
The Power Stop 96-97 Ford Thunderbird Front & Rear Z23 Evolution Sport Brake Kit, SKU K1319, represents a comprehensive performance upgrade designed specifically for select Ford, Lincoln, and Mercury models. This brake kit is engineered to provide enhanced stopping power and reliability, making it an ideal choice for drivers seeking a high-quality replacement that meets rigorous business and safety standards.
Manufactured by PowerStop, a reputable brand known for its dedication to innovation and durability in braking solutions, this kit includes premium Carbon-Fiber Ceramic brake pads, drilled and slotted rotors, and stainless-steel hardware. These components work synergistically to deliver superior heat dissipation, reduced brake fade, and consistent performance under various driving conditions. The low-dust formula of the brake pads helps maintain wheel cleanliness, while the rotors resist rust and corrosion, ensuring long-lasting functionality.
This performance-oriented brake kit fits the following vehicles:
| Year | Make | Model | Submodel |
|---|---|---|---|
| 1996-1997 | Ford | Thunderbird | LX |
| 1996 | Lincoln | Mark VIII | Anniversary |
| 1993-1995, 1997-1998 | Lincoln | Mark VIII | Base |
| 1995-1998 | Lincoln | Mark VIII | LSC |
| 1996-1997 | Mercury | Cougar | XR-7 |
PowerStop’s Z23 Evolution Sport Brake Kit is designed for easy installation, providing a bolt-on solution that does not require extensive modifications. This kit is ideal for daily drivers who demand improved braking performance without compromising on reliability or safety. The combination of advanced materials and precision engineering ensures a smooth, quiet braking experience, enhancing overall vehicle control.
Choosing PowerStop means selecting a brand committed to quality and innovation in the automotive brake industry. Their products undergo stringent testing to meet or exceed OEM standards, delivering dependable performance for both everyday and spirited driving. Upgrade your braking system with this expertly crafted kit to ensure optimal safety and performance on the road.