HyperStem From 54g

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Stiffer, lighter, tougher Design and dimensioning are impressive, mass and stress concentrations have been further reduced

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HyperStem can be ordered with the optional CH-02 Computer Holder ready fitted on

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Grade5 titanium black PVD coated Torx bolts with special "rounded heads" are the standard equipment

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Over one hour of continuos 3dimensional CNC milling and contoured shapes on a huge multiaxial Mazak Intergrex machine

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Accurate 3D surface machining smoothes every part of its body

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Well rounded edges on all clamps make it fully carbon-friendly

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When you see it the flesh you'll realize that it's an absolute performance sculpture

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Silver Limited Edition

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Fatigue tested for months, down to boredom But it generously paid us back with exceptional results

Configure

HyperStem Full Black version.
Fits 31.8mm handlebars, and 1'-1/8 steertubes.
Suitable for Enduro, X-C, Gravel and Road-Racing uses.
3D cnc oversized and ultra rigid body.
Special Titanium GRD5 torx T15 bolts, black PVD coated.

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Tech info

Description

HyperStem Full Black version.
Fits 31.8mm handlebars, and 1'-1/8 steertubes.
Suitable for Enduro, X-C, Gravel and Road-Racing uses.
3D cnc oversized and ultra rigid body.
Special Titanium GRD5 torx T15 bolts, black PVD coated.

BIOMETRIC FITTING CHART

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How to measure

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Size-Weight Chart

Nessuna immagine disponibile

Length

40mm

60mm

70mm

80mm

90mm

100mm

110mm

120mm

130mm

0°

54

X

X

X

X

X

X

X

X

X

61

65

69

74

79

83

87

91

12°

X

X

X

69

74

79

83

87

X

18°

X

61

65

69

74

79

83

87

X

1.25 6°

X

X

X

69

74

79

83

87

X

UNI / DIN

Safety requirements

All our products excede Uni/Din safety standard requirements.
As general rule just realize that Uni/Din safety standard tests take as reference a 90kg. (200Lb.) extremely strong athlete at his maximum possible output.
Then repeat this loading efforts on a base of 100.000 times for each testing session.


Are you as strong as the athlete described?
If yes plan to replace your frame/component at the end of the racing season.

A good racer output 20% lower loads and that doubles at least the fatigue life of a component.
The loads applied by an average rider will affect only marginally the fatigue life of the bike parts.

Rider weight influence

The rider weight plays an important rule but it's only a part of the energy q.ty count that is applied to your bike components.
Here few examples that surely help to understand how other factors can do much more that body weight alone.

1) Speed itself increases by square factor the loads applied on a front wheel hitting an obstacle.
Thereafter when a front wheel hits a small-medium obstacle 
the following factors play the most important rules:
- speed itself obstacle sharpness - tire pressure - suspension fork setting if any.

2) Personal riding style can put limited or extremely high loads on a rear wheel too.
During off saddle sprinting the bike get angled under rider's body.
T his strongly increases the lateral stress on the rim-spoke structure.
Rider weight influences directly the load but the angle of the bike does it by the 
angle-log.

3) Low gear ratio as on 29ers pushed by a strong rider can produce over 700kgf of chain-pull.
The chain-pull load passes through the right crank-bearing, then through the frame right chainstay and finally reaches the hub-freewheel.
Lower gear ratios directly increase chain pull peaks and the mechanical stress on crank axle and bearings, rear hub (axle and bearings) and its freewheel engagement system too.
combination of extremely high loads for the entire rear-end of the bike.

Manuals

Spare Parts

Spare Parts