5.0 MPa Pilot Operated 2/3 Port Solenoid Valve & Check Valve
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1 5.0 Ma ilot Operated /3 ort Solenoid Valve & Check Valve Series VCH VCH4/4: ort VCH40: 3 ort VCHC40: Check Valve ilot Operated ort Solenoid Valve [Option] Series VCH40 Stable responsiveness Response time dispersion within ± ms Service life: 0 million cycles Non-collision construction between the iron cores keeps equipment abrasion free. Improved responsiveness when switching off. Reduced dispersion construction Improved durability by applying a special surface treatment to the sliding parts. Unnecessary volume inside the pilot chamber is reduced. High speed response Reduced dispersion Use of shock absorbing rubber, resulting in protection of the pilot valve and electric parts. Improved durability under a high pressure environment with a polyurethane elastomer poppet VCH VDW VQ LVM Check Valve Series VCHC40 Using NSF-H-certified grease on the guide ring (sliding part). Improved durability under a high pressure environment with a polyurethane elastomer poppet 357
2 5.0 Ma ilot Operated ort Solenoid Valve Series VCH40 [Option] How to Order (IN) (IN) Valve type N.C. N.O. (OUT) (OUT) VCH4 D 06 G D DL DO Voltage 00 VAC 00 VAC 3 0 VAC 4 0 VAC 5 4 VDC 6 VDC Consult with SMC for other voltages. Electrical entry DIN connector DIN connector with light Without DIN connector, with gasket A surge voltage suppressor is integrated inside the coil as a standard feature. In the symbol ort and ort are shown in a blocked condition, but it is not possible to use the valve in cases of reverse pressure, where the ort pressure is higher than the ort pressure. CE-compliant Nil Q CE-compliant Thread type (Conforming to ISO79- on the pneumatic/hydraulic G thread) ort size 06 3/4 0 Made to Order Made to order specifications (For details, refer to page 365).0 Ma ort Air Operated Valve Specifications Response Time Valve specification Coil specification Model Valve construction Fluid Orifice C value (Effective area) Flow characteristics b Cv Max. operating pressure Operating pressure Fluid temperature Ambient temperature Body material Main seal material Enclosure ort size Impact/Vibration Note ) resistance Mounting orientation Weight Rated voltage Allowable voltage fluctuation Electrical entry Coil insulation type Note 3) ower consumption VCH4 (N.C.) VCH4 (N.O.) ilot operated, diaphragm poppet Air ø6 ø7.5 7 dm 3 /(s bar) (85 mm ) dm 3 /(s bar) (0 mm ) Ma 0.5 to 5.0 Ma 5 to 80 C 5 to 80 C olyurethane elastomer Drip proof (Equivalent to I65) G3/4, (Conforming to ISO79- on the pneumatic/hydraulic G thread) 300/00 m/s Note ) Unrestricted.67 kg.9 kg VDC, 4 VDC, 00 VAC, 0 VAC, 00 VAC, 0 VAC (50/60 Hz) ±0% of rated voltage DIN connector Class B 5 W (DC), 3 VA (AC) Note ) Impact resistance: No malfunction resulted in an impact test using a drop impact tester. The test was performed one time each in the axial and right angle directions of the main valve and armature, for both energized and de-energized states. (Value in the initial stage) Vibration resistance: No malfunction resulted in 8.3 to 000 Hz, a one-sweep test performed in the axial and right angle directions of the main valve and armature for both energized and de-energized states. (Value in the initial stage) Note ) Vibration resistance is 50 m/s when a light/surge voltage suppressor is attached. Note 3) No inrush voltages are generated in the AC solenoid because a full-wave rectifier is used. A 358 Response time [ms] VCH4 ON response VCH4 OFF response ressure [Ma] VCH4 ON response VCH4 OFF response Note ) DC solenoid Note ) AC solenoid: It will cause delays around 0 to 30 msec in the OFF response time.
