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Wiring diagram LECl6Nll-l (NPN) LECl6Pll-l (PNP) CN5 24 VDC for I/O signal 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ A2 A2 COM COM A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 B2 B2 OUT1 OUT1 B3 B3 OUT2 OUT2 B4 B4 OUT3 OUT3 B5 B5 OUT4

Parallel I/O Connector: CN5 Wiring diagram LEC;6N;;-; (NPN) LEC;6P;;-; (PNP) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 Load

Rod End Shape Symbol: A1 Symbol: A2 Symbol: A3 Symbol: A4 Symbol: A5 Symbol: A6 Symbol: A7 Symbol: A8 Symbol: A9 Symbol: A10 Symbol: A11 Symbol: A12 Symbol: A13 Symbol: A14 Symbol: A15 Symbol: A16 Symbol: A17 Symbol: A18 Symbol: A19 Symbol: A20 Symbol: A21 Symbol: A22 Symbol: A23 Symbol: A24 Symbol: A25 Symbol: A26 Symbol: A27 Symbol: A28 Symbol: A29 Symbol: A30 41 Series NCA1 Medium Duty

L1 L2+A5 L3 Kinetic Energy 2 Find the kinetic energy E (J) of the load. Find the allowable kinetic energy Ea (J).

Model to be used Type of cushion Workpiece mounting position Mounting orientation Average speed Va (mm/s) Load mass W (kg): Fig. (1) Overhang Ln (mm): Fig. (2) L1 L2 + A5 L3 2 2 E = W () 1 2 V 1000 Find the kinetic energy E (J) of the load. 2 E = 1 () = 0.088 1 2 420 1000 Collision speed V = 1.4 Va ) Correction factor (Reference values) V = 1.4 x 300 = 420 Find the allowable kinetic

PD07]5.8 03h _ x _ _ 0h x _ _ _ 0h 5 40 5. [] PD12 *DOP1 D-1 _ _ _ x 0h _ _ x _ 0h _ x _ _ 0h x _ _ _ / (A5) 0 1 0h PD14 *DOP3 D-3 _ _ _ x 0h _ _ x _ WNG()ALM() 0h (1) 0 1 WNG 0 1 ALM 0 1 WNG 0 0 1 ALM 1 (2) 1. 0OFF 1ON 2. ALMOFF _ x _ _ 0h x _ _ _ 0h 5 41 5. 5.2.5 2 ([Pr.

A5 A5 A6 A6 A7 A7 Internal Internal A8 A8 resistance resistance 10[k ] 10[k ] 24 VDC 24 VDC A9 A9 Main circuit Main circuit power supply power supply for the input for the input A10 A10 signals signals B1 B1 B2 B2 B3 B3 B4 B4 B5 B5 Maximum output Maximum output B6 B6 current: 10 mA current: 10 mA B7 B7 Pulse input internal circuit Note2) B8 Pulse input internal circuit Note2) B8 Pulse input

L1 L2+A5 L3 2 1 W V 2 E= ( ) 2 9.8 1000 Collision speed V=1.4 Va *) Corrected coeficient 1 10 420 E= ( ) =0.09 2 9.8 1000 V=1.4 x 300=420 Calculate kinetic energy E(J) of moment. Calculate allwable kinetic energy Ea(J). Check that kinetic energy of moment does not exceed allowable kinetic energy.

Speed with no load (mm/s) 33 or m ore 100 or m ore 200 or m ore Speed with no load (mm/s) 33 or m ore 100 or m ore 200 or m ore L[]ZB[]3L[][][]A3 L[]ZB[]3M[][][]A3 L[]ZB[]3H[][][]A3 L[]ZB[]5L[][][]A5 L[]ZB[]5M[][][]A5 L[]ZB[]5H[][][]A5 Rated thrust (N) 196 or m ore 117 or m ore 72 or m ore Rated thrust (N) 80 or m ore 43 or m ore 24 or m ore electric cylinder LZ series and the directional

Mounting direction Horizontal [][][]A5 Applicable directional control equipment model LC3F2125A3[] Applicable directional control equipment model LC3F2125A5[] L[]ZC[]5L[][][]A5 Applicable auto switch DM9[] Applicable auto switch DM9[] 10.

Parallel I/O Connector: CN5 Wiring diagram LEC6N(NPN) LEC6P(PNP) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 Load Load B2 B2

Parallel I/O Connector LEFS LEFB LEY LEYG LESYH LES LESH LEHF LER JXC51/61 JXC 1 Wiring diagram JXC51(NPN) JXC61(PNP) Power supply 24 VDC Power supply 24 VDC CN5 A1 CN5 for I/O signal for I/O signal A1 COM+ COM+ COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13

Rod End Shape Symbol: A1 Symbol: A2 Symbol: A3 Symbol: A4 Symbol: A5 Symbol: A6 Symbol: A7 Symbol: A8 Symbol: A9 Symbol: A10 Symbol: A11 Symbol: A12 Symbol: A13 Symbol: A14 Symbol: A15 Symbol: A16 Symbol: A17 Symbol: A18 Symbol: A19 Symbol: A20 Symbol: A21 Symbol: A22 Symbol: A23 Symbol: A24 Symbol: A25 Symbol: A26 Symbol: A27 Symbol: A28 Symbol: A29 Symbol: A30 41 Series NCA1 Medium Duty

J D-X Most sensitive position 20Data 10-20-17 18 Reed Switch Tie-rod Mounting Style D-A5/D-A6 For details about certified products conforming to international standards, visit us at www.smcworld.com.

Most sensitive position 6-16-17 18 Reed Switch Tie-rod Mounting Style D-A5/D-A6 For details about certified products conforming to international standards, visit us at www.smcworld.com.

S-1 2 S-12 GND IN0002 General-purpose input 2 A3 32 3 S-1 3 S-13 Valve ON/OFF(Finger opening side) IN0003 General-purpose input 3 B4 8 4 S-1 4 S-14 Valve ON/OFF(Finger closing side) IN0004 General-purpose input 4 A4 33 5 S-1 5 S-15 Auto switch (Finger opening direction) IN0005 General-purpose input 5 B5 9 6 S-1 6 S-16 Auto switch (Finger closing direction) IN0006 General-purpose input 6 A5

Allowable kinetic energy E max=0.43 (J) V=Vax1.4=350x1.4=490mm/s W 30 Ev= xV2= x0.492=0.36 (J) 2g 2x9.8 Load factor a5= E = 0.36 =0.84 Emax 0.43 Examination of load factor a5 = 0.84 1 OK With above allowable value, there is no problem on the selection. ML2B25 is selected.

(ON when there is no problem) A5 Purple Error signal OUT (Contact B) B5 White Unused 3-2-3. Wiring of the AC Adapter Perform F.G. connecting with the ground terminal (F.G.) of the AC cord when AC adapter is used. If the AC cord is plugged in, plug it into a grounded outlet. Use an AC cord with ground terminal if it is prepared by the user.

BBA1: For D-A5/A6/F5/J5 types Note 1) Refer to page 1689 for details on the BBA1. The above stainless steel screws are used when a cylinder is shipped with the D-F5BA auto switch. When only one auto switch is shipped independently, the BBA1 is attached.