SMC Corporation of America
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Search Results "CDJ2B10-60Z-M9NL-A"

Cylinder (Tube) Inner Diameter(φ): 10, Stroke(mm): 60, Cylinder Operation Method: [Double Acting] Double Acting, Rod Operation Method: Single Rods, Main Body Shape: Standard, Additional Function: Standard, Environment, Applications: Standard, Operating Temperature(°C): -10~70, End Locking: No, Valves: No, Operating Pressure(MPa): 0.06~1, Cushion: Rubber cushion, Auto Switches: M9B, Lead Wire

Cylinder (Tube) Inner Diameter(φ): 10, Stroke(mm): 60, Cylinder Operation Method: [Double Acting] Double Acting, Rod Operation Method: Single Rods, Main Body Shape: Standard, Additional Function: Standard, Environment, Applications: Standard, Operating Temperature(°C): -10~70, End Locking: No, Valves: No, Operating Pressure(MPa): 0.06~1, Cushion: Rubber cushion, Auto Switches: M9BW, Lead

Cylinder (Tube) Inner Diameter(φ): 10, Stroke(mm): 60, Cylinder Operation Method: [Double Acting] Double Acting, Rod Operation Method: Single Rods, Main Body Shape: Standard, Additional Function: Standard, Environment, Applications: Standard, Operating Temperature(°C): -10~70, End Locking: No, Valves: No, Operating Pressure(MPa): 0.06~1, Cushion: Rubber cushion, Auto Switches: M9P, Lead Wire

Cylinder (Tube) Inner Diameter(φ): 10, Stroke(mm): 60, Cylinder Operation Method: [Double Acting] Double Acting, Rod Operation Method: Single Rods, Main Body Shape: Standard, Additional Function: Standard, Environment, Applications: Standard, Operating Temperature(°C): -10~70, End Locking: No, Valves: No, Operating Pressure(MPa): 0.06~1, Cushion: Rubber cushion, Auto Switches: M9NV, Lead

Cylinder (Tube) Inner Diameter(φ): 10, Stroke(mm): 60, Cylinder Operation Method: [Double Acting] Double Acting, Rod Operation Method: Single Rods, Main Body Shape: Standard, Additional Function: Standard, Environment, Applications: Standard, Operating Temperature(°C): -10~70, End Locking: No, Valves: No, Operating Pressure(MPa): 0.06~1, Cushion: Rubber cushion, Auto Switches: M9NV, Lead

, z + A = 100 y, z + A a 100 10 y, z + A = 200 y, z + A = 200 y, z + A = 300 y, z + A = 300 1 1 0 200 400 600 800 1000 1200 0 100 200 300 400 500 600 700 800 Stroke [mm] Stroke [mm] [Graph 6] Allowable load mass by stroke 32 [Graph 5] Allowable load mass by stroke 25 100 100 y, z + A = 0 y, z + A = 0 y, z + A = 50 y, z + A = 50 10 Load mass [kg] Load mass [kg] 10 y, z + A = 100 y, z + A =

This is equivalent to a magnetic field of approximately 18 cm in radius from a welding area using a welding amperage of almost 15,000 amperes. To use the system in a magnetic field that exceeds this value, use a magnetic material to shield the sensor unit.

This is equivalent to a magnetic field of approximately 18 cm in radius from a welding area using a welding amperage of almost 15,000 amperes. To use the system in a magnetic field that exceeds this value, use a magnetic material to shield the sensor unit.

This is equivalent to a magnetic field of approximately 18 cm in radius from a welding area using a welding amperage of almost 15,000 amperes. To use the system in a magnetic field that exceeds this value, use a magnetic material to shield the sensor unit.

M9 M9V F9W(V) B Electrical entry is in the direction C (mm) Proper mounting position Proper mounting position Proper mounting position D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV Model Model Model A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C

M9 M9V F9W(V) B Electrical entry is in the direction C (mm) Proper mounting position Proper mounting position Proper mounting position D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV Model Model Model A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C

Traveling parallelism: The amount of deflection on a dial gauge when the table travels a full stroke with the body secured on a reference base surface.

D D t D t t c e c c e e u u s u s s d i d i d i g g g o o o n n n r r r P P P A A A 1 1 9 9 9 9 9 9 w w 9 w 9 9 m I m I n n 9 9 9 u d u d a a a r u r u o s o F s tr F i e tr i e 9 9 9 D r r D r r r e e e e v v s 1 d d s 1 1 d o o i i n g n g n n n n a a H H n P n P g g r r o o i i s s d d e e u u D D c c t t d A d A r r w w a a 12-11-1 2 Courtesy of Steven Engineering, Inc.-230 Ryan Way,

Note 2) Since the table is made of a magnetic substance, it could become magnetized if touched by a magnet, etc.

A model should be selected with a gripping force of 7 to 14 times that of the workpiece mass. If high acceleration, deceleration or impact forces are encountered during motion, a further margin of safety should be considered.

Amount of displacement on A when the load is applied at F. Amount of displacement on A when the load is applied at F.

Use this as a standard when mounting, etc. Misc.