159600-2723 ZEXEL F 01G 29N 0KP BOSCH ADJUSTING DEVICE f01g29n0kp 1596002723


 

Information adjusting device

BOSCH F 01G 29N 0KP f01g29n0kp
ZEXEL 159600-2723 1596002723
159600-2723 ADJUSTING DEVICE
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Scheme ###:

1. [1] 159591-1921 DIAPHRAGM HOUSING
2. [4] 159596-2800 BLEEDER SCREW
3. [1] 159610-1400 SEAL RING
5. [1] 159597-6300 BLEEDER SCREW
6. [1] 026506-1040 GASKET
8. [2] 139514-0300 GASKET D18.6&14.2T1.6
9. [1] 029731-4680 EYE BOLT
15. [1] 159604-4124 ACTUATOR
16. [1] 159610-1300 SEAL RING
17. [4] 010206-3040 HEX-SOCKET-HEAD CAP SCREW
17. [4] 010206-3040 HEX-SOCKET-HEAD CAP SCREW
18. [1] 139306-0400 PLAIN WASHER
19. [4] 029320-6010 LOCKING WASHER
19. [4] 029320-6010 LOCKING WASHER
20. [3] 159595-5700 PLAIN WASHER
30. [1] 159911-1100 CLAMPING BAND
800S. [1] 159595-8801 COVER
801S. [1] 159610-1200 SEAL RING
802S. [4] 010206-3040 HEX-SOCKET-HEAD CAP SCREW
803S. [4] 029320-6010 LOCKING WASHER
804S. [1] 159911-4500 PLUG HOUSING

Include in #1:

Cross reference number

Zexel num
Bosch num
Firm num
Name
159600-2723 
F 01G 29N 0KP 
   
ADJUSTING DEVICE
K




Information:


This engine may be equipped with a 12 or 24 volt starting system. Use only equal voltage for boost starting. The use of a welder or higher voltage will damage the electrical system.
Charging System Components
Alternator
The alternator is driven by belts from the crankshaft pulley. This alternator is a three phase, self-rectifying charging unit, and the regulator is part of the alternator.This alternator design has no need for slip rings or brushes, and the only part that has movement is the rotor assembly. All conductors that carry current are stationary. The conductors are: the field winding, stator windings, six rectifying diodes, and the regulator circuit components.The rotor assembly has many magnetic poles like fingers with air space between each opposite pole. The poles have residual magnetism (like permanent magnets) that produce a small amount of magnetic lines of force (magnetic field) between the poles. As the rotor assembly begins to turn between the field winding and the stator windings, a small amount of alternating current (AC) is produced in the stator windings from the small magnetic lines of force made by the residual magnetism of the poles. This AC current is changed to direct current (DC) when it passes through the diodes of the rectifier bridge. Most of this current goes to charge the battery and to supply the low amperage circuit, and the remainder is sent on to the field windings. The DC current flow through the field windings (wires around an iron core) now increases the strength of the magnetic lines of force. These stronger lines of force now increase the amount of AC current produced in the stator windings. The increased speed of the rotor assembly also increases the current and voltage output of the alternator.The voltage regulator is a solid state (transistor, stationary parts) electronic switch. It feels the voltage in the system and switches on and off many times a second to control the field current (DC current to the field windings) for the alternator to make the needed voltage output.
Never operate the alternator without the battery in the circuit. Making or breaking an alternator connection with heavy load on the circuit can cause damage to the regulator.
Alternator Components
(1) Regulator. (2) Roller bearing. (3) Stator winding. (4) Ball bearing. (5) Rectifier bridge. (6) Field winding. (7) Rotor assembly. (8) Fan.Starting System Components
Solenoid
Typical Solenoid SchematicA solenoid is a magnetic switch that does two basic operations.a. Closes the high current starting motor circuit with a low current start switch circuit.b. Engages the starting motor pinion with the ring gear.The solenoid switch is made of an electromagnet (one to two sets of windings) around a hollow cylinder. There is a plunger (core) with a spring load inside the cylinder that can move forward and backward. When the start switch is closed and electricity is sent through the windings, a magnetic field is made that pulls the plunger forward in the cylinder. This moves the shift lever (connected to the rear of the plunger) to engage the pinion

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