Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 20 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 7 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 13 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 2 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 3 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 4 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 6 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 10 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -
Bit offset Item Notes 0 OUT1 output 0: OFF 1: ON 1 OUT2 output 0: OFF 1: ON 8 Measurement diagnostics 0: Within range 1: Out of range (HHH/LLL) 14 Fixed output 0: Normal output 1: Fixed output 15 Error Diagnosis 0: Error not generated 1: Error generated 16 to 31 Flow measurement value With sign: 16 bit Bit offset 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 Item Flow measurement value
T-brackets T-nuts Model LC1-1-L5 (Weight: 16.0g) Model LC1-1-L3 (Weight: 15.5g) M (Weight: 10.0g) M5 M3 17.5 17.5 17.5 7.5 18 12 11 Model M 20 7.5 7.5 21 LC1-1-N3 M3 x 0.5 29 30 LC1-1-N5 M5 x 0.8 Controller Connectors These are connectors 'all halfpitch type' used for CN1 (control input/output) and CN2 (general purpose input/output).
Auto switch mount bracket BJ 31 11.
: Input unit is connected. 16 Output: SI unit (16 output) is connected. 32 Output: SI unit (32 output) is connected.
(Tightening torque of M3 screw should be 0.5 to 0.7 Nm.) (5)Tighten up M4 screw of auto switch mounting bracket to secure the auto switch mounting bracket.
Modify mounting conditions. 31 5. Basic Circuit for Cylinder Operation The basic circuit for operating the product with air filter, regulator, solenoid valve and speed controller (meter-out) is shown in the following figure. Air Cylinder Speed controller Solenoid valve Regulator Air source Air filter Fig. 15 Basic Circuit 32 5. Construction A In the case of 125 Fig 16.
BH BI (UU) 2-M3 x 0.5 (opposite side, same location) (For front port, use hexagon socket head set screw) Q H 2-J through JA depth of counter bore JB (opposite side, same location) 1.5 S BE CA CB BF DD D BD BG A 2.2 (0.4) Note 1) SD 16 BA 2-M3 x 0.5 depth 4 BB W 2-M3 x 0.5 (For side port, use hexagon socket head set screw) N BC Note 2) For the 180 specification, the slated line area do not
(M3 thread) (It is recommended to ground with resistance of 100 ohms or less) Accessories Hexagon socket head cap screw (M3 x 30): 2 pcs. Connects the SI unit and the valve manifold. Seal cap: 1 pc.
p8 p7 p6 p5 p4 p3 p2 p1 p0 PF3W720/520-;03 (at 16 L /min) Accuracy [% F.S.]
(6) 1 2-M4 x 0.7 thread length 8 P.C.D.38 2 1 2 4 45 3 41 32 2-M3 x 0.5 thread length 8 P.C.D.29 3 Low torque Metal seal type Rotary jointSeries MQR * symbol indicates flange dimensions Dimensions/Standard Type, Flange Type MQR8-M5 MQR12-M5 0.03 7 M6 x thread length 10 4-M3 x 0.5 thread length 6 P.C.D.43 4-M3 x 0.5 thread length 6 P.C.D.48 M6 x 1 thread length 10 0.03 8 4.1 0.05depth 10
How much water is crntained in 1 m3? Dew point2soo = 24glm".0.65= 15.6 g/mt When air is compressed, its capacity for holding moisture in vapor form is only that of its reduced volume. Hence, unless the temperature rises substantially, water will condense out. Erample 2: 1o m3 ol almospheric air at 15oc and 65yo r.h. is compresssd to 6 bar gauge pressure.
How much water is crntained in 1 m3? Dew point2soo = 24glm".0.65= 15.6 g/mt When air is compressed, its capacity for holding moisture in vapor form is only that of its reduced volume. Hence, unless the temperature rises substantially, water will condense out. Erample 2: 1o m3 ol almospheric air at 15oc and 65yo r.h. is compresssd to 6 bar gauge pressure.