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If this indicator comes on
while driving, it means one
of the engine's emissions control
systems may have a problem. Even
though you may feel no difference in
your vehicle's performance, it can
reduce your fuel economy and cause
increased emissions. Continued
operation may cause serious damage.
If you have recently refueled your
vehicle, the indicator coming on
could be due to a loose or missing
fuel fill cap. Tighten the cap until it
clicks at least once. Tightening the
cap will not turn the indicator off
immediately; it can take several days
of normal driving. If the indicator comes on repeatedly,
even though it may turn off as you
continue driving, have your vehicle
checked by the dealer as soon as
possible.
If you keep driving with the malfunction
indicator lamp on, you can damage
your vehicle's emissions controls and
engine. Those repairs may not be
covered by your vehicle's warranties.
You will also see a
‘‘CHECK
EMISSION SYSTEM ’’message on
the multi-information display (see
page81). Readiness Code
Your vehicle has certain
‘‘readiness
codes ’’that are part of the on-board
diagnostics for the emissions
systems. In some states, part of the
emissions testing is to make sure
these codes are set. If they are not
set, the test cannot be completed.
If the battery in your vehicle has
been disconnected or gone dead,
these codes may be erased. It takes
several days of driving under various
conditions to set the codes again.
To check if they are set, turn the
ignition switch to the ON (II)
position, without starting the engine.
The malfunction indicator lamp will
come on for 20 seconds. If it then
goes off, the readiness codes are set.
If it blinks five times, the readiness
codes are not set. If possible, do not
take your vehicle for an emissions
test until the readiness codes are set.
Refer to Emissions Testing for
more information (see page463).
Malfunction Indicator Lamp
437
T aking Care of t he Unexpect ed
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Your vehicle has several identifying
numbers located in various places.
The vehicle identification number
(VIN) is the 17-digit number your
dealer uses to register your vehicle
for warranty purposes. It is also
necessary for licensing and insuring
your vehicle. The easiest place to
find the VIN is on a plate fastened to
the top of the dashboard. You can
see it by looking through the
windshield on the driver's side. It is
also on the certification label
attached to the driver's doorjamb,
and is stamped on the engine
compartment bulkhead. The VIN is
also provided in bar code on the
certification label.
VEHICLE IDENTIFICATION NUMBERCERTIFICATION LABEL
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The engine number is stamped into
the engine block. It is on the front.
The transmission number is on a
label on top of the transmission.
ENGINE NUMBERAUTOMATIC TRANSMISSION NUMBER
Identification Numbers
451
T echnical Inf ormat ion
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DimensionsLength 190.7 in (4,844 mm)
Width 78.5 in (1,995 mm)
Height 68.2 in (1,733 mm)
Wheelbase 108.3 in (2,750 mm)
Track Front 67.7 in (1,720 mm) Rear 67.5 in (1,715 mm)
Weights Gross vehicle weight rating See the tire information label attached to the driver's doorjamb.
Gross combined weight
ꭧ 1
rating (GCWR) 10,053 lbs (4,560 kg)
ꭧ 1: The GCWR must be reduced 2 percent for every 1,000 feet (305
meters) of elevation.
Air Conditioning Refrigerant type HFC-134a (R-134a)
Charge quantity 21.2-22.9 oz (600 -650 g)
Lubricant type ND-OIL 8
Seating Capacities Total 7
Front 2
Second 3
Third 2Capacities
Fuel tank Approx.
21.00 US gal (79.5 L)
Engine
coolant Change
ꭧ
1
1.93 US gal (7.3 L)
Total 2.43 US gal (9.2 L)
Engine oil Change
ꭧ 2
4.5 US qt (4.3 L)
Including
filter
Without
filter 4.2 US qt (4.0 L)
Total 5.3 US qt (5.0 L)
Automatic
transmission
fluid Change
3.0 US qt (2.8 L)
Total 8.3 US qt (7.9 L)
Rear
differential
fluid Change
2.6 US qt (2.5 L)
Total 2.9 US qt (2.7 L)
Transfer
assembly
fluid Change
0.4 US qt (0.4 L)
Total 0.4 US qt (0.4 L)
Windshield
washer
reservoir U.S. vehicles 4.2 US qt (4.0 L)
Canadian
vehicles
6.1 US qt (5.8 L)
ꭧ 1: Including the coolant in the reserve tank and that remaining in the
engine
Reserve tank capacity:
0.18 US gal (0.7 L)
ꭧ 2: Excluding the oil remaining in the engine
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LightsHeadlights High 12 V-60 W (HB3)
Low
ꭧ
12 V -35 W (D2S)
Daytime running lights 12 V-60 W (HB3)
Front side marker lights 12 V-3CP
Front turn signal lights 12 V-21 W
Parking lights 12 V-3CP
Fog light 12 V-55 W (H11)
Rear turn signal lights 12 V-21 W
Rear side marker lights 12 V-3CP
Backup lights 12 V-18 W
License plate lights 12 V-3CP
Individual map lights Front 12 V -5W
Rear 12 V -5W
Cargo area lights 12 V-8W
Tailgate lights 12 V-3.4 W
Vanity mirror lights 12 V-2W
Door lights 12 V-3.4 W
ꭧ : The low beam headlights are high voltage discharged type.
Replacement of a low beam headlight bulb should be performed by
your dealer.
Battery Capacity 12 V-65AH/5 HR
12 V -76AH/20 HR
Fuses
Interior See page445or the fuse label attached
to the inside of the fuse box lid.
Rear See page444or the fuse label attached
to the inside of the fuse box lid.
