Direct Operated 3 Port Solenoid Valve
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- Silvester Richardson
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1 CT.EUS06 UK Direct Operated Port Solenoid Valve For Water, Oil, Steam, ir Reduction of power consumption (DC specification) 6 W.5 W 8 W W.5 W W New VX Series VX//
2 Improvement of corrosion resistance Special magnetic material adopted Enclosure: Equivalent to IP65 Low noise construction Special construction enables to reduce the metal noise. (DC specification) Reduction of power consumption (DC specification) VX: 6 W.5 W VX: 8 W W VX:.5 W W Flame resistance UL9V0 conformed Flame resistant mold coil material Improvement of maintenance performance Maintenance is performed easily due to the threaded assembly. Direct Operated Port Solenoid Valve For Water, Oil, Steam, ir New Series VX// Normally Closed (N.C.) / Normally Open (N.O.) / Common (COM.) VX VX VX.5 mmø. mmø mmø mmø /8, / /, /8 /, /8 Body Brass Stainless steel Guide pin PPS Stainless steel Material Seal Main valve poppet Fixed sealant EPDM F EPDM PTFE Fluid Water, Oil, Steam, ir Manifold: Normally Closed (N.C.) / Normally Open (N.O.) / Common (COM.) VVX VVX VVX.5 mmø. mmø mmø mmø (Common SUP/EXH type) IN port OUT port EXH port / /8, / / Body Brass Material Guide pin PPS Stainless steel Seal EPDM Fluid Oil, ir Features
3 applications NewVX Series variations Direct Operated Port VX// For ir, Vacuum, Water, Steam, Oil Pilot Operated Port VXD// For ir, Water, Oil Pilot Operated Port for Zero Differential Pressure VXZ/ For ir, Vacuum, Water, Oil Valve type N.C./N.O. /8 to / mmø to 0 Pilot Operated Port VXP// For Steam (ir, Water, Oil) Valve type N.C./N.O. / to to 50 Water Hammer Relief, Pilot Operated Port VXR// For Water, Oil mmø 0 to 50 Valve type N.C./N.O. / to mmø 0 to 5 Pilot Operated Port for High Pressure VXH For ir, Water, Oil Valve type N.C./N.O. / to to 50 mmø 0 to 50 Port for Dust Collector (Solenoid type, ir Operated type) VXF/, VXF/ For ir Valve type N.C./N.O. / to mmø 0 to 50 ir Operated / Port VX/, VX/ For ir, Vacuum, Water, Oil Valve type N.C. / to / mmø 0 The VX series has been renewed as the new VX series, with a new construction Valve type N.C. / to / mmø 0 to 0 VX/ VX/ Valve type N.C./N.O. COM. Port size /8 to / /8 to /8 mmø to 0.5 to Features
4 Solenoid Valves Flow Characteristics (How to indicate flow characteristics). Indication of flow characteristics Indication of the flow characteristics in specifications for equipment such as a solenoid valve, etc. is depending on Table (). Table () Indication of Flow Characteristics Corresponding equipment Equipment for pneumatics Equipment for controlling process fluids Indication by international standard C, b v Other indications S Cv Cv Standards conforming to ISO 658: 989 IS B 890: 000 IS B 890: 000 Equipment: IS B 8, 8, 85, 89, 88 NSI/(NFP)T..: 990 IEC605: 99 IS B 005: 995 Equipment: IS B 8, 8, 8. Equipment for pneumatics. Indication according to the international standards () Standards conforming to ISO 658: 989 : Pneumatic fluid powercomponents using compressible fluids Determination of flowrate characteristics IS B 890: 000 : Pneumatic fluid powercomponents using compressible fluids How to test flowrate characteristics () Definition of flow characteristics Flow rate characteristics are indicated as a result of a comparison between sonic conductance C and critical pressure ratio b. Sonic conductance C : Value which divides the passing mass flow rate of an equipment in a choked flow condition by the product of the absolute upstream pressure and the density in the standard condition. Critical pressure ratio b : Checked flow will occur when the pressure ratio (downstream pressure/upstream pressure) is at or smaller than this value. Choked flow : It is the flow in which the upstream pressure is higher than the downstream pressure and where sonic speed is reached in a certain part of the equipment. Gaseous mass flow rate is in proportion to the upstream pressure and not dependent on the downstream pressure. Subsonic flow : Flow when the pressure ratio is greater than the critical pressure ratio. Standard condition : ir in a temperature state of 0 C, absolute pressure 0. MPa (= 00 kpa = bar), relative humidity 65%. It is stipulated by adding the abbreviation (NR) after the unit depicting air volume. (standard reference atmosphere) Standard conforming to: ISO 88: 990 Pneumatic fluid powerstandard reference atmosphere, IS B 89: 000: Pneumatic fluid powerstandard reference atmosphere () Formula of flow rate It can be indicated by the practical unit as following. When P + 0. b, choked flow P Q = 600 x C (P + 0.) () + t When P + 0. > b, subsonic flow P + 0. P + 0. b P Q = 600 x C (P + 0.) () b + t Q : ir flow rate [dm /min (NR)], the SI unit dm (Cubic decimetre) is also allowed to be described by l (liter). dm = l. Front matter
5 Solenoid Valves Flow Characteristics C : Sonic conductance [dm /(s bar)] b : Critical pressure ratio [] P : Upstream pressure [MPa] P : Downstream pressure [MPa] t : Temperature [ C] Note) Formula of subsonic flow is the elliptic analogous curve. Flow characteristics curve is indicated in the Graph () For details, please use SMC s Energy Saving Program. Example) Obtain the air flow rate when P = 0. [MPa], P = 0. [MPa], t = 0 [ C] for a solenoid valve where C = [dm /(s bar)] and b = 0.. ccording to formula (), the maximum flow rate = 600 x x ( ) x 9 = 600 [dm /min (NR)] Pressure ratio = = Based on the Graph (), the flow rate ratio is going to be if it is read with a pressure ratio of 0.8 and a flow ratio of b = 0.. Hence, flow rate = Max. flow rate x flow rate ratio = 600 x = 0 [dm /min (NR)] Flow rate ratio b = P Equipment P C, b Q Pressure ratio (P + 0.) / (P + 0.) Graph () Flow characteristics line () Test method Pipe the text equipment to the text circuit shown in Fig. (). Keep the upstream pressure at a certain constant level above 0.MPa. First measure the maximum flow rate in saturation. Then, measure the flow rate, upstream pressure and downstream pressure each at 80%, 60%, 0% and 0% points of the flow rate. Calculate the sonic conductance C from the maximum flow rate. lso substitute other data for variables in the formula for subsonic flow and obtain the critical pressure rate b by averaging the critical pressure rates at those points. Pressure gauge or pressure convertor Pressure control equipment ød d Thermometer d ød Differential pressure gauge or differential pressure converter ød Flow control valve ir supply Filter Shut off valve 0d 0d d 0d d Flow meter Pipe for measuring temperature Equipment for test Pipe for measuring pressure in the upstream side Pipe for measuring pressure in the downstream side Fig. () Test circuit based on ISO 658, IS B 890 Front matter
