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CCST Disc Brakes

CCST Disc Brakes: Unleashing next-level performance with lightweight, high-strength technology.

CCST Disc Brakes

Photography courtesy of Surface Transforms

Overview

The CCST Disc Brakes represent a significant advancement in braking technology, explicitly engineered for high-performance automotive applications. Utilizing Carbon-Ceramic Composite Technology (CCST), these brakes are designed to offer exceptional heat resistance, reduced weight, and superior stopping power, making them ideal for modern sports cars and high-end vehicles. The lightweight nature of carbon-ceramic materials contributes to overall vehicle efficiency, improving handling dynamics by lowering unsprung weight. The technology behind these brakes ensures optimal friction characteristics, longevity, and less susceptibility to brake fade, especially under extreme conditions. The CCST Disc Brakes are tailored for vehicles demanding high thermal stability and performance consistency, including applications in motorsports and luxury vehicles where braking performance is critical for both safety and racing outcomes. As the market for performance brake components continues to evolve, the demand for lightweight, durable, and high-performance materials is more pressing than ever. The CCST Disc Brakes not only meet but exceed leading standards in braking performance, positioning themselves as a benchmark for competitors in the high-performance automotive segment. With growing environmental awareness, the ability of these brake systems to perform efficiently while minimizing wear and tear contributes to sustainable automotive technologies, reducing long-term maintenance and part replacement costs.

Key Differentiators

  • Up to 60% lighter than traditional iron disc brakes
  • Superior thermal conductivity and heat dissipation
  • Enhanced resistance to thermal expansion and deformation
  • Longer lifespan with reduced wear rates
  • Improved performance in extreme temperatures and conditions

OEM Applications

Derived automatically from linked vehicle teardowns.

Koenigsegg

2021-Present

Gemera

Surface Transforms CCST carbon-ceramic discs

Materials & Procurement Intelligence

Key materials used in this component, with supply chain risk and sourcing notes.

Carbon Fiber

Medium Risk

Primary reinforcing element in the composite disc

Materials Library

Procurement note: Available from multiple suppliers with established performance metrics

Ceramic Matrix Composite

High Risk

Allows for high thermal stability and strength

Materials Library

Procurement note: Specialized manufacturing process limits suppliers

Aluminum Alloy

Low Risk

Used in calipers for weight reduction

Materials Library

Procurement note: Widely sourced with stable availability

Resins

Medium Risk

Bind carbon fibers and ceramics together in the brake disc

Materials Library

Procurement note: Keep in stock, potential fluctuations in price

Silicon Carbide

High Risk

Increases wear resistance on brake pads

Materials Library

Procurement note: Limited number of suppliers; require strategic partnerships

Graphite

Medium Risk

Enhances the lubricity of braking surfaces

Materials Library

Procurement note: Stable supply yet subject to geopolitics

Used In(1 vehicle)

Brakes & Wheels

Key Specifications

Weight2.5 kg per disc
Diameter400 mm
Thickness30 mm
Material CompositionCarbon and ceramic composite
Max Operating Temperature1,200°C
Friction Coefficient0.45 - 0.65
Disc Ventilation TypeInternal vented
Corrosion ResistanceYes
Warranty Period2 years
Environmental ImpactLow dust emissions
CertificationECE R90 approved
Brake Fluid CompatibilityDOT 4 and 5.1

Supplied By

S

Surface Transforms

View Supplier Profile

Procurement Summary

Typical Lead Time

Typically 6-8 weeks depending on order size and customizations.

Minimum Order Qty

Minimum Order Quantity: 20 sets for OEM contracts.

Cost Indicator

Premium cost tier due to advanced materials and technology.

Supply Risk

Supply chain disruptions may occur due to reliance on specialized materials and manufacturing processes.

Certifications

ISO 9001
ISO 14001
IATF 16949

Applicable Standards

ISO 9001
SAE J2887
EEC Directives

Material Price Trends

Track commodity price movements relevant to this component.

View Pricing Trends

Trayce Verified

Unverified — no published review

Data confidence: UNKNOWN

Trayce Verified applies only to the dimensions shown as independently sourced below. It is separate from paid Enhanced Profiles and does not guarantee capacity, lead time or supplier suitability.

Last reviewed: UnknownProfile source citations: 2
  • Company identity

    Unknown — not reviewed

  • Manufacturing location

    Unknown — not reviewed

  • Certifications

    Unknown — not reviewed

  • Programme relationships

    Unknown — not reviewed

Source counts describe profile citations, not independently verified checks. Certification review applies to the recorded dimension; individual certificates, capacity and lead times are not verified by this panel.

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