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Pass Airbag Off Indicator Light Unlit Lit


Lit


Unlit


Passenger Airbag


Disabled Disabled


Disabled


Enabled


Even with Advanced Restraints Systems, children 12 and under should be properly restrained in the back seat.


After all occupants have adjusted their seats and put on safety belts, it’s very important that they continue to sit properly. A properly seated occupant sits upright, leaning against the seat back, and centered on the seat cushion, with their feet comfortably extended on the floor. Sitting improperly can increase the chance of injury in a crash event. For example, if an occupant slouches, lies down, turns sideways, sits forward, leans forward or sideways, or puts one or both feet up, the chance of injury during a crash is greatly increased.


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Sitting improperly out of position or with the seat back reclined too far can take off weight from the seat cushion and affect the


decision of the front passenger sensing system, resulting in serious injury or death in a crash. Always sit upright against your seatback, with your feet on the floor.


Lit


Lit


Disabled


Disabled


Objects


Passenger Airbag


The front passenger sensing system may detect small or medium objects placed on the seat cushion. For most objects that are in the front passenger seat, the passenger airbag will be disabled. Even though the passenger airbag is disabled, the ⬙pass airbag off⬙ lamp may or may not be illuminated according to the table below. Pass Airbag Off Indicator Light Unlit


Small (i.e. 3 ring binder, small purse, bottled water) Medium (i.e. heavy briefcase, fully packed luggage) Empty seat, or small to medium object with safety belt buckled If you think that the status of the passenger airbag off indicator lamp is incorrect, check for the following: • Objects lodged underneath the seat • Objects between the seat cushion and the center console • Objects hanging off the seat back • Objects stowed in the seatback map pocket (if equipped) • Objects placed on the occupant’s lap • Cargo interference with the seat • Other passengers pushing or pulling on the seat • Rear passenger feet and knees resting or pushing on the seat The conditions listed above may cause the weight of a properly seated occupant to be incorrectly interpreted by the passenger sensing system. The person in the front passenger seat may appear heavier or lighter due to the conditions described in the list above.


(if equipped)


Disabled


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To reduce the risk of possible serious injury: Do not stow objects in seat back map pocket (if equipped) or


hang objects off seat back if a child is in the front passenger seat. Do not place objects underneath the front passenger seat or between the seat and the center console (if equipped). Check the “passenger airbag off” or “pass airbag off” indicator lamp for proper airbag Status. Failure to follow these instructions may interfere with the front passenger seat sensing system.


In case there is a problem with the front passenger sensing system, the airbag readiness lamp in the instrument cluster will stay lit. If the airbag readiness lamp is lit, do the following: The driver and/or adult passengers should check for any objects that may be lodged underneath the front passenger seat or cargo interfering with the seat. If objects are lodged and/or cargo is interfering with the seat; please take the following steps to remove the obstruction: • Pull the vehicle over. • Turn the vehicle off. • Driver and/or adult passengers should check for any objects lodged • Remove the obstruction(s) (if found). • Restart the vehicle. • Wait at least 2 minutes and verify that the airbag readiness lamp is no • If the airbag readiness lamp remains illuminated, this may or may/not


underneath the front passenger seat or cargo interfering with the seat.


longer illuminated


be a problem due to the front passenger sensing system.


DO NOT attempt to repair or service the system; take your vehicle immediately to an authorized dealer. If it is necessary to modify an advanced front airbag system to accommodate a person with disabilities, contact the Ford Customer Relationship Center at the phone number shown in the Customer Assistance chapter of this Owner’s Guide.


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Any alteration/modification to the front passenger seat may affect the performance of the front passenger sensing system.


Determining if the system is operational The supplemental restraint system uses a warning indicator light in the instrument cluster or a back-up tone to indicate the condition of the system. Refer to the Warning lights and chimes section in the Instrument Cluster chapter. Routine maintenance of the airbag is not required. A difficulty with the system is indicated by one or more of the following: • The readiness light (same light for front and side airbag system) will either flash or stay lit. • The readiness light will not • A series of five beeps will be heard. The tone pattern will repeat


illuminate immediately after ignition is turned on.


periodically until the problem and/or light are repaired.


If any of these things happen, even intermittently, have the supplemental restraint system serviced at an authorized dealer immediately. Unless serviced, the system may not function properly in the event of a collision.


Seat-mounted side airbag system (if equipped)


Do not place objects or mount equipment on or near the airbag cover on the side of the seatbacks of the front seats or in front seat areas that may come into contact with a deploying airbag. Failure to follow these instructions may increase the risk of personal injury in the event of a collision.


Do not use accessory seat covers. The use of accessory seat covers may prevent the deployment of the side airbags and


increase the risk of injury in an accident.


Do not lean your head on the door. The side airbag could injure you as it deploys from the side of the seatback.


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Do not attempt to service, repair, or modify the airbag SRS, its fuses or the seat cover on a seat containing an airbag. See your


authorized dealer.


All occupants of the vehicle should always wear their safety belts even when an airbag SRS is provided.


How does the side airbag system work? The design and development of the side airbag system included recommended testing procedures that were developed by a group of automotive safety experts known as the Side Airbag Technical Working Group. These recommended testing procedures help reduce the risk of injuries related to the deployment of side airbags. The side airbag system consists of the following: • An inflatable nylon bag (airbag) with a gas generator concealed behind the outboard bolster of the driver and front passenger seatbacks. • A special seat cover designed to allow airbag deployment. • The same warning light,


electronic control and diagnostic unit as used for the front airbags. • Crash sensors located on the B


and C pillars (one sensor on each pillar on each side of the vehicle).


Side airbags, in combination with safety belts, can help reduce the risk of severe injuries in the event of a significant side impact collision. The side airbags are fitted on the outboard side of the seatbacks of the front seats. In certain lateral collisions, the airbag on the side affected by the collision will be inflated. If the front passenger sensing system detects an empty seat, the front passenger seat-mounted side airbag will be deactivated. The airbag was designed to inflate between the door panel and occupant to further enhance the protection provided occupants in side impact collisions.


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The airbag SRS is designed to activate when the vehicle sustains lateral deceleration sufficient to cause the sensors to close an electrical circuit that initiates airbag inflation. The fact that the airbags did not inflate in a collision does not mean that something is wrong with the system. Rather, it means the forces were not of the type sufficient to cause activation. Side airbags are designed to inflate in side-impact collisions, not roll-over, rear-impact, frontal or near-frontal collisions, unless the collision causes sufficient lateral deceleration.


Several air bag system components get hot after inflation. Do not touch them after inflation.


If the side airbag has deployed, the airbag will


not function again. The side airbag system (including the seat) must be inspected and serviced by an authorized dealer. If the airbag is not replaced, the unrepaired area will increase the risk of injury in a collision.


Safety Canopy姟 system (if equipped)


Do not place objects or mount equipment on or


near the headliner at the siderail that may come into contact with a deploying Safety Canopy娂. Failure to follow these instructions may increase the risk of personal injury in the event of a collision.


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Do not lean your head on the door. The Safety Canopy娂 could injure you as it deploys from the headliner.


Do not attempt to service, repair, or modify the Safety Canopy娂 system, its fuses, the A, B, or C pillar trim, or the headliner on a


vehicle containing a Safety Canopy娂. See your authorized dealer.


All occupants of the vehicle including the driver should always wear their safety belts even when an airbag SRS and Safety


Canopy娂 system is provided.


To reduce risk of injury, do not obstruct or place objects in the deployment path of the inflatable Safety Canopy娂.


How does the Safety Canopy姟 system work? The design and development of the Safety Canopy娂 system included recommended testing procedures that were developed by a group of automotive safety experts known as the Side Airbag Technical Working Group. These recommended testing procedures help reduce the risk of injuries related to the deployment of side airbags (including the Safety Canopy娂). The Safety Canopy娂 system consists of the following: • An inflatable nylon curtain with a gas generator concealed behind the headliner and above the doors (one on each side of vehicle).


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vehicle).


Canopy娂 deployment.


on each side of the vehicle).


as used for the front airbags.


