负载电压
- 与 负载电压 相关的网络例句 [注:此内容来源于网络,仅供参考]
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This is adjusted being able to care for loads power condition only but is disregards the alternating voltage extent size, could be considered a way to adjust the duty cycle to achieve the purpose of adjustment of power.
这种调整可以只关心负载功率情况而不管交流电压的幅度大小,可以考虑采用调整占空比的方式达到调整功率的目的。
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When operating with maximum input voltage the load current and/or the ambient temperature will be limited.
当输入电压工作,最大负载电流和/或周围环境温度将是有限的。
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Yet, reignition overvoltage might do harm to transformer coils by cumulative effects for its surge steepness. The measures lies in setting parallel connection capacitance in practice working.
结果表明,尽管实际中切除空载变压器过电压的幅值并不是很高,特别是带负载变压器的情况,但重燃过电压的陡度较大,对变压器绕组的纵绝缘有累积作用,在实际工作中应以并联电容为基础的限压装置。
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As such, since a low voltage is used, power consumption can be saved, efficiency can be increased, and the load of a high voltage to a driving circuit can be curtained.
这样,因为使用低电压,能够节省能耗、增加效率和屏蔽到驱动电路的高电压负载。
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Voltage Source and Current Source, Thevenin Theory, Trouble Shooting, Characteristic Curve of Diode, Diode Models, Rectifier Circuits, Input Filtering Capacitor, Voltage Multiplier Circuits, Limiter and Clipper Circuits, DC Clampers and Peak-to-peak Detectors, Zener Diode, Zener Diode Rectifier, Photoelectric Devices, Collector-Emitter Junction, Transistor Characteristics of common-emitter, Base Bias, LED Dirver, Establishing a Stable Q-point, PNP Transistor Biasing, Transistor Biasing, Coupling and By-Pass Capacitors, AC Emitter Resistance, Common-Emitter Amplifier, Other Common-Emitter Amplifiers, Cascaded Common-Emitter Amplifiers, AC Load Line, Emitter Follower, Class B Push-pull Amplifiers, JFET Characteristic Curve, JFET Biasing, JFET Amplifier, VMOS Circuit, Differential Amplifier, Operational Amplifier, Non-inverting Feedback, Negative Feedback.
电子学实验( S0704)(1,1)/应用电子学实验( S0472)(1,1)电压源和电流源、戴维宁定理、故障排除、二极体特性曲线、二极体近似模型、整流电路、电容-输入型滤波器、倍压电路、限制器电路和峰值检测电路、直流定位器与峰对峰检测器、齐纳二极体、齐纳二极体整流器、光电元件、集射极接面、集极特性曲线、基极偏压、LED驱动器、建立一个稳定的工作点 Q 、 PNP 电晶体偏压、电晶体偏压、耦合及旁路电容、交流射极电阻、共射极放大器、其他 CE 放大器、串接共射极放大器、交流负载线、射极随耦器、 B 类推挽式放大器、 JFET 特性曲线、 JFET 偏压、 JFET 放大器、 VMOS 电路、差动放大器、运算放大器、非反向电压回授、负回授。
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The radiation by non-thermal plasma can accelerate formaldehyde thansform and make an increase of 29.61% in depurated efficiency. The surface modification makes no obvious difference in depurated efficiency. The chemical modification avails formaldehyde reduction and ACF coated with nano- TiO2 is the best of all that can enhand the depurated efficiency to 94%. The great influence of parameters on depurated efficiency , such as applied voltage and reaction time , shows that an increase in either applied voltage or reaction time enhance formaldehyde conversion.
研究结果表明:低温等离子体辐射能促进甲醛净化,可使其净化效率提高29.61%;表面改性对净化效率没有明显影响;化学改性有利于甲醛净化,其中负载纳米TiO2改性方案最佳,其净化效率高达94%;电源电压和反应时间等参数对净化效率也有较大影响,电压越大,时间越长就越有利于甲醛的去除。
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But this also with the voltage grid voltage fluctuations (generally plus or minus 10% fluctuation) load and temperature change.
但这样的电压还随电网电压波动(一般在正负10%左右的波动),负载和温度的变化而变化。
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In 'Phase angle' mode, the power transmitted to the load is controlled by firing the thyristors on a part of the supply
在移相触发模式中,负载的功率控制是靠晶闸管的提供的交流电压的部分电压完成的。
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The three-phased half-controlled bridge commutation and stabilizing voltage adjuster of permanent-magnet generator , which is also a rectifier, wastes a little electricity power and outputs high efficiency , makes it generate stable direct circuit, solves vehicle's problem of generating stable voltage at variable speed and variable load.
永磁发电机三相半控桥式整流稳压器集稳压、整流于一体,电能消耗少,发电效率高,输出直流电压稳定,解决了汽车用永磁发电机在变转速、变负载工况下输出电压保持稳定的问题。
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This article mainly introduces the advantage of synchronous multi-phase DC/DC converter in decreasing ripple current and increasing efficiency and gives result of simulation and practice.
像这样低电压和大电流的电源主要存在两个问题:①由于输出电压极低,很难提高电源效率;②由于负载电阻极低,若采用传统方式
- 推荐网络例句
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This one mode pays close attention to network credence foundation of the businessman very much.
这一模式非常关注商人的网络信用基础。
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Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.
扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。
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There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.
双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。