SMC Corporation of America
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Search Results "ISE20B-V-P-01-S"

Local Area: (800) 258-9200-www.stevenengineering.com S + Stroke Z + Stroke 16 to 32 Rod end nut 2-P through 2-M5 x 0.8 (32: Rc 1/8) Width across flats L 2-P through 4-T counterbore A' Auto switch S + Stroke Z + Stroke Rod End Nut/Accessory Material: Carbon steel Part no.

Model Option symbol Nil G V M Body material Brass (C37) Stainless steel Brass (C37) Stainless steel Seal material Note VXE21 0 1 2 3 VX021N-12A NBR VXE22 0 2 3 4 VXE23 0 2 3 4 VX022N-12A Non-leak (106 Pam3/sec)/Oil-free/ Medium vacuum (0.1 Pa.abs) FKM VXE22 0 5 6 VXE23 0 5 6 VX023N-12A-L Dimensions P. 17 (Single unit) 4

L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], T3 = V/a2 = 300/3000 = 0.1 [s] Time T = T1 + T2 + T3 + T4 [s] [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.

Grease pack part number: GR-L-020 (20 g) 312 Air Cylinder: Low Friction Type Series MBQ Basic: (B) G G V 2 x P MM Port CJ1 D E C B CJP CJ2 H1 MB Effective thread CM2 2 x 4 x J C B MA A K F N N CG1 S + Stroke H MB ZZ + Stroke MB1 CA2 (mm) Stroke range Width across flats Bore (mm) Effective thread length CS1 A D Ee11 N F P G S MA V K MB H1 H ZZ MM C B J 32 40 50 63 80 100 up to 500 up to 500

With indicator, High back pressure spec. with indicator N.C. valve Dimensions (mm) S Model LVQ20m-4 LVQ30m-4 LVQ40m-4 LVQ50m-4 LVQ60-Vm-4 V S 70.5 S V S 88.5 V S 94 V S 134.5 B A SMC 144 LVQ60 available only as V.

Reed switch Solid state switch 5 V IC circuit Z76 Grommet Z73 A54 A59W Y59A Y7P J51 Y59B Y7NW Y7PW Y7BW Y7BA F59F 100 V 12 V Yes Relay, PLC 24 V 2-wire 100 V, 200 V Diagnostic indication (2-color indication) Grommet 3-wire (NPN) 3-wire (PNP) 24 V 5 V, 12 V IC circuit Grommet 12 V 100 V, 200 V 2-wire 3-wire (NPN) 3-wire (PNP) IC circuit Relay, PLC 5 V, 12 V Diagnostic indication (2

V Ps + 0.1 293 S = 12.1 log10 () (6) t P + 0.1 T S : Effective area [mm2] V : Air tank capacity [L] t : Discharging time [s] Ps : Pressure inside air tank before discharging [MPa] P : Residual pressure inside air tank after discharging [MPa] T : Temperature inside air tank before discharging [K] Power supply Pressure switch Thermometer Pressure control equipment Control circuit Solenoid

Conforms to ISO 15407-2 Standard 5 Port Solenoid Valve/Plug-in Type Series VS 8-2/VS 8-4 S R S R [Option] How to Order Manifold 03 SD6Q VV8 01 N 1 1 N 5 W1 Size 01 02 Size 26 mm Size 18 mm CE compliant Nil Q CE compliant Stations 1 1 station Option Nil None 16 16 stations Special wiring specifications (Except double wiring) K Cylinder port size Direct exhaust with built-in silencer S Symbol

PP 7.5 11.5 V V 10 12.5 QQ 9 11 XX 22 24 TT 9 10.5 RR 11 14.5 UU 10.5 12 SS 3 5 Model MY1H16G MY1H20G "P" indicates cylinder supply ports.

Ultimate pressure P (Pa) is P=Q/S, where the sum of Weight flow rates for outgassing (Qg) and leakage Q(L) is Q(Pam3/s), and the exhaust speed is S(m3/s). The ultimate pressure is measured with Qg, Q(L)S shown as above, and the ultimate pressure of the pump itself. In the case of very low pressure, the exhaust characteristics of the actual pump can be the limiting factor.

