ignition MAZDA MODEL TRIBUTE HEV 2008 Repair Manual
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Mud and water
If you must drive through high
water, drive slowly. Traction or
brake capability may be limited.
When driving through water,
determine the depth; avoid water
higher than the bottom of the hubs
(if possible) and proceed slowly. If
the ignition system gets wet, the vehicle may stall.
Once through water, always try the brakes. Wet brakes do not stop the
vehicle as effectively as dry brakes. Drying can be improved by moving
your vehicle slowly while applying light pressure on the brake pedal.
Be cautious of sudden changes in vehicle speed or direction when you
are driving in mud. Even 4WD vehicles can lose traction in slick mud. As
when you are driving over sand, apply the accelerator slowly and avoid
spinning your wheels. If the vehicle does slide, steer in the direction of
the slide until you regain control of the vehicle.
If the transmission, transfer case or front axle are submerged in water,
their fluids should be checked and changed, if necessary.
Driving through deep water may damage the transmission.
If the front or rear axle is submerged in water, the axle lubricant should
be replaced.
After driving through mud, clean off residue stuck to rotating driveshafts
and tires. Excess mud stuck on tires and rotating driveshafts causes an
imbalance that could damage drive components.
“Tread Lightly” is an educational
program designed to increase public
awareness of land-use regulations
and responsibilities in our nation’s
wilderness areas. Mazda Motor
Corporation joins the U.S. Forest Service and the Bureau of Land
Management in encouraging you to help preserve our national forest and
other public and private lands by “treading lightly.”
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HAZARD FLASHER CONTROL
The hazard flasher is located on the
steering column, just behind the
steering wheel. The hazard flashers
will operate when the ignition is in
any position or if the key is not in
the ignition.
Push in the flasher control and all
front and rear direction signals will
flash. Press the flasher control again
to turn them off. Use it when your
vehicle is disabled and is creating a
safety hazard for other motorists.
Note:With extended use, the flasher may run down your low voltage
(underhood) battery.
FUEL PUMP/HIGH VOLTAGE SHUT-OFF SWITCHES
The fuel pump shut-off switch stops the electric fuel pump from sending
fuel to the engine and the high voltage shut-off switch shuts off power
from the high voltage battery when your vehicle receives a substantial
physical jolt.
After an accident, if the engine does not start, one or both of the
switches may have been activated.
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The fuel pump shut-off switch is
located in the front passenger’s
footwell, behind a flip-up cover.
The high voltage shut-off switch is
located in the cargo area on the
passenger side of the vehicle in the
jack compartment, behind the jack
access door. The switch is located
behind the jack.
To reset the switch(es):1. Turn the ignition to LOCK.
2. Check the fuel system for leaks.
3. If no leaks are apparent, reset the switch by pushing in on the reset button. Both switches should be checked and reset.
4. Turn the ignition to RUN.
5. Wait a few seconds and return the key to LOCK.
6. Make another check for leaks.
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The fuses are coded as follows:
Fuse/RelayLocation Fuse Amp
Rating Passenger Compartment Fuse
Panel Description
1 30A Not used (spare)
2 15A Brake On/Off switch
3 15A Not used (spare)
4 30A 110V inverter
5 10A Brake Shift Interlock (BSI), SPDJB, Keypad illumination
6 20A Turn signals, Stop lamps
7 10A Low beam headlamps (left)
8 10A Low beam headlamps (right)
9 15A Interior lights
10 15A Backlighting
11 10A Four wheel drive
12 7.5A Power mirror switch
13 7.5A Canister vent
14 10A FCIM (radio buttons), Satellite radio, Front display module
15 10A Climate control
16 15A Not used (spare)
17 20A All lock motor feeds, Liftgate release, Liftglass release
18 20A Heated seat
19 25A Rear wiper
20 15A Datalink
21 15A Fog lamps
22 15A Park lamps
23 15A High beam headlamps
24 20A Horn relay
25 10A Demand lamps
26 10A Instrument panel cluster
27 20A Ignition switch
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Fuse/RelayLocation Fuse Amp
Rating Power Distribution Box
Description
10 30A** Front wipers
11 30A** PCM/Power sustain
12 40A** Blower motor
13 10A* A/C clutch
14 10A* Heater/Coolant pump
15 50A** Traction Battery Control Module
