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Search Results "ISE2-T1-55C"

ZPA-T1-B01 ZPA-T1-N01 ZPA-T1-T01 ZPA-T2-B01 ZPA-T2-N01 ZPA-T2-T01 ZPA-T2-B01 ZPA-T2-N01 ZPA-T2-T01 ZPA-T3-B01 ZPA-T3-N01 ZPA-T3-T01 ZPA-T3-B01 ZPA-T3-N01 ZPA-T3-T01 ZPA-T1-B8 ZPA-T1-B10 ZPA-T1-B8 ZPA-T1-B10 ZPA-T2-B8 ZPA-T2-B10 ZPA-T2-B12 ZPA-T2-B16 ZPA-T2-B8 ZPA-T2-B10 ZPA-T2-B12 ZPA-T2-B16 ZPA-T3-B12 ZPA-T3-B16 ZPA-T3-B12 ZPA-T3-B16 ZP40 ZP40 With three M3 bolts With three M3 bolts ZP50

T1 = V/a1 = 1000/2500 = 0.4 [s], T1 T2 T3 T4 11LEJS T3 = V/a2 = 1000/2500 = 0.4 [s] L: Stroke [mm](Operating condition) V: Speed [mm/s](Operating condition) a1: Acceleration [mm/s2](Operating condition) a2: Deceleration [mm/s2](Operating condition) T = T1 + T2 + T3 + T4 [s] L 0.5V(T1 + T3) V 25AT2 = T1: Acceleration time and T3: Deceleration time can be obtained by the following equation

-3G *1 *2 http://www.smcworld.com/ 5(P.23) 16(P.68) USB LAN -8- 2.4 () (1) (JXC-CPW) (JXC91-) 1 (JXC-CPW) 1 *1 1 *1 [] (:LEC-T1-3G) (LEC-W2) (USB ) (: P5062-5) (2) 3.4 (P.16) (3) 4.1 (IP )(P.18) (4)PLC PLC (5) 5.

Q = qm x C x (T2 T1) x qv x C x iT 60 1 x 35 x 4.186 x 103 x 3.0 60 = = qm x C x (T2 T1) 860 Q = = 7325 [J/s] 7325 [W] = 7.3 [kW] x qv x 60 x C x iT 860 = Cooling capacity = Considering a safety factor of 20%, 7.3 [kW] x 1.2 = 8.8 [kW] 1 x 35 x 60 x 1.0 x 103 x 3.0 860 = Q: Heat generation amount T1: Outlet temperature Thermo-chiller Users equipment 7325 [W] = 7.3 [kW] T = T2 T1 Cooling

Pneumatic Circuit Standard products (No Option) Single unit: ZKJ-E5U-T1 Single unit: ZKJ-A5U-T1 With manual override With exhaust sealing valve High-noise reduction silencer exhaust High-noise reduction silencer exhaust Port exhaust Port exhaust Supply valve: N.O. Release valve: N.C. Supply valve: N.C.

NoIe 1) I Hys:&fe51S mode AdlUS lable (2 digits or more) Adjustable (3 digits or more) --Hysleresis I:"~ato , me oo Fixed (2 digits) Fixed (3 digils) OFF~ ::,t1:1 -ON : Output ON ON : Output ON ONI ~ Indicator lights Output I Green Output 2 Red Output 1: Green OJtpLrt 2 R ed 200Hz Response frequency 200Hz P2 Pl n2 nl Max.operating pressure , .5MPa { ' 5.3kgf/cm2} 200kPa {2.04kgf/cm2} ONh

.: LEC-T1-3JG; mController setting kit Pulse signal (Controller setting software, communication cable, conversion unit and USB cable are included.)

to origin)s signal, if sensor does not receive any signal within t1 (situation whereby the cylinder stops), this reflects homing is achieved.

Fluid and ambient temperature ranges are 0 to 55C for the ionizer. Do not use the ionizer in locations subject to sudden temperature changes even if the ambient temperature range is within the specified limits, as condensation may result. 5. Environments to avoid 4. Be sure to turn off the power supply before wiring (including attachment/detachment of the connector). 5.

