Description
The Wilwood 11.25 x 0.25 inch Snap Ring Drilled Steel Rotor (Part Number 160-16979) is designed for high-performance automotive braking systems. Crafted from durable steel, this rotor features precision-drilled holes for enhanced heat dissipation and improved braking response. Its 8 on 7.18-inch bolt pattern ensures compatibility with a range of vehicle makes and models, making it an excellent choice for both street and track applications. The inclusion of a snap ring design simplifies installation and maintenance, reducing downtime and labor costs. This rotor is ideal for enthusiasts seeking reliable, high-quality braking components to upgrade their vehicle’s stopping power.
Built to rigorous standards, the Wilwood steel rotor offers excellent resistance to warping and cracking under demanding conditions. Its drilled design not only aids in heat management but also helps reduce brake fade during prolonged or aggressive braking. Suitable for various automotive setups, this rotor is a versatile upgrade that enhances overall braking performance. Whether for a custom build or replacement part, this rotor ensures consistent and dependable operation, contributing to safer driving experiences.
Please note that this product is not CARB approved and is not intended for air freight. It is available for regular stock, ensuring quick delivery for your repair or upgrade needs. Trust Wilwood’s reputation for quality and performance with this robust drilled steel rotor, built to meet the demands of serious drivers and automotive enthusiasts alike.
Features:
- Diameter: 11.25 inches for effective stopping power
- Thickness: 0.25 inch for durability and heat resistance
- Bolt Pattern: 8 on 7.18 inches designed for compatibility
- Drilled Holes: Enhance heat dissipation and reduce brake fade
- Snap Ring Design: Facilitates easy installation and maintenance
- Material: Steel for strength and longevity
- Application: Suitable for high-performance automotive braking systems

















Reviews
There are no reviews yet.