With more and more LS fans switching to a 3-bolt cam for added strength and reliability, there came a need for a 58x 3-bolt timing set to accommodate a late...
With more and more LS fans switching to a 3-bolt cam for added strength and reliability, there came a need for a 58x 3-bolt timing set to accommodate a late model LS computer. The new COMP Cams LS Adjustable Timing Set provides super accurate timing and bulletproof reliability with a four pole reluctor and the 58x timing needed to work with late model LS computers. Featuring billet steel sprockets and premium roller chains, these new timing sets are machined on state-of-the-art CNC equipment to increase durability and reliability. The machined cam sprocket uses a captured thrust bearing to reduce friction. Side plates are cut and shaved from high strength steel and heat treated for maximum fatigue resistance. The .250" rollers are "cold rolled" and hardened to exacting standards, which increases load and RPM capabilities for maximum performance.
This Part Fits:
Year
Make
Model
Submodel
2006-2007,2009-2013
Chevrolet
Corvette
Base
2010-2013
Chevrolet
Corvette
Grand Sport
2006-2009
Chevrolet
Trailblazer
SS
2005-2008
Pontiac
Grand Prix
GXP
With more and more LS fans switching to a 3-bolt cam for added strength and reliability, there came a need for a 58x 3-bolt timing set to accommodate a late model LS computer. The new COMP Cams LS Adjustable Timing Set provides super accurate timing and bulletproof reliability with a four pole reluctor and the 58x timing needed to work with late model LS computers. Featuring billet steel sprockets and premium roller chains, these new timing sets are machined on state-of-the-art CNC equipment to increase durability and reliability. The machined cam sprocket uses a captured thrust bearing to reduce friction. Side plates are cut and shaved from high strength steel and heat treated for maximum fatigue resistance. The .250" rollers are "cold rolled" and hardened to exacting standards, which increases load and RPM capabilities for maximum performance.