Wednesday, September 28, 2011

Citroen DS 23 IE, 1973

Citroen DS 23 IE, 1973

The Citroën DS (also known as Déesse, or Goddess, after the punning initials in French) was an automobile produced by the French manufacturer Citroën between 1955 and 1975. Citroën sold nearly 1.5 million D-series during its 20 years of production.The DS is well-known for its futuristic, aerodynamic body design, and for its innovative technology (including its hydropneumatic self-leveling suspension system).

The DS advanced the achievable standards in terms of ride quality, roadholding, handling, and braking in an automobile. Automotive journalists of the time often noted that competitors took decades to adapt to the higher standards it set. The smooth, aerodynamic body lines gave the car a futuristic appearance. While it looked very unusual in 1955, public tastes appear to have caught up with the DS in the post-Ford Taurus/Audi 100 era.

Model history
After 18 years of development in secret as the successor to the venerable Traction Avant, the DS 19 was introduced on October 5, 1955 at the Paris Motor Show. The car's appearance and innovative engineering captured the imagination of the public and the automobile industry almost overnight. 743 orders were taken in the first 15 minutes of the show, and orders for the first day totalled 12,000.

Far from being just a fascinating technology in search of a purpose, contemporary journalists were effusive in noting how the DS dramatically pushed the envelope in the ride vs. handling compromise possible in a motor vehicle.

The high price tag, however, hurt general sales in a country still recovering from World War II 10 years earlier, and a submodel, the ID (another pun: in French, Idée, or Idea), was introduced in 1957 to appeal to more cost-conscious buyers. The ID shared the same body with the DS, but had more traditional features under the hood. It had no power steering (though this was added as an option later), and instead of the hydraulically controlled manual transmission and clutch, it had a conventional clutch and transmission. Interestingly, the first model series was called 11D, a clear reminder of the last model of the Traction Avant, the 11C. A station wagon variant, the ID Break, was introduced in 1958.
Outside of France, the car's radical and cosmopolitan design appealed to non-conformists. A United States advertisement summarised this selling point: "It takes a special person to drive a special car".

Throughout its model lifetime, the DS managed to remain ahead of its time. It featured power disc brakes, a hydropneumatic suspension including an automatic levelling system and variable ground clearance, power steering and a semi-automatic transmission. A fiberglass roof reduced weight transfer. Inboard front brakes (as well as an independent suspension) reduced unsprung weight. Different front and rear track widths and tire sizes reduced the understeer typical of front-engined and front-wheel drive cars.

Despite the rather leisurely acceleration afforded by its small four-cylinder engine, the DS was successful in motorsports like rallying, where sustained speeds on poor surfaces are paramount.

The DS came in third in the 1999 Car of the Century competition, recognizing the the world's most influential auto designs. Winner and second place went to the Ford Model T and the Mini. It placed fifth on Automobile Magazine "100 Coolest Cars" listing in 2005.

Technical innovations


Hydraulic system
The hydraulic system of the DS 19 was a revolution. Previously hydraulics had been restricted to use in brakes and power steering; the DS used them for the suspension, clutch and transmission. The later ID19 had manual steering and a simplified power braking system.

Suspension
At a time when few passenger vehicles had caught up with the four-wheel independent suspension of the Traction Avant, the application of the hydraulic system to the car's suspension system to provide true self-levelling was a stunning move. This application - 'hydropneumatic suspension' - was pioneered the year before on the rear of the top of range Traction Avant 15CV-H.
At first it was often described as air/oil suspension, since both elements played a key role.

Each wheel was connected not to a spring, but to a hydraulic suspension unit consisting of:
    * a sphere of about 12 cm in diameter containing pressurised nitrogen
    * a cylinder containing hydraulic fluid screwed to the suspension sphere
    * a piston inside the cylinder connected by levers to the suspension itself
    * a damper valve between the piston and the sphere

A membrane in the sphere prevented the nitrogen from escaping. The motion of the wheels translated to a motion of the piston, which acted on the oil in the nitrogen cushion and provided the spring effect. The damper valve took place of the shock absorber in conventional suspensions.

The hydraulic cylinder was fed with hydraulic fluid from the main pressure reservoir via a height corrector, a valve controlled by the mid-position of the anti-roll bar connected to the axle. If the suspension was too low, the height corrector introduced high-pressure fluid. If it was too high, it released fluid back to the fluid reservoir. In this manner, it maintained a constant height. A control in the cabin allowed the driver to select one of five heights:
    * normal riding height.
    * two slightly higher riding heights, for poor terrain.
    * two extreme positions for changing wheels.

