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Tuesday, April 5, 2011

BMW 650i Coupe




4.8-liter, V-8 engine
360 horsepower
Rear-wheel drive
22 mpg hwy



The lightweight chassis, with aluminum integral rear axle and double-joint spring strut front axle, delivers excellent road holding and impressively precise handling - charateristics that are also important active safety features. The double-joint spring strut front axle also does an outstanding job of minimizing noise and body roll.

Innovations




Dynamic Stability Control
Nasty weather. Terrible road conditions. A deer crossing. When a driver loses control, there's usually more than one factor involved. Using built-in sensors to continually monitor multiple variables - such as speed, steering angle, yaw, brake pressure and traction - our Dynamic Stability Control system can detect and, more importantly, help correct the loss of wheel traction immediately. All of which helps to keep you in control, no matter what the circumstances.


Source by bmwusa

Monday, April 4, 2011

BMW 650i Convertible


4.8-liter, V-8 engine
360 horsepower
Rear-wheel drive
21 mpg hwy


4.8-liter, V-8 engine, 360 hp
The 4.8-liter V-8 engine produces 360 horsepower and 350 lb-ft torque at 3400-3800 rpm. The balanced and virtually unrivaled performance it delivers is achieved through ultra-precise engineering and advanced technologies including Valvetronic and Double-VANOS.
Active Knee Protection
Active Knee Protection is a special airbag designed to protect front-seat occupant"s knees in the event of a severe impact. It also reduces the amount of dash space that would have been taken up by a knee-protection system using dash padding only.
Adaptive Brake Lights
Bumper-to-bumper collisions most often occur when the driver behind you didn't realize how hard you were braking. Our Adaptive Brake Lights help eliminate that scenario by emitting a larger, brighter light the more force you use. It allows those behind you to clearly see whether you're lightly tapping the brakes to slow down or applying full force for a sudden stop.
Enhanced Braking System (Generic)
We believe being able to stop quickly is even more important than being able to drive fast. That's why our enhanced braking system does more than just brake. If it's raining, it'll dry off the rotors. If you're stopped on a hill, it'll keep you from rolling. If you quickly pull your foot off the accelerator, it prepares to brake just as quickly. And, if you're braking repeatedly, it knows you need more force.
Frontal Offset Crash Test
Known for its performance in frontal-offset crash testing, your BMW has a history of state of the art safety systems, which help to protect its occupants.




Source by BMWUSA

Sunday, April 3, 2011

BMW X3 xDrive30i

Starting at
3.0-liter, inline 6-cylinder engine
260 horsepower
xDrive, intelligent all-wheel-drive
24 mpg hwy*
Source by BMWUSA


Safety & Security
We believe being able to stop quickly is even more important than being able to drive fast. That's why our enhanced braking system does more than just brake. If it's raining, it'll dry off the rotors. If you're stopped on a hill, it'll keep you from rolling. If you quickly pull your foot off the accelerator, it prepares to brake just as quickly. And, if you're braking repeatedly, it knows you need more force.




Our Xenon Adaptive Headlights with distinctive corona rings began as a groundbreaking idea that went on to become a major advancement in safety. Using an electromechanical system, our adaptive headlights follow the direction of the wheels. So as you begin cornering, the headlights turn into and around the bend, which allows you to see more of the road, sooner. Xenon lights, another BMW innovation, help provide clarity by emitting twice as much light as halogen light, while using half as much energy.


BMW's Head Protection System is an inflatable tubular structure to protect the heads of a vehicle's front and rear seat occupants. Operating in conjunction with the side airbags, the system provides front seat occupants with outstanding protection in the case of severe side impact. It helps protect the head from hitting the side window and being hit by objects penetrating the side window.


So intuitive, it helps you see things you normally can't. Park Distance Control uses eight sensors - four in the front, four in the rear - to measure exactly how far you are from other vehicles and unseen objects when parking. As your bumper approaches a stationary object, the image on the iDrive screen changes and beeping becomes faster, turning into a constant tone when the distance is less than 12 inches.