Seating and Safety Restraints • A headliner designed to flex open above the side doors to allow Safety • The same readiness airbag light, electronic control and diagnostic unit • Two crash sensors mounted on the B pillar (one on each side of the • Two crash sensors located at the C pillar behind the rear doors (one • Rollover sensor in the restraints control module (RCM). The Safety Canopy娂 system, in combination with safety belts, can help reduce the risk of severe injuries in the event of a significant side impact collision or rollover event. Children 12 years old and under should always be properly restrained in the second row seats. The Safety Canopy娂 will not interfere with children restrained using a properly installed child or booster seat because it is designed to inflate downward from the headliner above the doors along the side window opening. The Safety Canopy娂 system is designed to activate when the vehicle sustains lateral deceleration sufficient to cause the side crash sensor to close an electrical circuit that initiates Safety Canopy娂 inflation or when a certain likelihood of a rollover event is detected by the rollover sensor. The Safety Canopy娂 is mounted to roof side-rail sheet metal, behind the headliner, along the entire side of the vehicle. In certain lateral collisions or rollover events, the Safety Canopy娂 system will be activated, regardless of which seats are occupied. The Safety Canopy娂 is designed to inflate between the side window area and occupants to further enhance protection provided in side impact collisions and rollover events. The fact that the Safety Canopy娂 did not activate in a collision does not mean that something is wrong with the system. Rather, it means the forces were not of the type sufficient to cause activation. The Safety Canopy娂 is designed to inflate in certain side impact collisions or rollover events, not in rear impact, frontal or near-frontal collisions, unless the collision causes sufficient lateral deceleration or rollover likelihood.


Several Safety Canopy娂 system components get hot after inflation. Do not touch them after inflation.


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If the Safety Canopy娂 system has deployed, the


Safety Canopy娂 will not function again unless replaced. The Safety Canopy娂 system (including the A, B, and C pillar trim) must be inspected and serviced by an authorized dealer. If the Safety Canopy娂 is not replaced, the unrepaired area will increase the risk of injury in a collision.


Determining if the system is operational The SRS uses a readiness light in the instrument cluster or a tone to indicate the condition of the system. Refer to the Airbag readiness section in the Instrument Cluster chapter. Routine maintenance of the airbag is not required. Any difficulty with the system is indicated by one or more of the following: • The readiness airbag light (same light as for front airbag system) will • The readiness light will not illuminate immediately after ignition is • A series of five beeps will be heard. The tone pattern will repeat


either flash or stay lit.


turned on.


periodically until the problem and light are repaired.


If any of these things happen, even intermittently, have the SRS serviced at your an authorized dealer immediately. Unless serviced, the system may not function properly in the event of a collision or rollover event.


Disposal of airbags and airbag equipped vehicles For disposal of airbags or airbag equipped vehicles, see your authorized dealer . Airbags MUST BE disposed of by qualified personnel.


SAFETY RESTRAINTS FOR CHILDREN See the following sections for directions on how to properly use safety restraints for children. Also see Airbag supplemental restraint system (SRS) in this chapter for special instructions about using airbags.


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Important child restraint precautions You are required by law to use safety restraints for children in the U.S. and Canada. If small children (generally children who are four years old or younger and who weigh 40 lb. [18 kg] or less) ride in your vehicle, you must put them in safety seats made especially for children. Many states require that children use approved booster seats until they are eight years old. Check your local and state or provincial laws for specific requirements regarding the safety of children in your vehicle. When possible, always place children under age 12 in the rear seat of your vehicle. Accident statistics suggest that children are safer when properly restrained in the rear seating positions than in the front seating position.


Never let a passenger hold a child on his or her lap while the vehicle is moving. The passenger cannot protect the child from


injury in a collision.


Always follow the instructions and warnings that come with any infant or child restraint you might use.


Children and safety belts If the child is the proper size, restrain the child in a safety seat. Children who are too large for child safety seats (as specified by your child safety seat manufacturer) should always wear safety belts. Follow all the important safety restraint and airbag precautions that apply to adult passengers in your vehicle. If the shoulder belt portion of a combination lap and shoulder belt can be positioned so it does not cross or rest in front of the child’s face or neck, the child should wear the lap and shoulder belt. Moving the child closer to the center of the vehicle may help provide a good shoulder belt fit.


Do not leave children, unreliable adults, or pets unattended in your vehicle.


Child booster seats Children outgrow a typical convertible or toddler seat when they weigh 40 lb. (18 kg) and are around 4 years of age. Although the lap/shoulder belt will provide some protection, these children are still too small for lap/shoulder belts to fit properly, which could increase the risk of serious injury in a crash.


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To improve the fit of both the lap and shoulder belt on children who have outgrown child safety seats, Ford Motor Company recommends use of a belt-positioning booster. Booster seats position a child so that safety belts fit better. They lift the child up so that the lap belt rests low across the hips and the knees bend comfortably. Booster seats may also make the shoulder belt fit better and more comfortably. Try to keep the belt near the middle of the shoulder. When children should use booster seats Children need to use booster seats from the time they outgrow the toddler seat until they are big enough for the vehicle seat and lap/shoulder belt to fit properly. Generally this is when they weigh about 80 lb. (36 kg) (about 8 to 12 years old). Booster seats should be used until you can answer YES to ALL of these questions: • Can the child sit all the way back against the vehicle seat back with knees bent comfortably at the edge of the seat without slouching?


• Does the lap belt rest low across the hips? • Is the shoulder belt centered on the shoulder and chest? • Can the child stay seated like this for the whole trip?


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Types of booster seats There are two types of belt-positioning booster seats: • Those that are backless.


If your backless booster seat has a removable shield, remove the shield and use the lap/shoulder belt. If a seating position has a low seat back and no head restraint, a backless booster seat may place your child’s head (top of ear level) above the top of the seat. In this case, move the backless booster to another seating position with a higher seat back and lap/shoulder belts.


• Those with a high back.


If, with a backless booster seat, you cannot find a seating position that adequately supports your child’s head, a high back booster seat would be a better choice.


Either type can be used at any seating position equipped with lap/shoulder belts if your child is over 40 lb. (18 kg).


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Children and booster seats vary widely in size and shape. Choose a booster that keeps the lap belt low and snug across the hips, never up across the stomach, and lets you adjust the shoulder belt to cross the chest and rest snugly near the center of the shoulder. The drawings below compare the ideal fit (center) to a shoulder belt uncomfortably close to the neck and a shoulder belt that could slip off the shoulder.


If the booster seat slides on the vehicle seat, placing a rubberized mesh sold as shelf or carpet liner under the booster seat may improve this condition.


The importance of shoulder belts Using a booster without a shoulder belt increases the risk of a child’s head hitting a hard surface in a collision. For this reason, you should never use a booster seat with a lap belt only. It is best to use a booster seat with lap/shoulder belts in the back seat- the safest place for children to ride.


Move a child to a different seating location if the shoulder belt does not stay positioned on the shoulder during use.


Follow all instructions provided by the manufacturer of the booster seat.


Never put the shoulder belt under a child’s arm or behind the back because it eliminates the protection for the upper part of


the body and may increase the risk of injury or death in a collision.


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Never use pillows, books, or towels to boost a child. They can slide around and increase the likelihood of injury or death in a


collision.


SAFETY SEATS FOR CHILDREN


Child and infant or child safety seats Use a safety seat that is recommended for the size and weight of the child. Carefully follow all of the manufacturer’s instructions with the safety seat you put in your vehicle. If you do not install and use the safety seat properly, the child may be injured in a sudden stop or collision. When installing a child safety seat: • Review and follow the information presented in the Airbag Supplemental Restraint System section in this chapter. • Use the correct safety belt buckle • Insert the belt tongue into the proper buckle until you hear a snap and feel it latch. Make sure the tongue is securely fastened in the buckle.


for that seating position.


• Keep the buckle release button pointing up and away from the safety seat, with the tongue between the child seat and the release button, to prevent accidental unbuckling. • Place seat back in upright position. • Put the safety belt in the automatic locking mode. Refer to Automatic • LATCH lower anchors are recommended for use by children up to


locking mode.


48 lb (22 kg) in a child restraint. Top tether anchors can be used for children up to 60 lb (27 kg) in a child restraint, and to provide upper torso restraint for children up to 80 lb (36 kg) using an upper torso harness and a belt-positioning booster.


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Ford Motor Company recommends the use of a child safety seat having a top tether strap. Install the child safety seat in a seating position with LATCH and tether anchors. For more information on top tether straps and anchors, refer to Attaching safety seats with tether straps in this chapter. For more information of LATCH anchors refer to Attaching safety seats with LATCH (Lower Anchors and Tethers for Children) attachments in this chapter.


Carefully follow all of the manufacturer’s instructions included with the safety seat you put in your vehicle. If you do not install and use the safety seat properly, the child may be injured in a sudden stop or collision.


Rear-facing child seats or infant carriers should never be placed in front of an active passenger airbag.


Installing child safety seats with combination lap and shoulder belts


Airbags can kill or injure a child in a child seat. NEVER place a rear-facing child seat in front of an active airbag. If you must use a forward-facing child seat in the front seat, move the seat all the way back.


Children 12 and under should be properly restrained in the rear seat whenever possible.