The DS did not have a jack for lifting the car off the ground. Instead, the hydraulic system enabled wheel changes with the aid of a simple adjustable stand.

Source and reserve of pressure
The central part of the hydraulic system was the high pressure reservoir, which maintained a pressure of between 130 and 150 bar in two accumulators. These accumulators were very similar in construction to the suspension spheres. One was dedicated to the brakes, and the other ran the other hydraulic systems. Thus in case of a hydraulic failure (a surprisingly infrequent occurrence), the first indication would be that the steering became heavy, followed by the gearbox not working; only later would the brakes fail.

Hydraulic fluid
The original hydropneumatic system used a vegetable oil (LHV or liquide hydraulique végétale) similar to that used in other cars at the time. Very soon, Citroën changed to using a synthetic fluid (LHS or liquide hydraulique synthétique). Both of these had the disadvantage that they are hygroscopic, as is the case with most brake fluids. Disuse allows water to enter the hydraulic components causing deterioration and expensive maintenance work. The difficulty with hygroscopic hydraulic fluid was exacerbated in the DS/ID due to the extreme rise and fall in the fluid level in the reservoir, which went from nearly full to nearly empty when the suspension "got up" and the 6 accumulators in the system filled with fluid. With every "inhalation" of fresh moisture- (and dust-) laden air, the fluid absorbed more water. In August 1967, Citroën introduced a new mineral oil-based fluid LHM, or liquide hydraulique minérale. This fluid was much less aggressive on the system and it remains in use to the present day.

Briefly illegal in the United States (US federal law requires motor vehicle brake fluid to be red - an exception had to be granted to Citroën), LHM has since been adopted by manufacturers like Rolls-Royce, Jaguar, BMW, and Audi under different labels, like "Total," "Pentosin," and others.

LHM required completely different materials for the seals. Using either fluid in the incorrect system would completely destroy the hydraulic seals very quickly. To help avoid this problem, Citroën added a bright green dye to the LHM fluid and also painted all hydraulic elements bright green. The former LHS parts were painted black.

Several different hydraulic pumps were used. The DS used a seven-cylinder axial piston pump driven off two belts and delivering 175 bar of pressure. The ID19, with its simpler hydraulic system, had a single cylinder pump.

Gearbox and clutch
The mechanical aspects of the gearbox and clutch were completely conventional and the same elements were used in the ID 19.

The gear change control consisted of:
    * Hydraulic gear selector.
    * Clutch control. This was the most complicated part. The speed of engagement of the clutch was controlled by:
    * A centrifugal regulator, sensing engine rpm and driven off the camshaft by a belt
    * The position of the butterfly valve in the carburettor (i.e. the position of the accelerator)
    * The brake circuit: when the brake was pressed, the engine idle speed dropped to a rpm below the clutch engagement speed, thus preventing friction while stopped in gear at traffic lights. When the brake was released, the idle speed increased to the clutch dragging speed. The car would then "creep" much like automatic transmission cars. This drop in idle throttle position also caused the car to have more engine drag when the brakes were applied even before the car slowed to the idle speed in gear, preventing the engine from "pulling" against the brakes.

Impact on Citroën brand development
The 1955 DS in one stroke cemented the Citroën brand name as an automotive innovator. In fact, the DS caused such a huge sensation that Citroën was fearful future models would not be bold enough. Other than variations on the very basic 2 cylinder economy car Citroën 2CV, like the Citroën Ami, no new models were introduced from 1955 to 1970.

The DS was a large, expensive executive car and a downward brand extension was attempted, but without result. Throughout the late 1950s and 1960s Citroën developed many new vehicles for the very large market segments between the 2CV and the DS, occupied by vehicles like the Peugeot 403, Renault 16 and Ford Cortina. None made it to production. Either they had uneconomic build costs, or were ordinary "me too" cars, not up to the company's high standard of innovation. Because Citroën was owned by Michelin as a sort of research laboratory, such experimentation was possible. Citroën finally did introduce the clever Citroën GS in 1970, which sold a spectacular 2.5 million units.

