Ferodo DS3000 Brake pad set DS3000 AUDI FORD SEAT SKODA VW

SKU: FCP590R
Regular price £310.00 inc. VAT
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Precision Engineering All of the pad back-plates are manufactured from high tensile steel meaning minimum distortion when subjected to the high clamping forces common in motorsport use. Pads are manufactured to maintain high tolerances on the pad and back-plate dimensions including flatness, parallelism and overall thickness. This results in rapid and uniform transmission of pressure from the brake system to the pads.
Thermal Under-layer, Unlike many competitive products all Ferodo Racing brake pads incorporate a thermal under-layer between the backing plate and the friction material. This reduces the brake caliper’s operating temperature by up to 80 deg C and significantly reduces the risk of boiling the brake fluid which causes a “spongy” feeling in the pedal.

Disc Friendly, Unlike many competitive products Ferodo pads are kind on brake discs. Ferodo pads are developed to optimize both the pad and disc life. Our philosophy is not to increase pad life with the casualty of excessive disc wear.
High Controllability All Ferodo Racing brake pads are engineered to perform with a relatively constant coefficient of friction (mu) across a wide range of temperatures, pressures and vehicle speeds. This results in a consistent brake feel for the driver meaning that the braking torque is a linear response to pedal pressure.

DS3000 is the FERODO RACING compound that has set the braking standard since 1998. It has contributed to countless wins and podium positions in many Touring car, rally & GT championships around the world. The main characteristics of DS3000 are:

  • Heavy duty all-round material choice
  • Short bedding time
  • Multiple applications including touring car, rally, Group N, single seat, hill-climb
  • Average friction coefficient 0.48 over the working temperature range of 200°-650°C
  • not street legal - only for racing purposes

Image Disclaimer. The images used on the website are for reference only and do not reflect the actual configuration of the product.