Sle V6 Convertible 3.3l Cd Front Wheel Drive Tires - Front Performance Abs A/c on 2040-cars
Georgetown, Texas, United States
Engine:3.3L 3300CC 202Cu. In. V6 GAS DOHC Naturally Aspirated
For Sale By:Dealer
Body Type:Convertible
Fuel Type:GAS
Transmission:Automatic
Year: 2006
Warranty: Unspecified
Make: Toyota
Model: Solara
Options: Leather Seats
Trim: SE Convertible 2-Door
Power Options: Power Windows
Drive Type: FWD
Number of Doors: 2
Mileage: 69,140
Sub Model: SLE V6
Number of Cylinders: 6
Exterior Color: Red
Toyota Solara for Sale
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Auto Services in Texas
Wynn`s Automotive Service ★★★★★
Westside Trim & Glass ★★★★★
Wash Me Car Salon ★★★★★
Vernon & Fletcher Automotive ★★★★★
Vehicle Inspections By Mogo ★★★★★
Two Brothers Auto Body ★★★★★
Auto blog
Award-winning Lexus Sport Yacht to get a production successor
Sat, Mar 10 2018Imagine driving along a coastal road in the evening sun, listening to Christopher Cross, Michael McDonald or some other very smooth singer usually associated with the tag "Yacht Rock". Perhaps a Lexus coupe could very well suit that soft rock mental imagery, with "Sailing" playing from its Mark Levinson audio as you cruise down the road in a laid-back fashion. But you could in fact be sailing in a Lexus-branded boat, too. Revealed a year ago, the Lexus Sport Yacht isn't just a badge-engineering job: it was created by Lexus Design, engineered by Toyota's Marine Division and built by the Wisconsin-based boat manufacturer Marquis-Larson Boat Group. The one existing example has just now been honored at the Yokohama International Boat Show, by Japan's Boat of the Year committee. As Toyota's Executive Vice President Shigeki Tomoyama accepted the award, he also announced production plans for a globally sold Lexus Yacht. "Based on our amazing experiences in engineering, building, testing and showing the Lexus Sport Yacht concept last year, we've decided to take the next bold step of producing an all-new larger yacht that builds on the advanced nature of the concept while adding more comfort and living space," Tomoyama said. "We plan to start sales in the U.S. in the latter half of 2019, with sales in Japan following in the spring of 2020." The new, 65-foot yacht will be built in partnership with Marquis-Larson, and more details of it will be revealed later. Related Video:
Bibendum 2014: Former EU President says Toyota could lose 100,000 euros per hydrogen FCV sedan
Thu, Nov 13 2014Pat Cox does not work for Toyota and we don't think he has any secret inside information. Still, he's the former President of the European Parliament and the current high level coordinator for TransEuropean Network, so when he says Toyota is likely going to lose between 50,000 and 100,000 euros ($66,000 and $133,000) on each of the hydrogen-powered FCV sedans it will sell next year, it's worth noting. That was just one highlight of Cox's presentation at the 2014 Michelin Challenge Bibendum in Chengdu, China today, which addressed the main problem of using more H2 in transportation: cost. The EU has a tremendous incentive to find an alternative to fossil fuels, since Europe today is 94 percent dependent on oil for its transportation sector and 84 percent of that 94 percent dependency is imported oil. The tab for that costs the EU a billion euros a day, Cox said, on top of the environmental costs. To encourage a shift away from petroleum, European Directive 2014/94 requires each member state to develop national policy frameworks for the market development of alternative fuels and their infrastructure. For the member states that choose to fulfill 2014/94 by developing a hydrogen market – and to be clear, Cox said, it's not an EU diktat that they do so, since a number of other alternatives are also allowed – the aim is to have things in place by the end of 2025. The plans don't even have to be submitted until the end of 2016. The long lead time is due to a quirk in a hydrogen economy. In hydrogen infrastructure, "the first-mover cost is not the first-mover advantage, but the firstmover disadvantage." – Pat Cox In deploying a hydrogen infrastructure, Cox said, "the first-mover cost is not the first-mover advantage, but the first-mover disadvantage, and high risk." That's why the EU and member states will financially support the early stages, but everyone agrees that "if this is to work, it will have to be ultimately and essentially a commercially viable and commercially driven infrastructure roll-out." Since 1986, European Union research programs have spent 550 million euros on hydrogen-related and fuel-cell-related research, including methods of hydrogen storage and distribution as well as improved fuel cells vehicles, Cox said. Expensive problems remain to be solved. At a conference in Berlin, Germany this past summer, Cox said, the unit cost of the refueling stations was identified as the main problem.
BMW i5 could get Toyota-sourced hydrogen power
Tue, 18 Nov 2014It's starting to feel like the automotive landscape is right on the cusp of a boom in hydrogen-fueled vehicles. After all, the Toyota FCV is nearly ready, Volkswagen is readying a fuel cell concept for this week's Los Angeles Auto Show and Hyundai already sells its Tucson Fuel Cell. The next big name to add to that list might be BMW, as the company's co-development deal with Toyota starts to bear fruit.
According to Autocar, BMW may use a version of the fuel cell system from the Toyota FCV in the future i5. As part of its eco-oriented i sub-brand, the i5 is expected to be a stretched version of the i3 (pictured above) with extra rear legroom and cargo space. It's unclear at the moment whether a battery-powered pure electric powertrain will also be available. If accurate, then the rumor could give the Bavarian brand a counterattack against Mercedes-Benz' planned fuel cell vehicle in 2017.
BMW and Toyota first signed the memorandum of understanding to co-develop fuel cells, lightweight technology and a sports car back in 2012, and they made the arrangement official in late 2013. So far, few details on the progress of the work have been disclosed, but the performance model has been rumored to use a front-engine, all-wheel drive layout with supercapacitors.
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