(With NPN output) 1 V or less (With load current of 80 mA) 1 s (0.25, 0.5, 2, 3 selections) Yes 1% F.S.
Safety Instructions 1 Brown: 24 VDC +10%/-5% (Solenoid valve power supply) Refer to the operation manual from SMC website (URL http://www.smcworld.com) for more information about troubleshooting. 5 2 White: 0 V (Solenoid valve power supply) Warning 3 Blue: 24 VDC 10% (Control power supply) 4 3 66 DHCP mode (SW1 Dip switches 1-4 ON) 4 Black: 0 V (Control power supply) The IP addressis acquired
Please keep this manual handy for future reference. 2 (0 V) Power supply for output equipment (-) 1 3 3 AS-i ASInterface line (-) (24 V) Power supply for output equipment (+) 4 LED Indication Tie-rod (2 pcs.) Accessory 3 4 2 Power supply connector for output equipment 7 M12 4-pin plug SI No. Description Function 1 No.
Indication Item Output Setting, selection and display CH1 circulating fluid temperature 0C to 100C: 0 to 10 V CH2 circulating fluid Analog temperature 0C to 100C: 0 to 10 V (1) Analog output signal 1 Output 1 CH2 electrical conductivity 0.1 to 50.0 S/cm: 0.02 to 10.0 V CH1 circulating fluid temperature 0C to 100C: 0 to 10 V Analog CH2 circulating fluid temperature 0C to 100C: 0 to 10 V (2
OUT() DC(-) DC(+) PSE57--28 420 mA N.C. 500 (24 V ) 100 (12 V ) OUT() DC(-) -13No.PS-OMS0004CN-D (A/D ) () 20 2030 -14No.PS-OMS0004CN-D PSE570 PSE573 PSE574 01MPa -100100 kPa 0500 kPa 3.0MPa 600 kPa 1.5MPa oC) oC) (25 ) 2F.S.(050 3F.S.(050 oC) oC) 3F.S.(-1060 4F.S.(-1060 PSE57PSE57--28 DC1224 V1010% 10 mA 420 mA 15 V 1 k 500 (24 V ) 100 (12 V ) (25 oC) 1.0F.S. 0.5F.S. oC)
DC2410% [W] 8) 23 40 50 [W] 9) 16 15 48 [W] 10) 43 48 104 11) [N] 20 39 78 78 157 294 108 216 421 [W] 12) 3.6 5 5 [V] DC2410% LEY 16 [ _ / R / L ] LEY 25 [ _ / R / L ] LEY 32 [ _ / R / L ] [mm] 1) 30 50 100 150 200 250 300 30 50 100 150 200 250 300 350 400 30 50 100 150 200 250 300 350 400 450 500 (kg) 0.580.62 0.73 0.87 0.98 1.09 1.20 1.181.25 1.42 1.68 1.86 2.03 2.21 2.382.56 2.09
(Equivalent lead (8)Cable length * [m] (7)Cable type (9)Driver type Power supply Without cable Nil Without cable Nil Compatible drivers voltage [V] Standard cable 3 3 S R Nil Without driver Robotic cable (Flexible cable) 5 5 200 to 230 200 to 230 M2 LECYM2-V A 10 U2 LECYU2-V C 20 * The length of the motor and encoder cables are the same.
Maximum Speeds for Each Transfer Load Unit (mm/s) Transfer load (kg) 15 20 25 30 1000 1000 930 740 600 500 Model Note LG1H202PC-500-F LG1H202PC-600-F LG1H202PC-700-F LG1H202PC-800-F LG1H202PC-900-F LG1H202PC-1000-F 700 700 600 600 500 500 500 500 500 500 500 500 500 500 500 500 500 500 Power supply: 100/110(V)AC 10% Compatible controller: LC1-12HC1Power supply: 200/220(V)AC 10% Compatible
AS 0 0.1 0.15 0.2 0.25 0.3 Return stroke pressure (MPa) ASP ASN v v w w a a o o l l v v l l F F e e AQ ASV u u r r e e s s v v s s a a e e l l v v r r P P e e AK ASS ASR ASF Working stroke Working stroke Return stroke Return stroke Pressure valve Flow valve 15-16-1 2 Cuts air consumption by operating the return stroke at a reduced pressure.
