S/SX1800

  • Pitch
    180 mm
  • Height
    104 – 110 mm
  • Chain width
    180 –
    1,000 mm
  • Bending
    radius

    265 – 1300 mm

Stay variants

Aluminum stay RM

Frame stay solid

  • Aluminum profile bars for heavy loads and maximum chain widths. Double screw connections on both sides “Heavy Duty”.
  • Available customized in 1 mm width sections.

Opening options
inside/outside: Screw connection is easy to release.

more information

Stay variant

Tube stay RR

Frame stay, tube version

  • Steel rolling stays with gentle cable support and plastic dividers. Ideal for using media hoses with soft sheathing. Easy screw connection.
  • Available customized in 1 mm width sections.

Opening options
inside/outside: Screw connection detachable.

more information

Stay variant

Aluminum stay LG

Hole stay, split version

  • Optimum cable routing in the neutral bending line. Split version for easy cable routing. Stays also available unsplit.
  • Available customized in 1 mm width sections.

Opening options
inside/outside: Screw connection is easy to release.

more information

Stay variant

Unsupported arrangement

Unsupported arrangement
Dynamics of unsupported arrangement t
[mm]
vmax [m/s] amax [m/s2]
2 3 180

Installation dimensions unsupported

KR
[mm]
H
[mm]
LB
[mm]
UB
[mm]
265 740 1,552 695
320 850 1,725 750
375 960 1,898 805
435 1,080 2,087 865
490 1,190 2,259 920
605 1,420 2,620 1,035
720 1,650 2,982 1,150
890 1,990 3,516 1,320
1175 2,560 4,411 1,605
1300 2,810 4,804 1,730

Load diagram

for unsupported length depending on additional load

Load diagram
  • Intrinsic cable carrier weight qk = 26 kg/m. The maximum additional load decreases if this value is exceeded.
  • Fixed point offset Lv: For off-center fixed point connections please contact us.

Installation height Hz

  • Installation height Hz: Hz = H + 10 mm/m

Calculating the cable carrier length

  • Cable carrier length Lk: Lk ≈ LS/2 + LB (Cable carrier length Lk rounded to pitch t)
  • Unsupported length Lf: Lf = LS/2 + 2 t

Gliding arrangement

Gliding arrangement
Dynamics of gliding arrangement t
[mm]
vmax [m/s] amax [m/s2]
0.8 2 180
  • Glide shoes are required for gliding applications.
  • For more information on gliding arrangement please contact us.
  • The gliding cable carrier has to be routed in a channel. Our engineers will be happy to help with project planning – please contact us.

Calculating the cable carrier length

  • Cable carrier length Lk: Lk ≈ LS/2 + LB (Cable carrier length Lk rounded to pitch t)

End connectors

End connectors – steel

End connectors made from steel. The connection variants on the fixed point and on the driver can be combined and, if required, changed subsequently.

End connectors – steel
Connection variants

Connection variants

Connection point
F – fixed point
M – driver

Connection type
A – threaded joint outside (standard)
I – threaded joint inside
H – threaded joint outside rotated by 90°
K – threaded joint inside rotated by 90°

Connection surface
I – connection surface inside
A – connection surface outside

  • Caution: The standard connection variant FAI/MAI is only possible from Bk of 139 mm.

Subject to change.