3. Locate the manual override
mechanism. 4. Pull the manual override mechanism.
5. Key off and complete refueling within
20 minutes. If more than 20 minutes is
required, close fuel door and repeat the
procedure.
This will enable you to refuel without any
issue. Note:
A fuel spill concern may occur if the
fuel tank overfills. Do not overfill the tank
to the point that the fuel is able to bypass
the fuel filler nozzle. The overfilled fuel may
run down the drain located below and in
front of the fuel filler door.
If the fuel fill inlet was not properly closed,
a service engine warning lamp may appear
on the instrument cluster. At the next
opportunity, do the following:
1. Safely pull off the road.
2. Put the vehicle in park (P) and turn the
ignition off.
3. Open the fuel filler door and remove any visible debris from the fuel fill
opening.
4. Insert either the fuel fill nozzle or the fuel fill funnel provided with the vehicle
several times to allow the inlet to close
properly. This will dislodge any debris
preventing the inlet from sealing.
If this action corrects the problem, the
message may not reset immediately. It
may take several driving cycles for the
message to turn off. A driving cycle
consists of an engine start-up (after four
or more hours with the engine off) followed
by city and highway driving. Continuing to
drive with the message on may cause the
service engine soon lamp to turn on as
well.
FUEL CONSUMPTION
Note: The amount of usable fuel in the
empty reserve varies and should not be
relied upon to increase driving range. When
refueling your vehicle after the fuel gauge
indicates empty, you might not be able to
refuel the full amount of the advertised
capacity of the fuel tank due to the empty
reserve still present in the tank.
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Empty reserve is the amount of fuel
remaining in the tank after the fuel gauge
indicates empty. Do not rely on this fuel for
driving. The usable capacity of the fuel
tank is the amount of fuel that can be put
into the tank after the gauge indicates
empty. The advertised capacity is the total
fuel tank size – it is the combined usable
capacity plus the empty reserve.
Filling the Tank
For consistent results when filling the fuel
tank:
•
Turn the ignition off before fueling; an
inaccurate reading results if the engine
is left running.
• Use the same fill rate
(low-medium-high) each time the tank
is filled.
• Allow no more than two automatic
click-offs when filling.
Results are most accurate when the filling
method is consistent.
Calculating Fuel Economy
Do not measure fuel economy during the
first 1000 miles (1600 kilometers) of
driving (this is your engine ’s break-in
period); a more accurate measurement is
obtained after 2000 miles - 3000 miles
(3200 kilometers - 4800 kilometers). Also,
fuel expense, frequency of fill ups or fuel
gauge readings are not accurate ways to
measure fuel economy.
1. Fill the fuel tank completely and record
the initial odometer reading.
2. Each time you fill the tank, record the amount of fuel added.
3. After at least three to five tank fill ups, fill the fuel tank and record the current
odometer reading.
4. Subtract your initial odometer reading from the current odometer reading. 5. Calculate fuel economy by dividing
miles traveled by gallons used (For
Metric: Multiply liters used by 100, then
divide by kilometers traveled).
Keep a record for at least one month and
record the type of driving (city or highway).
This provides an accurate estimate of the
vehicle ’s fuel economy under current
driving conditions. Additionally, keeping
records during summer and winter show
how temperature impacts fuel economy.
In general, lower temperatures mean lower
fuel economy.
EMISSION CONTROL SYSTEM WARNINGS
Do not park, idle, or drive your vehicle
in dry grass or other dry ground cover.
The emission system heats up the
engine compartment and exhaust system,
which can start a fire. Exhaust leaks may result in entry of
harmful and potentially lethal fumes
into the passenger compartment. If
you smell exhaust fumes inside your
vehicle, have your dealer inspect your
vehicle immediately. Do not drive if you
smell exhaust fumes. Your vehicle is equipped with various
emission control components and a
catalytic converter that will enable your
vehicle to comply with applicable exhaust
emission standards.
To make sure that the catalytic converter
and other emission control components
continue to work properly:
•
Use only the specified fuel listed.
• Avoid running out of fuel.
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•
Do not turn off the ignition while your
vehicle is moving, especially at high
speeds.
• Have the items listed in scheduled
maintenance information performed
according to the specified schedule.
The scheduled maintenance items listed
in scheduled maintenance information are
essential to the life and performance of
your vehicle and to its emissions system.
If you use anything other than Ford,
Motorcraft or Ford-authorized parts for
maintenance replacements or for service
of components affecting emission control,
such non-Ford parts should be equivalent
to genuine Ford Motor Company parts in
performance and durability.
Illumination of the service engine soon
indicator, charging system warning light or
the temperature warning light, fluid leaks,
strange odors, smoke or loss of engine
power could indicate that the emission
control system is not working properly.
An improperly operating or damaged
exhaust system may allow exhaust to
enter the vehicle. Have a damaged or
improperly operating exhaust system
inspected and repaired immediately.
