charge voltage

美 [tʃɑːrdʒ ˈvoʊltɪdʒ]英 [tʃɑːdʒ ˈvəʊltɪdʒ]
  • 网络充电电压;电荷电压;电荷电势;充电电压表
charge voltagecharge voltage
  1. The discharge breakdown time , peak current as a function of charge voltage and buffer gas are obtained .

    得到了放电击穿时间、放电峰值电流随充电电压、不同气体介质变化的曲线;

  2. The result also shows that decreasing electrode packing density can decrease charge voltage and concentration polarization , improve charge efficiency and improve discharge capacity .

    适度减小压实密度,可以降低充电电压,提高充电效率,增加放电容量。

  3. Correlation between discharge parameters and charge voltage in electrostatic discharge from human body

    人体静电放电参数对带电电压的依赖关系研究

  4. Effect of charge voltage on performance of lead acid storage battery and its electrodes

    充电电压对铅蓄电池及其电极性能的影响

  5. The relationship among charge voltage , circuit parameter and value of discharge current was analyzed .

    从理论上分析了充电电压、回路参数与放电电流幅值、放电周期之间的关系。

  6. Study on the uniformity of floating charge voltage of VRLA battery

    VRLA蓄电池浮充电压均一性的探讨

  7. Improvement on the float charge voltage consistence of VRLA batteries by strict processing control

    控制生产过程提高VRLA电池浮充电压的一致性

  8. To prolong life of battery , protection and temperature compensation of end of charge voltage are necessary for systems .

    为了延长电力系统中铅酸蓄电池的使用寿命,必须对蓄电池进行充电保护及对过充阈值电压进行温度补偿,过充阈值电压温度补偿系数对单体电池而言在-3.5~-4.5mV/℃范围内较为合理。

  9. The values of floating charge voltage for all cells in the VRLA group were as the law of normal distribution .

    阐述了阀控式密封铅蓄电池组中各单电池的浮充电压值是服从正态分布规律的。

  10. Studies on negative expanders and organic expanders ( 3 ) & Determination of charge voltage of batteries

    关于负极膨胀剂及有机膨胀剂(三)&蓄电池充电电压的确定

  11. The safe and efficient charge voltage is higher than the corona inception voltage and is between 15 ~ 20 kV .

    安全高效的荷电电压要高于起晕电压,宜为15-20kV。

  12. If the discharge current was increased , the discharge capacity was obviously less than the stabilized value and maximum charge voltage was also changed suddenly .

    若放电电流增加,在随后的第一周充放电过程中最高充电电压迅速增加、放电容量显著小于稳定值。

  13. In the other step , the maximum and minimum controlling voltages were obtained through correcting the floating charge voltage of the battery .

    脉冲充电阶段控制电压的最大值和最小值根据对蓄电池的浮充电压进行修正而得;

  14. With proper choice of the values of capacitance and resistance , the charge voltage and the discharge waveform on the capacitor can be measured .

    通过合理设计阻容分压器的电容、电阻值,可以准确测量脉冲电容器的充电电压和放电波形。

  15. From the importance degree , the factors row were air pressure 、 jet orifice diameter 、 charge voltage 、 liquid pressure 、 air flow and liquid flow ;

    按影响雾滴体积中径的重要性程度,因素排序依次为气体压力、喷孔直径、充电电压、液体压力、气体流量和液体流量;

  16. The specific discharge capacity at the first 10 cycles can reach 170 mAh / g when the limited charge voltage is raised to 4.4 V.

    将充电截止电位提高至4.4V后,前10次的放电比容量可达170mAh/g。

  17. The controlled of IGBT , the collection to the data of speed and charge voltage as well as the control of the relay are completed by monitoring and control system .

    测控部分通过单片机完成了对IGBT通断时间的控制,对风轮转速和充电电压的数据采集、处理和显示,以及对继电器通断的控制。

  18. But the end charge voltage should be controlled . Secondly , the discharge performance at a high rate of zinc alloy electrodes prepared in alkaline electrolyte was investigated .