1. Position the child safety seat in a seat with a combination lap and shoulder belt.


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2. Pull down on the shoulder belt and then grasp the shoulder belt and lap belt together.


3. While holding the shoulder and lap belt portions together, route the tongue through the child seat according to the child seat manufacturer’s instructions. Be sure the belt webbing is not twisted.


4. Insert the belt tongue into the proper buckle (the buckle closest to the direction the tongue is coming from) for that seating position until you hear a snap and feel the latch engage. Make sure the tongue is latched securely by pulling on it.


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5. To put the retractor in the automatic locking mode, grasp the shoulder portion of the belt and pull downward until all of the belt is pulled out and a click is heard.


6. Allow the belt to retract. The belt will click as it retracts to indicate it is in the automatic locking mode. 7. Pull the lap belt portion across the child seat toward the buckle and pull up on the shoulder belt while pushing down with your knee on the child seat.


8. Allow the safety belt to retract to remove any slack in the belt. 9. Before placing the child in the seat, forcibly move the seat forward and back to make sure the seat is securely held in place. To check this, grab the seat at the belt path and attempt to move it side to side and forward. There should be no more than one inch of movement for proper installation. 10. Try to pull the belt out of the retractor to make sure the retractor is in the automatic locking mode (you should not be able to pull more belt out). If the retractor is not locked, unbuckle the belt and repeat Steps 2
through 9. Check to make sure the child seat is properly secured before each use.


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Attaching child safety seats with tether straps Most new forward-facing child safety seats include a tether strap which goes over the back of the seat and hooks to an anchoring point. Tether straps are available as an accessory for many older safety seats. Contact the manufacturer of your child seat for information about ordering a tether strap. The rear seats of your vehicle are equipped with built-in tether strap anchors located behind the seats as described below. The tether anchors in your vehicle are located under a cover marked with the tether anchor symbol (shown with title). The tether strap anchors in your vehicle are in the following positions (shown from top view):


Attach the tether strap only to the appropriate tether anchor as shown. The tether strap may not work properly if attached


somewhere other than the correct tether anchor.


1. Position the child safety seat on the seat cushion. 2. Route the child safety seat tether strap over the back of the seat. For vehicles with adjustable head restraints, route the tether strap under the head restraint and between the head restraint posts, otherwise route the tether strap over the top of the seatback. 3. Locate the correct anchor for the selected seating position.


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4. Open the tether anchor cover.


5. Clip the tether strap to the anchor as shown.


If the tether strap is clipped incorrectly, the child safety seat may not be retained properly in the event of a collision.


6. Install the child safety seat tightly using the LATCH anchors or safety belts. Follow the instructions in this chapter. 7. Tighten the child safety seat tether strap according to the manufacturer’s instructions.


If the safety seat is not anchored properly, the risk of a child being injured in a collision greatly increases.


Attaching safety seats with LATCH (Lower Anchors and Tethers for Children) attachments for child seat anchors Some child safety seats have two rigid or webbing mounted attachments that connect to two anchors at certain seating positions in your vehicle. This type of child seat eliminates the need to use safety belts to attach the child seat. For forward-facing child seats, the tether strap must also be attached to the proper tether anchor. See Attaching safety seats with tether straps in this chapter.


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Your vehicle has LATCH anchors for child seat installation at the seating positions marked with the child seat symbol.


All the LATCH lower anchors are equally spaced, so that a single LATCH child seat can be installed at any rear seating position. If two child safety seats are installed using the LATCH lower anchors, they must be placed in the outboard seating positions only. If three child safety seats are installed, use the LATCH lower anchors for the center child safety seat; however, you must use child safety seats with lap/shoulder belts and tether anchors for the outboard child seats.


Never attach two LATCH child safety seats to the same anchor. In a crash, one anchor may not be strong enough to hold two


child safety seat attachments and may break, causing serious injury or death.


The lower anchors for child seat installation are located at the rear section of the rear seat between the cushion and seat back. The LATCH anchors are below the locator symbols on the seat back.


Follow the child seat manufacturer’s instructions to properly install a child seat with LATCH attachments.


Attach LATCH lower attachments of the child seat only to the anchors shown.


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If you install a child seat with rigid LATCH attachments, do not tighten the tether strap enough to lift the child seat off the vehicle seat cushion when the child is seated in it. Keep the tether strap just snug without lifting the front of the child seat. Keeping the child seat just touching the vehicle seat gives the best protection in a severe crash. Each time you use the safety seat, check that the seat is properly attached to the lower anchors and tether anchor. Try to tilt the child seat from side to side. Also try to tug the seat forward. Check to see if the anchors hold the seat in place.


If the safety seat is not anchored properly, the risk of a child being injured in a crash greatly increases.


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INFORMATION ABOUT UNIFORM TIRE QUALITY GRADING New vehicles are fitted with tires that have a rating on them called Tire Quality Grades. The Quality grades can be found where applicable on the tire sidewall between tread shoulder and maximum section width. For example: • Treadwear 200 Traction AA Temperature A These Tire Quality Grades are determined by standards that the United States Department of Transportation has set. Tire Quality Grades apply to new pneumatic tires for use on passenger cars. They do not apply to deep tread, winter-type snow tires, space-saver or temporary use spare tires, tires with nominal rim diameters of 10 to 12 inches or limited production tires as defined in Title 49 Code of Federal Regulations Part 575.104(c)(2). U.S. Department of Transportation-Tire quality grades: The U.S. Department of Transportation requires Ford Motor Company to give you the following information about tire grades exactly as the government has written it.


Treadwear The treadwear grade is a comparative rating based on the wear rate of the tire when tested under controlled conditions on a specified government test course. For example, a tire graded 150 would wear one and one-half (1 1/2) times as well on the government course as a tire graded 100. The relative performance of tires depends upon the actual conditions of their use, however, and may depart significantly from the norm due to variations in driving habits, service practices, and differences in road characteristics and climate.


Traction AA A B C The traction grades, from highest to lowest are AA, A, B, and C. The grades represent the tire’s ability to stop on wet pavement as measured under controlled conditions on specified government test surfaces of asphalt and concrete. A tire marked C may have poor traction performance.


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The traction grade assigned to this tire is based on straight-ahead braking traction tests, and does not include


acceleration, cornering, hydroplaning or peak traction characteristics.


Temperature A B C The temperature grades are A (the highest), B and C, representing the tire’s resistance to the generation of heat and its ability to dissipate heat when tested under controlled conditions on a specified indoor laboratory test wheel. Sustained high temperature can cause the material of the tire to degenerate and reduce tire life, and excessive temperature can lead to sudden tire failure. The grade C corresponds to a level of performance which all passenger car tires must meet under the Federal Motor Vehicle Safety Standard No. 109. Grades B and A represent higher levels of performance on the laboratory test wheel than the minimum required by law.


The temperature grade for this tire is established for a tire that is properly inflated and not overloaded. Excessive speed,


underinflation, or excessive loading, either separately or in combination, can cause heat buildup and possible tire failure.


TIRES Tires are designed to give many thousands of miles of service, but they must be maintained in order to get the maximum benefit from them.


Glossary of tire terminology • Tire label: A label showing the OE (Original Equipment) tire sizes, recommended inflation pressure and the maximum weight the vehicle can carry.


• Tire Identification Number (TIN): A number on the sidewall of each tire providing information about the tire brand and manufacturing plant, tire size and date of manufacture. Also referred to as DOT code.


• Inflation pressure: A measure of the amount of air in a tire. • Standard load: A class of P-metric or Metric tires designed to carry a maximum load at 35 psi [37 psi (2.5 bar) for Metric tires]. Increasing the inflation pressure beyond this pressure will not increase the tire’s load carrying capability.


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Tires, Wheels and Loading • Extra load: A class of P-metric or Metric tires designed to carry a heavier maximum load at 41 psi [43 psi (2.9 bar) for Metric tires]. Increasing the inflation pressure beyond this pressure will not increase the tire’s load carrying capability.


• kPa: Kilopascal, a metric unit of air pressure. • PSI: Pounds per square inch, a standard unit of air pressure. • Cold inflation pressure: The tire pressure when the vehicle has been stationary and out of direct sunlight for an hour or more and prior to the vehicle being driven for 1 mile (1.6 km).


• Recommended inflation pressure: The cold inflation pressure found on the Safety Compliance Certification Label or Tire Label located on the B-Pillar or the edge of the driver’s door. • B-pillar: The structural member at the side of the vehicle behind the • Bead area of the tire: Area of the tire next to the rim. • Sidewall of the tire: Area between the bead area and the tread. • Tread area of the tire: Area of the perimeter of the tire that • Rim: The metal support (wheel) for a tire or a tire and tube assembly


contacts the road when mounted on the vehicle.


front door.


upon which the tire beads are seated.


