Ignition coil primary winding. Current flow through the coil produces an electromagnetic field, which is used to induce a high voltage in the secondary coil.
点火线圈初级绕组。电流通过线圈,产生一个电磁场,用来在次级线圈中产生高电压。
Electromagnetic motor has the advantages of simple structure, handiness, precise ignition and convenient maintenance in modern igniting system.
在现代点火系统中,磁电机具有结构简单、轻便、点火准确、可靠、维修方便等优点。
Electromagnetic wave radiation produced due to the high voltage spark ignition will interfere the radio receiving system nearby.
摩托车汽油机由高压电火花点火,产生电磁波辐射,对在其附近的无线电接收设备造成干扰。
Engine spark ignition system is the main source of electromagnetic interference on vehicle.
发动机点火系统是汽车电系中电磁干扰的重要来源。
The EMI of ignition system not only affects the electromagnetic compatibility (EMC) of automotive electrical systems, but also becomes the biggest obstacle for meeting the strict EMC standard.
这不仅影响整个汽车电气系统的电磁兼容性能,而且成为是汽车满足电磁兼容标准的最大障碍。
A new method is provided to confirm the safety and reliability of the electric ignition system in electromagnetic environment.
此测试系统有数据处理方便和测量误差小等优点,为桥丝式电火工品的电磁环境效应评估提供了一条新的途径。
Electromagnetic radiation, which is created during the ignition, will cause electromagnetic interference on the automotive radio receiver and the surrounding electromagnetic environment.
汽车发动机由高电压电火花点火,点火过程产生的电磁波辐射对车载无线电接收机及周围电磁环境都会造成电磁干扰。
Pulverized coal stream ignition process in a new type of no oil ignition aid burner, which using the method of electromagnetic induction, has been investigated.
详细研究了在感应式无油直接点火燃烧器点火室中,煤粉气流在着火过程中的机理。
Therefore it is of great theoretical significance and practical value to investigate the electromagnetic compatibility (EMC) of petrolic ignition system.
所以,对汽车点火系统的电磁兼容性进行研究就具有极为重要的理论意义和工程价值。
The results show that: the ignition process is influenced both by the electromagnetic filed and the wall with high temperature;
研究表明:煤粉气流在感应式加热无油直接点火器中的着火过程,是交变电磁场与高温壁面加热协同作用的结果。
The results show that: the ignition process is influenced both by the electromagnetic filed and the wall with high temperature;
研究表明:煤粉气流在感应式加热无油直接点火器中的着火过程,是交变电磁场与高温壁面加热协同作用的结果。
应用推荐