DS in the US
While the DS was a hit in Europe, it seemed rather odd in the United States. Ostensibly a luxurious car, it did not have the basic features that buyers of that era expected to find on such a vehicle - fully automatic transmission, air conditioning, power windows and a reasonably powerful engine. The DS price point was similar to the contemporary Cadillac luxury car. Also, people at the time wanted only the newest models, which changed every year, like fashion, yet the DS appeared vaguely derivative of the 1950 Hudson Hornet step-down design.

Outdated US legislation also banned one of the car's more advanced features, aerodynamic headlamps, now common in US automobiles. Ultimately, 38,000 units were sold. The first year of the aerodynamic glass over the DS' headlights along with driving lights turned by the steering, was also the first year these features were outlawed in the US.

Design variations

The DS always maintained its size and shape, with easily removable, unstressed body panels, but certain design changes did occur.

A station wagon version was introduced in 1958. It was known by various names in different markets (Break in France, Safari and Familiale in the UK, Wagon in the US, and Citroën Australia used the terms Safari and Station-Wagon). It had a steel roof to support the standard roof rack.

In September 1962, the DS was restyled with a more aerodynamically efficient nose, better ventilation and other improvements. It retained the open two headlamp appearance, but was available with an optional set of driving lights mounted on the front fenders. In 1965 a luxury upgrade kit, the DS Pallas (after Greek goddess Pallas), was introduced. This included comfort features such as better noise insulation, leather upholstery and external trim embellishments.

In 1967, the DS and ID was again restyled. This version had a more streamlined headlamp design, giving the car a notably shark-like appearance. This design had four headlights under a smooth glass canopy, and the inner set swivelled with the steering wheel. This allowed the driver to see 'around' turns, especially valuable on twisting roads driven at high speed at night.

However, this feature was not allowed in the US at the time (see World Forum for Harmonization of Vehicle Regulations), so a version with four exposed headlights that did not swivel was made for the US market.

The station wagon edition, the Break (called the ID Safari on the UK market) and "Familiale", was also upgraded. The hydraulic fluid changed in all markets (except the US) to the technically superior LHM (Liquide Hydraulique Minérale).

Rarest and most collectible of all DS variants, a convertible was offered from 1958 until 1973. The convertibles were built in small series by French carrossier Henri Chapron, for the Citroën factory. In addition, Chapron also produced a few coupés, non-works convertibles and special sedans (DS Lorraine for instance).

DS engines
As with all French cars, the DS design was impacted by the tax horsepower system, which effectively mandated very small engines.

Unlike the Traction Avant predecessor, there was no top-of-range model with a powerful six cylinder engine. The DS was designed around an air cooled flat six based on the design of the 2 cylinder engine of the 2CV, similar to the motor in the Porsche 911. Technical issues forced this idea to be scrapped.

Thus, for such a modern car, the engine of the original DS 19 was also old-fashioned. It was derived from the engine of the 11CV Traction Avant (models 11B and 11C). It was an OHV four-cylinder engine with three main bearings and dry liners, and a bore of 78 mm and a stroke of 100 mm, giving a volumetric displacement of 1911 cc. The cylinder head had been reworked; the 11C had a reverse-flow cast iron cylinder head and generated 60 hp at 3800 rpm; by contrast, the DS 19 had an aluminium cross-flow head with hemispherical combustion chambers and generated 75 hp at 4500 rpm. Apart from these details, there was very little difference between the engines: even the locations of the cylinder head studs were the same, so that it was possible to put the cylinder head of a DS on a Traction Avant engine and run it.

Like the Traction Avant, the DS had the gearbox mounted in front of the engine, with the differential in between. Thus the DS is a really a mid engine front wheel drive car. It initially had a four-speed transmission and clutch, operated by a hydraulic controller. To change gears, the driver flicked a lever behind the steering wheel to the next position and eased-up on the accelerator pedal. The hydraulic controller disengaged the clutch, engaged the nominated gear, and re-engaged the clutch. Manual transmission control was a lower-cost option. The later and simpler ID19 also had the same gearbox and clutch, manually operated. In the 1970s a five-speed manual and 3-speed fully-automatic were introduced, in addition to the original four-speed unit.

The DS and ID powerplants evolved throughout its 20 year production life. The car was underpowered and faced constant mechanical changes to boost the performance of the four-cylinder engine. The initial 1911 cc 3 main bearing engine (carried forward from the Traction Avant) of the DS 19 was replaced in 1965 with the 1985 cc 5 bearing motor of the DS 19a (called DS20 from September 1969).

