SMC Corporation of America
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Search Results "ISE20B-T-01-S"

ENI 3 Position : NVJA332O-M3(-F) NVJA3420-M3(_F) NVJA3520_M3(_F) c 0.75(191 . r t Base Mounted Ifupe uith Subplate z rosition Sinsle : NvJA314o-M5 2 Posiiion Double : NVJA324O-M5 dtt l5+trEl e f,3 + t . q l l ' D i i @, s T ' t t s I i t o # L .-:r, , .r.r, ., ,, , 3 Poition : iWJA334GM5 NVJA34405 NVJA354GM5 0.04(l )Dia 2 ports World Wide QS\E Support...

ENI 3 Position : NVJA332O-M3(-F) NVJA3420-M3(_F) NVJA3520_M3(_F) c 0.75(191 . r t Base Mounted Ifupe uith Subplate z rosition Sinsle : NvJA314o-M5 2 Posiiion Double : NVJA324O-M5 dtt l5+trEl e f,3 + t . q l l ' D i i @, s T ' t t s I i t o # L .-:r, , .r.r, ., ,, , 3 Poition : iWJA334GM5 NVJA34405 NVJA354GM5 0.04(l )Dia 2 ports World Wide QS\E Support...

ENI 3 Position : NVJA332O-M3(-F) NVJA3420-M3(_F) NVJA3520_M3(_F) c 0.75(191 . r t Base Mounted Ifupe uith Subplate z rosition Sinsle : NvJA314o-M5 2 Posiiion Double : NVJA324O-M5 dtt l5+trEl e f,3 + t . q l l ' D i i @, s T ' t t s I i t o # L .-:r, , .r.r, ., ,, , 3 Poition : iWJA334GM5 NVJA34405 NVJA354GM5 0.04(l )Dia 2 ports

Symbol Specifications/Content Applicable shaft type Mass Shaft type variation X, Y, Z, T, J, K (g) XA1 to XA24 S, W Shaft pattern sequencing I Size Standard mass XA31 to XA59 X, Y, Z, T, J, K Shaft pattern sequencing II 90 180 360 XC7 S, W, X, T, J Reversed shaft 10 120 150 200 XC8 to XC11 Change of rotating range 15 220 270 380 Change of angle adjustable range (0 to 100) XC12 to XC15 20

T-slot dimensions Positioning Time Guide Positioning time A: Acceleration time B: Constant velocity time C: Deceleration time D: Resting time (0.4sec.) Maximum acceleration: 2000mm/s Positioning time (sec.)

) Symbol Description Applicable size 10 15 20 30 40 Description Shaft type Applicable size 10 15 20 30 40 Shaft type Symbol XA39 Shaft through-hole Shaft through-hole Shaft through-hole S, Y K, T J S, Y K, T J Y K J J XA31 XA33 XA37 XA45 XA47 XA48 XA51 S, Y J, K, T J, K, T J, K, T J, K, T S, Y J, K, T Shaft-end female thread Shaft-end female thread Stepped round shaft Middle-cut chamfer

Stepped round shaft Middle-cut chamfer Machined keyway Change of long shaft length Change of long shaft length S, Y J, K, T J, K, T J, K, T J, K, T S, Y J, K, T XA40 XA41 XA42 Shaft through-hole + Shaft-end female thread XA43 Shaft through-hole + Shaft-end female thread XA44 Shaft through-hole + Shaft-end female thread Change of double shaft length Change of double shaft length Change

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

LEC T T-branch type communication plug connector*2 LEC S *1 When Without controller is selected for controller types, I/O cable cannot be selected. Refer to page 589 (For LECP2), page 582 (For LECP1) or page 568 (For LECP6) if I/O cable is required. *2 For the LECPMJ, only Nil, S and T are selectable since I/O cable is not included.

Clausings factor 8 Exhaust Time (Low/Medium Vacuum) K The time (t) required to exhaust a chamber at low vacuum with volume V (L), from pressure P1 to P2, using a pump with pumping speed S (L/sec) is t=2.3(V/S)log(P1/P2). In high vacuum, this is subject to the ultimate pressure limit imposed by outgassing and leakage as characterized above.

Combination between -X and -X (S, W, X, Y, Z, T, J, K shaft) 20Shaft type Combination Applicable size Part no.

L 16 60 S 5 L CVJ3 Without auto switch L S 5 L J79W 16 60 CDVJ3 With auto switch Number of auto switches Action S T Single acting, Spring return Single acting, Spring extend Built-in magnet 2 pcs. 1 pc. n pcs.

Z S RHC T MK(2) CVM3 L 32 100 T 1 L Z Without auto switch RS Q G L 32 100 T 1 L Z H7BW CDVM3 RS H A With auto switch RZQ Built-in magnet Number of auto switches Piping MI W S 2 pcs. 1 pc. n pcs.

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

Cycle time: T can be found from the following equation. L Speed: V [mm/s] a1 a2 T = T1 + T2 + T3 + T4 [s] P T1: Acceleration time and T3: Deceleration time can be obtained by the following equation. Time [s] T1 T2 T3 T4 T1 = V/a1 [s] T3 = V/a2 [s] P T2: Constant speed time can be found from the following equation.

Piston speed (mm/s) Piston speed (mm/s) 1.

Nut Insert bushing LQ1E11-S 1 1-04 LQ1-1N04 LQ1-1B04 LQ1E12-S 1 1-03 LQ1-1N03 LQ1-1B03 LQ1E21-S 2 2-06 LQ1-2N06 LQ1-2B06 LQ1E22-S 2 2-04 LQ1-2N04 LQ1-2B04 LQ1E31-S 3 3-10 LQ1-3N10 LQ1-3B10 LQ1E32-S 3 3-08 LQ1-3N08 LQ1-3B08 LQ1E33-S 3 3-06 LQ1-3N06 LQ1-3B06 LQ1E41-S 4 4-12 LQ1-4N12 LQ1-4B12 LQ1E42-S 4 4-10 LQ1-4N10 LQ1-4B10 LQ1E51-S 5 5-19 LQ1-5N19 LQ1-5B19 LQ1E52-S 5 5-12 LQ1-5N12 LQ1-5B12