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ELSD 80S Extended Carriage

Modular Linear Actuator, External Roller Bearing Guided, External Belt Driven, Model ELSD, Standard Belt, Extended Carriage, 80S Read More
Product Specifications

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Product Specifications

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Details

Size:
80S
Belt:
8M30
mm/Rev:
192
Number of Teeth:
24

Dimensions

Basic Length L [mm]:
545
A [mm]:
190
B [mm]:
39
C [mm]:
102
D [mm]:
68
E [mm]:
40
F [mm]:
60
G [mm]:
100
H [mm]:
100
I [mm]:
30
J [mm]:
71
K [mm]:
8.5
M [mm]:
88
MM:
M6
N [mm]:
180
NN:
M10
OO:
M8
P [mm]:
45
Q [mm]:
399
T:
M8
X [mm]:
12.5
V (Z Drive End) [mm]:
18 x 30
U (Z Drive End) [mm]:
6x6x20
V (Z Load End) [mm]:
20 x 30
U (Z Load End) [mm]:
6x6x20
W (Z Load End) [mm]:
M10x20
Shaft Diameter and Length [mm]:
18 x 45
Key:
6x6x40

Speed

Speed Maximum [m/s]:
8

Forces and Torques

No-load torque Stiction torque Mr [Nm]:
0.1
No-load torque [Nm]:
1.2
Tensile force 0.2 sec [N]:
2090
Tensile force permanent [N]:
1900
Fd [N]:
250
Mr [Nm]:
20
Fx dynamic [N]:
1800
Fy dynamic [N]:
3600
Fz dynamic [N]:
1800
Mx dynamic [Nm]:
140
My dynamic [Nm]:
230
Mz dynamic [Nm]:
220
Fx static [N]:
1900
Fy static [N]:
4600
Fz static [N]:
3000
Mx static [Nm]:
170
My static [Nm]:
270
Mz static [Nm]:
300

Geometrical moments of inertia of aluminum profile

Elastic modulus [N/mm2]:
70000
lx [mm4]:
1899000
ly [mm4]:
1897000

Weight

Additional Weight per 100 mm [kg]:
1.30
Basic Weight [kg]:
14.0

Values for Calulating Inertias

Pulley Material - Drive Pulley (x1):
Steel
Pulley Material - Idler Pulleys (x2):
Aluminum
Pulley Diameter [mm]:
61.12
Effective Pulley Width [mm]:
100
Belt Weight [kg/m]:
0.256
Standard Carriage Weight [kg]:
6.80
No-load torque [Nm]:
1.2
Friction Coefficient:
0.01

More Details

The carriage is driven by an external linear belt that can be adjusted to reduce lash and is driven along the external roller bearings. The pulleys have maintenance-free ball bearings. Belt tension can be readjusted by a simple screw adjustment device in the carriage.

The ELSD is a carriage driven actuator with single fixed belt and a center shaft extending through the actuator.