INFLATING YOUR TIRES Safe operation of your vehicle requires that your tires are properly inflated. Every day before you drive, check your tires. If one looks lower than the others, use a tire gauge to check pressure of all tires and adjust if required. Remember that a tire can lose up to half of its air pressure without appearing flat. At least once a month and before long trips, inspect each tire and check the tire pressure with a tire gauge (including spare, if equipped). Inflate all tires to the inflation pressure recommended by Ford Motor Company. Use a tire gauge to check the tire inflation pressure, including the spare (if equipped), at least monthly and before long trips. You are strongly urged to buy a reliable tire pressure gauge, as automatic service station gauges may be inaccurate. Ford Motor Company recommends the use of a digital or dial-type tire pressure gauge rather than a stick-type tire pressure gauge. Use the recommended cold inflation pressure for optimum tire performance and wear. Under-inflation or over-inflation may cause uneven treadwear patterns.


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Under-inflation is the most common cause of tire failures and may result in severe tire cracking, tread separation or ⬙blowout⬙,


with unexpected loss of vehicle control and increased risk of injury. Under-inflation increases sidewall flexing and rolling resistance, resulting in heat buildup and internal damage to the tire. It also may result in unnecessary tire stress, irregular wear, loss of vehicle control and accidents. A tire can lose up to half of its air pressure and not appear to be flat!


Always inflate your tires to the Ford recommended inflation pressure even if it is less than the maximum inflation pressure information found on the tire. The Ford recommended tire inflation pressure is found on the Safety Compliance Certification Label or Tire Label which is located on the B-Pillar or the edge of the driver’s door. Failure to follow the tire pressure recommendations can cause uneven treadwear patterns and adversely affect the way your vehicle handles. Maximum Permissible Inflation Pressure is the tire manufacturer’s maximum permissible pressure and/or the pressure at which the maximum load can be carried by the tire. This pressure is normally higher than the manufacturer’s recommended cold inflation pressure which can be found on the Safety Compliance Certification Label or Tire Label which is located on the B-Pillar or the edge of the driver’s door. The cold inflation pressure should never be set lower than the recommended pressure on the Safety Compliance Certification Label or Tire Label. When weather temperature changes occur, tire inflation pressures also change. A 10° F (6° C) temperature drop can cause a corresponding drop of 1 psi (7 kPa) in inflation pressure. Check your tire pressures frequently and adjust them to the proper pressure which can be found on the Safety Compliance Certification Label or Tire Label. To check the pressure in your tire(s): 1. Make sure the tires are cool, meaning they are not hot from driving even a mile. If you are checking tire pressure when the tire is hot, (i.e. driven more than 1 mile [1.6 km]), never “bleed” or reduce air pressure. The tires are hot from driving and it is normal for pressures to increase above recommended cold pressures. A hot tire at or below recommended cold inflation pressure could be significantly under-inflated.


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Note: If you have to drive a distance to get air for your tire(s), check and record the tire pressure first and add the appropriate air pressure when you get to the pump. It is normal for tires to heat up and the air pressure inside to go up as you drive. 2. Remove the cap from the valve on one tire, then firmly press the tire gauge onto the valve and measure the pressure with the tire gauge. 3. Add enough air to reach the recommended air pressure. Note: If you overfill the tire, release air by pushing on the metal stem in the center of the valve. Then recheck the pressure with your tire gauge. 4. Replace the valve cap. 5. Repeat this procedure for each tire, including the spare. Note: Some spare tires operate at a higher inflation pressure than the other tires. For T-type/mini-spare tires (see T-Type/Mini-Spare Tire Information section for description): Store and maintain at 60 psi (4.15 bar). For Full Size and Dissimilar spare tires (see Dissimilar Spare Tire/Wheel Information section for description): Store and maintain at the higher of the front and rear inflation pressure as shown on the Safety Compliance Certification Label or the Tire Label. 6. Visually inspect the tires to make sure there are no nails or other objects embedded that could poke a hole in the tire and cause an air leak. 7. Check the sidewalls to make sure there are no gouges, cuts or bulges.


TIRE CARE


Inspecting your tires Periodically inspect the tire treads for uneven or excessive wear and remove objects such as stones, nails or glass that may be wedged in the tread grooves. Check for holes or cuts that may permit air leakage from the tire and make necessary repairs. Also inspect the tire sidewalls for cracking, cuts, bruises and other signs of damage or excessive wear. If internal damage to the tire is suspected, have the tire demounted and inspected in case it needs to be repaired or replaced. For your safety, tires that are damaged or show signs of excessive wear should not be used because they are more likely to blow out or fail.


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Improper or inadequate vehicle maintenance can cause tires to wear abnormally. Inspect all your tires, including the spare, frequently, and replace them if one or more of the following conditions exist:


Tire wear When the tread is worn down to 1/16th of an inch (2 mm), tires must be replaced to help prevent your vehicle from skidding and hydroplaning. Built-in treadwear indicators, or “wear bars”, which look like narrow strips of smooth rubber across the tread will appear on the tire when the tread is worn down to 1/16th of an inch (2 mm). When the tire tread wears down to the same height as these “wear bars”, the tire is worn out and must be replaced.


Damage Periodically inspect the tire treads and sidewalls for damage (such as bulges in the tread or sidewalls, cracks in the tread groove and separation in the tread or sidewall). If damage is observed or suspected have the tire inspected by a tire professional. Tires can be damaged during off-road use, so inspection after off-road use is also recommended.


Age Tires degrade over time depending on many factors such as


weather, storage conditions, and conditions of use (load, speed, inflation pressure, etc.) the tires experience throughout their lives. In general, tires should be replaced after six years regardless of tread wear. However, heat caused by hot climates or frequent high loading conditions can accelerate the aging process and may require tires to be replaced more frequently. You should replace your spare tire when you replace the road tires or after six years due to aging even if it has not been used.


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U.S. DOT Tire Identification Number (TIN) Both U.S. and Canada Federal regulations require tire manufacturers to place standardized information on the sidewall of all tires. This information identifies and describes the fundamental characteristics of the tire and also provides a U.S. DOT Tire Identification Number for safety standard certification and in case of a recall. This begins with the letters “DOT” and indicates that the tire meets all federal standards. The next two numbers or letters are the plant code designating where it was manufactured, the next two are the tire size code and the last four numbers represent the week and year the tire was built. For example, the numbers 317 mean the 31st week of 1997. After 2000 the numbers go to four digits. For example, 2501 means the 25th week of 2001. The numbers in between are identification codes used for traceability. This information is used to contact customers if a tire defect requires a recall.


Tire Replacement Requirements Your vehicle is equipped with tires designed to provide a safe ride and handling capability.


Only use replacement tires and wheels that are the same size, load index, speed rating and type (such as P-metric versus


LT-metric or all-season versus all-terrain) as those originally provided by Ford. The recommended tire and wheel size may be found on either the Safety Compliance Certification Label or the Tire Label which is located on the B-Pillar or edge of the driver’s door. If this information is not found on these labels then you should consult your Ford Dealer. Use of any tire or wheel not recommended by Ford can affect the safety and performance of your vehicle, which could result in an increased risk of loss of vehicle control, vehicle rollover, personal injury and death. Additionally the use of non-recommended tires and wheels could cause steering, suspension, axle or transfer case/power transfer unit failure. If you have questions regarding tire replacement, see an authorized dealer.


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When mounting replacement tires and wheels, you should not exceed the maximum pressure indicated on the sidewall of the


tire to set the beads without additional precautions listed below. If the beads do not seat at the maximum pressure indicated, re-lubricate and try again. When inflating the tire for mounting pressures up to 20 psi greater than the maximum pressure on the tire sidewall, the following precautions must be taken to protect the person mounting the tire: 1. Make sure that you have the correct tire and wheel size. 2. Lubricate the tire bead and wheel bead seat area again. 3. Stand at a minimum of 12 feet away from the tire wheel assembly. 4. Use both eye and ear protection. For a mounting pressure more than 20 psi greater than the maximum pressure, a Ford Dealer or other tire service professional should do the mounting. Always inflate steel carcass tires with a remote air fill with the person inflating standing at a minimum of 12 ft. away from the tire wheel assembly.


Important: Remember to replace the wheel valve stems when the road tires are replaced on your vehicle. It is recommended that the two front tires or two rear tires generally be replaced as a pair.


Safety practices Driving habits have a great deal to do with your tire mileage and safety. • Observe posted speed limits • Avoid fast starts, stops and turns • Avoid potholes and objects on the road • Do not run over curbs or hit the tire against a curb when parking


If your vehicle is stuck in snow, mud, sand, etc., do not rapidly spin the tires; spinning the tires can tear the tire and cause an


explosion. A tire can explode in as little as three to five seconds.


