2218452 PISTON GP Caterpillar parts
G3520C
Rating:
Alternative (cross code) number:
CA2218452
221-8452
2218452
CA2218452
221-8452
2218452
GENERATOR SET,
Compatible equipment models: 2218452:
Information:
Starting Motor
Illustration 1 g01964824
Typical example
12 V 4 kW Starting Motor
(1) Terminal 30 for connection of the battery cable
(2) Terminal 50 for connection of ignition switch
(3) Terminal 31 for connection of the ground
Illustration 2 g01964833
Typical example
24 V 5.5 kW Starting Motor
(4) Terminal 30 for connection of the battery cable
(5) Integrated Magnetic Switch (IMS)
(6) Terminal 50 for connection of ignition switch
(7) Terminal 31 for connection of the ground The starting motor turns the engine via a gear on the engine flywheel. The starting motor speed must be high enough in order to initiate a sustained operation of the fuel ignition in the cylinders.The starting motor consists of the main armature and a solenoid. The solenoid is a relay with two windings Pull-In (PI) and Hold-In (HI). Upon activation of ignition switch, both windings move the iron core by electromagnets. The linkage from the iron core acts to move the pinion toward the flywheel ring gear for engagement. Upon complete engagement, the solenoid completes the high current circuit that supplies electric power to the main armature in order to provide rotation. During cranking of the engine, only the Hold-In (HI) winding is active.The ignition switch is deactivated once the desired engine speed has been achieved. The circuit is disconnected. The armature will stop rotating. Return springs that are located on the shafts and the solenoid will disengage the pinion from flywheel ring gear back to the rest position.The starting motor has an overrunning clutch to prevent damage to the starting motor and mechanical transmissions as the engine speed increases.Certain higher powered starting motors are designed with an Integrated Magnetic Switch (IMS). The Integrated Magnetic Switch (IMS) is activated by the ignition switch. The solenoid circuit then engages the starting motor. The benefit of Integrated Magnetic Switch (IMS) is a lower current in the ignition circuit that will allow the engine ECM to control ignition without the use of a relay.Alternator
The electrical outputs of the alternator have the following characteristics:
Three-phase
Full-wave
RectifiedThe alternator is an electro-mechanical component. The alternator is driven by a belt from the crankshaft pulley. The alternator charges the storage battery during the engine operation.The alternator is cooled by an external fan which is mounted behind the pulley. The fan may be mounted internally. The fan forces air through the holes in the front of the alternator. The air exits through the holes in the back of the alternator.The alternator converts the mechanical energy and the magnetic field into alternating current and voltage. This conversion is done by rotating a direct current electromagnetic field on the inside of a three-phase stator. The electromagnetic field is generated by electrical current flowing through a rotor. The stator generates alternating current and voltage.The alternating current is changed to direct current by a three-phase, full-wave rectifier. Direct current flows to the output terminal of the alternator. The direct current is used for the charging process.A regulator is installed on the rear end of the alternator. Two brushes conduct current through two slip rings. The current then flows
Illustration 1 g01964824
Typical example
12 V 4 kW Starting Motor
(1) Terminal 30 for connection of the battery cable
(2) Terminal 50 for connection of ignition switch
(3) Terminal 31 for connection of the ground
Illustration 2 g01964833
Typical example
24 V 5.5 kW Starting Motor
(4) Terminal 30 for connection of the battery cable
(5) Integrated Magnetic Switch (IMS)
(6) Terminal 50 for connection of ignition switch
(7) Terminal 31 for connection of the ground The starting motor turns the engine via a gear on the engine flywheel. The starting motor speed must be high enough in order to initiate a sustained operation of the fuel ignition in the cylinders.The starting motor consists of the main armature and a solenoid. The solenoid is a relay with two windings Pull-In (PI) and Hold-In (HI). Upon activation of ignition switch, both windings move the iron core by electromagnets. The linkage from the iron core acts to move the pinion toward the flywheel ring gear for engagement. Upon complete engagement, the solenoid completes the high current circuit that supplies electric power to the main armature in order to provide rotation. During cranking of the engine, only the Hold-In (HI) winding is active.The ignition switch is deactivated once the desired engine speed