Saturday, April 2, 2011

Benz Patent Motorwagen


Ferdinand Verbiest, a member of a Jesuit mission in China, designed a steam-powered vehicle around 1672. It was a 65 cm-long scale-model toy for the Chinese Emperor, that was unable to carry a driver or a passenger, but possibly was the first working steam-powered vehicle ('auto-mobile').[7][8][9]  It is not known if Verbiest's model was ever built.[8]

Leonty Shamshurenkov, a Russian peasant, constructed a human-pedalled four-wheeled "auto-running" carriage in 1752, and subsequently proposed to equip it with odometer and to use the same principle for making a self-propelling sledge.[10]

Although Nicolas-Joseph Cugnot is often credited with building the first self-propelled mechanical vehicle or automobile in about 1769, by adapting an existing horse-drawn vehicle, this claim is disputed by some[citation needed], who doubt Cugnot's three-wheeler ever ran or was stable. What is not in doubt is that Richard Trevithick built and demonstrated his Puffing Devil road locomotive in 1801, believed by many to be the first demonstration of a steam-powered road vehicle, although it was unable to maintain sufficient steam pressure for long periods, and would have been of little practical use.

In the 1780s , a Russian inventor of merchant origin, Ivan Kulibin, developed a human-pedalled, three-wheeled carriage with modern features such as a flywheel, brake, gear box, and bearings; however, it was not developed further.[11]

François Isaac de Rivaz, a Swiss inventor, designed the first internal combustion engine, in 1806, which was fueled by a mixture of hydrogen and oxygen and used it to develop the world's first vehicle, albeit rudimentary, to be powered by such an engine. The design was not very successful, as was the case with others, such as Samuel Brown, Samuel Morey, and Etienne Lenoir with his hippomobile, who each produced vehicles (usually adapted carriages or carts) powered by clumsy internal combustion engines.[12]

In November 1881, French inventor Gustave Trouvé demonstrated a working three-wheeled automobile that was powered by electricity. This was at the International Exhibition of Electricity in Paris.[13]

Although several other German engineers (including Gottlieb Daimler, Wilhelm Maybach, and Siegfried Marcus) were working on the problem at about the same time, Karl Benz generally is acknowledged as the inventor of the modern automobile.[12]

An automobile powered by his own four-stroke cycle gasoline engine was built in Mannheim, Germany by Karl Benz in 1885, and granted a patent in January of the following year under the auspices of his major company, Benz & Cie., which was founded in 1883. It was an integral design, without the adaptation of other existing components, and included several new technological elements to create a new concept. This is what made it worthy of a patent. He began to sell his production vehicles in 1888.
Karl Benz
A photograph of the original Benz Patent Motorwagen, first built in 1885 and awarded the patent for the concept
In 1879, Benz was granted a patent for his first engine, which had been designed in 1878. Many of his other inventions made the use of the internal combustion engine feasible for powering a vehicle.

His first Motorwagen was built in 1885, and he was awarded the patent for its invention as of his application on January 29, 1886. Benz began promotion of the vehicle on July 3, 1886, and about 25 Benz vehicles were sold between 1888 and 1893, when his first four-wheeler was introduced along with a model intended for affordability. They also were powered with four-stroke engines of his own design. Emile Roger of France, already producing Benz engines under license, now added the Benz automobile to his line of products. Because France was more open to the early automobiles, initially more were built and sold in France through Roger than Benz sold in Germany.

In 1896, Benz designed and patented the first internal-combustion flat engine, called a boxermotor in German. During the last years of the nineteenth century, Benz was the largest automobile company in the world with 572 units produced in 1899 and, because of its size, Benz & Cie., became a joint-stock company.

Daimler and Maybach founded Daimler Motoren Gesellschaft (Daimler Motor Company, DMG) in Cannstatt in 1890, and under the brand name, Daimler, sold their first automobile in 1892, which was a horse-drawn stagecoach built by another manufacturer, that they retrofitted with an engine of their design. By 1895 about 30 vehicles had been built by Daimler and Maybach, either at the Daimler works or in the Hotel Hermann, where they set up shop after disputes with their backers. Benz and the Maybach and the Daimler team seem to have been unaware of each other's early work. They never worked together because, by the time of the merger of the two companies, Daimler and Maybach were no longer part of DMG.