Do not make any unauthorized changes to
your vehicle or engine. By law, vehicle
owners and anyone who manufactures,
repairs, services, sells, leases, trades
vehicles, or supervises a fleet of vehicles
are not permitted to intentionally remove
an emission control device or prevent it
from working. Information about your
vehicle ’s emission system is on the Vehicle
Emission Control Information Decal
located on or near the engine. This decal
also lists engine displacement.
Please consult your warranty information
for complete details. On-Board Diagnostics (OBD-II)
Your vehicle has a computer known as the
on-board diagnostics system (OBD-II) that
monitors the engine
’s emission control
system. The system protects the
environment by making sure that your
vehicle continues to meet government
emission standards. The OBD-II system
also assists a service technician in properly
servicing your vehicle. When the service engine soon
indicator illuminates, the OBD-II
system has detected a
malfunction. Temporary malfunctions may
cause the service engine soon indicator to
illuminate. Examples are:
1. Your vehicle has run out of fuel —the
engine may misfire or run poorly.
2. Poor fuel quality or water in the fuel —the engine may misfire or run
poorly.
3. The fuel fill inlet may not have closed properly. See Refueling (page 141).
4. Driving through deep water —the
electrical system may be wet.
You can correct these temporary
malfunctions by filling the fuel tank with
good quality fuel, properly closing the fuel
fill inlet or letting the electrical system dry
out. After three driving cycles without these
or any other temporary malfunctions
present, the service engine soon indicator
should stay off the next time you start the
engine. A driving cycle consists of a cold
engine startup followed by mixed city and
highway driving. No additional vehicle
service is required.
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GENERAL INFORMATION
WARNING
Have the battery pack serviced only
by an authorized electric vehicle
technician. Improper handling can
result in personal injury or death. Note:
The high-voltage battery does not
require regular service maintenance. Your vehicle consists of various
high-voltage components and wiring. All
of the high-voltage power flows through
specific wiring assemblies labeled as such
or covered with a solid orange convolute,
orange striped tape or both. Do not come
in contact with these components.
The high-voltage battery system is a
high-voltage, lithium-ion battery system.
The pack is located in the rear cargo area.
The high-voltage battery system uses an
air cooled system to regulate the
high-voltage battery temperature and help
maximize high-voltage battery life.Note:
The high-voltage battery is equipped
with air vents in the package tray that help
to regulate its temperature. It is important
to keep these openings free of obstructions.
Do not block the flow of cabin air to this
area.
HIGH-VOLTAGE SERVICE
DISCONNECT
The high-voltage service disconnect turns
off power from the high-voltage battery. Note:
There is a disconnect circuit in your
vehicle. Disconnecting the circuit will
automatically disable the high-voltage
battery.
To disable the battery and stop all
high-voltage electric activity in the vehicle
you can access high-voltage disconnect
circuit. To do this, you must unplug the
circuit from the circuit port connected to
the battery.
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Reactivating the High-Voltage Battery
Note:
If you have manually disconnected
your high-voltage shut off circuit, you will
need to reconnect the circuit before you can
reactivate it. The system will detect if the
electrical system is safe and turn on
automatically.
CHARGING THE HIGH
VOLTAGE BATTERY WARNINGS
Do not use the 120 volt convenience
cord with an extension cord,
two-prong adapter, surge protector,
timer or other adapter. In Canada, do not use the 120 volt
convenience cord in commercial
garages.
This equipment has arcing or
sparking parts, do not expose to
flammable vapors. Position this
equipment at least 18 in (45 cm) above
the floor. The AC wall plug must fit firmly into
the AC outlet. If the connection feels
loose, worn or the AC outlet is
damaged, please have a qualified
electrician replace the AC outlet. Using a
convenience cord with a worn outlet may
cause burns, property damage and
increase the risk of electric shock. Charging Equipment
Your vehicle is equipped with a standard
120 volt convenience cord located in the
floor compartment behind the driver seat.
Note:
The 120 volt convenience cord allows
you to charge the high voltage battery using
a standard 120 volt household outlet. It
takes approximately seven hours to
completely charge an empty battery using
the standard 120 volt convenience cord.
We recommend upgrading to the optional
240 volt charging station for faster more
efficient charging. It takes approximately
2.5 hours to completely charge an empty
battery using a 240 volt charging station.
Your electrical source must meet certain
requirements for the high voltage batteries
to charge:
• The AC outlet must be a three-prong
110-120 volt AC outlet that is properly
grounded, 15– 20 amps (or greater),
and in good condition.
• You must use a dedicated line, which
means you cannot have other
appliances connected to the same
circuit.
Note: If you do not have a dedicated circuit,
contact a licensed professional electrician
for proper installation.
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AUTOMATIC TRANSMISSION
WARNINGS
Always set the parking brake fully
and make sure the gearshift is
latched in park (P). Turn the ignition
to the off position and remove the key
whenever you leave your vehicle. Do not apply the brake pedal and
accelerator pedal simultaneously.
Applying both pedals simultaneously
for more than three seconds will limit
engine rpm, which may result in difficulty
maintaining speed in traffic and could lead
to serious injury. Note:
Do not leave your vehicle with the
transmission in neutral (N). Leaving your
vehicle with the transmission in neutral (N)
will drain the battery and you may not be
able to start your vehicle.
