SMC Corporation of America
Elite Part Number Search
Search Results "IS10E-30-N03-P-D"

V: Power supply voltage Power consumption P: 7 [kW] Q = P = 7 [kW] P Cooling capacity = Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)

Size Order no. 25 LE-D-6-2 14 32 LE-D-6-3 40 LE-D-6-4 -12- 3. Product Outline 3.1 System construction Refer to the Driver operation manual for system construction. 4.Elictric actuators / Common precautions 4.1 Wiring/Cables Warning 1. Adjustment, installation, inspection, or wiring changes should be conducted after the power supply to this product has been turned off.

Cap p. 17 Digital Input/Output Unit p. 7 tMarker p. 18 Analog Input Unit p. 8 y Communication Cable with Connector/ Communication Connector p. 18 Analog Output Unit p. 8 Analog Input/Output Unit p. 8 uPower Supply Cable with M12 Connector (A-coded) p. 19 End Plate (D side) p. 8 uPower Supply Cable with M12 Connector (B-coded) p. 20 End Plate (U side) p. 8 iPower Supply

connector 11 23 9 H C 15 6.5 H C H C G1/2 Terminal: T DIN terminal: D Applicable cable O.D.: 6 to 12 G F G F Width across flats 22 G1/2 32 H (44) H 31.5 25 C C J G1/2 J Dimensions [mm] Model A B C D E F M P Q Grommet: G Grommet: GS Conduit: C Flat terminal: F DIN terminal: D Terminal: T G H G H G H G H G H J G H J XSA1-1P(N) 30 30 66 30 11 20 8 1/8 19 27 56.5 30 43 47.5 50.5 23 56.5 64.5

V: Power supply voltage Power consumption P: 7 [kW] Q = P = 7 [kW] P Cooling capacity = Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)

(port e)] [P (port c)] A A LW Plug Operating direction P (port a) P (port b) Auto switch mounting groove [P (port g)] 0.5 Note 2) 0.5 Note 2) Left Right Plug [P (port h)] HI HP H HL HG HT HS HB HA HB HA HG HT HI WB 4-J Depth JK Plug [P (port f)] WB WA TA TA WA R TB Plug TB R W [P (port d)] Inner cover Note 3) holding screw (mm) K 21 20 JK 10 12 J M6 x 1 M10 x 1.5 HT 19.5 39 HS 27 49.5 HP

(P.23) 10.1 (P.33) 3.4 (P.16) 11.(P.42) (CN1: EMG 3.(P.12) ) INP ON 10.1 (P.33) (INP PLC ) 5 3.(P.12) PLC (PLC) 2 12.4 (P.50) 11.(P.42) 3.(P.12) 83 - 5.(P.23) 10.1 (P.33) 3.(P.12) PLC (PLC) 2 12.4 (P.50) () () (LED() 3.2 (P.13) ) 11.(P.42) 5 11.(P.42) 11.(P.42) 3.(P.12) (CN1: EMG 3.

) [mg/L] 50 or less p Standard item Acid consumption amount (at pH4.8) [mg/L] 50 or less p Total hardness [mg/L] 70 or less p Calcium hardness (CaCO3) [mg/L] 50 or less p Ionic state silica (SiO2) [mg/L] 30 or less p Iron (Fe) [mg/L] 0.3 or less p p Copper (Cu) [mg/L] 0.1 or less p Sulfide ion (S2) [mg/L] Should not be detected. p Ammonium ion (NH4+) [mg/L] 0.1 or less p Residual chlorine

HS 9-13-16 16 Series MLU Plate Cylinder with Lock Proper Auto Switch Mounting Position Auto Switch Mounting Height (mm) Auto switch model (mm) D-A7H D-A80H D-F7 D-F7 V D-J79 D-F7W D-F7WV D-J79W D-F7BAL D-F7BAVL D-F79F D-A7H D-80H D-F7 D-J79 D-F7W D-79W D-F7NTL D-F79F D-F7BAL D-A73C D-A80C D-J79C D-A79W D-F7LF D-P5DWL D-F7V D-F7WV D-F7BAVL D-J79C D-A79W D-A7 D-A80 D-F7NTL D-A7 D-A80 D-A73C