Daimler died in 1900 and later that year, Maybach designed an engine named Daimler-Mercedes, that was placed in a specially-ordered model built to specifications set by Emil Jellinek. This was a production of a small number of vehicles for Jellinek to race and market in his country. Two years later, in 1902, a new model DMG automobile was produced and the model was named Mercedes after the Maybach engine which generated 35 hp. Maybach quit DMG shortly thereafter and opened a business of his own. Rights to the Daimler brand name were sold to other manufacturers.

Karl Benz proposed co-operation between DMG and Benz & Cie. when economic conditions began to deteriorate in Germany following the First World War, but the directors of DMG refused to consider it initially. Negotiations between the two companies resumed several years later when these conditions worsened and, in 1924 they signed an Agreement of Mutual Interest, valid until the year 2000. Both enterprises standardized design, production, purchasing, and sales and they advertised or marketed their automobile models jointly, although keeping their respective brands.

On June 28, 1926, Benz & Cie. and DMG finally merged as the Daimler-Benz company, baptizing all of its automobiles Mercedes Benz, as a brand honoring the most important model of the DMG automobiles, the Maybach design later referred to as the 1902 Mercedes-35 hp, along with the Benz name. Karl Benz remained a member of the board of directors of Daimler-Benz until his death in 1929, and at times, his two sons participated in the management of the company as well.

In 1890, Émile Levassor and Armand Peugeot of France began producing vehicles with Daimler engines, and so laid the foundation of the automobile industry in France.

The first design for an American automobile with a gasoline internal combustion engine was drawn in 1877 by George Selden of Rochester, New York, who applied for a patent for an automobile in 1879, but the patent application expired because the vehicle was never built. After a delay of sixteen years and a series of attachments to his application, on November 5, 1895, Selden was granted a United States patent (U.S. Patent 549,160) for a two-stroke automobile engine, which hindered, more than encouraged, development of automobiles in the United States. His patent was challenged by Henry Ford and others, and overturned in 1911.

In Britain, there had been several attempts to build steam cars with varying degrees of success, with Thomas Rickett even attempting a production run in 1860.[14] Santler from Malvern is recognized by the Veteran Car Club of Great Britain as having made the first petrol-powered car in the country in 1894[15] followed by Frederick William Lanchester in 1895, but these were both one-offs.[15] The first production vehicles in Great Britain came from the Daimler Motor Company, a company founded by Harry J. Lawson in 1896, after purchasing the right to use the name of the engines. Lawson's company made its first automobiles in 1897, and they bore the name Daimler.[15]

In 1892, German engineer Rudolf Diesel was granted a patent for a "New Rational Combustion Engine". In 1897, he built the first Diesel Engine.[12] Steam-, electric-, and gasoline-powered vehicles competed for decades, with gasoline internal combustion engines achieving dominance in the 1910s.

Although various pistonless rotary engine designs have attempted to compete with the conventional piston and crankshaft design, only Mazda's version of the Wankel engine has had more than very limited success.

Source by en.wikipedia


Friday, April 1, 2011

TomTom Launches GPS Device With Capacitive Touchscreen


TomTom has announced the Go Live 1000, a next-generation navigation device with a capacitive touchscreen, just days after Garmin unveiled its own capacitive touchscreen-based PNDs.

The connected Go Live 1000 features a 500 MHz ARM11 processor, a redesigned WebKit-based user interface, and the ability to easily integrate third-party apps, plus a full year of free Internet service. TomTom also upgraded its back end server systems to improve delivery of rich content and downloadable apps.

This all means the company is leaving behind its formerly closed, difficult-to-expand OS, and is at least delaying, if not eliminating, the expensive monthly fees surrounding the TomTom XL 340-S LIVE and other current connected devices.

The Go Live 1000 also includes improved IQ Routes and HD Traffic, a high resolution display, a new magnetic windshield mount, and a Park Assist feature for finding places to park (as opposed to the park assist you'd find in some of today's cars that actually helps you parallel park--this is different).

So far, TomTom has partnered with Vodafone to provide connectivity in Europe, and plans to release the device there sometime in the summer. No word yet on pricing or availability in the U.S.

source by gearlog