Skip to product information
1 of 1

EBC USR Slotted Rear Rotors | 04-07 Lexus RX330 3.3

EBC USR Slotted Rear Rotors | 04-07 Lexus RX330 3.3

SKU:USR7230

In stock

Regular price $206.21 USD
Regular price $269.66 USD Sale price $206.21 USD
kADDITIONAL DISCOUNTS APPLIED AT CHECKOUT Sold out

The EBC USR BlackDash Series Sport Slotted Rear Rotors are high-performance replacement brake components designed for the 2004-2007 Lexus RX330 3.3. These one-piece rotors feature multiple narrow, angled slots that enhance cooling and reduce noise during operation. The slotted design improves brake pad bite and heat dissipation, contributing to more consistent braking performance and reduced brake fade. The vented center ensures even temperature distribution, preventing warping under demanding driving conditions. A protective corrosion-resistant finish on non-contact areas extends rotor lifespan, while the anodized layer in contact zones maintains optimal brake pad engagement.

These rotors are specifically engineered for the rear axle of the Lexus RX330 from 2004 to 2007, offering a direct replacement for stock units. They are suitable for street performance driving, providing improved braking response and durability. The rotors are designed for bolt-on installation, compatible with the original mounting hardware. This set includes two rotors, making them ideal for restoring or upgrading rear braking systems on compatible Lexus RX330 models, ensuring reliable stopping power for daily driving or spirited driving scenarios.

Overview

EBC USR BlackDash Series Sport Slotted 1-Piece Front Brake Rotors by EBC®. Quantity: 2 Per Pack. These replacement brake rotors feature multiple slots in a narrow, more angled pattern to create a quieter running surface with a superior level of cooling. Vented center provides even temperature moderation to avoid warpage, and protective finish provides corrosion resistance on non-contact areas. The anodized layer is designed to disappear in the area that the brake pads contact the rotor. Recommended for use with EBC Greenstuff, Yellowstuff, and Redstuff pads.

Features

  • Created to be the lowest noise brake rotors designed for performance applications
  • Recommended by EBC for use with Greenstuff, Yellowstuff, and Redstuff pads
  • Angled slots on rotor surfaces allow superior expulsion of heat, water, brake dust, and friction gases
  • Two sets of slots on rotor surfaces provide even pad wear which creates flat, parallel rotor wear without ridges from developing
  • Black GEOMET™ and NITROTHERM™ anti corrosive finish
  • Brake rotors are unidirectional to the left and right side of your vehicle to maximize effectiveness
  • EBC recommends a 500-mile break in period with lighter braking application

Benefits:

  • Ensure increased pad bite and improved air circulation
  • Clean and de-glaze pad surface for optimum pad coefficient of friction
  • Create an escape route for debris, dust, and water
  • Reduce stopping distances in wet weather
  • Offer much faster heat dissipation
  • Resistant to warping and fading

USR Series Sport Slotted Rotors are created for the enthusiast who wants low noise from their brakes while doing a higher level of aggressive driving or towing. Two sets of shallow slots cover all areas of the rotor surfaces so both pads and rotors wear evenly all the way across – preventing the grooves and ridges from building up that cause frictional noise. They also effectively increase the level of heat, water, brake dust, and friction gas expulsion necessary to keep rotors cool and functional during street performance driving in any weather. Additionally, USR Series Sport Slotted Rotors feature a vented center for air to pass between both rotor sides, so metal expands evenly during use and the chance of warpage is minimized. USR Series Sport Slotted Rotors are designed for use with EBC Greenstuff™, Yellowstuff™, and Redstuff™ pads. All areas of the rotors have a protective coating to prevent corrosion, and should be fully ready for use after the first 500-miles of moderate brake application.

View full details