FUEL INJECTOR
DESCRIPTION
A separate fuel injector (Fig. 51) is used for each
individual cylinder.
OPERATION
The fuel injectors are electrical solenoids. The
injector contains a pintle that closes off an orifice at
the nozzle end. When electric current is supplied to
the injector, the armature and needle move a short
distance against a spring, allowing fuel to flow out
the orifice. Because the fuel is under high pressure, a
fine spray is developed in the shape of a pencil
stream. The spraying action atomizes the fuel, add-
ing it to the air entering the combustion chamber.
An individual fuel injector is used for each individ-
ual cylinder. The top (fuel entry) end of the injector is
attached into an opening on the fuel rail.
The nozzle (outlet) ends of the injectors are posi-
tioned into openings in the intake manifold just above
the intake valve ports of the cylinder head. The engine
wiring harness connector for each fuel injector is
equipped with an attached numerical tag (INJ 1, INJ 2
etc.). This is used to identify each fuel injector.
The injectors are energized individually in a
sequential order by the Powertrain Control Module
(PCM). The PCM will adjust injector pulse width by
switching the ground path to each individual injector
on and off. Injector pulse width is the period of time
that the injector is energized. The PCM will adjust
injector pulse width based on various inputs it
receives.
Battery voltage is supplied to the injectors through
the ASD relay.
The PCM determines injector pulse width based on
various inputs.
OPERATION - PCM OUTPUT
The nozzle ends of the injectors are positioned into
openings in the intake manifold just above the intake
valve ports of the cylinder head. The engine wiring
harness connector for each fuel injector is equipped
with an attached numerical tag (INJ 1, INJ 2 etc.).
This is used to identify each fuel injector with its
respective cylinder number.
The injectors are energized individually in a
sequential order by the Powertrain Control Module
(PCM). The PCM will adjust injector pulse width by
switching the ground path to each individual injector
on and off. Injector pulse width is the period of time
that the injector is energized. The PCM will adjust
injector pulse width based on various inputs it
receives.
Battery voltage (12 volts +) is supplied to the injec-
tors through the ASD relay. The ASD relay will shut-
down the 12 volt power source to the fuel injectors if
the PCM senses the ignition is on, but the engine is
not running. This occurs after the engine has not
been running for approximately 1.8 seconds.
The PCM determines injector on-time (pulse width)
based on various inputs.
DIAGNOSIS AND TESTING - FUEL INJECTOR
TEST
To perform a complete test of the fuel injectors and
their circuitry, use the DRB scan tool and refer to the
appropriate Powertrain Diagnostics Procedures man-
ual. To test the injector only, refer to the following:
Disconnect the fuel injector wire harness connector
from the injector. The injector is equipped with 2
electrical terminals (pins). Place an ohmmeter across
the terminals. Resistance reading should be approxi-
mately 12 ohms
6
1.2 ohms at 20°C (68°F).
REMOVAL
(1) Remove air cleaner assembly.
(2) Remove fuel injector rail assembly. Refer to
Fuel Injector Rail removal in this section.
(3) Remove the clip(s) retaining the injector(s) to
fuel rail (Fig. 30) or (Fig. 31).
(4) Remove injector(s) from fuel rail.
INSTALLATION
(1) Apply a small amount of engine oil to each fuel
injector o-ring. This will help in fuel rail installation.
(2) Install injector(s) and injector clip(s) to fuel
rail.
(3) Install fuel rail assembly. Refer to Fuel Injector
Rail installation.
(4) Install air cleaner.
(5) Start engine and check for leaks.
Fig. 51 Fuel Injector
1 - FUEL INJECTOR
2 - NOZZLE
3 - TOP (FUEL ENTRY)
BR/BE
FUEL INJECTION - GASOLINE
14 - 53
Summary of Contents for 2001 Ram 1500
Page 5: ...Fastener Identification 4 INTRODUCTION BR BE FASTENER IDENTIFICATION Continued...
Page 6: ...Fastener Strength BR BE INTRODUCTION 5 FASTENER IDENTIFICATION Continued...
Page 9: ...Metric Conversion Chart 8 INTRODUCTION BR BE METRIC SYSTEM Continued...
Page 97: ...Fig 21 Gear Tooth Contact Patterns 3 24 FRONT AXLE 216FBI BR BE FRONT AXLE 216FBI Continued...
Page 105: ...AXLE VACUUM SHIFT MOTOR CONT D 3 32 FRONT AXLE 216FBI BR BE AXLE VACUUM MOTOR Continued...
Page 130: ...Fig 21 Gear Tooth Contact Patterns BR BE FRONT AXLE 248FBI 3 57 FRONT AXLE 248FBI Continued...
Page 137: ...AXLE VACUUM SHIFT MOTOR CONT D 3 64 FRONT AXLE 248FBI BR BE AXLE VACUUM MOTOR Continued...
Page 151: ...Fig 1 9 1 4 Axle 3 78 REAR AXLE 9 1 4 BR BE REAR AXLE 9 1 4 Continued...
Page 161: ...Fig 14 Gear Tooth Contact Patterns 3 88 REAR AXLE 9 1 4 BR BE REAR AXLE 9 1 4 Continued...
