Inlet air pressure [MPa] Inlet air temperature [C] Allowable pressure drop P [MPa] Compressed air supply capacity Q [l/min (ANR)] Note: F = (C x 1.8) + 32 1MPa = 145psi 1l/min = 0.0353SCFM Dew point temperature conversion chart 60 0.5MPa 0.7MPa 0.9MPa 50 0.3MPa 40 Atmospheric pressure 0.1MPa Pressurized dew point temperature C 30 20 10 0 10 20 30 40 50 60 50 60 20 10 0 10 20 30 40 30 Atmospheric
I F RHC (mm) (mm) MK(2) M 30.5 32 41.5 K 46 58 68 J 40 46.5 55 I 76.5 91 110 N 16 15 19 H 73 88 106 F 93.5 107.5 130.5 O 18.5 19.5 21.5 N 16 15 19 M 13 15 19 K 46 58 68 J 40 46.5 55 H 73 88 106 F 76.5 91 110 Applicable cylinder ML2B25 ML2B32 ML2B40 Applicable cylinder ML2B25 ML2B32 ML2B40 RS Q G MM 16 21.5 24.5 PA Rc 1/8 Rc 1/8 Rc 1/4 LL 28 30.5 37.5 KK 15 16 17.5 O 69 84 102 PP 56 62.5 77
I F RHC (mm) (mm) MK(2) M 30.5 32 41.5 K 46 58 68 J 40 46.5 55 I 76.5 91 110 N 16 15 19 H 73 88 106 F 93.5 107.5 130.5 O 18.5 19.5 21.5 N 16 15 19 M 13 15 19 K 46 58 68 J 40 46.5 55 H 73 88 106 F 76.5 91 110 Applicable cylinder ML2B25 ML2B32 ML2B40 Applicable cylinder ML2B25 ML2B32 ML2B40 RS Q G MM 16 21.5 24.5 PA Rc 1/8 Rc 1/8 Rc 1/4 LL 28 30.5 37.5 KK 15 16 17.5 O 69 84 102 PP 56 62.5 77
Compact Rotary Actuator Rack-and-Pinion Type/Sizes: 10, 15, 20, 30, 40 Series CRQ2 Compact Rotary Actuator Rack-and-Pinion Type/Sizes: 10, 15, 20, 30, 40 Series CRQ2 Piping can be installed from one end Body can be used as a flange Compact design saves mounting space Uses internal cushioning 10, 15 : Rubber bumper 20, 30, 40: Air cushion 10: 17mm 15: 20mm 20: 29mm 30: 33mm 40: 37mm 2 auto
8 6 4 2 40 38 36 34 32 30 28 26 24 22 20 18 16 14 12 10 Input/output connector (CS0) 3 7 5 1 39 37 35 33 31 29 27 25 23 21 19 17 15 13 11 9 Power supply terminal block 20 18 16 14 12 10 8 6 4 2 Input/output connector (CS1) 19 17 15 13 11 9 7 5 3 1 Green Red F E D C B A 9 8 7 6 5 4 3 2 1 0 4 3 2 1 CN1 4 3 2 1 CN2 4 3 2 1 CN3 4 3 2 1 CN4 4 3 2 1 CN5 4 3 2 1 CN6 4 3 2 1 CN7 4 3 2 1 CN8 4 3 2
T) PB View Z Dimensions (N.O. valve, double acting valve) (mm) A B C D M N T U V Model LVQ2 S-S07-2 LVQ3 S-S11-2 LVQ4 S-S13-2 LVQ5 S-S19-2 LVQ6 S-S25-2 2 1 25.5 46 31.5 58 7 15 35.3 10.6 7 2 1 23.5 47 29.5 59 7 15 36.9 16.5 10 2 1 23.5 47 29.5 59 7 20 37.9 22 2 1 35 70 41 82 7 20 64 25 17 2 1 35 70 41 82 7 20 66 32 17-5-81 20 Series LVQ Fittings and Special Tools Fittings Changing tubing
Number of fingers and therefore, mg F 2 x With "a" as the safety margin, F is determined as follows: mg F = x a 2 x When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg 10 x work piece weight 20 x work piece weight (Note) Even in cases where the coefficient of friction is greater than = 0.2, for safety reasons, P/A recommends selecting a gripping force which
Lubricant Table ttanuf9ctuf's I LuDrrcrm BP THB 32 Castrol Perfecto T32 ESSO/Exxon TERESSO 32 Mobil DTE Lig ht Shell Turbo T32 @ 4 Port Solenoid Yalve NVZlOOO Symbol NVZ1120 A B NVZ1120-OG-t\,ts-F NVZlI2GOG.M5 Model o.2 (90) Spec ifications Air, Inert gases Operating Pressure range 20-1ooPst(1.5Ambient and fluid Max.120'F(50"C) Response time 15 ms or less (atTOPSI) Max.operating 900 cpm
(SW1) (SW1) (SW2-3, SW2-4) (SW2-3, SW2-4) 0 1 0 17 1 2 1 18 2 3 2 19 3 4 3 20 4 5 4 21 5 6 5 22 6 7 6 23 ON ON 7 8 7 24 8 9 8 25 1 2 3 4 1 2 3 4 9 10 9 26 A 11 A 27 B 12 B 28 C 13 C 29 D 14 D 30 E 15 E 31 F 16 F 32 -13- Auxiliary axis number Auxiliary axis number Axis selection rotary switch Axis selection rotary switch Control Control setting switch setting switch axis No. axis No.
