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GSC Power Division

GSC Power Division 5266 GSC P-D Toyota 2JZ Dual Valve Spring and Ti Retainer Kit

GSC Power Division 5266 GSC P-D Toyota 2JZ Dual Valve Spring and Ti Retainer Kit

Regular price $1,006.42 USD
Regular price $1,184.02 USD Sale price $1,006.42 USD
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GSC Power Division 5266 GSC P-D Toyota 2JZ Dual Valve Spring and Ti Retainer Kit

Unlock the full potential of your Toyota 2JZ engine with the GSC Power Division 5266 Dual Valve Spring and Titanium Retainer Kit. Engineered for high-performance applications, this kit is designed to provide superior valve control and stability at high RPMs. Whether you're building a street machine, drag racer, or track warrior, these dual valve springs deliver the reliability and performance you need to push your engine to the limits.

Crafted from high-quality materials, the dual valve springs are designed to withstand the stress of high-lift camshafts and aggressive driving conditions. The titanium retainers offer a significant weight reduction compared to steel, contributing to improved valve train dynamics and allowing for quicker engine response. This combination ensures optimal performance, durability, and longevity under the most demanding conditions.

Installation of the GSC Power Division 5266 kit is straightforward, making it an ideal choice for both professional engine builders and DIY enthusiasts. With this kit, you can confidently upgrade your valve train, knowing you're using components trusted by top-tier motorsport teams worldwide.

Fitment Information

This GSC Power Division 5266 Dual Valve Spring and Ti Retainer Kit is designed to fit the following Toyota 2JZ engine applications:

  • Toyota Supra MK4 (1993-2002) with 2JZ-GTE engine
  • Toyota Aristo (1991-2004) with 2JZ-GTE engine
  • Toyota Soarer (1991-2000) with 2JZ-GTE engine
  • Other vehicles equipped with the 2JZ-GTE engine

Please ensure compatibility with your specific vehicle model and engine configuration before purchasing. This kit is intended for high-performance applications and may require additional modifications to achieve optimal results.

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