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Wilwood Master Cylinder TM1 Tandem 0.625 Bore 1.310 Stroke Aluminum

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$122.99
SKU: WIL260-11097
UPC: 889545066722
Width: 3.00 (in)
Height: 13.00 (in)
Depth: 3.00 (in)
Part Number: 260-11097
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Wilwood Master Cylinder TM1 Tandem 0.625 Bore 1.310 Stroke Aluminum

Wilwood Master Cylinder TM1 Tandem 0.625 Bore 1.310 Stroke Aluminum

$122.99

Wilwood Master Cylinder TM1 Tandem 0.625 Bore 1.310 Stroke Aluminum

The Wilwood Master Cylinder TM1 Tandem is a high-performance braking component designed for discerning automotive enthusiasts and professionals. Featuring a bore size of 0.625 inches and a stroke length of 1.310 inches, this master cylinder optimizes hydraulic pressure for superior braking performance. Constructed from lightweight aluminum, it provides an excellent combination of strength and reduced weight, which is essential for improving overall vehicle dynamics.

The tandem design of this master cylinder allows for more effective brake system operation by ensuring even distribution of hydraulic pressure across both circuits. This configuration not only enhances safety by providing a backup in case of a failure but also improves the responsiveness of the braking system. The precise machining and quality control in Wilwood’s manufacturing process guarantee reliability and consistency in performance under demanding conditions.

FITMENT: This master cylinder is engineered to fit a wide range of applications, specifically targeting performance street and racing vehicles where high-quality braking components are essential. It is crucial to confirm compatibility with your specific vehicle model and brake setup for optimum performance and safety.

Key Features & Benefits

  • 0.625-inch bore for enhanced fluid displacement and improved braking force.
  • 1.310-inch stroke for optimal hydraulic pressure generation.
  • Lightweight aluminum construction minimizes weight without sacrificing durability.
  • Tandem design provides redundancy and enhanced safety during operation.
  • Precision engineering ensures consistent performance and reliability under various driving conditions.
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