3724890 WIRING GP-CONTROL Caterpillar parts
950H, 962H, 966H, 972H, 980H
Rating:
Alternative (cross code) number:
CA3724890
372-4890
3724890
CA3724890
372-4890
3724890
WHEEL LOADER,
Information:
Brush Type Alternator
Illustration 2 g00698978
Brush Type Alternator (Typical Example) (1) Stator (2) Field coil (rotor) (3) RegulatorThis alternator design has a stator (1) that is stationary and a field coil (rotor) (2) that moves. The slip rings and the brushes are used for supplying excitation current to the rotating field coil.The brush type alternators can be a battery energized alternator or a self-energizing alternator. The self-energizing alternators rely on residual magnetism, which is similar to the brushless alternators. The battery energized alternators have less residual magnetism. These alternators use current from the batteries for field current in order to produce the magnetic lines of force. When the alternator's voltage exceeds the battery voltage, the charging system will be self-contained and the battery voltage will not be needed.The voltage regulator is a solid-state electronic switch. The voltage regulator senses the voltage of the system. The regulator then uses switches to control the current to the field windings. This controls the voltage output in order to meet the electrical demand of the system.Starting System Components
Solenoid
A solenoid is an electromagnetic switch that performs two basic functions:
The solenoid closes the high current starter motor circuit with a low current start switch circuit.
The solenoid engages the starter motor pinion with the ring gear.
Illustration 3 g00292316
Typical solenoid schematicThe solenoid has windings (one set or two sets) around a hollow cylinder. A plunger with a spring load device is inside of the cylinder. The plunger can move forward and backward. When the start switch is closed and electricity is sent through the windings, a magnetic field is created. The magnetic field pulls the plunger forward in the cylinder. This moves the shift lever in order for the pinion drive gear to engage with the ring gear. The front end of the plunger then makes contact across the battery and across the motor terminals of the solenoid. The starter motor then begins to turn the flywheel of the engine.When the start switch is opened, current no longer flows through the windings. The spring now returns the plunger to the original position. At the same time, the spring moves the pinion gear away from the flywheel.When two sets of windings in the solenoid are used, the windings are called the hold-in winding and the pull-in winding. Both of the windings wind around the cylinder for an equal amount of times. The pull-in winding uses a wire with a larger diameter in order to produce a stronger magnetic field. When the start switch is closed, part of the current flows from the battery through the hold-in winding. The remainder of the current flows through the pull-in windings, to the motor terminal, and then to the ground. When the solenoid is fully activated, the current is shut off through the pull-in windings. Only the smaller hold-in windings are in operation for the extended period of time that is necessary for the engine to be started. The solenoid will now take a smaller amount of current from the battery. Heat that is
Illustration 2 g00698978
Brush Type Alternator (Typical Example) (1) Stator (2) Field coil (rotor) (3) RegulatorThis alternator design has a stator (1) that is stationary and a field coil (rotor) (2) that moves. The slip rings and the brushes are used for supplying excitation current to the rotating field coil.The brush type alternators can be a battery energized alternator or a self-energizing alternator. The self-energizing alternators rely on residual magnetism, which is similar to the brushless alternators. The battery energized alternators have less residual magnetism. These alternators use current from the batteries for field current in order to produce the magnetic lines of force. When the alternator's voltage exceeds the battery voltage, the charging system will be self-contained and the battery voltage will not be needed.The voltage regulator is a solid-state electronic switch. The voltage regulator senses the voltage of the system. The regulator then uses switches to control the current to the field windings. This controls the voltage output in order to meet the electrical demand of the system.Starting System Components
Solenoid
A solenoid is an electromagnetic switch that performs two basic functions:
The solenoid closes the high current starter motor circuit with a low current start switch circuit.
The solenoid engages the starter motor pinion with the ring gear.
