07 Toyota Rav4-2.4l-81k-pwr Windows-am/fm Stereo W/ Cd Player on 2040-cars
Mountain Lakes, New Jersey, United States
For Sale By:Dealer
Engine:2.4L 2362CC l4 GAS DOHC Naturally Aspirated
Body Type:Sport Utility
Fuel Type:GAS
Transmission:Automatic
Year: 2007
Make: Toyota
Model: RAV4
Disability Equipped: No
Trim: Base Sport Utility 4-Door
Doors: 4
Cab Type: Other
Drive Type: FWD
Drivetrain: Front Wheel Drive
Mileage: 81,658
Exterior Color: White
Number of Cylinders: 4
Interior Color: Tan
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Auto Services in New Jersey
Vip Honda ★★★★★
Totowa Auto Works ★★★★★
Taylors Auto And Collision ★★★★★
Sunoco Auto Care ★★★★★
SR Recycling Inc ★★★★★
Robertiello`s Auto Body Works ★★★★★
Auto blog
Toyota, Nissan, Honda will work together on hydrogen filling stations
Thu, Feb 12 2015Japan's own version of the Big Three is taking on a transportation effort that's a far cry from the large-engined history of General Motors, Ford and Chrysler. In fact, Toyota, Nissan and Honda are looking to do their part – and maybe a little more – for the environment by working together to collaborate on accelerating the deployment of hydrogen fuel delivery in Japan. More refueling stations means more convenience for prospective hydrogen fuel-cell vehicle owners. Toyota says the specifics, including investment amount and the number of stations to be deployed, will be "determined at a later date." Still, the effort dovetails with that of the Japanese government. That government announced a so-called Strategic Road Map for Hydrogen and Fuel Cells last June and subsequently said it would start offering about $20,000 worth of incentives for fuel cell vehicle buyers. In December, Toyota started selling its first mass-produced fuel cell vehicle, the Mirai, in Japan and said it would almost triple production to 2,000 vehicles in 2016 from 700 this year. Last month, the Tokyo government began talks with Toyota and Honda to collaborate on ensuring that there'd be at least 6,000 fuel-cell vehicles on Japan's roads in time for the 2020 Summer Olympics in Tokyo. Tokyo officials are looking to have 100,000 fuel-cell vehicles on the city's roads by 2025. Check out Toyota's press release below. Toyota, Nissan, and Honda to Jointly Support Hydrogen Station Infrastructure Development Toyota Motor Corporation, Nissan Motor Co., Ltd., and Honda Motor Co., Ltd. have agreed to work together to help accelerate the development of hydrogen station infrastructure for fuel cell vehicles (FCVs). Specific measures to be undertaken by the three manufacturers will be determined at a later date. For hydrogen-fueled FCVs to gain popularity, it is not only important that attractive products be launched-hydrogen station infrastructure must also be developed. At present, infrastructure companies are making every effort to build such an infrastructure, but they face difficulties in installing and operating hydrogen stations while FCVs are not common on the road. Following the formulation of its Strategic Road Map for Hydrogen and Fuel Cells in June 2014, the Japanese government has highlighted the importance of developing hydrogen station infrastructure as quickly as possible in order to popularize FCVs.
100-year-old Yellowstone ranger station now powered by Camry Hybrid batteries [w/video]
Thu, May 14 2015With a new project, Toyota is bringing power to the prairie and finding a way to reuse nickel-metal hydride batteries at the same time. The automaker recently completed assisting Yellowstone National Park's installation of a solar power station at the Lamar Buffalo Ranch to electrify the ranger station and education center there for the first time. Toyota's major part in the system is an array of 208 batteries that are repurposed from old Camry Hybrid sedans, and they can store 85 kilowatt-hours of energy at a time. That's as much as one 85-kWh battery pack from one top-of-the-line Tesla Model S. Toyota figures that the whole setup should generate enough annual electricity for six average US homes, which is plenty for the ranch. For a constant source of power, the site plans to install a micro-hydro turbine in a nearby stream in 2016. Prior to creating the wall of batteries to store all of this energy, Toyota disassembled and tested each one. It also installed a new management system on them to maximize their lifespan. You can get a better idea of what the whole system looks like in the automaker's video, below. This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings. Toyota Flips the Switch to Sustainable Power at Yellowstone National Park Lamar Buffalo Ranch Renewable, Zero Emission Energy System Is Now Online System Features 208 Re-used Camry Hybrid Batteries May 12, 2015 Torrance, Calif. (May 12, 2015) – The lights are on where the buffalo roam. At the Lamar Buffalo Ranch field campus in Yellowstone National Park, an innovative distributed energy system that combines solar power generation with re-used Camry Hybrid battery packs is now online. The result: reliable, sustainable, zero emission power to the ranger station and education center for the first time since it was founded in 1907. Announced in June 2014, the partnership among Toyota, Indy Power Systems, Sharp USA SolarWorld, Patriot Solar, National Park Service and Yellowstone Park Foundation is an innovative effort to extend the useful life of hybrid vehicle batteries while providing sustainable power generation for one of the most remote, pristine areas in the United States. Solar panels generate the renewable electricity stored within the 208 used Camry Hybrid nickel-metal hydride battery packs, recovered from Toyota dealers across the United States.
Toyota will bring Lexus-based Platform 3.0 autonomous vehicle to CES
Thu, Jan 4 2018The Toyota Research Institute says it will bring its next-generation Platform 3.0 automated driving vehicle to CES next week, an autonomous test car that is notable for incorporating the sensors and cameras into the body, rather than as ungainly attachments, and with the spinning LIDAR rooftop sensor replaced by a more sleek panel of sensors. Platform 3.0 is built on a Lexus LS600hL. Toyota Research Institute says it enlisted CALTY Design Research in Ann Arbor, Mich. and engineers at Toyota's nearby North America R&D center to conceal the equipment. As a result, Platform 3.0 gets a new rooftop weather and temperature proof panel, which it says was inspired by off-road motorcycle helmets, integrated into the available space in the sunroof compartment to minimize height. It's also embellished with chrome trim along the side, where it meets the roofline, and the rear swoops down to integrate with the LS's contour lines. The team also managed to consolidate computational electronics and wiring into a small box in the trunk. Toyota says the Platform 3.0 is one of the most perceptive autonomous test vehicles on the road today, with a design makes the test vehicle easy to build at scale. It gets a Luminar LIDAR system boasting a 200-meter, 360-degree range (the previous version only tracked the forward direction), enabled by four high-res LIDAR scanning heads that help it better see dark objects. Shorter-range LIDAR sensors feature low on all four sides of the vehicle, one on each front quarter panel and on the front and rear bumpers, to detect low-level and smaller objects, like children or road debris. Production begins this spring at the Toyota Motor North America R&D headquarters at low volumes to allow for flexibility, given the rapid rate of development of Toyota's autonomous test platforms. Some will be assembled using Toyota's Guardian dual-cockpit control layout to allow for transferring control between a human test driver and the automated system while keeping the driver as a backup, while the single-cockpit, fully autonomous Chauffeur mode will be shown at CES starting Jan. 9.Related Video: This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings. Least favorite vehicles of 2017
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