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Rare Find 1992 Mercedes-benz 500 E on 2040-cars

Year:1992 Mileage:111018 Color: Gray /
 Beige Leather
Location:

Orlando, Florida, United States

Orlando, Florida, United States
Transmission:Automatic
Body Type:Sedan
Vehicle Title:Clear
Engine:5.0 L M119 V8
Fuel Type:Gasoline
For Sale By:Dealer
VIN: WDBEA36E8NB806413 Year: 1992
Number of Cylinders: 8
Make: Mercedes-Benz
Model: 500-Series
Trim: 4 Door
Options: Sunroof, Leather Seats, CD Player
Drive Type: RWD
Safety Features: Anti-Lock Brakes
Mileage: 111,018
Power Options: Air Conditioning, Cruise Control, Power Locks, Power Windows, Power Seats
Sub Model: 500 E
Exterior Color: Gray
Interior Color: Beige Leather
Warranty: Vehicle does NOT have an existing warranty
Condition: Used: A vehicle is considered used if it has been registered and issued a title. Used vehicles have had at least one previous owner. The condition of the exterior, interior and engine can vary depending on the vehicle's history. See the seller's listing for full details and description of any imperfections. ... 

The 500 E was created in close cooperation with Porsche; each 500 E was hand-built by Porsche, being transported back and forth between the Mercedes plant and Porsche's Rossle-Bau plant in Zuffenhausen, Germany during assembly — taking a full 18 days to complete each model. Design began in 1989 and into 1991.[2] Called '500 E' through model year 1993, for model year 1994 it was face-lifted along with the rest of the range and renamed to 'E 500'.


The 500 E had a naturally aspirated 5.0L V8 engine derived from the 500 SL (R129) roadster. Sports car braking performance also came from SL components: front SL 500 300 mm disks with 4-piston calipers came installed on the 1992 and early 1993 cars. The later 1993, and all 1994 cars came with the upgraded 320 mm set taken from the 600 SL. Rear brakes on all years were 278 mm brakes from the 500 SL. In the USA, the 500 E came fully loaded, with the only options available to the buyer being a dealer-installed CD changer and an integrated cellular telephone. The 500 E was only with four seats in left hand drive, with the four leather seats supplied by Recaro (the fronts heated).

Called the "Wolf in Sheep's Clothing" by the press,[3][4] performance tests of the day yielded impressive results: 0–100 km/h (0–62 mph) times of 5.5 to 6.0 seconds and acceleration through the quarter-mile (0.4 km) in 14.1 seconds at 163 km/h (101 mph). The top speed was redline limited at 6,000 rpm to 260 km/h (~160 mph). It was rated at 16.8 L/100 km (14 mpg) in the city and 13.8 L/100 km (17 mpg) on the highway.

With its aggressive stance: 1.5 inches wider track, 0.9 inch lower profile, flared fenders, side skirts, front air-dam and wide tires, the 500 E is easily distinguished from its lesser brethren. Because of its look, limited numbers, hand-built construction, and unique pedigree, the 500 E is already considered a "classic", even within Mercedes-Benz.


ManufacturerDaimler-Benz and Porsche
Production1990–1994
(Model Years 1991–1994)
AssemblySindelfingen and Zuffenhausen,Germany
ClassMid-sizeluxury car
Body style4-door sedan
Engine5.0 L M119 V8
Transmission4-speed automatic
Wheelbase2,800 mm (110.2 in)[1]
Length4,750 mm (187.0 in)
Width1,796 mm (70.7 in)
Height1,410 mm (55.5 in)
Curb weight1,710 kg (3,770 lb)
RelatedMercedes-Benz W124

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Race recap: 2016 Monaco Grand Prix gets very wet, a little wild

