Hinz Motorsport, a recognized name in high-performance automotive components, has announced the launch of its newly engineered Hinz Motorsport Carbon Ceramic Brake System, Hinz Carbon. Developed in response to inventory shortages, rising costs, and tariffs affecting traditional carbon ceramic brake suppliers, the system balances performance with long-term value through advanced materials, controlled manufacturing processes, and design improvements.
Central to the design is a unique integrated friction layer that accommodates more aggressive brake pad compounds while extending disc life. The system is produced using a slower, precision-controlled manufacturing process that minimizes impurities and promotes more uniform silicon infiltration, resulting in a higher-grade silicon carbide structure. This approach contributes to greater consistency, strength, and reliability under demanding conditions.
Key performance advantages include improved cold bite for enhanced braking in lower temperatures, a higher friction coefficient for stronger stopping power, an easier bed-in process, expanded pad compatibility, increased durability and longevity, low dust and noise, and weight savings that improve vehicle dynamics. The system has completed extensive third-party testing through PFC, with after-market and OEM-level evaluations confirming its performance and durability relative to established products.
Built for performance street, track, and race applications, the system is compatible with high-end platforms including Porsche, Ferrari, McLaren, Audi, Lamborghini, BMW, and other performance-focused vehicles. It suits enthusiasts looking to preserve factory carbon ceramic setups for resale, manage brake dust and noise, or run a single pad configuration across both street and track use.
Hinz Motorsport Carbon Ceramic Brake Systems are now available for order. Some kits remain in production, with lead times of approximately 14 weeks for non-stock configurations. For more information, visit www.hinzmotorsport.com/pages/hinz-carbon-ceramic-brake-discs.