3 5.0 Ma ilot Operated ort Solenoid Valve Series VCH40 Construction Normally closed (N.C.)!6!!0!4!3 o u t y r e w q (IN)!5!7!8! i w (OUT) Normally o i y t r e w q (IN)!3! u!4 w w (OUT) Component arts No. Description Material Component arts No. Description Material VCH VDW 3 Body Diaphragm assembly olyurethane elastomer 3 Body Diaphragm assembly olyurethane elastomer VQ LVM 4 Main valve guide Resin 4 Main valve guide Resin 5 oppet spring 5 oppet spring 6 Hexagon socket head cap screw 6 Bonnet plate 7 Bonnet 7 Hexagon socket head cap screw 8 Hexagon socket head cap screw (with SW) Carbon steel Valve spring 0 Armature assembly 0 oppet H- Return spring Bonnet Tube assembly Hexagon socket head cap screw (with SW) Carbon steel 3 Nut 4 Rubber mount 5 DIN connector type solenoid coil 6 Clip 7 DIN terminal gasket 8 DIN connector CR 3 Armature assembly 4 Return spring 5 Tube assembly 6 Nut 7 Rubber mount 8 DIN connector type solenoid coil 9 Clip 0 DIN terminal gasket DIN connector CR 359
4 Series VCH40 Dimensions VCH4 (N.C.) VCH4 (N.O.) (44) (56) (56) G/ Applicable cable O.D. ø6 to (IN) (OUT) 98 x G3/4 x 6.3 x G x 9. Hexagon width across flats (44) G/ 39.5 Applicable cable O.D. ø6 to (IN) (OUT) 98 x G3/4 x 6.3 x G x 9. Hexagon width across flats
5 5.0 Ma Check Valve Series VCHC40 How to Order VCHC40 06 G Specifications w i e r t q Symbol Construction Dimensions VCHC40 ort size 06 3/4 0 Thread type (Conforming to ISO79- on the pneumatic/hydraulic G thread) 63!!0 o u r y Model Operating pressure Cracking pressure Orifice diameter Flow characteristics C value (Effective area) b Cv Fluid Fluid temperature Ambient temperature Body material Seal material ort size Mounting orientation Weight Component arts No Description Body iston oppet Set screw Nut Guide ring Spring late Hexagon socket head cap screw (with SW) VCHC to 5.0 Ma 0.05 Ma ø6 8 dm 3 /(s bar) (40 mm ) Air 5 to 80 C 5 to 80 C olyurethane elastomer G3/4, (Conforming to ISO79- on the pneumatic/hydraulic G thread) Unrestricted.0 kg Material Aluminum + Hard anodized olyurethane elastomer Resin Steel + Electroless nickel plated Carbon steel VCH VDW VQ LVM (56) VCHC40-06G RESS.0.05 to 5.0 Ma (7.5) 98 x G3/4 x 6.3 x G x 9. Hexagon width across flats A
6 5.0 Ma ilot Operated 3 ort Solenoid Valve Series VCH400 For Air [Option] Stable responsiveness Response time dispersion within ± ms Service life: 0 million cycles Non-collision construction between the iron cores keeps equipment abrasion free. Improved responsiveness when switching off. Reduced dispersion construction Improved durability by applying a special surface treatment to the sliding parts. Unnecessary volume inside the pilot chamber is reduced. Use of shock absorbing rubber, resulting in protection of the pilot valve and electric parts. Special fluororesin sealant is adopted for the sliding part. Stable responsivess after extended disuse. No likely to subject to a pressure. High speed response Reduced dispersion Using NSF-H-certified grease on the guide ring (sliding part). Special treatment containing fluororesin is applied to the body side sliding face. Improved durability under a high pressure environment with a polyurethane elastomer poppet 36 Valve type 3 VCH40 Voltage 00 VAC 00 VAC 3 0 VAC 4 0 VAC 5 4 VDC 6 VDC Consult with SMC for other voltages. How to Order D 06 G CE-compliant Nil Q CE-compliant Thread type (Conforming to ISO79- on the pneumatic/hydraulic G thread) ort size 04 / Electrical entry 06 3/4 D DIN connector 0 DL DIN connector with light DO Without DIN connector, with gasket A surge voltage suppressor is integrated inside the coil as a standard feature.