For with cap Applicable absorber B C h1 h2 MM d f h M6 x 0.75 MM B 2 C 8 For basic type RBC08S RBC10S RBC14S RBC20S RBC27S RJ06J RB08J RB10J RB14J RB20J RB27J RB08S RB10S RB14S RB20S RB27S RJ08 12 13.9 6.5 23 M8 x 1.0 9 15 9.2 RJ10 M8 x 1.0 14 16.2 8 23 M10 x 1.0 11 15 4 12 13.9 RJ14 M10 x 1.0 19 21.9 11 31 M14 x 1.5 15 20 4 14 16.2 M14 x 1.5 RJ2015 27 31.2 16 40 M20 x 1.5 23 25 6 19 21.9
4 5 0 1 2 3 4 5 0 1 2 3 4 5 V V V VY130-6 VY140-6 VY150-6 1 1 1 0 2.5 5 7.5 10 0 2.5 5 7.5 10 0 2.5 5 7.5 10 V V V VY130-7 VY140-7 VY150-7 mA mA mA 4 0 8 12 16 20 4 0 8 12 16 20 4 0 8 12 16 20 2 2 2 VY130-8 0 5 10 15 20 VY140-8 0 5 10 15 20 VY150-8 0 5 10 15 20 3 3 3 mA mA mA Command signal Command signal Command signal VY1700/1701 VY1900/1901 Command signal voltage (current) for starting
420 mA 15V/420mA NC DC(-) 12 V 300 24 V 600 PF3W5--1T 15 V DC(+) 15V 15 V 1 k 15V DC(-) -22No.PF-OMN0009CN-F 1 3 OFF 2 1 PF3W5--1(15 V ) 2 PF3W5--2(420 mA ) 3 PF3W5--1T(15 V ) LED() -23No.PF-OMN0009CN-F , -24No.PF-OMN0009CN-F PF3W5 , ,, (), DC(+) DC(-) (OUT1) (OUT2) 40 () -25No.PF-OMN0009CN-F DC(+) DC(-) 40 (21) -26No.PF-OMN0009CN-F LED 110% POWER FLOW 10110 POWER
) Black F 0V (power supply) (Shield) G Shield 3 High Precision Scale Cylinder Series CEP1 Construction 12, 20 !
20 stations P, R Port size 1/8 1/4 3/8 1/2 VFA1000 VFA3000 VFA5000 Symbol Up to 10 stations for VV5FA5-20, and up to 15 stations for VV5FA5-21. 30 20 21 The A and B ports are made on the top.
J Cylinder tube outer circumference: Hard chrome plated + special treatment L 0 -0.1 H B 2-P (Piping port) G E G NN ( I ) D X NA R Mounting nut N W K N F S + Stroke F ZZ + Stroke H B E G Mounting nut NN NA F N 12CY3B15 (mm) L 57 66 70 80 92 J 6 6 8 8 10 K 11 8 10 15 16 I 12 15 18 23 G 5.5 7.5 7.5 8 11 H 13 20 20.5 22 29 F 10 13 13 16 16 E 2 2 2 2 3 NN M10 x 1 M20 x 1.5 M26 x 1.5 M26 x 1.5
Cable length (L) [m] A1 1 2 5 6 (17.7) (10.2) (14) (18) 1 1.5 3 3 5 5 8 8 A6 B1 B3 A1 A3 B6 (13.5) 1 2 (5.7) 15 16 Connector B Connector D (30.7) L (11) (14.7) (10) 8 A B C LE-CP/Cable length: 8 m, 10 m, 15 m, 20 m ( Produced upon receipt of order) A 10 B 15 Actuator side Driver side C 20 (5.5) (6.3) (5.7) (14.2) Connector C (Terminal no.)
PNP 1~5 V F PNP 4~20 mA G NPN H PNP J 1~5 V 1~5 V K 4~20 mA 4~20 mA OUT2 C (1) T V + (2m) N M L/min L G gal/min gal F gal/min gal J L/min L GFJ : 1[L/min]0.2642[gal/min] 1[gal/min]3.785[L/min] []=9/5[]+32 15 V PF3W5--1(T) -9No.PF-OMN0011CN-C C (1 ) T V -10No.PF-OMN0011CN-C / ZS-26-B ZS-26-C ZS-26-01 ZS-40-W 2 m (e-con) ZS-28-CA-4 1 ZS-40-Y 10 -11No.PF-OMN0011CN-C
Number of fingers and therefore, mg F 2 x With "a" as the safety margin, F is determined as follows: mg F = x a 2 x When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg 10 x workpiece weight 20 x workpiece weight (Note) Even in cases where the coefficient of friction is greater than = 0.2, for safety reasons, SMC recommends selecting a gripping force which
Number of fingers and therefore, mg F 2 x With "a" as the safety margin, F is determined as follows: mg F = x a 2 x When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg 10 x workpiece weight 20 x workpiece weight (Note) Even in cases where the coefficient of friction is greater than = 0.2, for safety reasons, SMC recommends selecting a gripping force which