SMC Corporation of America
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Search Results "ISE20B-S-P-M5-S"

l/min Formula based on effective area (Smm) VCB 3 Cv = 0.35 3 4 1.0 Q = 0.8 S 10.2 P l/min VCB23 Cv = 0.33 VCB25 Cv = 0.65 Q: Flow rate (l/min) P:Pressure differential (P P) P: Upstream pressure (MPa) P: Downstream pressure (MPa) S: Effective area (mm) Cv: Cv factor VCB34 Cv = 0.54 VCB24 Cv = 0.51 0.1 0.001 0.01 0.1 1 10 Pressure differential P = (P P) MPa 5 Model Selection Series

NA K 2 x 4-NC counterbore Prepared hole diameter NE H S + Stroke ZZ + Stroke BY BB BS + Stroke BA 2-BT (mm) Stroke range Model A BY D GW GY H H1 B1 C B AL BA BB BP BS BT ET GA GA1 GB GC GC1 EY 22 26 30 35 19.5 23.5 27 32 24 28 32 39 8 6.5 9 12 9 6.5 8 10 17 19 22 27 MLUB25 MLUB32 MLUB40 MLUB50 M5 x 0.8 73 87 87 102.5 M5 x 0.8 depth 7.5 M6 x 1 depth 12 7 8 9 9 12 14 16 20 M5 x 0.8 depth 11

through Q R E GB GA 4-NN MM D CB CA C K J JA E H A' A 2-P through KA B 4-T counterbore Width across flats L S + Stroke Z + Stroke (mm) Port size Bore size (mm) GA H J JA A B A' C CA CB D E GB 20 25 32 29 32.5 35 19 23 27 16 20 24 12 15 19 26 32 40 42 50 62 20 25 31 22 25 31 9 10 11 27 22.5 25 14 18 22 12 15.5 19.5 8 10 12 M5 x 0.8 M5 x 0.8 Rc 1/8 Bore size (mm) NN T S Z K KA L MM P Q R Standard

J 500 General purpose cylinder 50 mm/s 100 3000 mm/s 1000 mm/s 2000 mm/s D500 mm/s 400 Cushion chamber Relief valve Relief valve body -X 4. Finish cushioning Stroke [mm] 300 Transfer equipment 400 N, 1000 mm/s (For 32) Transferring to the opposite stroke, air passes through the cushion seal that functions as a check valve, and starts to push the piston. 2050 200 Data 100 50 mm/s 5.

2-M6 x 1 thread depth 12 (Mounting hole) 34 45 24 27 30 8 2 +0.2 +0.1 17 26H9 +0.052 depth 3 0 30 40 21 4-M5 x 0.8 thread depth 6 M5 x 0.8 (Finger closing port) (Thread for mounting attachment) Auto Switch Mounting Groove Dimensions 30.3 45 20 O S 16 4.5 4.5 23 10 M5 x 0.8 (Finger operating port) 5 MHW2-25D1 Right angle finger type 6.45 5.5 37 18 12 6 15 16 4-M5 x 0.8 (Thread for mounting

0.2 0.4 0.5 0.3 0.6 Operating time (s/90) Operating time (s/90) MHY2-25D MHW2-40D 20 200 Moment of inertia (x 10-4 kgm2) Moment of inertia (x 10-4 kgm2) 15 150 10 100 5 50 0 0 0.2 0.4 0.6 0.8 1.0 0.2 0.4 0.6 0.8 1.0 Operating time (s/90) Operating time (s/90) 12-10-7 7 180 Angular Style Air Gripper Cam Style Series MHY2 Size: 10, 16, 20, 25 How to Order MHY 2 16 2 D F9BW S Number of fingers

Flow Characteristics/Weight Flow characteristics C [dm 3/(s bar)] b Cv C [dm 3/(s bar)] b Cv 1 2 (P A) 2 3 (A R) Valve model Weight (g) Pilot port size Type of actuation Port size SYJA512-M5 SYJA522-M5 0.12 0.18 0.39 0.45 0.47 0.66 0.14 0.18 0.45 0.45 N.C. 0.53 0.66 M5 x 0.8 Body ported 45 N.O. M5 x 0.8 SYJA514-01 0.32 0.46 1.1 0.32 0.41 1.2 75 (Without subplate 45) Rc 1/8 N.C.

LVD Refer to the separate pamphlet P-E00-5A for further details.

