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3501119XPW01A
HongPro
3501119XPW01A
Our 3501119XPW01A brake pads are engineered for superior stopping power and reliability. Manufactured with a premium ceramic compound, they provide a consistent friction coefficient of 0.42-0.48 (μ), ensuring stable performance across various driving conditions. Independent lab tests confirm a 15% reduction in braking distance compared to economy-grade alternatives. These pads are ECE R90 certified, guaranteeing compliance with stringent international safety standards.
Key features include exceptional thermal stability, resisting fade at temperatures up to 650°C, and integrated NVH (Noise, Vibration, Harshness) shims for ultra-quiet operation. The precision-molded backing plate features an advanced anti-corrosion coating. Designed as a direct OE replacement, they offer optimal compatibility and a longer service life, providing a perfect balance of safety, durability, and comfort for your vehicle.
Our 3501119XPW01A brake pads utilize a premium ceramic compound, setting a new standard for aftermarket parts. This formulation delivers a stable, high friction coefficient (μ) of 0.42-0.48, ensuring consistent and reliable stopping power in both city driving and demanding conditions. Unlike metallic pads, our ceramic formula produces significantly less dust, keeping your wheels cleaner and reducing wear on components. This results in a confident, responsive brake feel and enhanced overall driving safety.
Safety is non-negotiable. These brake pads are rigorously tested and certified to meet the ECE R90 international safety standard, a benchmark for quality and performance in the global automotive market. Independent testing verifies a 15% reduction in average braking distance compared to standard organic pads. When you choose this part, you are selecting a product that has been validated for performance and safety, providing peace of mind for you and your customers.
Performance doesn't fade when it matters most. Our brake pads are engineered with advanced heat-resistant materials that maintain optimal efficiency at extreme temperatures, effectively resisting brake fade up to 650°C. This superior thermal management ensures consistent pedal feel and stopping power during repeated or heavy braking, a critical factor for vehicle safety and driver confidence. This durability directly contributes to an extended service life, offering greater value.
We integrate high-quality Noise, Vibration, and Harshness (NVH) shims and utilize chamfered edges and slot designs to dampen vibrations that cause brake squeal. This commitment to acoustic comfort ensures quiet, smooth braking from the first application. Furthermore, the precision-molded backing plate features a robust anti-corrosion coating, protecting against rust and seizing, which guarantees easy installation and long-term reliability even in humid or winter road conditions.
| Parameter | Specification | Notes / Standard |
| OE Part Number | 3501119XPW01A | Direct OE replacement for guaranteed fitment. |
| Friction Material | Premium Ceramic Compound | Formulated for performance and low dust. |
| Friction Coefficient (μ) | 0.42 - 0.48 | Stable across a wide temperature range. Meets ECE R90 requirements. |
| Working Temperature | Up to 650°C | Excellent thermal stability and fade resistance. |
| International Approval | ECE R90 Certified | Complies with the strict European regulation for brake replacement parts. |
| Noise Control Features | Integrated NVH Shims, Chamfered Edges, Slots | Engineered for quiet operation and minimized vibration. |
| Backing Plate | Precision Stamped Steel | Features an advanced anti-corrosion coating for longevity. |
| Thickness | 18.5 mm (Friction Material + Backing Plate) | Please verify specific wear limits for your vehicle. |
Here are specific application scenarios of brake pad:
Navigate city streets with confidence. Our brake pads are specifically engineered for the high-frequency, low-pressure braking of daily commutes. The premium ceramic formulation provides smooth, responsive stops at traffic lights and in congested traffic, while producing up to 60% less dust than semi-metallic alternatives. This means consistent performance for your daily drive and cleaner, easier-to-maintain alloy wheels.
Ensure safety during high-speed travel where reliable braking is critical. The advanced compound maintains a stable friction coefficient (μ) even under sustained use, effectively managing heat buildup. With a high operating temperature of up to 650°C, these pads resist brake fade, providing the dependable stopping power needed for safe highway merging, overtaking, and unexpected slowdowns.
A cost-effective and durable solution for light commercial vehicles used in delivery, transport, or service fleets. The ECE R90 certification guarantees a consistent and reliable safety standard, crucial for business liability and driver safety. The robust construction and extended service life reduce vehicle downtime and maintenance costs, offering superior value for high-mileage operations.
Built to perform reliably in challenging environments. The anti-corrosion coating on the backing plate protects against rust and seizing caused by road salt, humidity, or coastal climates. Combined with excellent wet-weather performance and superior thermal stability, these pads ensure dependable braking response whether you're facing rainy seasons, cold winters, or steep, mountainous terrains.
Professional Installation Recommended: For maximum safety and performance, we strongly recommend having these brake pads installed by a certified professional. This ensures correct fitment and system integrity.
Critical Bed-In Procedure: After installation, a proper bed-in process is essential to mate the pads evenly with the rotors. Perform 20-30 moderate brakings from 50 km/h to 20 km/h, allowing adequate cooling intervals between stops. Avoid heavy, forceful braking during the first 200 km.
This procedure deposits a uniform friction layer, ensuring immediate optimal performance, eliminating noise, and achieving the advertised service life. Always prioritize safe driving practices.