Description
The Wilwood D154 Rear Caliper Kit offers a high-performance, direct bolt-on solution designed for enthusiasts seeking reliable and low-maintenance braking performance. Engineered with forged billet aluminum bodies and stainless steel pistons, these calipers resist rust, bore pitting, and seal failures that often afflict OEM designs. The smaller rear piston size of 1.96 sq-inches ensures correct front-to-rear brake bias, providing optimal stopping power and control. This kit includes Wilwood’s high-temperature seals and hardened slide pins, making it suitable for both street driving and track use, withstanding demanding conditions without compromise. The calipers are compatible with most wheels that clear OE calipers and mount in the stock location over OE rotors, using original style pads and banjo bolt mounting hardware for ease of installation. The included BP-10 high friction pads enhance braking response and fade resistance, ensuring consistent performance. Whether upgrading for improved performance or restoring factory components, the Wilwood D154 rear caliper kit delivers dependable braking power with a weight-saving design that benefits vehicle handling and efficiency. Designed for a variety of custom applications, these calipers are an ideal choice for enthusiasts looking for durable, race-inspired components that blend seamlessly with stock setups.
Features:
- Forged billet aluminum caliper bodies resist corrosion and ensure durability
- Stainless steel pistons provide high-temperature resilience and longevity
- Smaller rear piston size (1.96 sq-inches) for optimal brake bias and balanced stopping power
- Includes high-temperature seals and hardened slide pins for low-maintenance performance
- Compatible with most wheels that clear OE calipers, mounting in stock location
- Comes with Wilwood’s BP-10 high friction brake pads for enhanced braking response
- Easy installation using original style pads and OE banjo bolt hardware
- Designed for street and track applications, offering reliable performance under demanding conditions


















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