| Year | Make | Model |
|---|---|---|
| 2004 - 2024 | Chrysler | 300 |
| 2008 - 2026 | Dodge | Challenger |
| 2008 - 2026 | Dodge | Challenger SRT LC |
| 2005 - 2024 | Dodge | Charger |
| 2011 - 2024 | Dodge | Charger SRT II (LD) |
| 2004 - 2009 | Dodge | Magnum |
Brembo OE 05-10 Chrysler 300/12-20 300/08-20 Dodge Challenger/06-10 Charger Rear Disc Brake Kit
Brembo OE 05-10 Chrysler 300/12-20 300/08-20 Dodge Challenger/06-10 Charger Rear Disc Brake Kit
SKU:KT00511
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▶ Vehicle Fitments
Brembo OE KT00511 Fits Most Chrysler/Dodge (05-20) Brembo OE Prime Ceramic Front Disc Brake Kit 360mm. This Brembo OE Rear Disc Brake Kit delivers reliable, controlled stopping power with high carbon cast iron rotors featuring Pillar Venting Technology for superior cooling and durability. Prime Ceramic Brake Pads minimize noise, vibration, and dust, ensuring a quieter, cleaner ride. Designed for direct fitment on multiple Chrysler and Dodge models, it offers enhanced safety, comfort, and long-lasting performance for daily drivers and enthusiasts alike. Complete with all necessary hardware for a seamless upgrade.
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Overview
Overview
No matter what you drive, or how you drive it controlled stopping power, in all conditions is necessary. Brembo brake kits come with everything you need. Prime Ceramic Brake Pads minimize noise and vibration for maximum driving comfort. Also, reduced friction wear and low dust emission means aesthetically beautiful wheel rims and less maintenance. Brembo always uses the same material for its aftermarket disc production as used by the original manufacturer. High Carbon cast iron, compared to the standard materials used offers a higher damping coefficient that decreases vibration and noise, improves brake behavior and ensures better driving comfort and better heat conduction properties that allows faster transfer of heat from the braking surfaces to other surfaces shortening cooling times. For Xtra discs special alloy high carbon materials are produced and tested to have greater resistance to the thermo-mechanical stress to which the brake disc is subjected