Ohlins TTX Shock Absorber SU 789


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List Price: $1,474.95
Price: $1,320.08
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The culmination of three decades of world championship roadracing and greater than 100 World titles
Features high- and low-speed compression and rebound damping; all settings are independent
This allows an enormous range of adjustments with equal increments of force throughout the adjustment settings range the shape in the damping curve may be changed to accommodate all forms of tracks and conditions
All preload and rebound adjustment changes get a new flow of damping oil in the piston, not the shock piston rod or oil displacement volume
Compression damping forces are unique unlike a conventional shock, compression just isn't caused with a drop in pressure about the rebound side of the piston; instead, it is due to an surge in pressure for the compression side
This reduces cavitation and makes high gas pressure within the shock reservoir unnecessary, keeping internal pressures inside the shock unit in a minimum
The low amount of internal pressure leads to excellent suspension response even having a short stoke/high force acting around the shock
Piggyback-type shock reservoir gives improved cooling towards the shock oil for more consistent damping and long damper life
Integrated remote hydraulic spring preload adjuster
36mm shock piston

This Item Fits the Following Applications:
2008 Suzuki GSX-R600



Product Features
The culmination of three decades of world championship roadracing and more than 100 World titles
Features high- and low-speed compression and rebound damping; all settings are independent
This allows a huge range of adjustments with equal increments of force throughout the adjustment settings range even the shape of the damping curve can be changed to suit all types of tracks and conditions
All preload and rebound adjustment changes affect the flow of damping oil from the piston, not the shock piston rod or oil displacement volume
Compression damping forces are unique unlike a conventional shock, compression is not caused by a drop in pressure on the rebound side of the piston; instead, it is caused by an increase in pressure on the compression side




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