(TBCM)
16 40A** Cooling fan 1
17 40A** Cooling fan 2
18 50A** ABS solenoid
19 30A** Power seats
20 — A/C clutch relay
21A — Rear defroster relay 21B — Not used
21C — Blower relay
21D — PCM relay 22 — Not used
23 5A* TBCM
24 20A* Fuel pump
25 15A* Ignition coils
26 5A* TBCM
27 10A* Cooling fan/TCM
28 15A* Heated Exhaust Gas Oxygen (HEGO) sensor
29 15A* PCM power
30A — Cooling fan 1 relay 30B — Power sustain relay
30C — Cooling fan main relay
30D — Cooling fan 2 relay 31A — Reverse lamp relay31B — Injector relay
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![MAZDA MODEL TRIBUTE HEV 2008 Repair Manual JUMP STARTING
(LOW VOLTAGE [UNDERHOOD] BATTERY ONLY)
Your vehicle has two separate jump starting procedures; the following
procedure is for the low voltage (underhood) battery only. Refer to
Jump star MAZDA MODEL TRIBUTE HEV 2008 Repair Manual JUMP STARTING
(LOW VOLTAGE [UNDERHOOD] BATTERY ONLY)
Your vehicle has two separate jump starting procedures; the following
procedure is for the low voltage (underhood) battery only. Refer to
Jump star](/img/28/41025/w960_41025-221.png)
JUMP STARTING
(LOW VOLTAGE [UNDERHOOD] BATTERY ONLY)
Your vehicle has two separate jump starting procedures; the following
procedure is for the low voltage (underhood) battery only. Refer to
Jump starting the high voltage batteryin this chapter for information
on jump starting the high voltage battery.
WARNING: The gases around the battery can explode if
exposed to flames, sparks, or lit cigarettes. An explosion could
result in injury or vehicle damage.
WARNING: Batteries contain sulfuric acid which can burn skin,
eyes and clothing, if contacted.
Do not attempt to push-start your automatic transmission
vehicle. Automatic transmissions do not have push-start
capability. Attempting to push-start a vehicle with an automatic
transmission may cause transmission damage.
Preparing your vehicle
If your low voltage (underhood) battery becomes disconnected or
disabled for any reason, the vehicle controller must relearn the engine’s
operating characteristics in order to operate it at maximum efficiency.
This relearning process occurs the first time the vehicle is driven after
reconnecting the low voltage battery. If the learning procedure does not
have time to complete during the drive, the engine will continue to
operate for 3-5 seconds after you turn the ignition off to complete the
relearning process. This is a normal condition and will not re-occur until
the low voltage battery is disconnected again. The brake system must
also be reset. Refer to Low voltage (underhood) battery in the
Maintenance and Specification chapter for more information.
1. Use only a 12–volt supply to start your vehicle.
2. Do not disconnect the battery of the disabled vehicle as this could damage the vehicle’s electrical system.
3. Park the booster vehicle close to the hood of the disabled vehicle making sure the two vehicles do nottouch. Set the parking brake on
both vehicles and stay clear of the engine cooling fan and other
moving parts.
4. Check all battery terminals and remove any excessive corrosion before you attach the battery cables. Ensure that vent caps are tight
and level.
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JUMP STARTING THE HIGH VOLTAGE BATTERY
Your vehicle has two separate jump starting procedures; the following
procedure is for the cargo area high voltage battery only. Refer to the
Jump starting your vehicle (Low voltage [underhood] battery only)
section in this chapter for information on jump starting the low voltage
(underhood) battery.WARNING: The gases around the battery can explode if
exposed to flames, sparks, or lit cigarettes. An explosion could
result in injury or vehicle damage.
WARNING: The high voltage battery contains potassium
hydroxide (a strong alkaline electrolyte) which can burn skin,
eyes and clothing, if contacted.
Do not attempt to push-start your vehicle. This vehicle does not
have push-start capability.
If you attempt to start your vehicle and the engine cranks but does not
start, the high voltage battery may need to be jump started.
The Service Soon (yellow wrench)
light in the instrument cluster may
also be illuminated and the message
center may display a message.
To jump start the high voltage
battery, turn the ignition to OFF,
open the access panel on the end of
the driver side instrument panel and
press the jump start button
momentarily. After pressing the
button, you should wait eight
minutes before attempting to start
the engine, otherwise the high
voltage battery may not receive
sufficient charge to start the engine.
