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Graph (1) 10 500 st 600 st 700 st 700 st 500 st 600 st 400 st 400 st 4 5 300 st 300 st 3 200 st 200 st Load movement time: t (S) 2 100 st [Example] Example) 1 0.4 0.5 0.3 V' 0.2 300 0.1 V W 100 200 1000 400 500 Maximum speed: V (mm/s) Cylinder stroke Movement distance of load Step (2) Find the bore size.

ALARM is expressed as negative-logic circuit. (2) Positioning Operation (4) Stop by the STOP Signal 24 V 0 V 24 V 0 V Power supply Power supply ON OFF ON OFF IN0-3 IN0-3 Input Input ON OFF OUT0-3 STOP Output ON OFF BUSY OUT0-3 Release Hold BUSY External lock Output ALARM Speed Positioning operation 0 mm/s Release Hold External lock OUT0-3 output signals are ON in the same state as the input

Connector Grommet Diagnostic indication (2-color indication) 12 V 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V Grommet 2-wire 12 V Connector Relay, PLC 24 V 3-wire (PNP) 3-wire (NPN) IC circuit Yes 5 V, 12 V Diagnostic indication (2-color indication) Grommet 2-wire 12 V Water resistant (2-color indication) 4-wire (NPN) 5 V, 12 V IC circuit With diagnostic output (2-color indication

600 V Protection against electric shock Class II (EN60947-5-1: 2004) 20 VG342-X87 Symbols Safety limit switch Made by OMRON Symbol Pin Numbers (Built-in switch 2N.C.)

Designation Content 1 L+ +24 V for logic/input 2 P24 +24 V for output 3 L0 V for logic/input 4 C/Q IO-Link communication data 5 N24 0 V for output Fig 2-1. Pin allocation of M12 5 pins plug A-coded connector The power supply for logic/input and the power supply for output are isolated. 2.2.

11.6mm 11.6 V () () ISO8573-12001JIS B8392-12003 2.4.3 2.5.3 2.6.3 15 - No.ZB-OM00301 () . 1 URL http://www.smcworld.com PV 12 KQ2S06-01SKQ2S04-01S 1/8PV 2~3 35Nm M5PVPD 1/6 11.5Nm / 16 - No.ZB-OM00301 V V V Assy V Assy V V Assy V Assy (2mm) V Assy 0.15Nm 0.15Nm 17 - No.ZB-OM00301 V Ass y V Assy V Assy ( ) V Assy 2 1V V Assy 2V Assy Assy 18 - No.ZB-OM00301 O Assy

$ $ G59 G5P K59 G39 K39 G59W G5PW K59W G5BA 3-wire (NPN) IC circuit 5 V, 12 V 24 V 3-wire (PNP) Grommet 12 V 2-wire 100 V, 200 V Solid state auto switch Reed auto switch 3-wire (NPN) 2-wire Terminal conduit 12 V 3-wire (NPN) IC circuit Yes Relay, PLC 5 V, 12 V Diagnostic indication (2-color indication) 3-wire (PNP) 12 V 2-wire 24 V Grommet 3-wire (NPN) 3-wire (PNP) 5 V, 12 V M9PA

12 V 3-wire (PNP) 24 V Grommet 12 V 2-wire 100 V, 200 V Reed auto switch Solid state auto switch 3-wire (NPN) Terminal conduit 12 V 2-wire 3-wire (NPN) Relay, PLC IC circuit Yes 5 V, 12 V Diagnostic indication (2-color indication) 3-wire (PNP) 2-wire 24 V 12 V Grommet 3-wire (NPN) 5 V, 12 V 3-wire (PNP) Water resistant (2-color indication) 2-wire 12 V 4-wire (NPN) 5 V, 12 V IC circuit

