Wilwood MC4 Driver Side Brake Caliper with Black Finish and 14-Inch Rotor
The Wilwood MC4 Brake Caliper, designed for driver side installation, offers reliable performance for high-demand braking applications. Constructed from durable aluminum and finished with a corrosion-resistant black anodized coating, this caliper ensures longevity and consistent operation under rigorous conditions. It features a mechanical actuation system suitable for various vehicle setups, providing precise control during braking. The caliper is compatible with a 14-inch diameter rotor and has a floating mount measuring 4.750 inches, facilitating proper alignment and efficient heat dissipation. Suitable for custom builds, racing, or heavy-duty applications, this caliper enhances braking response and durability.
Installation is straightforward with the floating mount design, which allows for thermal expansion and reduces stress on mounting points. The aluminum construction keeps the weight low without sacrificing strength, contributing to improved vehicle handling and reduced unsprung weight. The black anodized finish not only adds a sleek aesthetic but also provides additional resistance against corrosion and environmental wear. This caliper is designed to meet the demanding needs of performance vehicles, ensuring reliable braking performance over time.
Ideal for enthusiasts and professionals seeking a high-quality braking component, the Wilwood MC4 caliper is a versatile choice that combines durability, performance, and ease of installation. Whether upgrading an existing brake system or building a custom setup, this caliper provides the performance and reliability required for demanding driving situations.
Features:
- Mechanical actuation system for precise braking control
- Constructed from lightweight aluminum for reduced unsprung weight
- Black anodized finish provides corrosion resistance and aesthetic appeal
- Compatible with 14-inch diameter rotors for high-performance braking
- Floating mount measures 4.750 inches for optimal alignment and heat dissipation