The DS 21 was also introduced for model year 1965. This was a 2175 cc, 5 main bearing engine. This engine received a substantial increase in power with the introduction of Bosch electronic fuel injection for 1970, making the DS one of the first mass-market cars to use electronic fuel injection.

Lastly, 1973 saw the introduction of the 2347 cc engine of the DS 23 in both carbureted and fuel injected forms. The DS 23 with electronic fuel injection was the most powerful production model, producing 141 horsepower.

Citroen SM Presidential, 1972



Citroen SM Presidential, 1972

The Citroën SM was a high performance coupé produced by the French manufacturer Citroën between 1970 and 1975. The SM placed third in the 1971 European Car of the Year contest, trailing its stablemate Citroën GS, and won the 1972 Motor Trend Car of the Year award in the US in 1972.

In 1961, Citroën began work on 'Project S' - a sports variant of the revolutionary Citroën DS. As was customary for the firm, many running concept vehicles were developed, increasingly complex and upmarket from the DS - eventually becoming a halo vehicle for the brand. Citroën purchased Maserati in 1968 with the intention of harnessing Maserati's high performance engine technology to produce a true Gran Turismo car, combining the sophisticated Citroën suspension with a Maserati V6 engine.

The result was the Citroën SM (Sport Maserati), first shown at the Geneva Motor Show in March1970. It finally went on sale in France in September of that year. All produced were left-hand-drive, although some RHD conversions were done in the UK.

The SM was Citroën's flagship vehicle, competing with other high performance GTs of the time from manufacturers such as Jaguar, Lotus and Porsche. It was also Citroën's way of demonstrating just how much power and performance could be accommodated in a front-wheel drive design.

Contemporary automotive journalists were most effusive about the SM's dynamic qualities, which were unlike anything they had experienced prior. The SM provided a combination of comfort, sharp handling, and high performance not available in any other car at the time. Popular Science noted that the SM had the shortest stopping distance of any car they had tested. To this day this stopping distance remains outstanding.

Styling
The look of the car was quite distinct. Designed in-house by Citroën's chief designer Robert Opron, the SM bore a vague family resemblance to the DS. Seen from above, the SM resembled a teardrop, with a much wider track at the front.

The SM was unusually aerodynamic for its era, with a very low drag coefficient. European critics marvelled at the resulting ability to travel for hours at 200 km/h (120 mph) in comfort. In addition, many of the details reflected Robert Opron's American background, notably the truncated 'fins' at the rear.

The SM combined many unusual features - lights that swivelled with the steering (except in the USA where such was illegal), unique self-centering and fully powered steering, self-leveling headlights (except in the USA where such was illegal), a wiper mechanism that was 'sensitive' to rain, and many other features that are now commonplace on the cars of today.

The SM's design was timeless; the car was even used in a 1999 television advertisement for British Petroleum of Spain, where 'a futuristic car was required'. It placed eleventh on Automobile Magazine's 2005 "100 Coolest Cars" listing.

In 1970, it was a car of the future and the fastest front-wheel drive car to be made. It was an example of the car as a symbol of optimism and progressive technology, similar to the SM's contemporary, the Concorde aircraft.

US exports
The main export market for the SM was the United States. In the US, the market for personal luxury cars was much larger than in Europe, with competitors like the Cadillac Eldorado, Lincoln Mark IV and Ford Thunderbird alongside a large selection of Italian, English, and German imports. Nevertheless, the unique design of the SM made quite a splash and won the Motor Trend magazine Car of the Year award in 1972: unheard of for a non-US vehicle at the time.

The SM's six headlight set up was illegal in the United States and consequently, US specification cars were fitted with four fixed round exposed lamps.

Despite initial success, US sales ceased suddenly - Citroën expected (but did not receive) an exemption for the 1974 model year 5 mph bumper regulation imposed by the NHTSA. The integral variable height suspension of the SM made compliance impossible. The law as written called for bumpers to be an exact height off the ground at all times, yet according to the laws of physics, cars dip at the nose on braking. Vehicles classified as trucks were always exempt and the entire law was eventually repealed in 1981. The final batch of 134 now illegal 1974 US model SMs were shipped to Japan.

Engines
The SM was sold with three very similar, small, lightweight engines, all derived from the contemporary Maserati V8 fitted to the Quattroporte. Because of the V8 origin, this engine sported an unusual 90 degree angle between cylinder banks - a trait shared with the PRV V6.

