Brake disc ATE 24.0112-0159.1 302,0x12,0mm, 5x112,0, solid

Article №: 24.0112-0159.1

Brake disc ATE 412159

Details
  • Diameter: 302,0
  • Brake Disc Type: solid
  • Number of Holes: 5
  • Bolt Hole Circle Ø [mm]: 112,0
  • Brake Disc Thickness: 12,0
  • Minimum thickness [mm]: 10,0
  • Centering Diameter [mm]: 68,0
  • Inner Diameter [mm]: 177,0
  • Height: 49,4
  • Surface: Coated
  • MAPP code available
  • No. of holes 2: 9
  • Test Mark: E1 90R-02C0165/0950
  • Bore Diameter [mm]: 15,3
  • Supplementary Article / Supplementary Info Info 2: with bolts/screws
  • Drilled: no
  • Condition: New
Brake rotor 302,0x12,0mm, 5x112,0, solid (ATE 412159)
Suitable for AUDI
0.0 - reviews
-52%
compared to RRP: £128.50
£60.49
incl. 20% VAT, excl. delivery costs
Over 100 items in stock
OE Numbers
Direct OEM number comparison
Suitable for these vehicles

ATE 24.0112-0159.1 Brake disc – Key Features & Performance

Precision-engineered for reliability, the ATE 24.0112-0159.1 Brake disc provides consistent thermal dissipation and structural casting quality required for rigorous operational demands. This component ensures that lateral run-out is minimised, maintaining exact thickness variation tolerances essential for stable operation under high-load conditions. By integrating these specific manufacturing standards, the assembly supports reliable braking consistency for UK road environments, where varied usage cycles necessitate high durability.


Internally vented design for thermal management

The ATE 24.0112-0159.1 Brake discs incorporate an internally ventilated structure to facilitate optimal heat transfer during heavy application. These ventilated components leverage cooling vanes to expedite airflow, preventing potential structural fatigue during sustained deceleration. Engineers often specify this internally ventilated configuration to ensure longevity in demanding conditions. Utilizing an optimised airflow design, the assembly effectively mitigates heat build-up at the friction surface. This specific ATE 24.0112-0159.1 Brake discs setup guarantees that core operating temperatures remain within the design specification.


Thermal stability in demanding road conditions

Achieving superior heat resistance requires materials that retain mechanical strength during intense friction cycles. The component exhibits thermal stability to prevent rapid degradation under heavy use. These fade-resistant materials ensure that braking response remains predictable even after repeated heavy applications. Being heat resistant, the alloy composition maintains integrity when handling high heat. Furthermore, the high temperature resistance inherent in this ATE 24.0112-0159.1 Brake disc set ensures operational safety is never compromised by hardware fatigue.


Stopping power for varied vehicle applications

The ATE 24.0112-0159.1 Brake disc set is engineered to provide maximum stopping power across diverse driving profiles. With improved braking efficiency, the rotor surface facilitates rapid engagement of the pad material. This high braking performance ensures shorter deceleration distances in critical scenarios. By delivering strong braking force, the assembly supports the vehicle chassis during heavy load requirements. Finally, the ATE 24.0112-0159.1 Brake disc set achieves high friction performance, ensuring the driver retains complete control.


Geometric stability under intensive stress

Effective warp resistance is a fundamental requirement for maintaining consistent surface contact between the rotor and pad. The assembly maintains shape under heat, preventing the common issue of judder during high-speed applications. Engineered to be deformation-resistant, the metallurgical structure prevents premature bowing. This warp-resistant design ensures that the rotor remains true throughout its service life. Using a 24.0112-0159.1 ATE component provides the necessary geometry to remain stable under stress, even in challenging environments.


Pedal response smoothness for driver confidence

Achieving refined braking comfort is essential for both vehicle control and passenger safety. The component offers a predictable response, allowing for minute adjustments during stop-start traffic. Delivering good pedal feel, the assembly eliminates the vagueness often found in inferior replacement parts. By facilitating controlled braking, the system ensures that pressure is applied evenly across the friction pad area. Through smooth braking, the driver experiences a linear deceleration curve. Incorporating precise braking mechanics, this ATE 24.0112-0159.1 design promotes progressive braking and easy modulation in every scenario.


