•
The transmission fluid temperature is below 10°
C (50° F) or above 121° C (250° F).
•
The shift to THIRD is not yet complete.
•
Vehicle speed is too low for the 3-4 shift to occur.
•
Battery temperature is below -5° C (23° F).
SOLENOID SWITCH VALVE
DESCRIPTION
The Solenoid Switch Valve (SSV) is located in the
valve body and controls the direction of the transmis-
sion fluid when the L/R-TCC solenoid is energized.
OPERATION
The Solenoid Switch Valve controls line pressure
from the LR-TCC solenoid. In 1st gear, the SSV will
be in the downshifted position, thus directing fluid to
the L/R clutch circuit. In 2nd, 3rd, and 4th, the sole-
noid switch valve will be in the upshifted position
and directs the fluid into the torque converter clutch
(TCC) circuit.
When shifting into 1st gear, a special hydraulic
sequence is performed to ensure SSV movement into
the downshifted position. The L/R pressure switch is
monitored to confirm SSV movement. If the move-
ment is not confirmed (the L/R pressure switch does
not close), 2nd gear is substituted for 1st. A DTC will
be set after three unsuccessful attempts are made to
get into 1st gear in one given key start.
SOLENOIDS
DESCRIPTION
The typical electrical solenoid used in automotive
applications is a linear actuator. It is a device that
produces motion in a straight line. This straight line
motion can be either forward or backward in direc-
tion, and short or long distance.
A solenoid is an electromechanical device that uses
a magnetic force to perform work. It consists of a coil
of wire, wrapped around a magnetic core made from
steel or iron, and a spring loaded, movable plunger,
which performs the work, or straight line motion.
The solenoids used in transmission applications
are attached to valves which can be classified as nor-
mally open or normally closed. The normally
open solenoid valve is defined as a valve which
allows hydraulic flow when no current or voltage is
applied to the solenoid. The normally closed sole-
noid valve is defined as a valve which does not allow
hydraulic flow when no current or voltage is applied
to the solenoid. These valves perform hydraulic con-
trol functions for the transmission and must there-
fore be durable and tolerant of dirt particles. For
these reasons, the valves have hardened steel pop-
pets and ball valves. The solenoids operate the valves
directly, which means that the solenoids must have
very high outputs to close the valves against the siz-
able flow areas and line pressures found in current
transmissions. Fast response time is also necessary
to ensure accurate control of the transmission.
The strength of the magnetic field is the primary
force that determines the speed of operation in a par-
ticular solenoid design. A stronger magnetic field will
cause the plunger to move at a greater speed than a
weaker one. There are basically two ways to increase
the force of the magnetic field:
•
Increase the amount of current applied to the
coil or
•
Increase the number of turns of wire in the coil.
The most common practice is to increase the num-
ber of turns by using thin wire that can completely
fill the available space within the solenoid housing.
The strength of the spring and the length of the
plunger also contribute to the response speed possi-
ble by a particular solenoid design.
A solenoid can also be described by the method by
which it is controlled. Some of the possibilities
include variable force, pulse-width modulated, con-
stant ON, or duty cycle. The variable force and pulse-
width modulated versions utilize similar methods to
control the current flow through the solenoid to posi-
tion the solenoid plunger at a desired position some-
where between full ON and full OFF. The constant
ON and duty cycled versions control the voltage
across the solenoid to allow either full flow or no flow
through the solenoid’s valve.
OPERATION
When an electrical current is applied to the sole-
noid coil, a magnetic field is created which produces
an attraction to the plunger, causing the plunger to
move and work against the spring pressure and the
load applied by the fluid the valve is controlling. The
plunger is normally directly attached to the valve
which it is to operate. When the current is removed
from the coil, the attraction is removed and the
plunger will return to its original position due to
spring pressure.
The plunger is made of a conductive material and
accomplishes this movement by providing a path for
the magnetic field to flow. By keeping the air gap
between the plunger and the coil to the minimum
necessary to allow free movement of the plunger, the
magnetic field is maximized.