The engines mounted behind the front axle:
    * 2.7 L V6 with Weber 42 DCNF carburettors, "C114-1" (170 bhp) (1970-1972)
    * 2.7 L V6 with Bosch D-Jetronic injection, "C114-03" (178 bhp) (1973-1975 - Not available in the US)
    * 3.0 L V6 with Weber 42 DCNF carburettors, "C114-11" (180 bhp) (1973-1975 - US only in 1973, rest of the world, automatic only in 1974 & 1975)

The size of the 2.7 L engine was limited by French puissance fiscale taxation, which effectively banned large displacement vehicles. The engine was also used in the Maserati Merak from 1973 to 1982 and the Ligier JS2 sports car. The final SMs were produced in the Ligier factory in Vichy.

5 speed manual and 3 speed Borg Warner fully automatic transmissions were fitted, but with the rest of the world outside North America only getting the fully automatic in 1974 & 1975.

The C114 is a relatively sturdy unit, provided certain modifications are performed to eliminate weak points leading to catastrophic damage:
    * The sodium filled exhaust valves may break and drop into the cylinder. Solid valves are available.
    * Primary distribution chain may wear out prematurely due to excessive vibration. A curved chain limiter should be fitted, eliminating vibration.
    * Oil pump drive shaft is underdimensioned and may break. Maserati beefed up the shaft in later versions, and this should be retrofitted if not already present.

Citroen SM, 1972

 

Citroen SM, 1972

The Citroën SM was a high performance coupé produced by the French manufacturer Citroën between 1970 and 1975. The SM placed third in the 1971 European Car of the Year contest, trailing its stablemate Citroën GS, and won the 1972 Motor Trend Car of the Year award in the US in 1972.

In 1961, Citroën began work on 'Project S' - a sports variant of the revolutionary Citroën DS. As was customary for the firm, many running concept vehicles were developed, increasingly complex and upmarket from the DS - eventually becoming a halo vehicle for the brand. Citroën purchased Maserati in 1968 with the intention of harnessing Maserati's high performance engine technology to produce a true Gran Turismo car, combining the sophisticated Citroën suspension with a Maserati V6 engine.

The result was the Citroën SM (Sport Maserati), first shown at the Geneva Motor Show in March1970. It finally went on sale in France in September of that year. All produced were left-hand-drive, although some RHD conversions were done in the UK.

The SM was Citroën's flagship vehicle, competing with other high performance GTs of the time from manufacturers such as Jaguar, Lotus and Porsche. It was also Citroën's way of demonstrating just how much power and performance could be accommodated in a front-wheel drive design.

Contemporary automotive journalists were most effusive about the SM's dynamic qualities, which were unlike anything they had experienced prior. The SM provided a combination of comfort, sharp handling, and high performance not available in any other car at the time. Popular Science noted that the SM had the shortest stopping distance of any car they had tested. To this day this stopping distance remains outstanding.

Unfortunately, the SM did not find a sufficient customer base in the European GT market, but much of the SM's technology was carried forward to the successful Citroën CX, launched in 1974 - the DIRAVI steering being the most obvious example. The same basic engine in enlarged 3.0 L form (some in Italy had 2 litre) was used in Maserati's own Merak which, together with the Khamsin, used Citroën's high pressure hydraulics.

Styling
The look of the car was quite distinct. Designed in-house by Citroën's chief designer Robert Opron, the SM bore a vague family resemblance to the DS. Seen from above, the SM resembled a teardrop, with a much wider track at the front.

The SM was unusually aerodynamic for its era, with a very low drag coefficient. European critics marvelled at the resulting ability to travel for hours at 200 km/h (120 mph) in comfort. In addition, many of the details reflected Robert Opron's American background, notably the truncated 'fins' at the rear.

The SM combined many unusual features - lights that swivelled with the steering (except in the USA where such was illegal), unique self-centering and fully powered steering, self-leveling headlights (except in the USA where such was illegal), a wiper mechanism that was 'sensitive' to rain, and many other features that are now commonplace on the cars of today.

The SM's design was timeless; the car was even used in a 1999 television advertisement for British Petroleum of Spain, where 'a futuristic car was required'. It placed eleventh on Automobile Magazine's 2005 "100 Coolest Cars" listing.

In 1970, it was a car of the future and the fastest front-wheel drive car to be made. It was an example of the car as a symbol of optimism and progressive technology, similar to the SM's contemporary, the Concorde aircraft.

