torque SAAB 9-3 2001 Owners Manual
[x] Cancel search | Manufacturer: SAAB, Model Year: 2001, Model line: 9-3, Model: SAAB 9-3 2001Pages: 260, PDF Size: 12.01 MB
Page 162 of 260
162 Starting and drivingAutomatic transmission
The electronic control module for the auto-
matic transmission receives information on
engine torque and road speed. It also con-
trols the hydraulic pressure in the transmis-
sion to ensure that gear changing is as
smooth as possible.
The position of the selector lever is shown
by the symbols adjacent to the lever and
also by an indicator on the main instrument
panel.
The ignition key can only be removed when
the selector lever is in the P position.When the car is stationary, the engine must
be idling when the selector lever is moved.
You must have your foot on the brake
pedal to move the lever out of park. If the
accelerator is depressed while the lever is
moved, this will result in abnormal wear in
the transmission.
WARNING
Make it a habit to keep your foot on the
brake when selecting a drive position,
to prevent the car from creeping for-
ward (or backwards if reverse is
selected).
The car must be at a standstill before
P, R or N is selected. You have to have
your foot on the brake pedal to move
the lever out of park. If the car is still
moving when a drive position is subse-
quently selected, this could cause an
accident or damage the automatic
transmission.
Never park the car with the selector
lever in a drive position, even if the
parking brake is on.
If you want to leave the car with the
engine running, move the selector
lever to P or N and apply the parking
brake.
NOTEAfter selecting a drive position, pause
briefly to allow the gear to engage (the car
starts to pull a little) before you acceler-
ate.
IB865
Selector lever 1Catch
2 Button for SPORT position
3 Button for WINTER position
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Page 164 of 260
164 Starting and drivingLock-up functionThe automatic transmission has a lock-up
function, which renders the torque con-
verter inoperative in 3rd and 4th gears. The
result is reduction in the engine speed and,
hence, fuel consumption.
When the lock-up function comes into oper-
ation, it may give the impression of an over-
drive being engaged.Kick-downWhen the accelerator is pressed down hard,
a downshift to the next lower gear will occur
to provide maximum acceleration, e.g. for
overtaking.
The change-up to the next gear again will
take place either when the accelerator is
released or when maximum engine speed
for that gear is reached.
Park Brake Shift LockThe transmission has a safety function
called Park Brake Shift Lock. For the selec-
tor lever to be moved out of the P position,
the brake pedal must be depressed at the
same time as the detent button is lifted.
Park Brake Shift Lock override
1 Apply the parking brake.
2 Make sure the key is in the ON position.
3 Use a small tool such as a screwdriver
and push the lever downwards so that
the detent button can be pressed
approx. 10 mm.
4 Move the selector out of position P to N.
5 Remove the tool.
6 Release the parking brake if the car is to
be moved immediately; otherwise keep
it applied.Check fuse No. 12 (see page 214). If the
fuse is OK, check the battery voltage.
If the problem was cured by changing the
fuse or battery, you do not have to contact a
Saab dealer.
If the fuse blows again as soon as the Shift
Lock feature is activated you should contact
your Saab dealer.NOTEIf a problem arises with the shift lock
mechanism, it may not be possible to
move the selector out of the park position,
even if the ignition is ON. If for some
reason the selector has to be moved out
of the park position (i.e. to tow the car a
short distance) do as described below.
IB947
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Page 167 of 260
167 Starting and driving
If the gear selector lever is moved from position D to 1, a
change-down to 3rd gear will occur at about 110 mph (180 km/h).
A change-down to 2nd gear will occur at about 75 mph (120 km/h)
and to 1st gear at about 40 mph (65 km/h).
When position 1 is selected, all the other gears will be locked out.
Manual gear-changing is not recommended on slippery roads.
If one of the drive wheels spins excessively, the engine torque will
be reduced to avoid damaging the transmission
Adaptive gear-change patternsAdaptive gear-change patterns are selected automatically depend-
ing on the engine load. This function applies in the Normal and Sport
modes.
The change occurs at a higher rotation speed and the gear remains
engaged for a longer period, if the control module senses that the
load does not drop. These change patterns avoid unnecessary gear
changes when, for example, driving on long inclines with a trailer,
and to prevent overheating of the transmission oil. This function cuts
in automatically if the oil becomes too hot, to protect the transmis-
sion from damage, and lowers the oil temperature.
The adaptive change pattern function is not activated at speeds over
93 mph (150 km/h). If a pattern is in operation when this speed is
exceeded, it will be maintained until the control module senses that
a more suitable one can be activated.
The adaptive gear-change pattern function is deselected when:
Winter mode is selected.
The engine is switched off.
The load is reduced by so much that this function is no longer
required.
“Automatic transmission fault indicator” appears on the
main instrument panel, see page 165.
