SMC Corporation of America
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Search Results "MXP8-20C-M9B"

10 to 60C50 to 500 mm/s(Adjuster option/Metal stopper: 50 to 200 mm/s)Rubber bumperShock absorber (Option is not available for Series MXP6 and MXP8)None (Adjuster option/Metal stopper)Non-lubeStandard equipment (Adjustable on one side only, for the MXP6)Rubber stopperShock absorberMetal stopperReed auto switch (2-wire, 3-wire) Solid state auto switch (2-wire, 3-wire)2-color indication solid

10 to 60C50 to 500 mm/s(Adjuster option/Metal stopper: 50 to 200 mm/s)Rubber bumperShock absorber (Option is not available for Series MXP6 and MXP8)None (Adjuster option/Metal stopper)Non-lubeStandard equipment (Adjustable on one side only, for the MXP6)Rubber stopperShock absorberMetal stopperReed auto switch (2-wire, 3-wire) Solid state auto switch (2-wire, 3-wire)2-color indication solid

10 to 60C50 to 500 mm/s(Adjuster option/Metal stopper: 50 to 200 mm/s)Rubber bumperShock absorber (Option is not available for Series MXP6 and MXP8)None (Adjuster option/Metal stopper)Non-lubeStandard equipment (Adjustable on one side only, for the MXP6)Rubber stopperShock absorberMetal stopperReed auto switch (2-wire, 3-wire) Solid state auto switch (2-wire, 3-wire)2-color indication solid

10 to 60C50 to 500 mm/s(Adjuster option/Metal stopper: 50 to 200 mm/s)Rubber bumperShock absorber (Option is not available for Series MXP6 and MXP8)None (Adjuster option/Metal stopper)Non-lubeStandard equipment (Adjustable on one side only, for the MXP6)Rubber stopperShock absorberMetal stopperReed auto switch (2-wire, 3-wire) Solid state auto switch (2-wire, 3-wire)2-color indication solid

10 to 60C50 to 500 mm/s(Adjuster option/Metal stopper: 50 to 200 mm/s)Rubber bumperShock absorber (Option is not available for Series MXP6 and MXP8)None (Adjuster option/Metal stopper)Non-lubeStandard equipment (Adjustable on one side only, for the MXP6)0 to 5 mm on one side only??

in the users equipment: 25 kW Power supply: 200 V 60 Hz Circulating fluid flow: 125 L/min@0.5 MPa External piping: Bypass piping + Heat load 21 Conditions 20 19 25 kW load Heat load fluctuation (0 kW 25 kW) 0 kW load 0 10 20 30 40 50 Time [Minute] Applicable to an ambient temperature of 20C.

M km, 20C 5m VVZS3000-21A-3 x 24AWG * For other commercial connectors, use a 25-pole female connector made in conformity with MIL-C-24308.

Safety standards CE marking, UL (NRTL) standards *1 Conditions: Circulating fluid set temperature 20C, Flow rate 3 L/min, Facility water temperature 20C, Flow rate 10 L/min, Ambient temperature 25C *2 The indicated values are with a stable load without turbulence in the operating conditions.

(choked flow) Subsonic flow : Flow greater than the critical pressure ratio Standard condition : Air in a temperature state of 20C, absolute pressure 0.1 MPa (= 100 kPa = 1 bar), relative humidity 65%. It is stipulated by adding the abbreviation (ANR) after the unit depicting air volume.

After 15 minutes, cool 32C down to 20C.

of 20%, V 1120 [W] x 1.2 = 1344 [W] After 15 minutes, cool 32C down to 20C.

20C (68F) bend the tubing into a U shape.

Contacts/Bulb gland Pressure Source Nil W Nil B C 1a1b (Standard) 2ab Contact Warning Enclosure Type A 20a (Standard) Type A 20b Type A 20c Bulb gland 1.

factor of 20%, 7.0 [kW] x 1.2 = 8.4 [kW] V After 15 minutes, cool 32C down to 20C.

O When the ambient temperature is 20C 5C and rated voltage is applied. P Coil change from AC to DC or DC to AC is impossible because the iron core shapes are different.

After 15 minutes, cool 32C down to 20C. HRL200-A Precautions on Cooling Capacity Calculation 1. Heating capacity When the circulating fluid temperature is set above room temperature, it needs to be heated by the thermo-chiller. The heating capacity depends on the circulating fluid temperature.

(Coil temperature: 20C, at rated voltage, without surge voltage suppressor.) For details, please contact SMC.

(Coil temperature: 20C, at rated voltage, without surge suppressor) Note 2) Impact resistance: No malfunction occurred when it is tested with a drop tester in the axial direction and at the right angles to the main valve and armature in both energized and de-energized states every once for each condition.