6 Solenoid Valves Flow Characteristics (How to indicate flow characteristics). Effective area S () Standards conforming to IS B 890: 000: Pneumatic fluid powercomponents using compressible fluids Determination of flow rate characteristics Equipment standards: IS B 8: port solenoid valve for pneumatics IS B 8: port solenoid valve for pneumatics IS B 85: port, 5 port solenoid valve for pneumatics IS B 89: Silencer for pneumatics IS B 88: Fittings of flexible joint for pneumatics () Definition of flow characteristics Effective area S: The flow ability of a component, represented by its equivalent "ideal" cross sectional area. This effective area is calculated under sonic conditions by measuring pressure loss in an air tank. Like sonic conductance C, the effective area is a method of expressing the flow rate of a product. () Formula of flow rate When P + 0., choked flow P Q = 0 x S (P + 0.) () + t When P + 0. >, subsonic flow P Q = 0 x S (P + 0.) (P P) () + t Conversion with sonic conductance C: S = 5.0 x C (5) Q :ir flow rate[dm /min(nr)], the SI unit dm (cubic decimetre) is also allowed to be described by l (litre) S : Effective area [mm ] P : Upstream pressure [MPa] P : Downstream pressure [MPa] t : Temperature [ C] Note) Formula for subsonic flow () is only applicable when the critical pressure ratio b is unknown. It is the same as the formula for sonic conductance C () only when b= () Test method Pipe the text equipment to the text circuit shown in Fig. (). Fill the air tank with compressed air and keep the pressure at a constant level above 0.6MPa (MPa). Then discharge the air until the pressure in the tank drops to MPa (0.MPa). Measure the time required to dischargue the air and the residual pressure in the air tank after leaving it until the pressure becomes stable in order to calculate the effective sectional area S by the following formula. Select the capacity of the air tank according to the effective sectional area of the text equipment. In the case of IS B 8, 8, 85, 89, 88, the pressure values are in parentheses and the coefficient of formula is.9. V Ps S =. log0 () (6) t P + 0. T S : Effective area [mm ] V : ir tank capacity [dm ] t : Discharging time [s] Ps : Pressure inside air tank before discharging [MPa] P : Residual pressure inside air tank after discharging [MPa] T : Temperature inside air tank before discharging [K] Pressure control equipment Thermometer ir supply Filter Shut off valve Pressure switch Control circuit Pressure gauge or pressure convertor Timer (Clock) Pressure recorder Power supply Solenoid valve Equipment for test Rectifier tube in the upstream side Fig. () Test circuit based on IS B 890 Rectifier tube in the downstream side Front matter
7 Solenoid Valves Flow Characteristics. Flow coefficient Cv factor The United States Standard NSI/(NFP)T..:990: Pneumatic fluid powerflow rating test procedure and reporting method for fixed orifice components defines the flow coefficient Cv factor by the following formula which is based on testing conducted with a test circuit analogo us to ISO 658. Q Cv = () P (P + Pa).5 T P : Pressure drop between the static pressure tapping ports [bar] P : Pressure of the upstream tapping port [bar gauge] P : Pressure of the downstream tapping port [bar gauge]:p = P P Q : Flow rate [dm /s standard condition] Pa : tmospheric pressure [bar absolute] T : Upstream absolute temperature [K] Test conditions are < P + Pa = 6.5 ± 0. bar absolute, T = 9 ± 5K, 0.0 bar P 0. bar. This is the same concept as effective area which ISO658 stipulates as being applicable only when the pressure drop is small in relation to the upstream pressure so that the compression of air is negligible.. Equipment for process fluids () Standards conforming to IEC605: 99: Industrial process control valves. Part : Flow capacity, Section ThreeTest procedures IS B 005: 995: Test method for the flow coefficient of a valve Equipment standards: IS B 8: Regulator for water IS B 8: Solenoid valve for steam IS B 8: Solenoid valve for fuel oil () Definition of flow characteristics v factor: It is the value representing the flow of clean water in m /s which runs through a valve (equipment for test) when the pressure difference is Pa. It is calculated using the following formula. ρ v = Q (8) P v : Flow coefficient [m ] Q : Flow rate [m /s] P : Pressure difference [Pa] ρ : Density of fluid [kg/m ] () Formula of flow rate It is described by the known unit. lso, the flow characteristics line shown in the Graph (). In the case of liquid: P Q =.9 x 0 6 v (9) G Q : Flow rate [l/min] v : Flow coefficient [m ] P : Pressure difference [MPa] G : Relative density [water = ] In the case of saturated aqueous vapour: Q = 8. x 0 6 v P(P + 0.) (0) Q : Flow rate [kg/h] v : Flow coefficient [m ] P : Pressure difference [MPa] P : Upstream pressure [MPa]: P = P P P : Downstream pressure [MPa] Front matter
8 Solenoid Valves Flow Characteristics (How to indicate flow characteristics) Conversion of flow coefficient: v = 8 x 0 6 Kv = x 0 6 Cv () Here, Kv factor: It is the value representing the flow rate of clean water in m /h which runs through the valve at 5 to 0 C, when the pressure difference is bar. Cv factor (Reference values): It is the value representing the flow rate of clean water in US gal/min which runs through the valve at 60 F, when the pressure difference is lbf/in (psi). Values of pneumatic Kv are different from Cv because the testing method is different from each other. Saturated aqueous vapour flow rate Q0 [kg/h] (when v = x 0 6 [m ]) Ex. P = MPa P = 0.6MPa P = 0.MPa Upstream pressure P = MPa P = 0.8MPa P = 0.MPa P = 0.MPa P = 0.MPa Ex Water flow rate Q0 [l /min] (When v = x 0 6 [m ]) Pressure differential P [MPa] Graph () Flow characteristics line Example ) Obtain the pressure difference when 5 [l/min] of water runs through the solenoid valve with an v = 5 x 0 6 [m ]. Since Q0 = 5/5 = 0. [l/min], according to the Graph (), if reading P when Q0 is 0., it will be 0.0 [MPa]. Example ) Obtain the flow rate of saturated aqueous vapour when P = 0.8 [MPa], P = [MPa] with a solenoid valve with an v =.5 x 0 6 [m ]. ccording to the Graph (), if reading Q0 when P is 0.8 and P is 0.008, it is [kg/h]. Hence, the flow rate Q = x.5 =.05 [kg/h]. Front matter 5
