When the battery voltage is too low, a low voltage on the screen prompt. 当电池电压过低时,屏幕上有低电压提示符号。
Alert! System battery voltage is low. 系统电池的电压不足。
Built-in three-protect switch, when the vehicle a short circuit, low battery voltage or current is too large, tail plate overload occurs can effectively avoid the circuit or the motor burning. 内置三道保护开关,当汽车电路短路、电瓶电压偏低或电流偏大、尾板超载等情况出现时可有效避免造成电路或马达的烧毁。
Green means GO for high battery voltage, red refers to low battery levels, and an unlit LED warns of insufficient battery power to conduct further tests. 绿色灯亮表示高电量,红色灯亮表示低电量,无灯光的LED则警告电池电量不足以进行下一个测量。
Influence of battery voltage on start behavior of electronically controlled diesel engine 起动电压对电控柴油机起动性能的影响
Battery voltage sense input above target charging voltage during engine operation. 在引擎运转时,电池电压感应输入高于标准充电电压。
After the battery voltage reaches its final value and remains constant, the charging current is further reduced. 在电池电压尚未到达饱和之前,充电电流便开始减小;
Against output short-circuit, Over voltage, Low voltage, Low battery voltage, Surge protection, loss phase protection. 输出短路保护,过压保护,低压保护,低电池电压,浪涌电压保护,相序亏损保护。
Can be set for different battery voltage control or capacity control of the protected mode. 可设置不同的电池电压控制或保护模式下的控制模式。
Sampling of single battery voltage is a key technique for the charging and discharging equipment of general wire-guided torpedo. 单体电池电压采集技术是通用线导***充放电设备中的一项关键技术。
The effects of environment temperature, excess air ratio, storage battery voltage on start speed and emissions are studied. 研究了环境温度,过量空气系数,蓄电池电压,点火提前角对单循环冷起动时,起动转速和排放的影响。
The paper puts forward a new method to measure series battery voltage, mechanical relay is replaced by photoelectric relay to select each battery voltage. 提出一种串联电池组电压测量新方法:光电继电器取代机械继电器选通各节电池电压;
The switching regulator makes the product ideal for single lithium-ion, multicell alkaline or NiMH applications where the output voltage is within the battery voltage range and solves a problem encountered often in designing power supplies for portable electronics. 是输出电压处于电池电压范围内的单节锂离子电池、多节碱性电池或NiMH电池应用的理想选择,解决了在便携式电子设备电源设计过程中所遇到的问题。
By examination and judgment on the parameters such as solar panel electric voltage, battery voltage, charge hardcore current, environment temperature. and etc., controlled the switch tube breaking, in order to realize the control on charge, discharge and protection function. 该控制器通过太阳能电池板电压、蓄电池电压、充电电流、环境温度等参数的检测判断,控制开关管的关断,来实现充放电控制和保护功能。
When selecting the battery, the rated quantity of electric charge calibrated of the battery should be higher than that required by the motorcycle, battery voltage and motor voltage should match; 在选用电动自行车用电池时,电池标定的额定电荷量必须高于车辆所要求的电荷量;电池电压应与电机电压相匹配;
Pressure and temperature method is assumed to measure hydrogen consumption, Battery voltage and current is continuously measured and integrated to calculate electric energy consumption. 采用压力温度法测量氢气消耗量,对蓄电池电压、电流进行连续测量和积分运算得到电能量消耗。
Combined with charging battery voltage, the effect of Y_2O_3 addition on the heat creation rate of D-type MH-Ni battery at different charging rates was also discussed. 结合电池的充电电压,讨论了正极添加Y2O3对D型MH-Ni电池不同充电倍率下产热速率的影响。
The paper introduces the present condition of storage battery voltage monitoring in the communication station, and designs the automatic voltage monitoring system for storage battery by using the technology of hardware and software combination in order to save resource of human and reduce the maintenance cost. 通过介绍目前通信站蓄电池电压监测的现状,采用硬件和软件结合的自动监测技术,设计了一套蓄电池电压自动监测系统,从而达到节约人力资源、降低设备维护成本的目的。
Solid State Relays Make Monitoring Electric Car Battery Voltage Easy 固态继电器为电动汽车电池监测提供便利
As the test shows, the starting failure of auxiliary inverter is caused by the low storage battery voltage, the impact of the power control battery and other related factors. 经试验分析,辅助逆变器起动失效是由蓄电池电压过低、控制电源电流的冲击及相关干扰等因素综合造成的。
The hardware part includes: Cuk charging circuit design, current detection circuit design, the battery voltage detection circuit design, MOSFET protection circuit design, battery output switch control circuit design, power supply design, RAM and FLASH circuit design. 其中硬件部分包括:Cuk充电电路设计、电流检测电路设计、电池电压检测电路设计、MOSFET保护电路设计、电池输出开关控制电路设计、工作电源设计、RAM和FLASH电路设计。
The system achieved the expected design requirements; we have done the basic research work for the further development of the battery voltage detection system. 系统达到了预期的设计要求,为电压检测系统的进一步设计开发做了基础性的研究探索工作。
The width of polarization negative pulse is decided by the comparison of the battery voltage, the charge current, battery temperature etc, which collect by the controller, and the value set in advance. By doing this, it can adapt various periods of charging requirements. 其中,去极化负脉冲的宽度,由控制器采集到的电池端电压、充电电流和电池温度等信息与预先所设定的值进行比较而确定以自适应各个时期的充电要求。
When the solar panel output voltage is less than the battery voltage, the system continues to charge in order to achieve the purpose of dynamic charge in order to achieve intelligent solar tracking system of empowerment. 当太阳能板输出的电压小于蓄电池电压时,系统继续充电以达到动态充电目的,从而实现智能型太阳能跟踪充能系统。
PSO-BP method was presented based on the testing of the battery performance, which used the battery voltage, charge-discharge rate and temperature as the input features parameters of neural network to estimate the battery SOC. 在电池性能测试基础上,提出采用PSO-BP方法,利用电池电压、充放电倍率和温度作为神经网络输入特征参数,估算电池SOC。
According to the battery voltage to adjust the charge current and the maximum charge voltage, according to the polarity of the battery charging power supply automatically adjusts the output polarity, to ensure that the charging station can charge for any electric bicycles. 根据蓄电池电压特性来调整充电电流和最高充电电压,根据蓄电池的极性自动调整充电电源的输出极性,保证了该充电站可以对任何电动自行车充电。
Then a battery wireless data acquisition system is set up at the end of the dissertation. The system can monitor the single battery voltage, the total voltage, current and temperature of the battery. 最后还搭建了一套蓄电池数据采集调试系统,本系统基本完成了课题的目标,实现了蓄电池单体电压、蓄电池组总电压、蓄电池电流和蓄电池温度数据的监控。
The system collects, processes, displays and alarms the status information of vehicles, such as battery voltage, speed and other parameters. Driver can operate to make the vehicle safe in accordance with the results of alarm processing. 该系统对汽车的各种信息状态,如电池电压、车速等参数进行采集、处理、显示和报警提示,驾驶员根据报警提示的结果进行相应的处理,以使汽车安全正常行驶。
By analyzing the influence of system parameters on system performance, a current control strategy is proposed which content selecting the curvilinear assistance, motor speed feedforward control, battery voltage compensation and the optimal PID parameters adaptive method. 通过分析系统参数对系统性能的影响,提出了以选择曲线型助力特性、电机转速前馈控制、蓄电池电压补偿和最优PID参数自适应方法为主要内容的电流控制策略。