Apparent power (VA) Volt-ampere is the product of voltage (V) and current (A). Power dissipation (W): For AC , W = V/A cos. For DC, W = V/A. (Note) cos shows power factor. cos = 0.6 2. Surge voltage A high voltage which is momentarily generated in the shut-off unit by shutting off the power. 3.
Model Note Accessory/Option FH34 0 1 CB-48H Petroleum, Water-glycol, Emulsion to CB-48H-V Phosphoric ester FH44 0 1 Differential pressure indicator CB-52H Petroleum, Water-glycol, Emulsion FH342 CB-52H-V Phosphoric ester FH54 0 1 CB-64H Petroleum, Water-glycol, Emulsion to CB-64H-V Phosphoric ester FH64 0 1 FH34 0 1 CB-49H Petroleum, Water-glycol, Emulsion to CB-49H-V Phosphoric ester FH44
Example) AR30K-03BE-1NR-B w e V q Body size 20 25 30 40 50 60 Symbol Description V w With backflow function Nil Without backflow function K Note 1) With backflow function + V e Pipe thread type Nil Rc N NPT F G + 01 1/8 02 1/4 03 3/8 04 1/2 06 3/4 10 1 V r Port size + a Mounting Nil Without mounting option B Note 3) With bracket H With set nut (for panel mount) + Nil Without pressure
Combination of K and V (Only one or the other may be attached.) Note 2) Standard specification is the power cable with plug.
S070 VQD VQD-V Plug position B port N. C. A port N. O.
XSA1 4.5 6 XSA2 7 8 XSA3 10.5 11.5 Reverse pressure potential 0.5 MPa(G)*1 Weight New New 18% *1 XSA1-12 (Refer to the Specifications on page 3.) 0.5 kg 0.41 kg lighter *1 Rated voltage *1 XSA2-2 32 AC 100 V, 200 V, 110 V, 220 V, 240 V, 48 V, 24 V, 230 V DC 24 V, 12 V Applications Photovoltaic cell manufacturing Semiconductor manufacturing LCD manufacturing New New Female thread type (Rc,
1 1000 V = D 2 x L x (L) For the conductance, the equivalent conductance can be found in 8.
Y69A Y7PV Y69B Y7NWV Y7PWV Y7BWV 100 V 24 V 12 V Z73 Y59A Y7P Y59B Y7NW Y7PW Y7BW 3-wire (NPN) 2-wire Relay, PLC 5 V, 12 V IC circuit 3-wire (PNP) 2-wire 12 V Relay, PLC 24 V Grommet 3-wire (NPN) 3-wire (PNP) Diagnostic indication (2-color indication) IC circuit 5 V, 12 V 2-wire 12 V Lead wire length symbols: 0.5 mNil (Example) Y59A 3 m L (Example) Y59AL 5 m Z (Example) Y59AZ Since
L V V High Precision Guide Type REAH 100 REBHT32 REBH(T)25 Max.
Y69A Y7PV Y69B Y7NWV Y7PWV Y7BWV 100 V 24 V 12 V Z73 Y59A Y7P Y59B Y7NW Y7PW Y7BW 3-wire (NPN) 2-wire Relay, PLC 5 V, 12 V IC circuit 3-wire (PNP) 2-wire 12 V Relay, PLC 24 V Grommet 3-wire (NPN) 3-wire (PNP) Diagnostic indication (2-color indication) IC circuit 5 V, 12 V 2-wire 12 V Lead wire length symbols: 0.5 mNil (Example) Y59A 3 m L (Example) Y59AL 5 m Z (Example) Y59AZ Since
Designation Description 1 L+ +24 V for SI unit 2 SV24 V +24 V for solenoid valve 3 L0 V for SI unit 4 C/Q IO-Link communication line 5 SV0 V 0 V for solenoid valve -12No.EX-OMY0021 LED Indication, Settings and Status Monitoring LED indication LED LED Status Description Green ON Power ON, IO-Link communication inactive Green OFF Power OFF COM Flashing Green IO-Link communication active Yellow
N.C. -14No.PS-OMU0012-C Internal circuit and wiring example Setting of NPN open collector 2 outputs: Pressure sensor 3-wire type Max. 30 V, 20 mA Residual voltage: 1 V or less Setting of PNP open collector 2 outputs: Pressure sensor 3-wire type Max. 20 mA Residual voltage: 1 V or less Setting of NPN open collector 2 outputs: Pressure sensor 2-wire type Max. 30 V, 20 mA Residual voltage: 1
For example, when analogue output is 1 to 5 V, F.S.=5[V] 1[V]=4[V]. (Reference: 1%F.S. = 4[V] 1% = 0.04[V]) F F.S. (full span / full scale) Fluid contact part A part that comes into physical contact with the fluid. I Instantaneous flow The flow passing per unit of time. If it is 10 L/min, there is a flow of 10 L passing through the device in 1 minute.
V (2) Analog Output 2 Analog output signal 2 CH2 circulating fluid temperature 0C100C: 010 V 1 CH2 electric conductivity 0.150.0 S/cm: 0.0210.0 V 2: In the case of option D1 "CH1 with electrical conductivity control".
Operating Conditions Model : ML2B32 Load : 15N Speed , Va : 0.25m/s Pressure : 0.5MPa L1 : 0.05m L2 : 0.05m W W L1 L1 Loading Static Loading Dynamic Loading A Load due to W W3 B Momentum due to W M2 C Momentum due to we when stopping M3 V D M1 V 2.
Follow their instructions. -11No.D-S-OMK0010-H Circuit diagram D-M9NA(V) D-M9PA(V) D-M9BA(V) (Sink input mode) D-M9BA(V) (Source input mode) : The number marked on each lead wire color shows the pin number of pre-wired connector. -12No.D-S-OMK0010-H Troubleshooting When the auto switch falls in operation failure, identify the trouble with the following flow chart.
Follow their instructions. -13No.D-S-OMB0023-C Circuit diagram D-S79#/D-S99(V)# (Power supply for switch and load are separate) D-S7P#/D-S9P(V)# D-T79#(C)/D-T99(V)# (Sink input mode) D-T79#(C)/D-T99(V)# (Source input mode) : The number marked on each lead wire color shows the pin number of pre-wired connector.
(Example: If the Pressure switch with output impedance of 1k is connected to the A/D converter to detect the analogue output of 5 V, the detected voltage by the A/D converter becomes 5(V) 1(M)/(1(k) + 1(M)) 4.995(V), and there is an error of approximate 0.005 V.) Output impedance R The pressure range in which the Pressure switch satisfies the specifications.
(Example: If the Pressure switch with output impedance of 1k is connected to the A/D converter to detect the analog output of 5 V, the detected voltage by the A/D converter becomes 5(V) 1(M)/(1(k) + 1(M)) 4.995(V), and there is an error of approximate 0.005 V.) Output impedance R The pressure range in which the Pressure switch satisfies the specifications.
Designation Description 1 L+ +24 V for SI unit 2 SV24 V +24 V for solenoid valve 3 L0 V for SI unit 4 C/Q IO-Link communication line 5 SV0 V 0 V for solenoid valve FE terminal Connect the FE terminal to ground.