Short description

Xtreme Performance Clutch Heavy Cushioned Ceramic K-Series Stage 3 for Honda Civic Type R EP3 / FN2 / FD2 & Integra DC5.

 

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Xtreme Performance Clutch Heavy Duty Cushioned Ceramic K-Series Stage 3 - Civic Type R EP3 / FN2 / & Integra DC5

Xtreme Performance Clutch Heavy Duty Cushioned Ceramic K-Series Stage 3 - Civic Type R EP3 / FN2 / & Integra DC5
Short description

Xtreme Performance Clutch Heavy Cushioned Ceramic K-Series Stage 3 for Honda Civic Type R EP3 / FN2 / FD2 & Integra DC5.

 

Security guarantees

 

Delivery policy

 

Returns policy

Backorder

€491.58 tax excl.

€589.90 tax incl.
Quantity
Not in Stock - ETA: from Supplier

Xtreme Performance Clutch Heavy Duty Cushioned Ceramic K-Series Stage 3 for Honda Civic Type R EP3 / FN2 / FD2 & Integra DC5.

Recommended for: Motorsport Apps

These kits are available with sprung ceramic friction discs and are designed for motorsport applications where higher heat and torque capacity is required. These can also be used in some road applications.

Specs:

  • Torque capacity 430Nm
  • Clamp load 650kg
  • Increased over standard
  • Cushioned Ceramic Friction Disc
  • Heavy Duty Pressure Plate
  • Kit contains everything you need for a successful installation + accessories

The Xtreme Clutch cushioned ceramic range of upgrades offers exceptional heat capacity and torque capacity whilst providing cushioning between the friction surfaces of the disc, ensuring excellent driveability. The discs still retain the sprung hub that helps to reduce shock loading. These kits are commonly used in vehicles that are used on the road occasionally but mainly focused on track applications.


Xtreme Performance


At Xtreme Clutch, we strive to offer a variety of clutch options for each vehicle to ensure a clutch solution is available for every vehicle application. Whether you are modifying a road vehicle or building a race car from scratch, we have the clutch solution for you. Our upgrades are divided into different stages depending on the friction disc material and the

KHN22022-1C

Specific References