Note Symbol 1P Common Common 3R Common Individual 1 Type 41 Type 42 VHS 3 VV3PA3-42-053-02 Stations 02 2 stations ... ... 20 20 stations To order valves and blank plate assembly mounted onto the manifold, list valves and blanking plate assembly with manifold base part number.
Note 2) 52-SY9000 has no bracket. 5 7 9 52-SY5000 52-SY7000 52-SY9000 Thread type Type of actuation Nil F N T Rc G NPT NPTF 2-position single 2-position double 3-position closed centre 3-position exhaust centre 3-position pressure centre 1 2 3 4 5 A, B port size (Body ported type) Piping type Port size Applicable series Symbol 01 C4 C6 C8 N3 N7 N9 02 C8 C10 N9 N11 02 03 C8 C10 C12 N9 N11
Conditions: Supply pressure 0.7MPa Set pressure 0.2MPa Flow rate 0 l/min (ANR) Conditions: Back pressure 0.5MPa Conditions: Supply pressure 0.5MPa IR2000-02 IR2000-02 IR2000-02 0.204 0.5 0.2 Set pressure MPa Set pressure MPa Set pressure P2 MPa 0.4 0.202 Setting point 0.15 0.3 0.200 0.1 0.2 0.198 0.05 0.1 0.196 0 0.2 0.1 0.4 0.3 0.6 0.5 0.8 0.7 0.9 1.0 0 100 200 300 400 0 100 200 300 400
02 03 04 04 06 10 10 12 14 20 Nil 01 02 8 1 1 4 1 4 1 3 8 3 Body ported Base mounted 2 1 2 1 5 4 3 1 1 1 1 2 4 1 1 7 4 1 2 1 9 2 Without sub-plate 8 1 2 4 1 Option Description Part no. 0 3 0 3 0 3 0 3 0 3 0 3 VEX1A33 VEX1B33 VEX113 VEX123 VEX133 VEX153 VEX173 VEX193 B Bracket (With bolt and washer) VEX1-18-1A VEX1-18-1A VEX3-32A VEX5-32A VEX7-32A VEX9-32A VEX1-18-2A VEX1-18-2A F Foot (With
Valve model Port size VCL2 VCW20-12-01 1/8, 1/4 34 40 25 30 12.8 12.8 5 4.5 6 13 VCW30-12-02 1/4, 3/8 42 52 30 40 19 19 6 5.5 7 19 VCL3 VCW30-12-04 1/2 48 56 36 44 23 23 6 5.5 7 23 VCW40-12-02 1/4, 3/8 42 52 30 40 23 23 6 5.5 7 19 VCW30-12-04 VCL4 1/2 48 56 36 44 23 23 6 5.5 7 23 VCW40-12-06 3/4 56 65 44 53 28.2 28.2 6 5.5 7 26 Bracket material: Stainless steel 3 Series VCL Direct Operated
Before wiring, ensure that the power supply capacity is enough and that the voltage is within the specification. 7. Do not allow foreign matter or tools to enter the nozzle. The inside of the nozzle contains emitters.
Valve model Port size VCS21 VCS20-12-01 1/8, 1/4 34 40 25 30 12.8 12.8 5 4.5 6 13 VCS30-12-02 1/4, 3/8 42 52 30 40 19 19 6 5.5 7 19 VCS31 VCS30-12-04 1/2 48 56 36 44 23 23 6 5.5 7 23 VCS40-12-02 1/4, 3/8 42 52 30 40 23 23 6 5.5 7 19 VCS30-12-04 VCS41 1/2 48 56 36 44 23 23 6 5.5 7 23 VCS40-12-06 3/4 56 65 44 53 28.2 28.2 6 5.5 7 26 Bracket material: Stainless steel 3 Series VCS Direct Operated
Valve model Port size VCL2 VCW20-12-01 1/8, 1/4 34 40 25 30 12.8 12.8 5 4.5 6 13 VCW30-12-02 1/4, 3/8 42 52 30 40 19 19 6 5.5 7 19 VCL3 VCW30-12-04 1/2 48 56 36 44 23 23 6 5.5 7 23 VCW40-12-02 1/4, 3/8 42 52 30 40 23 23 6 5.5 7 19 VCW30-12-04 VCL4 1/2 48 56 36 44 23 23 6 5.5 7 23 VCW40-12-06 3/4 56 65 44 53 28.2 28.2 6 5.5 7 26 Bracket material: Stainless steel 3 Series VCL Direct Operated
7 7 9 6.5 5.5 5.5 +0.058 0 +0.070 0 +0.070 0 M4 6.5 10 10 5.5 9 9 5.5 7 10 M5 AD-CHN-40 M5 Y-shaped double knuckle joint Bracket pin 20: Y-02 25: Y-03 32: Y-04C 40: YHN-04 Material: Carbon steel Material: Rolled steel plate Material: Cast iron RR1 2-D drill through RR1 C1 Chamfer Cf7 NDH10 NDH10 MM C1 Chamfer E1 E1 B NZ NZ NX A NX U1 A1 A1 U1 L1 L1 Part no.
