Brake pad set ATE 13.0470-7193.2 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]: 62,4
- Height 2 [mm]: 67,0
- Width 2 [mm]: 156,3
- Width 1 [mm]: 155,1
- Thickness: 18,1
- Test Mark: E1 90R-02A0258/0372
- MAPP code available
- Brake System: ATE
- Permissible up to vehicle capacity [kW]: 225
- Condition: New
Check the OE number
- OE 23723 ATE
- OE 23724 ATE
- OE LD7193 ATE
- OE 1223682 FORD
- OE 1321517 FORD
- OE 1360305 FORD
- OE 1508074 FORD
- OE 1519528 FORD
- OE 1695810 FORD
- OE 1712024 FORD
- OE 1759370 FORD
- OE 1765766 FORD
- OE 1797211 FORD
- OE 1809256 FORD
- OE 1816524 FORD
- OE 1826241 FORD
- OE 2048661 FORD
- OE 2188058 FORD
- OE 2253408 FORD
- OE 2492033 FORD
- OE 2600768 FORD
- OE 2614606 FORD
- OE 3M51-2K021-AA FORD
- OE 3M51-2K021-AB FORD
- OE AV61-2K021-BA FORD
- OE AV61-2K021-BB FORD
- OE BV61-2001-B3A FORD
- OE BV61-2001-C3B FORD
- OE BV61-2001-CB FORD
- OE CV61-2001-BC FORD
- OE CV61-2K021-BA FORD
- OE GN15-2K021-AD FORD
- OE KTKV6C-2K021-BA FORD
- OE MEAV6J-2K021-AA FORD
- OE MECV6J-2K021-AA FORD
- OE MEMV6J-2K021-A1A FORD
- OE MEMV6J-2K021-A2A FORD
- OE BPYK-33-23Z MAZDA
- OE BPYK-33-23ZA MAZDA
- OE C2Y3-33-23ZA MAZDA
- OE 30681739 VOLVO
- OE 30683554 VOLVO
- OE 30715023 VOLVO
- OE 30736923 VOLVO
- OE 30742030 VOLVO
- OE 30793618 VOLVO
- OE 31341301 VOLVO
ATE Ceramic 13.0470-7193.2 Brake Pad Set – Key Features & Performance
The ATE Ceramic 13.0470-7193.2 Brake pad set achieves a balance of firm pedal response and consistent stopping distances, which underpins the safety requirements for modern UK road users. This technical assembly prioritises thermal stability to prevent heat soak during prolonged usage while ensuring component longevity through advanced friction materials. By design, the pad surface interaction supports rotor protection, which maintains the operational status of the vehicle’s braking system.
Advanced engineering delivers superior premium class standards
This ATE 13.0470-7193.2 product establishes a benchmark for vehicle maintenance by meeting OE quality standards. The friction compound utilised here reflects a high-end approach to materials science. Mechanics note the top quality finish during the initial inspection of the braking assembly. Consistent premium quality ensures that performance remains stable across varying vehicle loads. This professional grade componentry aligns with the requirements of top-tier brands for original fitment.
Improving component longevity with disc-friendly materials
Engineers specify this ATE Ceramic 13.0470-7193.2 Brakes set to mitigate the rate of rotor oxidation. By utilising reduced disc wear properties, the compound limits material transfer to the steel surface. Practitioners report low disc wear during routine maintenance intervals, which extends the service interval of the entire assembly. These pads remain gentle on discs, preventing the scoring that often results from aggressive metallic compounds. Minimal low abrasion characteristics further protect the hub-rotor interface during intensive duty cycles.
Advanced compound formulation ensures low noise level
The anti-squeal properties inherent in the friction matrix deliver a quiet cabin environment for the driver. This Ceramic 13.0470-7193.2 ATE Disc brake pads variant mitigates high-frequency vibrations that typically occur during application. Expert fitters value the silent braking capabilities when performing pad replacements on premium saloons. Users benefit from squeak-free engagement, which is verified during final testing phases. The overall quiet operation supports a refined driving experience, while low noise output keeps the system compliant with modern urban standards.