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Do not spin the wheels at over 35 mph (56 km/h). The tires may fail and injure a passenger or bystander.


Highway hazards No matter how carefully you drive there’s always the possibility that you may eventually have a flat tire on the highway. Drive slowly to the closest safe area out of traffic. This may further damage the flat tire, but your safety is more important. If you feel a sudden vibration or ride disturbance while driving, or you suspect your tire or vehicle has been damaged, immediately reduce your speed. Drive with caution until you can safely pull off the road. Stop and inspect the tires for damage. If a tire is under-inflated or damaged, deflate it, remove wheel and replace it with your spare tire and wheel. If you cannot detect a cause, have the vehicle towed to the nearest repair facility or tire dealer to have the vehicle inspected.


Tire and wheel alignment A bad jolt from hitting a curb or pothole can cause the front end of your vehicle to become misaligned or cause damage to your tires. If your vehicle seems to pull to one side when you’re driving, the wheels may be out of alignment. Have an authorized dealer check the wheel alignment periodically. Wheel misalignment in the front or the rear can cause uneven and rapid treadwear of your tires and should be corrected by an authorized dealer. Front wheel drive (FWD) vehicles and those with an independent rear suspension (if equipped) may require alignment of all four wheels. The tires should also be balanced periodically. An unbalanced tire and wheel assembly may result in irregular tire wear.


Tire rotation Rotating your tires at the recommended interval (as indicated in the scheduled maintenance information that comes with your vehicle) will help your tires wear more evenly, providing better tire performance and longer tire life. Unless otherwise specified, rotate the tires approximately every 5,000 miles (8,000 km).


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• Front Wheel Drive (FWD)


vehicles (front tires at top of diagram)


• Rear Wheel Drive (RWD) vehicles/Four Wheel Drive (4WD)/ All Wheel Drive (AWD) vehicles (front tires at top of diagram)


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Sometimes irregular tire wear can be corrected by rotating the tires. Note: If your tires show uneven wear ask an authorized dealer to check for and correct any wheel misalignment, tire imbalance or mechanical problem involved before tire rotation. Note: Your vehicle may be equipped with a dissimilar spare tire/wheel. A dissimilar spare tire/wheel is defined as a spare tire and/or wheel that is different in brand, size or appearance from the road tires and wheels. If you have a dissimilar spare tire/wheel it is intended for temporary use only and should not be used in a tire rotation. Note: After having your tires rotated, inflation pressure must be checked and adjusted to the vehicle requirements.


INFORMATION CONTAINED ON THE TIRE SIDEWALL Both U.S. and Canada Federal regulations require tire manufacturers to place standardized information on the sidewall of all tires. This information identifies and describes the fundamental characteristics of the tire and also provides a U.S. DOT Tire Identification Number for safety standard certification and in case of a recall.


Information on “P” type tires P215/65R15 95H is an example of a tire size, load index and speed rating. The definitions of these items are listed below. (Note that the tire size, load index and speed rating for your vehicle may be different from this example.) 1. P: Indicates a tire, designated by the Tire and Rim Association (T&RA), that may be used for service on cars, SUVs, minivans and light trucks. Note: If your tire size does not begin with a letter this may mean it is designated by either ETRTO (European Tire and Rim Technical Organization) or JATMA (Japan Tire Manufacturing Association). 2. 215: Indicates the nominal width of the tire in millimeters from sidewall edge to sidewall edge. In general, the larger the number, the wider the tire.


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3. 65: Indicates the aspect ratio which gives the tire’s ratio of height to width. 4. R: Indicates a “radial” type tire. 5. 15: Indicates the wheel or rim diameter in inches. If you change your wheel size, you will have to purchase new tires to match the new wheel diameter. 6. 95: Indicates the tire’s load index. It is an index that relates to how much weight a tire can carry. You may find this information in your Owner’s Guide. If not, contact a local tire dealer. Note: You may not find this information on all tires because it is not required by federal law. 7. H: Indicates the tire’s speed rating. The speed rating denotes the speed at which a tire is designed to be driven for extended periods of time under a standard condition of load and inflation pressure. The tires on your vehicle may operate at different conditions for load and inflation pressure. These speed ratings may need to be adjusted for the difference in conditions. The ratings range from 81 mph (130 km/h) to 186 mph (299 km/h). These ratings are listed in the following chart. Note: You may not find this information on all tires because it is not required by federal law.


Letter rating


Speed rating - mph (km/h)


81 mph (130 km/h) 87 mph (140 km/h) 99 mph (159 km/h) 106 mph (171 km/h) 112 mph (180 km/h) 118 mph (190 km/h) 124 mph (200 km/h) 130 mph (210 km/h) 149 mph (240 km/h) 168 mph (270 km/h) 186 mph (299 km/h) Note: For tires with a maximum speed capability over 149 mph (240 km/h), tire manufacturers sometimes use the letters ZR. For those with a maximum speed capability over 186 mph (299 km/h), tire manufacturers always use the letters ZR.


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8. U.S. DOT Tire Identification Number (TIN): This begins with the letters “DOT” and indicates that the tire meets all federal standards. The next two numbers or letters are the plant code designating where it was manufactured, the next two are the tire size code and the last four numbers represent the week and year the tire was built. For example, the numbers 317 mean the 31st week of 1997. After 2000 the numbers go to four digits. For example, 2501 means the 25th week of 2001. The numbers in between are identification codes used for traceability. This information is used to contact customers if a tire defect requires a recall. 9. M+S or M/S: Mud and Snow, or AT: All Terrain, or AS: All Season. 10. Tire Ply Composition and Material Used: Indicates the number of plies or the number of layers of rubber-coated fabric in the tire tread and sidewall. Tire manufacturers also must indicate the ply materials in the tire and the sidewall, which include steel, nylon, polyester, and others. 11. Maximum Load: Indicates the maximum load in kilograms and pounds that can be carried by the tire. Refer to the Safety Compliance Certification Label, which is located on the B-Pillar or the edge of the driver’s door, for the correct tire pressure for your vehicle. 12. Treadwear, Traction and Temperature Grades • Treadwear: The treadwear grade is a comparative rating based on the


wear rate of the tire when tested under controlled conditions on a specified government test course. For example, a tire graded 150
would wear one and one-half (11⁄2) times as well on the government course as a tire graded 100. • Traction: The traction grades, from highest to lowest are AA, A, B,


and C. The grades represent the tire’s ability to stop on wet pavement as measured under controlled conditions on specified government test surfaces of asphalt and concrete. A tire marked C may have poor traction performance.


• Temperature: The temperature grades are A (the highest), B and C, representing the tire’s resistance to the generation of heat and its ability to dissipate heat when tested under controlled conditions on a specified indoor laboratory test wheel.


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13. Maximum Permissible Inflation Pressure: Indicates the tire manufacturers’ maximum permissible pressure and/or the pressure at which the maximum load can be carried by the tire. This pressure is normally higher than the manufacturer’s recommended cold inflation pressure which can be found on the Safety Compliance Certification Label or Tire Label which is located on the B-Pillar or the edge of the driver’s door. The cold inflation pressure should never be set lower than the recommended pressure on the vehicle label. The tire suppliers may have additional markings, notes or warnings such as standard load, radial tubeless, etc.


Additional information contained on the tire sidewall for “LT” type tires “LT” type tires have some additional information beyond those of “P” type tires; these differences are described below: 1. LT: Indicates a tire, designated by the Tire and Rim Association (T&RA), that is intended for service on light trucks. 2. Load Range/Load Inflation Limits: Indicates the tire’s load-carrying capabilities and its inflation limits. 3. Maximum Load Dual lb. (kg) at psi (kPa) cold: Indicates the maximum load and tire pressure when the tire is used as a dual; defined as four tires on the rear axle (a total of six or more tires on the vehicle). 4. Maximum Load Single lb. (kg) at psi (kPa) cold: Indicates the maximum load and tire pressure when the tire is used as a single; defined as two tires (total) on the rear axle.


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Information on “T” type tires “T” type tires have some additional information beyond those of “P” type tires; these differences are described below: T145/80D16 is an example of a tire size. Note: The temporary tire size for your vehicle may be different from this example. 1. T: Indicates a type of tire, designated by the Tire and Rim Association (T&RA), that is intended for temporary service on cars, SUVs, minivans and light trucks. 2. 145: Indicates the nominal width of the tire in millimeters from sidewall edge to sidewall edge. In general, the larger the number, the wider the tire. 3. 80: Indicates the aspect ratio which gives the tire’s ratio of height to width. Numbers of 70 or lower indicate a short sidewall. 4. D: Indicates a “diagonal” type tire. R: Indicates a “radial” type tire. 5. 16: Indicates the wheel or rim diameter in inches. If you change your wheel size, you will have to purchase new tires to match the new wheel diameter.