7 5.0 Ma ilot Operated 3 ort Solenoid Valve Series VCH400 Specifications Response Time Valve specification Coil specification Model Valve construction Fluid Orifice ø8 C value :0 dm : dm 3 /(s bar) (0mm ) G/ /(s bar) (00mm ) G3/4, (Effective area) 3: dm 3 /(s bar) (0mm ) 3:4 dm 3 /(s bar) (0mm ) b G/ 0.6 G3/4, 0.36 Cv G/ G3/4, Max. operating pressure Note ) Operating pressure Fluid temperature Ambient temperature Body material Main seal material Enclosure ort size 5.0 Ma 0.5 to 5.0 Ma 5 to 80 C 5 to 80 C Aluminum + Hard anodized olyurethane elastomer Drip proof (Equivalent to I65) G/, 3/4, (Conforming to ISO79- on the pneumatic/hydraulic G thread) Impact/Vibration resistance Note ) Mounting orientation Weight Rated voltage Allowable voltage fluctuation Electrical entry Flow characteristics Coil insulation type Note 4) ower @3!7!8!3 e!!0 u t q i y o!5 e!6!7!4! VCH40 ilot operated, poppet Air 300/00 m/s Note 3) Unrestricted G/, 3/4:.83 kg, G:. kg VDC, 4 VDC, 00 VAC, 0 VAC, 00 VAC, 0 VAC (50/60 Hz) ±0% of rated voltage DIN connector Class B 5 W (DC), 3 VA (AC) r w Response time [ms] Component arts OFF response ON response ressure [Ma] Note ) DC solenoid Note ) AC solenoid: It will cause delays around 0 to 30 msec in the OFF response time. Note ) When used as a selector valve (pressurizing, 3 port), the pressure in the port should be within the range of the port pressure > = port 3 pressure x ( times). Note ) Impact resistance: No malfunction resulted in an impact test using a drop impact tester. The test was performed one time each in the axial and right angle directions of the main valve and armature, for both energized and de-energized states. (Value in the initial stage) Vibration resistance: No malfunction resulted in 8.3 to 000 Hz, a one-sweep test performed in the axial and right angle directions of the main valve and armature for both energized and de-energized states. (Value in the initial stage) Note 3) Vibration resistance is 50 m/s when a light/surge voltage suppressor is attached. Note 4) No inrush voltages are generated in the AC solenoid because a full-wave rectifier is used. No. Description Material Body Hexagon socket head cap screw iston A iston B oppet Guide ring Aluminum + Hard anodized Aluminum + Hard anodized Aluminum + Hard anodized olyurethane elastomer Resin 0 Ring Rod 3 Hexagon nut 4 Hexagon nut class 3 5 oppet spring 6 late 7 Hexagon socket head cap screw (with SW) 8 Bonnet 9 0 Return spring Armature assembly Tube assembly 3 Nut 4 Rubber mount 5 DIN connector type solenoid coil 6 Round Type S retaining ring 7 DIN terminal gasket 8 DIN connector Resin Steel + Electroless nickel plated Carbon steel Aluminum + Hard anodized Carbon steel CR 363 VCH A VDW VQ LVM
8 Series VCH400 Dimensions VCH40 G/4 x 7 ilot EXH G/, 3/4:97 G:0 6 4 ø x G/ x 5 3 x G3/4 x 6.3 3(EXH) G/, 3/4: 70 G: Applicable cable O.D. ø6 to (OUT) x ø8.5 Mounting hole G/ 5.5 (6) 06 (76) 88 3 x G x 9. (IN) 364
9 Series VCH40 Made to Order Specifications: lease consult with SMC for detailed size, specifications and delivery. Made to Order.0 Ma ort Air Operated Valve AXT836 A Specifications Symbol assage iping size A B C D N.C. N.O. N.C. N.O. /4" fitting integrated type /4" fitting integrated type Flange type Flange type E Double acting /4" fitting integrated type Symbol Integrated fitting type Flange type Specifications Fluid Fluid temperature Ambient temperature Operating pressure range roof pressure ilot pressure range Valve leakage Orifice diameter A, C (N.C. type) B, D (N.O. type) E (Double acting) Air 0 to 60 C (No freezing) 0 to 60 C (No freezing) 0 to.0 Ma 0 to 0.0 Ma 35.0 Ma 0.4 to 0.7 Ma 0.3 to 0.5 Ma 0. cm 3 /min or less.8 mm N.C. N.O. Double acting VCH VDW VQ LVM 365 A
10 5.0 Ma neumatic Applications included air-blowing, charging fluid into a vessel, or discharging (Blow-molding equipment, etc.) Check valve VCHC40 Silencer EXH VCHN3/4 IN Medium pressure High pressure Max. Direct operated regulator (Relieving type) 6.0 Ma VCHR30/40 IN Discharging Charging OUT ilot operated port solenoid valve Normally closed ilot operated port solenoid valve Normally open VCH4 VCH4 Made to Order/Manifold Unit ressure switch Regulator Solenoid valve (/3 port) Check valve EXH IN E xh au st Silencer 366 For airdriving blowing, cy a tank,, charging fllinderexh or discharginuidg into. aus t OUT Medium pressure Max. High pressure IN 6.0 Ma
11 Equipment Variation Example of driving a cylinder ressure switch ISE75(H) ilot operated 3 port solenoid valve VCH40 re-forming Die opening/ closing Description Features ilot operated port solenoid valve 5.0 Service life: 0 million cycles Check valve ilot operated 3 port solenoid valve Adopting a polyurethane elastomer poppet in a valve seat. Improved durability under a high pressure environment. Direct operated regulator (Relieving type) (At supply pressure 4.0 Ma, back pressure.0 Ma) Clogging-reduction with double-layer construction Series ort size /4 / 3/4 /4 / age VCH VCH4 (N.C.).358 VCH4 (N.O.) VCHC VCH40.36 VCHR30 Best neumatics No.t 5.0 Relief valve release pressure:.8 Ma VCHR40 VCHN3 Best neumatics No.y VCHN4 Related Equipment ressure switch -color display Metal body (Aluminum die-cast) ISE75 ( H ) Best neumatics No.y Made to Order 6.0 Ma pilot operated regulator (Air operated type).0 Ma port air operated valve VDW VQ 5.0 Inlet pressure 6.0 Set pressure 0.5 to 5.0 Noise reduction 35 db(a) Silencer Maximum operating pressure (Ma) Best neumatics No.t LVM
