Description
Enhance the braking performance, reliability, and appearance of your Honda S2000 AP with a pair of premium TAROX Rear Brake Rotors. Designed specifically for the Honda S2000 2.0 16V VTEC, these high-performance rear brake discs deliver improved braking consistency, enhanced pedal feel, and increased durability compared to conventional replacement rotors.
Price includes both left and right rear brake rotors (1 pair).
Manufactured from OEM-specification TUV-approved castings, TAROX rotors undergo advanced heat treatment, precision machining, anti-corrosion coating, and hand-finishing processes to ensure exceptional performance for both road and performance driving applications.
Available Rotor Face Designs
- F2000 – Features TAROX's signature long curved grooves designed to improve brake pad bite, increase debris evacuation, and enhance braking consistency.
- Sport Japan – Features a drilled and slotted design engineered to improve cooling efficiency, gas evacuation, wet-weather braking performance, and overall braking response.
Why Choose TAROX Brake Rotors?
TAROX performance brake rotors are engineered using advanced manufacturing techniques developed through decades of motorsport experience.
Precision Heat Treatment
Each rotor is subjected to a specialized heat-treatment process that optimizes the structure of the casting.
Benefits include:
- Increased rotor strength
- Enhanced durability
- Improved thermal stability
- Greater resistance to heat-related distortion
- Consistent braking performance under demanding conditions
Functional Rotor Face Designs
Every TAROX rotor pattern is designed to provide real-world performance benefits.
Benefits include:
- Improved brake pad engagement
- Enhanced pedal response
- Better evacuation of gases and debris
- Improved cooling performance
- Reduced brake fade
Cataphoresis Anti-Corrosion Protection
Following machining, TAROX rotors receive a premium Cataphoresis anti-corrosion coating that protects exposed surfaces and internal areas from environmental damage.
Benefits include:
- Long-term protection against corrosion
- Protection of non-contact rotor surfaces
- Enhanced durability in all weather conditions
- Improved long-term appearance
Precision Hand-Finished Surfaces
Both braking surfaces are simultaneously polished using specialized machinery to ensure maximum accuracy and flatness.
Benefits include:
- Faster brake pad bedding-in
- Improved pad-to-rotor contact
- Reduced risk of vibration and runout
- Consistent braking performance
TAROX rotors are machined to tolerances approaching 0.05mm for exceptional precision and quality.
Features
- Premium rear brake rotor set for Honda S2000 AP
- Includes left and right rear brake rotors
- Available in F2000 curved-groove or Sport Japan drilled and slotted designs
- Manufactured from OEM-specification TUV-approved castings
- Precision heat-treated for enhanced durability
- Advanced Cataphoresis anti-corrosion coating
- Improved braking response and pedal feel
- Enhanced resistance to brake fade
- Direct replacement for factory rear brake rotors
- Suitable for street and performance driving applications
Technical Specifications
- TAROX Code: 2295
- Quantity: 2 Rotors
- Axle Position: Rear
- Rotor Type: Solid
- Rotor Configuration: Single Piece
- Vehicle Year Range: 1999–2009
- Variant: 2.0 16V VTEC (AP)
- Rotor Diameter: 282mm
- Rotor Thickness: 12mm
- Minimum Rotor Thickness: 10mm
- Rotor Height (Offset): 40mm
- Centre Bore Diameter: 64mm
- Weight Per Disc: 4.5kg
- Total Weight: 9kg
Vehicle Fitment
Honda
- Honda S2000 2.0 16V VTEC (AP) (1999–2009)
Fitment Notes
- Designed specifically for Honda S2000 AP models equipped with the 2.0L 16V VTEC engine.
- Direct replacement for factory rear brake rotors.
- No modifications required for installation.
- Compatible with factory rear brake calipers and equivalent replacement systems.
- Professional installation is recommended.
- Verify vehicle fitment before ordering.
Package Contents
- 2 × TAROX Rear Brake Rotors
- Left and right rotor configuration included
- Ready for direct installation