= 0.7 MPa, P2 = 0.5 MPa Effective area at supply side (mm2) S at P1 = 0.7 MPa, P2 = 0.5 MPa Note 3) 5.1 1.9 PA 5.8 2.1 PB Note 3) 12.6 4.5 AEA 12.6 4.5 BEB 1-5-80
Item Classification pD(Torrcm) /D (Knudsen number) >0.5 <0.01 Viscous flow 0.5 to 0.015 0.01 to 0.3 Intermediate flow <0.015 >0.3 Molecular flow 8 Exhaust time (low/medium vacuum) 4 5 1 2 3 4 1 2 3 The time (gt) required to exhaust a chamber at low vacuum with volume V (l), from pressure P1 to P2, using a pump with pumping speed S (l/sec) is gt=2.3(V/S)log(P1/P2).
EtherNet/IP . 43 8. . 44 8.1 . 44 (1) PLC (PLC) . 44 (2) PLC (PLC ) . 44 8.2 . 44 (1) PLC . 44 (2) PLC . 46 9. . 48 9.1 . 48 9.2 . 49 9.3 . 51 9.4 . 52 (1) ABS . 54 (2) INC . 54 (3) LIN-A / LIN-I . 54 (4) CIR-R / CIR-L . 55 (5) SYN-I . 55 10. . 56 10.1 . 56 -2No.JXC-OMT0001CN-C 10.2 . 57 10.3 . 60 10.4 . 64 10.5 . 67 10.6 . 71 10.7 PLC . 73 10.8 . 73 11. . 74 11.1 . 74 11.2
(Copper-free) VH VHS IN P1 Flow Rate and Effective Area OUT IN P2 VR1211F Model Metric size 6 3.2 4 Applicable tubing O.D. If air is only supplied only to either P1 or P2 it, does not flow to the OUT side.
At this time, read vacuum pressure P1, obtain the suction flow rate from the flow-rate characteristics graph for the ejector that is being used, and render this amount as the leakage of the workpiece.
The inlet pressure obtained in the flow characteristic graph of silencer indicates the pressure (P1) prior to silencer. (Refer to the diagram below.)
When the inlet pressure (P1) is shut off and released, the check valve w, opens and the pressure in the diaphragm chamber q is released into the inlet side (Figure 2). This lowers the pressure in the diaphragm chamber q, and the force generated by pressure regulator spring e lifts the diaphragm.
Item Classification pD(Torrcm) /D (Knudsen number) >0.5 <0.01 Viscous flow 0.5 to 0.015 0.01 to 0.3 Intermediate flow <0.015 >0.3 Molecular flow 8 Exhaust time (low/medium vacuum) 4 5 1 2 3 4 1 2 3 The time (gt) required to exhaust a chamber at low vacuum with volume V (l), from pressure P1 to P2, using a pump with pumping speed S (l/sec) is gt=2.3(V/S)log(P1/P2).
HIROSE ELECTRIC CO., LTD. 55 2 x M2.6 x 0.45 Socket side 14 25 1 13 Terminal no. 47.04 Note 1) Types with 15 pins are also available. Refer to page 561 for details. Note 2) Lengths other than the above are also available. Please contact SMC for details. Note) For CE compliant models, DC-type only.
B All Ports: One-touch Fitting Model D1 D2 D3 d1 d2 d3 M1 M2 M3 L1 L21 L3 L4 A B C E F G1 J1 K1 N1 P1 Q1 ZH05DA-06-06-06 10.4 10.4 10.4 6 6 6 13.3 13.3 13.3 51.8 34.9 19.4 18.4 11 14 6 3.2 5.5 20 17 4.2 3.2 28 9.6 ZH07DA-06-06-06 55 ZH10DA-06-06-08 13.2 8 14.2 61.7 ZH13DA-08-10-10 13.2 15.9 15.9 8 10 10 14.2 15.6 15.6 71.8 43.9 22.4 24.4 17 20 9 4.3 7.8 27 22 4.2 35 12 ZH15DA-08-10-10 83.6
HIROSE ELECTRIC CO., LTD. 55 2 x M2.6 x 0.45 Socket side 14 25 1 13 Terminal no. 47.04 Note 1) Types with 15 pins are also available. Refer to page 561 for details. Note 2) Lengths other than the above are also available. Please contact SMC for details. Note) For CE compliant models, DC-type only.
