Brake pad set TEXTAR 2398202 with acoustic wear warning
- Wear Warning Contact: with acoustic wear warning
- Quantity Unit: Axle Set
- Number of wear indicators [per axle]: 1
- Height: 53,3
- Width [mm]: 122,8
- Thickness: 17,8
- WVA Number: 23982
- Weight [kg]: 1,312
- Supplementary Article / Supplementary Info Info 2: with brake caliper screws
- Supplementary Article / Supplementary Info: with accessories
- Article number of recommended accessories: 82054300
- Brake System: Bosch
- Packaging length [cm]: 15,2
- Packaging width [cm]: 8,8
- Packaging height [cm]: 8,4
- Condition: New
- OE 93189815 GENERAL MOTORS
- OE 93191698 GENERAL MOTORS / OPEL
- OE 1605258 OPEL
- OE 1605353 OPEL
- OE 1605357 OPEL
- OE 1605359 OPEL
- OE 1680880580 OPEL
- OE 93167073 OPEL
- OE 93169174 OPEL / VAUXHALL
- OE 93169254 OPEL / VAUXHALL
- OE 93191697 OPEL
- OE 23982 TEXTAR
- OE 23982 178 1 5 TEXTAR
- OE 24288 TEXTAR
- OE 1605226 VAUXHALL
TEXTAR 2398202 Brake Pad Set – Key Features & Performance
Maintaining consistent stopping distances and high thermal stability ensures that the TEXTAR 2398202 Brake pad set delivers reliable deceleration under varied road conditions. Mechanics prioritise components that combine robust rotor protection with a firm pedal response for everyday operation. Selecting this high-specification equipment helps avoid premature component degradation across diverse vehicle fleets.
Maintaining consistent heat resistance in heavy braking
The 2398202 TEXTAR range exhibits exceptional heat resistant characteristics during intense operation. Operators will value the thermal stability demonstrated during repeated high-load deceleration cycles. Advanced fade-resistant materials prevent the typical performance drop associated with excessive friction temperatures. This specific assembly handles high heat effectively without compromising the braking circuit. Consistent high temperature resistance remains standard for this heavy-duty friction solution.
Engineering superior durability for demanding road use
The TEXTAR 2398202 provides an extended lifespan for high-mileage vehicle applications. Workshop technicians confirm that this long-lasting design minimises the frequency of maintenance interventions. Installation of this heavy-duty component supports rigorous professional use. Engineers highlight the wear-resistant compounds used to ensure high durability over time. A long service life confirms the build quality expected from such an established friction specialist.
Optimising cold performance for morning driving
Immediate braking response is observed even during initial vehicle movement in low ambient temperatures. The TEXTAR 2398202 Disc pads rely on a chemical structure designed for reliable cold performance from the first application. Strong braking when cold is standard across the specified temperature range. Mechanics often note the good cold bite that develops rapidly upon the first application of hydraulic pressure. Effective when cold, this friction formulation removes the need for extended warm-up intervals.
Refining braking comfort for daily motorists
This TEXTAR 2398202 Pads set facilitates progressive braking for a smooth transition in traffic environments. Drivers benefit from a predictable response that eliminates grabby contact during urban manoeuvres. Controlled braking under various conditions keeps pedal effort consistent for the operator. Smooth braking is the outcome of a refined pad-to-rotor interaction. Easy modulation allows for precise braking, ensuring that the driver maintains complete control of the vehicle.
Defining the premium class of friction materials
The TEXTAR 2398202 Brakes set occupies a top quality position within the aftermarket sector. Automotive engineers recognise this as a high-end replacement component compared to budget alternatives. Inclusion within top-tier brands signifies rigorous testing protocols that exceed basic safety requirements. The premium construction ensures that vehicle handling remains balanced and secure. Professional grade materials underpin the reputation of this specific friction kit.
Reducing low dust output for alloy protection
These components promote clean wheels by controlling the shedding of friction particles during the deceleration process. Minimal dust accumulation is achieved through the use of advanced binders that bind surface residues efficiently. Low brake dust production keeps rim aesthetics intact over extended periods. Reduced dust emissions are a common requirement for modern European alloy wheel designs.
Maximising braking performance during critical stops
The TEXTAR 2398202 component offers improved braking efficiency across all legal speed ranges. A strong braking force is generated instantly when the pedal is depressed by the driver. This pad compound achieves high friction performance without causing rapid wear to the mating disc surface. High braking performance defines the engineering objective for this specific friction application. Maximum stopping power is realised through a balanced combination of synthetic elements.
Associating with the top brands in automotive
Choosing trusted brands is standard practice for workshops seeking long-term vehicle safety. Reputable manufacturers such as TEXTAR ensure that 2398202 TEXTAR Disk brake pads meet strict conformity assessments. Quality brands are defined by the consistency of their output across production batches. Utilising best brake pad brands reduces the risk of liability for the service provider. Well-known brands provide a baseline of quality that is verifiable through independent testing.
Maintaining a low noise level during engagement
The anti-squeal shims integrated into the assembly facilitate noise-free operation in city environments. Low noise is achieved via a multi-layered backing plate that dampens vibrations effectively. Silent braking improves the overall driving experience for the occupants. Quiet operation is confirmed through extensive field testing under various load configurations. Squeak-free performance is the hallmark of this precision-engineered assembly.
TEXTAR 2398202 Disc pads: Key Performance and Safety Highlights
The TEXTAR 2398202 Disc pads incorporate advanced friction technology to support vehicle safety. This hardware ensures that stopping power remains consistent while the rotor protection remains uncompromised. The following technical specifications outline the advantages of this installation.
| Braking Attribute | Performance Benefit |
|---|---|
| Thermal stability | fade-resistant materials |
| Service lifespan | heavy-duty |
| Cold-start reliability | strong braking when cold |
| Pedal response | controlled braking |
| Segment classification | top-tier brands |
| Wheel cleanliness | low brake dust |
| Stopping power | high friction performance |
| Brand positioning | reputable manufacturers |
| Acoustic comfort | low noise |
The TEXTAR 2398202 delivers consistent deceleration results by effectively managing energy transfer at the rotor interface. By opting for this friction set, workshops improve their operational throughput while reducing comeback rates. The combination of minimal dust emissions and robust thermal management ensures that vehicle owners experience high value over the service life of the part.
Why the TEXTAR 2398202 Brake pad set is an Excellent Choice
Adopting OE quality components is essential for maintaining vehicle safety standards. The cost-per-mile efficiency of this kit is achieved through a design that resists degradation during stop-start conditions. These high-temperature resistance attributes ensure that the pads remain effective throughout the entire service interval. Mechanics value the installation ease that supports a profitable workshop turnaround time.
The TEXTAR 2398202 provides a reliable friction solution for professional servicing requirements. When you install TEXTAR 2398202 Disc pads, you support the technical integrity of the braking system. Ensure your workshop stocks these components to satisfy the demand for high-performance safety parts. Contact your local trade distributor to procure this set for your next scheduled service appointment.