SMC Corporation of America
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Series NCA1 medium duty tie rod cylinders are NFPA interchangeable, have a crimped piston rod assembly, are pre-lubricated and available in 11 mounting styles. Bore sizes range from 1.5 to 4 inches. The NCA1 expanded line of medium duty cylinders offer bore sizes ranging from 5 to 8 inches, and come standard with adjustable air cushion.5in. bore medium duty air cylinder, 11 NFPA mounting

The MHF2 Series is a low profile air gripper, designed to save substantial space. The height of the MHF2 gripper is approximately 1/3 the size of an equivalent MHZ series gripper. Finger strokes are available in short, long, and intermediate for each size. High rigidity can be obtained due to adoption of linear guide. GRIPPER. Cylinder, MHF2, Low Profile Air Gripper. 850.00000 lb. C18.

Magnet: None, Style: Pneumatic, Mounting: L (Axial Foot), Bore: 32mm, Port Thread: TN (NPT), Stroke: 100mm, Cushion: Rubber Bumper, Rod End Thread: Male Rod End, Rod Boot: None

Magnet: None, Style: Pneumatic, Mounting: B (Basic Style), Bore: 32mm, Port Thread: TN (NPT), Stroke: 100mm, Cushion: Rubber Bumper, Rod End Thread: Male Rod End, Rod Boot: None

Magnet: D (Built-in Magnet), Mounting: BZ (Boss-cut Basic), Bore Size: 20mm, Port Thread: TN (NPT), Stroke: 100mm, Rod End Thread: Male Rod End

Magnet: D (Built-in Magnet), Mounting: F (Front Flange), Bore: 20mm, Stroke: 100mm, Cushion: Rubber Bumper, Rod End Thread: Male Rod End, Rod Boot: None

Magnet: None, Mounting: B (Basic), Bore: 50mm, Thread: Rc, Stroke: 100mm, Rod Boot/Cushion: None (Rod Boot; Cushion, Both Ends)

Magnet: None, Mounting: L (Axial Foot), Bore: 50mm, Thread: Rc, Stroke: 100mm, Rod Boot/Cushion: None (Rod Boot; Cushion, Both Ends)

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The new style MGP has a shorter guide rod and thinner plate resulting in a weight reduction of up to 17% over the original MGP.  The series is designed for high side load applications found in material handling, lifting and stopping. The cylinder utilizes an ultra-compact design by incorporating the cylinder body as part of the guide body. As the stroke length increases, so does the bearing

This is a legacy product. Please contact us for the latest version.sales@ocaire.com, MB CYLINDER, MB, TIE ROD CYLINDER, 0.00000 lb

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap

The new style MGP has a shorter guide rod and thinner plate resulting in a weight reduction of up to 17% over the original MGP.  The series is designed for high side load applications found in material handling, lifting and stopping. The cylinder utilizes an ultra-compact design by incorporating the cylinder body as part of the guide body. As the stroke length increases, so does the bearing