5 Port, 2 Position Double Solenoid Inline Valve (Series 524)
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- Griffin Campbell
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1 Port, Position Double Solenoid Inline Valve (Series ) DIN Connector Solenoid Coil Valve Body Piston Seal Profile O Ring Outlet Ports Piston Housing Piston Flat Seal Inlet Flat Seal Spool Manual Override
2 GENERL INFORMTION (DIRECTIONL CONTROL VLVES) Directional control valves are designed to direct the air flow to and from the cylinders in a pneumatic system where it will perform the work. Most valves have nominal ports of / to / BSP, the smaller sizes being used for piloting and sequencing purposes as well as for the control of small cylinders. These valves can be used to provide a number of different functions. They can: Control the direction of cylinder movement; Select the path that air takes through the system; Perform logic control functions; Stop and start air flow (on-off valves); Sense cylinder positions (limit valves): Directional control valves are classified according to a number of design characteristics: The internal valve mechanism (i.e. poppet or sliding spool ) The number of switching positions (usually or ) The number of connecting ports (i.e. or port) The method of valve actuation (Manual, Mechanical, Solenoid or ir pilot operated) The valve mechanism directs the compressed air supply, through the valve body to the selected output ports or stops the air from passing through the valve. The valve mechanism can be moved by the direct mechanical action, a spring, an electrical solenoid or by pneumatic air (pilot operated). Three port valves are used as selector valves to route air to create a pilot signal, to control single acting cylinders or to make logic functions. Circuit at rest Spring return Solenoid energized Cylinder Extending Solenoid De-energized Cylinder Retracting WY, POSITION DIRECTIONL CONTROL VLVES OPERTING CYLINDER In position valve, spring holds the non-actuated valve in one position until an actuating force great enough to compress the spring shifts the valve. When the actuating force is removed, the spring returns the valve to its original position. Five port valves are used to control double acting cylinders. Solenoid Return Spring Circuit at rest Solenoid energized Cylinder Extending Solenoid De-energized Cylinder Retracting PORT POSITION DIRECTIONL CONTROL VLVES OPERTING CYLINDER
3 GENERL INFORMTION (DIRECTIONL CONTROL VLVES) -port position double solenoid operated close centre direction control valve operating a cylinder as shown below Extend Solenoid Retract Solenoid Double cting Inching Circuit In this position at rest condition the air flow to all the ports are blocked, and there by it holds the actuator to remain at the particular position it attained earlier. By energizing the extend solenoid the air flows to the cylinder cap end and enables the forward moment. By energizing the retract solenoid the air flows to the cylinder head end side & makes it to retract. SPOOL VLVES The most common sliding action valve is the spool type valve; In this air is routed to or from the work ports as the spool slides between passages to open and close flow paths, depending on spool position. Sealing is usually accomplished through mating of rubber seals with the very closely machined and honed valve body. Spool valves readily adapt to many different spool-shifting schemes, which broaden their use over a wide variety of applications. USGE OF DIRECTION CONTROL VLVE: Directional air valves are basically used in two types of circuits: Power circuits and control circuits. MN IR Valve- Valve- IR IR IR ir supply Valve- power circuit is a circuit in which the valve feeds air to the cylinder or power dev ice. (Valves and ) control circuit is a circuit in which the air going through the valve causes a second valve in the power circuit to shift or change the direction of flow. (Valve ) Notice that the air flow from valve does not go to the cylinder but rather, to valves and as pilot signal. Valve is therefore a control valve because it controls the operation of valves and. Valves and go directly to the cylinder to provide the pressure (or power) to either port on the cylinder. These valves cause the cylinder to move. However, they cannot do their own positioning. They depend on valve to position them to allow proper operation of the cylinder. Valves and are power valves in a power circuit.