ALARM is expressed as negative-logic circuit. (2) Positioning Operation (4) Stop by the STOP Signal 24 V 0 V 24 V 0 V Power supply Power supply ON OFF ON OFF IN0-3 IN0-3 Input Input ON OFF OUT0-3 STOP Output ON OFF BUSY OUT0-3 Release Hold BUSY External lock Output ALARM 0 mm/s Speed Positioning operation Release Hold External lock OUT0-3 output signals are ON in the same state as the input

specification Electric 401 to 500 10 to 600 5 to 300 20 to 900 12 to 600 6 to 300 24 to 800 16 to 650 8 to 325 30 to 750 20 to 550 10 to 300 501 to 600 20 to 900 12 to 540 6 to 270 24 to 800 16 to 650 8 to 325 30 to 750 20 to 550 10 to 300 601 to 700 20 to 630 12 to 420 6 to 230 24 to 800 16 to 620 8 to 310 30 to 750 20 to 550 10 to 300 Parallel Stroke 701 to 800 20 to 550 12 to 330 6 to

Bore stroke 32 25, 50, 80, 100, 125, 160, 200, 250, 320, 400, 450, 500 700 40 25, 50, 80, 100, 125, 160, 200, 250, 320, 400, 450, 500 800 50 25, 50, 80, 100, 125, 160, 200, 250, 320, 400, 450, 500, 600 1200 63 25, 50, 80, 100, 125, 160, 200, 250, 320, 400, 450, 500, 600 1200 80 25, 50, 80, 100, 125, 160, 200, 250, 320, 400, 450, 500, 600, 700, 800 1400 100 25, 50, 80, 100, 125, 160, 200,

For example, when analogue output is 1 to 5 V, F.S.=5[V] 1[V]=4[V]. (Reference: 1%F.S. = 4[V] 1% = 0.04[V]) F F.S. (full span / full scale) H Hysteresis The difference between ON and OFF points used to prevent chattering.

(Specifications: Maximum load current of 10 mA; Maximum applied voltage of 30 V) Output for display unit Output Note 2) specifications Environment Voltage output 1 to 5 V Accuracy: 5%F.S., Min. load impedance: 100 k (Output impedance: 1 k) Analog output Current output 4 to 20 mA Accuracy: 5%F.S., Max. load impedance: 300 or less (at 12 VDC), 600 or less (at 24 VDC) 12 to 24 VDC 10% Power

l xDiinensiom:With Sp*r 2 Nllt $enies I Indluifrnl Unll/ llalu (Dimensions in millimeters Valve: Applicable valve / NVJ300 (N.O. type) Nzxi-v@K38@@@ Spacer 2 Gor side Srf,f,r,r 2,/ZX1-s,2 Ak supply passur port Exterml vacuum rreestxe aoat Valve: Appllcable valve /Air operatd Nar-v@K6 Ak opEted EXrA) GXr A) M3XO,5 r ^ T ul . oi : l f r l | t M5xO.8 c (PV pdt) Air supply Exthal v Nol6) XDi.nensidrstFo

For example, when analogue output is 1 to 5 V, F.S. = 5[V] 1[V] = 4[V], (ref. 1%F.S. = 4[V] x 1% = 0.04[V]) F.S. (Full span, Full scale) H Hysteresis The difference between ON and OFF points used to prevent chattering. Hysteresis can be effective in avoiding the effects of pulsation.

Analogue output 1 to 5 V Output impedance 1 K Max.28 V, 80 mA Internal voltage drop 1 V max.

12 V 12 V Reed auto switch Solid state auto switch Relay, PLC Grommet 24 V IC circuit 5 V,12 V Diagnostic indication (2-color indication) 12 V A96V A96 5 V IC circuit Relay, PLC Grommet A93V A90V A93 A90 IC circuit 100 V 2-wire 24 V 12 V 100 V or less Solid state auto switches marked with are produced upon receipt of order.

, D-A93(V), D-A96(V) Auto Switch Specifications D-A96 D-A90 D-A90V D-A93 D-A93V In-line D-A96V Auto switch part no.

(Specifications: Maximum load current of 10 mA; Maximum applied voltage of 30 V) Output for display unit Output Note 2) specifications Voltage output 1 to 5 V Linearity: 5% F.S. or less; allowable load resistance: 100 k or more.

For example, when analogue output is 1 to 5 V, F.S. = 5[V] 1[V] = 4[V], (ref. 1%F.S. = 4[V] x 1% = 0.04[V]) F.S. (Full span, Full scale) H Hysteresis The difference between ON and OFF points used to prevent chattering. Hysteresis can be effective in avoiding the effects of pulsation.