Hawk Wilwood 7912 DTC-30 Race Brake Pads - HB611W.490
Brand: Hawk Performance
ManufacturerPart: HB611W.490
Product Category: Brakes, Rotors & Pads~Brake Pads - Racing
Length: 8.6 inches
Width: 3.6 inches
Height: 3.5 inches
Weight: 2.0 lbs
Hawk Performance DTC-30 race brake pads are designed for high-performance street and competition applications requiring consistent braking response and controllable torque. Engineered for compatibility with Wilwood 7912 calipers, the HB611W.490 brake pad set uses Hawk’s DTC-30 compound to deliver strong initial bite, smooth release characteristics, and dependable braking performance across a broad operating temperature range.
The DTC-30 friction compound is formulated to provide a smooth pedal feel and predictable modulation during demanding driving conditions. Its wide temperature capability helps maintain consistent braking performance as temperatures rise, while the controllable torque characteristics support precise driver input. These pads are a practical upgrade for drivers and vehicles that need more responsive braking than standard replacement pads can provide.
Hawk Performance brake pads are manufactured with performance-focused friction materials and are designed to reduce performance loss caused by brake fade. The HB611W.490 pad has a listed friction material thickness of 0.490 inch and is intended for Wilwood 7912 applications. Verify caliper, rotor, and vehicle compatibility before installation, and follow all manufacturer bedding and installation procedures.
- Excellent release characteristics
- Wide operating temperature range
- Smooth pedal feel and initial bite
- Controllable braking torque
- Hawk Performance DTC-30 compound
- Designed for Wilwood 7912 release characteristics for smooth brake control
- Wide operating temperature range for consistent performance
- Smooth pedal feel and predictable initial bite
- Controllable torque for precise modulation
- Hawk Performance DTC-30 friction compound
- Designed to fit Wilwood 7912 brake applications
- 0.490-inch friction material thickness