4 GENERL INFORMTION (DIRECTIONL CONTROL VLVES) SELECTION OF VLVE FOR PNEUMTIC SYSTEM Inline mounted valve S. No. Port Size Valve Model No Bore Size pproximate Reference speed Flow (l/min) Total Effective Sectional rea required (mm ) Pipe Size. M SSO DSO SPO DPO ILV0G ILV0G ILV00 ILV00 Ø0 Ø Ø Ø / Ø Nylon tube Ø / Ø Nylon tube Ø / Ø.7 Nylon tube. /" BSP SSO DSO SPO DPO ILV0G ILV0G ILV00 ILV00 Ø0 Ø0 Ø Ø / Ø.7 Nylon tube Ø0 / Ø7. Nylon tube Ø / Ø.7 Nylon tube Ø0 / Ø7. Nylon tube. /" BSP SSO DSO SPO DPO ILV0G ILV0G ILV00 ILV00 Ø Ø0 Ø Ø / Ø. Nylon tube or Rc /" steel pipe Ø/ Ø. Nylon tube or Rc /" steel pipe Ø/ Ø. Nylon tube or Rc /" steel pipe. /" BSP SSO DSO SPO DPO ILV0G ILV0G ILV00 ILV00 Ø Ø Rc /" steel pipe Rc /" steel pipe SSO ILV0G Ø Rc /" steel pipe. / " BSP DSO SPO ILV0G ILV00 Ø Rc /" steel pipe DPO ILV00 Ø Rc /" steel pipe Inline mounted valve S. No. Port Size Valve Model No Bore Size pproximate Reference speed Flow (l/min) Total Effective Sectional rea required (mm ) Pipe Size. / " BSP SSO DSO SPO DPO S0G S0G S00 S00 Ø0 Ø0 Ø Ø0 / Ø7. Nylon tube Ø0 / Ø7. Nylon tube Ø0 / Ø7. Nylon tube. /" BSP SSO DSO SPO DPO S0G S0G S00 S00 Ø0 Ø Ø0 / Ø7. Nylon tube Ø / Ø. Nylon tube or Rc /" steel pipe
5 GENERL INFORMTION (DIRECTIONL CONTROL VLVES) PIPING TECHNICL DETILS B B (mm ) Effective sectional area 0 0 dia. X 0 dia. dia. X 9 dia. 0 dia. X dia. 0 dia. X 7. dia. 0 dia. X 7 dia. dia. X dia. dia. X dia. dia. X. dia. dia. X dia. (mm ) Effective sectional area B B B B B dia. X dia. dia. X. dia. 0. Tube diameter (O.D. X I.D.) (mm) B B Tube length (m) Nylon tube effective sectional area Pipe length (m) Steel pipe effective sectional area SELECTION FOR FINLISTION OF CYLINDER BORE 0,00 0,00 0,00,00,00,00,0 P= bar Ø0 Ø00 Ø0 Ø0 Ø0 Ø 0,00 0,00 0,00,00,00,00,0 P= bar Ø0 Ø00 Ø0 Ø0 Ø0 Ø Ø00 0,00 0,00 0,00,00,00,00,0 P=7 bar Ø0 Ø00 Ø0 Ø0 Ø0 Ø Ø00 Ø0 kg,0,0 0 Ø00 Ø0 Ø kg,0,0 0 Ø0 Ø Ø0 kg,0,0 0 Ø Ø0 Ø0 0 Ø0 Ø0 0 Ø0 Ø0 0 Ø0 Ø0 Ø0 Ø0 Ø Load factor (%) Load factor (%) Load factor (%)
6 GENERL INFORMTION (DIRECTIONL CONTROL VLVES) THEORETICL REFERENCE SPEED Theoretical Reference speed ( Vo ) is the cylinder average speed obtained from the combination of the Valve & the Piping System and is expressed as for the fallowing Formula : S Vo = 90 x Vo = Theoretical Reference Speed (mm/s) = Cylinder Cross sectional rea (Cm ) S = Composite effective sectional area of Circuit (exhaust side) (mm ) D = Cylinder Bore size (Cm) METHOD FOR FINDING THEORETICL REFERENCE SPEED.7 Load factor = 0% Pipe length m push..7.0 Load factor = % Pipe length m push. toperation time (s) S tr o k e toperation time (s) Str o k e Cylinder theoretical reference speed (mm/s) o Cylinder theoretical reference speed (mm/s) o toperation time (s) Load factor = 0% 0 S troke Pipe length m push Cylinder theoretical reference speed (mm/s) o toperation time (s) Load factor = 70% 00 0 Str o ke Pipe length m push Cylinder theoretical reference speed (mm/s) o
7 GENERL INFORMTION (DIRECTIONL CONTROL VLVES) SFETY INSTRUCTIONS:. lways use dry and clean compressed air that does not contain oil, tar, carbon etc., in order to prevent operational faults. lso install an air filter just before the pneumatic circuit to ensure efficient working.. Do not remove the solenoid valve s packaging or the port dust caps till the time it is connected to the air line.. Flush the valve before connecting to the air line in order to remove any foreign matter that has entered during piping to prevent troubles such as air leak.. Before piping, make sure that all debris, cutting oil, dust etc., are removed from the piping.. When installing piping into a port, ensure that sealant material does not clog up the pressure port which may cause the tape to enter the solenoid valve and lead to malfunctioning. To avoid this type of problem wrap the sealing tape in the opposite thread direction leaving the first. to threads.. Connect the pipes to the valve with appropriate torque to prevent air leakage and at the same time safe guard the threaded screw. 