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Lewis LHT-II Pistons 4x17mm Titanium Monoblock Caliper
Lewis LHT-II Pistons 4x17mm Titanium Monoblock Caliper
Impossible de charger la disponibilité du service de retrait
Downhill, Enduro, All-Mountain
High-precision CNC machining technology
Upgraded Leverage Ratio Adjustment
4x17mm Titanium+Ceramic Monoblock Pistons
Independent Cooling Fins
Precise Reach Adjustment
Mineral Oil
Ultra light lever action, Powerful but predictable braking force.
Bearing pivots provide superior modulation and feel.
Lever+caliper weight = 242g(without Oil Hose)
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Specifications
Master Cylinder:
Cylinder Type:Axial
Material:CNC 7075 T6 Aluminum
Body Finish:Anodized Black, Polished Silver+Gunsmoke
Clamp Color:Anodized Black, Polished Silver
Clamp Type:Split
Screws:Titanium
Adjustable Lever Reach:Yes, Tool Free
Adjustable Pad Bite Point:Yes, With a 2mm Allen Key
Adjustable Leverage Ratio:Yes, Need to Loosen The Set Screws Before Adjusting Precise Lever Reach Adjustment: Yes, With a 2mm Allen Key
Brake Lever:
Material:CNC 7075 T6 Aluminum
Color:Anodized Black, Silver+Gunsmoke
Brake Lever Type:1 Finger
Caliper:
Material:CNC 7075 T6 Aluminum
Color:Anodized Black, Gunsmoke
Brake Lever Type:1 Finger
Rotors:
optional (140 mm | 160 mm | 180 mm | 203 mm | 223 mm)
Improved Adjustment Performance
Lever Ratio Locking Screw & Bottom‑Mount Lever Ratio Adjustment Knob
-Loosen the lever‑ratio locking screw and turn the lever‑ratio adjustment knob for adjustment.
-Turn the lever‑ratio adjustment knob to adjust the brake lever leverage ratio for your preferred brake feel.
Precise Lever Reach Adjustment
Conventional lever reach adjustment alters the brake leverage‑ratio curve. Our Precise Lever Reach Adjustment lets you modify reach without changing the leverage ratio, enabling finer tuning of brake feel.
Monoblock Caliper
The LHT‑II brake caliper features a 4‑piston configuration (4×17 mm). Its monoblock caliper construction with additional cooling fins delivers outstanding braking power and consistent heat‑fade resistance.
Titanium Pistons with Ceramic Insulation
In high-intensity use environments, the good high-temperature thermal conductivity of the titanium material complements the ceramic thermal insulation, allowing the pads to conduct and dissipate heat more evenly.
Independent cooling‑fin design
The independent cooling fins are not fixed to the brake‑pad assembly, Built for high‑intensity riding conditions. No fin replacement is required when changing brake pads.