电池电流
- 与 电池电流 相关的网络例句 [注:此内容来源于网络,仅供参考]
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Studied the inner resistance in different charge capacity and different charge magnification, researched the charge efficiency in different charge capacity, and measured the inner resistance at high rate.
通过对失效电池不同充电容量、充电倍率下交流内阻的研究和大电流脉冲下直流内阻的研究,确定了快速判定MH-Ni电池是否失效的相关方法,并通过测量电池的内压和不同充电容量下的充电效率讨论了其有效性
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And a signal processing interface board is done to acquire these parameters such as engine speed, excitation current, output current, output voltage, and battery current.
和一个信号处理接口板是为取得这些参数,如发动机转速,励磁电流,输出电流,输出电压,电池和电流。
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By testing and analyzing the technics of coating plumbaginous glue inside steel cases and repressing of the cathode ring, the optimum processes and technology of the mercury-free alkaline manganese dioxide battery were discussed.
对无汞碱性锌锰电池采用钢壳涂石墨胶,正极环复压的试验进行分析,探讨有关工艺技术和关键工序控制,提高无汞电池的短路电流,使无汞电池性能得到充分发挥。
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By testing and analyzing the technics of coating plumbaginous glue inside steel cases and repress ing of the cathode ring, the optimum processes and technology of the mercury-free alkaline manganese dioxide battery were discussed.
对无汞碱性锌锰电池采用钢壳涂石墨胶,正极环复压的试验进行分析,探讨有关工艺技术和关键工序控制,提高无汞电池的短路电流,使无汞电池性能得到充分发挥。
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First, a full three-dimensional numerical model is developed, which considering not only the rib resistance to the species, but both the single- and two-phase flow and transport in the gas channels and diffusers at both the anode and cathode sides of PEM fuel cell. Two sets of boundary conditions, one for a conventional flow field and the other for an interdigitated one, are presented. A detailed discussion of the numerical techniques for the PEM fuel cell model is given with a flow diagram to provide an overview of the solution procedure using FORTRAN language.
该模型考虑了双极板上流道间的筋部对于反应气体传递阻力以及电流密度分布的影响,从而使模型具有三维特性;建模过程中进一步考虑了流道和扩散层中可能存在的液态水,从而将现有的单相流动模型拓展成为两相流动模型,因此,该模型可以同时模拟电池内部阴极、阳极侧流道和扩散层中两相流动的发生和分布情况;分别给出了平行流场燃料电池和交指型燃料电池的边界条件;详细讨论的三维模型的耦合求解算法和技巧;用实验数据验证的该模型的准确性。
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Station communications subsystem battery discharge due to the long-off and other reasons to enable to shorten battery life or near end-of-life issues, the charger using electronic sweep pulse technology, uninterrupted electricity to issue a specific pulse frequency, the use of momentary high-current activation "ill "battery plate, electric pulse so that re-crystallization of lead sulfate crystals into a small, highly reversible electrochemical activity of lead sulfate to be able to participate in the normal charging and discharging of the electrochemical reaction, so that waste batteries back to life, back to and new battery is almost the same capacity, the same time, greatly extended battery life.
针对通信机站子系统蓄电池因长期过放电等原因使蓄电池寿命缩短或接近报废的问题,该充电机采用电子扫频脉冲技术,不间断地发出特定频率电脉冲波,利用瞬间大电流激活&生病&的电池极板,电脉冲波使硫酸铅结晶重新转化为晶体细小、电化学活性高的可逆硫酸铅,使其能够正常地参与充放电的电化学反应,使废旧的蓄电池起死回生,恢复到与新电池几乎一样的容量,同时大大延长了电池使用寿命。
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Respectively proceeding with bromine complexing agent of anode, modified membrane and electrolytic additive of cathode, mainly referring to specific power of battery, ratio of self-discharge and zinc dendrite, this paper has studied the influences of different anode additive and modified membrane on specific energy of battery by means of charge and discharge curves, and the influences of electrolytic additive(NH4+, OP-10, TX-10 and dodecyl trimethyl ammonium bromide) on zinc dendrite by means of current-time curve and microscopic morphology observation.