12 5.0 Ma ilot Operated /3 ort Solenoid Valves & Check Valves recautions Be sure to read this before handling. Warning Design. Cannot be used as an emergency shutoff valve, etc. The valves presented in this catalog are not designed for safety applications such as an emergency shutoff valve. If the valves are used in this type of system, other reliable safety assurance measures should also be adopted.. Extended periods of continuous energization The solenoid coil will generate heat when continuously energized. Avoid using in a tightly shut container. Install it in a wellventilated area. Furthermore, do not touch it while it is being energized or right after it is energized. 3. This solenoid valve cannot be used for explosion proof applications. 4. Maintenance space The installation should allow sufficient space for maintenance activities. 5. Actuator drive When an actuator, such as a cylinder, is to be driven using a valve, take appropriate measures to prevent potential danger caused by actuator operation. 6. Use caution regarding exhaust port freezing. If a high pressure air (more than.0 Ma) is quickly exhausted, there may be an occurrence in which the valve will not switch properly or the service life will substantially decrease due to condensation or freezing caused by the substantial temperature change. When condensation or freezing occurs, take measures such as using a freeze-reducing silencer (VCHNF series), etc. 7. Use caution regarding back pressure. ) When port 3 (EXH) of a 3 port solenoid valve (VCH400 series) is excessively throttled or used as a selector valve (pressurizing, 3 port), the pressure in the port should be within a range of half the pressure in port (port pressure = > twice as strong as port 3 pressure). Using a 3 port valve beyond its back pressure and/or supply pressure range may cause the valve switch to malfunction or result in unstable operation. ) In the case of a 3 port solenoid valve, when the valve is being switched, a high pressure air will be introduced into the lower pressure side. Therefore, when using this product as a selector valve for switching a high and medium pressure, a relief type regulator (VCHR series) must be used for the medium pressure side. Warning Selection. Confirm the specifications. Give careful consideration to the operating conditions such as the application, fluid and environment, and use within the operating ranges specified in this catalog.. Fluid Corrosive gas Cannot be used since it will lead to cracks by stress corrosion or result in other incidents. 3. Air quality ) Use clean air. Do not use compressed air which includes chemicals, synthetic oils containing organic solvents, salt or corrosive gases, etc., as it can cause damage or malfunction. ) Install air filters. Install air filters close to valves at their upstream side. A filtration degree of 5 µm or less should be selected. 3) Install an air dryer or after-cooler, etc. Compressed air that includes excessive drainage may cause malfunction of valves and other pneumatic equipment. To prevent this, install an air dryer or after cooler, etc. 4) If excessive carbon powder is generated, eliminate it by installing mist separators at the upstream side of valves. If excessive carbon powder is generated by the compressor, it may adhere to the inside of the valves and cause a malfunction. Refer to Best neumatics No. 5 for further details on compressed air quality. 4. Ambient environment Use within the operable ambient temperature range. Confirm the compatibility between the product s composition materials and the ambient atmosphere. Be sure that the fluid used does not touch the external surface of the product. 5. Supply source If the primary side air is throttled, flow may be reduced resulting in the malfunction of the switch or instability in the response time because of the pilot operated solenoid valve. Conduct piping work suited for the secondary side piping (air consumption). Also, when a regulator is installed, the air supply will stop right after the solenoid valve is switched due to the response time of the regulator. Thus, when using it below the minimum operating pressure, adjust the pipe size, length or provide an air tank, etc. 368
