Inch Size [mm] Model d T (R, NPT) H D1 D3 L1 L2 L3 L4 Note 1) A Note 2) M W1 W2 X Y Weight [g] Unlocked Locked Unlocked Locked AS221FS-01-01 (S) 1/8" 7.2 12 19.1 26.2 19.1 43.9 42.4 40.8 39.3 13.3 20 21.5 6.5 15 13 (13) AS221FS-01-03 (S) 5/32" 8.2 AS221FS-01-07 (S) 1/4" 11.2 20.8 27.9 14 (13) AS221FS-01-09 (S) 5/16" 13.2 22.4 29.5 14.2 15 (14) AS221FS-02-01 (S) 1/8" 1/8 13 (12.7) 7.2 20.9
Inch Size [mm] Model d T (R, NPT) H D1 D3 L1 L2 L3 L4 Note 1) A Note 2) M W1 W2 X Y Weight [g] Unlocked Locked Unlocked Locked AS221FSG-01-01 (S) 1/8" 7.2 12 19.1 26.2 19.1 43.9 42.4 40.8 39.3 13.3 20 21.5 6.5 15 13 (13) AS221FSG-01-03 (S) 5/32" 8.2 AS221FSG-01-07 (S) 1/4" 11.2 20.8 27.9 14 (13) AS221FSG-01-09 (S) 5/16" 13.2 22.4 29.5 14.2 15 (14) AS221FSG-02-01 (S) 1/8" 1/8 13 (12.7) 7.2
DIN rail for 9 stations J kit (Flat ribbon cable connector) S kit (Serial) kit F kit (D-sub connector) P kit (Flat ribbon cable connector) When changing the manifold style into a DIN rail mount Order brackets for mounting a DIN rail. (Refer to Option on page 2-4-24.) F 25P U S F 15P U S P 26P U S A S U S P 20P U S P 16P U S P A B C 10P J 20P U S Type No.
Inch Size [mm] Model d T H D1 D3 L1 L2 L3 L4 Note 1) A Note 2) M Weight [g] Unlocked Locked Unlocked Locked AS22l1FG-01-01(S)A 1/8" 7.2 12 19.1 26.2 19.1 30.6 29.2 27.5 26.1 13.3 9 (9) AS22l1FG-01-03(S)A 5/32" 8.2 AS22l1FG-01-07(S)A 1/4" 11.2 20.8 27.9 10 (9) AS22l1FG-01-09(S)A 5/16" 13.2 22.4 29.5 14.2 11 (10) AS22l1FG-02-01(S)A 1/8" 1/8 13 (12.7) 7.2 22.6 36.6 35 31.1 29.5 13.3 17 (18)
Cylinder: MXP10-10 Mounting: Horizontal wall mounting Average speed: Va = 300 [mm/s] Allowable load: W = 0.2 [kg] L2 = 20 mm L3 = 30 mm Kinetic Energy Model to be used Mounting orientation Average speed Va (mm/s) W Load weight W (kg): Fig. (1) L3 + A3 Overhang Ln (mm): Fig. (2) L2 2 1 420 2 E = 0.2 () = 0.018 2 1000 V = 1.4 x 300 = 420 1 V 2 E = W () 2 1000 Find the kinetic energy
Yawing Mep m m : Transfer load (kg) a : Work piece acceleration (mm/s) Me: Dynamic moment L : Overhang to work piece center of gravity (mm) 50 L1 0 2 4 6 8 10 Transfer load m (kg) 150 L2 100 Mer m 50 L2 0 2 4 6 8 10 Mer Transfer load m (kg) m a = 500 150 a = 1000 100 a = 2000 L3 50 m Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 90 Standard Motor/Horizontal
N.O. 0.4 0.3 0.2 0.1 0.2 0.3 0.4 0.5 0.6 Operating pressure (MPa) Flow Characteristics/Weight C [dm 3/(s bar)] b Cv C [dm 3/(s bar)] b Cv 1 2 (P A) 2 3 (A R) Valve model Flow characteristics Weight (g) Effective area (mm2) Pilot port size Type of actuation Port size SYJA312-M3 SYJA322-M3 SYJA314-M5 0.41 0.18 0.086 0.35 0.33 0.086 Body ported N.C. N.O. N.C.
4 L 279 421 492 634 563 705 776 370 482 426 538 594 650 L1 208 350 L1 158 201 244 502 287 373 330 416 459 L1 202 258 314 587 445 516 658 729 800 374 498 442 386 554 610 232 666 L2 303 170 L2 213 256 299 514 385 342 428 471 218 L2 274 330 17 Series VS R8b S MANIFOLD DEVICENET SI UNIT FOR DEVICENET SYSTEM M12 5 PIN CONNECTOR (INPUT NO. 4-F) L2 L2 L1 L1 M12 5 PIN CONNECTORS (INPUT NO. 0-3) MANUAL
ARX Series Specialty Regulators Regulator for 290psi (2MPa) ARX20, 21 Specifications ARX20 Model Piston regulator Regulator construction Relief type Relief mechanism NPT 1/8, 1/4 Piping port size NPT 1/8, 1/4 Pressure gauge port size 435 (3.0) Proof pressure psig (MPa) 290 (2.0) Maximum operating pressure psig (MPa) ARX20-N02 7~120 (0.05 to 0.85) Standard Regulating pressure range psig (MPa
System (16 output points) SUNX Corp.: S-LINK System (8 output points) Fuji Electric Co.: T-LINK Mini System DeviceNet, CompoBus/D (OMRON Corp.)
