ULTIMAX2 Brake Pads for Daihatsu Applause & Mazda MX-5

High-performance brake pads engineered for passenger cars, Vans and SUVs (4x4). Manufactured by EBC Brakes, these pads use premium friction materials and meet ECE R90 safety standards for reliable replacement braking.

Key Technical Specs

  • Dimensions: 102 x 39 x 12 mm
  • ECE R90 Homologation: Yes
  • Application: Rear Axle
  • Disc wear reduction: up to 50%
  • Brake-in coating for quick bedding-in

Compatibility

Compatible with: Daihatsu Applause, Mazda MX-5 (Miata) models.

Why choose ULTIMAX2?

Delivers stronger braking performance, longer pad life, and reduced rotor wear, offering dependable stopping power for daily driving and spirited road use.

Actual product appearance may vary from images.

Vehicle Compatibility

Brand Model Generation / Chassis Engine
Daihatsu APPLAUSE - -
Daihatsu MX-5 - -
Mazda APPLAUSE - -
Mazda MX-5 - -
EBC

EBC

EBC Brakes has been a performance braking leader for over 60 years, offering 60,000+ brake pad and disc part numbers for cars, motorcycles, trucks, and race vehicles.

100% manufactured in-house at UK and USA facilities, EBC is trusted by professional drivers and enthusiasts worldwide.

Official page: www.ebcbrakes.com
Default
Make Mazda
Position Rear
Version ULTIMAX2

ULTIMAX2 Brake Pads for Daihatsu Applause & Mazda MX5

Brand: EBC Product id: 42402 MPN: DP828
Availability: On request
42.13€ Excl. VAT: 34.82€
Pay with PayPal / Card
On request
Shipping time will be confirmed after your order. Contact us before ordering if you need exact timing.
Brand Model Generation Engine
Daihatsu APPLAUSE - -
Daihatsu MX-5 - -
Mazda APPLAUSE - -
Mazda MX-5 - -

EBC

EBC Brakes has been a performance braking leader for over 60 years, offering 60,000+ brake pad and disc part numbers for cars, motorcycles, trucks, and race vehicles.

100% manufactured in-house at UK and USA facilities, EBC is trusted by professional drivers and enthusiasts worldwide.

Official page: www.ebcbrakes.com
Default
Make Mazda
Position Rear
Version ULTIMAX2