    其次,在碱性溶液中对锌合金电极的高功率放电性能进行了研究。

  19. In this paper , a new high power solid state laser multi segment amplifier with 29 cm square each aperture has been introduced and was tested at different charge voltage .

    介绍了一台通光口径为29cm×29cm的新型高功率固体激光阵列式片状放大器,并且在不同充电电压下进行了实验测试。

  20. The relationship between maximum charge voltage gain and circuit resistance , battery resistance is found in theory , and the minimum charge voltage can be ascertained under the difference work current .

    从理论上建立了最大充电电压增益与电路内阻、电池内阻的关系,并以此来确定不同工作电流下的最低充电电压值。

  21. The reason of outgoing gas is that the charge voltage goes up from polarization , but the slow pulse charging method can availably remove the problem of polarization .

    析气是由于充电过程中的极化导致充电电压升高,而慢脉冲充电方法可有效地消除极化;

  22. Various voltage-gain ( ratio of output voltage to DC charge voltage ) of 1.2 ~ 1.6 times has been obtained by varying the value of the WLMS 's solution resistance .

    通过改变短水线中储的溶液电阻便可获得不同的电压增益(输出电压对直流充电电压之比)。

  23. Gel batteries have more electrolyte , lower charge voltage and working temperature , less water loss than those of AGM batteries . They are resistant to deep discharge and have long cycle life .

    和AGM电池相比,Gel电池电解质多、充电电压和温升低、耗水少、耐深放电、循环寿命长。

  24. The influence of temperature , storage time , float charge voltage , float charge time and so forth on the conductance / internal resistance of AGM VRLA batteries was mainly studied in this paper .

    主要研究了温度、静置时间、浮充电压、浮充时间等对AGM系列电池的电导/内阻的影响;

  25. Based on strict control of plate manufacturing , assembling , acid filling , formation and other procedures , some solutions and measures to improve the consistency of float charge voltage of VRLA batteries are presented .

    通过对生产过程如极板制造、装配、加酸和化成等工序的严格控制,对于VRLA电池浮充电压一致性问题提出了一些解决方法和措施。

  26. The system with power decoupling network has many functions that charge voltage , the number of discharge and phase can be preset . The trigger impulse can be synchronized to the power frequency from 0 ° to 360 ° .

    系统可预置充电电压、触发角度与放电次数,实现工频电压0~360°同步触发,并带有去耦网络。

  27. This paper mainly discusses the life characteristic and failure mechanism of the multilayer ceramic capacitor ( MLC ) under various working conditions such as charge-discharge frequency , charge voltage , charge-discharge duty radio and discharge inverse peak factor .

    主要研究了高储能密度多层陶瓷电容器(MLC)在不同充放电频率、充电电压、充放电占空比和放电反峰系数等条件下的寿命特性,并对其失效机理进行分析。

  28. Under the condition of charge voltage of 23 kV and pumping energy density of 10 0 J / cm 3 , the average small signal gain coefficient of 4 99 % cm - 1 and energy storage efficiency of 3 0 % are obtained in experiments .

    在充电电压为23kV,抽运能量密度为100J/cm3的条件下,获得了平均值为499%cm-1的小信号增益系数和30%的储能效率。

  29. Development and technical progress of VRLA batteries in our country were introduced , such as increasement of floating charge voltage uniformity , modification of Pb-alloy , improvement of production technology , adoption of catalyst in batteries , enhancement of charge efficiency and cycle life ;

    概述了我国铅酸蓄电池在VRLA技术方面的发展与进步,主要表现在电池浮充电压均匀性的提高。

  30. The results demonstrated that the resistance of the battery with the modified electrode decreased 31.5 % , the discharge capacity at 5 C ( 8.5 A ) ( increased ) 200 mAh and discharge voltage platform increased about 0.10 V , the charge voltage was also decreased .

    结果表明:使用经过修饰的极片的电池内阻降低315%,5C(85A)放电容量提高200mAh,放电平台电压提高约010V,充电电压降低。