Under-hood See page443and 444or the fuse box
cover.
Engine Type Water-cooled, 4-stroke SOHC VTEC V6
gasoline engine
Bore x Stroke 3.54 x 3.78 in (90.0 x 96.0 mm)
Displacement 223.5 cu-in (3,664 cm
3)
Compression ratio 11.0 : 1
Spark plugs DENSO:
NGK:SKJ20DR-M11
IZFR6K11
Alignment Toe-in Front 0.00 in (0.0 mm)
Rear 0.08 in (2.0 mm)
Camber Front -0°30’
Rear -0°30’
Caster Front 4 ° 12’
Tires Size Front/Rear P255/55R18 104H
Spare T165/80D17 104M
Pressure Front/Rear 32 psi (220 kPa, 2.2 kgf/cm2)
Spare 60 psi (420 kPa, 4.2 kgf/cm2)
Specifications
453
T echnical Inf ormat ion
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The burning of gasoline in your
vehicle's engine produces several
byproducts. Some of these are
carbon monoxide (CO), oxides of
nitrogen (NOx), and hydrocarbons
(HC). Gasoline evaporating from the
tank also produces hydrocarbons.
Controlling the production of NOx,
CO, and HC is important to the
environment. Under certain
conditions of sunlight and climate,
NOx and HC react to form
photochemical‘‘smog. ’’Carbon
monoxide does not contribute to
smog creation, but it is a poisonous
gas. The Clean Air Act
The United States Clean Air Act
ꭧ
sets standards for automobile
emissions. It also requires that
automobile manufacturers explain to
owners how their emissions controls
work and what to do to maintain
them. This section summarizes how
the emissions controls work.
Scheduled maintenance is on page
390.ꭧIn Canada, Acura vehicles comply
with the Canadian emission
requirements, as specified in an
agreement with Environment
Canada, at the time they are
manufactured. Crankcase Emissions Control
System
Your vehicle has a positive crankcase
ventilation system. This keeps
gasses that build up in the engine's
crankcase from going into the
atmosphere. The positive crankcase
ventilation valve routes them from
the crankcase back to the intake
manifold. They are then drawn into
the engine and burned.
Evaporative Emissions Control
System
As gasoline evaporates in the fuel
tank, an evaporative emissions
control canister filled with charcoal
adsorbs the vapor. It is stored in this
canister while the engine is off. After
the engine is started and warmed up,
the vapor is drawn into the engine
and burned during driving.
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Onboard Refueling Vapor
Recovery
The onboard refueling vapor
recovery (ORVR) system captures
the fuel vapors during refueling. The
vapors are adsorbed in a canister
filled with activated carbon. While
driving, the fuel vapors are drawn
into the engine and burned off.
Exhaust Emissions Controls
The exhaust emissions controls
include four systems: PGM-FI,
ignition timing control, exhaust gas
recirculation, and three way catalytic
converter. These four systems work
together to control the engine's
combustion and minimize the
amount of HC, CO, and NOx that
come out the tailpipe. The exhaust
emissions control systems are
separate from the crankcase and
evaporative emissions control
systems.
PGM-FI SystemThe PGM-FI system uses sequential
multiport fuel injection.It has three
subsystems: air intake, engine
control, and fuel control. The
powertrain control module (PCM)
uses various sensors to determine
how much air is going into the
engine. It then controls how much
fuel to inject under all operating
conditions.Ignition Timing Control SystemThis system constantly adjusts the
ignition timing, reducing the amount
of HC, CO, and NOx produced.Exhaust Gas Recirculation (EGR)SystemThe exhaust gas recirculation (EGR)
system takes some of the exhaust
gas and routes it back into the intake
manifold. Adding exhaust gas to the
air/fuel mixture reduces the amount
of NOx produced when the fuel is
burned.
Three Way Catalytic ConverterThe three way catalytic converter is
in the exhaust system. Through
chemical reactions, it converts HC,
CO, and NOx in the engine's exhaust
to carbon dioxide (CO
2), nitrogen
(N
2), and water vapor.
Replacement Parts
The emissions control systems are
designed and certified to work
together in reducing emissions to
levels that comply with the Clean Air
Act. To make sure the emissions
remain low, you should use only new
Acura replacement parts or their
equivalent for repairs. Using lower
quality parts may increase the
emissions from your vehicle.
The emissions control systems are
covered by warranties separate from
the rest of your vehicle. Read your
warranty manual for more
information.
Emissions Controls
461
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The three way catalytic converter
contains precious metals that serve
as catalysts, promoting chemical
reactions to convert the exhaust
gasses without affecting the metals.
The catalytic converter is referred to
as a three-way catalyst, since it acts
on HC, CO, and NOx. A replacement
unit must be an original Acura part or
its equivalent.
The three way catalytic converter
must operate at a high temperature
for the chemical reactions to take
place. It can set on fire any
combustible materials that come
near it. Park your vehicle away from
high grass, dry leaves, or other
flammables.
A defective three way catalytic
converter contributes to air pollution,
and can impair your engine's
performance. Follow these
guidelines to protect your vehicle's
three way catalytic converter.●Always use unleaded gasoline.
Even a small amount of leaded
gasoline can contaminate the
catalyst metals, making the three
way catalytic converter ineffective.
●Keep the engine well maintained.●Have your vehicle diagnosed and
repaired if it is misfiring,
backfiring, stalling, or otherwise
not running properly.
THREE WAY CATALYTIC CONVERTER
WARM UP THREE WAY CATALYTIC
CONVERTERS
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