
Running Out of Fuel
....................................142
Refueling .........................................................
144
Fuel Consumption ......................................
146
Engine Emission Control
Emission Law ................................................
148
Catalytic Converter .....................................
149
Transmission
Automatic Transmission ...........................
152
Four-Wheel Drive
Principle of Operation ................................
156
Using Four-Wheel Drive ............................
156
Rear Axle
Electronic Locking Differential ...............
163
Brakes
General Information ...................................
165
Hints on Driving With Anti-Lock Brakes ........................................................................\
.
165
Parking Brake ................................................
166
Hill Start Assist .............................................
166
Traction Control
Principle of Operation ...............................
168
Using Traction Control ..............................
168
Stability Control
Principle of Operation ...............................
169
Using Stability Control ...............................
170
Terrain Control
Principle of Operation ................................
172
Trail Control
About Trail Control ......................................
174
Switching Trail Control On and Off .......
174
Setting the Trail Control Speed ..............
174Canceling the Set Speed
..........................
174
Trail Control Indicators ...............................
174
Trail Control – Troubleshooting ..............
175
Parking Aids
Principle of Operation ................................
176
Rear Parking Aid ...........................................
176
Front Parking Aid ..........................................
177
Rear View Camera .......................................
178
Cruise Control
Principle of Operation ................................
182
Using Cruise Control ...................................
182
Using Adaptive Cruise Control ...............
183
Driving Aids
Driver Alert .....................................................
190
Lane Keeping System .................................
191
Blind Spot Information System .............
196
Cross Traffic Alert ........................................
199
Steering ..........................................................
202
Pre-Collision Assist ....................................
203
Load Carrying
Load Limit ......................................................
207
Roof Racks and Load Carriers ..................
211
Load Retaining Fixtures ..............................
211
Tailgate
Tailgate Lock ..................................................
213
Manual Tailgate ............................................
213
Removing the Tailgate ...............................
213
Towing
Towing a Trailer .............................................
215
Trailer Sway Control ...................................
216
Recommended Towing Weights ...........
216
Essential Towing Checks ..........................
218
Towing the Vehicle on Four Wheels ......
221
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PRINCIPLE OF OPERATION
The four-wheel drive system in your vehicle
is a part-time system activated using the
rotary switch mounted in the center
console. In normal rear-wheel drive, the 2H
drive operation system directs torque to
the rear axle. Moving the switch to 4H or
4L directs drive torque to both the front
and rear axles, providing four-wheel drive.
Depending on your vehicle, further
four-wheel drive options may be available
on the switch panel located on the center
console.
USING FOUR-WHEEL DRIVE
Note:
For important information regarding
the safe operation of this type of vehicle,
see General Information in the Wheels and
Tires chapter.
Note: Do not use 4H or 4L mode on dry,
hard surfaced roads. Doing so can produce
excessive noise, increase tire wear and may
damage drive components. 4H or 4L mode
is only intended for consistently slippery or
loose surfaces. Use of 4L mode on these
surfaces may produce some noise, such as
occasional clunks, but should not damage
drive components.
Note: Selecting 4L when your vehicle is
moving, should not perform a shift until your
vehicle is stationary. This is normal and
should be no reason for concern. Refer to
Shifting to or from 4L (4X4 Low) for proper
operation.
Note: You can switch on and switch off the
electronic locking differential by pressing
the locking differential button. See
Electronic Locking Differential (page 163). 4WD Indicator Lights
Note:
When a 4X4 system fault is present,
the system can typically remain in whichever
4X4 mode was selected prior to the fault
condition occurring. It should not default to
4X2 in all circumstances. When the warning
displays, have your vehicle serviced by an
authorized dealer.
4X2 Momentarily illuminates when
you select 2H.
4X4 HIGH Continuously illuminates when
you select 4H.
4X4 LOW Continuously illuminates when
you select 4L.
CHECK 4X4 Displays when a 4X4 fault is
present.
Using the Electronic Shift on the
Fly 4WD system 156
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After driving through mud, clean off residue
stuck to rotating driveshafts and tires.
Excess mud stuck on tires and rotating
driveshafts can cause an imbalance that
could damage drive components.
Water
If you must drive through high water, drive
slowly. Traction or brake capability may
be limited.
When driving through water, determine the
depth and avoid water higher than the
bottom of the hubs. If the ignition system
gets wet, your vehicle may stall.
Once through water, try the brakes. Wet
brakes do not stop your vehicle as
effectively as dry brakes. Drying improves
by applying light pressure to the brake
pedal when slowly moving.