-A3 ZP3A-T1-B3 ZP3A-T1-A6-B3 ZP3A-T3-A5 ZP3A-T3-B5 Note 1) ; in the table indicates the pad material.

material Part numbers indicating changed seal material and leakage Leakage Pa m3/s or less Note 1) Compound No. 1349-80 Symbol Nil N1 Seal material FKM EPDM BARREL PERFLUORO Changed part Note 2) Symbol External 1.3 x 10-11 (FKM) 1.3 x 10-9 Internal 1.3 x 10-10 (FKM) 1.3 x 10-8 2101-80 2, 3 2 3 Nil A B C P1 70W 1.3 x 10-11 (FKM) 1.3 x 10-9 1.3 x 10-8 Kalrez 1.3 x 10-10 (FKM) Q1 R1 R2 R3 S1 T1

(P.79) USB LAN 8 - 2.4 () 1 (LECPMJ-) 1 1 *1 1 *1 (LE-CP---) 1 *2 (LEC-CMJ-) 1 *1 *2 [] (: LEC-T1-3G) (LEC-W2) (USB ) 2 3.4 (P.15) 3 4.1 (STAION NO.B RATE)(P.17) 4PLC PLC 4.3 PLC (P.18) 5 (CN1CN5) 5. (P.19) 9 - 6 DC24V LED LED PWR ALM LED 8. LED (P.28) LECLEDALM CC-Link CN4 I/O 16.

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com L ISE30 01 25 M For positive pressure ZSE30 01 25 M For vacuum/low pressure Option 2 Piping specifications Nil None Bracket R 1/8 (With M5 female thread) 01 NPT 1/8 (With M5 female thread) A T1 Straight type 4 One-touch fitting 5/32" One-touch fiting

(For F, L, S, T & T1 kits) D-Side End Plate Assembly 2. U-side end plate assembly part no.

ITV 2 1 Options IC Bracket ITVH Model B21-1-T1 Rolled steel plate (electroless nickel plated) Material ITVX Pressure gauge Product part no. SRP1-M5 SRP1-01 Pressure gauge part no.

Determine the mean suction flow: Q r = v x 6 o T1 9 9 0 . s : s : : P o o . g u o.z T 2 = 3 1 o 1 mean suction flow required from ejector (N/min), 0.1 0.2 0.3 0.5 0.7 1 2 3 | 5 7 10 20 30 50 70 100 O T1 i(sec) o1 adsorption response time to 63% to P, (sec), T1 adsorption response time to 95% of P" (sec), T2 1 l lncnnica System Specif ication (continued) 2.

Determine the mean suction flow: Q r = v x 6 o T1 9 9 0 . s : s : : P o o . g u o.z T 2 = 3 1 o 1 mean suction flow required from ejector (N/min), 0.1 0.2 0.3 0.5 0.7 1 2 3 | 5 7 10 20 30 50 70 100 O T1 i(sec) o1 adsorption response time to 63% to P, (sec), T1 adsorption response time to 95% of P" (sec), T2 1 l lncnnic System Specif ication (continued) 2.

If sensor does not receive any signal within t1 (situation whereby the cylinder stops), this reflects homing is not achieved. Setting of response time should take into consideration of load, mounting condition, tubing length, etc. The response time should be re-calibrated, if the operating conditions change.

Q = qm x C x (T2 T1) x qv x C x iT 60 1 x 70 x 4.186 x 103 x 4.0 60 = = qm x C x (T2 T1) 860 Q = = 19535 [J/s] 19535 [W] = 19.5 [kW] x qv x 60 x C x iT 860 = Cooling capacity = Considering a safety factor of 20%, 19.5 [kW] x 1.2 = 23.4 [kW] 1 x 70 x 60 x 1.0 x 103 x 4.0 860 = Thermo-chiller T1: Outlet temperature Q: Heat generation amount 1680 [cal/h] 860 Users equipment = T = T2 T1