Illustration 3 g00292316
Typical solenoid schematicThe solenoid has windings (one set or two sets) around a hollow cylinder. A plunger with a spring load device is inside of the cylinder. The plunger can move forward and backward. When the start switch is closed and electricity is sent through the windings, a magnetic field is created. The magnetic field pulls the plunger forward in the cylinder. This moves the shift lever in order for the pinion drive gear to engage with the ring gear. The front end of the plunger then makes contact across the battery and across the motor terminals of the solenoid. The starter motor then begins to turn the flywheel of the engine.When the start switch is opened, current no longer flows through the windings. The spring now returns the plunger to the original position. At the same time, the spring moves the pinion gear away from the flywheel.When two sets of windings in the solenoid are used, the windings are called the hold-in winding and the pull-in winding. Both of the windings wind around the cylinder for an equal amount of times. The pull-in winding uses a wire with a larger diameter in order to produce a stronger magnetic field. When the start switch is closed, part of the current flows from the battery through the hold-in winding. The remainder of the current flows through the pull-in windings, to the motor terminal, and then to the ground. When the solenoid is fully activated, the current is shut off through the pull-in windings. Only the smaller hold-in windings are in operation for the extended period of time that is necessary for the engine to be started. The solenoid will now take a smaller amount of current from the battery. Heat that is
Caterpillar SIS machinery equipment:
Caterpillar SIS
950H Wheel Loader MXL00001-UP (MACHINE) POWERED BY C7 Engine »
372-4890
WIRING GP-CONTROL
950H Wheel Loader MXL00001-UP (MACHINE) POWERED BY C7 Engine »
372-4890
WIRING GP-CONTROL
962H Wheel Loader PCW00001-UP (MACHINE) POWERED BY C7 Engine »
372-4890
WIRING GP-CONTROL
962H Wheel Loader PCW00001-UP (MACHINE) POWERED BY C7 Engine »
372-4890
WIRING GP-CONTROL
962H Wheel Loader SSA00001-UP (MACHINE) POWERED BY C7.2 Engine »
372-4890
WIRING GP-CONTROL
962H Wheel Loader SSA00001-UP (MACHINE) POWERED BY C7.2 Engine »
372-4890
WIRING GP-CONTROL
950H Wheel Loader JLX00001-UP (MACHINE) POWERED BY C7.2 Engine »
372-4890
WIRING GP-CONTROL
950H Wheel Loader JLX00001-UP (MACHINE) POWERED BY C7.2 Engine »
372-4890
WIRING GP-CONTROL
966H Wheel Loader BJ600001-UP (MACHINE) POWERED BY C11 Engine »
372-4890
WIRING GP-CONTROL
966H Wheel Loader BJ600001-UP (MACHINE) POWERED BY C11 Engine »
372-4890
WIRING GP-CONTROL
972H Wheel Loader WXZ00001-UP (MACHINE) POWERED BY C13 Engine »
372-4890
WIRING GP-CONTROL
972H Wheel Loader WXZ00001-UP (MACHINE) POWERED BY C13 Engine »
372-4890
WIRING GP-CONTROL
966H Wheel Loader BS600001-UP (MACHINE) POWERED BY C11 Engine »
372-4890
WIRING GP-CONTROL
972H Wheel Loader NPE00001-UP (MACHINE) POWERED BY C13 Engine »
372-4890
WIRING GP-CONTROL
980H Wheel Loader PF800001-UP (MACHINE) POWERED BY C15 Engine »
372-4890
WIRING GP-CONTROL
980H Wheel Loader PF800001-UP (MACHINE) POWERED BY C15 Engine »
372-4890
WIRING GP-CONTROL
Caterpillar parts catalog:
Parts wiring Caterpillar catalog:
3306022
WIRING GP-ENGINE
120K, 120K 2, 12K, 140K, 140K 2, 160K, 324D, 324D FM, 324D FM LL, 324D L, 324D LN, 325D, 325D FM, 325D FM LL, 325D L, 325D MH, 326D L, 328D LCR, 329D, 329D L, 329D LN, 525C, 535C, 545C, 950H, 962H, AP...
120K, 120K 2, 12K, 140K, 140K 2, 160K, 324D, 324D FM, 324D FM LL, 324D L, 324D LN, 325D, 325D FM, 325D FM LL, 325D L, 325D MH, 326D L, 328D LCR, 329D, 329D L, 329D LN, 525C, 535C, 545C, 950H, 962H, AP...
2463264
WIRING GP-AIR CONDITIONER
824C, 980H
824C, 980H
3964980
WIRING GP-ELECTRONIC CONTROL
950H, 962H
950H, 962H
3974666
WIRING GP-CAB
966H, 972H
966H, 972H
3240678
WIRING GP-ETHER STARTING AID
950H, 962H, IT62H
950H, 962H, IT62H
3755759
WIRING GP-ELECTROHYDRAULIC
950H, 962H, 966H, 972H
950H, 962H, 966H, 972H
3540044
WIRING GP-ELECTRONIC CONTROL
345D L, 966H, 972H, 980C, D8N
345D L, 966H, 972H, 980C, D8N
2526386
WIRING GP-CAB RISER
325C FM, 330C FM
325C FM, 330C FM
4253624
WIRING GP-SENSOR
525C, 535C, 545C
525C, 535C, 545C
4189376
WIRING GP-CONTROL
966M, 966M XE, 972M, 972M XE, 980M, 982M
966M, 966M XE, 972M, 972M XE, 980M, 982M
6G8135
WIRING GP-SENSOR
776, 777
776, 777
3642785
WIRING GP-STABILIZER
M313D, M315D, M316D, M318D, M318D MH, M322D, M322D MH
M313D, M315D, M316D, M318D, M318D MH, M322D, M322D MH
4227815
WIRING GP-CONTROL
950K, 962K, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 980K, 980M, 982M
950K, 962K, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 980K, 980M, 982M
3216470
WIRING GP-TRANSMISSION CONTROL
773G, 773G LRC, 773G OEM, 775G, 775G LRC, 775G OEM
773G, 773G LRC, 773G OEM, 775G, 775G LRC, 775G OEM
3385965
WIRING GP-CAMERA
325D MH, 330D MH, M325D L MH, M325D MH
325D MH, 330D MH, M325D L MH, M325D MH
1192142
WIRING GP-SENSOR
769D, 771D
769D, 771D
8X7721
WIRING GP-CONSOLE
143H, 163H NA
143H, 163H NA
3807177
WIRING GP-CAB
950H, 966H, 972H
950H, 966H, 972H
1204484
WIRING GP-ENGINE
3508B, 3512B, 3516B
3508B, 3512B, 3516B