'MEDI' formula inside Mixing cut resistant rubber compound with heat resistant compound inside the tread to assure heat release efficiency while working on rough terrains
Contact Plus Design (wider tread width) Equal force from the contact area Improve the wear resistance Super Tire Bar Design Add the tire bar on the middle of the tread Improve the strengthen of tread
'Super Stiffy' design By applying a nylon piece around the bead area, building a strong bead and serving the purpose for heavier-than-standard load for certain territories
RSS3 rubber compound Better wear and puncture resistance performance
'MEDI' formula inside Mixing cut resistant rubber compound with heat resistant compound inside the tread to assure heat release efficiency
Design for rough terrains Side Protection design for avoiding cut and scratch on sidewall Bridge Plus Design for better puncture resistance performance
'MEDI' formula inside Mixing cut resistant rubber compound with heat resistant compound inside the tread to assure heat release efficiency while working on rough terrains
'Super Stiffy' design By applying a nylon piece around the bead area, building a strong bead and serving the purpose for heavier-than-standard load for certain territories
RSS3 rubber compound Better wear and puncture resistance performance
'MEDI' formula inside Mixing cut resistant rubber compound with heat resistant compound inside the tread to assure heat release efficiency
'Super Stiffy' design By applying a nylon piece around the bead area, building a strong bead and serving the purpose for heavier-than-standard load for certain territories
RSS3 rubber compound Better wear and puncture resistance performance
'MEDI' formula inside Mixing cut resistant rubber compound with heat resistant compound inside the tread to assure heat release efficiency
Industrial Structure Design Strength Structure Design for Max. 180% Load Capacity * Non-standard Product (20PR), calculated based on the standard load index (18PR)