Wilwood Dynalite Rear Parking Brake Kit - Black - SRP Drilled & Slotted Rotor - Small Ford 2.50"
Wilwood Dynalite Rear Parking Brake Kit - Black - SRP Drilled & Slotted Rotor - Small Ford 2.50"
SKU:140-9282-D
In stock
Couldn't load pickup availability
The Wilwood Dynalite Rear Parking Brake Kit is a high-performance braking solution designed for muscle cars requiring reliable parking brake functionality. Featuring forged billet Dynalite four-piston calipers and 12.19-inch one-piece drilled and slotted rotors, this kit delivers optimized braking performance and superior static holding power. The high-friction pads ensure consistent stopping force, making it suitable for street, strip, and show applications. Its internal shoe system is neatly concealed, providing a clean installation and enhanced aesthetic appeal. Constructed with durable materials, this kit offers both performance and longevity for demanding driving conditions.
Designed to fit small Ford 2.50-inch rear axles, this rear disc brake kit is compatible with a range of muscle car models requiring a parking brake solution. It is ideal for custom builds, performance street cars, and show vehicles that demand a combination of style and function. The installation is a direct bolt-on upgrade, providing a complete solution with all necessary components included. Suitable for use in street and strip environments, this kit enhances braking performance while maintaining a clean, professional appearance.
Share
Overview
Overview
This group of FDL Pro-Series rear disc kits provides a complete solution for popular muscle car rear axles that require a parking brake. Forged billet Dynalite four piston calipers, 12.19" one-piece drum/rotors, and high friction pads provide optimized and balanced braking for all types of custom performance street/strip and show machines. The neatly hidden internal shoe system provides a clean installation with superior static holding power for parking. Optional caliper finishes and rotor designs enable the builder to personalize the style and optimize brake performance for every individual application.
Wilwood is a leading manufacturer of high-performance brake systems and components to fit a wide range of track and street applications. They offer everything from individual components like rotors, calipers, and pads to complete bolt-on kits.
Wilwood Engineering designs and manufactures high-performance disc brake systems. Since the company’s inception in 1977 by Bill Wood, we have developed a substantial matrix of brake components and engineering techniques that allow us to quickly and reliably create brake systems for almost any application. Our core ability is the rapid development of custom engineered brake systems using a combination of off-the-shelf and custom components. In addition to designing and manufacturing brakes for all types of competitive motorsports, Wilwood also manufactures brake systems and components for agricultural equipment, industrial applications, utility vehicles, snowmobiles, quads, motorcycles and military vehicles.
With headquarters in Camarillo, California, Wilwood employs approximately 320 people. We have on-shelf stock of more than 300 different brake calipers, 200 rotor designs, 100 master cylinder designs and a wide assortment of brackets, fittings, valves and brake lines. Our off-shelf brake calipers range in size from tiny calipers used on go-carts and light duty industrial equipment to heavy-duty original equipment brakes for the U.S. military Humvee.
Wilwood's engineering department uses the latest computer-aided design and manufacturing techniques in conjunction with finite element analysis, dynamic test and cycle test equipment to find high-performance and reliability solutions for the most difficult braking tasks. Our extensive inventory of proprietary on-the-shelf components allow us to provide cost-effective solutions for unique brake applications.
Wilwood is ISO 9000 compliant and has extensive experience maintaining quality levels of 100ppm or less for original equipment manufacturers.
Product Descripton: