2012 Mini Cooper S Roadster 1.6l Turbo 184hp, Navi-mini Yours-prem-1-tech Pkg's! on 2040-cars
Miami, Florida, United States
Vehicle Title:Clear
Fuel Type:Gasoline
For Sale By:Dealer
Transmission:Automatic
Model: Cooper S
Warranty: Vehicle has an existing warranty
Mileage: 7,678
Sub Model: S Roadster
Options: Leather
Exterior Color: Black
Interior Color: Lounge Satellite Grey
Number of Cylinders: 4
Doors: 2
Engine Description: 1.6L I4 Turbo
Mini Cooper for Sale
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Auto blog
BMW i1 EV rumored, based on electric Mini
Tue, Apr 10 2018With just two BMW i cars currently available — and aging — we've been hankering to know what new EVs are coming down the pipeline for the Bavarian automaker. We've had news of the iNext and i4, caught wind of an iX3, and as BMW is in the early stages of a large electrification push, there has been a multitude of "i"-prefaced trademarks registered. The next we can expect, if the rumors from Spanish outlet Motor.es are to be believed, will be a diminutive i1 EV, based on the same platform as an upcoming electric Mini Cooper. As such, it would share the electric Mini's front-drive/front-motor configuration — previewed on the Mini Electric Concept, shown above, that debuted at the Frankfurt Motor Show last year. It stands to reason that the i1 would be smaller than the high-roofed i3, possibly borrowing the five-door hatchback format from the 1 Series sold in Europe (which would be a long-awaited dream come true if it made its way to the United States). The electric car would be about a foot shorter than the 1 series, though, according to the report, at about 158 inches long. It would be built on an electric version of BMW modular UKL platform. Keep in mind, the BMW i1 is just a rumor at this point, with Motor.es keeping its sources unnamed. If true, though, it could replace the i3 in BMW's lineup five years from now, in 2023. Related Video: News Source: Motor.es via Motor1 Green Rumormill BMW MINI Hatchback Electric Future Vehicles bmw i mini ev mini cooper ev
BMW i3s traction control tech going in all BMW, Mini cars
Wed, Jan 3 2018The BMW i3s is essentially a warmed-up version of the i3 electric car we all know and love. The performance boost isn't huge — just 14 horsepower and 15 pound-feet of torque — but it also gets a new suspension, wheels and tires as well as an improved traction control system. We found the car to benefit from all the updates when we drove it for our First Drive Review, but now BMW has offered up more details on just how the traction control system of the i3s helps make it better to drive. The company says it'll expand the technology to all future BMW and Mini models as well. The i3s's system is calibrated to help it to pull away quickly from a stop, making full use of the instantaneous torque offered by the electric motor. It also improves stability when accelerating out of corners, when using regenerative braking and, of course, when the road conditions are less than ideal. The results are palpable, and with the other improvements the i3s definitely feels stronger off the line, as we found on our drive. It's also about a half-second quicker to 60 miles per hour, at 6.8 seconds. The secret is in the response time of the stability control, which BMW claims is 50 times faster than the conventional system. This is made possible by moving the control process into the powertrain itself, rather than a remote unit. This reduces the signal path and, thus, the response time of the traction control system. BMW's Head of Chassis Development, Peter Langen, said of it, "With their high levels of torque and instantaneous responses to every movement of the accelerator, electric motors already make significantly higher demands on driving stability systems than conventional power units." While engineered to make the most of the electric motor, BMW says the shorter cycles of this traction control system show promise for internal combustion vehicles as well. As such, we'll begin to see the improved technology applied across the BMW and Mini lineups going forward. Related Video:
Mini recalls nearly 100,000 cars for potential electrical fire risk
Fri, May 26 2023Mini is recalling more than 97,000 cars to address a potential fire risk. The recall covers the 2008-2014 Mini Clubman (including Cooper, Cooper S and John Cooper Works models) and the 2007-2013 Mini Hardtop 2 Door (again encompassing Cooper, Cooper S, John Cooper Works variants). In both models, a control module beneath the driver-side A-pillar is susceptible to water intrusion under certain circumstances. If the electronics inside are exposed to water, a short circuit may occur, which Mini says could lead to a "thermal event" — engineer speak for "fire." While Mini says there are multiple circumstances under which the module can become compromised, the recall is currently limited to models sold in climates where the use of road salt is prevalent. In this environment, road salt entering the cabin via normal means (read: your boots) can accelerate corrosion if water is getting into the cabin. How might that happen? Mini says a common culprit is its own sunroof drain. Here's the full explanation, lifted directly from Mini's defect report: This safety recall involves the Footwell Control Module (FRM), an Electronic Control Unit (ECU) which controls various lighting and power window functions, and is installed near the bottom of the driverÂ’s side A-pillar behind an interior trim panel. Due to several contributing factors (environmental, certain US StatesÂ’ wintertime road treatment, vehicle design configuration and age), over time, the FRM could become susceptible to corrosion. For vehicles equipped with a sunroof, after a multi-year period involving large temperature changes, multiple freeze/thaw cycles can cause the vehicleÂ’s sunroof drain hose to become damaged, loosen and eventually detach from the drain pipe within the A-pillar, which could allow water to enter the vehicle interior. In certain US states, large amounts of road salt may be utilized during their wintertime road treatment activities. If water were to enter the interior, then in combination with road salt that may be present in the footwell, this could create an electrolyte solution. If this solution were to contact the FRM then, over time, this could lead to corrosion, possibly resulting in a short circuit. In rare cases, this could lead to a thermal event.