Automatic Transmission
Putting your vehicle in gear:
1. Fully press down the brake pedal.
2. Move the gearshift lever to the desired
gear.
3. Come to a complete stop.
4. Move the gearshift lever and securely latch it in park (P). Park (P)
This position locks the transmission and
prevents the front wheels from turning.
Come to a complete stop before putting
your vehicle into and out of park (P).
Reverse (R)
With the gearshift lever in reverse (R), your
vehicle will move backward. Always come
to a complete stop before shifting into and
out of reverse (R).
Neutral (N)
With the gearshift lever in neutral (N), your
vehicle can be started and is free to roll.
Hold the brake pedal down while in this
position.
Drive (D)
Drive (D) is the normal driving position for
the best fuel economy.
Low (L)
•
Provides maximum engine braking.
• The transmission may be shifted into
low (L) at any vehicle speed.
• Is not intended for use under extended
or normal driving conditions and results
in lower fuel economy.
Grade assist:
Press the transmission control switch on
the side of the gearshift lever to activate
grade assist.
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•
Provides additional grade braking with
a combination of engine motoring and
high-voltage battery charging to help
maintain vehicle speed when
descending a grade.
• As your vehicle determines the amount
of engine motoring and high-voltage
battery charging, you may notice the
engine speed increasing and
decreasing to help maintain your
vehicle speed when descending a
grade.
• The grade assist lamp in the instrument
cluster is illuminated. The grade assist lamp will
appear in the instrument cluster
when grade assist is turned on.
Press the transmission control switch
again to return to normal drive (D).
Brake-Shift Interlock WARNINGS
Do not drive your vehicle until you
verify that the brake lamps are
working.
When doing this procedure, you will
be taking your vehicle out of park
which means your vehicle can roll
freely. To avoid unwanted vehicle
movement, always fully set the parking
brake prior to doing this procedure. Use
wheel chocks if appropriate. WARNINGS
If the parking brake is fully released,
but the brake warning lamp remains
illuminated, the brakes may not be
working properly. See your authorized
dealer. Note:
See your authorized dealer as soon
as possible if this procedure is used.
Note: For some markets this feature will be
disabled.
Use the brake shift interlock lever to move
the gearshift lever from the park position
in the event of an electrical malfunction or
if your vehicle has a dead battery.
Apply the parking brake and turn the
ignition off before performing this
procedure. 1.
Remove the side panel on the right side
of the gearshift lever.
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GENERAL INFORMATION
Note:
Occasional brake noise is normal. If
a metal-to-metal, continuous grinding or
continuous squeal sound is present, the
brake linings may be worn-out. Have the
system checked by an authorized dealer. If
the vehicle has continuous vibration or
shudder in the steering wheel while braking,
have it checked by an authorized dealer.
Note: Brake dust may accumulate on the
wheels, even under normal driving
conditions. Some dust is inevitable as the
brakes wear and does not contribute to
brake noise. See Cleaning the Alloy
Wheels (page 240). See
Warning Lamps and
Indicators (page 86).
Wet brakes result in reduced braking
efficiency. Gently press the brake pedal a
few times when driving from a car wash or
standing water to dry the brakes.
Brake Over Accelerator
In the event the accelerator pedal
becomes stuck or entrapped, apply steady
and firm pressure to the brake pedal to
slow the vehicle and reduce engine power.
If you experience this condition, apply the
brakes and bring your vehicle to a safe
stop. Move the transmission to park (P),
switch the engine off and apply the parking
brake. Inspect the accelerator pedal for
any interference. If none are found and the
condition persists, have your vehicle towed
to the nearest authorized dealer.
Brake Assist
Brake assist detects when you brake
heavily by measuring the rate at which you
press the brake pedal. It provides
maximum braking efficiency as long as you
press the pedal. Brake assist can reduce
stopping distances in critical situations. Anti-lock Brake System
This system helps you maintain steering
control during emergency stops by keeping
the brakes from locking. This lamp momentarily
illuminates when you turn the
ignition on. If the light does not
illuminate during start up, remains on or
flashes, the system may be disabled. Have
the system checked by an authorized
dealer. If the anti-lock brake system is
disabled, normal braking is still effective. If the brake warning lamp
illuminates when you release the
parking brake, have the system
checked by an authorized dealer.
Regenerative Braking System
This feature is used to simulate the engine
braking of an internal combustion engine
and assist the standard brake system while
recovering some of the energy of motion
and storing it in the battery to improve the
range of your vehicle. The standard brake
system is designed to fully stop the car if
regenerative braking is not available.
During regenerative braking, the motor is
spun as a generator to create electrical
current. This recharges the battery and
slows the vehicle. In effect, once the
accelerator pedal is released, the motor
changes from an energy user to an energy
producer.
When the accelerator pedal is released or
the brake pedal is applied, the brake
controller automatically detects the
amount of deceleration requested and
optimizes how much of the deceleration
will be produced by regenerative braking.
The remaining portion is generated by
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