SMC Corporation of America
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Search Results "ISE2-T1-15CN"

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

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

Power supply 11) 100/110V AC (50/60Hz) 200/220V AC (50/60Hz) 21) 1) Consult SMC if the supply voltage for LC1-1HV1 will be 110V AC or more, or the supply voltage for LC1-1HV2 will be 220V AC or more. or LC1-1-T1(Teaching box) are required.

*2P.26 7-3-6 35 9. 9-1 9-1-1 P1 P2 P3 9 Err99 P4 P5 Pa N m)D 4 <>40 (0.04200N 5Pa 0.5MPa 510 5 10031.830 200 0.040.043.14510 4 P6 READWRITEEND P7 (t1) 10ms 9.99sec (t1) () ON t1ON P8Err12 * * 10ms 9.99sec * t * 9-1-2 PRESET " " " PRG STEP P1 " P1 1000.0 36 WRITE READ PRG STEP P1 " " " UPDOWN LEFTRIGHT WRITE UP 1 DOWN RICHT LEFT 2P2 PRG STEP P2 P2 "

L1 L2 A (2) L3 H (1) T2 T1 D1 D2 Model AS1200-M3 M3 x 0.5 M3 x 0.5 4.5 6.6 23.5 21.5 8 5 5 20.5 18.5 AS120-M5 M5 x 0.8 M5 x 0.8 8 10 28.3 10.3 9 9 25 22.2 25.5 AS120-U10/32 10-32UNF 10-32UNF AS220-01 30.5 13.2 14.3 14.6 32.4 27.4 12 (12.7) 35.5 18 1/8 1/8 AS220-02 35.3 17.5 18 19.5 34.8 29.8 17 (17.5) 27.2 40.3 1/4 1/4 AS320-03 40.8 19.7 22.5 24.3 40.6 35.6 19 30 45.8 3/8 3/8 AS420-04 42.4

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 obtained by the following equation.

1 Stop-SW actived Reset Stop-SW OFF ON OFF ON PLC OFF OFF PLC ON CN1 EMGOFF CN1 EMGON 106 - 3 ON JOG 31 TB Ver.511 LEC-T1-S () Ver1.** Ver1.** Ver2.**2 Ver2.**1 LEC-T1-S ON/OFF ON LEC-T1ON OFF ON OFF OFF AX IS. Caution! 1 Enable SW is OFF Motor Blocked Turn ON it!

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

2-Color Display Type High-Precision Digital Pressure Switch Series ZSE30/ISE30 How to Order Option 1 Without lead wire Nil Lead wire with connector (Lead wire length: 2m) L ISE30 01 25 M For positive pressure ZSE30 01 25 M For vacuum/Low pressure Option 2 Piping specification R 1/8 (with M5 female thread) NPT 1/8 (with M5 female thread) 01 T1 None Bracket Nil A Output specification NPN output

Time T1, T2 (ms) Without tube (VXF2150) Without tube Without tube (VXF2150) PM: Raised up to 0.48 MPa PM: Raised up to 0.48 MPa PA=0.5 MPa 6 x 6 pcs. PA=0.5 MPa A=0.5 MPa 6 x 6 pcs.

L Calculation example) T1 to T4 can be calculated as follows. 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.

, Max. 100 mA Current consumption 10 mA or less (24 VDC) ZSM1-121 Supply voltage 100 VAC Operating current range 24 V or less: 50 mA, 48 V: 40 mA, 100 V: 20 mA Max. contact capacity AC 2 VA, 2 W DC How to Order ZSM1 1 15 Lead wire length Vacuum switch diaphragm style 0.5 m (Standard) 3 m Nil L Switch/Voltage 15 21 Solid state 4.5 to 28 VDC Contact (Reed switch) 100 VAC/DC Connection 0 1 T1

IP65 compatible T1 S kit (With individual terminal blocks) kit (Serial transmission) Use as a guide for selection. Please confirm the actual conditions with SMC Sizing Program.

Bore size (mm) 32, 40 50, 63 T2 T1 M F E D B Part No.

T1 Approx. Max. T1 Approx. Max. T2 Approx. Max. T2 Approx. T3 Cylinder with Bypass Piping Component Parts T1 81.4 93.3 99.8 T2 63.4 73.8 80.3 T3 57.8 67.8 74.3 TH 47.9 57.3 57.3 TP Rc, NPT, G 1/8 Rc, NPT, G 1/4 Rc, NPT, G 1/4 Description No. 1 2 3 4 Qty. 1 1 1 1 Part no.

3 O-ring NBR u 15-9-105 Dimensions L4 D3 H (He (Hexagon width across flats) xagon width across flats) (Hexagon width across flats) T2 A L2 D1 L3 D2 T1 L1 Dimensions AS120-U10/32-T 10-32 UNF 10-32 UNF AS120-M5-T M5 x 0.8 M5 x 0.8 Model T2 H D1 T1 D2 D3 L1 L2 L3 L4 A 8 9 9 4.5 10 31 10.3 0.7 27.4 AS220-N01-ST NPT 1/8 NPT 1/8 AS220-F01-ST G 1/8 AS220-01-ST Rc 1/8 R 1/8 12 14.3 14.6 7 18 35.6

(P.16) 13.P.53 USB LAN 8 - 2.4 () (1) I/O LECA61 1 I/O *(LEC-CN5-) 1 * 1 *(LE-CA--) 1 * (LEC-T1-3G) (LEC-W2) (USB ) 2 3.4 (P14) 3 (CN1~CN5) 4.(P.16) 9 - 4 DC24V LED POWER ALARM LEDPWR LEDALM CN4 I/O 12. (P.48) 5() ()() () 6 10 - 3. 3.1.

(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.

Series Proper tightening torque (Nm) AS1002F-02 AS1002F AS2002F AS2052F AS3002F AS4002F 0.07 0.2 0.3 1 2 4 618 AS Series Speed Controller with One-touch Fittings In-line Type Dimensions L-bracket DIN rail mounting bracket Bracket on a single side Bracket on a single side AS-F AS-F L9 L16 L17 TMH L14 L15 ASD L12 L13 AS1002F AS2002F L22 L24 L23 AS L11 t1 2 x D6 t2 AS-FE 2 x D5 L19 KE AS-FG

L1 L2 A(2) L3 H(1) T2 T1 D1 D2 Model AS1200-M3 M3 x 0.5 M3 x 0.5 4.5 6.6 23.5 21.5 8 5 5 20.5 18.5 AS1200-M5 M5 x 0.8 M5 x 0.8 25.5 8 10 28.3 10.3 9 9 25 22.2 AS1200-U10/32 10-32 UNF 10-32 UNF AS220-01 27.4 32.4 14.6 14.3 14.1 31.4 36.4 18 12 (12.7) 1/8 1/8 AS220-02 29.8 34.8 19.5 18 18 35.8 40.8 27.2 17 (17.5) 1/4 1/4 AS320-03 35.6 40.6 24.3 22.5 20.8 41.9 46.9 30 19 3/8 3/8 AS420-04 42.4