K J H G F E D C B A 475 432 512 472 525 482 562 522 L Booster part no. Tank model VBA2100-03 VBA2200-03 VBA4100-04 VBA4200-04 VBA2100-03 VBA2200-03 VBA4100-04 VBA4200-04 394 Rc 3/8 VBAT20 VBAT20S 305 206 674 180 200 100 400 Rc 1/2 430 Rc 1/2 444 Rc 3/8 VBAT38 VBAT38S 355 256 824 205 250 150 500 Rc 3/4 480 Rc 1/2 14-9-9
SUP. 3 1 2 3 1 2 3 1 2 E Padlock mounting position D C SUP J 2 2 x K A T IN OUT AA 3 L 2 x P1 (Port size) B V BB U Built-in silencer (Option) M (Width across flats) 3 N P2 (Port size) Q EXH Y Bracket (Option) R S X W Dimensions (mm) Standard specifications Model P1 P2 A B C D E F G H I J K L M 1/8, 1/4 1/4, 3/8 1/8 1/4 3/8 1/2 1/2 66.4 80.3 104.9 110.4 134.3 22.3 29.4 38.5 42 53 40 53 70
d e XAH7 XC XL (mm) X X0.02 a b c d e Bore size (mm) XX section detail drawing 63 80 100 11 17.8 10 7 18.5 13.3 20.3 12 8 22.5 2-R3 15.3 23.3 13.5 10 30 8 6+0.05 0 6 WB Z WA XX section T groove dimensions QQ section detail drawing Notch spring force adjustment bolt 4-OA through L 4-MM depth ML QQ section 22.5 4-OB counter bore depth OL B-NN depth NL XX section Z WA Q 45 RA X0.02 RB RC T VB
Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.
This lowers the pressure in the diaphragm chamber q and the force generated by the pressure regulator spring e pushes down the diaphragm.
This lowers the pressure in the diaphragm chamber q and the force generated by the pressure regulator spring e pushes down the diaphragm.
d e f g Nil Reed switch L R Solid state switch S h Nil L R S Operating direction Left Right a b h g d c f e Note) Lead wire length symbols 0.5m .
Size Symbol SMC SMC 2 2 1 2 2 2 2 A B C 6 x 4 4 x 3 1/4" x 5/32" 3/16" x 1/8" 1/8" x 0.086" SMC P Panel mount union U Union : Basic size : With reducer : Basic size : With reducer Note) Check the IN/OUT side fitting size and fitting type for selecting the fitting. SMC E 2A SN LQ3 LQ3 fittings Caution 1.
Refer to pages 5 and 6 for detailed selection procedures. 2 How to Select Series E-MY2 Moment / E-MY2C E-MY2C/M3 E-MY2C/M1 E-MY2C/M2 50 40 50 40 50 40 30 30 30 20 20 20 10 10 10 Moment (Nm) Moment (Nm) Moment (Nm) 5 5 5 E-MY2C25 E-MY2C25 4 4 4 3 3 3 E-MY2C25 2 2 2 E-MY2C16 E-MY2C16 E-MY2C16 1 1 1 0.5 0.5 0.5 100 200 300400500 1000 1500 100 200 300 400500 1000 1500 100 200 300 400500 1000
C SM 2 OUT A A IN OUT t A-A BLEED w y Note Component Parts Material No.
Rail mounting hole pitch 12.5 C 9 8 7 6 5 4 3 2 1 0 No.
SW RESET RUN2 RUN1 OV INPUT 6 7 5 8 4 + 9 3 SET UP A 2 B 1 0 C D 1 E F 0 to 10V V R 1 OUTPUT SET UP BALANCE CONTROLLER VYU5-D 2 V R 2 OV ERR.
SMC vacuum pad Search http://www.smcworld.com Catalogs ZP2 ES100-76 ZP3 ES100-100 Best Pneumatics Pad diameter Symbol 16 18 20 25 30 32 40 46 50 63 80 100 125 150 250 300 340 U C C C C C C MU EU AU C C C C C C C UM UT C ( ( CT C C B C C C C C Note) Note) J ( ( ( MB ( ZJ ( ( D C C C AN Note) Note) Note) MT ( ( ( W U H C C C C C C ( ( ( HT ( ( HB C C C C ( C C ( 30 x 50 ( HW U ( ( ( (
Handle Note Body 1348102#1 ADC POM e Piston assembly Bonnet 1348104A r POM POM, NBR Valve 1348105 t Brass, NBR Valve spring 1348109 y Stainless steel 1348108 (For 0.85 MPa) Steel wire Adjusting spring u 1348108-1 (For 0.3 MPa) Dimensions Panel cutout dimensions 26 R2.5 SUP OUT SMC K C O P A A L U S H 12 37 54 25 1.6 (Max. thickness 4.5) 44 79.5 (When regulating pressure = 82) 5.4 10 31.5
C J G5-S CV Maintenance Snap Ring Installation/Removal Caution Caution MVGQ 1. For installation and removal, use an appropriate pair of pliers (tool for installing a type C snap ring). 2.
C J G5-S CV Maintenance Snap Ring Installation/Removal Caution Caution MVGQ 1. For installation and removal, use an appropriate pair of pliers (tool for installing a type C snap ring). 2.
Ventilation (H/X inlet) Ball tap Expansion TS E Circulating fluid return port valve A Level switch Expansion Fluid level gauge valve B Customer's E machine Temp. sensor (Ref. discharge (Heat load) Press. sensor (Outlet) TS PS TS Heat Temp. sensor Circulating fluid outlet port exchanger (Outlet) Press. sensor (Ref. low press.)
4.53 4.95 5.99 6.85 7.70 8.55 50 MGPM50 3.36 4.00 4.73 5.37 6.01 6.65 7.29 7.93 9.54 10.8 12.1 13.4 63 MGPM63 4.18 4.94 5.78 6.54 7.29 8.05 8.80 9.56 11.4 12.9 14.4 15.9 80 MGPM80 6.49 7.43 8.67 9.61 10.5 11.5 12.4 13.4 15.8 17.7 19.5 21.4 100 MGPM100 10.5 11.9 13.6 14.9 16.3 17.6 18.9 20.2 23.6 26.2 28.9 31.5 (kg) MGPL12100/MGPA12100( (mm) (mm) 10 20 25 30 40 50 75 100 125 150 175 200 250
This is the same concept representing the easy to run through as sonic conductance C (effective area). (3) Formula of flow rate When P2 + 0.1 0.5, choked flow P1 + 0.1 293 Q = 120 x S (P1 + 0.1) (3) 273 + t When P2 + 0.1 > 0.5, subsonic flow P1 + 0.1 293 Q = 240 x S (P2 + 0.1) (P1 P2) (4) 273 + t Conversion with sonic conductance C: S = 5.0 x C(5) Q :Air flow rate[dm3/min(ANR)], dm3 (