Dynamic Friction Company Disc Brake Pad Set P/N:1551-0635-00

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$59.99
MPN: 1551-0635-00
UPC: 190920122378
Item Package Quantity: 1
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Dynamic Friction Company Disc Brake Pad Set P/N:1551-0635-00
Dynamic Friction Company Disc Brake Pad Set P/N:1551-0635-00
$59.99

Get a consistent pedal feel and sharp brake response from your 1994-1997 and 1999-2002 Mazda Miata brake pads with the Dynamic Friction DFC 5000 Advanced Ceramic Disc Brake Pad Set (P/N 1551-0635-00). This ceramic brake pad set is cataloged for the FRONT axle and installs as a direct-fit replacement for the 1994-1997 and 1999-2002 Mazda Miata.

  • Consistent pedal feel: Designed to deliver a consistent pedal feel and strong brake response.
  • Rotor friendly, long wearing: Formulated for long pad wear while staying easy on your rotors.
  • Axle-specific formula: DFC formulates the friction material for each axle on every vehicle, drawing on selected original equipment manufacturer formulations.
  • ABS-ready: Friction materials selected to meet the demands of modern vehicles with ABS and automated braking systems.

This set is cataloged for the front axle; replacing the pads on both front wheels together as a matched set is recommended for even, balanced braking.

Frequently Asked Questions

What vehicles does this brake pad set fit?

It's a direct-fit front replacement for the 1994-1997 and 1999-2002 Mazda Miata. Check the Buyer's Guide tab to confirm it matches your exact model year.

Is this a front or rear brake pad set?

The catalog lists this DFC 5000 set for the FRONT axle.

What are the benefits of these ceramic pads?

DFC designs the DFC 5000 ceramic pads to deliver a consistent pedal feel and superb brake response, with long pad wear and a rotor-friendly formula.

Are these pads rotor friendly?

Yes — DFC lists the DFC 5000 as rotor friendly with long pad wear, built on selected original equipment manufacturer formulations.

Will these pads work with ABS?

The friction materials are selected to meet the demands of modern vehicles equipped with ABS and automated braking systems.