The disc brake pads are the critical friction components that interface directly with the brake rotors to convert vehicle kinetic energy into thermal energy, making their material composition, dimensional accuracy, and thermal stability essential factors in overall braking system performance and safety. Sakes Auto Parts, established in April 2016 by a coalition of influential regional dealer representatives in the automotive heart of Anting Town, Jiading District, Shanghai, was founded to satisfy the demand for transformation and upgrading within the automotive aftermarket, and our close-interest community structure enables us to approach disc brake pads engineering with a comprehensive understanding of the complex interactions between friction materials, rotor metallurgy, and caliper hydraulics. Through our unified management across different administrative areas and strategic capital pooling, we ensure that the disc brake pads we manufacture under the SAKES brand are produced with precision-molded friction formulations, robust steel backing plates with proper mechanical retention features, and integrated noise-damping shims where specified, all of which contribute to quiet, consistent, and reliable braking performance. Our deep expertise in Volkswagen and Audi platforms has given us unique insights into the specific disc brake pads requirements of these vehicles, where electronic wear sensors, pad shape configurations, and friction material formulations must precisely match original equipment specifications to ensure proper caliper fitment and optimal braking characteristics. By integrating research, development, production, sales, and service under one unified structure, we deliver disc brake pads solutions that help professional technicians perform efficient, accurate brake service, reduce comeback repairs associated with substandard friction materials, and provide end consumers with the confidence that their vehicle’s braking system is equipped with components engineered for safety, durability, and consistent stopping power.