US exports
The main export market for the SM was the United States. In the US, the market for personal luxury cars was much larger than in Europe, with competitors like the Cadillac Eldorado, Lincoln Mark IV and Ford Thunderbird alongside a large selection of Italian, English, and German imports. Nevertheless, the unique design of the SM made quite a splash and won the Motor Trend magazine Car of the Year award in 1972: unheard of for a non-US vehicle at the time.

The SM's six headlight set up was illegal in the United States and consequently, US specification cars were fitted with four fixed round exposed lamps.

 US sales ceased suddenly - Citroën expected (but did not receive) an exemption for the 1974 model year 5 mph bumper regulation imposed by the NHTSA. The integral variable height suspension of the SM made compliance impossible. The law as written called for bumpers to be an exact height off the ground at all times, yet according to the laws of physics, cars dip at the nose on braking. Vehicles classified as trucks were always exempt and the entire law was eventually repealed in 1981. The final batch of 134 now illegal 1974 US model SMs were shipped to Japan.

Engines
The SM was sold with three very similar, small, lightweight engines, all derived from the contemporary Maserati V8 fitted to the Quattroporte. Because of the V8 origin, this engine sported an unusual 90 degree angle between cylinder banks - a trait shared with the PRV V6.

The engines - always mounted behind the front axle were:
    * 2.7 L V6 with Weber 42 DCNF carburettors, "C114-1" (170 bhp) (1970-1972)
    * 2.7 L V6 with Bosch D-Jetronic injection, "C114-03" (178 bhp) (1973-1975 - Not available in the US)
    * 3.0 L V6 with Weber 42 DCNF carburettors, "C114-11" (180 bhp) (1973-1975 - US only in 1973, rest of the world, automatic only in 1974 & 1975)

The size of the 2.7 L engine was limited by French puissance fiscale taxation, which effectively banned large displacement vehicles. The engine was also used in the Maserati Merak from 1973 to 1982 and the Ligier JS2 sports car. The final SMs were produced in the Ligier factory in Vichy.

5 speed manual and 3 speed Borg Warner fully automatic transmissions were fitted, but with the rest of the world outside North America only getting the fully automatic in 1974 & 1975.

The C114 is a relatively sturdy unit, provided certain modifications are performed to eliminate weak points leading to catastrophic damage:
    * The sodium filled exhaust valves may break and drop into the cylinder. Solid valves are available.
    * Primary distribution chain may wear out prematurely due to excessive vibration. A curved chain limiter should be fitted, eliminating vibration.
    * Oil pump drive shaft is underdimensioned and may break. Maserati beefed up the shaft in later versions, and this should be retrofitted if not already present.

Thursday, September 8, 2011

Oldsmobile Bravada Indy Pace Car, 2002

 
Oldsmobile Bravada Indy Pace Car, 2002

The Bravada was a luxury SUV from the Oldsmobile marque of General Motors. There have been two different vehicles to bear this model name, the first and second-generation GMT330, and the 2002 to 2004 GMT360.

1991
The 1991 Bravada was an upscale version of the then-new 4-door S-Blazer/Jimmy. It was the first truck-based vehicle offered by Oldsmobile since the 1920s, and by that time was a United States-only vehicle. Unlike its siblings, the Bravada was only offered with "Smart Trak" all-wheel drive, leather upholstery, and the 4.3 L Z-code engine. Anti-lock brakes and remote keyless entry were also standard. This version was produced through 1994.

Engines
    * 1991 - 4.3 L Vortec 4300 V6, TBI, 160 hp (119 kW)/230 ft·lbf (312 N·m) (VIN Z)
    * 1992-1994 - 4.3 L Vortec 4300 V6, CPFI, 200 hp (149 kW) (VIN W)

Fuel Economy
The first generation Bravada with the 160 hp engine averaged EPA city/highway 17/22 mpg. The first generation with the 200 hp engine averaged 16/21 mpg.

1996
The Bravada was refreshed later than the others, with no 1995 models produced. The 1996 and 1997 models were less boxy than their predecessor. Daytime running lamps were standard fare including a driver's airbag. The interior styling was more appealing to the eye with less ridges and squares, much like the exterior. Another refreshening occurred in 1998, with a revised interior including dual airbags and a new front fascia which included the new Aurora inspired Oldsmobile logo. OnStar was available in 1999 as a cell phone unit, later becoming integrated into the rearview mirror in 2001 with available features like hands-free calling and virtual advisor. A Bose sound system was added for 1999 and the engine was redesigned in 2000, though output remained the same. A new two-tone exterior dubbed the Platinum Edition was made available in 2000. This generation was phased out in 2001 to make way for the new GMT360 Bravada.