本文分别从正极溴络合剂、隔膜改性和负极的电解液添加剂入手,以电池的比能量、自放电率以及锌枝晶生长情况为主要的性能指标,用电池充放电曲线等方法研究不同正极添加剂和隔膜改性对电池比能量的影响;用电流-时间曲线以及微观形貌观察等方法研究电解液添加剂(NH_4~+、OP-10、TX-10以及十二烷基三甲基溴化铵)对锌枝晶生长的影响。
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Mainly engaged in the project are: 1, lithium battery protection board, power type (power tools, electric vehicles, model aircraft) lithium battery protection board; 2, switching power supply, adapters, chargers; 3, high power audio, amplifier, communications power inverter power supply; 4, solar cells program, program charger, portable power supply; 5, special power supply / power supply, as well as smart power management system; 6, LED drivers, all kinds of high-frequency electronic circuit design, update problem-solving / Circuit Design and so on; Electronics 8514C has°load, four-channel Tektronix TDS2014B Oscilloscopes, Tektronix Current Probe, Power Instrument / high voltage tester, spectrum analyzer proposed, frequency meter, signal generator, the high and low temperature environment for the control room and other advanced equipment and a group of highly professional and well-motivated research in science and technology, design professionals; have the ability to achieve all-round, the perfect integration services.
主要经营项目有:1、锂电池保护板、动力类(电动工具、电动车、航模)类锂电池保护板;2、开关电源、适配器、充电器;3、大功率音响、功放、通讯电源、逆变电源;4、太阳能电池方案、充电器方案、便携电源;5、特种电源/智能电源以及电源管理系统;6、LED驱动,各种高频电子电路的设计,更新解难/电路设计等;公司拥有艾德克斯8514C电子负载、泰克TDS2014B四通道示波器、泰克电流探头、功率仪/高压测试仪、频谱分析议、频率计、信号发生器、高低温环境控制室等先进设备和一批专业素质高、干劲十足的科研技术、设计人才;有能力做到全方位、一体化的完美服务。
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According to the Panasonic NiMH charging Manual, permanent trickle charging can cause battery deterioration and the trickle charge rate should be limited to between 0.033×C per hour and 0.05×C per hour for a maximum of 20 hours to avoid damaging the batteries.
根据松下公司的《镍氢电池充电指南》,长期使用涓流方式(以很小的电流长时间充电)充电有可能导致电池损坏;为了防止损伤电池,涓流充电的电流应限制在 0.033×C每小时到 0.05×C每小时之间,最长充电时间为20小时。
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The average iR drop accounts for about 74% of the total voltage losses during the C-D cycle at current density of 60 mA·cm-2,suggesting the voltage efficiency of vanadium redox-flow battery single cell with graphite felt as electrodes and Nafion 117 as battery separator,was limited by the cell ohmic internal resistance.
以石墨毡为电极、Nafion 117作隔膜的全钒液流单电池,在60 mA.cm-2电流密度下,每一充放电循环的平均iR降约占总电压损耗的74%,表明该电池的电压效率受制于电池的欧姆内阻。
- 推荐网络例句
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According to the clear water experiment, aeration performance of the new equipment is good with high total oxygen transfer coefficient and oxygen utilization ratio.
曝气设备的动力效率在叶轮转速为120rpm~150rpm时取得最大值,此时氧利用率和充氧能力也具有较高值。
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The environmental stability of that world - including its crushing pressures and icy darkness - means that some of its most famous inhabitants have survived for eons as evolutionary throwbacks, their bodies undergoing little change.
稳定的海底环境─包括能把人压扁的压力和冰冷的黑暗─意谓海底某些最知名的栖居生物已以演化返祖的样态活了万世,形体几无变化。
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When I was in school, the rabbi explained everythingin the Bible two different ways.
当我上学的时候,老师解释《圣经》用两种不同的方法。