1995 Jaguar Xjs on 2040-cars
Kenner, Louisiana, United States
Engine:6 cylinder
Vehicle Title:Clear
Fuel Type:Gasoline
For Sale By:Private Seller
Used
Year: 1995
Interior Color: Tan
Make: Jaguar
Number of Cylinders: 6
Model: XJS
Trim: Base Coupe 2-Door
Warranty: Vehicle does NOT have an existing warranty
Drive Type: rear wheel drive
Options: CD Player
Mileage: 198,000
Exterior Color: Burgundy
1995 Jaguar XJS convertible, 6 cylinder, 198,000 highway miles, paint in good condition, new tires, garage kept.
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Auto blog
Is Jaguar testing an electrified XE?
Sun, Mar 22 2015Rumors about Jaguar Land Rover moving further into electrification for its models have been circulating for the last several months. Thanks to some new spy shots, there's even more evidence that the company could have a hybrid or electric model on the way. According to our spies, this rather innocuous looking XE was spied with a group of camouflaged XF and F-Pace prototypes in Spain. Everything about the luxury sedan looks fairly stock until you see the rear end. There, just under the taillight, is a circular blue badge with an "E" in it. That emblem and the vehicle being with other test cars hints at the possibility of Jaguar doing something electrified with the vehicle. Unfortunately, there are no other clues here to determine exactly what is happening underneath the skin. Jaguar Land Rover has been insinuating its intention to build greener models for a while. The company even founded an engineering center partially for them in 2013. A fully electric powertrain is reportedly under development to slot into the F-Pace and maybe also for a Land Rover. Meanwhile, Jag has a trademark on the name EV-Type. With these new photos, the signs of JLR's coming electrification continue to mount.
Jaguar Land Rover and Cambridge have developed a touchless touchscreen
Thu, Jul 23 2020Jaguar Land Rover and the University of Cambridge are working on new touchscreen technology that eliminates the need to touch the screen. Counterintuitive, right? It’s called “predictive touch” for now, in part because the system is able to predict what you might be aiming for on the screen. The video at the top of this post is the best way to understand how users will interact with the tech, but weÂ’ll do some more explaining here. You simply reach out with your finger pointing toward the item on screen that you want to select. ItÂ’ll highlight the item and then select it. HereÂ’s how it works, according to the University of Cambridge: “The technology uses machine intelligence to determine the item the user intends to select on the screen early in the pointing task, speeding up the interaction. It uses a gesture tracker, including vision-based or radio frequency-based sensors, which are increasingly common in consumer electronics; contextual information such as user profile, interface design, environmental conditions; and data available from other sensors, such as an eye-gaze tracker, to infer the userÂ’s intent in real time.” Cambridge claims that lab tests showed a 50 percent reduction in both effort and time by the driver in using the screen, which would theoretically translate to more time looking at the road and less time jabbing away at the screen. If the prediction and machine learning tech is good enough, we could see this resulting in a reduced number of accidental inputs. However, on a certain level it almost sounds more difficult to point at a screen while moving than it does to actually touch a section of that screen. Without using the tech and its supposedly great predictive abilities, we canÂ’t come to any grand conclusions. One comparison you may already be thinking of is BMWÂ’s Gesture Controls. ItÂ’s already been addressed with a subtle diss from Cambridge: “Our technology has numerous advantages over more basic mid-air interaction techniques or conventional gesture recognition, because it supports intuitive interactions with legacy interface designs and doesnÂ’t require any learning on the part of the user,” said Dr Bashar Ahmad of the University of Cambridge. Of course, this tech can be used for much more than just vehicle touchscreen control. Cambridge says it could be integrated into ATMs, airport check-in kiosks, grocery store self checkouts and more.
Jaguar tests autonomous vehicle technology with 100-car fleet
Wed, Jul 13 2016Jaguar Land Rover is exploring how to take autonomous vehicle technology off the paved path. But the company has plans for technology on tarmac, too. The company announced that the Jaguar division will have a fleet of 100 cars testing autonomous technologies on public roads. The testing process will cover a period of four years and begin with vehicle-to-vehicle and vehicle-to-infrastructure communication systems, along with a stereo camera system and autonomous vehicle software. These systems will work together to provide a variety of features that could make their way into future Jaguars and Land Rovers. The first feature in development is called "Roadwork Assist." The system relies on the stereo camera to create a 3D image the car's software can analyze. The software can identify road cones and other barriers associated with construction sites. The car will then alert the driver about entering the construction zone and provide some steering assistance to keep the car centered in its lane. Tony Harper, Jaguar's head of research, said that this system can reduce stress on the driver, and the technology could eventually be used to allow the car to pilot itself through construction zones. Another of Jaguar's proposed features is "Safe Pullaway," which also relies on cameras and software. The Safe Pullaway feature is designed to prevent close-proximity collisions in traffic jams and even in the garage. To do this, the car watches the area immediately ahead of it for obstacles. If the car detects something nearby while the driver adds throttle or shifts into gear, it will apply the brakes to prevent driving into the object. The final project on Jaguar's plate is its "Over the Horizon Warning" system. This will be one of the first features to rely on Jaguar's vehicle-to-vehicle communication technology. The idea is that connected cars in constant communication will give drivers additional warning of upcoming hazards, such as out-of-sight animals and slowed or stopped cars. In Jaguar's example of a stopped car, the stationary vehicle would send a signal alerting approaching cars of the situation. In turn, the approaching vehicles would trigger audible and visual warnings to drivers about the hidden car. Jaguar says that the system could also be applied to emergency vehicles. Emergency vehicles would broadcast a signal to alert drivers well before the lights and sirens get their attention. This would give emergency vehicles a faster, safer path through traffic.
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