SMC Corporation of America
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Search Results "MDBF50-125Z-M9BSDPC"

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 250mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, Lead Wire or Prewired Connector: SAPC (0.5m Cord Length, M8-3 Pin Connector)

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 400mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: A93--Reed, DC Volt, AC Volt, LED, Horizontal, Lead Wire or Prewired Connector: L (3m)

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 50mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9B--Solid State, Gen. Purpose, 2 Wire, Horizontal, Lead Wire or Prewired Connector: L (3m)

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 175mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 100mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9B--Solid State, Gen. Purpose, 2 Wire, Horizontal, Lead Wire or Prewired Connector: L (3m)

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 100mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9B--Solid State, Gen. Purpose, 2 Wire, Horizontal, Lead Wire or Prewired Connector: L (3m), Number: 3 pcs.

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 600mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9P--Solid State, Gen. Purpose, 3 Wire PNP, Horizontal, Lead Wire or Prewired Connector: L (3m), Number: 3 pcs.

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 100mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9PW--Solid State, 2-color Indication, 3 Wire PNP, Horizontal, Lead Wire or Prewired Connector: L (3m)

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 100mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9BW--Solid State, 2-color Indication, 2 Wire, Horizontal, Lead Wire or Prewired Connector: L (3m)

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 100mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9B--Solid State, Gen. Purpose, 2 Wire, Horizontal, Lead Wire or Prewired Connector: M (1m)

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 75mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: A93--Reed, DC Volt, AC Volt, LED, Horizontal

Magnet: D (Built-in Magnet), Mounting: F (Rod Flange), Bore: 50mm, Port Thread: Rc, Stroke: 350mm, Cushion: Rod Boot None; Air Cushion on Both Sides, Pivot Bracket: No Bracket, Rod End: No Bracket, Auto Switch: M9BW--Solid State, 2-color Indication, 2 Wire, Horizontal, Lead Wire or Prewired Connector: L (3m)

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

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, CYLINDER, ACTUATOR, MGP COMPACT GUIDE CYLINDER, NB, 50MM MGP BALL BEARING, 11.24357 lb

This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, MGP COMPACT GUIDE CYLINDER, LB, 32MM MGP BALL BEARING

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

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, CYLINDER, ACTUATOR, MGP COMPACT GUIDE CYLINDER, SM, 100MM MGP SLIDE BEARING

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