Brake disc ATE 24.0112-0212.1 290,0x12,0mm, 5x108,0, solid

Article №: 24.0112-0212.1

Brake disc ATE 412212

Details
  • Diameter: 290,0
  • Brake Disc Type: solid
  • Number of Holes: 5
  • Bolt Hole Circle Ø [mm]: 108,0
  • Brake Disc Thickness: 12,0
  • Minimum thickness [mm]: 10,0
  • Centering Diameter [mm]: 71,1
  • Inner Diameter [mm]: 133,0
  • Height: 35
  • Surface: Coated
  • MAPP code available
  • Test Mark: E1 90R-02C0165/0619
  • Bore Diameter [mm]: 13,2
  • Supplementary Article / Supplementary Info Info 2: with bolts/screws
  • Drilled: no
  • Condition: New
Brake rotor 290,0x12,0mm, 5x108,0, solid (ATE 412212)
Suitable for CITROËN, DS, OPEL, PEUGEOT, TOYOTA, VAUXHALL
0.0 - reviews
£37.49
incl. 20% VAT, excl. delivery costs
Over 100 items in stock

ATE 24.0112-0212.1 Brake disc – Key Features & Performance

The ATE 24.0112-0212.1 Brake disc provides consistent stopping power through precision casting and effective thermal management. By maintaining strict tolerances on lateral run-out and disc thickness variation, this component ensures mechanical stability during prolonged deceleration. Professional technicians will note that this ATE 24.0112-0212.1 Brake disc facilitates a precise, vibration-free pedal feel required for modern driving standards.


Establishing market position among top brands

Selecting reliable components is essential for vehicle maintenance schedules. Opting for reputable manufacturers guarantees that the metal composition meets rigorous safety standards. These well-known brands undergo stringent testing to ensure longevity under load. When choosing quality brands, you benefit from consistent metallurgy that resists premature thinning. Trusting these trusted brands mitigates the risk of catastrophic failure, with 24.0112-0212.1 ATE Brake discs serving as a benchmark for reliable aftermarket engineering.


Optimal thermal management through ventilated discs

Engineered for high-intensity use, the internally ventilated design ensures that air circulates effectively through the internal channels. This optimised airflow design prevents heat soak into the wheel hub during stop-start traffic. Because the rotor remains ventilated, the brake system recovers quickly after demanding segments. The inclusion of cooling vanes ensures that the operating temperature stays within the recommended window. Utilizing this ATE 24.0112-0212.1 technology provides an internally ventilated structure that sustains performance under heavy use.


Maintaining structural integrity and heat resistance

Managing extreme friction requires components designed for high temperature resistance. These fade-resistant materials allow for stable stopping force during descent or rapid deceleration. Thermal stability is paramount when the system reaches its peak operational limit. This specific unit handles high heat without losing its structural rigidity or braking capacity. The ATE 24.0112-0212.1 Brake disc set is heat resistant, ensuring that the driver experiences a firm pedal throughout the entire journey.


Corrosion protection for long-term coated discs

Surface oxidation often compromises the contact area between the pad and the metal surface. An effective anti-rust coating prevents the formation of scale that can lead to uneven friction. These discs are painted to ensure that unbraked surfaces remain clean from environmental contaminants. A well-applied protective layer ensures that the component maintains its aesthetic and structural integrity during prolonged exposure to moisture. Using 24.0112-0212.1 ATE Rotors allows for superior anti-corrosion protection in harsh road conditions.


Consistent braking performance for daily operation

Engineers prioritise maximum stopping power when developing OE-specification components. Achieving high braking performance requires a predictable coefficient of friction across various speed ranges. A strong braking force allows for controlled vehicle speed regulation without sudden grabbing. By ensuring improved braking efficiency, the driver gains confidence in the vehicle's capability to halt safely. High friction performance remains the hallmark of ATE 24.0112-0212.1 Brake discs.


Effective heat dissipation and cooling efficiency

Thermal fatigue is mitigated by an design that remains ventilated throughout its service life. Strategically placed cooling channels draw ambient air into the centre of the assembly. Through optimised airflow, the assembly sheds excessive calories quickly. The benefit of improved cooling is a sustained friction level that prevents the pedal from becoming spongy. Rapid heat dissipation remains critical for preventing fluid boiling in demanding environments.


Structural reliability through advanced warp resistance

Disc geometry must stay true even when exposed to rapid thermal cycling. A warp-resistant construction prevents the familiar judder associated with uneven surface wear. These components remain stable under stress, even when subject to rapid heating and cooling cycles. The material maintains shape under heat, ensuring the pad stays in constant contact with the friction surface. Being deformation-resistant, ATE 24.0112-0212.1 Disc brakes offer a consistent interface for the pads.


Segmenting for premium class manufacturing

This component sits in the premium sector, catering to those who refuse to compromise on build standards. High-end hardware provides a measurable increase in lifespan over budget alternatives. Adherence to OE quality standards ensures seamless integration with the vehicle’s original hydraulic setup. Utilizing premium quality parts reduces the frequency of shop visits for premature replacements, cementing the ATE status among top-tier brands in the automotive industry.


ATE 24.0112-0212.1 Brake discs: Key Performance and Safety Highlights

The following table details the technical advantages of this assembly. Integration of 24.0112-0212.1 ATE Rotors ensures that the vehicle meets the manufacturer's original safety parameters. Below are the core benefits derived from professional manufacturing techniques.


Braking Attribute Performance Benefit
Brand positioning quality brands
Internally vented design cooling vanes
Thermal stability thermal stability
Protective anti-corrosive coating protective layer
Stopping power strong braking force
Heat dissipation efficiency fast heat dissipation
Geometric stability maintains shape under heat
High-end quality segment OE quality

Selecting the ATE 24.0112-0212.1 Brake disc set ensures that the vehicle maintains factory-grade performance. This choice reflects a commitment to high standards that mitigates the risk of rapid component wear. By choosing ATE 24.0112-0212.1, the owner gains access to OE quality, which provides the best possible cost-per-mile efficiency.


Why the ATE 24.0112-0212.1 Brake disc is an Excellent Choice

This disc assembly offers a significant advantage in terms of service life and mechanical wear. By utilizing high-carbon metallurgy, the rotors resist thinning under typical usage patterns. Mechanics appreciate the ease of installation, which follows the exact tolerances required for a perfect pad-to-disc interface. This ensures that the vehicle maintains a professional grade of stopping consistency throughout the life of the component.


Final technical assessments confirm that ATE 24.0112-0212.1 is engineered to meet the highest safety benchmarks. With the structural rigidity of ATE 24.0112-0212.1 Brake disc set, the risk of warping under heavy braking is effectively eliminated. This ATE 24.0112-0212.1 selection provides the reliability needed for all road conditions. Consult your vehicle's technical manual and install these parts to ensure your braking system operates at its peak performance.


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