SUNGIL
The Oldham coupling from Sungil is a shaft coupling comprising three elements.
These transmit the torque whilst puting low stress on bearings even with angular deviations or parallel and axial displacements between the shafts.
Angle deviation | 2 ° |
---|---|
Axial displacement | 0,1 mm |
Parallel displacement | 1 mm |
Torque max | 2 Nm |
The Oldham coupling from Sungil is a shaft coupling comprising three elements.
These transmit the torque whilst puting low stress on bearings even with angular deviations or parallel and axial displacements between the shafts.
Did you get a chance to visit IATECH at The Leicester Marriott Hotel? We had over 33 exhibitors and 8 fantastic Tech Talks throughout the day, Read all about the day, here.
We are thrilled to announce the launch of IATECH, THe Industrial Automation Technology expo at Leicester Marriott Hotel on 23rd October. The ultimate platform for showcasing our extensive product range and broad business areas, featuring over 50 leading suppliers under one roof!
The specialist vehicle industry can include automotive and EV, heavy vehicles such as agriculture and rail, and marine. This email takes you through some of the various products we offer for specialist vehicle applications.
AGV drive wheel motors cover a wide range of options – from a miniature unit on a small 20kg robot, tasked to move on a perfectly level and smooth indoor surface, up to passenger vehicle-sized robots working outside over fields and varying terrain.
At OEM Automatic, we can supply a series of components for your one project. All under one roof. This case study discusses how we supplied several components for our customer's new electro-pneumatic control box.Â
Technosoft specialise in developing intelligent drives and certainly live up to the term 'intelligent’, by combining a powerful motor and motion controller to implement complex movements.
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Parts | Angle deviation | Axial displacement | Parallel displacement | Torque max | Price | ||
---|---|---|---|---|---|---|---|
Art:
SOH-16
Copied
|
2 °
|
0,1 mm
|
1 mm
|
2 Nm
|
| ||
Art:
SOH-20
Copied
|
2 °
|
0,1 mm
|
1,5 mm
|
3 Nm
|
| ||
Art:
SOH-25
Copied
|
2 °
|
0,1 mm
|
2 mm
|
5 Nm
|
| ||
Art:
SOH-32
Copied
|
2 °
|
0,2 mm
|
2,5 mm
|
14 Nm
|
| ||
Art:
SOH-43
Copied
|
2 °
|
0,2 mm
|
3 mm
|
30 Nm
|
| ||
Art:
SOH-53
Copied
|
2 °
|
0,2 mm
|
3,2 mm
|
50 Nm
|
| ||
Art:
SOH-57
Copied
|
2 °
|
0,2 mm
|
3,5 mm
|
72 Nm
|
| ||
Art:
SOH-73
Copied
|
|
|
|
|
| ||
Art:
SOH-16S
Copied
|
2 °
|
0,1 mm
|
1 mm
|
2 Nm
|
| ||
Art:
SOH-20S
Copied
|
2 °
|
0,1 mm
|
1,5 mm
|
3 Nm
|
| ||
Art:
SOH-25S
Copied
|
2 °
|
0,1 mm
|
2 mm
|
5 Nm
|
| ||
Art:
SOH-32S
Copied
|
2 °
|
0,2 mm
|
2,5 mm
|
14 Nm
|
| ||
Art:
SOH-16C
Copied
|
2 °
|
0,1 mm
|
1 mm
|
2 Nm
|
| ||
Art:
SOH-20C
Copied
|
2 °
|
0,1 mm
|
1,5 mm
|
3 Nm
|
| ||
Art:
SOH-25C
Copied
|
2 °
|
0,1 mm
|
2 mm
|
5 Nm
|
| ||
Art:
SOH-32C
Copied
|
2 °
|
0,2 mm
|
2,5 mm
|
14 Nm
|
| ||
Art:
SOH-43C
Copied
|
2 °
|
0,2 mm
|
3 mm
|
30 Nm
|
| ||
Art:
SOH-53C
Copied
|
2 °
|
0,2 mm
|
3,2 mm
|
50 Nm
|
| ||
Art:
SOH-57C
Copied
|
2 °
|
0,2 mm
|
3,5 mm
|
72 Nm
|
| ||
Art:
SOHM-16C
Copied
|
2 °
|
0,1 mm
|
1 mm
|
2 Nm
|
| ||
Art:
SOHM-20C
Copied
|
2 °
|
0,1 mm
|
1,5 mm
|
3 Nm
|
| ||
Art:
SOHM-25C
Copied
|
2 °
|
0,1 mm
|
2 mm
|
5 Nm
|
| ||
Art:
SOHM-32C
Copied
|
2 °
|
0,2 mm
|
2,5 mm
|
14 Nm
|
| ||
Art:
SOHM-43C
Copied
|
2 °
|
0,2 mm
|
3 mm
|
30 Nm
|
| ||
Art:
SOHM-53C
Copied
|
2 °
|
0,2 mm
|
3,2 mm
|
50 Nm
|
| ||
Art:
SOHM-57C
Copied
|
2 °
|
0,2 mm
|
3,5 mm
|
72 Nm
|
| ||
Art:
SOHM-70C
Copied
|
2 °
|
0,2 mm
|
3,5 mm
|
130 Nm
|
| ||
Art:
SOH-16SC
Copied
|
2 °
|
0,1 mm
|
1 mm
|
2 Nm
|
| ||
Art:
SOH-20SC
Copied
|
2 °
|
0,1 mm
|
1,5 mm
|
3 Nm
|
| ||
Art:
SOH-25SC
Copied
|
2 °
|
0,1 mm
|
2 mm
|
5 Nm
|
| ||
Art:
SOH-32SC
Copied
|
2 °
|
0,2 mm
|
2,5 mm
|
14 Nm
|
|
Select a variant in the list