12 V Auto switches marked with a symbol are produced upon receipt of order.
Marking Indicator light (Built in the connector) Surge voltage suppressor (Built in the terminal block) For 24 V or more DC Marking For AC and 12 V or less DC 4-13-2 3 3 Port Direct Operated Poppet Solenoid Valve Series VKF300 Precautions Be sure to read before handling. For Safety Instructions and Solenoid Valve Precautions, refer to page 4-18-2.
Bore size Operating range Bore size mm (in) OUT () Blue [Black] 180 200 8 (0.3) 8 (0.3) Operating range l (mm) 10 Compact Cylinder Series CQ2 2 Colour Indicator Type Solid State Switches/Direct Mounting Type D-YNW(V), Y7PW(V), D-Y7BW(V) Auto Switch Specifications D-Y7W, D-Y7WV (with indicator light) D-Y7NW D-Y7NWV D-Y7PW D-Y7PWV D-Y7BW D-Y7BWV Auto switch model no.
(same side) 60 D-Y59A(B), Y69A(B) Y7P(V) 1 pc., 2 pcs. (different sides) 20 2 pcs. (same side) 70 D-Y7NW(V), Y7PW(V) Y7BW(V) Solid state switch 1 pc., 2 pcs. (different sides) 25 2 pcs. (same side) 70 D-Y7BAL 1pc., 2 pcs.
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.
A B C D Maximum Speeds for Each Transfer Load Unit (mm/s) Transfer load (kg) 15 20 25 30 1000 1000 930 740 600 500 Model Note LJ1H202PC-500LJ1H202PC-600LJ1H202PC-700LJ1H202PC-800LJ1H202PC-900LJ1H202PC-1000700 700 600 600 500 500 500 500 500 500 500 500 500 500 500 500 500 500 Power supply: 100/110(V)AC 10% Compatible controller: LC1-1B2H1Power supply: 200/220(V)AC 10% Compatible controller
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.
D-F9 V D-F9 WV W B Dimension inside ( ) is for model D-A9 V.
Solenord side. .9 fi V f--'.--ry] f+r-q | r + r i | | t-?-!+-<-{ l r l tF)-)-+++--(lr{ I , _ ' I{ANIFOLD BLOCK PART NO. NO. PRESSURE CYLII{OEF " A & 8 " EXHAUST "EA & E8" SIDE aoTTor !OYTOT MSA 1010.02 Yes '/f t2) Yes MBA 10't r.02 11 Yes 't"et t ' l Z YE MAA 4210.02 t6 Y5 v." 11) v.' t2\ t " t2:l t ' l a STATX)flS 2 3 a 5 6 7 I t t0 -1 nm) 5 .
CompoBus/D compatible EX140-SDN1 Q 0.1A F, H, J1, J2 Q, R1, R2, V Current consumption (within unit) OMRON Corporation: CompoBus/S (16 points) compatible EX140-SCS1 R1 OMRON Corporation: CompoBus/S (8 points) compatible EX140-SCS2 R2 Mistubishi Electric Corporation: CC-Link compatible EX140-SMJ1 V Type SR1/SR2 OMRON Corporation CompoBus/S compatible Type SV Mitsubishi Electric Corporation
(v) Repeat (iii) to (v) until eight shifts have been performed. (vi) After the last eight shifts, exclusive OR the result of (vi) with the next 1-byte (2nd byte). (vii) The processes (iii) to (vii) are repeated to all the remaining bytes of the message (3rd byte to the last byte). (viii) The 2-byte data of the result of (viii) is the CRC value. (2) Calculation example e.g.)