With the development of gasoline engines in automobiles towards high speed, high compression ratio, high power, low fuel consumption, and low emissions, traditional ignition devices are no longer suitable for use. The core components of ignition devices are ignition coils and switch devices. By increasing the energy of the ignition coils, the spark plug can generate sufficient energy to produce sparks, This is the basic condition for the ignition device to adapt to the operation of modern engines. The ignition coil is divided into two types according to the magnetic circuit: open magnetic and closed magnetic. The traditional ignition coil is used with an open magnetic type, and its iron core is stacked with about 0.3 millimeters of silicon steel, with secondary and primary coils wound around the iron core. The closed magnetic type uses an iron core similar to III to wrap around the primary coil, and then wraps around the secondary coil outside. The magnetic field line is composed of an iron core to form a closed magnetic circuit. The advantage of the closed magnetic ignition coil is that it has less magnetic leakage, Due to its small energy loss and volume, electronic ignition systems generally use closed field ignition coils)
From the perspective of the Mercedes Benz E260L model, the entire series has been equipped with a 2.0-liter low-power version engine and a 48V mild hybrid system, with a maximum engine power of 145 kW and a peak torque of 320 Nm; The previously available E260L is equipped with a 1.5-liter+48V mild hybrid system engine with a maximum power of 135 kW and a peak torque of 280 Nm. From the data, it can be seen that the new E260L equipped with a 2.0-liter engine+48V mild hybrid system performs better in terms of power parameters. Therefore, when driving normally, the new model will not experience the same situation of roaring and not leaving as the old model
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