The high voltage battery will use voltage from the low voltage
(underhood) battery to charge itself.
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When the button is pressed, the indicator light on the button will
illuminate. After eight minutes has passed, the indicator light will flash
rapidly for two minutes. Turn the ignition to RUN. You may now attempt
to start the engine.If you attempt to start the engine before the
eight minutes passes, the jump starting procedure will stop and
will have to be restarted if the engine does not start.
If the engine still does not start after the first complete high voltage
jump start, a second jump start procedure can be attempted after a
two-minute period (indicated by the button light changing from a rapid
flash to no illumination). This jump start procedure can only be done
twice before the low voltage (underhood) battery becomes discharged
and must also be jump started.
If the jump start button is pressed, but the indicator on the button
flashes slowly, the low voltage (underhood) battery may not have enough
energy to charge the high voltage battery. If this occurs, refer to the
Jump starting your vehicle (Low voltage [underhood] battery only)
section in this chapter for information on jump starting the low voltage
(underhood) battery. You may perform another high voltage battery jump
start by pressing the jump start button after having connected the
jumper cables and starting the booster vehicle.
Once the engine is started, the jumper cables should be removed as
described in the Jump starting your vehicle (Low voltage
[underhood] battery only) section.
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WARNING: The flow of fuel through a fuel pump nozzle can
produce static electricity, which can cause a fire if fuel is
pumped into an ungrounded fuel container.
Refueling WARNING: Fuel vapor burns violently and a fuel fire can cause
severe injuries. To help avoid injuries to you and others:
• Read and follow all the instructions on the pump island;
• Turn off your engine when you are refueling;
• Do not smoke if you are near fuel or refueling your vehicle;
• Keep sparks, flames and smoking materials away from fuel;
• Stay outside your vehicle and do not leave the fuel pump
unattended when refueling your vehicle — this is against the
law in some places;
• Keep children away from the fuel pump; never let children
pump fuel.
Use the following guidelines to avoid electrostatic charge build-up when
filling an ungrounded fuel container:
• Place approved fuel container on the ground.
• DO NOT fill a fuel container while it is in the vehicle (including the
cargo area).
• Keep the fuel pump nozzle in contact with the fuel container while
filling.
• DO NOT use a device that would hold the fuel pump handle in the fill
position.
Fuel Filler Cap
Your fuel tank filler cap has an indexed design with a 1/4 turn on/off
feature.
When fueling your vehicle: 1. Turn the engine/ignition switch to the off position.
2. Carefully turn the filler cap counterclockwise until it spins off.
3. To install the cap, align the lugs on the cap with the threads on the filler pipe.
4. Turn the filler cap clockwise until it clicks at least once.
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If you have run out of fuel:
•You may need to cycle the ignition from OFF to ON several times after
refueling to allow the fuel system to pump the fuel from the tank to
the engine. On restarting, cranking time will take a few seconds longer
than normal.
• Normally, adding 1 gallon (3.8L) of fuel is enough to restart the
engine. If the vehicle is out of fuel and on a steep grade, more than 1
gallon (3.8L) may be required.
• The
indicator may come on. For more information on the “check
engine” or the “service engine soon” indicator, refer to Warning lights
and chimes in theInstrument Cluster chapter.
ESSENTIALS OF GOOD FUEL ECONOMY
Measuring techniques
Your best source of information about actual fuel economy is you, the
driver. You must gather information as accurately and consistently as
possible. Fuel expense, frequency of fill-ups or fuel gauge readings are
NOT accurate as a measure of fuel economy. We do not recommend
taking fuel economy measurements during the first 1,000 miles
(1,600 km) of driving (engine break-in period). You will get a more
accurate measurement after 2,000 miles–3,000 miles
(3,000 km–5,000 km).
Filling the tank
When the fuel gauge indicates empty, there is still a small reserve of fuel
in the fuel system. 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. The amount of usable fuel in the empty reserve
varies and should not be relied upon to increase driving range.
For consistent results when filling the fuel tank:
• Turn the engine/ignition switch to the off position prior to refueling;
an error in the reading will result if the engine is left running.
• Allow no more than two automatic click-offs when filling.
• Always use fuel with the recommended octane rating.
• Use a known quality gasoline, preferably a national brand.
Your results will be most accurate if your filling method is consistent.
Calculating fuel economy
1. Fill the fuel tank completely and record the initial odometer reading (in miles or kilometers).
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