9 Solenoid Valves Flow Characteristics () Test method By attaching the equipment for testing with the test circuit shown in Fig. () and running water at 5 to 0 C, measure the flow rate with a pressure difference of 0.05 MPa. However, the pressure difference needs to be set with a large enough difference so that the Reynolds number does not go below a range of x 0. By substituting the measurement results for formula (8) to figure out v. Thermometer Test range Pressure tap Equipment for test Pressure tap Throttle valve in the upstream side Flow meter d 6d Throttle valve in the downstream side 0d 0d Fig. () Test circuit based on IEC605, IS B 005 Front matter 6
10 Flow Characteristics Note) Use this graph as a guide. In the case of obtaining an accurate flow rate, refer to front matter pages to 6. For ir How to read the graph The sonic range pressure to generate a flow rate of 00 l/min (NR) is P 0. MPa for a ø orifice (VX), P 0. MPa for a ø. orifice (VX), and P 5 MPa for a ø.5 orifice (VX). Downstream pressure of valve (P) MPa Flow rate Q l/min (NR) For Water How to read the graph When a water flow of l/min is generated, P 0.0 MPa for a ø orifice (VX), P MPa for a ø. orifice (VX), and P 0. MPa for a ø.5 orifice (VX). Flow rate Q l/min Pressure differential P = (P P) MPa Front matter
11 pplicable Fluid Check List Single Unit Series VX// ll Options (Single Unit) Option symbol Standard B C D E G H K M N P Q S V Seal material Main valve poppet EPDM F EPDM EPDM F EPDM F F Fixed Seals EPDM PTFE EPDM EPDM PTFE EPDM PTFE PTFE Body material /Shading coil material Brass (C) Brass (C)/ Copper Stainless steel Stainless steel/silver Brass (C)/ Copper Brass (C) K, M, V options are for nonlube treatment. Guide pin material PPS Stainless steel PPS Stainless steel PPS Stainless steel Coil insulation type B H B H Note Oil free Nonleak, Oil free Steam (Max. 8 C) PPS B Nonleak, Oil free Fluid Name and Option (Single Unit) Fluid (pplication) Brass (C) Caustic soda (5% ) Gas oil Silicon oil Steam system (Steam) (Max. 8 C) S Steam system (Condensation) (Max. 99 C) E Vacuum system (for pad) Standard Medium vacuum (up to 0. Pa.abs) V Perchloroethylene Helium V Nonleak (0 6 Pa m /s) V Heated water (Max. 99 C) E Option symbol and body material Stainless steel H H Note ) The leakage amount (0 6 Pa m /s) of V, M options are values when differential pressure is 0. MPa. Note ) If using for other fluids, contact SMC. Q P M H M M P Manifold Series VVX// ll Options (Manifold) Option symbol Standard B D E V Seal material Main valve poppet EPDM EPDM Fixed seals EPDM EPDM Body material /Shading coil material Brass (C) Brass (C)/ Copper Brass (C) Guide pin material PPS Stainless steel PPS luminum is the only available material for the manifold base. Coil insulation type B H B Note Nonleak, Oil free Fluid Name and Option (Manifold) Fluid (pplication) Gas oil Silicon oil Vacuum system (for pad) Medium vacuum (up to 0. Pa.abs) Perchloroethylene Helium Nonleak (0 6 Pa m /s) Option symbol Standard Note ) The leakage amount (0 6 Pa m /s) of V options are values when differential pressure is 0. MPa. Note ) If using for other fluids, contact SMC. V V V Front matter 8
12 Glossary of Terms Pressure Terminology. Maximum operating pressure differential The maximum pressure differential (the difference between the inlet and outlet pressure) which is allowed for operation, with the valve closed or open. When the downstream pressure is 0 MPa, this becomes the maximum operating pressure.. Minimum operating pressure differential The minimum pressure differential (differential between the inlet pressure and the outlet pressure) required to keep the main valve fully opened.. Maximum system pressure The maximum pressure that can be applied inside the pipelines (line pressure). (The pressure differential of the solenoid valve unit must be less than the maximum operating pressure differential.). Withstand pressure The pressure which must be withstood without a drop in performance after returning to the operating pressure range. (value under the prescribed conditions). Material : : Nitrile rubber Fluoro rubber Others EPDM: Ethylene propylene rubber PTFE: Polytetrafluoroethylene resin F: Perfluoroelastomer. Oil free treatment The degreasing and washing of wetted parts.. Passage symbol In the IS symbol ( ) IN and OUT are in a blocked condition ( ), but actually in the case of reverse pressure (OUT>IN), there is a limit to the blocking. ( ) is used to indicate that blocking of reverse pressure is not possible. Electrical Terminology. pparent power (V) Voltampere is the product of voltage (V) and current (). Power dissipation (W): For C, W = V. cosθ. For DC, W = V.. (Note) cosθ shows power factor. cosθ = 0.6. Surge voltage high voltage which is momentarily generated in the shutoff unit by shutting off the power.. Degree of protection degree defined in the IS C 090: Waterproof test of electric machinery/appliance and the degree of protection against the intrusion of solid foreign objects. IP65: Dusttight, Low jetproof type Low jetproof type means that no water intrudes inside the equipment that could hinder it from operating normally by means of discharging water for minutes in the prescribed manner. Take appropriate protection measures, since a device is not usable in an environment where a water drop is splashed. Front matter 9
13 Direct Operated Port Solenoid Valve Series VX// For Water, Oil, Steam, ir Single Unit Solenoid Coil Coil: Class B, Class H Valve Normally closed (N.C.) Normally open (N.O.) Common (COM.) Rated Voltage 00 VC, 00 VC, 0 VC, 0 VC, 0 VC, 0 VC, 8 VC, VDC, VDC Normally Closed (N.C.) / Normally Open (N.O.) / Common (COM.) VX VX VX.5 mmø. mmø mmø mmø 8,, 8, 8 Material Body Brass, Stainless steel Seal,, EPDM, PTFE, F Electrical Entry Grommet Conduit DIN terminal Conduit terminal Manifold Valve Normally closed (N.C.) Normally open (N.O.) Common (COM.) Base Common SUP/EXH type Solenoid Coil Coil: Class B, Class H Rated Voltage 00 VC, 00 VC, 0 VC, 0 VC, 0 VC, 0 VC, 8 VC, VDC, VDC Material Body Brass Base luminum Seal,, EPDM Electrical Entry Grommet Conduit DIN terminal Conduit terminal Normally Closed (N.C.) / Normally Open (N.O.) / Common (COM.).5 mmø. mmø mmø mmø (Common SUP/EXH type) IN port OUT port EXH port VX VX 8, VX
