(N.O.)3 3 B 1.VFR200 2.VFR210 P8 0.9Nm -10No.VFR2000-OMM0001 ) ARBF2000 P 1.0MPa 1) 0.05to0.83MPa 2) -5to60oC ()3) M5X0.8 (kg) 0.16 PA 5.5 (mm2) P1=0.7MPa,P2=0.5MPa S PB 5.1 DIN DIN DIN DIN / / / / AEA 12 (mm2) DIN 180 P2=0.5MPa S BEB 11 )0.9MPa ) )50oC )2 ) P A B -11 No.VFR2000-OMM0001 01C 01T COM A (A B B AB ) COM AB+ BVFR2100 A COM VFR2200 A COM B 3 400 5 A COM
stroke (mm) End lock Cushion Rod end configuration Model Rod through hole Variable stroke Extension adjustment 5 10 50 30 25 20 15 75 100 125 150 175 200 New New MTS8 Rubber bumper MTS12 Female threads (standard) MTS16 MTS20 Air cushion Male threads (optional) MTS25 MTS32 MTS40 Features 2 Series MTS 8, 12, 16, 20, 25, 32, 40 Precision Cylinder How to Order Port direction Bore size Nil P
Regulator 2000 2000 3/8HyperFlare to 8000 ml/min Measurement Range 1ml/min to 8000 ml/min 35 LVR40-Z11N 150 80 150 80 3/8Liquid Regulator The LTV20 is a hybrid E/P Regulator and 1/4 dome-loaded liquid regulator combined.This provides rapid response and tight packaging for closed-loop flow control.
1.3 x 10-10 P.526 XVD2-02S 522 Smooth Vent Valve (Supply Line) XVD Series RoHS How to Order 02 XVD 2 V Fitting type Smooth vent valve V S For VCR For Swagelok Space-saving Valve / needle valve integrated construction requires only 1/4 the piping space of previous models.
If an impact load is applied to the spline rod, the guide unit may be permanently deformed and displacement may increase. 0 10 20 30 Lateral load (N) 8-10-10 10 Precision Cylinder Series MTS 8, 12, 16, 20, 25, 32, 40 How to Order MX Piping direction MTS Bore size Standard piping type Axial piping type Nil P 8 8 mm MY MTS 8 F9BW 20 8 CY MG Courtesy of Steven Engineering, Inc.-230 Ryan Way,
Series: VFA3000, Manifold: VFA1000 P,R Port Size: 1/8; VFA3000 P,R Port Size: 1/4, Stations: 02, Type: Common Exhaust, Thread: NPT
Series: VFA3000, Manifold: VFA1000 P,R Port Size: 1/8; VFA3000 P,R Port Size: 1/4, Stations: 02, Type: Common Exhaust, Thread: NPTF
Series: VFA3000, Manifold: VFA1000 P,R Port Size: 1/8; VFA3000 P,R Port Size: 1/4, Stations: 02, Type: Common Exhaust, Thread: -
Series: VFA1000, Manifold: VFA1000 P,R Port Size: 1/8; VFA3000 P,R Port Size: 1/4, Stations: 02, Type: Common Exhaust, Thread: NPTF
Stations: 02 (2 Stations), Piping: B (U Side: Open; D Side: Open), Thread Type: N (NPT), Supply Unit Components: P (w/o Flow Adj. Valve; w/Stop Valve), Return Unit Flow Switch: 7 (Integrated Display), Return Unit Flow Range: 20 (2 to 16 L/min), Return Unit Components: S (w/Flow Adj.
Stations: 02 (2 Stations), Supply/Return Unit Layout: D (U Side: Open; D Side: Open), Thread Type: N (NPT), Supply Unit Components: P (w/o Flow Adj. Valve; w/Stop Valve), Return Unit Flow Switch: 7 (Integrated Display), Return Unit Flow Range: 40 (5 to 40 L/min), Return Unit Components: W (w/Flow Adj.
Stations: 2 Stations, A, B Port: 02 (Side 1/4), SI Unit: 0 (w/o SI Unit), P, R Port Size: 03 (3/8), P, R Port Location: B (Both Sides), Thread: T (NPTF)
Stations: 5 Stations, A, B Port: 02 (Side 1/4), SI Unit: QW (DeviceNet), P, R Port Size: 04 (1/2), P, R Port Location: B (Both Sides), Thread: T (NPTF)
Stations: 8 Stations, A, B Port: 02 (Side 1/4), SI Unit: QW (DeviceNet), P, R Port Size: 03 (3/8), P, R Port Location: B (Both Sides), Thread: T (NPTF)
Stations: 8 Stations, A, B Port: 02 (Side 1/4), SI Unit: QW (DeviceNet), P, R Port Size: 04 (1/2), P, R Port Location: B (Both Sides), Thread: T (NPTF)
Stations: 4 Stations, A, B Port: 02 (Side 1/4), SI Unit: 0 (w/o SI Unit), P, R Port Size: 03 (3/8), P, R Port Location: U Side, Thread: T (NPTF)
Stations: 2 Stations, A, B Port: 02 (Side 1/4), SI Unit: 0 (w/o SI Unit), P, R Port Size: 03 (3/8), P, R Port Location: B (Both Sides), Thread: Rc
Stations: 6 Stations, A, B Port: 02 (Side 1/4), SI Unit: 0 (w/o SI Unit), P, R Port Size: 03 (3/8), P, R Port Location: B (Both Sides), Thread: T (NPTF)
Stations: 7 Stations, A, B Port: 02 (Side 1/4), SI Unit: 0 (w/o SI Unit), P, R Port Size: 03 (3/8), P, R Port Location: B (Both Sides), Thread: T (NPTF)
Lateral load: FA=mAg NO mAm =2000.19.8 =196(N) YES Calculate lateral load F A FA=mAg (N) (g: gravitational acceleration : 9.8m/s2) F=776(N) at P=0.5(MPa) is found on Figure-2-1. 196776 Calculate allowable lateral load F at operating pressure P. For relationship between lateral load F and operating pressure P, refer to Figure-2-1 (P7).