy are described and evaluated.

De—Qing 充电调节电路现在被广泛地应用在高功率高压线型调制器中作稳定高压脉冲幅度之用。大量实验表明这种电路若不采取必要的措施,它的稳幅精度是不高的。影响稳幅精度的主要因素包括充电终止的延迟、直流高压源的稳定性及纹波、参考阈电压的稳定性及释放回路的类别和元件值等。本文对各因素作了定量分析,分析表明与实验一致。分析得到的重要结论对设计与实践有重要意义。文章还给出了一些简单易行的方法可以使稳幅精度得到明显提高。

The charging regulator circuits of the De-Qing type are now in common use in high-power high-voltage line-type modulators, especially in Linac modulators. Experimentation shows that its regulation accuracy will not be high if no necessary measures are taken. The main factors affecting the regulation accuracy include; certain inherent delays in the comparator and trigger circuit and in the turn-on time of the semiconductor switch; charging delays created by the charging transformer leakage inductance...

The charging regulator circuits of the De-Qing type are now in common use in high-power high-voltage line-type modulators, especially in Linac modulators. Experimentation shows that its regulation accuracy will not be high if no necessary measures are taken. The main factors affecting the regulation accuracy include; certain inherent delays in the comparator and trigger circuit and in the turn-on time of the semiconductor switch; charging delays created by the charging transformer leakage inductance and the primary magnetizing inductance of the pulse transformer; changes in the HV supply voltage; the type of the De-Qing network used (oscillatory or damped) and the reference threshold voltage accuracy in the comparator system. A quantitative analysis is given, indicating the dependence and relation between these various factors. Some important conclusions have been reached. Finally, some simple and practical methods for improving the regulation accuracy are described and evaluated.

De—Qing充电调节电路现在被广泛地应用在高功率高压线型调制器中作稳定高压脉冲幅度之用。大量实验表明这种电路若不采取必要的措施,它的稳幅精度是不高的。影响稳幅精度的主要因素包括充电终止的延迟、直流高压源的稳定性及纹波、参考阈电压的稳定性及释放回路的类别和元件值等。本文对各因素作了定量分析,分析表明与实验一致。分析得到的重要结论对设计与实践有重要意义。文章还给出了一些简单易行的方法可以使稳幅精度得到明显提高。

 
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