14 Series VX// Standard Specifications Valve specifications Coil specifications Valve construction Withstand pressure (MPa) Body material Seal material Enclosure Environment Rated voltage C (Class B coil, with fullwave rectifier) C (Class H coil) DC llowable voltage fluctuation C (Class B coil, llowable with fullwave rectifier) leakage voltage C (Class H coil) DC Coil insulation type Electrical entry, Grommet with surge voltage suppressor (GS) has a rating of IP0. Direct operated poppet.0 Brass (C), Stainless steel,, EPDM, PTFE, F Dusttight, Low jetproof (equivalent to IP65)* Location without corrosive or explosive gases 00 VC, 00 VC, 0 VC, 0 VC, 0 VC, 0 VC, 8 VC VDC, VDC ±0% of rated voltage ±5% or less of rated voltage ±0% or less of rated voltage ±% or less of rated voltage Class B, Class H Solenoid Coil Specifications DC Specification VX VX VX VX VX VX Power consumption (W).5 pparent power (V) 9.5 Temperature rise (C ) Note) Note) The values are for an ambient temperature of 0 C and at the rated voltage C Specification (Class B coil, with fullwave rectifier) VX VX VX Frequency (Hz) Temperature rise (C ) Note) There is no difference in the frequency and the inrush and energised apparent power, since a rectifying circuit is used in the C (Class B) coil. Note) The values are for an ambient temperature of 0 C and at the rated voltage. C Specification (Class H coil) pparent power (V) Inrush Energised Note) The values are for an ambient temperature of 0 C and at the rated voltage. Temperature rise (C ) Note)
15 Direct Operated Port Solenoid Valve Series VX// For Water, Oil, Steam, ir How to Order Solenoid Coil ssembly DC Coil 5 6 VX0 Series VX VX VX VDC VDC N 5 G Note ) Note ) Refer to Table () for the available combinations. G Grommet GS With grommet surge voltage suppressor C Conduit Electrical entry C/Class B coil (with fullwave rectifier) VX0 Series VX VX VX N G 8 R G Grommet C Conduit Note ) 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz Note ) Refer to Table () for the available combinations. Electrical entry T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light D DIN Connector DS DIN with surge voltage suppressor DL DIN with light DZ DIN with surge voltage suppressor suppressor and light DO For DIN (without connector) Refer to Table () for the available combinations between each electrical option and rated voltage. C/Class H coil 8 VX0 Series VX VX VX N G Note ) 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz Note ) Refer to Table () for the available combinations. G Grommet GS With grommet surge voltage suppressor H C Conduit Z Electrical entry T With conduit terminal TL With conduit terminal and light D DIN DL DIN with light DO For DIN (without connector) Connector Refer to Table () for the available combinations between each electrical option and rated voltage. Surge voltage suppressor is integrated into the C/Class B coil as standard. Table () Rated Voltage Electrical Option Class B S L S C/ DC C DC Voltage symbol Name plate part no. ZTVX Voltage 00 V 00 V 0 V 0 V 0 V 8 V 0 V V V With surge voltage suppressor Valve model With light Z With light and surge voltage suppressor With surge voltage suppressor Clip Class H L With light DC specification is not available. Name plate Z With light and surge voltage suppressor Note ) Option S, Z are not available as a surge voltage suppresor is integrated into the C/Class B coil as standard. When changing coils, C/DC are not interchangeable with each other, and Class B and H coils are also not interchangeable with each other. Enter by referring to How to Order. Note ) Note ) T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light Refer to Table () for the available combinations between each electrical option and rated voltage. Clip part no. For VX: VX0N0 For VX: VX0N0 For VX: VX0N0 Solenoid coil
16 Series VX// For Water /Single Unit /Valve Specifications N.C. N.O. COM. Passage symbol Passage symbol Passage symbol 8 (6) (8) 8 (0) (mmø) VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 Max. operating pressure differential (MPa) N.C N.O COM Flow characteristics v x 0 6 m Cv converted Note) Weight of grommet type. dd 0 g for conduit, 0 g for DIN terminal, and 60 g for terminal type respectively. lso, add 60 g for VX, 80 g for VX and VX respectively for bracket option. Refer to Glossary of Terms on front matter 9, for details on the max. operating pressure differential and the max. system pressure Max. system pressure (MPa).0 Weight (g) Note) Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Power source DC/C (Class B) C (Class H) Note) With no freezing. Operating fluid temperature ( C) Solenoid valve option (symbol) Standard, G, H E, P to 60 to 99 mbient temperature ( C) 0 to 60 0 to 60 Seal material,, EPDM Max. operating pressure differential From 0 to less than MPa MPa or more Leakage rate (With water pressure) 0. cm /min or less 0. cm /min or less
17 Direct Operated Port Solenoid Valve Series VX// For Water/Single Unit How to Order (Single Unit) DC, C/Class H coil VX VX C/Class B coil (with fullwave rectifier) Refer to Table () shown Valve/Body configuration 0 N.C. / Single unit N.O. / Single unit COM. / Single unit 5 Z 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz VDC Refer to Table () shown Suffix Oil free 6 8 Solenoid valve option Refer to Table () shown Refer to Table () shown Thread type T F N Refer to Table () shown Refer to page for ordering coil only. Rc NPTF G NPT VDC 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz 0 G 0 G R G Grommet GS With grommet surge voltage suppressor T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light C Conduit Bracket B Bracket is not removable. None With bracket With fullwave rectifier, surge voltage suppressor Electrical entry D DIN Connector DS DIN with surge voltage suppressor DL DIN with light DZ DIN with surge voltage suppressor and light DO For DIN (without connector) DIN type is available with class B insulation only. Refer to Table () for the available combinations between each electrical option (S, L, Z) and rated voltage. Surge voltage suppressor is integrated into the C/Class B coil as standard. For Water For Steam For Oil For ir Table () Port/Orifice Size Table () Solenoid Valve Option Option symbol G E P H Solenoid valve VX VX VX 0 ( 8 ) Port no. 0 ( ) () Seal material Main valve poppet EPDM 0 ( ) 0 ( 8 ) Fixed seals EPDM 0 ( ) 0 ( 8 ) (.5 mmø) Body material/ Shading coil material Brass (C) Stainless steel Brass (C)/Copper Stainless steel/silver Stainless steel Orifice symbol (diameter) (. mmø) ( mmø) Guide pin material PPS Stainless steel PPS Coil insulation type B H Note Heated water B ( mmø) Table () Rated Voltage Electrical Option Class B S L Z C/ Voltage With surge With light and Voltage voltage With surge voltage DC symbol suppressor light suppressor 00 V 00 V 0 V Note ) Note ) C 0 V 0 V 8 8 V 0 V DC 5 V 6 V Note ) Option S, Z are not available as a surge voltage suppresor is integrated into the C/Class B coil as standard. C/ DC C DC Class H S L Voltage With surge Voltage voltage With symbol suppressor light V 00 V 0 V 0 V 0 V 8 V 0 V V V Z With light and surge voltage suppressor DC specification is not available. 5
