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HAWK HB973P.590 Rear Brake Pads Street SuperDuty for LEXUS LX 600 2022-

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HAWK HB973P.590 Rear Brake Pads Street SuperDuty for LEXUS LX 600 2022-

Description HAWK HB973P.590 Rear Brake Pads Street SuperDuty for LEXUS LX 600 2022-

The HAWK SuperDuty brake pads are engineered for demanding heavy-duty applications, including on-road and off-road use as well as military-grade operating environments. This compound is designed to deliver extremely high friction levels and exceptional fade resistance, ensuring consistent braking performance under severe load and high-temperature conditions.

Specifications

  • Engineered for heavy-duty on-road, off-road, and military applications
  • Extremely high coefficient of friction with superior fade resistance
  • Recommended for professional fleets and heavy towing applications
  • Stable braking performance under high load conditions
  • Designed for use with iron and metal brake rotors only
  • Operating Temperature Range: 100–750F
  • Optimal Temperature Range: 100–500F
  • Torque Level: Low
$61.92

Original: $176.91

-65%
HAWK HB973P.590 Rear Brake Pads Street SuperDuty for LEXUS LX 600 2022-—

$176.91

$61.92

Product Information

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Description

Description HAWK HB973P.590 Rear Brake Pads Street SuperDuty for LEXUS LX 600 2022-

The HAWK SuperDuty brake pads are engineered for demanding heavy-duty applications, including on-road and off-road use as well as military-grade operating environments. This compound is designed to deliver extremely high friction levels and exceptional fade resistance, ensuring consistent braking performance under severe load and high-temperature conditions.

Specifications

  • Engineered for heavy-duty on-road, off-road, and military applications
  • Extremely high coefficient of friction with superior fade resistance
  • Recommended for professional fleets and heavy towing applications
  • Stable braking performance under high load conditions
  • Designed for use with iron and metal brake rotors only
  • Operating Temperature Range: 100–750F
  • Optimal Temperature Range: 100–500F
  • Torque Level: Low