1997 Toyota Camry Ce Sedan 4-door 2.2l on 2040-cars
Northridge, California, United States
Body Type:Sedan
Vehicle Title:Clear
Engine:2.2L 2164CC l4 GAS DOHC Naturally Aspirated
Fuel Type:GAS
Number of Cylinders: 4
Make: Toyota
Model: Camry
Trim: CE Sedan 4-Door
Drive Type: FWD
Number of Doors: 4
Mileage: 106,044
Savage Title From Arizona , with Indication on Title Reading Not Actual Mileage , It drives perfect , transmission and engine in perfect working condition. Run & Drive. Passed smog a week ago . Ready for a new Owner. If you have any questions, feel free to email me. ThanksToyota Camry black for sale
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Oh, Kei Go: Toyota set to enter JDM minicar market?
Fri, 01 Oct 2010Toyota is looking to get bigger... by going smaller. The Japanese automaker is looking to enter the kei car market, a popular segment in its homeland. Kei cars are small vehicles with restrictions on length (11.15 feet), width (4.86 feet), engine size (660 cubic centimeters) and power output (63 horsepower). Currently, Toyota is the only Japanese automaker not producing vehicles for this segment, but that is set to change, according to a report from The Wall Street Journal.
Thanks to its relationship with Daihatsu, Toyota can jump right into the kei car game. Daihatsu is one of the largest producer of kei vehicles and it is currently owned by Toyota.
Although kei cars are restricted in terms of size and power, they are not restricted by technology. Automakers utilize different drive configurations, powertrains and amenities to keep their cars fresh. Daihatsu and Toyota plan to work together to produce Toyota-branded kei cars. The two companies will utilize Toyota's knowledge of electric and hybrid systems to produce efficient little vehicles for the Japanese market.
Toyota's car subscription service rewards you for safe driving
Tue, Feb 5 2019Toyota has teamed up with Sumitomo Mitsui Auto Service Company to launch a new car subscription service with gamification elements in Japan. The program is called Kinto, and it'll offer two tiers: the first, called Kinto One, will allow you to drive one Toyota vehicle over a three-year period for anywhere between $420 and $900 a month. When the tier becomes available on March 1st, you can choose from the available Prius, Corolla Sport, Alphard, Vellfire and Crown models. The other tier called Kinto Select will give you the power to drive one of the available Lexus-branded vehicles for $1,630 a month for three years. Now, what truly makes Kinto potentially more interesting than other leasing services is a rewards program that awards points based on how well you drive. Toyota didn't really expound on how it will work, other than saying that it will "award points to customers based on their vehicle usage (such as for safe or ecological driving)." As TechCrunch notes, the assumption is that the vehicle's in-car connected system will come with the ability to monitor your driving. Best thing about it is that the points you earn aren't useless rewards you can't even use: you'll be able to apply them toward payments. Kinto's Select option will be available starting on February 6th, almost a full month before the more affordable Kinto One launches. Both will be available via select dealers in Tokyo on a trial basis, and they won't officially roll out across Japan until summer. The points program won't be available until fall, when Kinto One's options will also expand. Unfortunately, there's no word on whether Kinto will eventually roll out in the US and other markets outside Toyota's home nation.For more information on Vehicle Subscription Services, check out the Complete Guide.Reporting by Mariella Moon for Engadget.Related Video: This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings.
Toyota claims hydrogen fuel cell breakthrough
Tue, May 19 2015Platinum isn't cheap. And it's a necessary component of hydrogen fuel-cell technology. Which means that Toyota's recent discovery of a way to better analyze how platinum breaks down is a bit of an H2 vehicle breakthrough. Toyota worked with the Japan Fine Ceramics Center (JFCC) to observe nanometer-sized platinum particles and, specifically, how they deteriorate. Platinum is used as a catalyst for when electrons are stripped away from the hydrogen molecule to create an electrical charge and when hydrogen ions and electrons mix with oxygen to create water vapor. So, when platinum gets more course during the countless chemical reactions inside of fuel cells, things slow down. Now that Toyota says it's figured out a better way to observe this process, greater efficiency and durability within the fuel-cell process of electricity production are likely to follow, though more chemistry study will be needed to figure out how that will work. Still, it's topical because Toyota last year started producing the world's first production hydrogen fuel-cell vehicle. The Japanese automaker debuted sales of the Mirai fuel-cell vehicle in Japan late last year and plans to start selling the car in California this fall (the car will be priced at $57,500). Toyota also plans to boost Mirai production to about 2,000 units in 2016 from about 700 this year. Take a look at Toyota's documents and video below. R&D Breakthrough Sets Stage for More Efficient, Durable Fuel Cell Stacks Toyota City, Japan, May 18, 2015—A breakthrough in the real-time observation of fuel cell catalyst degradation could lead to a new generation of more efficient and durable fuel cell stacks. Toyota Motor Corporation and Japan Fine Ceramics Center (JFCC) have developed a new observation technique that allows researchers to monitor the behavior of nanometer-sized particles of platinum during chemical reactions in fuel cells, so that the processes leading to reduced catalytic reactivity can be observed. Platinum is an essential catalyst for the electricity-producing chemical reactions occurring between oxygen and hydrogen in fuel cell stacks. Reduced reactivity is the result of "coarsening" of platinum nanoparticles—a process whereby the nanoparticles increase in size and decrease in surface area. Up until now, however, it has not been possible to observe the processes leading to coarsening, making it difficult to analyze the root causes.