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More than at any other race, the Monaco Grand Prix question is: which combination of demolition derby, Safety Cars, and bad pit strategy will decide the podium? Last year Lewis Hamilton's late, confounding pit stop cost him victory. The year before, Nico Rosberg's qualifying "mistake" put him on pole and Mercedes-AMG Petronas' pit strategy sealed his win – good for Nico, bad for Hamilton and the rest of the field. In 2013 Hamilton dropped from second to fourth when he lollygagged in the pits. In all three years, Rosberg won. The new X factor for 2016: a Red Bull resurgence that helped Daniel Ricciardo clinch his first career pole. Nevertheless, bad pit strategy had its say in the results. Ricciardo built up a 13-second lead by Lap 15 in spite of heavy rains that forced the Safety Car to lead the first eight laps of the race. Ricciardo stopped on Lap 23 to switch to intermediate tires for the drying track, ceding the lead to Hamilton. Hamilton pitted from the lead on Lap 31 for softs, then Red Bull pulled Ricciardo in again on Lap 32 and made a snap decision to put him on ultra softs, but the tires weren't ready when Ricciardo reached his pit box. What should have been a three-second pit stop turned into a 13.6-second pit stop. Ricciardo left the pits as Hamilton came down the straight and the Aussie lost the lead into the first corner. Despite two attempts to pass later in the race, Hamilton finished first, the Aussie second. It's the second race in a row where pit strategy cost Ricciardo a near-certain win. Conversely, Force India nailed both tire strategy and pit timing with Sergio Perez. The Mexican started in eighth but got into third before half the race was done, passing four cars in the pits, and finished on the podium's final step. Otherwise the order barely changed from about half distance, with Ferrari driver Sebatian Vettel in fourth, followed by Fernando Alonso in the McLaren, Nico Hulkenberg in the second Force India, Rosberg in the second Mercedes, Carlos Sainz for Toro Rosso, Jenson Button in the second McLaren, and Felipe Massa taking the final point for tenth for Williams. Storms didn't only hover over the area, though – dark clouds hung around several teams and drivers. Mercedes' reliability is no longer so reliable. The Silver Arrows suffered engine issues on both cars in qualifying, and Hamilton's problem almost kept him from setting a time in Q3.

Mercedes-Benz engines with 48-volt systems coming in 2017

Tue, Jun 14 2016

As part of a big green push announced yesterday, Mercedes-Benz is jumping into the world of 48-volt power. The company will launch a new family of efficient gasoline engines next year and will begin rolling out 48-volt systems with it, likely in its more expensive cars first. Mercedes will use the 48-volt systems to power mild-hybrid functions like energy recuperation (commonly called brake regeneration), engine stop-start, electric boost, and even moving a car from a stop on electric power alone. These features will be enabled through either an integrated starter-generator (Mercedes abbreviates it ISG) or a belt-driven generator (RSG). (RSG is from the German word for belt-driven generator, Riemenstartergeneratoren. That's your language lesson for the day.) Mercedes didn't offer many other details on the new family of engines. There are 48-volt systems already in production; Audi's three-compressor SQ7 engine uses an electric supercharger run by a 48-volt system, and there's a new SQ5 diesel on the horizon that will use a similar setup with the medium-voltage system. Electric superchargers require a lot of juice, which can be fed by either a supercapacitor or batteries in a 48-volt system. Why 48-volt Matters: Current hybrid and battery-electric vehicles make use of very high voltages in their batteries, motors, and the wiring that connects them, usually around 200 to 600 volts. The high voltage gives them enough power to move a big vehicle, but it also creates safety issues. The way to mitigate those safety issues is with added equipment, and that increases both cost and weight. You can see where this is going. By switching to a 48-volt system, the high-voltage issues go away and the electrical architecture benefits from four times the voltage of a normal vehicle system and uses the same current, providing four times the power. The electrical architecture will cost more than a 12-volt system but less than the complex and more dangerous systems in current electrified vehicles. The added cost makes sense now because automakers are running out of ways to wisely spend money for efficiency gains. Cars can retain a cheaper 12-volt battery for lower-power accessories and run the high-draw systems on the 48-volt circuit. The industry is moving toward 48-volt power, with the SAE working on a standard for the systems and Delphi claiming a 10-percent increase in fuel economy for cars that make the switch.

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