Station wagon (estate), 5 Doors, 5 Seats
11.2 l/100 km 21 US mpg
8.4 l/100 km 28 US mpg
173 Hp @ 5600 rpm.
70.4 Hp/l
196 km/h 121.79 mph
2457 cm3
149.94 cu. in.
4, Boxer
All wheel drive (4x4),
4460 mm
175.59 in.
1695 mm
66.73 in.
1395 kg
3075.45 lbs.
Brand | Saab |
---|---|
Model | 9-2X (Station wagon (estate)) |
Version | 9-2X |
Engine version | 2.5i 16V (173 Hp) |
Year production start | 2004 |
Year production end | 2006 |
Vehicle type | Station wagon (estate) |
Horsepower RPM | 173 Hp @ 5600 rpm. |
Curb weight kg -lbs total |
1395 kg3075.45 lbs. |
Overall length mm - inch |
4460 mm175.59 in. |
Doors | 5 |
Top Speed | 196 km/h 121.79 mph |
Designation model | EJ253 |
---|---|
Engine position and orientation | Front, Longitudinal |
Cylinders | 4 |
Position of cylinders | Boxer |
Displacement (liters) |
2457 cm3149.94 cu. in. |
Eng. horsepower RPM | 173 Hp @ 5600 rpm. |
Horsepower per litre | 70.4 Hp/l |
Weight / horsepower kg/hp - hp/tons |
8.1 kg/Hp124 Hp/tonne |
Weight / torque kg/Nm - Nm/tons | 6.2 kg/Nm, 161.3 Nm/tonne
6.2 kg/Nm161.3 Nm/tonne |
Torque Nm RPM lb-ft RPM |
225 Nm @ 4000 rpm.165.95 lb.-ft. @ 4000 rpm. |
Bore (mm in) |
99.5 mm3.92 in. |
Stroke (mm in) |
79 mm3.11 in. |
Compression ratio | 10 |
Fuel delivery system | Multi-point indirect injection |
Fuel type | Petrol (Gasoline) |
Valvetrain | 4 |
Engine aspiration | Naturally aspirated engine |
Engine oil liters | quarts |
4 l4.23 US qt | 3.52 UK qt |
Engine coolant |
7.4 l7.82 US qt | 6.51 UK qt |
Powertrain architecture | Internal Combustion engine |
Engine location | Front, Longitudinal |
Drive configuration | All wheel drive (4x4) |
---|---|
Transmission | 5 |
Front brakes | Ventilated discs |
---|---|
Rear brakes | Disc |
Anti-lock brake system | ABS (Anti-lock braking system) |
Steering type | Steering rack and pinion |
---|---|
Turning diameter m - ft |
10.8 m35.43 ft. |
Front suspension | Spring Strut |
---|---|
Rear suspension | Spring Strut |
Wheels size | 205/55 R16 |
---|
Passengers seats | 5 |
---|---|
Trunk space min liter | cu. Ft. |
790 l27.9 cu. ft. |
Trunk space max liter | cu. Ft. |
1744 l61.59 cu. ft. |
Overall length mm - inch |
4460 mm175.59 in. |
---|---|
Overall width mm -inch |
1695 mm66.73 in. |
Overall height mm -inch |
1465 mm57.68 in. |
Wheelbase mm - inch |
2525 mm99.41 in. |
Track width front mm - inch |
1465 mm57.68 in. |
Track width rear mm - inch |
1455 mm57.28 in. |
Curb weight kg -lbs total |
1395 kg3075.45 lbs. |
---|---|
Fuel tank liters | gallons |
60 l15.85 US gal | 13.2 UK gal |
City l/100km - mpg |
11.2 l/100 km21 US mpg |
---|---|
Highway l/100 km - mpg |
8.4 l/100 km28 US mpg |
4 CYLINDER - BOXER
What engine is the 4 cylinder boxer: the boxer-four is an engine where each pair
of opposed pistons moves inwards and outwards at the same time in two banks of
cylinders lying on opposite sides of a common crankshaft, named laso flat-four
or opposed-four.
What is the 4 cylinder boxer displacement: it is in a range between 1350 cc and
3000 cc in recent model line up powertrain.
How much is the power of the 4 cylinders boxer: the power of the 4 cylinders is
in a range from 98bhp to 365 bhp.Which cars use 4 cylinder boxer engine: 4 boxer is used by Porsche and Subaru but it has a strong heritage in powertrain production as have been used in cars by Volkswagen on the original iconic Beetle and Alfa Romeo.
The advantages of the boxer-four layout are perfect secondary vibration (resulting in minimal vibration), low centre of gravity and a short engine length. The layout also lends itself to efficient air cooling with the airflow being evenly distributed across the four cylinders. The downsides of boxer-four engines (compared with inline-four engines) are extra width, higher costs due to two cylinder heads instead of one and the long exhaust manifold required to achieve evenly spaced exhaust pulses.
The typical firing order for a boxer-four engine is for the left bank of cylinders to ignite one after another, followed by the right bank of cylinders with the firing interval evenly spaced at 180 degrees. The exhausts manifold from the two cylinders on each bank were merged and in result uneven exhaust pulses causing a characteristic "flat-four burble" exhaust sound as on Porsche 982 and 718 series with boxer 4.
The engine fires once every 180 degrees crankshaft angle (720 degrees divided by 4 = 180 degrees) and other common firing configuration (such as used by Subaru since the mid-2000s) is to pair the cylinders, with a firing interval of 360 degrees, in order to optimise the exhaust pulses. This configuration requires long exhaust manifolds to pair the cylinders on opposite banks and results in a less distinctive exhaust sound.
edited by arrabbiata