Location of the tire label You will find a Tire Label containing tire inflation pressure by tire size and other important information located on the B-Pillar or the edge of the driver’s door. Refer to the payload description and graphic in the Vehicle loading — with and without a trailer section.


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SNOW TIRES AND CHAINS


Snow tires must be the same size and grade as the tires you currently have on your vehicle.


The tires on your vehicle have all weather treads to provide traction in rain and snow. However, in some climates, you may need to use snow tires and chains. If you need to use chains, it is recommended that steel wheels (of the same size and specifications) be used, as chains may chip aluminum wheels. Follow these guidelines when using snow tires and chains: • Use only SAE class “S” cables or equivalent on the front axle for P215/60R17 equipped vehicles. SAE class “S” chains or other conventional link chains may cause damage to the vehicles wheel house and/or body. Use of optional spike spider type traction devices or equivalent is also acceptable. • Do not install tire chains, cables, or optional traction devices on the rear tires. This could cause damage to the vehicle’s wheel house or body.


optional P225/55R18 tires.


• Do not use tire chains, cables, or optional traction devices with • Install cable chains securely, verifying that the cables do not touch any • Drive cautiously. If you hear the cables rub or bang against your


wiring, brake lines or fuel lines.


vehicle, stop and re-tighten the cables. If this does not work, remove the cables to prevent damage to your vehicle.


tire cables on dry roads.


• If possible, avoid fully loading your vehicle. • Remove the tire cables when they are no longer needed. Do not use • The suspension insulation and bumpers will help prevent vehicle damage. Do not remove these components from your vehicle when using snow tires and chains. • Do not exceed 30 mph (48 km/h) with tire cables on your vehicle.


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VEHICLE LOADING – WITH AND WITHOUT A TRAILER This section will guide you in the proper loading of your vehicle and/or trailer, to keep your loaded vehicle weight within its design rating capability, with or without a trailer. Properly loading your vehicle will provide maximum return of vehicle design performance. Before loading your vehicle, familiarize yourself with the following terms for determining your vehicle’s weight ratings, with or without a trailer, from the vehicle’s Tire Label or Safety Compliance Certification Label: Base Curb Weight – is the weight of the vehicle including a full tank of fuel and all standard equipment. It does not include passengers, cargo, or optional equipment. Vehicle Curb Weight – is the weight of your new vehicle when you picked it up from your authorized dealer plus any aftermarket equipment.


Payload – is the combined weight of cargo and passengers that the vehicle is carrying. The maximum payload for your vehicle can be found on the Tire Label on the B-Pillar or the edge of the driver’s door (vehicles exported outside the US and Canada may not have a Tire Label). Look for “THE COMBINED WEIGHT OF OCCUPANTS AND CARGO SHOULD NEVER EXCEED XXX kg OR XXX lb.” for maximum payload. The payload listed on the Tire Label is the maximum payload for the vehicle as built by the assembly plant. If any aftermarket or authorized-dealer installed equipment has been installed on the vehicle, the weight of the equipment must be subtracted from the payload listed on the Tire Label in order to determine the new payload. 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.


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Example only:


Cargo Weight – includes all weight added to the Base Curb Weight, including cargo and optional equipment. When towing, trailer tongue load weight is also part of cargo weight. GAW (Gross Axle Weight) – is the total weight placed on each axle (front and rear) – including vehicle curb weight and all payload.


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GAWR (Gross Axle Weight Rating) – is the maximum allowable weight that can be carried by a single axle (front or rear). These numbers are shown on the Safety Compliance Certification Label located on the B-Pillar or the edge of the driver’s door. The total load on each axle must never exceed its GAWR. Note: For trailer towing information refer to Trailer towing found in this chapter or the RV and Trailer Towing Guide provided by your authorized dealer.


GVW (Gross Vehicle Weight) – is the Vehicle Curb Weight + cargo + passengers. GVWR (Gross Vehicle Weight Rating) – is the maximum allowable weight of the fully loaded vehicle (including all options, equipment, passengers and cargo). The GVWR is shown on the Safety Compliance Certification Label located on the B-Pillar or the edge of the driver’s door. The GVW must never exceed the GVWR.


Exceeding the Safety Compliance Certification Label vehicle weight rating limits could result in substandard vehicle handling or performance, engine, transmission and/or structural damage, serious damage to the vehicle, loss of control and personal injury.


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GCW (Gross Combined Weight) – is the weight of the loaded vehicle (GVW) plus the weight of the fully loaded trailer. GCWR (Gross Combined Weight Rating) – is the maximum allowable weight of the vehicle and the loaded trailer – including all cargo and passengers – that the vehicle can handle without risking damage. (Important: The towing vehicles’ braking system is rated for operation at GVWR, not at GCWR. Separate functional brakes should be used for safe control of towed vehicles and for trailers where the GCW of the towing vehicle plus the trailer exceed the GVWR of the towing vehicle. The GCW must never exceed the GCWR. Maximum Loaded Trailer Weight – is the highest possible weight of a fully loaded trailer the vehicle can tow. It assumes a vehicle with only mandatory options, no cargo (internal or external), a tongue load of 10–15% (conventional trailer), and driver only (150 lb. [68 kg]). Consult your authorized dealer (or the RV and Trailer Towing Guide provided by your authorized dealer) for more detailed information.


Do not exceed the GVWR or the GAWR specified on the Safety Compliance Certification Label.


Do not use replacement tires with lower load carrying capacities than the original tires because they may lower the vehicle’s


GVWR and GAWR limitations. Replacement tires with a higher limit than the original tires do not increase the GVWR and GAWR limitations.


Exceeding any vehicle weight rating limitation could result in serious damage to the vehicle and/or personal injury.


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Steps for determining the correct load limit: 1. Locate the statement “The combined weight of occupants and cargo should never exceed XXX kg or XXX lbs.” 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 lbs. 4. The resulting figure equals the available amount of cargo and luggage load capacity. For example, if the “XXX” amount equals 1,400 lbs. and there will be five 150 lb. passengers in your vehicle, the amount of available cargo and luggage load capacity is 650 lbs. (1400–750 (5 x 150) = 650 lb.). In metric units (635–340 (5 x 68) = 295 kg.) 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: • Another example for your vehicle with 1400 lb. (635 kg) of cargo and luggage capacity. You decide to go golfing. Is there enough load capacity to carry you, 4 of your friends and all the golf bags? You and four friends average 220 lb. (99 kg) each and the golf bags weigh approximately 30 lb. (13.5 kg) each. The calculation would be: 1400 - (5 x 220) - (5 x 30) = 1400 - 1100 - 150 = 150 lb. 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 kg - (5 x 99 kg) - (5 x 13.5 kg) = 635 - 495 - 67.5 = 72.5 kg.


• A final example for your vehicle with 1400 lb. (635 kg) of 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 2 years. Measuring the inside of the vehicle with the rear seat folded down, you have room for 12-100 lb. (45 kg) bags of cement. Do you have enough load capacity to transport the cement to your home? If you and your friend each weigh 220 lb. (99 kg), the calculation would be: 1400 - (2 x 220) - (12 x 100) = 1400 - 440 - 1200 = - 240 lb. No, you do not have enough cargo capacity to carry that much weight. In metric units, the


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calculation would be: 635 kg - (2 x 99 kg) - (12 x 45 kg) = 635 - 198 - 540 = -103 kg. You will need to reduce the load weight by at least 240 lb. (104 kg). If you remove 3-100 lb. (45 kg) cement bags, then the load calculation would be: 1400 - (2 x 220) - (9 x 100) = 1400 - 440 - 900 = 60 lb. Now you have the load capacity to transport the cement and your friend home. In metric units, the calculation would be: 635 kg - (2 x 99 kg) - (9 x 45 kg) = 635 - 198 - 405 = 32 kg.


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 found on the edge of the driver’s door.


TRAILER TOWING Your vehicle is capable of towing a trailer up to 1,000 lb. (454 kg) gross trailer weight with a maximum tongue load of 100 lb. (45 kg). Do not tow a trailer until your vehicle has been driven at least 500 miles (800 km). Towing a trailer places an additional load on your vehicle’s engine, transmission, brakes, tires and suspension. Inspect these components carefully after towing.


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.


Preparing to tow Use the proper equipment for towing a trailer and make sure it is properly attached to your vehicle. See your authorized dealer or a reliable trailer dealer if you require assistance.


