Hangzhou Ever-Power Transmission Co., Ltd.

home products Hydraulic drive system Rodless cylinder

Rodless cylinder

Detailed Product Description


Rodless air cylinders differ from basic air cylinders in that no piston rod extends outside the cylinder body. Instead, the internal piston is connected to an external carriage, by means of a magnetic or mechanical coupling system.With no external leakage, the SW series can be used in many diverse environments. Magnetically coupled cylinders have a wide range of applications, and save mounting space. Loads and moments are possible through the use of integrated guides. A variety of guides can be used to achieve the necessary accuracy or allowable moment needed for your application. SW is available in 9 bore sizes, from 6mm to 63mm with standard stokes up to 1000mm. The 5 different model variations offer widest application choice. Auto switches are integrated as standard.

Features:

*Basic magnetically coupled rodless cylinder

*Bore sizes: 6, 10, 15, 20, 25, 32, 40, 50, & 63 (mm)

*Strokes from 50mm through 1000mm

*Available with high or low magnetic holding force

*Long life with no external leakage

Specifications:

Cylinder Diameter(mm)

6

10

15

25

32

40

50

63

Fluid

Clean Air(25 micron filteration)

Acting Mode

Double acting

Maximum pressure (MPa)

1.05

Working pressure (MPa)

0.18~0.71

Ambient Medium Temperature()

5-60

Piston control

50-400mm/s

*Cushion

With Rubber cushion at two sides

Tolerance of stroke

**Lubrication

Not Required

Thread size 

M5X0.8

G1/8

G1/4

·    
*With optional oil pressure shock absorber (only ofr the model-ECYIS with slide ruber)

 

Rodless cylinder Rodless cylinder

Send your message to this supplier
« Prev Product ... 8 9 10 11 12 13 14 ... Next Product »

Other Products from this Supplier


Company Info

Hangzhou Ever-Power Transmission Co., Ltd.
[China (Mainland)]
[Verified Member]

City: Hangzhou
Province/State: Zhejiang
Country/Region : China (Mainland)

Business Type:Manufacturer, Trading Company

View Contact Details

Email this page Bookmark this page Print this Page