Table 28
Fig. 373 Control circuit of the ignition coil
Fig. 372 Ignition coil
1. Shielded cable 2. Permanent magnet 3. Casing of the sensor
4. Install support 5.Soft magnetic core 6.Coil 7. Air gap 8.Tooth
ring with reference mark
6. Speed sensor (Fig. 371)
The soft magnetic core of the sensor surrounded by a coil is installed
opposite to a pulse toothed ring, leaving a narrow air gas between
them. The soft magnetic core is connected with a permanent magnet,
and the magnetic field extends up to the ferromagnetic pulse toothed
ring. When the tooth of the ring is just opposite to the sensor, the
magneticfield is concentrated to intensify the magnetic lines of the coil.
When the backlashes are opposite to each other, the magnetic field
weakens variation of the magnetic field. When thetoothed wing rotates
with the wheel, these two conditions alternate. Such changes of
magnetic lines will generate an induced AC voltage in the coil, with its
frequency depending on the speed. Refer to Table 28 for the technical
parameters of the speed sensor.
7. Ignition Coil
Structure of the ignition coil: The ignition system adopts a double ignition coil, and its form and circuit are shown in Fig.
372. and Fig. 373.
Operating principle of the ignition coil: The two ignition coils directly controlled by the computer generate a high voltage
alternatively. The secondary side of either ignition coil is connected to the spark plugs of the two cylinders, so that the
spark plugs of the two cylinders spark simultaneously each time. Of course, only one cylinder has an effective ignition,
while the other cylinder has an ineffective ignition in its exhaust stroke. In such a high voltage distribution method, despite
of loss of a certain ignition energy due to ineffective ignition, the structure of the ignition system is simplified through
omission of the distributor, and the reliability of ignition is enhanced. Refer to Table 29 for the technical parameters.
Fig. 371 Schematic Diagram of the Speed Sensor
Computer
Technical Parameters of DG6 speed sensor
Ignition coil
Winding resistance Rw (+20°C)
Winding inductance L (1kHz, serial circuit)
Air gap S
Signal voltage Us
Operating temperature (outside the winding)
770-950Ω
370±50mH
1.8±0.01
>1750mV
-40°C~ +150°C
189
Содержание JL481Q
Страница 1: ......
Страница 9: ...5 Fig 3 Components Assembly Drawing of MR479Q MR479QA Engine ...
Страница 10: ...6 Fig 4 MR479Q MR479QA Engine and Its Power System ...
Страница 11: ...7 Fig 5 Assembly Drawing of Engine and Its Auxiliaries MR479Q MR479QA ...
Страница 12: ...8 Fig 6 Electronic Control Fuel Injection System in Engine MR479Q MR479QA ...
Страница 13: ...9 Fig 7 Front view of Engine JL481Q MR481QA ...
Страница 14: ...10 Fig 8 Sectional elevation of Engine JL481Q MR481QA ...
Страница 15: ...11 Fig 9 Electronic Control Fuel Injection System in Engine JL481Q MR481QA ...
Страница 21: ...17 Fig 13 Exterior Feature of JL481Q Engine Power Me N m Torque Pe Kw ge g kwh Fuel Consumption Ratio ...