has been achieved. The circuit is disconnected. The armature will stop rotating. Return springs that are located on the shafts and the solenoid will disengage the pinion from flywheel ring gear back to the rest position.The starting motor has an overrunning clutch to prevent damage to the starting motor and mechanical transmissions as the engine speed increases.Certain higher powered starting motors are designed with an Integrated Magnetic Switch (IMS). The Integrated Magnetic Switch (IMS) is activated by the ignition switch. The solenoid circuit then engages the starting motor. The benefit of Integrated Magnetic Switch (IMS) is a lower current in the ignition circuit that will allow the engine ECM to control ignition without the use of a relay.Alternator
The electrical outputs of the alternator have the following characteristics:
Three-phase
Full-wave
RectifiedThe alternator is an electro-mechanical component. The alternator is driven by a belt from the crankshaft pulley. The alternator charges the storage battery during the engine operation.The alternator is cooled by an external fan which is mounted behind the pulley. The fan may be mounted internally. The fan forces air through the holes in the front of the alternator. The air exits through the holes in the back of the alternator.The alternator converts the mechanical energy and the magnetic field into alternating current and voltage. This conversion is done by rotating a direct current electromagnetic field on the inside of a three-phase stator. The electromagnetic field is generated by electrical current flowing through a rotor. The stator generates alternating current and voltage.The alternating current is changed to direct current by a three-phase, full-wave rectifier. Direct current flows to the output terminal of the alternator. The direct current is used for the charging process.A regulator is installed on the rear end of the alternator. Two brushes conduct current through two slip rings. The current then flows
Caterpillar SIS machinery equipment:
Caterpillar SIS
G3520C Generator Set CWW00001-UP »
221-8452
PISTON GP
G3520C Generator Set CWY00001-UP »
221-8452
PISTON GP
G3520C Generator Set GZN00001-UP »
221-8452
PISTON GP
G3520C Generator Set GZM00001-UP »
221-8452
PISTON GP
G3520C Generator Set GZL00001-UP »
221-8452
PISTON GP
G3520C Generator Set GZK00001-UP »
221-8452
PISTON GP
G3520C Generator Set GZJ00001-UP »
221-8452
PISTON GP
G3520C GENERATOR SET B9P00001-UP »
221-8452
PISTON GP
G3520C Generator Set MAD00001-UP »
221-8452
PISTON GP
G3520C Generator Set HAT00001-UP »
221-8452
PISTON GP
G3520C Generator Set LGS00001-UP »
221-8452
PISTON GP
G3520C Generator Set RLP00001-UP »
221-8452
PISTON GP
G3520C Generator Set GZA00001-UP »
221-8452
PISTON GP
G3520C Generator Set GZB00001-UP »
221-8452
PISTON GP
G3520C Generator Set FZA00001-UP »
221-8452
PISTON GP
G3520C Generator Set FZB00001-UP »
221-8452
PISTON GP
G3520C Generator Set FZC00001-UP »
221-8452
PISTON GP
G3520C Generator Set FZD00001-UP »
221-8452
PISTON GP
G3520C Generator Set FZE00001-UP »
221-8452
PISTON GP
G3520C Generator Set FZF00001-UP »
221-8452
PISTON GP
G3520C Generator Set FZG00001-UP »
221-8452
PISTON GP
Parts piston Caterpillar catalog:
3331461
PISTON GP
G3516C, G3520C, PMG3516
G3516C, G3520C, PMG3516
2113218
PISTON GP
G3516C, G3520C
G3516C, G3520C
3331660
PISTON GP
G3520C
G3520C
2382721
PISTON & ROD GP
14M, 725, 730, 966H, C11, R1600H, R1700G, RM-300, TH35-C11I
14M, 725, 730, 966H, C11, R1600H, R1700G, RM-300, TH35-C11I
2128548
PISTON & ROD GP
318C, 320C, 320C FM, 320C L, 320D, 320D LRR, 321C, 323D L, 323D LN
318C, 320C, 320C FM, 320C L, 320D, 320D LRR, 321C, 323D L, 323D LN
9Y9498
PISTON & ROD GP
3406B
3406B
9N2613
PISTON & ROD GP
225, 3208, 613B
225, 3208, 613B
2365125
PISTON & ROD GP
242B, 247B, 3024C, C2.2
242B, 247B, 3024C, C2.2
1456690
PISTON & ROD GP
3054, 312B L, 315B L, 416C, 416D, 420D, 426C, 428C, 428D, 430D, 432D, 436C, 438C, 438D, 442D, 908
3054, 312B L, 315B L, 416C, 416D, 420D, 426C, 428C, 428D, 430D, 432D, 436C, 438C, 438D, 442D, 908
1306762
PISTON & ROD GP
416C, 428C
416C, 428C
4377173
PISTON & ROD GP
12M 3, 12M 3 AWD, 140M 3, 140M 3 AWD, 160M 3, 160M 3 AWD, 336F L, 966M, 966M XE, 972M, 972M XE, C9.3, D6T LGP, D6T LGPPAT
12M 3, 12M 3 AWD, 140M 3, 140M 3 AWD, 160M 3, 160M 3 AWD, 336F L, 966M, 966M XE, 972M, 972M XE, C9.3, D6T LGP, D6T LGPPAT
1300863
PISTON & ROD GP
16H, 365B, 365B II, 365B L, 730, 972G II, C-12, C12, MTC835, SBF214, SUF557
16H, 365B, 365B II, 365B L, 730, 972G II, C-12, C12, MTC835, SBF214, SUF557
8J2344
PISTON PUMP GROUP
225, 627B
225, 627B
3426366
PISTON & ROD GP
621H, 623H, 627H, 980K, 980K HLG, C13, C13 XQ350, CX31-C13I
621H, 623H, 627H, 980K, 980K HLG, C13, C13 XQ350, CX31-C13I
4P5403
PISTON & ROD GP
3406E, R2900
3406E, R2900