It is already built-in to the rectifier circuit. 1 2 3 4 7 300 mm 500 mm 1000 mm 2000 mm 5000 mm 110 VAC 50/60 Hz [115 VAC 50/60 Hz] 3 4 220 VAC 50/60 Hz [230 VAC 50/60 Hz] Electrical entry D With connector DIN terminal DC specifications of type D and DO is only available with 12 and 24 VDC. Power saving circuit is not available in the case of D or DO type.
01 02 SS073A Stations C L2 0.1 W with power saving circuit L1 1.8 18 5 23.5 21 P = 7.2 11 22 3.5 3.5 8 R1.7 7 25.5 3.4 28.5 3.5 150 (lead wire AWG#26) 27 5 150 (lead wire AWG#26) 3.5 6 barb fitting 1 (SUP) port n U side 1 2 3 4 5 D side 6 barb fitting 3 (EXH) port (18) 12 7 5 5 3.5 3.2 3.5 P = 7.2 12.8 n-3.2, 4 barb fitting 2 (OUT) port Dimensions Formulas: L1 = n 7.2 + 14.8, L2 = n 7.2
A B Hex 1 Hex 2 Port 1 Port 2 A D Swivels PS410303-4-4 3.11 2.08 .75 1.19 7/16-20 7/16-20 78.9 mm 53.0 mm 19.0 mm 30.2 mm UNF-2A UNF-2A B Hex 2 Hex 1 PS610303-6-6 3.23 2.18 .88 1.31 9/16-18 9/16-18 82.0 mm 55.2 mm 22.2 mm 33.3 mm UNF-2A UNF-2A Port 2 Port 1 PS810303-8-8 3.56 2.38 1.12 1.50 3/4-16 3/4-16 90.3 mm 60.3 mm 28.6 mm 36.5 mm UNF-2A UNF-2A PS810303-10-10 3.76 2.48 1.12 1.50 7/8-
(For type 20, 41, 42 and 45) Pilot pressure range SS5YA Fill the same as SS5Y . 3 5 7 3 5 7 Pilot pressure MPa Specify the part numbers for valves and options together beneath the manifold base part number. (Example) SS5YA5-42-03-02 1 set (Type 42, 3 station manifold base part no.) SYA5140 1 set (Single air operated valve part no.) SYA5240 1 set (Double air operated valve part no.)
(For 20, 41, 42 and 45 Types) Pilot pressure range SS5YA Fill the same as SS5Y . 3 5 7 3 5 7 SYA Pilot pressure MPa SYJA Specify the part numbers for valves and options together beneath the manifold base part number. VZA
7 CJ1 CJP CJ2 !5 !4 @ B @ C !3 JCM CM2 CM2 CM3 CG1 Boss-cut Integrated clevis CG3 Air-hydro !7 JMB MB MB1 CA2 CS1 With air cushion !7 CS2 Component Parts No.
V: Power supply voltage Power consumption P: 7 [kW] Q = P = 7 [kW] P Cooling capacity = Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)
Load factor: ((Load weight x 9.8)/Theoretical force) x 100% VS4 VQ7 EVS Conditions VFN Base mounted Series MB Series CS1 6A x 1 m AS4000-02 AN200-02 10A x 1 m AS420-03 AN300-03 6A x 1 m AS4000-02 AN200-02 10A x 1 m AS420-03 AN300-03 Base mounted Series MB Series CS1 10A x 1 m AS4000-03 AN300-03 15A x 1 m AS420-04 AN400-04 10A x 1 m AS4000-03 AN300-03 15A x 1 m AS420-04 AN400-04 SGP (Steel
Refer to back page 50 for Safety Instructions and pages 387 to 391 for Precautions on every series. 0 to 0.2 G46-2-02-SRB G46-4-02-SRA 0 to 0.4 G46-4-02-SRB MPa G46-7-02-SRA Caution Selection 0 to 0.7 G46-7-02-SRB G46-10-02-SRA 0 to 1.0 1) Avoid use in locations with strong pressure pulsation or vibration.
V: Power supply voltage Power consumption P: 7 [kW] Q = P = 7 [kW] P Cooling capacity = Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)
Dimensions .7 Part Names .6 2 3 Otherwise accident caused by malfunction can result.