SMC Corporation of America
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Cautions for use in an interlock circuit When an auto switch is used for an interlock signal requiring high reliability, devise a double interlock system to avoid trouble by providing a mechanical protection function, or by also using another switch (sensor) together with the auto switch. Also perform periodic maintenance inspections and confirm proper operation. 9.

Cautions for use in an interlock circuit When an auto switch is used for an interlock signal requiring high reliability, devise a double interlock system to avoid trouble by providing a mechanical protection function, or by also using another switch (sensor) together with the auto switch. Also perform periodic maintenance inspections and confirm proper operation. 9.

Cautions for use in an interlock circuit When an auto switch is used for an interlock signal requiring high reliability, devise a double interlock system to avoid trouble by providing a mechanical protection function, or by also using another switch (sensor) together with the auto switch. Also perform periodic maintenance inspections and confirm proper operation. 9.

Cautions for use in an interlock circuit When an auto switch is used for an interlock signal requiring high reliability, devise a double interlock system to avoid trouble by providing a mechanical protection function, or by also using another switch (sensor) together with the auto switch. Also perform periodic maintenance inspections and confirm proper operation. 9.

The values in these tables indicate the maximum stroke which can be used when the theoretical output is applied with an external force acting on the piston rod, or the cylinder is stopped in an intermediate position by an external stopper, etc.

A lateral load exceeding an allowable level is applied. The kinetic energy exceeds an allowable level. An excessive force is applied when mounting a load. The air leaks (seal is worn-out). Replace the seal. The following may be the cause of the trouble. The center between the cylinder and load deviates. A lateral load exceeding an allowable level is applied.

Position Change of Piping Port and Switch Rail (by-pass piping) Warning Maintaining an Unlocked Condition Warning 1. To maintain an unlocked condition, be sure to follow the steps shown below.

Rotation at 90 Angle adjusting screw n ge io sh an cu r ng of ati er Op Cushion valve 0 9 ay w ey k of e ng ra n tio ta Ro on cti ire g d tin jus ad gle An Angle adjusting screw Rotation at 180 n An io ge gle sh an cu a r of dju ng ati sti er ng Op d ire cti on Cushion valve 0 R ot 18 at y io wa n ra ey ng k of e Refer to page 200 for dimensions. 230 CRA1 Series Made to Order: -X6 to -X16

The maintenance must be performed by an operator who has sufficient knowledge and experience. If the product is used for an extended period with dust present on the emitters, the static neutralization performance will be reduced.

Note 6) Product other than the option R is not equipped with an earth leakage breaker. Please purchase an appropriate earth leakage breaker separately.

Cooling Capacity: 400 (38 kW), Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N (NPT, with Rc-NPT Conversion Fitting), Power Supply: 46 (50/60Hz: 3-phase 380 to 415 VAC; 60Hz: 3-phase 460 to 480 VAC), Option: A (w/Caster Adjuster foot)

Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: M (Applicable to Deionized Water Piping)

Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: J (w/Automatic Fluid Fill Function)

Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: W (SI Unit Only)

Cooling Capacity: 400 (38 kW), Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N (NPT, with Rc-NPT Conversion Fitting), Power Supply: 46 (50/60Hz: 3-phase 380 to 415 VAC; 60Hz: 3-phase 460 to 480 VAC), Option: Option Combination A+K

Cooling Capacity: 400 (38 kW), Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N (NPT, with Rc-NPT Conversion Fitting), Power Supply: 46 (50/60Hz: 3-phase 380 to 415 VAC; 60Hz: 3-phase 460 to 480 VAC), Option: K (w/Fluid Fill Port)

Cooling Capacity: 400 (38 kW), Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N (NPT, with Rc-NPT Conversion Fitting), Power Supply: 46 (50/60Hz: 3-phase 380 to 415 VAC; 60Hz: 3-phase 460 to 480 VAC), Option: M (Applicable to Deionized Water Piping)

Cooling Capacity: 400 (38 kW), Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N (NPT, with Rc-NPT Conversion Fitting), Power Supply: 46 (50/60Hz: 3-phase 380 to 415 VAC; 60Hz: 3-phase 460 to 480 VAC), Option: Option Combination A+D+K

Cooling Capacity: 400 (38 kW), Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N (NPT, with Rc-NPT Conversion Fitting), Power Supply: 46 (50/60Hz: 3-phase 380 to 415 VAC; 60Hz: 3-phase 460 to 480 VAC), Option: Option Combination D+K

Cooling Capacity: 200, Thread Type: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option 1: None, UL Certification: S (UL Certification)