Brake disc ATE 24.0128-0159.1 296,0x28,0mm, 5x114,3, Vented

Article №: 24.0128-0159.1

Brake disc ATE 428159

Details
  • Diameter: 296,0
  • Brake Disc Type: Vented
  • Number of Holes: 5
  • Bolt Hole Circle Ø [mm]: 114,3
  • Brake Disc Thickness: 28,0
  • Minimum thickness [mm]: 25,0
  • Centering Diameter [mm]: 62,0
  • Inner Diameter [mm]: 145,0
  • Height: 49,2
  • Surface: Coated
  • MAPP code available
  • Test Mark: E1 90R-02C0115/0041
  • Bore Diameter [mm]: 14,5
  • Drilled: no
  • Condition: New
Brake rotor 296,0x28,0mm, 5x114,3, Vented (ATE 428159)
Suitable for LEXUS, TOYOTA
0.0 - reviews
-43%
compared to RRP: £98.82
£55.49
incl. 20% VAT, excl. delivery costs
items available: 18
Suitable for these vehicles

ATE 24.0128-0159.1 Brake disc – Key Features & Performance

The ATE 24.0128-0159.1 Brake disc provides essential thermal stability and geometric rigidity required for demanding road conditions. By utilizing high-carbon metallurgy, this component maintains precise lateral run-out tolerances, ensuring consistent contact between the friction surface and pad. Mechanics benefit from these exact dimensions during installation, which significantly reduce bedding-in time and promote long-term structural integrity.


Establishing predictable braking comfort through component precision

Engineers design this system to ensure progressive braking characteristics under varied pedal pressures. By employing precise braking, the ATE 24.0128-0159.1 Brake discs deliver reliable feedback to the driver. Drivers will appreciate the easy modulation during heavy traffic, facilitating a predictable response when sudden deceleration is required. This ATE 24.0128-0159.1 component also provides good pedal feel, achieving smooth braking throughout its operational lifecycle. Effective controlled braking remains the primary design objective for this assembly.


Maintaining geometric warp resistance under extreme thermal stress

The 24.0128-0159.1 ATE component consistently maintains shape under heat to prevent undesirable judder during heavy use. This warp-resistant metallurgy ensures the disc stays stable under stress without losing structural flatness. Engineers require a deformation-resistant platform to guarantee safety, as this specific manufacturing process prioritises long-term reliability over basic production standards.


Comparing the reputation of top brands for vehicle safety

Automotive professionals frequently evaluate quality brands when selecting replacement friction hardware. ATE 24.0128-0159.1 ATE 24.0128-0159.1 Brake disc set selection typically highlights the necessity of choosing from well-known brands to ensure system compatibility. Identifying reputable manufacturers simplifies procurement for workshop managers seeking to maintain fleet safety standards. Technicians often prioritise trusted brands to mitigate the risk of premature component failure.


Delivering premium class quality for modern braking systems

This component exemplifies premium quality through rigorous testing protocols during the casting phase. By selecting top-tier brands for vehicle maintenance, workshops ensure that the top quality standards are met for every installation. Modern premium parts must offer OE quality, providing the durability expected of professional grade equipment. Opting for a high-end solution guarantees that the mechanical interface functions as intended by the vehicle designer.


Optimizing braking performance for consistent stopping force

Reliable components must provide improved braking efficiency in all ambient conditions. Maximum stopping power is achieved when the rotor surfaces interact correctly with high-friction pad compounds. 24.0128-0159.1 ATE Rotors exhibit high braking performance, allowing for consistent pressure application. Achieving strong braking force requires high friction performance that resists degradation over thousands of miles.


Ensuring heat resistance within the high-friction interface

Materials must be heat resistant to prevent structural fatigue during repeated stops. Superior thermal stability allows the disc to maintain its physical properties even under high loads. Utilizing fade-resistant materials prevents the loss of stopping capacity when driving on steep gradients. High temperature resistance ensures that the metal handles high heat without suffering from premature surface cracking.


Managing acoustic comfort with a low noise level

Minimizing vibration is essential for ensuring low noise during every trip. A noise-free environment is maintained through precise surface finishing, ensuring a squeak-free user experience. Delivering silent braking is a hallmark of superior engineering, providing quiet operation for the driver. Implementing anti-squeal measures confirms the disc is manufactured to stringent internal standards.


Advanced cooling efficiency for prolonged hardware life

Engineers implement a ventilated design to ensure the unit stays within operational temperature windows. Achieving fast heat dissipation is critical for avoiding thermal saturation. By utilizing optimised airflow, the disc remains cool even under sustained braking loads. These cooling channels are integral to the hardware, as improved cooling prevents the boiling of hydraulic fluid in the calipers.


Refined engineering of internally ventilated discs

The design features internally ventilated structures to facilitate rapid air exchange across the disc faces. This optimised airflow design pulls fresh air through the centre of the rotor, drawing heat away from the friction plates. Such ventilated components are vital for maintaining consistent friction coefficients. Strategic placement of cooling vanes maximizes the internal surface area for superior thermal management.


ATE 24.0128-0159.1 Brake discs: Key Performance and Safety Highlights

The technical specifications provided by 24.0128-0159.1 ATE demonstrate a commitment to safety. Integrating high-specification rotors ensures that vehicle handling remains stable. These components represent a significant upgrade over standard replacement parts.


Braking Attribute Performance Benefit
Pedal response smoothness Easy modulation
Geometric stability Stable under stress
Brand positioning Well-known brands
High-end quality segment Top quality
Stopping power High braking performance
Thermal stability Fade-resistant materials
Acoustic comfort Squeak-free
Heat dissipation efficiency Optimised airflow
Internally vented design Optimised airflow design

Selecting the correct ATE 24.0128-0159.1 Brake disc set ensures that the hydraulic system operates at peak capacity. Utilizing reputable hardware contributes to consistent deceleration, which is essential for heavy traffic scenarios. The use of fade-resistant materials allows for stable performance, ensuring safety is never compromised during challenging commutes.


Why the ATE 24.0128-0159.1 Brake disc is an Excellent Choice

Consistent rotor wear is a primary indicator of component quality, and this part excels in maintaining surface integrity over extended service intervals. By matching the engineering standards of the original equipment, this unit minimizes the need for premature replacements. Fleet owners often find this approach provides a superior return on investment through reduced maintenance downtime. The robust casting process ensures that the disc remains compliant with strict safety regulations.


Installing ATE 24.0128-0159.1 is a straightforward procedure for qualified technicians, requiring no specialized modifications to the hub assembly. This ATE 24.0128-0159.1 Brake disc set adheres to exact mounting specifications to ensure perfect alignment with existing calipers. By integrating the ATE 24.0128-0159.1, you effectively restore the factory-standard braking response of the vehicle. Please contact our technical support department to confirm your specific vehicle fitment requirements.


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  • ATE Brake rotor 296,0x28,0mm, 5x114,3, Vented 428159 with PayPal pay
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