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Chip maker Nvidia adds Volvo to list of self-driving partners
Tue, Jun 27 2017Chipmaker Nvidia Corp announced on Monday it was partnering with Volvo Cars and Swedish auto supplier Autoliv to develop self-driving car technology for vehicles due to hit the market by 2021. Volvo is owned by China's Geely Automobile Holdings. Silicon Valley-based Nvidia also announced a non-exclusive partnership with German automotive suppliers ZF and Hella for artificial intelligence technology for autonomous driving. Nvidia came to prominence in the gaming industry for designing graphics processing chips, but in recent years has been a key player in the automotive sector for providing the so-called "brain" of the autonomous vehicle. The company, whose many partners already include Tesla, Toyota, Ford, Audi, BMW, and tier one supplier Robert Bosch, announced its latest deals at an automotive electronics show in Ludwigsburg, Germany. Nvidia's Drive PX artificial intelligence platform is used by Tesla in its Models S and X and upcoming Model 3 electric vehicles. Volkswagen AG's Audi is also using the system to reach full autonomous driving by 2020. In a call with reporters, Nvidia's senior automotive director Danny Shapiro said carmakers and their main suppliers are now moving away from the research and development phase of autonomous vehicles and into concrete production plans. The system developed jointly by ZF and Hella, and using Nvidia's Drive PX platform, will combine front cameras with radar and software to create technology meeting the Euro NCAP safety certification for so-called "Level 3" driving, in which some, but not all, driving is performed by the car. Volvo is already using the Drive PX for the self-driving cars in its "Drive Me" autonomous pilot program. Volvo's production vehicles built on Nvidia's platform, as announced on Monday, are planned for sale by 2021.Reporting By Alexandria SageRelated Video: Auto News Green Tesla Toyota Volvo Technology Emerging Technologies Autonomous Vehicles nvidia autoliv
Mazda's new Mexican plant capacity rises to 230,000
Sat, 05 Jan 2013After the turmoil of last year, 2013 is getting off to a much better start for Mazda. The company has issued a release indicating that the forthcoming plant in Salamanca, Mexico has had its production capacity raised even though it isn't scheduled to go online until March 2014. The original plans called for a 140,000-unit capacity, 90,000 of that allotted for the Mazda2 and Mazda3, the remaining 50,000 for a small car Mazda would build for Toyota that would be based on the Mazda2. The new plans call for raising that by 90,000 units to a total of 230,000 units within two years, by the end of March 2016, and it looks like it will all go toward Mazda production to satisfy growing demand for Skyactiv vehciles. The Mexican plant's opening will be the return of Mazda manufacturing to North America, after Mazda6 production was moved back to Japan last year.
More good news for the company is that it projects 10 billion yen ($114 million) in net income for the financial year that will end in March. That would be a welcome turnaround from the 100-billion-yen loss in the previous financial year, part of a series of three annual losses in a four-year span.
You'll find the press release with the factory update below.
Toyota to buck engine downsizing trend, may go larger and turbo-free
Mon, 14 Oct 2013Turbocharging isn't really Toyota's specialty, and the Japanese automaker isn't being shy about acknowledging it. Koei Saga, a senior managing officer in charge of drivetrain research and development, says that eschewing turbos and increasing displacement of engines using the Atkinson cycle can produce better power gains without sacrificing fuel economy, Automotive News reports.
Toyota is investing heavily in larger-displacement Atkinson-cycle engines in addition to turbocharged engines, but Saga doesn't think the automaker will use turbocharging across many product lines. He apparently remains unconvinced that the technology "makes the world better."
In Toyota's eyes then, Atkinson cycle engines do make the world better, and here's how. Their pistons complete four processes - intake, compression, power and exhaust - in one revolution of the crankshaft, and the power stroke is longer than the compression stroke. Traditional Otto cycle engines require two crankshaft revolutions to accomplish those same four operations and have equal-length compression and power strokes. Atkinson cycle engines are more efficient, but less power dense, though increasing displacement can offset that shortfall.

























