Product Description EBC's BSD rotors feature a 'V' pattern which improves heat dispersion and helps the pads run cooler on average over OE style rotors. BSD rotors are a perfect addition to any vehicle looking to add performance and style to any vehicle. Other Details MPN: BSD1846 Proposition 65: N
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged Premium Rear Rotors - RK1846 MSRP: $199.51 Was: Now: $189.54 EBC Ultimax Slotted Rotors offer you the performance of slotted rotors but without the air noise tha…
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged GD Sport Rear Rotors - GD1846 MSRP: $337.63 Was: Now: $320.74 All EBC rotors are made from OE spec grey cast iron, exactly as used on new car production and as ma…
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged USR Slotted Rear Rotors - USR1846 MSRP: $337.63 Was: Now: $320.74 Choose from EBC plain non drilled rotors or sport rotors in two choices - wide aperture 3GD series f…
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged GD Sport Front Rotors - GD1845 MSRP: $505.11 Was: Now: $479.86 All EBC rotors are made from OE spec grey cast iron, exactly as used on new car production and as ma…
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged USR Slotted Front Rotors - USR1845 MSRP: $505.11 Was: Now: $479.86 Choose from EBC plain non drilled rotors or sport rotors in two choices - wide aperture 3GD series f…
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged Yellowstuff Front Brake Pads - DP42086R MSRP: $226.84 Was: Now: $215.50 EBC Yellowstuff is an aramid fibre based brake compound with high brake effect form cold and is poss…
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged Redstuff Front Brake Pads - DP32086C MSRP: $226.84 Was: Now: $215.50 There are TWO reasons our customers love Redstuff, First because they are the lowest dust pad we hav…
EBC Add to Cart EBC 12+ Audi A6 Quattro 3.0 Supercharged Greenstuff Front Brake Pads - DP22086 MSRP: $204.15 Was: Now: $193.95 Designed for premium street driving offering better brake effect up to 600-degrees C (1100-degrees F…