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TCS (Traction Control System)
This system monitors the amount of wheel spin of each
driven wheel. If wheel spin is detected, brake pressure is
applied to the slipping wheel(s) and engine power is
reduced to provide enhanced acceleration and stability.
BAS (Brake Assist System)
This system complements the Anti-Lock Brake System
(ABS) by optimizing the vehicle braking capability dur-
ing emergency braking maneuvers. This system detects
an emergency braking situation by sensing the rate and
amount of brake application and then applies optimum
pressure to the brakes. This can help reduce braking
distances.
Applying the brakes very quickly results in the best BAS
assistance. To receive the benefits of this system, you
must apply continuous brake pedal pressure during thestopping sequence. Do not reduce brake pedal pressure
unless braking is no longer desired. Once the brake pedal
is released, the BAS is deactivated.
WARNING!
The BAS (Brake Assist System) cannot prevent the
natural laws of physics from acting on the vehicle,
nor can it increase the traction afforded by prevailing
road conditions. The BAS cannot prevent accidents,
including those resulting from excessive speed in
turns, driving on very slippery surfaces, or hydro-
planing. Only a safe, attentive, and skillful driver can
prevent accidents. The capabilities of a BAS-
equipped vehicle must never be exploited in a reck-
less or dangerous manner that could jeopardize the
user’s safety or the safety of others.
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ESP (Electronic Stability Program)
This system enhances directional control and stability of
the vehicle under various driving conditions. The ESP
corrects for oversteering and understeering the vehicle
by applying the brake of the appropriate wheel. Engine
power may also be reduced to assist in counteracting the
condition of oversteer or understeer and help the vehicle
maintain the desired path.
The ESP uses sensors in the vehicle to determine the path
that the driver intends to steer the vehicle and compares
it to the actual path of the vehicle. When the actual path
does not match the intended path, the ESP applies the
brake of the appropriate wheel to assist in counteracting
the condition of oversteer or understeer.
•Oversteer - when the vehicle is turning more than
appropriate for the steering wheel position.
•Understeer - when the vehicle is turning less than
appropriate for the steering wheel position.
TheESP/TCS Indicator Light,located in the
instrument cluster, starts to flash as soon as the
tires lose traction and the ESP system becomes
active. TheESP/TCS Indicator Lightalso
flashes when TCS is active. If theESP/TCS Indicator
Lightbegins to flash during acceleration, ease up on the
accelerator and apply as little throttle as possible. Be sure
to adapt your speed and driving to the prevailing road
conditions.
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NOTE:When the ESP is switched off a feature of the
system remains active. This feature controls wheel spin
across an axle quite similarly to a limited slip differential.
If one wheel on an axle is spinning faster than the other,
the system will apply the brake of the spinning wheel
and allow more engine torque to be applied to the wheel
that is not spinning. To improve the vehicle’s traction
when driving with tire chains, or when starting-off in
deep snow, sand, or gravel, it may be desirable to switch
to the “Partial Off” mode by momentarily depressing the
“ESP OFF” button.WARNING!
With the ESP switched off, the enhanced vehicle
stability offered by ESP is unavailable. In an emer-
gency evasive maneuver, the ESP system will not
engage to assist in maintaining stability. The “Full
Off” ESP mode is intended for off-highway or off-
road only.
Synchronizing ESP
The Malfunction Indicator Light for the ESP is
combined with BAS indicator. If the power
supply is interrupted (battery disconnected or
discharged), the ESP/BAS Malfunction Indica-
tor Light may illuminate with the engine running. If this
should occur, turn the steering wheel completely to the
left and then to the right. The ESP/BAS Malfunction
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WARNING!
Because the front wheels steer the vehicle, it is
important that you do not exceed the maximum front
or rear GAWR. A dangerous driving condition can
result if either rating is exceeded. You could lose
control of the vehicle and have an accident.
Overloading
The load carrying components (axle, springs, tires,
wheels, etc.) of your vehicle will provide satisfactory
service as long as you do not exceed the GVWR and the
front and rear GAWR.
The best way to figure out the total weight of your
vehicle is to weigh it when it is fully loaded and ready for
operation. Weigh it on a commercial scale to ensure that
it is not over the GVWR.Figure out the weight on the front and rear of the vehicle
separately. It is important that you distribute the load
evenly over the front and rear axles.
Overloading can cause potential safety hazards and
shorten useful service life. Heavier axles or suspension
components do not necessarily increase the vehicle’s
GVWR.
Loading
To load your vehicle properly, first figure out its empty
weight, axle-by-axle and side-by-side. Store heavier items
down low and be sure you distribute their weight as
evenly as possible. Stow all loose items securely before
driving. If weighing the loaded vehicle shows that you
have exceeded either GAWR, but the total load is within
the specified GVWR, you must redistribute the weight.
Improper weight distribution can have an adverse effect
on the way your vehicle steers and handles and the way
the brakes operate.
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Sealing tire with TIREFIT
Turn on the hazard warning flashers.
1. Move the shift lever to the PARK position, turn off the
engine, and set the parking brake.
