Brand: Hawk Performance Products
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FMSI D1029. This special set of 8 brake pads fits 2 calipers (1 axle set). Each caliper takes 4 identical pads, 2 on each side of the rotor.
Fits:
2003-04 Audi RS6
2007-08 Audi RS4
2013-15 Audi RS5
2013-15 Audi R8
2003-05 Lamborghini Gallardo
2002-03 VW Phaeton
Brembo G caliper family
Rotora FC8 and RF801 calipers
Blue (E): Also known as Blue 9012 (the original Blue compound). Medium/High torque racing compound with medium initial bite. The wide temperature range and good brake modulation have made it the #1 pad material for SCCA. Recommended for Production, IT, F2000, Formula Ford, S2000, CSR, and DSR. 250-1000° F (350-800° F optimal).
Performance Ceramic (Z): Street pad engineered for luxury cars where low noise is most important. Despite the reduction in noise and dust, this compound out-brakes and outlasts many OEM pads. For use with iron rotors only (not for use with ceramic or carbon/ceramic discs).
DTC-60 (G): Very high torque racing compound with high initial bite. DTC-60 was developed as a rear pad to be used with DTC-70 on the front, but it has also become popular as a front pad on lighter cars. Available only for a limited selection of popular racing calipers. Recommended for Trans-Am, GT1, CART, Formula Atlantic, F2000, F3000, and Sports Prototypes. 400-1600° F (700-1100° F optimal).
DTC-70 (U): Extremely high torque racing compound with very high initial bite. Designed to be the most controllable racing brake pad available. Intended for heavier sedans and formula cars with lots of tire and downforce. This compound works best when very hot. Available only for a limited selection of popular racing calipers. Recommended for Trans-Am, GT1, CART, Formula Atlantic, F3000, and Sports Prototypes. 400-1600° F (800-1200° F optimal).
HPS (F): HPS = High Performance Street. This compound will outperform OEM pads without sacrificing street manners. A good choice for Solo II; also recommended for amateur to intermediate drag racing. Effective from dead cold up to 700° F (100-500° F optimal).