SMC Corporation of America
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Search Results "ISE20B-V-P-N01-S"

V V V V V V V MB 20 V V V V V V Tie-rod V CA2 25 V V V V V V V CS2 32 V V V V V V V Compact V V V CQS 40 V V V V V V V V V V CQ2 Free mount V V CU 50 V V V V V 63 V V V V V v: Standard 80 V V V V V 100 V V V V V 125 V 140 V D160 V P. 141 P. 155 P. 172 P. 198 P. 212 P. 183 P. 225 P. 233 P. 251 P. 265 P. 285 P. 294 P. 309 -X 137 Smooth/Low Speed Cylinders CQlY/CQlX Series Added compact foot

) MY1C63 Horizontal collision: P = 0.5 MPa Shock absorber 2000 1500 H unit Collision speed (mm/s) 2.

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.

ground Type 3 ground G D G D Power supply 24 V 0 V 0 V 24 V The above is the example of using dedicated S-LINK flat ribbon cable SL-RCMl00.

speed cylinder (10 to 50 mm/s) v v v XB13 Low speed cylinder (5 to 50 mm/s) v v v XC4 With heavy duty scraper 32 to 63 v v v XC6 Made of stainless steel 20 to 100 Note 6) v v XC8 Adjustable stroke cylinder/Adjustable extension type XC9 Adjustable stroke cylinder/Adjustable retraction type v v XC10 Dual stroke cylinder/Double rod type v 20 to 63 XC11 Dual stroke cylinder/Single rod

P N E U A T I C T E C H N O L O G Y Fnopennes oF GAsEs t S o T H E R M I C C H A N G E ( B O Y L E ' S L A W ) "...with constant temperature, the pressure of a given mass of gas is inversely proportional to its voltlme", or: P' Y= constant v = 1 i p = 1 p 1 x V l = = p 3 x V 3 p 2 x V 2 Fig. 3.5 illustration of Boyle's Law lf volume V. = 1 m3at a standard absolute pressure ot 101325 Pa is

P N E U A T I C T E C H N O L O G Y Fnopennes oF GAsEs t S o T H E R M I C C H A N G E ( B O Y L E ' S L A W ) "...with constant temperature, the pressure of a given mass of gas is inversely proportional to its voltlme", or: P' Y= constant v = 1 i p = 1 p 1 x V l = = p 3 x V 3 p 2 x V 2 Fig. 3.5 illustration of Boyle's Law lf volume V. = 1 m3at a standard absolute pressure ot 101325 Pa is

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

M G H J K A H G, J S Q E P K K A H B J V M V M E, X N, P Polyacetal B Stainless steel L Stainless steel, Silver Trichloro ethane Trichloroethylene Polyacetal M (Non-leak) N P Q S T Perchloroethylene Brake oil Helium Non-leak(105atm cc/sec) Water Stainless steel H Brass, Copper (High temperature) B Polyacetal X V (Non-leak) Note 1) The leakage amount(105atm cc/sec) of "V", "M" option is

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.

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

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

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.

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

24 V 12 V Z73 Y59A Y7P Y59B Y7NW Y7PW Y7BW Y69A Y7PV Y69B Y7NWV Y7PWV Y7BWV 3-wire (NPN) 2-wire Relay, PLC ML2B 5 V, 12 V IC circuit 3-wire (PNP) C J G5-S 2-wire 12 V Relay, PLC 24 V Grommet 3-wire (NPN) 3-wire (PNP) IC circuit Diagnostic indication (2-color indication) 5 V, 12 V CV 2-wire 12 V Lead wire length symbols: 0.5 mNil (Example) Y59A 3 m L (Example) Y59AL 5 m Z (Example)

24 V 12 V Z73 Y59A Y7P Y59B Y7NW Y7PW Y7BW Y69A Y7PV Y69B Y7NWV Y7PWV Y7BWV 3-wire (NPN) 2-wire Relay, PLC ML2B 5 V, 12 V IC circuit 3-wire (PNP) C J G5-S 2-wire 12 V Relay, PLC 24 V Grommet 3-wire (NPN) 3-wire (PNP) IC circuit Diagnostic indication (2-color indication) 5 V, 12 V CV 2-wire 12 V Lead wire length symbols: 0.5 mNil (Example) Y59A 3 m L (Example) Y59AL 5 m Z (Example)

T 2 x P (Port size) D R V Q B C IN OUT Clearance for maintenance G Drain A AF30-A to AF40-06-A N T J M 2 x P (Port size) Bracket (Option) U D S V Q IN OUT B C 2 x P (Port size) Clearance for maintenance G Drain A E Clearance for maintenance G Drain A Applicable model AF10-A/AF20-A AF20-A AF30-A to AF60-A Optional/Semi-standard specifications With auto drain (N.C.)

S S S () 0 r / m i n 0 r / m i n L S P L S P O N O N O F F L O F F L S N S N 1 S S S S 0 r / m i n 0 r / m i n L S P L S P O N O N O F F O F F L L S N S N 2 S S S S S S 0 r / m i n 0 r / m i n L S P L S P O N O N O F F L S N O F F L S N 3 S S S S S S S 0 r / m i n 0 r / m i n L S P L S P O N O N L S N O F F L S N O F F 6 39 6 6.4.4 (PC31PC34) PD20 PD20 0 1

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.