
1. Locate the statement "The
combined weight of occupants
and cargo should never exceed
XXX kg or XXX lb." on your
vehicle ’s placard.
2. Determine the combined
weight of the driver and
passengers that will be riding
in your vehicle.
3. Subtract the combined weight
of the driver and passengers
from XXX kg or XXX lb.
4. The resulting figure equals the
available amount of cargo and
luggage load capacity. For
example, if the “XXX” amount
equals 1,400 lb. and there will
be five 150 lb. passengers in
your vehicle, the amount of
available cargo and luggage
load capacity is 650 lb.
(1400-750 (5 x 150) = 650 lb.).
5. Determine the combined
weight of luggage and cargo
being loaded on the vehicle.
That weight may not safely
exceed the available cargo and
luggage load capacity
calculated in Step 4.
6. If your vehicle will be towing a
trailer, load from your trailer
will be transferred to your
vehicle. Consult this manual to
determine how this reduces the
available cargo and luggage
load capacity of your vehicle.
The following gives you a few
examples on how to calculate the
available amount of cargo and
luggage load capacity: *Suppose your vehicle has a
1400-pound (635-kilogram) cargo
and luggage capacity. You decide
to go golfing. Is there enough load
capacity to carry you, four of your
friends and all the golf bags? You
and four friends average 220
pounds (99 kilograms) each and
the golf bags weigh approximately
30 pounds (13.5 kilograms) each.
The calculation would be: 1400 -
(5 x 220) - (5 x 30) = 1400 - 1100
- 150 = 150 pounds. Yes, you have
enough load capacity in your
vehicle to transport four friends
and your golf bags. In metric units,
the calculation would be: 635
kilograms - (5 x 99 kilograms) -
(5 x 13.5 kilograms) = 635 - 495 -
67.5 = 72.5 kilograms.
*Suppose your vehicle has a
1400-pound (635-kilogram) cargo
and luggage capacity. You and
one of your friends decide to pick
up cement from the local home
improvement store to finish that
patio you have been planning for
the past two years. Measuring the
inside of the vehicle with the rear
seat folded down, you have room
for twelve 100-pound
(45-kilogram) bags of cement. Do
you have enough load capacity to
transport the cement to your
home? If you and your friend each
weigh 220 pounds (99 kilograms),
the calculation would be: 1400 -
(2 x 220) - (12 x 100) = 1400 - 440
- 1200 = - 240 pounds. No, you do
not have enough cargo capacity
to carry that much weight. In
metric units, the calculation would
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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. The label shall
be affixed to either the door hinge
pillar, door-latch post, or the door
edge that meets the door-latch
post, next to the driver seating
position.
Special Loading Instructions
for Owners of Pick-up Trucks
and Utility-type Vehicles WARNING
Loaded vehicles may handle
differently than unloaded
vehicles. Extra precautions, such
as slower speeds and increased
stopping distance, should be
taken when driving a heavily
loaded vehicle. Your vehicle can haul more cargo
and people than most passenger
cars. Depending upon the type
and placement of the load,
hauling cargo and people may
raise the center of gravity of the
vehicle.
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TOWING A TRAILER
WARNINGS
Do not exceed the GVWR or
the GAWR specified on the
certification label. Towing trailers beyond the
maximum recommended
gross trailer weight exceeds the
limit of the vehicle and could
result in engine damage,
transmission damage, structural
damage, loss of vehicle control,
vehicle rollover and personal
injury. Your vehicle may have electrical
items, such as fuses or relays,
related to towing. See the Fuses
chapter.
Your vehicle's load capacity
designation is by weight, not by
volume, so you cannot necessarily
use all available space when
loading a vehicle or trailer.
Towing a trailer places an extra
load on your vehicle's engine,
transmission, axle, brakes, tires
and suspension. Inspect these
components periodically during,
and after, any towing operation. Load Placement
To help minimize how trailer
movement affects your vehicle
when driving:
•
Load the heaviest items closest
to the trailer floor.
• Load the heaviest items
centered between the left and
right side trailer tires.
• Load the heaviest items above
the trailer axles or just slightly
forward toward the trailer
tongue. Do not allow the final
trailer tongue weight to go
above or below 10-15% of the
loaded trailer weight.
• Select a tow bar with the
correct rise or drop. When both
the loaded vehicle and trailer
are connected, the trailer frame
should be level, or slightly
angled down toward your
vehicle, when viewed from the
side.
