充电
- 与 充电 相关的网络例句 [注:此内容来源于网络,仅供参考]
-
In the charge-discharge tests, for the electrode irradiated by light and charged with current simultaneously, the discharge time is about 11.4 h, much longer than that (about 8.7 h) charged only with current, indicating obvious photo-assisted chargeability of the electrode. The additional discharge capacity is contributed to the photocharge of photogenerated electrons and holes.
HSA/Cr-BIO电极在200μA电流与光照同时充电时比仅200μA电流充电后放电时间长(11.4小时vs8.7小时),所增加的放电容量来自光生电子与空穴对储氢合金电极的充电,表明该HSA/Cr-BIO电极具有明显的光辅助充电性能。
-
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
-
According to it, we have designed a powerful battery charger,which can not refresh the storage battery with normal andrapidmethods,butcanprotectit from overvoltage.overcurrent.reversal polarity.and supersaturate .
根据铅蓄电池的充电特性,设计了一种不仅能对蓄电池进行常规充电和快速充电,同时具有过压、过流、极性反接保护,充电饱和保护的大功率充电机。
-
Presented in this paper is the process of design a fast pulse-charger for lead-acid battery. The charger is mainly designed for nonspillable lead-acid assembled batteries that used in automobiles, proposed working envirments are home and outdoors,main requirements are short charging time, high charging efficiency, smart control methods, reliable work,efficiently increase the life of batteries.
本文介绍了一个铅酸蓄电池脉冲快速充电装置的研制过程,这一装置以汽车用密封铅酸蓄电池作为主要充电对象,以家用及室外环境卫主要工作环境,主要设计要求为充电时间短,充电效率高,控制智能化,运转安全可靠,能够有效延长蓄电池寿命。
-
By enhancing the charging current,the pulsant problem for repetitive charging with constant current charging device was solved,and then,repetitive operation experiments were carried out.
在利用恒流充电装置充电的重频实验过程中,通过采用提高充电电流的方法,解决了发生器恒流充电时的充电脉动问题,进而开展了重复频率运行实验研究。
-
Avoid sulfation for ordinary batteries, if they are in an overcharging mode or undercharging mode for a longtime, it will make the battery lose its internal water and lead to sulfation, thus greatly shortening charger's operating lifetime. But can solve batteries' problem of imbalance derived from longtime overcharging and undercharging, thus avoiding internal sulfation of the battery, restoring batteries' capacity and extending their operating lifetime.
避免硫酸盐化--普通电池如果长期处在一种过充电或欠充电状态中,会使电池内部不断失水和硫酸盐化,这样就会大大缩短充电器使用寿命,可是,它能解决电池长期过充电和欠充电引起的失衡,避免电池内部硫酸盐化,能够恢复电池容量,从而延长它的使用寿命。
-
That includes a stylish "Nah" box made of real china that actually contains a 1.5TB hard drive, a bamboo sheet that supposedly acts as a laptop cooling pad, a pair of vase-shaped speakers, various mice decorated with Chinese opera masks and, of course, no shortage of eye-catching USB drives.
充电座可以容纳的对象,从手机/相机/摄影机的锂电池、AA / AAA 充电电池、USB 装置(5V 输出)皆可以;不过因为没有内置的电池,所以一旦带到户外去,则要靠 AA / AAA 电池、锂电池当作电力来源;另外充电部份,最多可以一次帮五种装置/电池充电,也支持单键电池激活、快速充电等;跳转后有其它角度照片以及细节介绍。
-
Theory and Practice shows that the trickle charge, the current charge, the charge and floating charge of the combined charge, can achieve the best results.
理论和实践表明,涓流充电、大电流充电、过充电和浮充电组合起来的充电方式,可达到最佳的效果。
-
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。
-
Built-in LED lights indicate charging status. When fast-charging is complete the charger automatically converts to a trickle charge in order to avoid damage to the battery pack due to overcharging.
内置发光二极管显示充电装动态,快速充电完成后,充电器可自动切换到慢速充电状态,以避免过度充电损坏电池。
- 推荐网络例句
-
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。
-
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。
-
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。