Brake pad set ATE 13.0470-7294.2 Ceramic not prepared for wear warning indicator, excl. wear warning contact
- Product line: ceramic
- Wear Warning Contact: not prepared for wear warning indicator, excl. wear warning contact
- Quantity Unit: Axle Set
- Height 1 [mm]: 61,2
- Height 2 [mm]: 56,2
- Width 2 [mm]: 123,0
- Width 1 [mm]: 123,0
- Thickness: 16,4
- Test Mark: E1 90R-02A0258/0091
- MAPP code available
- Brake System: ATE
- Permissible up to vehicle capacity [kW]: 225
- Condition: New
Check the OE number
- OE 25009 ATE
- OE 25011 ATE
- OE LD7294 ATE
- OE 3Q0 698 451 B SEAT / SKODA / VAG
- OE 3Q0 698 451 C SEAT / SKODA / VAG
- OE 3Q0 698 451 D SEAT / SKODA / VAG
- OE 3Q0 698 451 E SEAT / SKODA / VAG
- OE 3Q0 698 451 F SEAT / SKODA / VAG
- OE 3Q0 698 451 L SEAT / SKODA / VAG
- OE 3Q0 698 451 SKODA / VAG
- OE 3Q0 698 451 AA VAG
- OE 3Q0 698 451 G VAG
- OE 3Q0 698 451 H VAG
- OE 3Q0 698 451 J VAG
- OE 3Q0 698 451 N VAG
- OE 3Q0 698 451 S VAG
- OE 3QF 698 451 VAG
- OE 5G0 698 451 VAG
- OE 5Q0 698 451 VAG
- OE 5Q0 698 451 P VAG
- OE 5Q0 698 451 S VAG
- OE 5Q0 698 451 T VAG
- OE 8V0 698 451 A VAG
- OE 8V0 698 451 D VAG
ATE Ceramic 13.0470-7294.2 Brake Pad Set – Key Features & Performance
Reliable stopping power and thermal stability serve as the foundational requirements for any vehicle braking system operating on UK roads. The ATE Ceramic 13.0470-7294.2 Brake pad set achieves these standards by balancing friction stability with efficient thermal management. Technicians value the consistent rotor protection and firm pedal feel delivered by this specification, which manages heat soak during demanding transit conditions.
Achieving a superior low noise level
Modern vehicle maintenance demands quiet operation to ensure customer satisfaction during routine road use. This ATE 13.0470-7294.2 component minimizes the occurrence of high-frequency vibrations that typically cause audible annoyance. By utilising advanced materials, the friction block remains silent braking in various conditions. The anti-squeal properties reduce the requirement for secondary damping shims. Furthermore, the low noise quality ensures a refined cabin environment for the vehicle occupants.
Superior braking performance for daily driving
The ATE Ceramic 13.0470-7294.2 Disk brake pads execute a high friction performance that delivers confidence during heavy traffic. By design, the material guarantees maximum stopping power under varied load scenarios. This hardware supports a strong braking force, assisting the driver when rapid deceleration is required. We note that this ATE Ceramic 13.0470-7294.2 Pads set avoids the typical degradation seen in inferior friction compounds. Finally, the improved braking efficiency remains consistent across the entire service interval.
Meeting the highest premium class standards
Professional workshops demand parts that align with OE quality specifications to ensure compliance with manufacturer tolerances. As one of the top-tier brands, the product integrates seamlessly into existing hydraulic assemblies. Installing this Ceramic 13.0470-7294.2 ATE Brake pad ensures a premium build that satisfies rigorous engineering audits. Choosing high-end components reduces the risk of premature failure during critical operation. This professional grade solution underpins the trust mechanics place in established original equipment supply chains.
Effective reduction of low dust
Managing debris accumulation on alloy wheels maintains the visual standard of the vehicle exterior. The formulation applied to this ATE Ceramic 13.0470-7294.2 Brakes set prioritizes minimal dust to prevent unsightly build-up on rims. Reduced dust emissions are achieved through a unique binding agent that resists heavy particulate shedding. Drivers benefit from clean wheels, which simplifies long-term vehicle maintenance schedules. Opting for low brake dust materials prevents the caustic chemical staining often caused by metallic pad degradation.
Integration of top brands technology
Reliable systems depend on components from quality brands that possess documented testing histories. These reputable manufacturers ensure that every part meets specific physical dimensions and density requirements. The ATE Ceramic 13.0470-7294.2 unit confirms that trusted brands deliver the consistency required for fleet or personal vehicle support. When using well-known brands, the technician encounters fewer installation variables or tolerance mismatches. Incorporating best brake pad brands into the service cycle prevents common compatibility errors found with aftermarket alternatives.
