Smart Cushion Valve
SP-C series
Smart cushion valve Large type ø10 SP-CL10
*Please note that accessories depicted in the image are for illustrative purposes only and may not be included with the product.
Specifications
Model | SP-CL10 | |||
Type | Smart cushion valve Large type | |||
Supported pipe diameter | Pipe outer diameter | ø10 ø0.39" | ||
Pipe material | Nylon, Polyurethane | |||
Supported fluids | Air*1 | |||
Supported fluid temperature | -10 to +50°C 14 to 122°F | |||
Operating pressure range | 0.2 to 0.8 MPa | |||
Pressure resistance | 1.0 MPa | |||
Maximum operating frequency | 1 Hz | |||
Flow rate characteristics | Before deceleration | 660 L/min*2 | ||
After deceleration | 210 L/min*2 | |||
Number of connectable cylinder sensors | 1 | |||
Number of outputs | 2 | |||
Control output | NPN/PNP switchable, Open-collector output: 30 VDC or less | |||
External input | Short-circuit current: 1.5 mA max. | |||
Network function | IO-Link (Specification v1.1/COM3) | |||
Power supply | Power voltage | 24 VDC -20 to +25%, ripple included, Class 2 or LPS*3 | ||
Power consumption | 1.2 W (50 mA or less at 24 V/62 mA or less at 19.2 V [smart cushion valve only; excluding load current])*4 | |||
Environmental resistance | Enclosure rating | IP65/IP67 (IEC 60529) | ||
Protection circuit | Reverse polarity protection, Power supply surge protection, Output overcurrent protection | |||
Ambient temperature | -10 to +50°C 14 to 122°F (no freezing) | |||
Relative humidity | Up to 85% RH (no condensation) | |||
Vibration resistance | 10 to 500 Hz; Power spectral density: 0.816 G2/Hz; X, Y, and Z directions | |||
Shock resistance | 100 m/s2 328.1'/s2 (10 G); 1000 times each for X, Y, and Z axes | |||
Material | Flow path | Polyamide, Aluminum alloy, FKM, NBR, HNBR, POM | ||
Non-flow path | Polyamide, Aluminum alloy, FKM, NBR, HNBR, SUS304, POM, PBT, PAR | |||
Weight | Approx. 170 g 6.00 oz | |||
*1 If air with a low dew point is used as the operating fluid, deterioration of the lubrication characteristics inside the device may affect the reliability (service life) of the equipment. | ||||