24 V 100 V, 200 V DIN terminal Relay, PLC Diagnostic indication (2-color indication) B59W Grommet H7A1 H7A2 H7B H7C G39A K39A H7NW H7PW H7BW 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V Grommet 2-wire 12 V Connector 3-wire (NPN) 2-wire IC circuit 5 V, 12 V Terminal conduit 12 V Relay, PLC 24 V 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V Diagnostic indication (2-color indication

CRBU2W-SE Free-Mounting Type CRBU2 CRB2 CRBU2W10-SE CRBU2W10-S CRB1 (mm) (depth) Q2 Model A B C D E (g6) F (h9) G H J K L M N P Q1 R S1 S2 T U V W X CRBU2W10-S CRBU2W10-SE CRBU2W15-S CRBU2W15-SE CRBU2W20-S CRBU2W20-SE CRBU2W30-S CRBU2W30-SE M3 (4) 10.5 10.5 M5 x 0.8 M3 x 0.5 M5 x 0.8 M3 x 0.5 0.004 0.012

Valve seal Assemblies XL(A, C, H) [V]-16 XL(A, C, H) [V]-25 XLD [V]-25 XL(F, G) [V]-16 XL(F, G) [V]-25 XLD [V]-40 XL [V]-40 XLD [V]-50 XL [V]-50 XLD [V]-63 XL [V]-63 XLD [V]-80 XL [V]-80 Construction No.

CRBU2W10-SE CRBU2W10-S A port B port For unit mounting A port B port For unit mounting (mm) (Depth) Q2 Model A B C D E (g6) F (h9) G H J K L M N P Q1 R S1 S2 T U V W X CRBU2W10-S CRBU2W10-SE CRBU2W15-S CRBU2W15-SE CRBU2W20-S CRBU2W20-SE CRBU2W30-S CRBU2W30-SE M3 (4) M5 x 0.8 M3 x 0.5 M5 x 0.8 M3 x 0.5 10.5 8.5 10.5 11 11.5 14 12 15.5

99 V Angle Adjustment Setting Page 100 V Auto Switch Mounting Page 102 51 Rotary Actuator Vane Type CRB2 Series Size: 10, 15, 20, 30, 40 RoHS How to Order B S E 20 180 S Z CRB2 u CDRB2 B W 20 180 S Z L M9B With auto switch q r e !

J79W F7BA 200 V 100 V Relay, PLC Yes 2-wire 12 V Connector 24 V Grommet Diagnostic indication (2-color indication) 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V Grommet 2-wire 12 V Connector 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V Diagnostic indication (2-color indication) Yes Relay, PLC 24 V Water resistant (2-color indication) 12 V 2-wire Grommet With diagnostic output

T1 T2 T3 T4 L 0.5 V (T1 + T3) V T2 = L : Stroke [mm] (Operating condition) V : Speed [mm/s] (Operating condition) a1: Acceleration [mm/s2] (Operating condition) a2: Deceleration [mm/s2] (Operating condition) 500 0.5 300 (0.1 + 0.1) 300 T1 = V/a1 [s] T3 = V/a2 [s] = P T2: Constant speed time can be found from the following equation. = 1.57 [s] T4 = 0.3 [s] T2 = [s] L 0.5 V (T1

Load mass kg Load mass kg MY1C20 MY1C40 Horizontal collision: P = 0.5 MPa Horizontal collision: P = 0.5 MPa 2000 1500 2000 1500 H unit Collision speed mm/s Collision speed mm/s Collision speed mm/s Collision speed mm/s Collision speed mm/s L unit 1000 1000 Air cushion H unit L unit 500 400 300 500 400 300 Air cushion 200 200 100 2 3 4 5 10 20 50 100 1 2 3 4 5 10 20 30 40 50 m2 max. m1 max

Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], Time [s] T3 = V/a2 = 300/3000 = 0.1 [s] T = T1 + T2 + T3 + T4 [s] L 0.5 V (T1 + T3) V T1 T2 T3 T4 T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.

L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/10 = 0.03 [s], T3 = V/a2 = 300/10 = 0.03 [s] Time T = T1 + T2 + T3 + T4 [s] [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be found by the following equation.