Hit $50 & Get Free Shipping Instantly
HB645U.490 DTC-70 Motorsport Brake Pads - High Performance Racing Brake Pads for Track & Drift - Perfect for Sports Cars, Muscle Cars & High-Performance Vehicles
HB645U.490 DTC-70 Motorsport Brake Pads - High Performance Racing Brake Pads for Track & Drift - Perfect for Sports Cars, Muscle Cars & High-Performance VehiclesHB645U.490 DTC-70 Motorsport Brake Pads - High Performance Racing Brake Pads for Track & Drift - Perfect for Sports Cars, Muscle Cars & High-Performance VehiclesHB645U.490 DTC-70 Motorsport Brake Pads - High Performance Racing Brake Pads for Track & Drift - Perfect for Sports Cars, Muscle Cars & High-Performance Vehicles

HB645U.490 DTC-70 Motorsport Brake Pads - High Performance Racing Brake Pads for Track & Drift - Perfect for Sports Cars, Muscle Cars & High-Performance Vehicles

$120.44 $218.99 -45%

Delivery & Return:Free shipping on all orders over $50

Estimated Delivery:7-15 days international

People:23 people viewing this product right now!

Easy Returns:Enjoy hassle-free returns within 30 days!

Payment:Secure checkout

SKU:30389475

Guranteed safe checkout
amex
paypal
discover
mastercard
visa

Product Description

Extremely high torque with aggressive controllable initial bite. Superior release and torque control characteristics. Brake pads designed for cars with high deceleration rates with or without down force.

Product Features

Extreme High Torque Performance – DTC-70 Brake Pads deliver high torque with an aggressive, controllable initial bite for cars with high deceleration rates.

Superior Modulation & Control – Offers excellent modulation, release characteristics, and precise torque control for predictable braking in intense racing environments.

Low Rotor Wear – Designed for minimal rotor wear, ensuring superior durability and performance across multiple races.

Perfect for Professional Racing – Ideal for Super Late Models, Pro Off-Road Trucks, and Sports Car/GT/Formula racing.

High-Temperature Durability – Performs in 400–1600 degree conditions, with an optimal range of 800–1200 degree for extreme heat resistance and consistent performance.