2011 Toyota Tundra Sr5 Extended Crew Cab Pickup 4-door 5.7l on 2040-cars
Fresno, California, United States
For Sale By:Private Seller
Transmission:Automatic
Body Type:Extended Crew Cab Pickup
Engine:5.7L 5663CC 345Cu. In. V8 GAS DOHC Naturally Aspirated
Vehicle Title:Clear
Options: 4-Wheel Drive, CD Player
Model: Tundra
Safety Features: Anti-Lock Brakes, Driver Airbag, Passenger Airbag, Side Airbags
Mileage: 57,915
Power Options: Air Conditioning, Cruise Control, Power Locks, Power Windows, Power Seats
Sub Model: Crewmax TRD SR5
Exterior Color: White
Interior Color: Black
Warranty: Vehicle has an existing warranty
Number of Cylinders: 8
Year: 2011
Trim: SR5 Crew Cab Pickup 4-Door
Drive Type: 4WD
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Auto Services in California
Zoe Design Inc ★★★★★
Zee`s Smog Test Only Station ★★★★★
World Class Collision Ctr ★★★★★
WOOPY`S Auto Parts ★★★★★
William Michael Automotive ★★★★★
Will Tiesiera Ford Inc ★★★★★
Auto blog
Submit your questions for Autoblog Podcast #317 LIVE!
Tue, 22 Jan 2013We record Autoblog Podcast #317 tonight, and you can drop us your questions and comments regarding the rest of the week's news via our Q&A module below. Subscribe to the Autoblog Podcast in iTunes if you haven't already done so, and if you want to take it all in live, tune in to our UStream (audio only) channel at 10:00 PM Eastern tonight.
Discussion Topics for Autoblog Podcast Episode #317
Mitsubishi Mirage
Toyota and Lexus show off advanced safety research vehicle [w/video]
Tue, 08 Jan 2013While Google and Audi explore the possibilities of autonomous vehicles, Toyota and its Lexus division are studying the intermediate step of vehicles equipped with a deep suite of technology that help drivers make the best decisions. Introduced at this week's Consumer Electronics Show in Las Vegas, the Lexus advanced safety research vehicle is an LS sedan fitted with three high-def color cameras to detect objects up to almost 500 feet away, 360-degree Light Detection and Ranging (LIDAR) lasers that can detect objects up to 220 feet away, three radar units to keep track of other vehicles at intersections, a precision odometer on the rear wheel, GPS that estimates orientation and an accelerometer.
Currently testing at a purpose-built 8.6 acre urban testing ground at the Higashi-Fuji Technical Center in Susono, Japan the Toyota research vehicle is being used to study how to make better drivers, as well as figuring out how to reduce crashes as the industry's journey through passive and active safety systems progresses. In the event of a crash, new rescue systems are also being tested.
Further investment is being put into the Intelligent Transportation System (ITS) that would use shortwave signals to harness information from the car and from other vehicles on the road, as well as roadside infrastructure and even pedestrians. Toyota reasons it could then build a picture of interactions and, for instance, alert the driver to a potential collision at a blind intersection.
Toyota drops detail about 414-hp Hybrid-R concept powertrain
Fri, 30 Aug 2013The Toyota Yaris Hybrid-R Concept has been teased already, offering up little glimpses and details of the Frankfurt-bound vehicle. And while those few, shadowy shots have been great, we've really wanted to know how this hatchback would deliver its promised 400-plus horsepower. Under hood sits a 1.6-liter, race-derived, direct-injection, turbocharged four-cylinder that powers the front wheels. Sounds peachy, but with 414 horsepower splashed across the page, we're going to need something more than a 1.6-liter, turbo four.
A supercapacitor, developed from the Toyota TS030 Hybrid Le Mans racer sits in place of a hybrid's traditional battery packs. The benefit, according to Toyota, is that power can be more rapidly absorbed and discharged than in a traditional battery system, like nickel metal-hydride.
The gas engine is joined by a trio of 60-horsepower electric motors. Two of the them power the rear wheels, while the third sits between the engine and the six-speed, sequential gearbox. Developing the same amount of power as the rear-axle motors, this centrally located motor channels power to the race-derived supercapacitor during braking, and ships extra grunt to the rear wheels under acceleration when the front wheels start to lose grip. Besides the distributive power of the central motor, the rear electric motors can adjust the amount of torque flowing to each wheel, much like a differential.