Note:
Driving through deep water may
damage the transmission. If the front or rear
axle is submerged in water, the axle
lubricant and power transfer unit lubricant
should be checked and changed if
necessary. “Tread Lightly
” is an educational program
designed to increase public awareness of
land-use regulations and responsibilities
in our nations wilderness areas. Ford Motor
Company joins the U.S. Forest Service and
the Bureau of Land Management in
encouraging you to help preserve our
national forest and other public and private
lands by “treading lightly. ” Driving on Hilly or Sloping Terrain
Although natural obstacles may make it
necessary to travel diagonally up or down
a hill or steep incline, you should drive
straight up or straight down.
Note:
Avoid turning on steep slopes or
hills. A danger lies in losing traction; slipping
sideways and possible vehicle roll over.
Whenever driving on a hill, determine
beforehand the route you intend to use. Do
not drive over the crest of a hill without
seeing what conditions are on the other
side. Do not drive in reverse over a hill
without the aid of an observer.
When climbing a steep slope or hill, start
in a lower gear rather than downshifting to
a lower gear from a higher gear once the
ascent has started. This reduces strain on
the engine and the possibility of stalling.
If your vehicle stalls, do not try to turn
around because this could cause vehicle
roll over. It is better to reverse back to a
safe location.
Apply just enough power to the wheels to
climb the hill. Too much power could cause
the tires to slip, spin or lose traction,
resulting in loss of vehicle control. 160
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ELECTRONIC LOCKING
DIFFERENTIAL (IF EQUIPPED)
Note: Do not operate the system on dry
hard surface roads. Doing so could lead to
excessive tire noise and wear. Use the
system only on consistently slippery or loose
surfaces.
The system locks the left and right portions
of the rear axle together to form a solid
driving axle, resulting in increased rear
wheel traction in certain conditions.
Press and hold the electronic differential
lock button for 2 seconds to activate the
system.
Note: The lock button is on the center
console. The electronic differential lock can lock
and unlock when the internal gears are
aligned and no torque load is placed on
the differential. To aid alignment, drive the
vehicle in a straight line with the
accelerator pedal released. Alternatively,
drive slowly forward and backward while
moving the steering wheel from side to side
to allow the electronic differential lock to
lock. High vehicle speed and high accelerator
pedal application inhibit the electronic
locking differential system engagement.
Follow the instruction on the instrument
cluster for engagement and
disengagement.
Note:
You can use the system in any drive
mode 2H, 4H or 4L.
Note: When you engage the system, the
Electronic Stability Program (ESP) functions
such as Stability Control, Traction Control,
Hill Descent Control, Emergency stop signal,
Hill Start Assist and Trailer Sway Control
are deactivated, the ESP Off indicator
illuminates, and the HDC on indicator turns
off.
Note: When the anti-lock braking system
is operating, the system disengages.
The electronic locking differential system
can affect various terrain modes. See
Principle of Operation
(page 172).
Operating Electronic Locking
Differential with Spare or
Mismatched Tires
The size of the spare tire can affect the
performance of the electronic locking
differential system. When there is a
significant size difference between the two
rear tires, you could have limited electronic
locking differential functionality. If your
electronic locking differential has difficulty
disengaging, release your accelerator pedal
and turn the steering wheel in the opposite
direction while rolling forward.
Note: We recommend that you engage and
disengage the electronic locking differential
when stopped, and a spare tire is mounted
on the rear axle.
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Electronic Locking Differential Engagement Speed and Availability
Automatic Re-
Engagement Speed
Automatic Disen-
gage Speed
Engagement Speed
Terrain Modes (4X4
Modes
20 mph (30 km/h)
25 mph (41 km/h)
20 mph (30 km/h)
Normal (2H, 4H)
20 mph (30 km/h)
25 mph (41 km/h)
20 mph (30 km/h)
grass/Gravel/Snow
(4H)
20 mph (30 km/h)
25 mph (41 km/h)
20 mph (30 km/h)
Mud/Ruts (4H)
55 mph (90 km/h)
60 mph (100 km/h)
55 mph (90 km/h)
Sand (4H)
Automatic Re-
Engagement Speed
Automatic Disen-
gage Speed
Engagement Speed
4X4 Mode
No set Speed
No set Speed
No set Speed
4L
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is the maximum payload for your
vehicle as built by the assembly
plant. If you install any additional
equipment on your vehicle, you
must determine the new payload.
Subtract the weight of the
equipment from the payload listed
on the Tire and Loading label.
When towing, trailer tongue
weight or king pin weight is also
part of payload.
WARNING: The
appropriate loading capacity of
your vehicle can be limited either
by volume capacity (how much
space is available) or by payload
capacity (how much weight the
vehicle should carry). Once you
have reached the maximum
payload of your vehicle, do not
add more cargo, even if there is
space available. Overloading or
improperly loading your vehicle
can contribute to loss of vehicle
control and vehicle rollover.