18 Series VX// For Oil /Single Unit /Valve Specifications N.C. N.O. COM. Passage symbol Passage symbol Passage symbol 8 (6) (8) 8 (0) (mmø) VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 Max. operating pressure differential (MPa) N.C N.O COM Flow characteristics v x 0 6 m Cv converted Note) Weight of grommet type. dd 0 g for conduit, 0 g for DIN terminal, and 60 g for terminal type respectively. lso, add 60 g for VX, 80 g for VX and VX respectively for bracket option. Refer to Glossary of Terms on front matter 9, for details on the max. operating pressure differential and the max. system pressure Max. system pressure (MPa).0 Note) Weight (g) Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Power source DC/C (Class B) C (Class H) Operating fluid temperature ( C) Solenoid valve option (symbol), H D, N 5 Note) to 60 5 Note) to 0 Note) Kinematic viscosity: 50 mm /s or less. mbient temperature ( C) 0 to 60 0 to 60 Seal material Max. operating pressure differential From 0 to less than MPa MPa or more Leakage rate (With oil pressure) 0. cm /min or less 0. cm /min or less 6
19 Direct Operated Port Solenoid Valve Series VX// For Oil/Single Unit How to Order (Single Unit) DC, C/Class H coil C/Class B coil (with fullwave rectifier) Refer to Table () shown Valve/Body configuration 0 N.C. / Single unit N.O. / Single unit COM. / Single unit 5 Z VX VX Refer to Table () shown Suffix Oil free 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz VDC 6 8 Solenoid valve option Refer to Table () shown Refer to Table () shown Thread type T F N Refer to Table () shown Refer to page for ordering coil only. Rc NPTF G NPT VDC 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz 0 G 0 G R G Grommet GS With grommet surge voltage suppressor T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light C Conduit Bracket B Bracket is not removable. None With bracket With fullwave rectifier, surge voltage suppressor Electrical entry D DIN Connector DS DIN with surge voltage suppressor DL DIN with light DZ DIN with surge voltage suppressor and light DO For DIN (without connector) DIN type is available with class B insulation only. Refer to Table () for the available combinations between each electrical option (S, L, Z) and rated voltage. Surge voltage suppressor is integrated into the C/Class B coil as standard. For Water For Steam For Oil For ir Table () Port/Orifice Size Table () Solenoid Valve Option Option symbol H D N Solenoid valve VX VX VX 0 ( 8 ) Port no. 0 ( ) () Main valve poppet 0 ( ) 0 ( 8 ) Seal material Fixed seals 0 ( ) 0 ( 8 ) (.5 mmø) Body material/ Shading coil material Brass (C) Stainless steel Brass (C)/Copper Stainless steel/silver Orifice symbol (diameter) (. mmø) ( mmø) Guide pin material PPS Stainless steel The additives contained in oil are different depending on the type and manufacturers, so the durability of the seal materials will vary. For details, please consult with SMC. ( mmø) Coil insulation type B H Table () Rated Voltage Electrical Option Class B S L Z C/ Voltage With surge With light and Voltage voltage With surge voltage DC symbol suppressor light suppressor 00 V 00 V 0 V Note ) Note ) C 0 V 8 0 V 8 V 0 V DC 5 V 6 V Note ) Option S, Z are not available as a surge voltage suppresor is integrated into the C/Class B coil as standard. C/ DC C DC Class H S L Voltage With surge Voltage voltage With symbol suppressor light V 00 V 0 V 0 V 0 V 8 V 0 V V V Z With light and surge voltage suppressor DC specification is not available.
20 Series VVX// For Oil /Manifold Solenoid Valve for Manifold/Valve Specifications N.C. N.O. COM. Passage symbol Passage symbol Passage symbol (mmø).5. VX00 VX00 VX00 VX00 VX00 VX00 VX00 VX00 VX00 Max. operating pressure differential (MPa) N.C N.O COM v x 0 6 m Cv converted Refer to Glossary of Terms on front matter 9 for details on the max. operating pressure differential and the max. system pressure. Flow characteristics 0 Max. system pressure (MPa).0 Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Power source DC/C (Class B) C (Class H) Operating fluid temperature ( C) Solenoid valve option (symbol) D 5 Note) to 60 5 Note) to 0 Note) kinematic viscosity: 50 mm /s or less. mbient temperature ( C) 0 to 60 0 to 60 Seal material Max. operating pressure differential From 0 to less than MPa MPa or more Leakage rate (With oil pressure) 0. cm /min or less 0. cm /min or less 8
21 Direct Operated Port Solenoid Valve Series VVX// For Oil/Manifold How to Order (Solenoid Valve for Manifold) DC, C/Class H coil C/Class B coil (with fullwave rectifier) Refer to Table () shown Valve/Body configuration N.C. / Manifold N.O. / Manifold 5 COM. / Manifold Z Suffix Oil free VX 00 G VX 00 G R Refer to Table () shown 5 Solenoid valve option Refer to Table () shown 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz VDC 6 8 Refer to Table () shown Refer to page for ordering coil only. VDC 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz Electrical entry G Grommet GS With grommet surge voltage suppressor With fullwave rectifier, surge voltage suppressor C Conduit D DIN T With conduit terminal DS DIN with surge voltage suppressor TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge DL DIN with light DZ DIN with surge voltage suppressor and light DO For DIN (without connector) voltage suppressor and light For Water For Steam For Oil For ir How to Order Manifold Bases VVX VVX VVX Manifold base Blanking plate part no. For VX: VVXF For VX/: VVXF How to Order Manifold ssemblies (Example) Enter the valve and blanking plate to be mounted under the manifold base part number. Example VVX05... set VX00GR.. sets VVXF... set D side Station (Individual port) Rc/8 Rc/ Common port sizes are all Rc/. Indicating numbers shown below are for common ports. Type SUP port EXH port N.C. N.O. Suffix Z 0 Oil free Seal material: 5 n Number of manifolds 0 stations 0 stations 0 is the symbol for mounting. dd an in front of the part numbers for solenoid valves, etc. to be mounted. U side Enter the product s part number in order, counting from the st station on the left in the manifold arrangement, when viewed with the individual ports in front. The common ports on the right side are plugged. Table () Port/Orifice Size Solenoid valve VX VX VX Option symbol Refer to Table () for the available combinations between each electrical option (S, L, Z) and rated voltage. Surge voltage suppressor is integrated into the C/Class B coil as standard. Orifice symbol (diameter) (.5 mmø) (. mmø) ( mmø) Table () Solenoid Valve Option Seal material Main valve poppet Fixed seals Body material/ Shading coil material DIN type is available with class B insulation only. ( mmø) Table () Rated Voltage Electrical Entry Electrical Option Class B Class H S L Z S L Z C/ Voltage With surge With light and Voltage voltage With With surge With light and surge voltage voltage With surge voltage DC symbol suppressor light suppressor suppressor light suppressor 00 V 00 V 0 V Note ) Note ) C 0 V 8 0 V 8 V 0 V DC 5 V DC specification is not 6 V available. Note ) Option S, Z are not available as a surge voltage suppresor is integrated into the C/Class B coil as standard. Guide pin material Brass (C) PPS Stainless D Brass (C)/Copper steel luminum is the only available material for the manifold base. The additives contained in oil are different depending on the type and manufacturers, so the durability of the seal materials will vary. For details, please consult with SMC. Coil insulation type B H 9