When driving with a trailer or
payload, a slight takeoff vibration
or shudder may be present due to
the increased payload weight.
Additional information regarding
proper trailer loading and setting
your vehicle up for towing is
located in another chapter of this
manual. See
Load Limit (page
172).
You can also find information in
the
RV & Trailer Towing Guide
available at your authorized
dealer, or online.
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RV & Trailer Towing Guide Online
http://www.fleet.ford.com/towing-guides/
Website
TRAILER SWAY CONTROL (If
Equipped) WARNING
Turning off trailer sway control
increases the risk of loss of vehicle
control, serious injury or death. Ford
does not recommend disabling this feature
except in situations where speed reduction
may be detrimental (such as hill climbing),
the driver has significant trailer towing
experience, and can control trailer sway
and maintain safe operation. Note:
This feature does not prevent trailer
sway, but reduces it when it begins.
Note: This feature cannot stop all trailers
from swaying.
Note: In some cases, if your vehicle speed
is too high, the system may turn on multiple
times, gradually reducing your vehicle speed.
The system applies the brakes to the
individual wheels and reduces engine
torque to aid vehicle stability. If the trailer
begins to sway, the stability control
warning lamp flashes and a message
appears in the information display. See
Information Messages
(page 91). Slow
your vehicle down, pull safely to the side
of the road and check for correct load
distribution.
You can switch this feature off in the
information display. When you switch the
ignition on, the system automatically turns
on. RECOMMENDED TOWING
WEIGHTS
Note:
Do not exceed the trailer
weight for your vehicle
configuration listed in the chart
below.
Note: Be sure to take into
consideration trailer frontal area.
Do not exceed 20 feet 2
(1.86
meters 2
) if your vehicle is not
equipped with a towing package or
30 feet 2
(2.79 meters 2
) if your
vehicle is equipped with a towing
package.
Note: For high altitude operation,
reduce the gross combined weight
by 2% per 1000 feet (300 meters)
starting at the 1000 foot (300
meter) elevation point.
Note: Certain states require
electric trailer brakes for trailers
over a specified weight. Be sure to
check state regulations for this
specified weight. The maximum
trailer weights listed may be limited
to this specified weight, as the
vehicle ’s electrical system may not
include the wiring connector
needed to activate electric trailer
brakes.
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Your vehicle may tow a trailer
provided the maximum trailer
weight is less than or equal to the
maximum trailer weight listed for
your vehicle configuration on the
following chart. Maximum trailer
weight 1
Maximum GCWR
Powertrain
1500 lb (681 kg)
5351 lb (2427 kg)
2.5L 2WD
2000 lb (907 kg)
5862 lb (2659 kg)
1.6L GTDI 2WD
2000 lb (907 kg)
5957 lb (2702 kg)
2.0L GTDI 2WD 2
3500 lb (1588 kg)
7457 lb (3382 kg)
2.0L GTDI 2WD 3
2000 lb (907 kg)
6005 lb (2724 kg)
1.6L GTDI 4WD
2000 lb (907 kg)
6091 lb (2763 kg)
2.0L GTDI 4WD 2
3500 lb (1588 kg)
7591 lb (3443 kg)
2.0L GTDI 4WD 3
1 Calculated with SAE J2807 method.
2 Without trailer towing package.
3 With trailer towing package.
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ESSENTIAL TOWING CHECKS
Follow these guidelines for safe
towing:
•
Do not tow a trailer until you
drive your vehicle at least 1000
miles (1600 kilometers).
• Consult your local motor
vehicle laws for towing a trailer.
• See the instructions included
with towing accessories for the
proper installation and
adjustment specifications.
• Service your vehicle more
frequently if you tow a trailer.
See your scheduled
maintenance information.
• If you use a rental trailer, follow
the instructions the rental
agency gives you.
You can find information on load
specification terms found on the
tire label and Safety Compliance
label as well as instructions on
calculating your vehicle's load in
the Load Carrying chapter. See
Load Limit (page 172).
Remember to account for the
trailer tongue weight as part of
your vehicle load when calculating
the total vehicle weight.
Hitches
Do not use a hitch that either
clamps onto the bumper or
attaches to the axle.
Distribute the trailer load so
10-15% of the total trailer weight
is on the tongue. Weight-distributing Hitches WARNING
Do not adjust a
weight-distributing hitch to
any position where the rear
bumper of the vehicle is higher
than it was before attaching the
trailer. Doing so will defeat the
function of the weight-distributing
hitch, which may cause
unpredictable handling, and could
result in serious personal injury. When hooking-up a trailer using a
weight-distributing hitch, always
use the following procedure:
1. Park the loaded vehicle,
without the trailer, on a level
surface.