81.7 H KKA6S-03M-1 R 3/8 51.4 44.9 138.3 L -04M-1 1/2 R 1/2 11.4 81.6 54.4 46.4 149.6 30 30.7 -06M-1 R 3/4 56.4 46.9 174.0 Female thread type (mm) Body size H Width across flats Min. bore size Model T Connection port size Weight g Effective area mm2 L D KKA3S-01F-1 Rc 1/8 44.5 37.6 T 17 -02F-1 1/8 Rc 1/4 18.5 6.1 23.4 44.8 41.2 -03F-1 Rc 3/8 49.9 43.1 19 D KKA4S-02F-1 Rc 1/4 46.1 92.2 22

Note 2) Not applicable for dual 3 port valve. 3 5 (R1) 3 (R2) 1 (P) 3 position exhaust center (A) 4 (B) 2 4 5 (R1) 3 (R2) 1 (P) 3 position pressure center (A) 4 (B) 2 5 5 (R1) 3 (R2) 1 (P) Kit Designation/Electrical Entry/Cable Length S S S F Kit (D-sub connector kit) Kit (Decentralized wiring type serial kit) Kit Kit (Serial output kit) (I/O serial kit) Serial unit: EX250 IP67 compliant

Connect head cover tubing wisely with consideration of surrounding conditions. 15 Driving Direction Left Right Brake O per ating P ort Brake Release P ort Head Cover-WL Head Cover-WR Tube Part No. 1 2 3 4 5 6 Head Cover Type Head Cover-WL Head Cover-WR Tubing Side Front Side Bottom Front Side Bottom Driving Left A C E G I K Direction Right B D F H J L Note

BF SOL RUN Display Description NOTE When connecting manifold valve only without connecting Input unit manifold, LEDs of COM A D do not light. To make them light, connect a terminal plug to the unused connector of SI unit ( "C1" or "0" ). Settings for display Turns on: COM D is receiving data. Turns off: COM D has no received data. Turns on: COM C is receiving data.

Example) In case an MGF63-15 specification is required, a spacer of 15mm is installed in the MGF63-30. Therefore, the total length is same as that of 30mm stroke. MGF 40 MGF 63 30, 50, 75, 100 MGF100 Minimum Strokes for Mounting Auto Switches (mm) Switch type D-Z7, D-Z8 D-Y5, D-Y6, D-Y7 Number of pcs. 10 5 1 pc. 15 10 2 pcs.

K T 2 X NPN 2 Y PNP 2 A1 A R NPN 2 + 1 () T PNP 2 + 1 A2 B S NPN 2 + 1 V PNP 2 + 1 1 B D + M SI 3 P psi 2 2: 3kPaMPa 1 ( 2m, ) W M5 M5 01 R1/8 N01 NPT1/8 C4L 4mm C6L 6mm -8No.PS-OMU0005CN-C / A ZS-46-A1 38L (2 ) B ZS-46-A2 38L (2 ) ZS-46-B + ZS-46-D ZS-46-5F 5 2 m ZS-27-01 R1/8 ZS-46-N1 NPT1/8 ZS-46-N2 4mm ZS-46-C4L 6mm ZS-46-C6L -9No.PS-OMU0005CN-C OUT1 LCD OUT2

Unit switching Real-time switch output ( ) ZSE ISE For Air Hysteresis mode Display Real-time flow rate l/min Accumulated flow l ON PSE YES CFM x 102, CFM x 101 ft3 x 101 OFF P-1 P-2 High flow rate Z I SE3 CFM = ft3/min P Window comparator mode H: Hysteresis High Flow Rate Type (For Air) PS H H Display Real-time flow rate l/min Accumulated flow l, m3, m3 x 103 ON Z I SE1 2 NO OFF P-1 P-

MXQ 6 MXQ 8 MXQ12 MXQ16 MXQ20 MXQ25 10, 20, 30, 40, 50 10, 20, 30, 40, 50, 75 10, 20, 30, 40, 50, 75, 100 10, 20, 30, 40, 50, 75, 100, 125 10, 20, 30, 40, 50, 75, 100, 125, 150 10, 20, 30, 40, 50, 75, 100, 125, 150 2 Series MXQ Theoretical Output IN OUT Application of the dual rod system generates double the output of conventional cylinders.