98 55 98 55 98 A1 A2 58 91 6 B1 B2 56 95 56 95 Tube extensions 80 Pilot port Rc, NPT 1/8 12 R 132 100 42.3 91 116 1 2 SMC 4 x 6.5 (Mounting hole) 80 16 OUT IN 19 6 38 38 100 886 SRF Series Made to Order Specifications: Please contact SMC for detailed dimensions, specifications and lead times.
(inch) Connection thread UNF NPT Model H (Width across flats) A M Min. port size Effective area (mm 2)
Inlet pressure (IN) Pressure in diaphragm chamber When the inlet pressure (P1) is higher than the regulating pressure, the check valve w closes and operates as a normal regulator (Figure 1). When the inlet pressure (P1) is shut off and released, the check valve w opens and the pressure in the diaphragm chamber q is released into the inlet side (Figure 2).
62.5 10.3 10.9 10.3 10.9 12.3 13.4 12.3 13.4 36.5 44 55 62.5 Note 1) ;in the table indicates the pad material "N, S, U, F, GN, GS."
62.5 10.3 10.9 10.3 10.9 12.3 13.4 12.3 13.4 36.5 44 55 62.5 Note 1) ;in the table indicates the pad material "N, S, U, F, GN, GS."
Therefore, design within the rated water flow range (refer to the model column). 37 37 55 55 75 75 110 110 How to Calculate Outlet Air Temperature Correction Factor by Cooling Water Temperature Air pressure 0.7 MPa Outlet air temperature can be calculated with inlet air temperature, cooling water temperature and amount of air in the following procedure.
R1 R2 20 14.6 12 10 10 P 7.2 M5 X 0.8 (Not applicable to standard model.) 5-Rc(PT)1/8 (P, A, B, R1, R2 port) 2-PE port VQ 1.1 13.4 13.4 VQ4 VQZ 3 4 5 3 4 5 0 1 0 1 VQD L plug connector (L): VQZ1 5 (R)lLl01 M plug connector (M): VQZ1 5 (R)lMl01 VZS VFS VS Cover diameter 1.5 Cross section 0.23mm2 (Lead wire length) 54<59> VS7 Indicator light 300 117<119> Indicator light 300 129<131> 54<55
SUP. 3 1 2 3 1 2 3 1 2 E Padlock mounting position D C SUP J 2 2 x K A T IN OUT AA 3 L 2 x P1 (Port size) B V BB U Built-in silencer (Option) M (Width across flats) 3 N P2 (Port size) Q EXH Y Bracket (Option) R S X W Dimensions (mm) Standard specifications Model P1 P2 A B C D E F G H I J K L M 1/8, 1/4 1/4, 3/8 1/8 1/4 3/8 1/2 1/2 66.4 80.3 104.9 110.4 134.3 22.3 29.4 38.5 42 53 40 53 70
Max. 3.5 T N S M U D J Bracket (Option) AR20(K)-B to AR40(K)-06-B 2 x P1 Panel fitting dimensions A (Port size) Y W C B Q V K OUT OUT IN IN Z Plate thickness AR20(K)-B to AR30(K)-B: Max. 3.5 AR40(K)-B : Max. 5 R F P2 S (Pressure gauge port size) Bracket (Option) U M J D T N AR50(K)-B/AR60(K)-B 2 x P1 A (Port size) B Q C K OUT IN R F P2 S (Pressure gauge port size) Bracket (Option) T N J