1995 Suzuki Samurai Jl Sport Utility 2-door 1.3l on 2040-cars
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Chip shortage will hit Nissan, Suzuki and Mitsubishi in June
Sat, May 22 2021TOKYO — A global chip shortage is forcing Nissan and Suzuki to temporarily halt production at some plants in June, sources with direct knowledge of the plans told Reuters on Friday. Nissan will idle its factory in Kyushu, southern Japan, for three days on June 24, 25 and 28, while making production adjustments during the month at its Tochigi and Oppama plants in Japan, three sources said. Nissan will also temporarily halt production of some of its models at its Mexico plant, they said, declining to be identified because the plan is not public. "A global shortage of semiconductors has affected parts procurement in the auto sector. Due to the shortage, Nissan is adjusting production and taking necessary actions to ensure recovery," a Nissan spokeswoman said. Suzuki will idle its three plants in Shizuoka prefecture from three to nine days, two sources said, also declining to be identified because the plan is not public. The plan "has not been confirmed," a Suzuki spokesman said, explaining that while the carmaker gave its provisional production plan to auto part makers, it is still making adjustments to minimize the impact of the chip shortage. Elsewhere, Mitsubishi will reduce production by 30,000 vehicles in total in June at five plants in Japan, Thailand and Indonesia, a spokeswoman said, adding that the impact has already been factored into its earnings outlook for the current fiscal year. Related video: This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings. Plants/Manufacturing Mitsubishi Nissan Suzuki
Junkyard Gem: 1997 Geo Metro LSi
Mon, Apr 22 2024General Motors created the Geo brand in order to sell cars built in partnership with Suzuki, Isuzu and Toyota in the United States, and Geo-badged machinery was sold from the 1989 through 1997 model years. Today's Junkyard Gem, found in a New Orleans self-service boneyard recently, is one of the very last Geos ever built. There was always a close relationship between Geo and Chevrolet, which GM demonstrated by sneaking the Chevrolet bowtie into the Geo logo. The first three Geo-branded models began their careers with Chevrolet badging before getting Geo-ized for 1989. The Spectrum, twin to the Isuzu I-Mark, was a Chevrolet from 1985 through 1988. The 1985-1988 Chevrolet Sprint was a badge-engineered first-generation Suzuki Cultus, with its second-generation successor becoming the Geo Metro. The Prizm was a NUMMI-built Toyota Corolla Sprinter, which replaced the Sprinter-based 1985-1987 Chevrolet Nova. The Daewoo-built Pontiac LeMans never became a Geo, presumably because its ancestry was South Korean rather than Japanese. In 1989, Geo added the Storm (Isuzu Impulse), followed by the Tracker (Suzuki Sidekick) as a 1990 model. In December 1996, GM announced that the Geo brand would get the axe in the fall of 1997, with the Prizm, Tracker and Metro becoming Chevrolets. This car was built at CAMI Automotive in Canada in May 1997, making it one of the final handful of Geos assembled. The Chevrolet Metro stuck around through 2001. For its final model year, the Geo Metro was available with one of two trim levels: base and LSi. This car is an LSi three-door hatchback, which had an MSRP of $9,180 ($17,906 in 2024 dollars). The base three-door hatchback for 1997 listed at $8,580, or $16,735 after inflation. The most important difference between the base and LSi versions was found under the hood. The base Metro got a 1.0-liter three-cylinder engine rated at 55 horsepower and 58 pound-feet, while the LSi got the 1.3-liter "big-block" four-cylinder with 70 horses and 74 pound-feet. I owned a '96 Metro with the four-banger for a brief period, and it wasn't quite intolerably slow. This car has the optional three-speed automatic, which added $595 ($1,161 today) to the price. It also has air conditioning and a Delco AM/FM radio, which were included as part of the $1,346 1SE option package ($2,625 in today's money). It was thus a boring but serviceable commuter car that sipped gas and got its job done for 27 years and 113,610 miles.
Funning around with ZF's Smart, Advanced Urban Vehicles
Fri, Aug 28 2015ZF has a lot of experience building various electric vehicle parts, including transmissions, but it doesn't put them all together into one cute little package that often. The ZF Advanced Urban Vehicle changes that, and shows what the company can do when it takes bits and pieces of its admittedly cool tech and throws them all into the shell of an old Suzuki Swift. We got to control the all-electric beast at an event in Germany this summer, using nothing but a connected iPad. There were three headline technologies on the AUV (also called the Smart Urban Vehicle): the remote control Smart Parking Assist function, the all-electric rear-axle drive electric Twist Beam (eTB), and the PreVision Cloud Assist. PreVision Cloud Assist ZF had a short track set up for us to try out the PreVision Cloud Assist. The first time around the track, nothing was different. It's not supposed to be. The trick with Cloud Assist is that the car saves real-world driver interactions into its memory and, with the addition of GPS coordinates, starts to learn how to drive the route. Go to work the same way every day? If you're being assisted by a cloud, then all you have to do is steer. The car learns how fast it can take a turn and when it needs to slow down, with the idea here is to let the car move when it can, increasing the efficiency and range of an EV. You're still in charge in case of traffic ahead, but in open road circumstances, you won't need to touch the brakes or the gas. Just the steering wheel. On my second time around the demo track (which had data from other drivers who had tested the car earlier in the day), I kept my feet off the pedals, and the darn thing worked. It slowed me down when necessary to make a curve, but kept me at a brisk pace that felt a bit too fast but was in fact totally appropriate. Electric Twist Beam There's another bit of cool tech hidden near the front wheels. The car uses a MacPherson strut that was modified to offer a wider steering angle, up to 75 degrees, to be exact. ZF calls this the electric Twist Beam (eTB), and it gives the car an incredibly tight turning radius, about 6.5 meters. An axle like this could go into an EV or an ICE vehicle, but it makes a lot of sense in an electric car since it does have a major problem: it can't be powered. No worries, thought ZF engineers, who made the little SUV rear-wheel-drive by adding two electric motors.