Reliable cold performance in winter conditions
A brake system must function effectively when cold to ensure safety from the first application of the pedal. This pad set provides an immediate braking response, avoiding the sluggish feedback associated with lower-grade materials. We observe that strong braking when cold is standard with this chemical composition. The component exhibits good cold bite even during sub-zero temperatures typical of the British winter. This reliable cold performance ensures the hydraulic system is ready for immediate intervention without requiring significant warm-up cycles.
Advanced disc-friendly material properties
Preserving the longevity of brake rotors is critical for controlling total owner costs. This hardware is gentle on discs, preventing the deep scoring often caused by excessively abrasive friction additives. Because the pad exhibits low disc wear, the service interval for the entire braking assembly is extended. Achieving low abrasion protects the metallurgy of the iron casting from unnecessary surface degradation. This disc-friendly design is vital for those seeking to maximize the interval between rotor replacements.
Optimised braking comfort for daily transit
Predictable response is essential for the smooth operation of modern hydraulic systems. The ATE Ceramic 13.0470-7294.2 configuration allows for easy modulation, enabling the driver to control the vehicle speed with high accuracy. Controlled braking reduces the physical fatigue of the driver in stop-start environments. Precise braking ensures that every input at the lever or pedal translates into direct, linear retardation force. The progressive braking characteristic of this pad improves the connection between the vehicle and the road surface.
High heat resistance during intensive use
Thermal stability is a primary metric for pads intended for heavy or rapid usage. The friction material is heat resistant, allowing it to maintain the required coefficient of friction under sustained high-load conditions. The composition includes fade-resistant materials that prevent the pedal from dropping during prolonged descents. By design, the pad handles high heat without compromising the internal hydraulic seals or brake fluid temperature. High temperature resistance is built into the compound to ensure safety margins are maintained during intense motorway transit.
ATE Ceramic 13.0470-7294.2 Disk brake pads: Key Performance and Safety Highlights
This ATE Ceramic 13.0470-7294.2 Disk brake pads specification identifies the balance between stopping efficacy and component durability. Technicians favour this ATE Ceramic 13.0470-7294.2 Disk brake pads assembly for its documented ability to handle thermal loads without excessive degradation. The ATE Ceramic 13.0470-7294.2 Disk brake pads set serves as the primary upgrade for vehicles requiring sustained friction stability.
| Braking Attribute | Performance Benefit |
|---|---|
| Economic efficiency | squeak-free |
| Price-performance ratio | high braking performance |
| Cost-effectiveness | OE quality |
| Segment classification | minimal dust |
| Manufacturing standard | quality brands |
| Brand positioning | effective when cold |
| Urban driving suitability | reduced disc wear |
| Dynamic performance | easy modulation |
| Adaptive handling | fade-resistant materials |
| Stopping power | high friction performance |
| Thermal stability | thermal stability |
| Cold-start reliability | good cold bite |
| Pedal response | predictable response |
| Acoustic comfort | squeak-free |
| Wheel cleanliness | low brake dust |
| Service lifespan | low disc wear |
| Rotor protection | reduced disc wear |
The selection of the ATE 13.0470-7294.2 assembly provides a balanced solution for those prioritising low brake dust and long-term rotor protection. This unit represents an investment in safety that aligns with the maintenance schedules of modern vehicle manufacturers. By reducing the physical wear on the discs, the overall cost-per-mile is lowered significantly compared to semi-metallic alternatives.
Why the ATE Ceramic 13.0470-7294.2 Brake pad set is an Excellent Choice
Achieving OE quality ensures that your vehicle retains its original handling characteristics after the service is completed. These components represent the professional grade standard necessary for high-mileage users and fleet operators. Focusing on durability reduces the total cost-per-mile by extending the time between mechanical interventions. The high-end manufacturing processes result in a part that meets the most stringent safety standards.
When selecting the ATE 13.0470-7294.2, you confirm that your braking system is equipped with hardware designed for consistency. The ATE Ceramic 13.0470-7294.2 Disk brake pads set provides the reliability expected by automotive professionals. Our technical assessment concludes that this component delivers superior thermal management and friction stability. Contact our parts department to verify fitment for your vehicle today.
13.0470-7294.2 ATE sets of brake pads contain all required installation elements.
Brake pads have optimal friction coefficient, thereby reducing the risk of damaging the brake disc.
Thanks to the carefully chosen composition of the friction mixture, smaller amount of brake dust is generated during braking, and the braking distance is reduced.
13.0470-7294.2 ATE sets of brake pads do not contain heavy metals and other chemical elements that are dangerous for health; they are resistant to overheating and noiseless.
You can order high-quality components at a low price at sparepartstore24.co.uk.