22 Series VX// For Steam /Single Unit /Valve Specifications COM. Passage symbol 8 (6) (8) 8 (0) (mmø) VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 Max. operating pressure differential (MPa) COM Flow characteristics v x 0 6 m Cv converted Note) Weight of grommet type. dd 0 g for conduit, 0 g for DIN terminal, and 60 g for terminal type respectively. lso, add 60 g for VX, 80 g for VX and VX respectively for bracket option. Refer to Glossary of Terms on front matter 9, for details on the max. operating pressure differential and the max. system pressure Max. system pressure (MPa).0 Note) Weight (g) Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Power source C Operating fluid temperature ( C) Solenoid valve option (symbol) S, Q 8 mbient temperature ( C) 0 to 60 Seal material Main valve poppet F Fixed seals PTFE Leakage rate (With air pressure) 50 cm /min or less 0
23 Direct Operated Port Solenoid Valve Series VX// For Steam/Single Unit How to Order (Single Unit) VX S 0 G Refer to Table () shown Z Refer to Table () shown Suffix Oil free 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz Valve/Body configuration COM. / Single unit Thread type T F N 8 Refer to Table () shown Refer to page for ordering coil only. Solenoid valve option Refer to Table () shown Rc NPTF G NPT Refer to Table () shown 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz G Grommet GS With grommet surge voltage suppressor T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light C Conduit Bracket B Bracket is not removable. None With bracket Electrical entry Refer to Table () for the available combinations between each electrical option (S, L, Z) and rated voltage. For Water For Steam For Oil For ir Table () Port/Orifice Size Table () Solenoid Valve Option Option symbol Solenoid valve VX VX VX 0 ( 8 ) Port no. () 0 ( ) 0 ( ) 0 ( 8 ) 0 ( ) 0 ( 8 ) Seal material Main valve poppet Fixed sealant S F PTFE Q Solenoid coil: C/Class H only (.5 mmø) Body material/ Shading coil material Brass (C)/Copper Stainless steel/silver Orifice symbol (diameter) (. mmø) ( mmø) Guide pin material Stainless steel Coil insulation type H ( mmø) Table () Rated Voltage Electrical Option Class H S L Voltage With surge Voltage With voltage symbol suppressor light V 00 V 0 V 0 V 0 V 8 V 0 V V V C/ DC C DC Z With light and surge voltage suppressor DC specification is not available.
24 Series VX// For ir /Single Unit (Inert gas, Nonleak, Medium vacuum) /Valve Specifications N.C. N.O. COM. Passage symbol Passage symbol Passage symbol 8 (6) (8) 8 (0) (mmø) VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 VX0 N.C Max. operating pressure differential (MPa) N.O COM C[dm /(s bar)] Note) Weight of grommet type. dd 0 g for conduit, 0 g for DIN terminal, and 60 g for terminal type respectively. lso, add 60 g for VX, 80 g for VX and VX respectively for bracket option. Refer to Glossary of Terms on front matter 9, for details on the max. operating pressure differential and the max. system pressure Flow characteristics b Cv Max. system pressure (MPa).0 Note) Weight (g) Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Operating fluid temperature ( C) Power source Solenoid valve option (symbol) Standard, G V, M C (Class B), DC 0 Note) to 60 0 Note) to 60 Note) Dew point temperature: 0 C or less mbient temperature ( C) 0 to 60 Seal material, Max. operating pressure differential From 0 to less than MPa MPa or more Note) The leakage amount (0 6 Pa m /sec) for the V and M option are values when the differential pressure is 0. MPa. ir cm /min or less cm /min or less Leakage rate Note) Nonleak, Medium vacuum 0 6 Pa m /sec or less
25 Direct Operated Port Solenoid Valve Series VX// For ir/single Unit How to Order (Single Unit) Refer to Table () shown Valve/Body configuration 0 N.C. / Single unit N.O. / Single unit COM. / Single unit 5 DC C/Class B coil (with fullwave rectifier) Z Suffix Oil free 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz VDC Thread type T F N 6 8 Refer to Table () shown VX 0 VX 0 Refer to Table () shown Rc NPTF G NPT Refer to page for ordering coil only. Solenoid valve option Refer to Table () shown VDC 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz Refer to Table () shown 5 Electrical entry (C/DC) G Grommet GS With grommet surge voltage suppressor T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light G G R C Conduit B Bracket is not removable. Bracket None With bracket With fullwave rectifier, surge voltage suppressor D DIN Connector DS DIN with surge voltage suppressor DL DIN with light DZ DIN with surge voltage suppressor and light DO For DIN (without connector) DIN type is available with class B insulation only. Refer to Table () for the available combinations between each electrical option (S, L, Z) and rated voltage. Surge voltage suppressor is integrated into the C/Class B coil as standard. For Water For Steam For Oil For ir Table () Port/Orifice Size Table () Solenoid Valve Option Option symbol G M V Solenoid valve VX VX VX 0 ( 8 ) Port no. 0 ( ) () Seal material Main valve poppet 0 ( ) 0 ( ) 0 ( 8 ) 0 ( 8 ) Fixed seals Body material/ Shading coil material Brass (C) Stainless steel Stainless steel Brass (C) (.5 mmø) Guide pin material PPS Orifice symbol (diameter) (. mmø) ( mmø) Coil insulation type B Note Note) ( mmø) Nonleak (0 6 Pa m /sec), Medium vacuum (0. Pa.abs) Note) The leakage amount (0 6 Pa m /sec) for the V and M option are values when the differential pressure is 0. MPa. Table () Rated Voltage Electrical Option Class B S L Z C/ Voltage With surge Voltage voltage With With light and surge voltage DC symbol suppressor light suppressor 00 V 00 V 0 V Note ) Note ) C 0 V 8 0 V 8 V 0 V DC 5 V 6 V Note ) Option S, Z are not available as a surge voltage suppresor is integrated into the C/Class B coil as standard. Class H coil is not available.