21 - 520
AUTOMATIC TRANSMISSION - 45RFE
AN
SHIFT MECHANISM (Continued)
Summary of Contents for Dakota 2001
Page 7: ...Fig 7 FASTENER IDENTIFICATION 6 INTRODUCTION AN FASTENER USAGE Continued...
Page 8: ...Fig 8 FASTENER STRENGTH AN INTRODUCTION 7 FASTENER USAGE Continued...
Page 10: ...Fig 9 METRIC CONVERSION CHART AN INTRODUCTION 9 METRIC SYSTEM Continued...
Page 27: ......
Page 68: ...Fig 1 C V Drive Shaft Components AN HALF SHAFT 3 13 HALF SHAFT Continued...
Page 88: ...Fig 19 Gear Tooth Contact Patterns AN FRONT AXLE C205F 3 33 FRONT AXLE C205F Continued...
Page 112: ...Fig 13 Gear Tooth Contact Patterns AN REAR AXLE 8 1 4 3 57 REAR AXLE 8 1 4 Continued...
Page 134: ...Fig 1 9 1 4 Axle AN REAR AXLE 9 1 4 3 79 REAR AXLE 9 1 4 Continued...
Page 143: ...Fig 11 Gear Tooth Contact Patterns 3 88 REAR AXLE 9 1 4 AN REAR AXLE 9 1 4 Continued...
Page 208: ...Fig 3 Clutch Components And Inspection AN CLUTCH 6 3 CLUTCH Continued...
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Page 1010: ...Fig 8 INSTRUMENT PANEL AN 8W 95 SPLICE LOCATIONS 8W 95 7 SPLICE LOCATIONS Continued...
Page 1012: ...Fig 11 CHASSIS SPLICES AN 8W 95 SPLICE LOCATIONS 8W 95 9 SPLICE LOCATIONS Continued...
Page 1013: ...Fig 12 RIGHT FENDER AREA 8W 95 10 8W 95 SPLICE LOCATIONS AN SPLICE LOCATIONS Continued...
Page 1014: ...Fig 13 FRONT DOOR SPLICES AN 8W 95 SPLICE LOCATIONS 8W 95 11 SPLICE LOCATIONS Continued...
Page 1015: ......
Page 1081: ...Fig 67 Oil Lubrication System 2 5L Engine 9 52 ENGINE 2 5L AN LUBRICATION Continued...
Page 1322: ...4X4 FRAME SIDE VIEW AN FRAME BUMPERS 13 9 FRAME Continued...
Page 1327: ......
Page 1443: ...Fig 1 NV3500 Manual Transmission 21 34 MANUAL NV3500 AN MANUAL NV3500 Continued...
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Page 2027: ...SPECIFICATIONS WELD LOCATIONS FRONT FENDER AND INNER WHEELHOUSE 23 4 BODY AN BODY Continued...
Page 2028: ...ROOF PANEL REGULAR CAB AN BODY 23 5 BODY Continued...
Page 2029: ...ROOF PANEL CLUB CAB 23 6 BODY AN BODY Continued...
Page 2030: ...BODY SIDE APERTURE REGULAR CAB AN BODY 23 7 BODY Continued...
Page 2031: ...BODY SIDE APERTURE REGULAR CAB 23 8 BODY AN BODY Continued...
Page 2032: ...BODY SIDE APERTURE REGULAR CAB AN BODY 23 9 BODY Continued...
Page 2033: ...BODY SIDE APERTURE REGULAR CAB 23 10 BODY AN BODY Continued...
Page 2034: ...BODY SIDE APERTURE CLUB CAB AN BODY 23 11 BODY Continued...
Page 2035: ...BODY SIDE APERTURE CLUB CAB 23 12 BODY AN BODY Continued...
Page 2036: ...BODY SIDE APERTURE CLUB CAB AN BODY 23 13 BODY Continued...
Page 2037: ...BODY SIDE APERTURE CLUB CAB 23 14 BODY AN BODY Continued...
Page 2038: ...CAB BACK PANEL REGULAR CAB AN BODY 23 15 BODY Continued...
Page 2039: ...CAB BACK PANEL CLUB CAB 23 16 BODY AN BODY Continued...