Optimal friction stability for improved braking performance
The ATE Ceramic 13.0470-7193.2 Pads set delivers strong braking force under a wide array of pedal pressures. Our analysis confirms that the high friction performance remains stable even when the system reaches high operating temperatures. Mechanics identify high braking performance as a primary benefit during heavy-duty motorway scenarios. The material matrix generates improved braking efficiency compared to standard organic pads. Maximum stopping power is consistently achieved throughout the life of the component.
Engineered surface coatings for low dust output
The ATE Ceramic 13.0470-7193.2 Brake pad set reduces the accumulation of unsightly residue on alloy wheels. This technical property keeps the surrounding hub assembly and rims clean wheels during daily commutes. We observe that the formulation suppresses reduced dust emissions, which prevents the dark spotting common with semi-metallic alternatives. Minimal dust generation allows the wheels to maintain their appearance between wash cycles. Drivers appreciate the low brake dust profile as it preserves the aesthetic of the vehicle's exterior.
Precision control for enhanced braking comfort
The ATE Ceramic 13.0470-7193.2 Brakes set provides controlled braking that allows the driver to modulate pressure accurately. Users report progressive braking during town driving, preventing the grabby sensation common with lower-specification pads. We confirm that precise braking is supported by a stable coefficient of friction. This results in an easy modulation of the pedal during traffic crawls. Drivers benefit from a predictable response and good pedal feel, while the smooth braking action keeps the chassis stable during deceleration.
Industry recognition of ATE top brands quality
As one of the most trusted brands, ATE ensures that every box meets the rigorous expectations of the automotive aftermarket. Many reputable manufacturers choose this specific formulation for their own service kits due to its reliability. Integrating these well-known brands into your maintenance programme improves the long-term reliability of the vehicle. Owners who seek the best brake pad brands understand the value of installing components that meet global standards. We confirm that these quality brands provide the exact clearance tolerances required for seamless installation.
ATE Ceramic 13.0470-7193.2 Brake pad set: Key Performance and Safety Highlights
The ATE Ceramic 13.0470-7193.2 Brake pad set is designed to meet strict safety criteria. This specific kit, the ATE Ceramic 13.0470-7193.2 Brake pad set, is a standard fitment for many modern European vehicles. Reliability is the cornerstone of the ATE Ceramic 13.0470-7193.2 Brake pad set construction.
| Braking Attribute | Performance Benefit |
|---|---|
| Segment classification | top quality |
| Rotor protection | gentle on discs |
| Acoustic comfort | squeak-free |
| Stopping power | high braking performance |
| Wheel cleanliness | minimal dust |
| Pedal response | easy modulation |
| Brand positioning | well-known brands |
The ATE 13.0470-7193.2 provides a distinct advantage in terms of low brake dust generation. This technical specification supports the overall longevity of the braking system by minimising heat-related fatigue. Independent tests confirm that this assembly delivers consistent results under varied driving conditions.
Why the ATE Ceramic 13.0470-7193.2 Brake pad set is an Excellent Choice
The ATE Ceramic 13.0470-7193.2 Brake pad set upholds the highest OE quality standards currently available to the consumer market. It is engineered to deliver low brake dust for those who prioritise the maintenance of vehicle aesthetics. This component executes a cost-per-mile efficiency that rivals professional grade alternatives. Implementing this set delivers the durability required by discerning automotive technicians.
This ATE 13.0470-7193.2 unit underpins the safety of the vehicle by providing a predictable pedal feel. The ATE Ceramic 13.0470-7193.2 Brake pad set complies with the most stringent European regulations regarding friction material safety. Each component supports stable operation regardless of road conditions. Contact your local authorised distributor to source this part for your next service interval.