GAWR (Gross Axle Weight
Rating)
GAWR is the maximum allowable
weight that a single axle (front or
rear) can carry. These numbers
are on the Safety Compliance
Certification label. The label is
located on the door hinge pillar,
door-latch post, or the door edge
that meets the door-latch post,
next to the driver seating position. The total load on each axle must
never exceed its Gross Axle
Weight Rating.
GVWR (Gross Vehicle Weight
Rating)
GVWR is the maximum allowable
weight of the fully loaded vehicle.
This includes all options,
equipment, passengers and cargo.
It appears on the Safety
Compliance Certification label.
The label is located on the door
hinge pillar, door-latch post, or the
door edge that meets the
door-latch post, next to the driver
seating position.
The gross vehicle weight must
never exceed the Gross Vehicle
Weight Rating.
Safety Compliance Certification Label
Example:
208
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- 1200 = - 240 pounds. No, you do
not have enough cargo capacity
to carry that much weight. In
metric units, the calculation would
be: 635 kilograms - (2 x 99
kilograms) - (12 x 45 kilograms) =
635 - 198 - 540 = -103 kilograms.
You will need to reduce the load
weight by at least 240 pounds
(104 kilograms). If you remove
three 100-pound (45-kilogram)
cement bags, then the load
calculation would be:1400 - (2 x
220) - (9 x 100) = 1400 - 440 -
900 = 60 pounds. Now you have
the load capacity to transport the
cement and your friend home. In
metric units, the calculation would
be: 635 kilograms - (2 x 99
kilograms) - (9 x 45 kilograms) =
635 - 198 - 405 = 32 kilograms.
The above calculations also
assume that the loads are
positioned in your vehicle in a
manner that does not overload
the front or the rear gross axle
weight rating specified for your
vehicle on the Safety Compliance
Certification label.
Special Loading Instructions
for Owners of Pick-up Trucks
and Utility-type Vehicles
WARNING: When loading
the roof racks, we recommend
you evenly distribute the load,
as well as maintain a low center
of gravity. Loaded vehicles, with
higher centers of gravity, may handle differently than unloaded
vehicles. Take extra precautions,
such as slower speeds and
increased stopping distance,
when driving a heavily loaded
vehicle.
ROOF RACKS AND LOAD
CARRIERS
Note: If you use a roof rack, the fuel
consumption of your vehicle is higher and
you may experience different driving
characteristics.
Note: Read and follow the manufacturer's
instructions when you are fitting a roof rack.
LOAD RETAINING FIXTURES (IF
EQUIPPED)
Tie Down Points WARNING:
Do not use the load
retaining fixtures for towing. Failure to
follow this instruction could result in
personal injury. WARNING:
Do not exceed the
maximum load rating of the load
retaining fixtures. Failure to follow this
instruction could result in personal injury. WARNING:
Check the load
retaining fixtures for damage before
using them. Failure to follow this
instruction could result in personal injury.
Note: Use the load retaining fixtures to
retain the loads within the loadspace. Using
the load retaining fixtures for any other
purpose may lead to vehicle damage.
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•
If you are towing a trailer frequently in
hot weather, hilly conditions, at the
gross combined weight rating, or any
combination of these factors, consider
refilling your rear axle with synthetic
gear lubricant if the axle is not already
filled with it. See Capacities and
Specifications (page 316).
• Allow more distance for stopping with
a trailer attached. Anticipate stops and
brake gradually.
• Avoid parking on a grade. However, if
you must park on a grade:
1. Turn the steering wheel to point your vehicle tires away from traffic flow.
2. Set your vehicle parking brake.
3. Place the automatic transmission in park (P).
4. Place wheel chocks in front and back of the trailer wheels. Chocks are not
included with your vehicle.
Your vehicle may be equipped with a
temporary or conventional spare tire. A
temporary spare tire is different in diameter
or width, tread-type, or is from a different
manufacturer than the road tires on your
vehicle. Consult information on the tire
label or Safety Compliance label for
limitations when using.
Launching or Retrieving a Boat or
Personal Watercraft (PWC)
Note: Disconnect the wiring to the trailer
before
backing the trailer into the water.
Note: Reconnect the wiring to the trailer
after
removing the trailer from the water. When backing down a ramp during boat
launching or retrieval:
•
Do not allow the static water level to
rise above the bottom edge of the rear
bumper.
• Do not allow waves to break higher
than
6 in (15 cm) above the bottom
edge of the rear bumper.
Exceeding these limits may allow water to
enter vehicle components:
• Causing internal damage to the
components.
• Affecting driveability, emissions, and
reliability.
Replace the rear axle lubricant anytime
the rear axle has been submerged in water.
Water may have contaminated the rear
axle lubricant, which is not normally
checked or changed unless a leak is
suspected or other axle repair is required.
TOWING THE VEHICLE ON
FOUR WHEELS WARNING:
If your vehicle has a
steering wheel lock make sure the
ignition is in the accessory or on position
when being towed.
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