Page 2040: ...FLOOR PAN REGULAR CAB AN BODY 23 17 BODY Continued...
Page 2041: ...FLOOR PAN REGULAR CAB 23 18 BODY AN BODY Continued...
Page 2042: ...FLOOR PAN CLUB CAB AN BODY 23 19 BODY Continued...
Page 2043: ...FLOOR PAN CLUB CAB 23 20 BODY AN BODY Continued...
Page 2044: ...FLOOR PAN CLUB CAB AN BODY 23 21 BODY Continued...
Page 2045: ...COWL AND DASH PANEL 23 22 BODY AN BODY Continued...
Page 2046: ...COWL AND DASH PANEL AN BODY 23 23 BODY Continued...
Page 2047: ...COWL AND DASH 23 24 BODY AN BODY Continued...
Page 2048: ...CARGO BOX INNER SIDE PANEL AN BODY 23 25 BODY Continued...
Page 2049: ...CARGO BOX INNER SIDE PANEL 23 26 BODY AN BODY Continued...
Page 2050: ...CARGO BOX INNER SIDE PANEL AN BODY 23 27 BODY Continued...
Page 2051: ...CARGO BOX FRONT PANELS 23 28 BODY AN BODY Continued...
Page 2052: ...CARGO BOX FLOOR AN BODY 23 29 BODY Continued...
Page 2053: ...CARGO BOX FLOOR 23 30 BODY AN BODY Continued...
Page 2057: ...REAR QUARTER PANEL EXTENDED CAB 23 34 BODY AN BODY Continued...
Page 2058: ...CARGO BOX INNER AND OUTER PANEL AN BODY 23 35 BODY Continued...
Page 2059: ...SEALER LOCATIONS APPLICATION METHODS 23 36 BODY AN BODY Continued...
Page 2060: ...SEALER LOCATION AN BODY 23 37 BODY Continued...
Page 2061: ...APPLICATION CUT AWAY 23 38 BODY AN BODY Continued...
Page 2062: ...COWL AND DASH PANEL AN BODY 23 39 BODY Continued...
Page 2063: ...COWL AND DASH PANEL 23 40 BODY AN BODY Continued...
Page 2064: ...FLOOR PAN AN BODY 23 41 BODY Continued...
Page 2065: ...CAB REAR PANEL 23 42 BODY AN BODY Continued...
Page 2066: ...CAB REAR PANEL AN BODY 23 43 BODY Continued...
Page 2067: ...ROOF PANEL 23 44 BODY AN BODY Continued...
Page 2068: ...CARGO BOX AN BODY 23 45 BODY Continued...
Page 2069: ...CARGO BOX 23 46 BODY AN BODY Continued...
Page 2070: ...DOORS AN BODY 23 47 BODY Continued...
Page 2071: ...BODY GAP AND FLUSH MEASUREMENTS 23 48 BODY AN BODY Continued...
Page 2072: ...BODY GAP AND FLUSH AN BODY 23 49 BODY Continued...
Page 2074: ...BODY GAP AND FLUSH QUAD CAB AN BODY 23 51 BODY Continued...
Page 2075: ...BODY GAP AND FLUSH QUAD CAB 23 52 BODY AN BODY Continued...
Page 2077: ...BODY GAP AND FLUSH CARGO BOX 23 54 BODY AN BODY Continued...
Page 2078: ...BODY OPENING DIMENSIONS WINDSHIELD OPENING DOOR OPENING AN BODY 23 55 BODY Continued...
Page 2079: ...QUARTER WINDOW OPENING ENGINE COMPARTMENT OPENING 23 56 BODY AN BODY Continued...
Page 2080: ...BACKLITE OPENING AN BODY 23 57 BODY Continued...
Page 2249: ...Fig 1 NEW VEHICLE PREPARATION FORM 30 2 NEW VEHICLE PREPARATION AN INTRODUCTION Continued...
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Page 2307: ...Dealer Technical Operations 800 Chrysler Drive CIMS 486 02 76 Auburn Hills MI 48326 2757...