105952-2292 ZEXEL 9 420 614 546 BOSCH ACTUATOR 9420614546 1059522292


 

Information actuator

BOSCH 9 420 614 546 9420614546
ZEXEL 105952-2292 1059522292
105952-2292 ACTUATOR
Rating:
24
Buy ACTUATOR 105952-2292 zexel genuine, new aftermarket engine parts with delivery

Scheme ###:

1. [1] 159560-0100 GOVERNOR HOUSING
2. [8] 139006-4100 BLEEDER SCREW
3. [1] 029621-7050 PACKING RING
4. [1] 159564-0000 COILED SPRING
5. [1] 159564-4000 SLOTTED WASHER
6. [1] 159564-4100 SLOTTED WASHER
7. [1] 159564-7321 CONNECTOR
8. [1] 020105-1240 BLEEDER SCREW M5P0.8L12
9. [1] 159564-0501 PLATE
9B. [1] 159564-6500 PLATE
9C. [1] 159584-5200 PLATE
10. [1] 020105-1240 BLEEDER SCREW M5P0.8L12
11. [1] 159579-3121 ACTUATOR
12. [2] 020106-4040 BLEEDER SCREW
13. [1] 159561-0520 GOVERNOR COVER
14. [4] 010006-7040 BLEEDER SCREW M6P1L70
15. [2] 010006-5540 BLEEDER SCREW M6P1L55 4T
16. [8] 014110-6440 LOCKING WASHER
16. [8] 014110-6440 LOCKING WASHER
16. [8] 014110-6440 LOCKING WASHER
17. [1] 154371-5600 GASKET
18. [1] 154390-0400 GASKET
19. [1] 154390-0500 GASKET
20. [1] 153021-6300 CAP
21. [1] 026524-3040 GASKET
22. [1] 029731-4680 EYE BOLT
23. [2] 139514-0300 GASKET
27. [2] 139006-1300 BLEEDER SCREW M6P1L76
80. [1] 159586-0100 TOOTHED GEAR
81. [1] 014111-2420 LOCKING WASHER
82. [1] 013031-2120 UNION NUT
83. [1] 025803-1310 WOODRUFF KEY
900S. [1] 025803-1310 WOODRUFF KEY
901S. [1] 025803-1610 WOODRUFF KEY

Include in #1:

106873-3722 as GOVERNOR

Cross reference number

Zexel num
Bosch num
Firm num
Name
105952-2292 
9 420 614 546 
   
ACTUATOR
K




Information:

Fuel Pressure Input Circuit
Fuel pressure is monitored after the filter by the fuel pressure sensor which is located on the fuel filter housing. The 5 Volt DC operating voltage for this sensor is supplied by the ECM. The output of the fuel pressure sensor is a .5 to 4.5 Volts DC signal. The voltage is dependent upon fuel pressure and is interpreted by the ECM as fuel pressure. If fuel pressure is less than 445 kPa (65 psi) at rated rpm, the "check engine" light is turned on.Engine Electrical System
The electrical system can have three separate circuits: the charging circuit, the starting circuit and the low amperage circuit. Some of the electrical system components are used in more than one circuit. The battery (batteries), circuit breaker, ammeter, cables and wires from the battery are all common in each of the circuits.The charging circuit is in operation when the engine is running. An alternator makes electricity for the charging circuit. A voltage regulator in the circuit controls the electrical output to keep the battery at full charge.The starting circuit is in operation only when the start switch is activated.The low amperage circuit and the charging circuit are both connected through the ammeter. The starting circuit is not connected through the ammeter.Charging System Components
Alternator
The alternator is driven by 2 vee 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 magnet-like 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

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