Size: S (Small Flow Style), Control Valve: 1 (Speed Controller), Combination Valve: 3 (Skip Valve), Voltage: 5 (24VDC), Electrical Entry: D (DIN Terminal), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 1 (Stop Valve/Skip Valve), Voltage: 5 (24VDC), Electrical Entry: D (DIN Terminal), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 2 (Stop Valve), Voltage: 1 (100VAC), Electrical Entry: D (DIN Terminal), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 2 (Stop Valve), Voltage: 1 (100VAC), Electrical Entry: G (Grommet), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 2 (Stop Valve), Voltage: 5 (24VDC), Electrical Entry: D (DIN Terminal), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 2 (Stop Valve), Voltage: 5 (24VDC), Electrical Entry: G (Grommet), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 3 (Skip Valve), Voltage: 1 (100VAC), Electrical Entry: G (Grommet), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 3 (Skip Valve), Voltage: 5 (24VDC), Electrical Entry: D (DIN Terminal), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 3 (Speed Controller For Minimal Flow (CCVS Only)), Combination Valve: 3 (Skip Valve), Voltage: 1 (100VAC), Electrical Entry: D (DIN Terminal), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 0 (None), Voltage: w/o Combination Valve, Electrical Entry: Air Operated Style, Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 2 (Metering Valve), Combination Valve: 2 (Stop Valve), Voltage: 0 (Air Operated Style), Electrical Entry: Air Operated Style, Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Size: S (Small Flow Style), Control Valve: 1 (Speed Controller), Combination Valve: 1 (Stop Valve/Skip Valve), Voltage: 5 (24VDC), Electrical Entry: G (Grommet), Suffix: U1 (Convertor Unit/for CC63 (To be Integrated in CCT63))
Switch 5 to 24VDC Load current (1C): 100mA, Internal voltage drop: 0.8V or less Load current (1C): 40mA, Internal voltage drop: 0.4V or less Specifications Note) When the work load exceeds 15kg, the speed may be limited. Contact SMC in this case.
Switch 5 to 24VDC Load current (1C): 100mA, Internal voltage drop: 0.8V or less Load current (1C): 40mA, Internal voltage drop: 0.4V or less Specifications Note) When the work load exceeds 15kg, the speed may be limited. Contact SMC in this case.
Switch 5 to 24VDC Load current (1C): 100mA, Internal voltage drop: 0.8V or less Load current (1C): 40mA, Internal voltage drop: 0.4V or less Specifications Note) When the work load exceeds 15kg, the speed may be limited. Contact SMC in this case.
SY3000-54-2C(-Q) SY3000-54-1C(-Q) SY5000-54-1C(-Q) SY7000-54-1C(-Q) Assembly part no.
The air-hydro unit consists of a converter and a valve unit that are compactly integrated. It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air. Thus, in spite of using pneumatic equipment, it performs similarly to a hydraulic unit
The air-hydro unit consists of a converter and a valve unit that are compactly integrated. It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air. Thus, in spite of using pneumatic equipment, it performs similarly to a hydraulic unit
For each increase of 1C in the inlet air temperature, the outlet air atmospheric pressure dew point increases by approximately 0.8C.
For other models, when the tube length is 5 meters or less, a rise of the outlet air atmospheric pressure dew point will be 1C or less.