SMC Corporation of America
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Note 5) Cables are not included. 15 - 3.2 2 Parts description Details of the parts of the controller. (1) (2) (3) Remove the housing. (10) (8) (4) (5) ON (6) ON (7) OFF 1 2 3 4 5 6 (9) Pulse input signal switch (default) No.

N 2-J 2-11 2-M6 x 1.0 M M L 6.2 9.5 SMC SMC 2-K 2-7 Side support A part no.: MF-S32A Side support B part no.: MF-S32B Support bracket A part no.: MY-SA Support bracket B part no.: MY-SB Part No.

Features 1-2. Position Control 1-3. Positioning at Stroke End 2. System Configuration 9 2-1. System Checking Flow Chart 2-2. System Configuration 2-3. Recommended Circuit Design 3. Specifications 14 3-1. Cylinder Specifications 3-2. Controller Specifications 3-3. Sensor Specifications 4. Model 16 4-1. Cylinder 4-2. Controller 4-3. Extension Cable 5.

Brown Brown Load Load Switch 1 Switch 1 Blue Blue Brown Brown Switch 2 Switch 2 Blue Blue Load voltage at ON = Power supply voltage Internal voltage drop x 2 pcs. = 24 V 4 V x 2 pcs. = 16 V Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Power supply is 24 VDC Internal voltage drop in switch is 4 V. Example: Load impedance is 3 k.

k. l. 2. 8. ,,, 9. 1. 10. 2. 11. 3. 1. 1. 0.11.0MPa 0.30.5MPa :060 2. 3 2. 1. 3. 5 2. 35% 1. ( 6 ) ()70% ()35% 2. 50% ( 6 ) 15% 3. 1. 4. () 0.5 3. 5. F.G. 4. 1. 1. 2. 2. 3. 1. 1. 2. 2 3. 2. 1.52 4. 5. 1. 1ISO VG32 1. 2. 1. 2. 3. 1. 2. 1. 2. 14.5mT CE2 3. 15,000 18cm 4. 3. 4. IP65 5. (DC1224V) 1. 1-1 CEU2 1 2 32 32 1 16 P1 P2 P3 .

alarm 2 mode(on), non-alarm mode(oFF), and change the set value if alarm 2 mode is selected.

Port size E F G H I L M P Q A Model B J R T U C D K N O S Port 2 (A),1 (P) Port 3 (R) VEX5500 VEX5501 133.5 50 25 10 7 25 80 60 81.5 83.5 1 2, 3 4, 60 143.5 62.5 70 156.5 36.5 16.5 20 Center 2 x M6 Thread depth 9 116.5 1 2, 3 4, 1 1 25 VEX5700 VEX5701 160.5 150.5 62.5 90 60 30 15 7 173.5 37.5 100 60 13 88.5 86.5 18 2 x M6 Thread depth 6 136.5 17 82 1 4 1 4 1, 1 1 c Bracket mounting dimensions

Load Load Switch 1 Switch 1 Blue Blue Brown Brown Switch 2 Switch 2 Blue Blue Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Load impedance is 3 k. Leakage current from switch is 1 mA. Power supply Internal Load voltage at ON = voltage voltage drop x 2 pcs. = 24 V 4 V x 2 pcs. = 16 V Example: Power supply is 24 VDC.

Blank plate (Air filter, Regulator) Manifold blocks necessary for mounting 2 2 2 2 2 2 2 1 F.

E1 2 I E[J]I[kg][rad/s] Imr m[kg] rm 5.1 19 I I I I kg kg kg kg m m m m 2 2 2 2 m: m: m: m: kg kg kg kg b 20 5-2. 5.1 5.1 32 0.023[J] 40 0.028[J] 2 t [rad]t[s] E E1 2 I t E 2 I t E[J][rad]I[kg] 2 t (1) t = & (2) C C t 2 1 tdt 2 + = = & & t=0 =0C=0 t 2 1 t 2 1 2 = = & t 2 = 21 5-3.

Bar length symbol 340 400 460 580 640 820 1120 1300 1600 1900 2320 2500 ZVB IZS40-E3 IZS40-E4 IZS40-E5 2 1 1 1 2 2 2 1 2 Standard model no.

(N specifications) How to Order AS4200-04 AS3200-03 01 S AS 2 2 0 0 AS2200-02 AS2200-01 Option Body size AS1200-M5 None With seal Nil 1 2 3 4 M3, M5 standard S K N 1 8 1 4 , standard standard standard AS1400-M3 Hexagonal lock nut 8 3 Electroless nickel plated 2 1 If more than one option is required, write option part numbers in the order of S, K, N.

Option Body size Nil K None Hexagonal lock nut 2 3 4 5 6 M5 standard 1/8 standard 1/4 standard 3/8 standard 1/2 standard With seal Type 3 Universal Applicable tubing O.D.

Brown Brown Load Load Auto switch 1 Auto switch 1 Blue Blue Brown Brown Auto switch 2 Auto switch 2 Blue Blue Load voltage at ON = Power supply voltage Residual voltage x 2 pcs. = 24 V 4 V x 2 pcs. = 16 V Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Load impedance is 3 k. Leakage current from auto switch is 1 mA.

PFA712H 55 160 40 92 67 55 Rc 1, NPT 1, G 1 36 M5 x 0.8 8 OUT1 80mA Load Black 65 180 45 104 79 65 Rc 1 1/2, NPT 1 1/2, G 1 1/2 46 M6 x 1 9 ON OFF 75 220 55 114 89 75 Rc 2, NPT 2, G 2 56 M6 x 1 9 50msec PFA7H-(-M) 68 69 Analog output 1 to 5VDC 4 to 20mADC 5 20 Analog output [mA] Analog output [V] 1 4 Min. measured flow rate value Max. measured flow rate value Real-time flow rate [l/min]

Contents Chapter 1: Read Before Use 49 Chapter 2: General Description/Features 2-1. General Description 10 2-2. Features 10 Chapter 3: System Configuration 3-1. System Configuration 11 3-2. Example of System Configuration 1112 3-3. Pneumatic Circuit 1314 Chapter 4: Operating Principle 4-1. Operating Principle of Brake 15 Chapter 5: Selecting Procedure 5-1. Precaution 16 5-2.

[White] Blue [Black] Black [White] Load Switch 1 Switch 1 Switch 1 Relay Load Relay contact Blue [Black] Blue [Black] Brown [Red] Brown [Red] Brown [Red] Relay Black [White] Black [White] Blue [Black] Black [White] Switch 2 Switch 2 Switch 2 Blue [Black] Blue [Black] The indicator lights will light up when both switches are turned ON. 2 wire with 2 switch AND connection 2 wire with 2 switch

[White] Blue [Black] Black [White] Load Switch 1 Switch 1 Switch 1 Relay Load Relay contact Blue [Black] Blue [Black] Brown [Red] Brown [Red] Brown [Red] Relay Black [White] Black [White] Blue [Black] Black [White] Switch 2 Switch 2 Switch 2 Blue [Black] Blue [Black] The indicator lights will light up when both switches are turned ON. 2 wire with 2 switch AND connection 2 wire with 2 switch

[White] Blue [Black] Black [White] Load Switch 1 Switch 1 Switch 1 Relay Load Relay contact Blue [Black] Blue [Black] Brown [Red] Brown [Red] Brown [Red] Relay Black [White] Black [White] Blue [Black] Black [White] Switch 2 Switch 2 Switch 2 Blue [Black] Blue [Black] The indicator lights will light up when both switches are turned ON. 2 wire with 2 switch AND connection 2 wire with 2 switch