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Brake Pads

Ceramic Brake Pads

Crafted for everyday driving comfort, these pads provide low-dust, low-noise braking with smooth pedal feel. Ideal for urban and suburban use, they offer clean performance,…

Premium Brake Pads

Engineered for high-performance and safety, our premium pads deliver consistent braking under extreme heat and pressure. Trusted globally, they offer reliable stopping power, low noise,…

Semi-Metallic Brake Pads

Designed for strength and durability, these pads offer excellent heat dissipation, strong bite, and fade resistance. Suitable for high-load vehicles and rugged use, they ensure…

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April 1, 2025

Ceramic Brake Pads

Crafted for everyday driving comfort, these pads provide low-dust, low-noise braking with smooth pedal feel. Ideal for urban and suburban use, they offer clean…

  • Maximum Temperature

    Up to 600°C. Stable under thermal load.

  • Friction Coefficient

    μ = 0.35–0.40 (normal), μ = 0.43 (peak).

  • Noise & Vibration

    Multi-layer tech for quiet, low-dust braking.

  • Wear Rate

    Pad ≤ 0.25 mm/k, Rotor ≤ 0.08 mm/k.

View Project
April 1, 2025

Premium Brake Pads

Engineered for high-performance and safety, our premium pads deliver consistent braking under extreme heat and pressure. Trusted globally, they offer reliable stopping power, low…

  • Maximum Temperature

    Up to 650°C. Stable under high heat.

  • Friction Coefficient

    μ = 0.38–0.42 (normal), μ = 0.46 (peak).

  • Noise & Vibration

    Multi-shim tech for quiet, smooth braking.

  • Wear Rate

    Pad ≤ 0.30 mm/k, Rotor ≤ 0.10 mm/k.

View Project
April 1, 2025

Semi-Metallic Brake Pads

Designed for strength and durability, these pads offer excellent heat dissipation, strong bite, and fade resistance. Suitable for high-load vehicles and rugged use, they…

  • Maximum Temperature

    Up to 700°C. Maintains strength under heat.

  • Friction Coefficient

    μ = 0.40–0.45 (normal), μ = 0.48 (peak).

  • Noise & Vibration

    Engineered steel fibers reduce brake noise.

  • Wear Rate

    Pad ≤ 0.28 mm/k, Rotor ≤ 0.09 mm/k.

View Project