2. Remove the TIREFIT kit from the trunk.
3. Pull the power plug (2) and the TIREFIT sealant hose
(6) out from the TIREFIT kit.
4. Unscrew the valve cap from the valve on the deflated
tire.
5. Screw the fitting at the end of TIREFIT sealant hose (6)
coming from the sealant bottle (5) onto the tire valve.
6. Insert the power plug (2) into the power point on the
instrument panel.
7. Leave the parking brake set and the shift lever in
PARK and start the engine.8. Press the switch (3) on the air pump to I (ON). The air
pump should start to inflate the tire and the tire sealant
(white fluid) will flow from the sealant bottle (5) through
the TIREFIT sealant hose (6) and into the tire.
9. Allow the air pump to run for five minutes and then
read the pressure gauge (4). If the tire inflates to 26 psi
(1.8 bar) or greater, proceed to Step 19 of this procedure.
If not, proceed to the following step.
10. Press the AIR PUMP switch (3) to 0 (OFF). Then,
disconnect the TIREFIT system from the tire and place it
back in the vehicle.
11. Release the parking brake and drive the vehicle back
and forth approximately 30 ft (9.1 m) to distribute the
sealant more evenly within the tire.
12. Turn on the hazard warning flashers.
13. Move the shift lever to the PARK position, turn off
the engine, and set the parking brake.
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14. Disconnect the air pump hose (1) from the underside
of the sealant bottle (5) by flipping the hose valve open.
15. Connect the air pump hose valve to the tire valve and
flip the hose valve closed.
16. Leave the parking brake set and the shift lever in
PARK and start the engine.
17. Press the switch (3) on the air pump to I (ON). The air
pump should inflate the tire to at least 26 psi (1.8 bar)
within five minutes. If the tire inflates to this level,
proceed to the following step.NOTE:If a tire pressure of
26 psi (1.8 bar) is not obtained within five minutes, the
tire is too badly damaged. Do not attempt to drive the
vehicle further. Call for assistance.
18. With a tire pressure of no less than 26 psi (1.8 bar)
press the AIR PUMP switch (3) to 0 (OFF) and turn off the
engine. Then, disconnect the TIREFIT system from the
tire and place it back in the vehicle.19. Release the parking brake and drive the vehicle for
approximately 10 minutes to ensure optimum distribu-
tion of the tire sealant within the tire.
20. Turn on the hazard warning flashers.
21. Move the shift lever to the PARK position, turn off
the engine, and set the parking brake.
22. Disconnect the air pump hose (1) from the underside
of the sealant bottle (5) by flipping the hose valve open.
23. Connect the air pump hose valve to the tire valve and
flip the hose valve closed.
24. Check the pressure in the tire by reading the pressure
gauge (4). If the pressure is 19 psi (1.3 bar) or greater,
proceed to the following step.NOTE:If the pressure is
less than 19 psi (1.3 bar), the tire is too badly damaged.
Do not attempt to drive the vehicle further. Call for
assistance.
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25. Leave the parking brake set and the shift lever in
PARK and start the engine.
26. Inflate the tire to the pressure indicated on the tire
pressure label on the driver-side latch pillar by pressing
the switch (3) on the air pump to I (ON) and watching the
pressure gauge. When the tire pressure is set to the
pressure indicated on the tire pressure label, press the
AIR PUMP switch (3) to 0 (OFF) and turn off the engine.
27. Disconnect the TIREFIT system from the tire and
reinstall the valve cap.
28. Place the sealant kit back in the trunk of the vehicle.
Replace the sealant bottle at your nearest authorized
MOPARparts dealership.
29. Have the tire inspected at the earliest opportunity at
an authorized dealer or tire service center.NOTE:
•If a pressure of at least 19 psi (1.3 bar) cannot be
maintained in the tire, the tire is too badly damaged.
Do not attempt to drive the vehicle further. Call for
assistance.
•Do not operate the electric air pump for more than
eight minutes to avoid overheating. The air pump may
be used again once it has cooled down.
•Replace the TIREFIT sealant bottle (5) once every four
years to assure optimum operation of the system.
•If TIREFIT is liquid, clean water and a damp cloth will
remove the material from the vehicle or tire and wheel
components. Once TIREFIT sealing material has dried,
it can easily be peeled off and properly discarded.
•Do not exceed 55 mph (90 km/h) until the tire has
been inspected.
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3. Set the parking brake, place the automatic transmis-
sion in PARK, and turn the ignition switch to the LOCK
position on both vehicles.
4. Turn off the heater, radio, and all unnecessary electri-
cal loads.
5. Connect one end of the jumper cable to the remote
jump-start positive battery post(+)in the engine com-
partment. Connect the other end of the same cable to the
positive terminal of the booster battery. Refer to the
following illustration for jump-starting connections.
6. Connect the other cable, first to the negative terminal
of the booster battery andthen to the engine ground (-)
of the vehicle with the discharged battery.Make sure
you have a good contact on the engine ground. Refer to
the following illustration for jump-starting connections.
Jump-Starting
378 WHAT TO DO IN EMERGENCIES