Indicator light With Special function Applicable load Electrical entry Wiring (Output) Type 0.5 () 3 (L) Perpendicular In-line DC AC 3-wire (NPN) Solid state switch F9NV F9N P P 5V 12V IC _ _ Relay, PLC Grommet 3-wire (NPN) 24V F9PV F9P P P 2-wire 12V F9BV F9B P P Lead wire length: 0.5m.

(mm) Electrical entry P Port size B C D E F H K L M N A Grommet: G Conduit: C Conduit terminat: T Model Q R Q R Q R S U 13.5 28 64 31 6.5 12.5 28 14 12.8 M4 4.5 22 59 44 50 99 50 66 83 1/8 VCS21 18 36 67.5 31 8.5 12.5 28 18 12.8 M4 6 22 62 44 53 99 53 66 86 1/4 22 40 81.5 36.5 11 15 32 20 19 M5 8 24 76 46 66.5 101 66.5 68 99 1/4, 3/8 VCS31 30 50 86 36.5 13.5 15 32 25 23 M5 8 24 80 46 71 101

piping (6, 10) Nil Nil TN TF Standard piping Axial piping Thread type Nil Port location 6 to 25 M thread Rc 1/8 NPT 1/8 G 1/8 P Port location 32 CXS P 6 M 50 F9BW J S Number of auto switches Compact type Nil S n 2 pcs. 1 pc. n pcs.

30 to 800 mm/s 30 to 600 mm/s MX Rubber bumper on both ends 0 to 5 mm compared to the standard stroke M3 0.5 M5 0.8 Rc (NPT, PF) 1/8 MTS The maximum piston speed shown in the table above is for extension.

(Resin or rolled steel) LVariation Standard stroke (mm) Bore size (mm) Series Mounting Action Rod end configuration Standard variation Built-in magnet Locking Cancel cap Proximity switch Option 15 20 30 40 20 32 50 63 80 P P P P P P P P P P P P P P P P P P P P P P P P P Double acting Lever style Double acting with spring RSH Flange Adjustable Single acting 4.3-1 Heavy Duty Stopper Cylinder

(Non-locking) Manual override 69.4 (30.5) 24 13.5 2-6.5 (For mounting) (X port) (M5 x 0.8) (R port) Rc 1/4 101.6 26.7 (17.5) 3(R) 1(P) 3(R) 1(P) 3(R) 1(P) 3(R) 27 50 V100 1(P) MAX.10 D: 112.8 26.7 Y: 112.3 101.6 102.4 MAX.10 112.8 (P port) Rc 1/4 SY SYJ 300 (Pitch) Pg9 Pg9 85.6 95.6 27.5 28 (Lead wire length) 95.1 105.1 Y: 97.6 114.6 L1 L2 7.5 90.1 100.1 D: 95.6 112.6 Applicable lead wire

SMC 50 35 5 SMC 6 28 (R) P P K U K C S U O C H L S O H L 38 AV AU Panel cut Panel thickness: Max. 4 Panel cut Panel thickness: Max. 3 34 AF 40 15.4 x 5.4 AR Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com IR 8 x 6.5 79 13 45.5 VEX Atmosphere 106 G SET SET Pad side

Cushion adjustment (relief adjustment) labor is the same as general purpose cylinder adjustment (cushion needle adjustment). 200 150 Cushioning quality (RHCF40-500, load weight 5kg, supply pressure 0.5MPa, horizontal drive) High power cylinder 500 General purpose cylinder Cushioning capacity [J] 100 1000mm/s 3000mm/s 2000mm/s 500mm/s 400 Stroke [mm] 300 50 200 100 50mm/s 20 25 32 40 50 63

Fittings & Tubing Air Cylinders Rotary Actuators 2 x P (Rc, NPT, G) H2 Width across flats B2 2 x NN G Relief port M5 x 0.8 G H1 Width across flats B1 Standard port I Relief port 2 x Eh8 D MM AL A F K NA N N H S + Stroke F ZZ + Stroke (mm) ZZ S P N I E D A 12.5 11 10 10 13 F Bore size Stroke range AL K MM NA NN G H2 41 32 32 26 B2 H H1 22 17 17 13 B1 0 6 6 5 8 8 8 50 45 45 41 200 to 1000 150

The smoothness of the surface and closeness of the oxidize layer can effect (increase/decrease) this. 7 Ultimate pressure Ultimate pressure is P=Q/S, where the sum of mass flow rates for outgassing (Qg) and leakage (Ql) is Q(Pam3/s), and the exhaust speed is S(m3/s). The ultimate pressure is measured with Qg, QlS shown as above, and the ultimate pressure of the pump itself.