The VN series is a combination of process valves that can be operated with pressure differential zero and comes with many variations. The VNA series is used for controlling pneumatic systems or air-hydro circuits. The VNB series controls various fluids. VNC is used for controlling the cutting oils and coolants used in machine tools. VNH is for controlling high pressure cutting oils and coolants
The VN series is a combination of process valves that can be operated with pressure differential zero and comes with many variations. The VNA series is used for controlling pneumatic systems or air-hydro circuits. The VNB series controls various fluids. VNC is used for controlling the cutting oils and coolants used in machine tools. VNH is for controlling high pressure cutting oils and coolants
The VN series is a combination of process valves that can be operated with pressure differential zero and comes with many variations. The VNA series is used for controlling pneumatic systems or air-hydro circuits. The VNB series controls various fluids. VNC is used for controlling the cutting oils and coolants used in machine tools. VNH is for controlling high pressure cutting oils and coolants
The VN series is a combination of process valves that can be operated with pressure differential zero and comes with many variations. The VNA series is used for controlling pneumatic systems or air-hydro circuits. The VNB series controls various fluids. VNC is used for controlling the cutting oils and coolants used in machine tools. VNH is for controlling high pressure cutting oils and coolants
The VN series is a combination of process valves that can be operated with pressure differential zero and comes with many variations. The VNA series is used for controlling pneumatic systems or air-hydro circuits. The VNB series controls various fluids. VNC is used for controlling the cutting oils and coolants used in machine tools. VNH is for controlling high pressure cutting oils and coolants
6 q e r t !5 w !4 !0 u y 32 to 50 With auto switch (built-in magnet) !6 q e r t !5 i o !1 !3 !2 !7 w !4 !0 u y Description No.
Home position switch De-energized operating type 0.1 Nm 24VDC 5% 5W (at 75C) Model Static torque Rated voltage Power consumption Brake specifications LC6D-220AD-Q (Refer to page 306 details.) LC6D-507AD-Q (Refer to page 306 for details.) Applicable driver Holding plate: MB1(1 pc.), Phillips countersunk head screw M3 x 6l (1 pc.)
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Description Material Aluminum die cast Aluminum die cast Top cover Bottom cover q w No.
Filtration material: HEPO II (PP) w q e r w q er 0.1 0.1 0.05 0.05 Pressure drop MPa Pressure drop MPa Filtration accuracy (m) 2 4 6 13 Filtration accuracy (m) 0.5 1 5 10 20 50 75 100 No.
How to Find the Flow Rate (At air temperature of 20C) Choke flow: (P2 + 0.1)/(P1 + 0.1) ) 0.5 293 273 + t Q = 120 x S x (P1 + 0.1) x Subsonic flow: when (P2 + 0.1)/(P1 + 0.1) > 0.5 Q = 240 x S x (P1 P2)(P2 + 0.1) x 293 273 + t Q: Air flow rate [ /min (ANR)] S: Effective area (mm2) P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] t: Air temperature [C] Note 1) Formulas above are
1 u q SMC o A Component Parts Replacement Parts Part no. No. Material No. Material Description Description q w e r t y u i o !0 !
RS Q G Basic type: RBL1411, RBL1412, RBL2015, RBL2725 With cap: RBLC1411, RBLC1412 RBLC2015, RBLC2725 RS H A Other dimensions are the same as the basic type.
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Filtration material: HEPO II (PP) w q e r w q er 0.1 0.1 0.05 0.05 Pressure drop MPa Pressure drop MPa Filtration accuracy (m) 2 4 6 13 Filtration accuracy (m) 0.5 1 5 10 20 50 75 100 No.
4 q q y u !1 !3 r t !1 M5 type U10/32 type M5 type U10/32 type !1 y !2 u !4 !3 i !5 u e r r t w e o !0 i o q q t y !0 !2 w !1 Meter-in type Meter-in type M5 type U10/32 type M5 type U10/32 type 15-9-94 4 Tamper Proof Speed Controller With One-touch Fitting, Elbow Type/Universal Type Construction Elbow type Meter-out type Universal type Meter-out type AS3201F-02 AS3301F-02 i w o !6 !
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Description MBt~~ial Q., Flange busb Resin Trul'lnionlpin Stainless ... . Mate