106065-5310 ZEXEL 9 410 614 358 BOSCH FUEL-INJECTION PUMP 9410614358 1060655310 me716872


 

Information fuel-injection pump

BOSCH 9 410 614 358 9410614358
ZEXEL 106065-5310 1060655310
MITSUBISHI ME716872 me716872
106065-5310 FUEL-INJECTION PUMP
Rating:
11
Buy FUEL-INJECTION PUMP 106065-5310 zexel genuine, new aftermarket engine parts with delivery

Scheme ###:

1. [1] 134051-2120 PUMP HOUSING
1/30. [3] 029040-6020 STUD
1/45. [1] 134311-0000 SPACER RING
1/50. [12] 134138-0000 STUD
7. [6] 134142-9220 PLUNGER-AND-BARREL ASSY
7/1. [6] 134131-1920 FLANGE BUSHING
7/2. [6] 134101-6320 PLUNGER-AND-BARREL ASSY P48
7/3. [6] 134110-4420 DELIVERY-VALVE ASSEMBLY P43
7/4. [6] 134116-2400 FITTING
7/5. [6] 139722-0400 O-RING
7/6. [6] 134117-1400 FILLER PIECE
7/7. [6] 134112-0600 COILED SPRING
7/8. [6] 134115-0100 GASKET
7/9. [6] 029302-0140 PLAIN WASHER
7/10. [6] 134135-0400 CAPSULE
7/11. [6] 029602-0010 LOCKING WASHER
7/13. [6] 139729-0400 O-RING
7/14. [6] 139715-0400 O-RING
7/15. [6] 139715-0400 O-RING
23/1. [0] 139400-0900 SHIM T0.500
23/1. [0] 139400-1000 SHIM T0.525
23/1. [0] 139400-1100 SHIM T0.550
23/1. [0] 139400-1200 SHIM T0.575
23/1. [0] 139400-1300 SHIM T0.600
23/1. [0] 139400-1400 SHIM T0.625
23/1. [0] 139400-1500 SHIM T0.650
23/1. [0] 139400-1600 SHIM T0.675
23/1. [0] 139400-1700 SHIM T0.700
23/1. [0] 139400-1800 SHIM T0.725
23/1. [0] 139400-1900 SHIM T0.750
23/1. [0] 139400-2000 SHIM T0.775
23/1. [0] 139400-2100 SHIM T0.800
23/1. [0] 139400-2200 SHIM T0.825
23/1. [0] 139400-2300 SHIM T0.850
23/1. [0] 139400-2400 SHIM T0.875
23/1. [0] 139400-2500 SHIM T0.900
23/1. [0] 139400-2600 SHIM T0.925
23/1. [0] 139400-2700 SHIM T0.950
23/1. [0] 139400-2800 SHIM T0.975
23/1. [0] 139400-2900 SHIM T1.000
23/1. [0] 139400-3000 SHIM T1.025
23/1. [0] 139400-3100 SHIM T1.050
23/1. [0] 139400-3200 SHIM T1.075
23/1. [0] 139400-3300 SHIM T1.100
23/1. [0] 139400-3400 SHIM T1.125
23/1. [0] 139400-3500 SHIM T1.150
23/1. [0] 139400-3600 SHIM T1.175
23/1. [0] 139400-3700 SHIM T1.200
23/1. [0] 139400-3800 SHIM T1.225
23/1. [0] 139400-3900 SHIM T1.250
23/1. [0] 139400-4000 SHIM T1.275
23/1. [0] 139400-4100 SHIM T1.300
23/1. [0] 139400-4200 SHIM T1.325
23/1. [0] 139400-4300 SHIM T1.350
23/1. [0] 139400-4400 SHIM T1.375
23/1. [0] 139400-4500 SHIM T1.400
23/1. [0] 139400-4600 SHIM T1.425
23/1. [0] 139400-4700 SHIM T1.450
23/1. [0] 139400-4800 SHIM T1.475
23/1. [0] 139400-4900 SHIM T1.500
23/1. [0] 139400-5000 SHIM T1.525
23/1. [0] 139400-5100 SHIM T1.550
23/1. [0] 139400-5200 SHIM T1.575
23/1. [0] 139400-5300 SHIM T1.600
23/1. [0] 139400-5400 SHIM T1.625
23/1. [0] 139400-5500 SHIM T1.650
23/1. [0] 139400-5600 SHIM T1.675
23/1. [0] 139400-5700 SHIM T1.700
23/1. [0] 139400-5800 SHIM T1.725
23/1. [0] 139400-5900 SHIM T1.750
23/1. [0] 139400-6000 SHIM T1.775
23/1. [0] 139400-6100 SHIM T1.800
23/1. [0] 139400-6200 SHIM T1.825
23/1. [0] 139400-6300 SHIM T1.850
23/1. [0] 139400-6400 SHIM T1.875
23/1. [0] 139400-6500 SHIM T1.900
23/1. [0] 139400-6600 SHIM T1.925
23/1. [0] 139400-6700 SHIM T1.950
23/1. [0] 139400-6800 SHIM T1.975
23/1. [0] 139400-6800 SHIM T1.975
24. [12] 134132-0300 PLAIN WASHER
26. [12] 013021-0040 UNION NUT M10P1.5H8
30. [2] 134001-0000 BUSHING
30. [2] 134001-0000 BUSHING
32. [1] 134256-4500 CONTROL RACK
33. [1] 024030-2030 BEARING PIN
34. [1] 134222-0000 BUSHING
41. [6] 134241-0021 CONTROL SLEEVE
43. [6] 134216-0000 SLOTTED WASHER
44. [6] 134215-0400 COMPRESSION SPRING
45. [6] 134217-0500 SLOTTED WASHER
47. [6] 134200-0020 TAPPET
47/2. [6] 134204-0000 ROLLER
47/3. [6] 134205-0000 BUSHING
47/4. [6] 134203-0000 BEARING PIN
47/5. [6] 131206-0500 SLIDER
59. [1] 016650-2230 BEARING PLATE 4T-32205(NSK)
64/1. [0] 134303-0000 SHIM D59.8&43T1.2
64/1. [0] 134303-0100 SHIM D59.8&43T1.5
64/1. [0] 134303-0200 SHIM D59.8&43T1.8
64/1. [0] 134303-0300 SHIM D59.8&43T2.0
64/1. [0] 134303-0400 SHIM D59.8&43T0.6
67. [4] 029010-6810 BLEEDER SCREW
71. [1] 134371-1600 CAMSHAFT
74. [1] 134306-0100 BEARING SHELL
75. [2] 020106-2040 BLEEDER SCREW
79. [1] 016650-2230 BEARING PLATE 4T-32205(NSK)
80. [1] 134316-1700 COVER
81. [1] 139625-0000 PACKING RING
82/1. [0] 134314-0000 SHIM T0.1
82/1. [0] 134314-0100 SHIM T0.12
82/1. [0] 134314-0200 SHIM T0.14
82/1. [0] 134314-0300 SHIM T0.16
82/1. [0] 134314-0400 SHIM T0.18
82/1. [0] 134314-0500 SHIM T0.3
82/1. [0] 134314-0600 SHIM T0.5
83. [1] 029635-5010 O-RING
84. [1] 134563-0900 SLIDING PIECE
85. [1] 134043-0800 COVER
86. [1] 134042-1400 GASKET
87. [12] 012206-1640 FLAT-HEAD SCREW
88. [1] 134045-0100 CAPSULE
89. [1] 026524-2940 GASKET
93. [3] 139206-0400 UNION NUT
95. [1] 131041-0800 GASKET
96. [6] 134047-0000 CAPSULE
98. [1] 029470-5010 WOODRUFF KEY
111. [1] 134416-0100 COVER
112. [2] 014530-6540 TAB WASHER
113. [2] 021306-3010 FLAT-HEAD SCREW
118. [1] 134496-0600 POINTER
119. [2] 020006-1240 BLEEDER SCREW
147. [1] 029731-0180 EYE BOLT
148. [2] 026510-1340 GASKET
157. [1] 029731-4680 EYE BOLT
158. [2] 029341-4130 GASKET
167. [1] 131424-4420 OVER FLOW VALVE
168. [2] 029341-4130 GASKET

