1994 mazda b3000 wiring diagram fuses
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Filed Under (Toyota) by admin on 28-09-2009
ELECTRICAL WIRING DIAGRAM
This Service Bulletin is to inform you of the Electrical Wiring Diagram for RAV4 equipped with 1CD-
FTV engine.RELAY LOCATIONS ELECTRICAL WIRING ROUTING OVERALL ELECTRICAL WIRING DIAGRAM CONNECTOR JOINING WIRE HARNESS AND WIRE HARNESS
Filed Under (Mazda) by admin on 10-10-2010
1994-1997 Ford Probe, Mazda MX3 with 4 cyl. & A/T 1994-2000 Mazda 626 with 4 cyl. & A/T 1998-2000 Mazda 626 with 6 cyl. & A/T 1995-2000 Ford Contour/Mercury Mystique with 6 cyl. & A/T 1999-2001 Mercury Cougar with A/T SUBJECT Vehicles with the Ford CD4E automatic transmission. CONDITION The driver’s side front CV axle has a 6-½ inch male inboard stub that fits into the transmission’s side gear. On the stub next to the housing seal surface is a carrier support surface that fits into the final drive sun gear inside the transmission (see figure 1). This sprocket assembly is chain driven with the reverse/overdrive sprocket by the planetary gear sets (see figure 2). The final drive sprocket assembly rides on the axle stub carrier support surface using a pressed, center bored bushing. This bushing wears the carrier support surface causing damage to the axle and eventually the transmission. SOLUTION If the carrier support surface of the axle being replaced appears rough and worn, then several possible failures need to be checked before replacing the axle or premature failure of the axle or possible damage to the transmission could occur. If the transmission’s internal oiling solenoid that lubricates this bushing fails, then the 2nd and 3rd gearshifts will not function. Although the Aftermarket lists this bushing, no tool exists to replace it. Ford only offer the bushing in a complete sprocket assembly making its replacement a very costly repair. The most common contributor to premature wear of this bushing is the vehicle not being within proper alignment specs. Without a four-wheel alignment, even though the front wheels may be centered to the rack, the rear thrust is pushing the front wheels causing stress on the front CV joints. The thrust forces acting on the front wheels while driving changes ALL the alignment specs resulting in the front wheels being in a constant turning action. This will wear the side gears and transmission seals as well as stressing this bushing. Another possible sign that alignment is affecting these items is a worn or torn inboard boot. Do not forget that worn motor mounts will also affect alignment thrust forces.
Filed Under (Ford) by admin on 27-04-2010
1993 Ford Taurus SHO Fig. 26: EEC-IV Wiring Diagram (3.2L SHO – 1 of 2) 1993 Ford Taurus SHO
Fig. 27: EEC-IV Wiring Diagram (3.2L SHO – 2 of 2)
Filed Under (Chevrolet) by admin on 19-03-2011
DEFOGGERS Fig. 1: Defogger Circuit HORN Fig. 2: Horn Circuit POWER ANTENNA Fig. 3: Power Antenna Circuit POWER DOOR LOCKS Fig. 4: Power Door Lock Circuit POWER SEATS Fig. 5: Power Seat Circuits POWER WINDOWS Fig. 6: Power Window Circuit, 2 Door RADIO Fig. 7: Mono Radio Circuit Fig. 8: Stereo Radio Circuit STARTING/CHARGING Fig. 9: Charging Circuit Fig. 10: Starting Circuit TRUNK, TAILGATE, FUEL DOOR Fig. 11: Trunk Release Circuit WIPER/WASHER Fig. 12: 2-Speed Wiper/Washer Circuit Fig. 13: Interval Wiper/Washer Circuit PART 2 Fig. 1: Engine Compartment Fig. 2: Engine Compartment (Cont.) Fig. 3: Fuse Block & Underdash Fig. 4: Underdash (Cont.) & Instrument Panel Fig. 5: Instrument Panel (Cont.) Fig. 6: Rear Compartment & Accessories SUB-SYSTEM WIRING DIAGRAMS CANADIAN MODELS Fig. 7: Kicker System Wiring Diagram (5.0L “B” Body A/C) Fig. 8: A/C Kicker System (3.8L “B” & “G” Body) Wiring Diagram Fig. 9: Electric Choke Heater (3.8L “B” & “G” Body) Wiring Diagram Fig. 10: Electric Choke Heater (3.8L “B” Body Without Gauges) Fig. 11: Electric Choke Heater (5.0L “B” & “G” Body) Fig. 12: Early Fuel Evap System (“B” & “G” Body) Wiring Diagram Fig. 13: TCC (“B” & “G” Body, 3 or 4-Speed Auto. Trans.)
Filed Under (Mazda) by admin on 21-06-2010
Cooling fan motors operate when Powertrain Control Module (PCM) determines fan operation depending on crankshaft position, Engine Coolant Temperature (ECT) sensor, vehicle speed, Intake Air Temperature (IAT) sensor, A/C switch and refrigerant pressure switch inputs. Cooling fans receive power through the cooling fan relay. Condenser fan operates only when A/C compressor clutch engages except 2004 models with turbocharger which uses dual fans for engine cooling with or without A/C operation. See WIRING DIAGRAMS . COMPONENT LOCATION For component locations, refer to illustrations. See Fig. 1 -Fig. 3 .