2. Measure the height to the top
of your vehicle's front wheel
opening on the fender. This is
H1.
3. Attach the loaded trailer to
your vehicle without the
weight-distributing bars
connected.
4. Measure the height to the top
of your vehicle's front wheel
opening on the fender a second
time. This is H2.
5. Install and adjust the tension
in the weight-distributing bars
so that the height of your
vehicle's front wheel opening
on the fender is approximately
half the way down from H2,
toward H1.
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6.
Check that the trailer is level or
slightly nose down toward your
vehicle. If not, adjust the ball
height accordingly and repeat
Steps 2-6.
When the trailer is level or slightly
nose down toward the vehicle:
• Lock the bar tension adjuster
in place.
• Check that the trailer tongue
securely attaches and locks
onto the hitch.
• Install safety chains, lighting,
and trailer brake controls as
required by law or the trailer
manufacturer.
Safety Chains
Note: Never attach safety chains
to the bumper.
Always connect the safety chains
to the hook retainers of your
vehicle hitch.
To connect the trailer ’s safety
chains, cross them under the
trailer tongue and allow enough
slack for turning tight corners. Do
not allow the chains to drag on the
ground. Trailer Brakes WARNING
Do not connect a trailer's
hydraulic brake system
directly to your vehicle's brake
system. Your vehicle may not have
enough braking power and your
chances of having a collision
greatly increase. Electric brakes and manual,
automatic or surge-type trailer
brakes are safe if you install them
properly and adjust them to the
manufacturer's specifications. The
trailer brakes must meet local and
federal regulations.
The rating for the tow vehicle's
braking system operation is at
the gross vehicle weight rating,
not the gross combined weight
rating.
Separate functioning brake
systems are required for safe
control of towed vehicles and
trailers weighing more than
1500 pounds (680 kilograms)
when loaded.
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BREAKING-IN
You need to break in new tires for
approximately 300 miles (480
kilometers). During this time, your vehicle
may exhibit some unusual driving
characteristics.
Avoid driving too fast during the first 1000
miles (1600 kilometers). Vary your speed
frequently and change up through the
gears early. Do not labor the engine.
Do not tow during the first 1000 miles
(1600 kilometers).
ECONOMICAL DRIVING
Your fuel economy is affected by several
things, such as how you drive, the
conditions you drive under, and how you
maintain your vehicle.
You may improve your fuel economy by
keeping these things in mind:
•
Accelerate and slow down in a smooth,
moderate fashion.
• Drive at steady speeds without
stopping.
• Anticipate stops; slowing down may
eliminate the need to stop.
• Combine errands and minimize
stop-and-go driving.
• Close the windows for high-speed
driving.
• Drive at reasonable speeds (traveling
at 55 mph [88 km/h] uses 15% less
fuel than traveling at 65 mph [105
km/h]).
• Keep the tires properly inflated and use
only the recommended size.
• Use the recommended engine oil.
• Perform all regularly scheduled
maintenance. Avoid these actions; they reduce your fuel
economy:
•
Sudden accelerations or hard
accelerations.
• Revving the engine before turning it off.
• Idle for periods longer than one minute.
• Warm up your vehicle on cold
mornings.
• Use the air conditioner or front
defroster.
• Use the speed control in hilly terrain.
• Rest your foot on the brake pedal while
driving.
• Drive a heavily loaded vehicle or tow a
trailer.
• Carry unnecessary weight
(approximately 1 mpg [0.4 km/L] is
lost for every 400 lb [180 kilogram] of
weight carried).
• Driving with the wheels out of
alignment.
Conditions
• Heavily loading a vehicle or towing a
trailer may reduce fuel economy at any
speed.
• Adding certain accessories to your
vehicle (for example bug deflectors,
rollbars, light bars, running boards, ski
racks or luggage racks) may reduce
fuel economy.
• To maximize the fuel economy, drive
with the tonneau cover installed (if
equipped).
• Using fuel blended with alcohol may
lower fuel economy.
• Fuel economy may decrease with lower
temperatures during the first 8– 10
miles (12 –16 kilometers) of driving.
• Driving on flat terrain offers improved
fuel economy as compared to driving
on hilly terrain.
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