SMC Corporation of America
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Search Results "ISE1-T1-17"

JXC-W2 The conversion cable can be used for connecting this controller to the optional teaching box [LEC-T1] offered with the LEC series. or USB cable PC (A-mini B type) (0.8 m) Conversion cable p. 7 1 A conversion cable is also required for connecting the controller to the LEC-W2.

(P.16) 13.P.53 USB LAN 8 - 2.4 () 1 I/O LECP61 1 I/O *(LEC-CN5-) 1 * 1 * (LE-CP---) 1 * (LEC-T1-3G) (LEC-W2) (USB ) 2 3.4 (P14) 3 (CN1~CN5) 4.(P.16) 9 - 4ON DC24V LED POWER ALARM LEDPWR LEDALM CN4 I/O 12.P.48 5() , () 6 10 - 3. 3.1.

Calculation example) T1 to T4 can be calculated as follows. 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 found by the following equation.

1400 [W] T = T2 T1 Cooling capacity = Considering a safety factor of 20%, 1400 [W] x 1.2 = 1680 [W] T1: Outlet temperature 207 HRSE Series Required Cooling Capacity Calculation Example 3: When there is no heat generation, and when cooling the object below a certain temperature and period of time.

Then, the charge time (T) for a 100 L tank: T = t x = 17 x = 17 (s). V 10 T = t x = 7.7 x = 77 (s). V 10 T = t x = 2.4 x = 24 (s). V 10 10 10 100 10 100 10 1012 Booster Regulator VBA Series VBA43A VBA11A Pulsation/Pulsation is decreased with a tank. If the outlet capacity is undersized, pulsation may occur.

(Refer to Precautions on page 16-2-24 for details.) 1.5 01: R 1/8 T1: NPT 1/8 Data ZSE40(F)/ISE40-W1 2-M4 x 0.7 thread depth 4 20 30 Rc 1/8 MPa 7 19 20 30 OUT2 OUT1 SET 6.5 R 6.4 18.35 Atmospheric release port Lead wire length 600 (3000) 3.5 12.4 7.8 7 2.5 2.6 30 15.2 42 10.7 4 6 For splash proof use (IP65), insert an air tube into the atmospheric release port.

T [s] = (V/10) x (T2 T1 )/(Z) T [s] = (5/10) x (12 3.7) = 4.2 Increase number of booster regulators (Z) to decrease T. NO NO Extend stop time Ts up to charge time T or more. Judgement of charge time T Ts 4.2 29 YES YES When running continuously for a longer period of time, confirm the life expectancy.

Refer to page 17-6-3 for Safety Instructions and 17-5-41 to 17-5-42 for High Purity Chemical Valve Precautions. Piping Caution 1. Connect tubing with special tools. Refer to pages 17-5-35 through 17-5-37 regarding tubing connection and special tools. 2. Tighten the nut to the end surface of the body. As a guide, refer to the proper tightening torques shown below.

BT-IS 10 10 BT-12 BT12 10 ;J;lA5EJ1A60 17 17 , . ' 0A59W .. 17 0 0 I: C" iD :IJ 0 a. ~ [,lrH5901Y690 I' D-V7P/Y7PV ; ", BSI-1 60 8S'-140 881-125 7 13 12 , D-Y7f:jWIY7OWV .' . 0Y7BAL ' .. 0Z7IJIZ80 D-Y591J1Y690 0.V7P/Y7Pi/ . 8$4125 !

Refer to Semi-standard on page 562 for details. 16 SOL.B 18 17 14 16 15 SOL.A () () (+) (+) 12 Station 3 14 13 SOL.B Triangle mark indicator position 10 12 11 SOL.A () () (+) (+) 8 Station 4 9 10 SOL.B 6 8 7 SOL.A () () (+) (+) 19 Station 5 SOL.B 6 5 17 Note) When using the negative common specifications, use valves for negative common.

Refer to Semi-standard on page 562 for details. 16 SOL.B 18 17 14 16 15 SOL.A () () (+) (+) 12 Station 3 14 13 SOL.B Triangle mark indicator position 10 12 11 SOL.A () () (+) (+) 8 Station 4 9 10 SOL.B 6 8 7 SOL.A () () (+) (+) 19 Station 5 SOL.B 6 5 17 Note) When using the negative common specifications, use valves for negative common.

Lead wire color Dot marking 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 The D-sub connector cable assembly can be ordered individually or included in a specific manifold model no. Refer to How to Order Manifold.

Fig. 3-17 Connection to the drain port Without holding the ball valve of the drain port with a wrench, the ball valve may rotate and it may cause a fluid leakage and/or malfunction of the product. Be sure to hold the ball valve of the drain port.

, T1 = 297 p5 K, 0.07 bar b $P b 0.14 bar.

Max. 3.0A Number ol setting posilions 28 Position setting method Setting with dedicated teaching box (LC5-1-T1-02) Position control method Absolute and incremental moves Speed: 6 to 200mny's (with feed screw lead of 12mm) Input signal capacity Optically isolated input 24VDC Max.

Max. 3.0A Number ol setting posilions 28 Position setting method Setting with dedicated teaching box (LC5-1-T1-02) Position control method Absolute and incremental moves Speed: 6 to 200mny's (with feed screw lead of 12mm) Input signal capacity Optically isolated input 24VDC Max.

LEY-OM00701 / // LEY Series LEY LEYG LEYG Series () LEY Series () LEC Series /LEC6 . 2 /. 3 .3 .4 .6 /LEY. 9 .9 .11 .12 /LEYG. 13 .13 .15 .16 . 17 .17 .17 .20 .32 . 35 . 36 .36 .37 .38 .39 .40 .40 . 41 .41 .41 .44 .45 .47 . 48 -1- LEY / (ISO/IEC) (JIS)1)2) *1) ISO 4414:Pneumatic fluid power -General rules relating to systems.

17 10-M3 ZSE2 ISE2 11 23 6 38 50 ZSP 48 (54) ISl ZSM DIN rail L PFl 7.5 10 25 5 IFl 4.5 35 27 Material: Aluminum Part number of DIN rail Part number ISA-2-1 ISA-2-2 ISA-2-3 ISA-2-4 ISA-2-5 ISA-2-6 ISA-2-7 L 105 140 175 210 245 280 315 3.1-14

1 1 200 1000 200 1000 2 2 50 200 50 200 3 3 CN1 DC24V USB A-miniB type <> AWG20 (0.5mm 2) ( USB LEC-W2 1: 3m LEC-T1-3JG* 2 UL ,UL1310 Class2 LEC 4.P.30 USB /P.32 5.3 <> NPNPNP 2[mm] -17- 3.2 LEC JOG 1 JOG JOG 1 2 1 1 DATA TEST DATA TEST MONITOR MONITOR ALARM JOG SETTING ALARM JOG SETTING 2 2 1 No. 0 123.45mm 400 /s 1 No. 1 12.34mm 50mm/s [SET