1985 Mercedes-benz 300d Base Sedan 4-door 3.0l on 2040-cars
Chula Vista, California, United States
Body Type:Sedan
Engine:3.0L 2998CC l5 DIESEL SOHC Turbocharged
Vehicle Title:Clear
Fuel Type:Diesel
For Sale By:Private Seller
Year: 1985
Number of Cylinders: 5
Make: Mercedes-Benz
Model: 300D
Trim: Base Sedan 4-Door
Warranty: Vehicle does NOT have an existing warranty
Drive Type: RWD
Options: Sunroof, Cassette Player
Mileage: 130,150
Power Options: Air Conditioning, Cruise Control, Power Locks, Power Windows
Exterior Color: Off White
Interior Color: Tan
130,000 miles. Clean Title. Cold A/C, Hot Heater, Sunroof, original Becker Radio/Cassette, Power Antenna (goes up automatically when radio turns on), Power Windows, Locks, Original First Aid Kit, Original Becker Cassette Cleaner that came with car in 1985. Vehicle is running perfect, I just had the oil changed, fuel filters changed, fuel filter in tank cleaned, banjo bolt and tubing cleaned, glow plugs changed, and just detailed. Paint 9.8/10, Interior 9/10 (one very small tear on driver seat back. I had it sewed and glued so it wont get larger and isn't an eyesore) I have had new padding put in the seats. Runs perfect, and i get 25-30mpg. Brakes are newer, Oil changes have been done regularly. I purchased this from a gentleman in San Diego (he was originally from France) who told me the car has been in the family since new, and purchased in Southern California. Below is the link for the vin report and it shows no records (typical for a one owner older car, and shows no negative information such as accidents). This is a great car- mercedes people claim this is the best chassis built (w123), best motor (617) and best year (last year for the w123) Call Daniel at 619-734-5757 |
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Auto Services in California
Z Best Body & Paint ★★★★★
Woodman & Oxnard 76 ★★★★★
Windshield Repair Pro ★★★★★
Wholesale Tube Bending ★★★★★
Whitney Auto Service ★★★★★
Wheel Enhancement ★★★★★
Auto blog
Daimler could sell off Li-Tec's EV battery business
Sat, May 24 2014Five-plus years may have been about enough time for Daimler AG to know whether it wanted to be in the battery-pack production business. The Mercedes-Benz parent may stop making electric-vehicle batteries and ultimately sell its Li-Tec battery-cell factory in Germany within two years, according to Bloomberg News which cites Manager Magazin. The beneficiary may be LG Electronics, which would likely take over battery-production duties for models such as Daimler's Smart ED battery-electric vehicle. Daimler is taking a number of steps to improve profit margins, which are thinner than those of its German rivals like BMW. Like its German competition, the company has lagged behind companies such as Nissan, Renault and Tesla Motors in terms of aggressively pursuing growth via plug-in vehicle sales. Daimler spokesman Hendrik Sackmann, in an e-mail to AutoblogGreen, would only say that the battery business is growing "rapidly" and that Li-Tec is developing "according to our plans." "Regarding Li-Tec, we are working on a concept for the future line-up," he added. "The battery cells for the successor of the Smart electric drive won't be provided by Li-Tec." Daimler in 2008 launched Li-Tec as a joint venture with Evonik, though Daimler recently put plans together to buy out Evonik's 50-percent share of Li-Tec, Bloomberg reported last month. Evonik's role was manufacturing electrodes and separators for batteries. Daimler also said last fall that it was looking to cooperate more extensively with Tesla in regards to electric vehicle development. The two companies first said they'd work together in 2009. Featured Gallery 2013 Smart Fortwo ED View 16 Photos News Source: Bloomberg NewsImage Credit: Daimler Green Plants/Manufacturing Mercedes-Benz battery
2014 Mercedes B-Class ED battery much bigger than previously stated
Mon, Jun 23 2014There was something unexpected hiding in the new configurator for the 2014 Mercedes-Benz B-Class Electric Drive: a $600 "Temporary range extender." Since we've never heard of such a thing, we had to click through for more. The official explanation runs like this: A suite of options to further increase your driving range includes added insulation of the doors and roof for to increase climate-control efficiency, along with an electrically heated windshield and a range-extending charge function. By pressing a button on the console prior to charging, the maximum charge level for battery will increased for the next charge cycle. The higher-capacity charge can provide up to 17 additional miles of range. The passive features that increase range should be standard in all models, we think. But we were more curious about the battery charge situation. How do you increase a maximum? And is it a good idea to do so? The configurator includes this disclaimer, after all: Range extender should only be used on a limited basis, and could shorten battery life if used excessively. How much is excessive? We investigate below. The B-Class ED has, according to the specs, a 28-kWh battery. First, let's understand what this "temporary range extender" is all about. The B-Class ED has, according to the specs, a 28-kWh battery. But Terry Wei, from the Mercedes-Benz USA product and technology communications department, confirmed to AutoblogGreen that the B-Class ED is actually hiding a 36-kWh battery, but the automaker is calling it a 28-kWh battery because that's how much energy capacity is used in day-to-day use. Most automakers publicly claim the actual capacity and then admit they use a percentage of it. The Chevy Volt, for example, has a 16.5-kWh battery pack, but a "full charge" only fills up around 65 percent of that. In the B-Class ED, the 28 kWh of useable energy provides an EPA-certified 87 miles of range. But, since there are eight kWh of reserve, the temporary range extender (we think of it as a software update accessed by a button) can access some of that and offer the aforementioned 17 miles. Now that we know what we're dealing with, this reminds us of an evolved version of the "remote wireless charging" feature that was touted in the Reva EV. Wei said that the reason the feature is optional is because Mercedes doesn't think most people will need it. Eighty-seven miles is plenty for your average EV driver, but when you want to have 100+ in the tank, you can.
Mercedes-Benz engines with 48-volt systems coming in 2017
Tue, Jun 14 2016As 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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