Include in #1:

106651-2321 as FUEL INJECTION PUMP

Cross reference number

Zexel num
Bosch num
Firm num
Name
106065-5310 
9 410 614 358 
NP-PE6P100/721RS3000 
ME716872  MITSUBISHI
FUEL-INJECTION PUMP
Q




Information:


Delco-Remy Alternator
(1) Regulator. (2) Roller bearing. (3) Stator winding. (4) Ball bearing. (5) Rectifier bridge. (6) Field winding. (7) Rotor assembly. (8) Fan.Alternator (Bosch)
The alternator is driven by V-belts from the crankshaft pulley. This alternator is a three phrase, self-rectifying charging unit, and the regulator is part of the alternator.The 7N9720 Alternator has an output of 37A. The 9W3043 Alternator has an output of 40A.
Bosch Alternator
(1) Fan. (2) Stator winding. (3) Field winding. (4) Regulator. (5) Ball bearing. (6) Roller bearing. (7) Rotor. (8) Rectifier assembly.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 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.Alternator (Nippondenso)
The Nippondenso alternator has three-phase, full-wave rectified output. It is brushless. The rotor and bearings are the only moving parts. There is a 24 volt, 9G4574 Alternator with 35 amp output and a 12 volt, 8T9900 Alternator with a 55 amp output.
9G4574 Nippondenso Alternator
(1) Fan. (2) Front frame assembly. (3) Stator assembly. (4) Rotor assembly. (5) Field winding (coil assembly). (6) Regulator assembly. (7) Condenser (suppression capacitor). (8) Rectifier assembly. (9) Rear frame assembly.When the engine is started and the rotor turns inside the stator windings, three-phase alternating current (AC) and rapidly rising voltage is generated.A small amount of alternating current (AC) is changed (rectified) to pulsating direct current (DC) by the exciter diodes on the rectifier assembly. Output current from these diodes adds to the initial current which flows through the rotor field windings from residual magnetism. This will make the rotor a stronger magnet and cause the alternator to become activated automatically. As rotor speed, current and voltages increase, the rotor field current increases enough until the alternator becomes fully activated.The main battery charging current is charged (rectified) from AC to DC by the

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