2014 Cadillac Srx Base on 2040-cars
2820 Gilbert Ave., Cincinnati, Ohio, United States
Engine:3.6L V6 24V GDI DOHC
Transmission:6-Speed Automatic
VIN (Vehicle Identification Number): 3GYFNAE32ES653167
Stock Num: ES653167
Make: Cadillac
Model: SRX Base
Year: 2014
Exterior Color: Radiant Silver Metallic
Interior Color: Light Titanium
Options: Drive Type: FWD
Number of Doors: 4 Doors
Mileage: 6
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Auto blog
Cadillac ATS Coupe headed for Detroit reveal
Mon, 25 Nov 2013Cadillac wouldn't be Cadillac without its two-door models. But the XLR has been discontinued for over four years now, the Elmiraj concept may never see production and the future of the CTS Coupe is still up in the air. That leaves just the ELR, which may not be conventional enough for traditional Cadillac coupe buyers. Fortunately a new coupe is coming along to fill the void.
According to Edmunds, Cadillac will reveal the new ATS coupe just a couple of months from now at the Detroit Auto Show. Expected to mechanically mirror the existing ATS sedan, the new coupe will also more conventionally resemble its four-door counterpart than the CTS, whose coupe version was distinguished by a rakishly sloping roofline.
Expect the same choice of engines to carry over, with a 2.5-liter four serving as the base engine, and both a 2.0-liter turbo four and a 3.6-liter V6 offering more power for those looking for that extra bit of oomph. Following the Detroit reveal, sources anticipate the ATS coupe to go on sale next summer.
How Cadillac improved power output in 2016 ELR by 25 percent
Tue, Jun 2 2015Earlier this year, Cadillac announced that the 2016 ELR would come with a big price drop and a powertrain that packs 25 percent more power output. That's a lot more oomph, but it didn't sound like the Caddy engineers made any major changes to the engine or motors. So, what happened? Let's refresh our memories with the numeric details. The 2016 car is 1.5 seconds quicker to 60 miles per hour than the 2014 model (there was no 2015), down to 6.4 seconds. The 2014 put out 295 pound-feet of torque. For 2016, it will be 373 lb-ft. The specific breakdown of the various components in the powertrain has not been disclosed, but from what we can tell, the two electric motors and the 1.4-liter inline-four engine in the new ELR are not that much different than those in the old one. Sam Abuelsamid, senior research analyst at Navigant Research (and former writer here at Autoblog) said that any of the unspecified upgrades would be difficult to tell on a part-by-part basis, but the overall effect will be noticeable. "The changes to the ELR as I understand them are analogous to getting more performance out of a 1965 Mustang with the entry version of the 289 cubic-inch V8. You can replace the carburetor with a larger version that enables more air and fuel to flow into the engine, thus producing more power. The basic engine hasn't changed, but power capability is being unleashed by feeding it more." "Cadillac has changed components in the power electronics to enable more current flow into the motor and thus produce more torque. When you do this in the Mustang, you probably need to replace the rear axle gears and use a beefier clutch to transmit the power to the wheels. Similarly, the ELR probably has some upgraded clutches, bearings, and gears to withstand the increased total output." Cadillac spokesperson David Caldwell told AutoblogGreen in an email that the new ELR does indeed have more than just new lines of code. "One could not 'reflash' a previous ELR to get the performance of a 2016," Caldwell said. "If one only changed software you would not get the performance upgrade fully, as the 2016 creates higher current, more power. So these have been upgraded physically – hardware.
MIT puts V2V technology on its 2015 Top Ten list
Thu, Mar 5 2015Of all the technologies swimming around the automotive world, it is vehicle-to-vehicle communication that the Massachusetts Institute of Technology has fished out as one of its Ten Breakthrough Technologies of 2015. It joined emerging tech like brain organoids, supercharged photosynthesis, and Project Loon on the list, and got the nod over autonomous driving because, as the MIT Technology Review wrote, V2V communication "is likely to have a far bigger and more immediate effect on road safety." How so? Because actual cars transmitting data like their location, speed, steering angle, and state of braking to one another at least ten times per second provides a greater degree of awareness than sensor readings and algorithms. The US Department of Transportation and the National Highway Traffic Safety Administration have been working for years on standards and a regulatory schedule for introducing V2V to the marketplace, and Cadillac plans to incorporate V2V into at least one of its vehicles by 2017. Since we've begun the year with a number of stories of cars being hacked into, that got us wondering about the security of V2V communications. In a recent piece by our own Pete Bigelow on what motorists should know about getting their cars hacked into, he wrote that although cyber break-ins are extremely difficult, expensive, and time-consuming to do remotely, V2V is "one more conceivable avenue a hacker could use to impact multiple cars at a given time." So we spoke to Wilmington, Massachusetts-based Security Innovation about it. The automotive consultancy company has been working with the DOT since 2003 on V2V technology and the issues around it - namely security and privacy - and its chief scientist, William Whyte, is the technical editor of the Institute of Electrical and Electronics Engineers (IEEE) 1609.2 standard outlining its security protocols. Those protocols are expected to be finalized by the DOT toward the end of this year and then come into effect in 2016, and the company's Aerolink product is the security solution Cadillac will use. Whyte said, "If you hack into a car, V2V is the hardest place to start," and Pete Samson, the general manager of Security Innovation's automotive team, said "There are ten or 12 alternate attack surfaces" around the car that would make much easier targets.