
The Power Stop Z36-989 brake pads represent a high-performance upgrade specifically engineered for the rear brakes of 2003-2009 Chevrolet Express 3500 and GMC Savana 3500 trucks. Designed under the PowerStop brand, a respected name in the brake industry known for its commitment to quality and reliability, these brake pads fall under the Performance Brake Pads category, ideal for truck and tow applications requiring enhanced stopping power and durability.
These ceramic brake pads are formulated with a low-dust ceramic compound infused with carbon fiber, which significantly strengthens the material to deliver severe-duty stopping power. This makes them particularly suitable for heavy-duty use such as towing, hauling, and off-road driving. The Z36 Truck & Tow pads are engineered to reduce brake dust and eliminate noise, addressing common concerns associated with stock brake pads. This ensures a cleaner wheel appearance and a quieter braking experience.
Included with the Z36-989 brake pads is premium stainless-steel hardware and ceramic brake lubricant, facilitating a professional-grade installation and optimal brake performance. The hardware enhances pad fitment and longevity, while the lubricant minimizes noise and wear.
This product is specifically designed to fit the following models and submodels:
| Year | Make | Model | Submodel |
|---|---|---|---|
| 2003-2008 | Chevrolet | Express 3500 | Base |
| 2003-2008 | Chevrolet | Express 3500 | LS |
| 2006-2008 | Chevrolet | Express 3500 | LT |
| 2003-2008 | GMC | Savana 3500 | Base |
| 2006-2008 | GMC | Savana 3500 | LS |
| 2006-2008 | GMC | Savana 3500 | LT |
| 2003-2005 | GMC | Savana 3500 | SLE |
PowerStop’s dedication to manufacturing reliable and high-quality braking components is evident in the Z36 series. These brake pads meet rigorous standards for performance and safety, making them a dependable choice for commercial and personal vehicles requiring enhanced brake efficiency and longevity. The Z36-989 pads provide peace of mind for drivers who demand consistent stopping power under demanding conditions.