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  2. Jeep Wrangler (JK) - Wikipedia

    en.wikipedia.org/wiki/Jeep_Wrangler_(JK)

    Available as a two-door Wrangler or four-door Wrangler Unlimited, the Rubicon X is a version of Rubicon with electronic-locking front and rear Dana 44 axles, Rock-Trac transfer case with a "4-Low" ratio of 4:1, 4.10 front/rear axle ratio Tru-Lok locking differentials, six-speed manual transmission, BF Goodrich KM 255/75R17 tires, 17-inch ...

  3. Jeep four-wheel-drive systems - Wikipedia

    en.wikipedia.org/wiki/Jeep_four-wheel-drive_systems

    Active Drive Lock includes all the features of Active Drive II but adds "rock" mode to the Selec-terrain system and locking rear differential for better traction when used off-road. This four-wheel drive system combined with tow hooks, skid plates, and unique front and rear fascias allows the Jeep Cherokee Trailhawk models to obtain the "Trail ...

  4. Dana 44 - Wikipedia

    en.wikipedia.org/wiki/Dana_44

    The Dana 44 rear axle first saw use in the 1940s and is still in use today. The Dana 44 has a GAWR up to 3,500 lb (1,600 kg) and is a semi-floating type, having one bearing on the end of the axle shaft which carries the weight of the vehicle on the axle and also allows axle rotation.

  5. Dana 35 - Wikipedia

    en.wikipedia.org/wiki/Dana_35

    The Dana 35 (as well as the AMC-15) is used in many vehicles. The most common applications are as a rear axle in the Jeep Cherokee, Jeep Wrangler, and Jeep Comanche and as a front axle in the Ford Explorer and Ford Ranger. It is "reliable in day-to-day street use, but notoriously the opposite when worked hard." [2]

  6. GM 10.5-inch 14-bolt differential - Wikipedia

    en.wikipedia.org/wiki/GM_10.5-inch_14-bolt...

    The 10.5" 14-bolt differential and axle is quite popular with Jeep Wrangler owners who want to upgrade their standard Dana 30, Dana 35, or Dana 44 axle. While the 10.5" 14-bolt axle is heavier than the standard Dana axles offered on the Wrangler, it is much stronger.

  7. Torque vectoring - Wikipedia

    en.wikipedia.org/wiki/Torque_vectoring

    A torque vectoring differential requires an electronic monitoring system in addition to standard mechanical components. This electronic system tells the differential when and how to vary the torque. Due to the number of wheels that receive power, a front or rear wheel drive differential is less complex than an all-wheel drive differential.

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