Page 194: ...Fig 21 Gear Tooth Contact Patterns BR BE REAR AXLE 248RBI 3 121 REAR AXLE 248RBI Continued...
Page 225: ...Fig 21 Gear Tooth Contact Patterns 3 152 REAR AXLE 267RBI BR BE REAR AXLE 267RBI Continued...
Page 254: ...Fig 21 Gear Tooth Contact Pattern BR BE REAR AXLE 286RBI 3 181 REAR AXLE 286RBI Continued...
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Page 316: ...Fig 3 Clutch Components And Inspection BR BE CLUTCH 6 3 CLUTCH Continued...
Page 338: ...Fig 3 Cooling System Circulation Diesel Engine BR BE COOLING 7 3 COOLING Continued...
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Page 1128: ...Fig 3 3 9 5 2 5 9 LITER ENGINE BR BE 8W 95 SPLICE LOCATIONS 8W 95 5 SPLICE LOCATIONS Continued...
Page 1129: ...Fig 4 8 0 LITER ENGINE 8W 95 6 8W 95 SPLICE LOCATIONS BR BE SPLICE LOCATIONS Continued...
Page 1130: ...Fig 5 5 2 5 9 LITER ENGINE BR BE 8W 95 SPLICE LOCATIONS 8W 95 7 SPLICE LOCATIONS Continued...
Page 1135: ...Fig 12 INSTRUMENT PANEL 8W 95 12 8W 95 SPLICE LOCATIONS BR BE SPLICE LOCATIONS Continued...
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Page 1363: ...Fig 52 Engine Lubrication System 9 216 ENGINE 8 0L BR BE LUBRICATION Continued...
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Page 1483: ...Fig 10 Frame Dimensions 13 8 FRAME BUMPERS BR BE SPECIFICATIONS Continued...
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Page 1637: ...Fig 1 NV3500 Manual Transmission 21 2 MANUAL NV3500 BR BE MANUAL NV3500 Continued...
Page 1680: ...Fig 1 NV4500 Manual Transmissions BR BE MANUAL NV4500 21 45 MANUAL NV4500 Continued...
Page 1727: ...Fig 1 NV5600 Manual Transmission 21 92 MANUAL NV5600 BR BE MANUAL NV5600 Continued...
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Page 2577: ...SPECIFICATIONS WELD LOCATIONS BODY SIDE APERTURE CLUB CAB 23 4 BODY BR BE BODY Continued...
Page 2578: ...BODY SIDE APERTURE QUAD CAB BR BE BODY 23 5 BODY Continued...
Page 2579: ...BODY SIDE APERTURE QUAD CAB 23 6 BODY BR BE BODY Continued...
Page 2580: ...BODY SIDE APERTURE QUAD CAB BR BE BODY 23 7 BODY Continued...
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Page 2583: ...BODY SIDE APERTURE QUAD CAB 23 10 BODY BR BE BODY Continued...
Page 2584: ...CAB BACK PANEL CLUB CAB BR BE BODY 23 11 BODY Continued...
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Page 2586: ...FLOOR PAN CLUB CAB BR BE BODY 23 13 BODY Continued...
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Page 2592: ...FLOOR PAN QUAD CAB CARGO BOX OUTER SIDE PANEL BR BE BODY 23 19 BODY Continued...
Page 2593: ...CARGO BOX OUTER SIDE PANEL 23 20 BODY BR BE BODY Continued...
Page 2594: ...CARGO BOX INNER SIDE PANEL BR BE BODY 23 21 BODY Continued...
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Page 2602: ...FRONT FENDER AND INNER WHEELHOUSE BR BE BODY 23 29 BODY Continued...
Page 2603: ...COWL AND DASH PANEL 23 30 BODY BR BE BODY Continued...
Page 2604: ...ROOF PANEL CLUB CAB BR BE BODY 23 31 BODY Continued...
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Page 2617: ...STRUCTURAL ADHESIVE LOCATIONS ROOF PANELS REGULAR CAB 23 44 BODY BR BE BODY Continued...
Page 2618: ...CLUB CAB BR BE BODY 23 45 BODY Continued...
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Page 2620: ...BODY SEALER LOCATIONS APPLICATION METHODS BR BE BODY 23 47 BODY Continued...
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Page 2623: ...COWL AND DASH PANEL 23 50 BODY BR BE BODY Continued...
Page 2624: ...COWL AND DASH PANEL BR BE BODY 23 51 BODY Continued...
Page 2625: ...FLOOR PAN CAB BACK PANEL 23 52 BODY BR BE BODY Continued...
Page 2626: ...CAB REAR PANEL ROOF PANEL BR BE BODY 23 53 BODY Continued...
Page 2627: ...CARGO BOX 23 54 BODY BR BE BODY Continued...
Page 2628: ...DOORS BR BE BODY 23 55 BODY Continued...
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Page 2741: ...Fig 3 VACUUM CIRCUITS 24 12 CONTROLS BR BE CONTROLS Continued...
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Page 2827: ...Fig 1 NEW VEHICLE PREPARATION FORM 30 2 NEW VEHICLE PREPARATION BR BE INTRODUCTION Continued...
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Page 2889: ...Dealer Technical Operations 800 Chrysler Drive CIMS 486 02 76 Auburn Hills MI 48326 2757...