13 5.0 Ma ilot Operated /3 ort Solenoid Valves & Check Valves recautions Be sure to read this before handling. Selection Caution. Leakage voltage articularly when using a resistor in parallel with a switching element and using a C-R element (surge voltage suppressor) to protect the switching element, take note that leakage current will flow through the resistor, C-R element, etc., creating a possible danger that the valve may not turn off. ower supply Switching element C OFF R Leakage current Leakage voltage Valve AC coil: 0% or less of rated voltage DC coil: % or less of rated voltage Caution iping. reparation before piping Before piping is connected, it should be thoroughly blown out with air (flushing) or washed to remove chips, cutting oil and other debris from inside the pipe. Avoid pulling, compressing, or bending the valve body when piping.. Wrapping of pipe tape ipe tape is not necessary since this product uses a pneumatic and hydraulic purpose G thread which conforms to ISO 79-. When an R (taper) thread is used, leave to threads at the tip exposed before winding the piping thread around it 4 to 5 times. Winding direction Warning Mounting. If air leakage increases or equipment does not operate properly, stop operation. After mounting is completed, confirm that it has been done correctly by performing a suitable function test.. Do not apply external force to the coil section. Be sure to apply the wrench to the external part of the piping connection. (Hexagonal parts or width across flats) Also, use caution when mounting a silencer or piping to the VCH40 series 3 port solenoid valve because the top (G/4) is a pilot exhaust port. 3. Be sure not to position the coil downwards. When mounting a valve with its coil positioned downwards, foreign objects in the fluid will adhere to the iron core leading to a malfunction. 4. Avoid sources of vibration, or adjust the arm from the body to the minimum length so that resonance will not occur. Expose approx. threads Connecting a R thread ipe tape (Winding the pipe tape 4 to 5 times) 3. Always tighten threads with the proper tightening torque. VCH When attaching fittings to valves, tighten with the proper tightening torque shown below. VDW Tightening Torque for iping VQ Connection threads roper tightening torque N m G, Rc / 8 to 30 LVM G, Rc 3/4 8 to 30 G, Rc 36 to Connection of piping to products When connecting piping to a product, refer to its instruction manual to avoid mistakes regarding the supply port, etc. ort : Supply port ort : Output port ort 3: Exhaust port Note) Supply port when used as a selector valve. However, use within the range of the port pressure > = port 3 pressure x ( times). 369
14 5.0 Ma ilot Operated /3 ort Solenoid Valves & Check Valves recautions 3 Be sure to read this before handling. Caution Wiring. As a rule, use electrical wire with a cross sectional area of 0.5 to.5 mm for wiring. Furthermore, do not allow excessive force to be applied to the lines.. Use electrical circuits which do not generate chattering in their contacts. 3. Use voltage which is within ±0% of the rated voltage. In cases with a DC power supply where importance is placed on responsiveness, stay within ±5% of the rated value. The voltage drop is the value in the lead wire section connecting the coil. 4. When a surge from the solenoid affects the electrical circuitry, install a surge absorber, etc., in parallel with the solenoid. Or, adopt an option that comes with the surge voltage protection circuit. (However, a surge voltage occurs even if the surge voltage protection circuit is used. For details, please consult with us.) Caution Electrical Connections DIN connector Since internal connections are as shown below for the DIN connector, make connections to the power supply accordingly. : + ( ) 3 + Terminal no. DIN terminal + ( ) (+) There is no polarity. Use the compatible heavy-duty cords with cable O.D. of ø6 to mm. Use the tightening torques below for each section. Connector Binding head screw with flange Tightening torque 0.5 to 0.6 N m Washer : ( + ) Note) Compatible cable (cable O.D. ø6 to mm) Caution DIN connector (+) ( ) DC circuit Electrical Circuits Varistor Warning SOL. Varistor ( ) ( ) Operating Environment AC circuit Varistor Rectifier element SOL.. Do not use the valves in an atmosphere having corrosive gases, chemicals, salt water, water, steam, or where there is direct contact with any of these.. Do not use in explosive atmospheres. 3. Do not use in locations subject to vibration or impact. 4. Do not use in locations where radiated heat will be received from nearby heat sources. 5. Employ suitable protective measures in locations where there is contact with water droplets, oil or welding spatter, etc. Maintenance Warning. Removing the product ) Shut off the fluid supply and release the fluid pressure in the system. ) Shut off the power supply. 3) Dismount the product.. Low frequency operation Switch valves at least once every 30 days to prevent malfunction. Also, in order to use it under the optimum state, conduct a regular inspection once a half year. Caution. Storage In the case of long term storage, thoroughly remove all moisture to prevent rust and deterioration of rubber materials, etc.. Exhaust the drain from an air filter periodically. Rubber seal Binding head screw Tightening torque 0.5 to 0.6 N m 370 Gasket Note) For an outside cable diameter of ø9 to mm, remove the internal parts of the rubber seal before using.
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