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EBC Premium Front Rotors (260x23mm) | 92-96 Honda Prelude 2.2

EBC Premium Front Rotors (260x23mm) | 92-96 Honda Prelude 2.2

SKU:RK629

In stock

Regular price $108.12 USD
Regular price $141.38 USD Sale price $108.12 USD
kADDITIONAL DISCOUNTS APPLIED AT CHECKOUT Sold out

The EBC RK Series Premium Front Rotors are OE replacement brake rotors designed specifically for the 1992-1996 Honda Prelude 2.2. Crafted from high-quality gray iron, these rotors are engineered to match the original factory dimensions and shape, ensuring a precise fit and reliable performance. Manufactured with strict quality controls, they are machined to tight tolerances of less than 0.05 millimeters, which helps minimize issues such as brake noise, vibration, and uneven wear. The rotors feature an anodized layer that disappears in the contact area with the brake pads, promoting optimal pad bedding and consistent braking performance. These rotors are built to withstand thermal buildup and provide durable, long-lasting service for everyday driving or spirited use.

Designed as a direct OE replacement, these rotors are compatible with 1992-1996 Honda Prelude 2.2 models. They are intended for front installation and are sold in pairs, making them suitable for restoring or upgrading your vehicle’s braking system. The rotors are ideal for street driving, offering improved braking response and reduced noise compared to worn or inferior replacements. Installation is straightforward for those familiar with brake service, and the precise dimensions ensure proper fitment without modification. These rotors serve as a reliable upgrade for maintaining optimal safety and performance on the road.

Overview

EBC RK Series Premium OE Replacement Plain Brake Rotors by EBC®. Sold In Pairs. This replacement brake rotor is sized and shaped to OE factory dimensions with the strictest quality controls and machined to be within extremely tight tolerances of less than 0.05 millimeters. High quality "gray" iron meets or exceeds factory original specifications regarding thermal buildup, brake noise, vibration, and wear. The anodized layer is designed to disappear in the area that the brake pads contact the rotor.Features:

  • Sized and shaped to original equipment specifications with extremely tight tolerances
  • Designed to meet or reduce factory levels of heat buildup, brake noise, vibration, and wear
  • Recommended by EBC for use with EBC Ultimax and Yellowstuff pads
  • Black GEOMET™ and NITROTHERM™ anti-corrosive finish
  • Recommended by EBC for normal street driving, high-performance street driving, truck or SUV use, drifting, and short track runs
  • High quality "gray" iron features a higher carbon content to reduce brake shudder, heat cracking, and high-frequency vibrations which cause squealing
  • EBC recommends a 500-mile break-in period with lighter braking application

Benefits:

  • Perfect for non-aggressive driving
  • Ensure quiet operation
  • Offers low dust and long pad life
  • More resistant to warping or cracking
Why pay dealership prices that are marked up 100% when you can purchase EBC high-quality Premium OE Replacement Rotors for less? Unlike cheaper, inferior replacement rotor that may look identical to original equipment, EBC builds these to match original factory dimensions and machines them to extremely tight tolerances. But they did not stop there. EBC has applied their engineering expertise to create an iron compound that exceeds the quality of most original material blends, so these rotor actually improve on factory levels of heat buildup, brake noise, vibration, and wear. A higher percentage of carbon and silicone is present which leads to the formation of graphite during the curing process. When graphite is present, the rotor itself takes on qualities of a denser, softer material. Heat is more evenly dispersed to reduce warping, cracks are less likely, and vibration-related noise is greatly reduced. Premium OE Replacement Rotors is anodized for corrosion resistance, and rotor should be fully ready for performance driving after a 500-mile break-in period.
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