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1C4BJWCG4HL686670
Vehicle Summary
The 2017 Jeep Wrangler Rubicon is a robust multipurpose passenger vehicle featuring a 3.6-liter V6 engine with 285 horsepower, perfect for both on and off-road adventures. It offers standard safety features like Dynamic Brake Support and an Anti-lock Braking System. With a top speed of 110 MPH, this left-hand drive 4WD SUV is designed for those seeking a balance of power and capability. Manufactured by FCA US LLC in Toledo, Ohio, it combines rugged design with modern amenities, including traction control and electronic stability control.
Complete Specifications
Common Issues for This Vehicle
Brake fluid leaks
Leaks in the hydraulic brake system can lead to reduced braking efficiency and increased stopping distances.
Worn brake pads
Over time, brake pads wear down and need to be replaced to ensure proper braking performance.
Brake rotor issues
Warped or worn brake rotors can cause vibrations and reduced braking effectiveness.
Hydraulic system air bubbles
Air in the hydraulic brake lines can lead to a spongy brake pedal and decreased braking power.
Dbs malfunction
Issues with the Dynamic Brake Support system can result in delayed or insufficient braking assistance during rapid braking.
Engine misfires
Issues with the V-shaped, 6-cylinder engine such as faulty spark plugs or ignition coils can cause misfires, leading to reduced performance and fuel efficiency.
Oil leaks
Common with FCA engines, oil leaks can occur from various seals and gaskets, leading to potential engine damage if not addressed.
Coolant leaks
Leaks in the cooling system can cause the engine to overheat, potentially leading to severe engine damage.
Timing chain/belt issues
Problems with the timing chain or belt can lead to engine misfires, poor performance, and in severe cases, engine failure.
Fuel system problems
Issues such as clogged fuel injectors or a failing fuel pump can lead to poor engine performance and stalling.
Exhaust manifold cracks
These can cause exhaust leaks, leading to increased engine noise, reduced efficiency, and potential emission failures.
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