SMC Corporation of America
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Search Results "IZF21-P-N"

3/8" 1(P) port 3 U side D side n Station number 4 5 2 1 Indicator light L2 97.5 90 L1 45 (n-1) x 19 45 88 19 2 2 Manual override 152 (Double dual 3-port) 133 118 (Single) 165 (3-position) LERR.

P #Vacuum Ejector or Pump and Number of Vacuum Pads Ejector and number of pads Vacuum pump and number of pads Vacuum line Tank P P P P P P P P P Ideally, one pad should be used for each line. When more than one pad is attached to a single vacuum line, take the countermeasures listed below.

W K CY1RG50/63 HB HC N X MX H MTS CB HA 2-P (Piping port) 4-J x E (Depth) 4-Counterbore dia.

P P P P P P P P SY5000 P P P P P P P P SY5000 P P P P C2 C3 C4 C6 C8 CM N1 N3 N7 N9 CM 2 One-touch fitting 1/8" One-touch fitting 3.2 One-touch fitting 5/32" One-touch fitting P P P P P P P P P P P P P P Straight Elbow Straight Elbow 4 One-touch fitting 1/4" One-touch fitting 6 One-touch fitting 5/16" One-touch fitting 8 One-touch fitting Straight port, mixed sizes LN3 LN7 LN9

NEW ZEALAND SMC Pneumatics (N.2.) Ltd.

bore size determination F3 D 1.6 x P First tentative bore size determination F1 D 1.6 x P First tentative bore size determination F2 D 1.6 x P WB High Precision Guide Type REAH Inclined operation W + WB WV P PV W + WB > WV P > PV Allowable driving force (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (

ON YES Hysteresis mode OFF P-1 P-2 Real-time flow rate "P" H H Sensors Measuring Instruments ON Window comparator mode H: Hysteresis NO OFF P-1 P-2 Real-time flow rate OUT1 Output mode ON YES Hysteresis mode OFF n-1 n-2 Real-time flow rate "n" H H ON Window comparator mode H: Hysteresis OFF NO n-2 n-1 Real-time flow rate Accumulated pulse output ( ) Accumulated switch output ( )

Note Mounting position Without power supply terminals With power supply terminals 1: Perpendicular connector 2: Lateral connector P: Positive common N: Negative common 1 2 D side SZ3000-40-2A-D For D-sub connector 1 2 P N SZ3000-40-1A-D 1 2 1 2 P N D side SZ3000-40-4A-D For flat cable 26 pins SZ3000-40-3A-D Note) The assembly part numbers with power supply terminals are 24VDC specifications

B 2 B 2 B 2 B 8 A A A A A A A A B B B B B B B B 7 SMC SMC SMC SMC SMC SMC SMC 6 5 L1 L2 4 3 2 44 P = 25 50.5 P = 25 1 X Stations 12 38 26.5 Electrical entry on D side (LD) 37.5 10.2 12 91 D side 43.5 50.5 163 59 96.5 Dimensions Formula L1 = 25n + 63, L2 = 25n + 76 n: Station (Maximum 16 stations) L n 8 263 276 L1 L2 7 238 251 6 213 226 5 188 201 4 163 176 3 138 151 1 2 113 126 16 463 476

P.33 P.34 Auto Switches D-M9BW(V)SDPC-900 D-M9BW(V)L-900 D-Y7BW(V)L-900 D-A90L-900 D-Z80L-900 P.62 P.63 P.64 P.65 P.65 P.66 Solid State Auto Switch Direct Mounting Style 90-JA 90-JB 90-JS 90-RB/RBC 92-MSQ P.35 P.35 P.35 P.36 P.37 Reed Auto Switch Direct Mounting Style Auto Switch Mounting Bracket Part No. 1 Single Valve/Sub-plate Type IP67 Compliant How to Order 90-SV Series 90 SV W1 00 1

Note Mounting position Without power supply terminals With power supply terminals 1: Perpendicular connector 2: Lateral connector P: Positive common N: Negative common 1 2 1 2 P N SZ3000-42-2A-DSZ3000-42-1A-D For D-sub connector D side 1 2 1 2 P N SZ3000-42-4A-DSZ3000-42-3A-D For flat ribbon cable 26 pins D side Note) The assembly part numbers with power supply terminals are 24 VDC specifications

D-A9 5 15 30 Note 1) 15 + 35(n 2) 2 (n = 2, 4, 6) Note 3) 50 + 35 (n 2) (n = 2, 3, 4, 5) CM2 CM3 D-M9V 5 20 35 20 + 35(n 2) 2 (n = 2, 4, 6) Note 3) 35 + 35 (n 2) (n = 2, 3, 4, 5) CG1 CG1 D-A9V 5 15 25 15 + 35(n 2) 2 (n = 2, 4, 6) Note 3) 25 + 35 (n 2) (n = 2, 3, 4, 5) CG3 D-M9WV D-M9AV 10 20 35 20 + 35(n 2) 2 (n = 2, 4, 6) Note 3) 35 + 35 (n 2) (n = 2, 3, 4, 5) JMB D-C7 D-C80 5 15

Coil: Upward Coil: Downward Top blow port Front blow port Front blow port 5 C O N T E N T S Flow Rate Characteristics JSX Series Direct Operated 2-Port Solenoid Valve JSX Series p. 7 Pilot Operated 2-Port Solenoid Valve JSXD Series p. 25 Table of UL-compliant Products JSXD Series JSXZ Series JSXM Series Option Replacement Parts How to Order p. 25 For Water Oil Air Body Material Stainless

P + 0.1 0.1 QCR = V x x 10-. Formula (1) P + 0.1 0.1 Formula QC2 = QC x n x Number of actuators x Reserve factor . Formula (5) QCR = 2V x x 10-. Formula (2) P 0.1 QCP = 2 x a x L x x 10-. Formula (3) [L/min (ANR)] QC2 = Compressor discharge flow rate n = Actuator reciprocations per minute Reserve factor = 1.5 or more QC = QCR + QCP.

Communication connector (PROFIBUS-DP): M12, 5 pins (plug) 3 2 5 R 1 4 0 0 0 0 BUS 3 Description Function No. 1 1 12 1 1 Terminal +5V VP 1 X 2 2 P PWR Signal N R x D/T x D(N) 2 3 3 1 GND terminal DGND 3 Signal P R x D/T x D(P) 4 Shield ground SHIELD 5 Power connector: M12, 5 pins (Boss configuration differs from plug and communication connector.)

High pressure 2.0 MPa (-X425) P.53 P.77 P.107 Low temperature 30 to 60C (-X430) P.53 P.77 P.106 High temperature 5 to 80C (-X440) P.53 P.77 P.106 Clean series (10-) P.54 P.63 P.80 P.80 P.111 P.111 Copper, fluorine and silicone-free + Low particle generation (21-) P.54 P.63 P.80 P.80 P.111 P.111 Related Product Modular adapter Example) Air filter + 3 port valve Easy modular connections for

2 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) Note) Except VQZ1000 and metal seal type.

U S H I O N S An industry proven fully adjustable cushion is a standard P I S TO N RO D option.

---P First tentative bore size determination F3 D 1.6 x ---P WB Inclined operation W + WB WV P PV W + WB > WV P > PV Allowable Driving Force (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure (For vertical operation, refer to page 10-2-68.)

Review of load weight and operating pressure Fn W Lo Guide First tentative bore size determination First tentative bore size determination First tentative bore size determination F2 D 1.6 x ---P F3 D 1.6 x ---P F1 D 1.6 x ---P WB Inclined operation W + WB WV P PV W + WB > WV P > PV Allowable Driving Force (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure F1 = x