26 Series VVX// For ir /Manifold (Inert gas, Nonleak, Medium vacuum) Solenoid Valve for Manifold/Valve Specifications N.C. N.O. COM. Passage symbol Passage symbol Passage symbol (mmø).5. VX00 VX00 VX00 VX00 VX00 VX00 VX00 VX00 VX00 Max. operating pressure differential (MPa) N.C N.O COM C[dm /(s bar)] Refer to Glossary of Terms on front matter 9 for details on the max. operating pressure differential and the max. system pressure..6 Flow characteristics b Cv Max. system pressure (MPa).0 Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Power source C (Class B), DC Operating fluid temperature ( C) Solenoid valve option (symbol) Standard V 0 Note) to 60 0 Note) to 60 Note) Dew point temperature: 0 C or less mbient temperature ( C) 0 to 60 Seal material, Max. operating pressure differential From 0 to less than MPa MPa or more Note) The leakage amount (0 6 Pa m /sec) for the V option is a value when the differential pressure is 0. MPa. ir cm /min or less cm /min or less Leakage rate Note) Nonleak, Medium vacuum 0 6 Pa m /sec or less
27 Direct Operated Port Solenoid Valve Series VVX// For ir/manifold Refer to Table () shown Valve/Body configuration How to Order Manifold Bases VVX VVX VVX Manifold base Blanking plate part no. For VX: VVX For VX/: VVX Seal material How to Order Manifold ssemblies (Example) F Enter the valve and blanking plate to be mounted under the manifold base part number. Example VVX05... set VX00GR... sets VVX... set D side 5 0 (Individual port) Rc/8 Rc/ Common port sizes are all Rc/. Indicating numbers shown below are for common Type SUP port EXH port Station DC C/Class B coil (with fullwave rectifier) 5 N.C. N.O. N.C. / Manifold N.O. / Manifold COM. / Manifold 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz VDC 5 n How to Order (Solenoid Valve for Manifold) VX 00 5 G VX 00 G R Refer to Table () shown Solenoid valve option Refer to Table () shown 6 8 Refer to Table () shown Refer to page for ordering coil only. Number of manifolds 0 stations 0 stations Z 0 Suffix Oil free is the symbol for mounting. dd an in front of the part numbers for solenoid valves, etc. to be mounted. U side VDC 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz Enter the product s part number in order, counting from the st station on the left in the manifold arrangement, when viewed with the individual ports in front. The common ports on the right side are plugged. Suffix Z Table () Port/Orifice Size Solenoid valve VX VX VX Table () Solenoid Valve Option Option symbol V Oil free G Grommet GS With grommet surge voltage suppressor T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light Orifice symbol (diameter) (.5 mmø) (. mmø) ( mmø) Seal material Main valve poppet Fixed seals Body Guide pin material material Brass (C) With fullwave rectifier, surge voltage suppressor PPS Electrical entry (C/DC) C Conduit D DIN DS DIN with surge voltage suppressor DL DIN with light DZ DIN with surge voltage suppressor and light DO For DIN (without connector) DIN type is available with class B insulation only. Refer to Table () for the available combinations between each electrical option (S, L, Z) and rated voltage. Surge voltage suppressor is integrated into the C/Class B coil as standard. ( mmø) Coil insulation type Note Note) Nonleak (0 6 Pa m / sec), Medium vacuum (0. Pa.abs) luminum is the only available material for the manifold base. Note) The leakage amount (0 6 Pa m /sec) for the V and M option are values when the differential pressure is 0. MPa. Table () Rated Voltage Electrical Option Class B S L Z C/ Voltage With surge With light and Voltage With voltage surge voltage DC symbol suppressor light suppressor 00 V 00 V 0 V Note ) Note ) C 0 V 8 0 V 8 V 0 V DC 5 V 6 V Class H coil is not available. Note ) Option S, Z are not available as a surge voltage suppresor is integrated into the C/Class B coil as standard. B 5 For Water For Steam For Oil For ir
28 Series VX// For Water, Oil, Steam, ir Construction Single unit Body material: Brass, Stainless Steel Manifold Base material: luminum Manifold body material: Brass Port (N.C. EXH) (N.O. IN) i w y e t u r q t r q i w y e u! Port (N.C. IN) (N.O. EXH)! Port (N.C. OUT) (N.O. OUT) Port (N.C. IN) (N.O. EXH) o!0 o!!!!!0 Port (N.C. OUT) (N.O. OUT) Port (N.C. EXH) (N.O. IN) Component Parts No. Description Material Standard Option Body Tube assembly Brass Stainless steel, Copper Stainless steel Stainless steel, Silver rmature Stainless steel, Stainless steel, PTFE assembly Brass, PTFE () (, EPDM, F) Return spring Stainless steel 5 Nut Brass Brass Ni plated 6 Solenoid coil Oring Class B molded () Class H molded (, EPDM, PTFE) 8 Clip SK 9 Guide pin Stainless steel PPS, Brass, () assembly (, EPDM, F) 0 Support spring Oring () Stainless steel (, EPDM, PTFE) Plate Stainless steel The materials in parentheses are the seal materials. Component Parts No. Description Manifold body Tube assembly rmature assembly Return spring 5 Nut 6 Solenoid coil Oring 8 Clip Guide pin 9 assembly 0 Support spring Oring Plate Gasket Material Standard Option Brass Stainless steel, Copper Stainless steel, Brass, PTFE () Stainless steel, PTFE (, EPDM, F) Stainless steel Brass Brass Ni plated Class B molded Class H molded () (, EPDM) SK Stainless steel PPS, Brass, () (, EPDM) Stainless steel () (, EPDM) Stainless steel () (, EPDM) Base luminum The materials in parentheses are the seal materials. 6
