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ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)4VX3344-030.3120.501.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)4VX3344-030.3120.501.0730

._3d_items_collection = {}; } SMC VVQ0000-58A port plug, VQ0 SOL VALVE 4 WAY*** $1.80 + Add to Quote Add To Cart Add to Cart SMC VVQ1000-10A-1 blanking plate vq mfld, VQ1000/

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)3VX3334-030.67.90.331.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)4VX3244-030.2120.501.0530

for 110 VAC Removable memory YES EEMPROM cassette outputs) as option Service life 100,000 operations at Operating temperature 0-55 oC 8A/240 VAC or 24VDC Storage temperature -30 to =70 oC 30,000operations at Humidity 34 85% relative humidity 10A/110VAC without condensation Min load 50mW (10 mA at 5 VDC) Dimensions (I x h x d) 6-10: 71.2 x 90 x55 mm Response time 10ms 20: 124.6 x 90 x 55mm

VVFS4000-10A 1 pc. 3.2-23 VFRA4000 Dimensions 2 position single: VFRA4111-03 04 2 position double: VFRA421103 04 SlA VlA SlA VlA VM/VR VH 03 04 03 04 03 04 3 position closed center: VFRA43113 position exhaust center: VFRA44113 position pressure center: VFRA45113.2-24

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)4VX3244-030.2120.501.0530

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)4VX3244-030.2120.501.0530

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)2.2VX3324-0314.60.191.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)2.2VX3324-0314.60.191.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)3VX3334-030.67.90.331.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)3VX3334-030.67.90.331.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)4VX3344-030.3120.501.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)4VX3344-030.3120.501.0730

ModelMax. operating pressure differential (MPa)Flow characteristicsMax. system pressure (MPa)Note)Weight (g) COM.Av x 10-6m2Cv converted3/8 (10A)3/8 (10A)3VX3334-030.67.90.331.0730

Solenoid: No.1 Solenoid, Body Option: 3 (10A), Style: 0 (Energized Open/N.C.), Option: K (Stainless Steel Body & Shading Coil, PTFE Seal, Class B Coil), Port Size: 02 [1/4 (10A)], Thread: N (NPT), Voltage: 3 (110VAC 50/60HZ), Lead Wire: G (Grommet), Surge Suppressor: S (Surge Suppressor)

Series VG342 is a 3 port pilot poppet solenoid valve and can be used as a selector or divider valve (external pilot). Actuation is changeable between N.C., N.O., or external pilot types. VG342 is possible to use in vacuum or under low pressures. No lubrication is required. 3 port pilot operated poppet valve , Material restriction type , Low power consumption: 4.8W DC (standard type); 2W

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

x PA+w x PC F=q x PA+(e-q) x PC F=-q x PA+r x PB+(w-e) x PC F=q x PA q, w and e are piston areas.