Hitches Do not use hitches that clamp onto the vehicle bumper. Use a load carrying hitch. You must distribute the load in your trailer so that 10–15% of the total weight of the trailer is on the tongue.


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Safety chains Always connect the trailer’s safety chains to the frame or hook retainers of the vehicle hitch. To connect the trailer’s safety chains, cross the chains under the trailer tongue and allow slack for turning corners. If you use a rental trailer, follow the instructions that the rental agency gives to you. Do not attach safety chains to the bumper. Trailer brakes Electric brakes and manual, automatic or surge-type trailer brakes are safe if installed properly and adjusted to the manufacturer’s specifications. The trailer brakes must meet local and Federal regulations.


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.


The braking system of the tow vehicle is rated for operation at the GVWR not GCWR. Trailer lamps Trailer lamps are required on most towed vehicles. Make sure all running lights, brake lights, turn signals and hazard lights are working. See your authorized dealer or trailer rental agency for proper instructions and equipment for hooking up trailer lamps. Driving while you tow When towing a trailer: • Turn off the speed control. The speed control may shut off automatically when you are towing on long, steep grades. • Consult your local motor vehicle speed regulations for towing a trailer. • It is recommended to select the L (Low) gear position when additional engine braking is needed. In situations such as prolonged downhill driving on steep grades (i.e., driving in mountainous areas), additional engine braking is needed to reduce the load on the vehicle’s regular brake system to prevent them from overheating.


• Anticipate stops and brake gradually. Servicing after towing If you tow a trailer for long distances, your vehicle will require more frequent service intervals. Refer to your scheduled maintenance information for more information.


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Trailer towing tips • Practice turning, stopping and backing up before starting on a trip to get the feel of the vehicle trailer combination. When turning, make wider turns so the trailer wheels will clear curbs and other obstacles.


• Allow more distance for stopping with a trailer attached. • If you are driving down a long or steep hill, shift into the “L” gear


weight.


position. Do not apply the brakes continuously, as they may overheat and become less effective.


• The trailer tongue weight should be 10–15% of the loaded trailer • After you have traveled 50 miles (80 km), thoroughly check your • To aid in engine/transmission cooling and A/C efficiency during hot • Vehicles with trailers should not be parked on a grade. If you must


hitch, electrical connections and trailer wheel lug nuts.


weather while stopped in traffic, place the gearshift lever in P (Park).


park on a grade, place wheel chocks under the trailer’s wheels.


RECREATIONAL TOWING Follow these guidelines for your specific powertrain combination to tow your vehicle for personal travel (such as behind a recreational vehicle or moving truck). In case of roadside emergency with a disabled vehicle, please refer to the Wrecker towing section in the Roadside Emergencies chapter. These guidelines are designed to ensure that your transmission is not damaged due to insufficient lubrication. Front Wheel Drive (FWD) vehicles: Do not tow your Front Wheel Drive vehicle with the front drive wheels on the ground as transaxle damage may occur. It is recommended to tow your vehicle with the front drive wheels on a dolly or use a car-hauling trailer. All Wheel Drive (AWD) vehicles: Do not tow your All Wheel Drive vehicle with any wheels on the ground as vehicle or transaxle damage may occur. It is recommended to tow your vehicle using a car-hauling trailer.


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STARTING


Positions of the ignition 1. LOCK, locks the automatic transaxle gearshift lever and allows key removal. This position also shuts the engine and all electrical accessories off without locking the steering wheel. To lock the steering wheel, remove the key then turn the steering wheel. 2. ACC, allows the electrical accessories such as the radio to operate while the engine is not running. This position also unlocks the steering wheel. 3. RUN, all electrical circuits operational. Warning lights illuminated. Key position when driving. 4. START, cranks the engine. Release the key as soon as the engine starts.


Starting your vehicle Engine starting is controlled by the powertrain control system. This system meets all Canadian Interference-Causing Equipment standard requirements regulating the impulse electrical field strength of radio noise. When starting a fuel-injected engine, don’t press the accelerator before or during starting. Only use the accelerator when you have difficulty starting the engine. For more information on starting the vehicle, refer to Starting the engine in this chapter. To avoid potential transmission damage at extremely cold temperatures (below -20°F [-30°C]), it is recommended that the vehicle be warmed up to normal operating temperature before driving at highway speeds above 50 mph (80 km/h). Normal operating temperature is normally reached after 10 minutes of moderate driving or idling.


Extended idling at high engine speeds can produce very high temperatures in the engine and exhaust system, creating the risk


of fire or other damage.


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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.


Do not start your vehicle in a closed garage or in other enclosed areas. Exhaust fumes can be toxic. Always open the garage door before you start the engine. See Guarding against exhaust fumes in this chapter for more instructions.


If you smell exhaust fumes inside your vehicle, have your dealer inspect your vehicle immediately. Do not drive if you smell


exhaust fumes.


Important safety precautions A computer system controls the engine’s idle revolutions per minute (RPM). When the engine starts, the idle RPM runs higher than normal in order to warm the engine. If the engine idle speed does not slow down automatically, have the vehicle checked. Before starting the vehicle: 1. Make sure all vehicle occupants have buckled their safety belts. For more information on safety belts and their proper usage, refer to the Seating and Safety Restraints chapter. 2. Make sure vehicle accessories are off. • Make sure the parking brake is


set.


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P (Park).


3. Turn the key to 3 (RUN) without turning the key to 4 (START).


Some warning lights will briefly illuminate. See Warning lights and chimes in the Instrument Cluster chapter for more information regarding the warning lights.


Starting the engine 1. Turn the key to 3 (RUN) without turning the key to 4 (START). 2. Turn the key to 4 (START), then release the key as soon as the engine starts. Excessive cranking could damage the starter.


Note: If the engine does not start within five seconds on the first try, turn the key to LOCK, wait 10 seconds and try again. If the engine still fails to start, press the accelerator to the floor and try again; this will allow the engine to crank with the fuel shut off in case the engine is flooded with fuel.


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Guarding against exhaust fumes Carbon monoxide is present in exhaust fumes. Take precautions to avoid its dangerous effects.


If you smell exhaust fumes inside your vehicle, have your dealer inspect your vehicle immediately. Do not drive if you smell


exhaust fumes.


Important ventilating information If the engine is idling while the vehicle is stopped for a long period of time, open the windows at least one inch (2.5 cm) or adjust the heating or air conditioning to bring in fresh air.


ENGINE BLOCK HEATER (IF EQUIPPED) An engine block heater warms the engine coolant which aids in starting and heater/defroster performance. Use of an engine block heater is strongly recommended if you live in a region where temperatures reach -10°F (-23°C) or below. For best results, plug the heater in at least three hours before starting the vehicle. The heater can be plugged in the night before starting the vehicle.


To reduce the risk of electrical shock, do not use your heater with ungrounded electrical systems or two-pronged (cheater)


adapters.


BRAKES 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 and should be inspected by an authorized dealer. If the vehicle has continuous vibration or shudder in the steering wheel while braking, the vehicle should be inspected by an authorized dealer. Refer to Brake system warning light in the Instrument Cluster chapter for information on the brake BRAKE system warning light.


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Four-wheel anti-lock brake system (ABS) Your vehicle is equipped with an Anti-lock Braking System (ABS). This system helps you maintain steering control during emergency stops by keeping the brakes from locking. Noise from the ABS pump motor and brake pedal pulsation may be observed during ABS braking and the brake pedal may suddenly travel a little farther as soon as ABS braking is done and normal brake operation resumes. These are normal characteristics of the ABS and should be no reason for concern. Using ABS When hard braking is required, apply continuous force on the brake pedal; do not pump the brake pedal since this will reduce the effectiveness of the ABS and will increase your vehicle’s stopping distance. The ABS will be activated immediately, allowing you to retain steering control during hard braking and on slippery surfaces. However, the ABS does not decrease stopping distance. ABS warning lamp The ABS lamp in the instrument cluster momentarily illuminates when the ignition is turned on. If the light does not illuminate during start up, remains on or flashes, the ABS is disabled due to a malfunction and needs to be serviced. Even when the ABS is disabled, normal braking is still effective. (If your BRAKE warning lamp BRAKE illuminates with the parking brake released, have your brake system serviced immediately.)


ABS


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Parking brake Apply the parking brake whenever the vehicle is parked. To set the parking brake, press the parking brake pedal down until the pedal stops.


The BRAKE warning lamp in the instrument cluster illuminates and remains illuminated (when the ignition is turned ON) until the parking brake is released.


BRAKE


Always set the parking brake fully and make sure that the gearshift is securely latched in P (Park).