29 Direct Operated Port Solenoid Valve Series VX// For Water, Oil, Steam, ir Dimensions: Single Unit/Body Material: Brass (C), Stainless Steel Normally closed (N.C.): VX0/VX0/VX0 Normally open (N.O.): VX/VX/VX Common (COM.): VX/VX/VX Grommet: G Conduit: C pprox. 00 F D C K Width across flats H P DIN terminal: D B E B Conduit terminal: T G/ () F D K K 5 (M) 5 pprox. 80 F D G/ C 5 Width across flats H K P B E B Cable ø6 to ø G/ () (M) F D () C Width across flats H C Width across flats H N P B E B P B E B Specifications with bracket x ø5.5 Mounting hole R S N.C., N.O., COM. VX VX VX VX ø.5,ø.,ø ø.5,ø.,ø ø.,ø,ø ø.,ø,ø Q P /8 / /,/8 /,/8 B 6 B B 8 C N.C., N.O., COM. VX VX VX VX D E 9 ø.5,ø.,ø ø.5,ø.,ø ø.,ø,ø ø.,ø,ø F H 6 (mm) Electrical entry (DC, C/Class H) Bracket Grommet Conduit DIN terminal Conduit terminal mounting K K K M K M N Q R S P /8 / /,/8 /,/ (mm) Electrical entry (C/Class B) Grommet Conduit DIN terminal Conduit terminal K K K M K M N
30 () 5 Series VVX// For Oil, ir/manifold Dimensions: Manifold/Base Material: luminum Normally closed (N.C.): Normally open (N.O.): VVX/VVX/VVX Common (COM.): (X) (V) x øe Mounting hole R S H F L nrc/8, / K L (W) N D side Stations 5 n U side Port indication x Rc/ C D Y x øe Mounting hole G/ B Q T pprox. 00 B pprox. 80 (U) M L L L L (mm) VVX VVX VVX VVX VVX VVX Dimension L L L L B C D E n (stations) F H K L M N Q VVX VVX VVX Grommet R Grommet R 0 6 (mm) Electrical entry (DC, C/Class H) Conduit DIN terminal Conduit terminal T T U V W X Y S 0 6 (mm) Electrical entry (C/Class B) Conduit DIN terminal Conduit terminal T T U V W X Y S
31 For Vacuum Pad Series VXV// Vacuum circuit side is suited for a large orifice. Supply pressure side is suited for high pressure and a vacuum pad. Construction and dimensions are the same as the VX series. /Valve Specifications N.C. N.O. Passage symbol (example) Passage symbol (example) (mmø) Port side Port side 8 (6) (8) 8 (0) VXV00 VXV0 VXV00 VXV0 VXV00 VXV00 VXV0 VXV0 VXV00 VXV00 VXV0 VXV0 Operating pressure (MPa) Port side Port side Medium vacuum 0 to 0 to Medium vacuum 0 to Medium vacuum 0 to 0 to 0.9 Medium vacuum 0 to 0 to 0.9 Medium vacuum 0 to Medium vacuum 0 to 0 to 0.9 Medium vacuum 0 to 0 to 0.9 Medium vacuum C[dm / (s bar)] Flow characteristics Passage: Passage: b Cv C[dm / (s bar)] b Cv Note) Weight of grommet type. dd 0 g for conduit, 0 g for DIN terminal, and 60 g for terminal type respectively. lso, add 60 g for VX, 80 g for VX and VX respectively for bracket option. Refer to Glossary of Terms on front matter 9, for details on the max. operating pressure differential and the max. system pressure Max. system pressure (MPa).0 Weight (g) Note) Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Power source C (Class B), DC Operating fluid temperature ( C) 0 Note ) to 60 Note ) Dew point temperature: 0 C or less mbient temperature ( C) 0 to 60 Seal material, Note) Value when air pressure is applied. Leakage rate Note) ir cm /min or less 9
32 Series VXV// For Vacuum Pad/Single Unit Valve/Body configuration 0 N.C. / Single unit N.O. / Single unit 5 Suffix 00 VC 50/60 Hz 00 VC 50/60 Hz 0 VC 50/60 Hz 0 VC 50/60 Hz VDC Thread type T F N 6 8 Refer to Table () shown Rc NPTF G NPT Refer to page for ordering coil only. How to Order (Single Unit) DC VXV G VXV 0 0 G R C/Class B coil (with fullwave rectifier) Refer to Table () shown Z Oil free Refer to Table () shown Solenoid valve option Refer to Table () shown VDC 0 VC 50/60 Hz 8 VC 50/60 Hz 0 VC 50/60 Hz Refer to Table () shown Electrical entry (C/DC) G Grommet GS With grommet surge voltage suppressor T With conduit terminal TS With conduit terminal and surge voltage suppressor TL With conduit terminal and light TZ With conduit terminal, surge voltage suppressor and light C Conduit B Bracket is not removable. Bracket None With bracket With fullwave rectifier, surge voltage suppressor D DIN Connector DS DIN with surge voltage suppressor DL DIN with light DZ DIN with surge voltage suppressor and light DO For DIN (without connector) DIN type is available with class B insulation only. Refer to Table () for the available combinations between each electrical option (S, L, Z) and rated voltage. Surge voltage suppressor is integrated into the C/Class B coil as standard. Table () Port/Orifice Size Solenoid valve VXV VXV VXV 0 ( 8 ) Port no. 0 ( ) () Table () Solenoid Valve Option Orifice symbol (diameter) Note) (.5/ mmø) (./ mmø) Note) The orifice diameter shown above are for the supply pressure side/ vacuum side port. Option symbol G H Seal material Main valve poppet 0 ( ) 0 ( ) 0 ( 8 ) 0 ( 8 ) Fixed seals Body material Brass (C) Stainless steel Guide pin material PPS Coil insulation type B Table () Rated Voltage Electrical Option Class B S L Z C/ Voltage With surge With light and Voltage voltage With surge voltage DC symbol suppressor light suppressor 00 V 00 V 0 V Note ) Note ) C 0 V 8 0 V 8 V 0 V DC 5 V 6 V Note ) Option S, Z are not available as a surge voltage suppresor is integrated into the C/Class B coil as standard. Class H coil is not available. 0
33 For Vacuum Pad/Manifold Series VVXV// Construction and dimensions are the same as those of the VVX series. /Valve Specifications N.C. N.O. Passage symbol (example) Passage symbol (example) (mmø) Port side Port side VXV00 VXV00 VXV00 VXV00 VXV00 VXV00 Operating pressure Flow characteristics (MPa) Passage: Passage: Port side Port side C[dm /(s bar)] b Cv C[dm /(s bar)] b Medium vacuum 0 to to Medium vacuum Medium 0 to vacuum 0 to to Medium 0 to 0.9 vacuum Refer to Glossary of Terms on front matter 9 for details on the max. operating pressure differential and the max. system pressure. Cv Max. system pressure (MPa).0 Operating Fluid and mbient Temperature Tightness of Valve (Leakage Rate) Power source Operating fluid temperature ( C) C (Class B), DC 0 Note ) to 60 Note ) Dew point temperature: 0 C or less mbient temperature ( C) 0 to 60 Seal material, Note) Value when air pressure is applied. Leakage rate Note) ir cm /min or less
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