High Quality Ceramic Brake Pad F6SZ-2001-AA

Inquire Now

Description

The High Quality Ceramic Brake Pad F6SZ-2001-AA is engineered for superior performance and safety. Designed to deliver a shorter braking distance and an impressive friction coefficient, these brake pads offer exceptional high-speed braking performance. Capable of withstanding temperatures up to 650 degrees, they ensure a comfortable and sensitive braking experience while effectively insulating heat to prevent thermal damage to other brake components.

These brake pads are environmentally friendly, utilizing a new carbon eco-friendly mesoporous material that prevents the absorption of harmful gases and dust, achieving zero emissions. They operate quietly without generating noise pollution, and their formulation is free from copper, antimony, lead, asbestos, arsenic, and other harmful substances.

With a reasonable structure featuring high-temperature resistant friction primer, these pads boast high bonding and shear strength, eliminating the risk of peeling. The slotted chamfer enhances friction, promotes ventilation, and improves heat dissipation. Utilizing an advanced ablation process ensures stability at high temperatures, allowing for easier fitting with brake discs. Designed not to damage the brake disc, these pads improve braking performance without causing wear, prolonging the life of both tires and brake assemblies. Expect a service life of 60,000 to 100,000 kilometers, making them a reliable choice for any vehicle.

Specifications

Attribute Details
Material Ceramic
Temperature Resistance Up to 650 degrees
Service Life 60,000 – 100,000 kilometers
Noise Level Low (quiet operation)
Environmental Impact Zero emissions, no harmful substances

Additional Information

These brake pads are designed to enhance the longevity of your vehicle’s braking system while providing a safe and efficient braking experience. Regular checks and maintenance are recommended to ensure optimal performance.

Product Inquiry Form

Thanks your message successfully submitted.