7. Make sure that the personnel who are engaged in assembly and disassembly have enough knowledge and experience.. For easy maintenance, provide enough space all-around the pneumatic valve. 9. t the time of servicing the product, switch off the power, stop the compressor air supply and check that there is no residual pressure for ensuring safety. 0. Protect solenoid valve s power supply cord from any damages which may cause electric shock or circuit error.. Do not throw the pneumatic valve product into fire. In some cases it may explode or generate toxic gases which are harmful.. Do not use the valves in the dusty working conditions. If it is unavoidable to use, place a protective cover over the control unit and place the noise muffler at the exhaust ports.. llowable range of voltage variation should be within 0% of the recommended voltage for proper operation of the valves. ny voltage exceeding more than 0% of the recommended voltage will result in the coil damage and the malfunctioning of the valves.
8 IN LINE VLVE (SOFT SPOOL TYPE) SERIES - ORDERING CODE ILV 0 D INLINE VLVE D G With Connecter Grommet (Lead wire 00mm Length) MODEL No. 0 ELECTRICLS NO SOLENOIDS 0 V C/DC 0 V C/DC V DC CODE SIZE BSP NPT M N /" /" /" N N N /" N Position (Solenoid type) Function Function symbol Code Single solenoid Double solenoid Position (ir Pilot type) B R P R B R P R 0 0 Example : ILV / / / 0 / / D Single Pilot Double Pilot Position (Solenoid type) Closed center Exhaust center Pressure center Position (ir Pilot type) Closed center Exhaust center Pressure center B R P R B B R P R R P R B R P R B R P R B R P R B R P R B R P R 0 0
9 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE SINGLE SOLENOID VLVE : M SPECIFICTIONS : Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting ILV- M Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less mm Ø 0 to Ø 0 00 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F Dc: v, v.0 w ±0 % of Rated Voltage Dust Proof Top / Side M( nos) Vibration / Impact Weight 0 m/s or Less/0 m/s or Less 0 gms Ø ( holes). MTERIL IDENTIFICTION: S.NO. DESCRIPTION MTERIL Valve Body luminum 0 7 Piston Housing End Cover 0 Ø.7 ( holes). Profile 'O' Ring Spool Flat Seal luminum 7 Piston cetar Resin Piston 'O' Ring Spring Solenoid Coil Spring Steel Std.
10 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : M 7 SPECIFICTIONS : Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting ILV- M Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less mm Ø 0 to Ø 0 00 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F Dc: v, v.0 w ±0 % of Rated Voltage Dust Proof Top / Side M( nos) Vibration / Impact Weight 0m/s or Less / 0m/s or Less gms Ø ( holes) MTERIL IDENTIFICTION: S.NO. DESCRIPTION Valve Body Piston Housing MTERIL luminum 0 Ø.7 ( holes). Profile 'O' Ring Spool Flat Seal luminum Piston cetar Resin 7 Piston 'O' Ring 9. Solenoid Coil Std.
11 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE SINGLE SOLENOID VLVE : / BSP SPECIFICTIONS : Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting ILV- / BSP Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less. mm Ø 0 to Ø 0 70 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F Dc: v, v.0 w ±0 % of Rated Voltage Dust Proof Top / Side Vibration / Impact 0m/s or Less / 0m/s or Less.... Weight gms 9. Ø. ( holes) MTERIL IDENTIFICTION: 7. S.NO. DESCRIPTION Valve Body MTERIL luminum Piston Housing.7 /"BSP(nos) 7 9. Ø. ( holes). 7 End Cover Profile 'O' Ring Spool Flat Seal - Flat Seal - luminum Piston Piston 'O' Ring Spring Solenoid Coil cetar Resin Spring Steel Std.