Brand positioning of original equipment manufacturers

Selecting top brands is paramount for ensuring total compatibility with existing hub architectures. These reputable manufacturers adhere to strict tolerance standards that ensure a seamless fitment process. Choosing the best brake disc brands reduces the likelihood of premature failure or compatibility issues. Many quality brands focus on proprietary casting techniques that extend the life of the surrounding suspension components. By opting for trusted brands like ATE 24.0112-0159.1, mechanics ensure well-known brands deliver the expected reliability.


High-end quality segment for vehicle maintenance

The premium class of braking components represents the highest standard of manufacturing precision currently available. These parts offer professional grade build quality that exceeds basic aftermarket expectations. Providing OE quality, they ensure that every installation meets the original vehicle manufacturer requirements. This premium quality ensures that the metallurgical density remains consistent across the entire disc profile. As a premium choice, it represents the standard expected by top-tier brands for high-end automotive applications.


Heat dissipation efficiency for consistent performance

Advanced cooling efficiency is achieved through geometry that promotes rapid heat dissipation. These cooling channels are strategically placed to ensure the hub and wheel studs are shielded from excessive thermal transfer. With improved cooling, the braking surface recovers quickly from high-stress events. The ATE 24.0112-0159.1 Disc brakes design is inherently ventilated to promote rapid thermal egress. Through optimised airflow, this unit facilitates fast heat dissipation, ensuring that the entire braking assembly maintains structural equilibrium.


ATE 24.0112-0159.1 Brake discs: Key Performance and Safety Highlights

The integration of 24.0112-0159.1 ATE Rotors into the vehicle braking system offers clear mechanical advantages. This table delineates the performance benefits associated with the specific engineering characteristics of the component. Each attribute contributes to a comprehensive upgrade in safety and operational longevity.


Braking AttributePerformance Benefit
Internally vented designoptimised airflow design
Thermal stabilityhandles high heat
Stopping powerhigh braking performance
Geometric stabilitywarp-resistant
Pedal response smoothnesscontrolled braking
Brand positioningquality brands
High-end quality segmentpremium quality
Heat dissipation efficiencyoptimised airflow

Regular inspection of the ATE 24.0112-0159.1 Brake disc ensures that the cooling efficiency remains at optimal levels for daily usage. Maintenance personnel should monitor the surface for signs of fatigue, ensuring the brake system continues to operate within its design parameters. The ATE 24.0112-0159.1 represents a commitment to high-end engineering, delivering consistent results for the end user.


Why the ATE 24.0112-0159.1 Brake disc is an Excellent Choice

The focus on original equipment quality ensures that every rotor provides a favourable cost-per-mile ratio for the owner. By reducing the frequency of replacement due to premature wear, these components provide an efficient solution for long-term fleet or private maintenance. Each ATE 24.0112-0159.1 Brake disc set serves to maintain the manufacturer-intended stopping distances throughout the vehicle service cycle. Investing in such high-standard hardware effectively mitigates the risks associated with inferior, lower-spec components that often distort under standard operating loads.


When selecting a replacement, the ATE 24.0112-0159.1 remains a primary choice due to its manufacturing consistency and metallurgical integrity. This ATE 24.0112-0159.1 Brake disc set offers the reliability required for modern road conditions. For professional technicians and vehicle owners alike, it is recommended to ensure all fitting surfaces are cleaned prior to installation to guarantee proper seating of the assembly. Please consult your local specialist for precise fitment instructions regarding your specific vehicle model.


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  • ATE Brake rotor 302,0x12,0mm, 5x112,0, solid 412159 with PayPal pay
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  • Brake rotors Centering Diameter [mm]: 68,0 (ATE, 24.0112-0159.1) with Bank Transfer pay