Hello! Choose your country.

Located IN CANADA. No Duties or Brokerage (LEARN MORE)

Wilwood AERO6 Front Brake Kit 14.00 Road Race 05-14 Ford Mustang w/Lines Big Brake Kits Wilwood
*item may differ from images

Wilwood AERO6 Front Brake Kit 14.00 Road Race 05-14 Ford Mustang w/Lines

MyPartsGuy SKU: WIL140-13882
  • Manufacturer Part Number: 140-13882
Vendor
Wilwood
Regular price
$4,687.49 CAD
Sale price
$4,687.49 CAD
Regular price
$5,342.91 CAD
CURRENTLY SOLD OUT
Unit pric
per 

IN STOCK Orders Are Processed and Leave Ottawa Warehouse In 3-10 Days.

SPECIAL ORDERS May Take 2-8+ Weeks.

NO BROKERAGE FEES - NO CUSTOMS FEES - NO DUTIES

This is a special order part. It will be ordered for you from the manufacturer. Contact us is you have a deadline.

🗙

What does "Special Ordered" mean?

This means that we do not have the product in our warehouse. We only order “Special Order” products from the supplier when you order them from us. Generally, we do not intend to keep an inventory of these items.

“Special Order” products could be shipped directly from the supplier or they could be shipped to us first. Then, we would ship it to you. The available shipping options will be provided during the checkout process."

AERO6-ST six piston radial mount calipers are coupled with the high cooling capacity of 14.00” dynamically mounted GT directional vane rotors to provide the ultimate brake package for unrestricted road race competition. Thermlock pistons in the calipers resist fade and extend service life by reducing the heat transfer from the pads, caliper body, fluid, and seals. New design AERO6-ST (Thick Pad) calipers with 20mm thick pads increase endurance with longer pad life. Rotors mount to the hubs with forged aluminum hats and radial mount brackets secure the caliper to the spindle in the OE location without modification. Kits also include high temperature, high friction race compound pads and all premium grade fasteners.

Net Orders Checkout

Item Price Qty Total
Subtotal $0.00 CAD
Shipping
Total

Shipping Address

Shipping Methods