12 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : / BSP SPECIFICTIONS : 7 9 Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting Vibration / Impact ILV- / BSP Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less. mm Ø 0 to Ø 0 70 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F Dc: v, v.0 w ±0 % of Rated Voltage Dust Proof Top / Side 0m/s or Less / 0m/s or Less Weight 00 gms Ø. ( holes). MTERIL IDENTIFICTION: S.NO. DESCRIPTION MTERIL 0 0. Valve Body Piston Housing Profile 'O' Ring luminum /"BSP(nos) 7 Ø. ( holes). Spool Flat Seal - luminum Flat Seal - 7 Piston cetar Resin Piston 'O' Ring Solenoid Coil Std.
13 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE SINGLE SOLENOID VLVE : /" BSP SPECIFICTIONS : Series ILV- Port Size / BSP Operation Spool Type, Solenoid Operated. Function / ( Port Position) Medium Compressed, Filtered ir Min Working Pressure. bar Response Time ms or Less Effective Sectional rea mm pplicable Cylinder Bore Size Ø to Ø 00 Max Cylinder Speed 900 mm/sec Max Working Pressure bar 7 Operating Temp. to 0 c Lubrication Not Required Manual Override Push Button (In Built Coil) Coil Insulation Class - F Voltage c : 0v or 0v / Dc: v Power Consumption c : V / DC :.w Permissible Voltage Variation ±0 % of Rated Voltage 0 9 Protection Structure Mounting Dust Proof Top / Side Vibration / Impact 0m/s or Less / 0m/s or Less.. 0. Weight 7 gms R R R Ø. ( holes) 9 MTERIL IDENTIFICTION: S.NO. DESCRIPTION MTERIL. Valve Body luminum 0 Piston Housing End Cover Profile 'O' Ring Spool luminum /"BSP(nos) Ø.(thru) Flat Seal - ( holes) 7 Flat Seal - Piston cetar Resin B 9 Piston 'O' Ring 0 Spring Solenoid Coil Spring Steel Std.
14 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : /" BSP SPECIFICTIONS : 7 9 Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting ILV- / BSP Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less mm to 00 Dia 900 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F c : 0v or 0v / Dc: v c : V / DC :.w ±0 % of Rated Voltage Dust Proof Top / Side Vibration / Impact 0m/s or Less / 0m/s or Less.. R 0. Weight 0 gms R R.. 9 Ø. ( holes) MTERIL IDENTIFICTION: 0 S.NO. DESCRIPTION Valve Body Piston Housing MTERIL luminum /"BSP(nos) Ø.(thru) ( holes) Profile 'O' Ring Spool Flat Seal - luminum B Flat Seal - 7 Piston cetar Resin 9 Piston 'O' Ring Solenoid Coil Std.
15 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE SINGLE SOLENOID VLVE : /" BSP SPECIFICTIONS : Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting ILV- / BSP Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less 0 mm Ø to Ø0 70 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F c : 0v or 0v / Dc: v c : V / DC :.w ±0 % of Rated Voltage Dust Proof Top / Side Vibration / Impact 0m/s or Less / 0m/s or Less Weight 0 gms.. Ø. ( holes). 9. MTERIL IDENTIFICTION: S.NO. DESCRIPTION Valve Body MTERIL luminum Piston Housing Ø. ( holes) End Cover Profile 'O' Ring Spool Flat Seal - luminum 7 Flat Seal - 9. Piston cetar Resin 9 Piston 'O' Ring /"BSP(nos) Spring Solenoid Coil Spring Steel Std.
16 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : / BSP SPECIFICTIONS : 7 Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting Vibration / Impact ILV- / BSP Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less 0 mm Ø to Ø0 70 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F c : 0v or 0v / Dc: v c : V / DC :.w ±0 % of Rated Voltage Dust Proof Top / Side 0m/s or Less / 0m/s or Less Weight 0 gms... Ø. ( holes) 9. MTERIL IDENTIFICTION: S.NO. DESCRIPTION MTERIL. 9 Valve Body Piston Housing luminum 9. 7 Ø. ( holes) Spool Flat Seal - luminum Flat Seal - Piston cetar Resin /"BSP(nos) Piston 'O' Ring Solenoid Coil Std.
