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2011 audi q7 3.0l tdi premium(US $47,499.00)
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Auto blog
Audi confirms new Q1 to cross over into smaller territory
Tue, 03 Dec 2013The latest Q3 is smaller in every dimension than the Q7 that launched Audi into the crossover back in 2006. It's over two feet shorter, four inches narrower, five inches lower and rides on a wheelbase that's nearly a foot and a half shorter. But in Audi's eyes, it's still not small enough.
That's why the German automaker has just confirmed that it will proceed with production of the oft-rumored Q1 crossover. The new line will form just one of 11 new models which Audi aims to launch by the end of the decade, and will be built starting in 2016 at the main plant in Ingolstadt where Audi currently makes the A3, A4 and A5.
Audi isn't saying much else about the Q1, confirming only that it will be based on a modular transverse-engine platform. But contrary to the brand's Quattro-centric image, it has been rumored to be offered in front-drive form only. One way or another, the business case for expanding Audi's crossover range is as suitably rock solid: The Q family accounts for over a quarter of Audis sold worldwide, with the Q5 accounting for over half of that to stand as the most popular in the range.
LTE technology puts Audi in the driver's seat
Thu, 02 Jan 2014The recently-launched Audi A3 Sportback was first-to-market with Long Term Evolution (LTE), or 4G, and LTE integration for connectivity on the move is an idea swirling all through the automotive world. Automakers see the faster speeds and faster responses of LTE compared to 3G as making it possible to one day have streaming video, cloud gaming, more intensive apps and even a virtual office with videoconferencing in your car. It will also enable more progress in machine-to-machine (M2M) adoption, giving cars a real-time ability to speak to one another and to infrastructure.
A video by Audi Deutschland looks at what might be possible not only for the average driver in an LTE-equipped car, but how a professional chauffeur might make the most of a car that can help him get his VIP passengers from carport to red carpet safely and on time. You can watch it below.
Audi bringing matrix 'organic' LED concept to Frankfurt
Wed, Jul 29 2015Audi has announced that it's bringing a new concept to the upcoming Frankfurt motor show in September, and now it is teasing the taillights. They adopt organic light-emitting diode technology, which takes advantage of several benefits. For one, it uses a relatively low amount of electricity, between three and four volts. It's also incredibly thin, made up of two layers, each less than a thousandth of a millimeter thick. It casts no shadows, requires no reflectors or any other elements, and emits very little heat. Plus the lights can be formed into different shapes, opening up new possibilities for designers. This isn't the first time we've seen Audi focus on lighting technology, and in recent years it's showcased matrix LED and matrix laser headlights. The company runs through the history of the evolution of its lighting tech in the video above. We'll have to wait a little longer to find out what the team from Ingolstadt will be putting these new taillights on. Audi presents latest lighting technology at the IAA in Frankfurt - Matrix OLED technology makes its debut in a concept car at the IAA - Light attains a new level of homogeneity - Flat light sources open up new design possibilities Audi is presenting its next step in automotive lighting technology at the IAA in Frankfurt. The new Matrix OLED lights enable a previously unattainable level of lighting homogeneity, opening up further creative opportunities for design. As the leading brand in automotive lighting technology, Audi has systematically developed all aspects of OLED technology over the years. Matrix OLED lights combine high-tech engineering and design ideally – initial projects are currently underway to implement OLED technology in production tail lights. They are being shown for the first time in a concept car at the IAA. OLED is an English acronym for "organic light emitting diode." In each OLED unit, two electrodes – of which at least one must be transparent – incorporate numerous thin layers of organic semiconductor materials. A low DC voltage – between three and four volts – activates the layers, each of which is less than one-thousandth of a millimeter thick, to light them. The color is based on the molecular composition of the light source. In contrast to point light sources – such as LEDs – which are made of semiconductor crystals, OLEDs are flat light sources. Their light attains a new level of homogeneity, and its dimming is continuously variable.