The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5 and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external guide
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, MTS NON ROT SPLINE CYLINDER, LE, MTS 32MM DBL ACTING AUTO-SW, 2.33966 lb
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5and#176; and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5and#176; and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external
The MTS cylinder provides superior non-rotating accuracy and linear stability in a compact package. Traditional non-rotating cylinders typically can only hold position to within 0.5and#176; and have inherent sealing problems. Integrating a ball spline as the rod bearing, this cylinder approximates the non-rotational accuracy of a guided cylinder without the added space requirements of external
, 200 201 to 350 Minimum stroke for mounting auto switches 25 301 to 400 32 301 to 450 Number of auto switches Model 40 301 to 800 25, 50, 75, 100, 125, 150, 200, 250, 300 2 pcs. 1 pc. 50, 63 301 to 1200 D-G5BA 15mm 10mm 80 301 to 1400 Refer to page 15 for details. 100 301 to 1500 Note 1) All non-standard strokes are produced upon receipt of order.
200 50 100 150 200 Arm length [mm] Arm length [mm] The maximum clamping force when the arm length is 100 mm and the operating pressure is 44 psi [0.3 MPa]: With an arm length of 100 mm and an operating pressure of 44 psi [0.3 MPa], according to the graph, the maximum clamping force is 45 lbf [200 N].
Ambient and fluid temperature (C) Response time (ms) (1) (at the pressure of 0.5 MPa) 0 (No freezing) to 60 OFF AC 30 or less ON AC 30 or less DC 30 or less DC 40 or less Max. operating frequency (Hz) 3 Lubrication (2) Required (Equivalent to turbine oil Class1 ISO VG32) Manual override Yes (Non-locking) Mounting orientation Unrestricted 150/50 Impact/Vibration resistance (m/s2) (3) Note
Form w 1 Material e Buffer spec. r Buffer stroke t Vacuum inlet y Connection thread 10 55.5 32.5 23 20 93.5 42.5 51 30 103.5 52.5 40 139.5 62.5 77 50 149.5 72.5 10 13 21 D2 10 56 33 23 20 94 43 51 30 104 53 40 140 63 77 50 150 73 Construction p. 118 16 21.5 B5 04 06 N6 U6 Buffer Assembly p. 124 J: 2.5 K: 2 M10 x 1 A10 14 3 8 M5 x 0.8 10 57.5 34.5 23 20 95.5 44.5 51 30 105.5 54.5 40 141.5
AMH150-03 AMH250-03 AMH250-03 AMH350-04 AMH350-04 AMH450-06 AMH550-10 AMH550-10 AMH650-14 AMH850-20 AM850-20 AMH850-20 IDG20-03 IDG30-03 IDG50-03 IDG75-04 IDG100-04 IDF2D-1 IDF3DIDF4DIDF6DIDF8DIDF11CIDF15CIDF22C1-3 IDF37C1-3 IDF55C-3 IDF75D-3 IDF120D-3 IDF150D-3 IDF240D-3 IDF55C-3 AM850-20 AMD850-20 75 AMF1000-40 AMF900-30 AMF850-20 AMD850-20 AMD910-30 AMD910-40 AMD1010-40 IDF120D-3 110 150