17 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE SINGLE SOLENOID VLVE : / " BSP SPECIFICTIONS : Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting Vibration / Impact Weight ILV- / BSP Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less mm Ø0 to Ø0 00 mm/sec 0 bar to 0 c Not Required Push Button (In Built Coil) Class - F c : 0v or 0v / Dc: v c : V / DC :.w ±0 % of Rated Voltage Dust Proof Top / Side 0m/s or Less / 0m/s or Less 90 gms P R R Ø.. 0 ( holes) MTERIL IDENTIFICTION: S.NO. DESCRIPTION MTERIL Valve Body luminum 0 Piston Housing End Cover Ø. ( holes) Profile 'O' Ring Spool luminum. 7 Flat Seal - Piston cetar Resin B Piston 'O' Ring /"BSP(nos) Spring Solenoid Coil Spring Steel Std.
18 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : / " BSP SPECIFICTIONS : Series Port Size Operation Function Medium Min Working Pressure Response Time Effective Sectional rea pplicable Cylinder Bore Size Max Cylinder Speed Max Working Pressure Operating Temp. Lubrication Manual Override Coil Insulation Voltage Power Consumption Permissible Voltage Variation Protection Structure Mounting Vibration / Impact Weight ILV- / BSP Spool Type, Solenoid Operated. / ( Port Position) Compressed, Filtered ir. bar ms or Less mm Ø0 to Ø0 Dia 00 mm/sec bar to 0 c Not Required Push Button (In Built Coil) Class - F c : 0v or 0v / Dc: v c : V / DC :.w ±0 % of Rated Voltage Dust Proof Top / Side 0m/s or Less / 0m/s or Less 70 gms. P R R 9. Ø. 7 0 ( holes) 0 MTERIL IDENTIFICTION: S.NO. DESCRIPTION MTERIL 77 Valve Body luminum Ø. ( holes) Piston Housing Profile 'O' Ring. Spool Flat Seal - luminum B Piston cetar Resin /"BSP(nos) Piston 'O' Ring Solenoid Coil Std.
19 IN LINE VLVE (SOFT SPOOL TYPE) POSITION SOLENOID TYPE :. CLOSED CENTER. R R P B. EXHUST CENTER. R R P B. PRESSURE CENTER. R R P B
20 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : M M( nos) ( holes) Ø Ø.7 ( holes) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : / BSP..... Ø. ( holes). 7 Ø. ( holes) /"BSP(nos).. 7
21 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : / BSP.. 0. R R R.. 9 Ø. ( holes) 0 0 /"BSP(nos) Ø.(thru) ( holes) B PORT POSITION IN LINE DOUBLE SOLENOID VLVE : / BSP Ø. ( holes) Ø. ( holes) /"BSP(nos)
22 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE SOLENOID VLVE : ½ BSP 0 0 B P R R Ø. ( holes) 0 Ø. ( holes). 99 /"BSP(nos) 0..
23 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE SINGLE IR PILOT VLVE C P X H N V P L L C -ØD W Z B R Y R F Y G P L PORT SIZE BSP M /" /" /" /" C C Ø D F G H L L L N P P V W X Y Y Z 0.7 M M-nos 7 7. M /"BSP-nos M M /" BSP /"BSP-nos /"BSP-nos /"BSP-nos Ø 0. 9 nos Ø.... nos Ø. 7. nos Ø nos Ø nos
24 IN LINE VLVE (SOFT SPOOL TYPE) PORT POSITION IN LINE DOUBLE IR PILOT VLVE C P X H N V P L L C -ØD W Z B R Y R F Y G P L PORT SIZE BSP C C ØD F G H L posi posi L L N P P V W X Y Y Z posi posi M /" /" /" /" 0.7 M M-nos 7 7. M /"BSP-nos M M /" BSP /"BSP-nos /"BSP-nos /"BSP-nos Ø nos. Ø. nos.. 7. Ø. nos 0 9. Ø. nos Ø. nos 9.
25 MULTIPLE UNITS-MNIFOLD MOUNTED : /" BSP /"BSP ( holes) Ø. ( Fixing holes) M (Pitch) 0 7.
26 MULTIPLE UNITS-MNIFOLD MOUNTED : / BSP 7. /"BSP ( holes) 7. Ø. ( Fixing holes) B B B 0 M B (Pitch) 7.
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