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Page 172 of 260
172 Starting and drivingTraction Control SystemHow the system works The traction control system (TCS) is
designed to prevent wheelspin. This
enables the car to achieve the best possible
grip and, hence, maximum tractive effort,
together with greater stability.
The TCS system uses information from the
ABS system’s wheel sensors to detect
when the front (driving) wheels are rotating
faster then the rear wheels. It then monitors
whether one driving wheel is rotating faster
than the other. If so, the faster wheel is
retarded until both wheels are rotating at the
same speed.
If the two front wheels are rotating at the
same speed but are turning faster than the
rear wheels, the torque from the engine is
reduced to eliminate the difference.
The process continues until all the wheels
are rotating at the same speed. The advantages of the TCS system become
most apparent when the cohesion between
the front wheels and the road surface is so
low that one or both of the wheels would
lose their grip were the car not equipped
with the TCS, e.g.:
When the car is pulling away or accelerat-
ing with the front wheels on different sur-
faces (e.g. one slippery and one dry). The
TCS then functions like an electronic dif-
ferential lock.
When the car is pulling away or accelerat-
ing on a slippery road, in which case the
TCS eliminates wheelspin. The same
applies when the car is reversing.
On cornering, if there is a tendency for the
inner front wheel to rotate faster than the
other wheels.
On overtaking.
TCS OFF The TCS OFF indicator on the main instru-
ment panel will come on:
If a fault has been detected and the
system has therefore been switched off.
If there is a fault in the ABS system.
If the system has been switched off man-
ually.
The indicator light will also come on for
4 seconds when the ignition key is turned to
ON, while an internal system check is per-
formed. TCS indicator The indicator light will come on for
4 seconds when the ignition key is turned to
ON, while an internal system check is per-
formed.
The TCS light in the tachometer comes on
when the system is operative, i.e. when the
wheels are not rotating at the same speed.
The fact that the TCS system is operative
indicates that the limit for grip has been
exceeded and that the driver must exert
greater care.
WARNING
In normal driving, the TCS system
enhances the safety of the car, but it
does not mean that the car can be driven
faster. The same care and prudence
normally applied should be displayed on
cornering and when driving on slippery
roads.
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Page 194 of 260
194 Car careEngineThe engine is a transverse four-cylinder
in-line engine with twin overhead camshafts
and 16 valves.
The engine is equipped with two balance
shafts that reduce engine vibration to a min-
mimum.
The balance shafts are chain-driven and
rotate at twice the speed of the crankshaft.
They produce forces and torques that are
opposed to those generated by the pistons
and connecting rods. The effect occurs
twice in each revolution of the engine, coun-
teracting the vibration from its moving parts,
and at the same time reducing unwanted
engine noise.
The gearbox, located on the right (viewed
from the front), is integrated with the engine.
Engine familiesSaab cars imported into the United States
and Canada meet all applicable emission
control standards. The engine family and
appropriate tune-up specifications are iden-
tified on a label affixed to the left front inner
fender.
These engine families meet applicable EPA
Federal Standards, California State Stan-
dards and Canadian Federal Standards and
are equipped with the following systems:
• Sequential multiport fuel injection system.
Three way catalytic converter.
Crankcase emissions control system.
Evaporative emission system.
Emission control
systemsThe systems for controlling emissions to the
atmosphere require regular checking and
adjustment at the intervals specified in the
service program.
In addition to meeting the exhaust emission
regulations and thereby helping to keep the
environment clean, a correctly tuned engine
will also give maximum fuel economy.
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Page 221 of 260
221 Car care
When changing a wheel, take the tool kit out
first, then the spare wheel.
Changing a wheel
If light-alloy wheels have been fitted to the
car for several years and a change is made
to steel wheels, the threads for the wheel
bolts in the brake discs should be cleaned
before the thinner steel wheels are fitted.
The innermost threads in the holes may be
clogged with sand, salt and rust so that the
correct tightening torque cannot be
achieved.
NOTETo avoid damaging a punctured alloy
wheel this can be placed outside up in the
spare-wheel well but only while driving to
the closest workshop.
A general rule is that all heavy loads must
be well secured in the luggage compart-
ment, see page 148.
WARNING
The car jack is designed solely for use
in changing a wheel or fitting snow
chains. It must not be used to support
the car during repair work or servicing.
Never crawl under a car that is
supported only by a jack.
Special care must be taken if the car is
on a slope – use wheel chocks!
Position chocks, one ahead and one
behind, the wheel that is diagonally
opposite to the one to be changed.
Switch on the hazard warning lights if
the car is on a road.
Apply the parking brake and leave the
car in gear (1st or reverse). Automatic
transmission: move selector to the
P position.
Ensure that everybody is out of the car
before jacking it up.
Never start the engine while the car is
jacked up.
The jack must stand on a firm, level
surface.
Stow the jack in the place provided for
it under the panel in the floor of the
trunk. Secure it properly to avoid injury
to passengers in the event of an acci-
dent.
