Oscillation Angle A: [Arbitrary Setting Type] Free setting type, Torque (Range)(N⋅m): 3 to Less than 6, Type: Rotary Table 3-Points or More, Main Body Shape: Block Shape, Operation Method: Double Rack, Rigidity Accuracy: Standard, Environment, Applications: Standard, Allowable Kinetic Energy (Range)(J): 0.01 to Less than 0.1, Valves: Not Provided, Allowable Kinetic Energy(J): 0.048, Torque
Oscillation Angle A: 190°, Torque (Range)(N⋅m): 6 to Less than 10, Type: Rotary Table 2-Point Stop, Main Body Shape: Block Shape, Operation Method: Single Rack, Rigidity Accuracy: Standard, Environment, Applications: Slow Speed, Allowable Kinetic Energy (Range)(J): 0.01 to Less than 0.1, Tube Nominal Diameter: 50, Valves: Not Provided, Allowable Kinetic Energy(J): 0.081, Operating Pressure
Precision: Basic, Size: 50mm, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, 0.5M, Lead Wire or Prewired Connector: 3m, Number: -
Precision: Basic, Size: 20mm, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, 0.5M, Lead Wire or Prewired Connector: 3m, Number: -
Precision: High Precision Type, Size: 10mm, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, 0.5M, Lead Wire or Prewired Connector: 3m, Number: -
Precision: High Precision Type, Size: 50mm, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, 0.5M, Lead Wire or Prewired Connector: 3m, Number: -
Model: MSQ, Precision: High Precision Type, Size: 50, Suffix: Adjuster Bolt, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, Lead Wire or Prewired Connector: 3m, Number: -, Thread Type: -
Model: MSQ, Precision: Basic, Size: 30, Suffix: Adjuster Bolt, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, Lead Wire or Prewired Connector: 3m, Number: -, Thread Type: -
Model: MSQ, Precision: High Precision Type, Size: 50, Suffix: Shock Absorbers, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, Lead Wire or Prewired Connector: 3m, Number: -, Thread Type: -
Model: MSQ, Precision: High Precision Type, Size: 30, Suffix: Adjuster Bolt, Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, Lead Wire or Prewired Connector: 3m, Number: -, Thread Type: -
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
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
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
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
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