
Rear Ceramic Brake Pads w/ Hardware for Subaru Ascent Crosstrek Forester Legacy
FIT:
| MAKE | MODEL | YEAR RANGE | SPECIFIC DETAILS |
| SUBARU | ASCENT | 2019 - 2024 | All Models |
| SUBARU | CROSSTREK | 2019 - 2023 | With Electric Parking Brake |
| SUBARU | CROSSTREK | 2024 - 2025 | All Models |
| SUBARU | FORESTER | 2019 - 2025 | All Models |
| SUBARU | LEGACY | 2015 - 2025 | All Models |
| SUBARU | OUTBACK | 2015 - 2025 | All Models |
| SUBARU | WRX | 2016 - 2021 | With Eyesight Package (Steering Responsive Fog Lights) |
| SUBARU | WRX | 2022 | with Electric Parking Brake |
***Confirm Your Vehicle with Year, Make, Model, Trim, Engine in eBay Compatibility Table***Features:
Enhanced Stopping Power: Enjoy improved braking performance and shorter stopping distances with our premium brake rotors and ceramic brake pads.
Durable Construction: Constructed from high-quality materials for long-lasting durability and resistance to brake fade, ensuring reliable performance mile after mile.
Smooth and Quiet Operation: Ceramic brake pads offer smooth and quiet braking, reducing noise and vibration for a more comfortable driving experience.
Precision Engineering: Each brake rotor is precision-machined for a perfect fit and optimal performance, minimizing brake noise and vibration.
Easy Installation: Install the brake rotors and ceramic brake pads kit with ease using basic tools, saving time and hassle compared to complicated installations.Brake Pads:
Direct fit and made from high quality materials to meet OEM specifications.
Ceramic brake pads produce less noise and dust than metallic pads.
Ceramic friction formulas provide excellent stopping power hot or cold.
Please Note:
1.Disc brake pads are essential to your vehicle’s braking system. Over time, brake pads become thinner from frequent use. Worn down brake pads can cause damage to your brake rotors and lead to a loss in your vehicle’s stopping power, putting you at risk.
2.Rotors and brake pads should always be replaced in pairs (Passenger and Driver). This reduces the overall time required to replace multiple parts at different times.