Do not use the jack for any purpose
other than for jacking up the car.
IB1261IB1262
Spare wheel (under the carpet in the
trunk), Saab 9-3 Viggen
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Page 223 of 260
223 Car care
8 Lower the car and tighten the wheel
bolts to the correct torque in the
sequence shown (opposite pairs).
Tightening torque:
Light-alloy wheels: 80 ft.lbs (110 Nm).
Steel wheels: 80 ft.lbs (110 Nm).
Do not overtighten the bolts using an
impact wrench: not only can this
damage the wheels but it can also make
it impossible to undo the bolts using the
wheel wrench in the car’s toolkit.9 Recheck the wheel bolts after a few
miles.
Tightening torque:
Light-alloy wheels: 80 ft.lbs (110 Nm)
Steel wheels: 80 ft.lbs (110 Nm)
We advise against using wheels with open
wheel covers in winter, as the brake compo-
nents are then more exposed both to slush
and to road salt and grit.
Tire chains; see page 178.
NOTE
When refitting wheel covers (where
applicable), make sure that the valve
protrudes through the hole in the wheel
cover.
NOTESaab 9-3 Viggen: The minimum permis-
sible wheel diameter is 16”, due to the
size of the brake discs.
IB1174
Position for jack, Saab 9-3 Viggen
IB1311
Jacking points for a floor jack.
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Page 249 of 260
249 Technical data
Fuel Engine variantsFuel-tank capacity __________________ 17 U.S. gal. (64 l)
For optimum performance, we recommend
the following:
2.0 Turbo 185 bhp__________________ 90 AON, unleaded
gasoline,
minimum 87 AON
2.0 Turbo 205 bhp and Viggen ________ 93 AON*), unleaded
gasoline,
minimum 87 AON
*) If the car is filled with 90 AON gasoline
and the outdoor temperature is above
77-86°F (25-30°C), a slight decrease in
engine performance may be noticeable.
2.0 Turbo 185 hp, manual transmissionRating, EEC at 5500 rpm ____________ 185 hp (136 kW)
Max. torque (man.), EEC at 2100 rpm _ 194.0 ft.lb (263 Nm)
Compression ratio _________________ 8.8:1 2.0 Turbo 185 hp, automatic transmissionRating, EEC at 5500 rpm ____________ 185 hp (136 kW)
Max. torque EEC at 1900 rpm ________ 184.4 ft.lb. (250 Nm)
Compression ratio _________________ 8.8:1 2.0 Turbo 205 hp, manual transmissionRating, EEC, at 5500 rpm ___________ 205 hp (151 kW)
Max. torque EEC at 2200 rpm ________ 206.5 ft.lb (280 Nm)
Compression ratio _________________ 8.8:12.0 Turbo 205 hp, automatic transmissionRating, EEC, at 5750 rpm ___________ 205 hp (151 kW)
Max. torque EEC at 1900 rpm ________ 184.4 ft.lb (250 Nm)
Compression ratio _________________ 8.8:12.3 Turbo 230 hp, manual transmissionRating, EEC, at 5500 rpm ___________ 230 hp (169 kW)
Max. torque EEC at 2500 rpm ________ 258.1 ft.lb (350 Nm)
Compression ratio _________________ 9.3:1
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Page 250 of 260
250 Technical dataElectrical system
Drive belts
Manual transmission
Automatic transmission
Voltage ___________________________ 12 V
Battery capacity ____________________ 60 Ah
Starter motor ______________________ 1.4 kW
Alternator rating ____________________ 130 A/14 V
Firing order ________________________ 1-3-4-2
Spark plugs:
2.0 Turbo 185 bhp__________________ NGK PFR 6H-10
2.0 Turbo 205 bhp __________________ NGK PFR 6H-10
Viggen __________________________ NGK PFR 6H-10
Electrode gap ______________________ 0.95 mm
(0.03740”)
Outside lengthCars with A/C compressor ____________ 2345 mm
Cars without A/C compressor __________ 1805 mmDrive belt
IB929
Type _____________________________ 5-speed, fully
synchronized with
final-drive gear and
differential
Oil type (for topping-up) ______________ Saab synthetic man-
ual gearbox oil
Oil capacity _______________________ 1.8 qts. (1.8 l)
Speed (mph/km/h) at 1000 rpm in 5th gear 26/42
Type _____________________________ Electronically con-
trolled 4-speed with
torque converter
and differential
Gear selector positions ______________ P R N D 3 2 1
Oil quantity, total ___________________ 7.4 qts. (7.2 litres)
Oil volume (on changing) _____________ 3.4 qts. (3.25 litres)
Oil type ___________________________ Texaco Texamatic
Dexron III, mineral
oil based
Clutch type ________________________ Hydraulically-oper-
ated plate clutches,
brake bands and
one-way clutches
Speed (mph/km/h) at 1000 rpm in 4th gear 25/40
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