Engines
    * 1996-2001 - 4.3 L Vortec 4300 V6, CSFI, 190 hp (142 kW)

Fuel Economy
The second generation Bravada EPA city/highway averaged 16/21 mpg.

2002
The 2002 Bravada was the first GMT360 truck. This generation Bravada holds the distinction of the last new Oldsmobile model. Like the Chevrolet TrailBlazer and GMC Envoy, it used the new 270 hp (201 kW) Atlas I6 engine. Rear-wheel drive was available for the first time as well, making this the first rear wheel drive Oldsmobile since the 1992 Custom Cruiser. The Bravada entered the Canadian market that time. Production of the Bravada ended with the demise of the Oldsmobile marque in 2004; the last Bravada rolled off the assembly line in January of that year.

The Bravada bodyshell is still in production as the Buick Rainier.

Engines
    * 2002-2004 LL8 4.2 L (256 in³) I6, 270 hp (201 kW)

Fuel Economy
The third generation Bravada EPA city/highway averaged 15/21 mpg.

Oldsmobile Bravada, 2002

 
 
 
Oldsmobile Bravada, 2002

The Bravada was a luxury SUV from the Oldsmobile marque of General Motors. There have been two different vehicles to bear this model name, the first and second-generation GMT330, and the 2002 to 2004 GMT360.

1991
The 1991 Bravada was an upscale version of the then-new 4-door S-Blazer/Jimmy. It was the first truck-based vehicle offered by Oldsmobile since the 1920s, and by that time was a United States-only vehicle. Unlike its siblings, the Bravada was only offered with "Smart Trak" all-wheel drive, leather upholstery, and the 4.3 L Z-code engine. Anti-lock brakes and remote keyless entry were also standard. This version was produced through 1994.

Engines
    * 1991 - 4.3 L Vortec 4300 V6, TBI, 160 hp (119 kW)/230 ft·lbf (312 N·m) (VIN Z)
    * 1992-1994 - 4.3 L Vortec 4300 V6, CPFI, 200 hp (149 kW) (VIN W)

Fuel Economy
The first generation Bravada with the 160 hp engine averaged EPA city/highway 17/22 mpg. The first generation with the 200 hp engine averaged 16/21 mpg.

1996
The Bravada was refreshed later than the others, with no 1995 models produced. The 1996 and 1997 models were less boxy than their predecessor. Daytime running lamps were standard fare including a driver's airbag. The interior styling was more appealing to the eye with less ridges and squares, much like the exterior. Another refreshening occurred in 1998, with a revised interior including dual airbags and a new front fascia which included the new Aurora inspired Oldsmobile logo. OnStar was available in 1999 as a cell phone unit, later becoming integrated into the rearview mirror in 2001 with available features like hands-free calling and virtual advisor. A Bose sound system was added for 1999 and the engine was redesigned in 2000, though output remained the same. A new two-tone exterior dubbed the Platinum Edition was made available in 2000. This generation was phased out in 2001 to make way for the new GMT360 Bravada.

Engines
    * 1996-2001 - 4.3 L Vortec 4300 V6, CSFI, 190 hp (142 kW)

Fuel Economy
The second generation Bravada EPA city/highway averaged 16/21 mpg.

2002
The 2002 Bravada was the first GMT360 truck. This generation Bravada holds the distinction of the last new Oldsmobile model. Like the Chevrolet TrailBlazer and GMC Envoy, it used the new 270 hp (201 kW) Atlas I6 engine. Rear-wheel drive was available for the first time as well, making this the first rear wheel drive Oldsmobile since the 1992 Custom Cruiser. The Bravada entered the Canadian market that time. Production of the Bravada ended with the demise of the Oldsmobile marque in 2004; the last Bravada rolled off the assembly line in January of that year.

The Bravada bodyshell is still in production as the Buick Rainier.

Engines
    * 2002-2004 LL8 4.2 L (256 in³) I6, 270 hp (201 kW)

Fuel Economy
The third generation Bravada EPA city/highway averaged 15/21 mpg.
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