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ESD energy chain 14240 series | Crossbars every link: openable along the inner and outer radius | Inner height: 62mm
Inner height hi: 62mmInner width Bi: 50 - 200mmBend radii R: 150 - 250mmPitch: 91mmFor permanent, maintenance-free conductivityNew design with undercut design provides more stabilityClosed and open types can be combined

Part No.

Inner width [Bi] [mm]

Bend radius [R] [mm]

Inner height [Hi]
62 mm

Max. cable diameter
56 mm

Opening principle
Can be opened along the inner and outer radius
Selection Info
Purchase method
Assembled PartsFully assembled chain (Including the separators)
Installation type
unsupported
Dimensions
Fold
Inner height [Hi] [mm]
62 Fold
Inner width [Bi] [mm]
50 Fold
Outer height Ha [mm]
84 Fold
Outer width [Ba] [mm]
76 Fold
Bend radius [R] [mm]
150 Fold
Pitch [mm]
91 Fold
Chain links per metre
11 Fold
Max. cable diameter [mm]
56 Fold
H [mm]
384 Fold
D [mm]
329 Fold
K [mm]
655 Fold
H2 [mm]
266 Fold
D2 [mm]
450 Fold
K2 [mm]
819 Fold
DeltaHF [mm]
50 Fold
Velocity FLG unsupported max. [m/s]
20 Fold
Acceleration FLG max. [m/s²]
200 Fold
Maximum unsupported length [m]
4 Fold
Maximum long travel [m]
150 Fold
General properties
Fold
Opening principle
Can be opened along the inner and outer radius Fold
maximum fill weight [kg/m]
40 Fold
Colour
grey Fold
Energy chain system
E4/light ESD Fold
Shipping weight (kg or kg/m)
1.9514 Fold
Temperature e-chain min. [°C]
-40 Fold
Temperature e-chain max. [°C]
120 Fold
Dynamic information
Fold
v max. unsupported (speed) [m/s]
20 Fold
v max. gliding (speed) [m/s]
10 Fold
Additional information and diagrams
Fold

The unsupported length depends on fill weight
X axis: unsupported length in m FLB/FLG
Y axis: fill weight in kg/m
Lower scale: travel S in m
FLB = unsupported with permissible sag
FLG = unsupported with straight upper run
Reference example A:
fill weight = 10 [kg/m]
unsupported length FLB = 2.75 m
travel = 5.5 m

A=moving end, B=fixed end
Pitch: 91mm per link
Chain links per m: 11
Travel: S
Chain length = S/2 + K
From 12m to max. 150m
Chain length = S/2 + K2
Long travel - gliding (up to max. 150m)
Here the energy chain is used with the upper run gliding on the lower run. We recommend letting our engineers support you when planning this type of system. In case of travel lengths between 8.0m and 12m, we recommend a larger unsupported energy chain.
A1 = moving end
A2 = fixed end
A3 = Guide trough with glide bar
A4 = Guide trough without glide bar
A5 = Total length of the guide trough

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