Brake disc DELPHI BG4696C 304x28mm, 5, Vented
- Diameter: 304
- Brake Disc Type: Vented
- Number of Holes: 5
- Brake Disc Thickness: 28
- Minimum thickness [mm]: 26
- Centering Diameter [mm]: 71
- Height: 48,1
- Surface: Coated
- Test Mark: E4 90R-02C0703/2629
- Drilled: no
- Condition: New
DELPHI BG4696C Brake disc – Key Features & Performance
The DELPHI BG4696C Brake disc offers superior thermal stability and structural casting quality, ensuring consistent deceleration across varying operational conditions. Engineered to meet strict OE specifications, this component provides the mechanical reliability required for demanding road environments. The precise manufacturing tolerances inherent in the design minimise thickness variation, which is essential for maintaining a stable interface with the pad surface.
Advanced material quality for structural integrity
This BG4696C DELPHI Brake discs assembly utilises improved metallurgy to reduce the likelihood of surface cracking during thermal cycling. Engineers select high-grade materials to ensure the disc maintains its flatness even when subjected to intense pressure. By incorporating premium alloy, the component resists premature deformation common in lower-specification alternatives. The manufacturer employs high carbon content to enhance the overall mechanical robustness of the casting.
Ensuring long-term durability for consistent service
The heavy-duty construction of these components allows for an extended lifespan, reducing the frequency of replacement intervals for vehicle owners. Incorporating a long service life into the design, the product ensures that technical performance does not diminish as the mileage accumulates. High durability is a fundamental requirement for modern passenger vehicles, and these units consistently meet these operational benchmarks. The wear-resistant surface contact area ensures that the friction interface remains stable over thousands of miles. Achieving a long-lasting service life, the build quality stands up to the rigors of sustained, high-intensity use.
Optimal cooling efficiency for thermal management
Improved cooling is achieved through an internal structure that promotes constant airflow during wheel rotation. By utilising optimised airflow, the disc avoids the onset of thermal fade during aggressive deceleration cycles. These cooling channels are engineered to draw ambient air into the centre of the assembly, effectively managing excess heat. Fast heat dissipation remains a priority for the design team, preventing excessive thermal saturation of the pad material. Being fully ventilated, the geometry is specifically tuned to prevent heat soak during stop-start traffic conditions.
Reliable braking performance in demanding conditions
Improved braking efficiency ensures that the driver experiences a predictable and firm response from the pedal assembly. Providing high braking performance, the DELPHI BG4696C delivers consistent contact geometry between the disc and the friction material. Achieving maximum stopping power relies on the precision of the manufacturing process, which this set achieves with high accuracy. The unit generates a strong braking force that remains stable regardless of the moisture present on the road surface. By maintaining high friction performance, the component ensures that the vehicle adheres to safety standards without excessive pedal travel.
Engineered as internally ventilated discs
The internally ventilated core allows for rapid temperature reduction, which is vital for preventing fluid boiling in the calipers. These cooling vanes act as a centrifugal pump, moving air from the hub area toward the outer circumference. By adopting an optimised airflow design, the product prevents structural fatigue caused by uneven heating patterns across the disc surface. This ventilated configuration is essential for modern braking systems, where weight-to-power ratios place increased demand on the hardware.
Superior protection with coated discs
Every component is fully coated at the factory to prevent surface oxidation before installation. This protective layer ensures that the cooling channels remain clear and functional throughout the initial service period. Applying an anti-rust coating prevents the buildup of iron oxide on non-friction surfaces, preserving the structural integrity of the hub contact. When the units are painted effectively, they maintain an aesthetic appearance while ensuring that the mating surfaces remain free of debris-trapping corrosion.
Exceptional value for money for professional maintenance
Cost-effective solutions are essential for fleet managers looking to control operational overheads without compromising safety. The price-to-quality ratio reflects the investment in high-standard materials rather than marketing markups. Offering high quality for a good price, this product allows garages to perform reliable repairs while staying within client budgets. We believe this represents the best value for money in the current aftermarket sector. Choosing this option provides good value, as the wear rates are significantly lower than standard cast alternatives.
Advanced heat resistance for stable operation
Thermal stability is achieved through careful management of the iron casting process during the initial manufacturing stage. The material remains heat resistant even under the stresses of steep descents or repeated high-speed braking manoeuvres. By maintaining high temperature resistance, the disc avoids the crystalline changes that lead to warping or judder. These fade-resistant materials ensure that the coefficient of friction remains constant across a wider temperature range. The casting handles high heat with minimal expansion, keeping the assembly within tight geometric tolerances.
DELPHI BG4696C Brake discs: Key Performance and Safety Highlights
This BG4696C DELPHI Rotors set demonstrates the necessity of high-precision engineering in critical safety systems. Our testing indicates that the balance between thermal management and structural mass provides a stable foundation for the entire chassis. The following table illustrates the core benefits provided by this component design.
| Braking Attribute | Performance Benefit |
|---|---|
| High-carbon cast iron alloy | premium alloy |
| Extended service life | long service life |
| Heat dissipation efficiency | cooling channels |
| Stopping power | maximum stopping power |
| Internally vented design | optimised airflow design |
| Protective anti-corrosive coating | anti-rust coating |
| Cost-effective efficiency | high quality for a good price |
| Thermal stability | high temperature resistance |
The integration of the DELPHI BG4696C Brake disc set into a vehicle maintenance schedule provides significant advantages regarding long-term reliability. By focusing on thermal stability and robust casting, these units mitigate the risks associated with premature brake fade and mechanical distortion. This DELPHI BG4696C represents a high-quality, cost-effective upgrade for any technician seeking to ensure long-term driver safety.
Why the DELPHI BG4696C Brake disc is an Excellent Choice
The commitment to OE-level manufacturing standards ensures that every unit offers predictable wear rates and consistent friction levels. Technicians benefit from the reduced preparation time afforded by factory-applied surface treatments. This level of quality control minimises the total cost-per-mile, making it an ideal selection for regular vehicle servicing. Consistent performance is the hallmark of the DELPHI manufacturing philosophy.
As a technical specialist, I recommend the use of this component for any application requiring high geometric stability under load. This DELPHI BG4696C provides the necessary resistance to thermal stress, ensuring that safety systems operate within their design envelopes. By selecting this DELPHI BG4696C Brake disc set, you are choosing a solution verified for durability and consistent stopping force. Contact our technical department today to confirm compatibility with your specific vehicle chassis and model requirements.