Close
You have no items in your shopping cart.
Search

NH02SDMC1 - NISSAN S15 - Carbon-D Single, Hyper Series - EXEDY

Manufacturer: Exedy
SKU: NH02SDMC1
917.84 EUR
Incl. 0% VAT (United States) | Change
917.84 EUR excl. VAT

NH02SDMC1 - NISSAN S15 - Carbon-D Single, Hyper Series - EXEDY

Availability: Out of stock - If ordered, it will be shipped once available (3-7 days).
+ -
Make Model Year Engine Series Part
NISSAN SILVIA / 180SX / 200SX (S15) 1999-2002 2.0 (SR20DET) Hyper Series Carbon-D Single

This coupling is suitable for:

  • NISSAN SILVIA, 180SX, 200SX S15 2.0L SR20DET 1999 - 2002

 Item Specifications:

  • Item no: NH02SDMC1
  • Series: Hyper Series
  • Type: Carbon-D Single
  • Thrust bearing: BRG875
  • Disc Lining: Carbon
  • Disc Diameter: 225
  • PUSH / PULL: Push
  • Spring Plate: Yes
  • CLAMP LOAD (N): 12998
  • TORQUE CAPACITY @ FLYWHEEL: 260 lb-ft / 350 Nm
  • TORQUE CAPACITY @ WHEELS: 210 lb-ft / 280 Nm
  • Weight vs OEM: - 20 to 30%
  • NOTES: Includes Autech version. Nissan Genuine Pilot Busing: 32202-B9500 Recommended.

Ultimate performance and driving comfort

In 1995 EXEDY supplied carbon clutches to Ferrari for use in the pinnacle of motorsport, Formula One. This same technology is now applied to carbon clutches developed by EXEDY for use in various driving conditions, providing an explosive shift feeling and dramatic improvement in engine response.

The EXEDY Carbon-D clutch is available as either a single plate (Carbon-D Single) or twin plate (Carbon-D Twin).

Suitable for

  • Road
  • Track Day
  • Circuit Racing
  • Time Attack

 

Carbon-D Single:

Main Benefits

  •          Carbon clutches offer excellent operational feel by reducing inertia.
  •          Unique damper design significantly reduces shock torque and gearbox rattle.
  •          The highest possible performance with the same ease of use as the original equipment clutch.
  •          SX coating to the Pressure plate and Intermediate plate further increases stability and torque capacity.
  •          20 to 30% reduction in inertia over the original equipment part.