There is no "S" type for AC, since the generation of surge voltage is prevented by a rectifier. With light/surge voltage suppressor (non-polar type) There is no "S" type for AC, since the generation of surge voltage is prevented by a rectifier. D and DO type DC specifications are 24VDC or 12VDC only. D and DO type are for SY5000/7000 only.
S) 2 x Q Breathing port: R H G C SMC SMC SMC SMC N V 1/4 1/4 1/4 U 3/8 E Pitch = B Dimensions (mm) Station n x A port 2 3 4 5 Model Symbol L1 L2 L3 L1 L2 L3 L1 L2 L3 L1 L2 L3 62 93 124 155 LLC2A 75 106 137 168 146 177 208 239 73 109.5 146 182.5 LLC3A 84 120.5 157 193.5 183 219.5 256 292.5 Dimensions (mm) 94 141 188 235 A B Q C D E G H K N R S U V W Y LLC4A Model LLC2A LLC3A LLC4A LLC5A 109
Item Setting range HRZL : -20.0 to 40.0C HRZ-L2 : 10.0 to 40.0C HRZ-H : 20.0 to 90.0C HRZ-W : -20.0 to 90.0C 1 TEMP SP 2 FLOW SP 10 to 40LPM(2.6 to 10.6GPM) FLOW SP is only indicated on HRZ010-W*S and Setting is available.
S) C 2-Q Breathing port: R H G SMC SMC SMC SMC N V 1/4 1/4 1/4 U 3/8 E Pitch = B Dimensions (mm) Station n-A port 2 3 4 5 Model Symbol L1 L2 L3 L1 L2 L3 L1 L2 L3 L1 L2 L3 62 93 124 155 LLC2A 75 106 137 168 146 177 208 239 73 109.5 146 182.5 LLC3A 84 120.5 157 193.5 183 219.5 256 292.5 (mm) Dimensions 94 141 188 235 A B Q C D E G H K N R S U V W Y LLC4A Model LLC2A LLC3A LLC4A LLC5A 109 156
Electrical entry Port size F kit Double wiring F kit Single wiring T kit Double wiring T kit Single wiring S kit Double wiring S kit Single wiring L0 kit : Stations (1 to 16) L1 kit : Stations (1 to 16) L2 kit : Stations (1 to 16) C kit (Plug lead type) 02 03 B C8 C10 C12 N7 N9 N11 F1 F2 T1 T2 S1 S2 L0 L1 L2 C Rc 1/4 Rc 3/8 Bottom ported Rc 1/4 With One-touch fitting for 8 With One-touch
ISG (21) Seal conduit entry ZSM With DIN rail L1 60 3 38 L2 38 5 Terminal block box LED level meter End plate L EXH port End plate R 0 3 0 3 3 0 P P P T T T U U U E E E L L L S S S L L L 81 6 9 6 9 6 9 0.3 0.2 0.1 0.3 0.2 0.1 0.3 0.2 0.1 0 MPa 0.4 0 MPa 0.4 0 MPa 0.4 18 12 20.5 Pressure gauge SUP port Rc, NPT, G 1/8 DIN rail mounting bracket 5.25 DIN rail center L3 11.2 L4 24 L5 OUT 3 OUT
For AC voltage valves there is no S option. It is already built-in to the rectifier circuit. With light/surge voltage suppressor (Non-polar type) DC specifications of type D and DO is only available with 12 and 24 VDC. For AC voltage valves there is no S option. It is already builtin to the rectifier circuit. For type R and U, DC voltage is only available.
T4 = 0.2 [s] Calculation example) T1 to T4 can be calculated as follows. T1 = V/a1 = 200/3000 = 0.067 [s], T3 = V/a2 = 200/3000 = 0.067 [s] 40 0.5 200 (0.067 + 0.067) 200 T2 = = = 0.133 [s] L 0.5 V (T1 + T3) V T4 = 0.2 [s] Therefore, the cycle time can be obtained as follows.
T4 = 0.2 [s] T1 = V/a1 = 200/3000 = 0.067 [s], T3 = V/a2 = 200/3000 = 0.067 [s] T2 = = = 0.133 [s] L 0.5 V (T1 + T3) V 40 0.5 200 (0.067 + 0.067) 200 T4 = 0.2 [s] Therefore, the cycle time can be obtained as follows.