The parking brake is not recommended to stop a moving vehicle. However, if the normal brakes fail, the parking brake can be used to stop your vehicle in an emergency. Since the parking brake applies only the rear brakes, the vehicle’s stopping distance will increase greatly and the handling of your vehicle will be adversely affected. Push the parking brake pedal downward again to release the parking brake. Driving with the parking brake on will cause the brakes to wear out quickly and reduce fuel economy. Note: If the vehicle is driven with the parking brake applied, a chime will sound.


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TRACTION CONTROL姟 (IF EQUIPPED) Your vehicle may be equipped with a Traction Control娂 system. This system helps you maintain the stability and steerability of your vehicle. It is especially useful on slippery road surfaces. The system operates by detecting and controlling wheel spin. The system borrows many of the electronic elements already present in the anti-lock braking system (ABS). Wheel-speed sensors allow excess wheel spin to be detected by the Traction Control娂 portion of the ABS computer. Excess wheel spin is controlled through engine torque reduction. This is realized via the fully electronic engine control system. This process is very sensitive to driving conditions and very fast acting. The wheels “search” for optimum traction several times a second and adjustments are made accordingly. The Traction Control娂 system will allow your vehicle to make better use of available traction on slippery surfaces. The system is a driver aid which makes your vehicle easier to handle primarily on snow and ice covered roads. During Traction Control娂 operation the engine will not “rev-up” when you push further on the accelerator. This is normal system behavior. If you should become stuck in deep snow or on a very slippery road surface, try switching the Traction Control娂 system off. This may allow excess wheel spin to “dig” the vehicle out or enable a successful “rocking” maneuver.


Aggressive driving in any road conditions can cause you to lose control of your vehicle increasing the risk of severe personal injury or property damage. The occurrence of a Traction Control娂 event is an indication that at least some of the tires have exceeded their ability to grip the road; this may lead to an increased risk of loss of vehicle control, vehicle rollover, personal injury and death. If you experience a severe road event, SLOW DOWN.


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STEERING To help prevent damage to the power steering system, never hold the steering wheel at its furthest turning points (until it stops) for more than a few seconds when the engine is running. It is also important to maintain a proper power steering fluid level in the power steering fluid reservoir: • Do not operate the vehicle with a low power steering pump fluid level. See Checking and adding power steering fluid in the Maintenance and Specifications chapter. • Some noise is normal during operation. If the noise is excessive, check for low power steering pump fluid level before seeking service by your authorized dealer. • Heavy or uneven steering efforts may be caused by low power steering pump fluid level. Check for low power steering pump fluid level before seeking service by your authorized dealer.


• Do not fill the power steering pump reservoir above the maximum


level, as this may result in leaks from the reservoir. See Checking and adding power steering fluid in the Maintenance and Specifications chapter.


If the power steering system breaks down (or if the engine is turned off), you can steer the vehicle manually, but it takes more effort. If the steering wanders or pulls, check for: • an improperly inflated tire • uneven tire wear • loose or worn suspension components • loose or worn steering components • improper steering alignment AUTOMATIC TRANSAXLE OPERATION


Brake-shift interlock This vehicle is equipped with a brake-shift interlock feature that prevents the gearshift lever from being moved from P (Park) when the ignition is in the ON position unless the brake pedal is depressed. If you cannot move the gearshift lever out of P (Park) with ignition in the ON position and the brake pedal depressed: 1. Remove the trim ring around the gearshift lever.


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2. Remove the console panel by opening the armrest, grasping the panel firmly, then pulling up. This will allow access to the gearshift assembly.


3. Locate the white plastic cover at the front driver side of the gearshift lever. Locate the screw which attaches this cover and remove using a screwdriver. Remove the cover by tilting forward while pulling up and out of the gearshift assembly.


4. Locate the silver button in the driver side front area of the gearshift assembly. Press and hold the silver button while moving the gearshift lever out of P (Park) into N (Neutral). 5. Start the vehicle and release the parking brake. If it is necessary to use the above procedure to move the gearshift lever, it is possible that a fuse has blown or the vehicle’s brakelamps are not operating properly. Refer to Fuses and relays in the Roadside Emergencies chapter.


Do not drive your vehicle until you verify that the brakelamps are working.


Always set the parking brake fully and make sure the gearshift is latched in P (Park). Turn the ignition to the LOCK position and


remove the key whenever you leave your vehicle.


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.


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Understanding the gearshift positions of the Continuously Variable Transaxle (CVT) (if equipped) The CVT is a fully automatic transaxle that electronically monitors vehicle system inputs and outputs and driver demands to select the desired drive ratio. Unlike traditional automatic transmissions/transaxles, the CVT continually adjusts the optimum overall drive ratio between engine and drive wheels for all operating conditions. As traditional automatic transmissions/transaxles shift up or down in gears, this shifting in gear ratios is noticeable by increasing and decreasing engine RPM which causes a slight energy loss as the gears change. The gear changes can be felt by the driver. With the CVT, there is no energy transfer loss from shifting because there is no gear shifting up or down. Acceleration up to vehicle operating speed is smooth and continuous; uninterrupted by gear shifting. The same holds true for coasting down to idle; smooth and continuous. Unlike traditional automatic transmissions/transaxles, the CVT offers more responsive performance and increased fuel economy.


P (Park) This position locks the transaxle and prevents the front wheels from turning. To put your vehicle in gear: • Depress the brake pedal • Move the gearshift lever into the desired gear


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To put your vehicle in P (Park): • Come to a complete stop • Move the gearshift lever and securely latch it in P (Park)


Always set the parking brake fully and make sure the gearshift is latched in P (Park). Turn the ignition to the LOCK position and


remove the key whenever you leave your vehicle.


R (Reverse) With the gearshift lever in R (Reverse), the vehicle will move backward. Always come to a complete stop before shifting into and out of R (Reverse). N (Neutral) With the gearshift lever in N (Neutral), the vehicle can be started and is free to roll. Hold the brake pedal down while in this position. D (Drive) The normal driving position for the best fuel economy. L (Low) Provides more engine braking when the accelerator pedal is released than D (Drive). Understanding the gearshift positions of the 6–speed automatic transaxle (if equipped)


P (Park) This position locks the transaxle and prevents the front wheels from turning.


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To put your vehicle in gear: • Depress the brake pedal • Move the gearshift lever into the desired gear To put your vehicle in P (Park): • Come to a complete stop • Move the gearshift lever and securely latch it in P (Park)


Always set the parking brake fully and make sure the gearshift is latched in P (Park). Turn the ignition to the LOCK position and


remove the key whenever you leave your vehicle.


R (Reverse) With the gearshift lever in R (Reverse), the vehicle will move backward. Always come to a complete stop before shifting into and out of R (Reverse). N (Neutral) With the gearshift lever in N (Neutral), the vehicle can be started and is free to roll. Hold the brake pedal down while in this position. D (Drive) The normal driving position for the best fuel economy. Transaxle operates in gears one through six. L (Low) Provides more engine braking when the accelerator pedal is released than D (Drive).


REVERSE SENSING SYSTEM (IF EQUIPPED) The Reverse Sensing System (RSS) sounds a tone to warn the driver of obstacles near the rear bumper when R (Reverse) is selected and the vehicle is moving at speeds less than 3 mph (5 km/h). The system is not effective at speeds above 3 mph (5 km/h) and may not detect certain angular or moving objects.


To help avoid personal injury, please read and understand the limitations of the reverse sensing system as contained in this


section. Reverse sensing is only an aid for some (generally large and fixed) objects when moving in reverse on a flat surface at “parking speeds”. Inclement weather may also affect the function of the RSS; this may include reduced performance or a false activation.


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To help avoid personal injury, always use caution when in R (Reverse) and when using the RSS.


This system is not designed to prevent contact with small or moving objects. The system is designed to provide a warning to


assist the driver in detecting large stationary objects to avoid damaging the vehicle. The system may not detect smaller objects, particularly those close to the ground.


Certain add-on devices such as large trailer hitches, bike or surfboard racks and any device that may block the normal


detection zone of the RSS system may create false beeps.


The RSS detects obstacles up to six feet (two meters) from the rear bumper with a decreased coverage area at the outer corners of the bumper, (refer to the figures for approximate zone coverage areas). As you move closer to the obstacle, the rate of the tone increases. When the obstacle is less than 10 inches (25.0 cm) away, the tone will sound continuously. If the RSS detects a stationary or receding object further than 10 inches (25.0 cm) from the side of the vehicle, the tone will sound for only three seconds. Once the system detects an object approaching, the tone will sound again.


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The RSS automatically turns on when the gear selector is placed in R (Reverse) and the ignition is ON. An RSS control on the instrument panel allows the driver to turn the

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