SMC Corporation of America
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Real-time switch output Hysteresis mode ON Flow rate conversion YES OFF P-1 P-2 Normal condition {0C, 101.3 kPa, Dry air} or standard condition (ANR) {20C, 101.3 kPa, 65% RH} can be selected.

A R JS20, 32, 40, 63 Center of sphere M M U U D J F H B E G P R A Max. thread depth P Model Center of sphere R Allowable eccentricity U Max. operating tension and compression force (N) (mm) M A B C D E F G H J JS10-4-070 JS16-5-080 0.5 0.5 0.5 0.5 0.75 1 4.7 5.8 7.3 8.5 11.6 14.3 M4 x 0.7 M5 x 0.8 26 34.5 8.5 12 15.5 17.5 18.5 23 9.5 13.5 12 16 21 24 31 41 1.5 2 4.5 5 5 7 4 6 7 8 11 14 4

Please refer to P.125. Specifications AP3200 Normally closed (N.C.)

P/N 3/8 B5 x 2 3/8 B5 x 3 3/8 B5 x 4 3/8 B3 x 2 #2 1/2 Barb P/N 3/8 B2 1/2 x 2 3/8 B2 1/2 x 3 3/8 B2 1/2 x 4 3/8 B2 1/2 x 5 3/8 B2 1/2 x 6 3/8 B2 1/2 x 7 #3 Barb P/N 3/8 B3 x 2 3/8 B3 x 3 3/8 B3 x 4 3/8 B3 x 5 3/8 B3 x 6 #4 Barb P/N 3/8 B4 x 2 3/8 B4 x 3 3/8 B4 x 4 3/8 B4 x 5 Thread Size 1 Barb # (Size) Quantity of Barbs Part Numbering Example 52 Available with #1, #2, #2

11 SO-010-24 MYB32-15AA5901 GMY32 RCS-10 NLP-32A MYB25-15AA5900 GMY25 RCS-8 NLP-25-19A RE A B 8.3 x 4.5 x 1.9 P-6 SO-016-9 P-9 SO-010-21 7.15 x 3.75 x 1.7 P-5 SO-015-16 P-7 SO-010-16 Nickel plated REC CX M2L040-07B82108 SO-010-24 M2L032-07B82107 SO-010-21 M2L025-07B82106 SO-010-20 CY 28 x 30 x 1 22.2 x 24 x 0.9 17.6 x 19.4 x 0.9 Since there is a possibility of improper operation, please

It varies depending on operating pressure.Refer to ''Flow Characteristics" p.4.6-29 and figure of "Max. air flow" p.4.6-28. Removes odor and gas ingredients in compressed air.

Surface of panel Surface of panel OUT SMC MPa MPa MPa MPa MPa MPa K K K K K K P P P P P P C C C C C C U U U U U U O O O O O O S S S S S S L L L L L L H H H H H H to to to to to to IN 58 Bottom of panel Bottom of panel 45 1 I N 1 I N 1 I N C S M C S M C S M 1 I N 1 I N 1 I N 2 OUT 2 OUT 2 OUT C S M C S M C S M 2 OUT 2 OUT 2 OUT In case of ARG30, dimension in height can be reduced by approx

Please consult P/A if using coolant liquid other than water based solution.

l (mm) l 300 200 300 MGTL80 P = 0.5MPa m 200 MGTM80 100 P = 0.5MPa Load weight m(kg) Load weight m(kg) 40 50 100 Larger than 75st 50st 25st Larger than 50st 30 20 50 40 25, 50st 10 30 5 4 3 2 20 10 20 30 40 50 100 200 300 1 1 2 3 4 5 10 20 304050 100 200300400 Eccentric distance l (mm) 10 400 Eccentric distance l (mm) MGTL100 300 200 300 MGTM100 200 P = 0.5MPa 100 P = 0.5MPa Larger than

Cushion adjustment screw 4-J GA Air release GA V V Width across flats G Width across flats G MM MM R (max.) d W W D d E E D M MA a a M MA F NA NA F K A A K C H + Stroke S + Stroke H B ZZ + 2 strokes (mm) Bore size (mm) A a B C d E F G GA J K M MA MM NA P R S T V W H ZZ D 0 -0.018 0 -0.021 0 -0.021 0 -0.021 0 -0.025 0 -0.025 0 -0.025 0 -0.062 0 -0.062 0 -0.074 0 -0.074 0 -0.074 0 -0.074 0

TA DA TB DB On the top, (left) On the bottom, (left) On the top, (right) On the bottom, (right) Output type N P NPN PNP Motor Controller TB TA DA Arrow mark shows handling side on controller.

Made to order options (see Page 55) Low temperatureresistant (XB6) resistant Modification of rod end auto switch Page P 8 P 1 7 P32 fechnical Data Auto switch guide P 4 6 P 3 8 ?

Caution Operation instructions Consult P/A when using solvents other than water.

Contact P/A. DC(+) Sensor input: DC+ 1 to 5V CH3_OUT1 (Orange) DC() N.C. CH4_OUT1 (Pink) DC(+) Internal data error. Sensor input: DC+ 1 to 5V Load Load Load Load Load DC() DC() (Blue) N.C. Shut off the power supply and turn it back on. Contact P/A if it does not recover. Internal data error.

P P CM PTC PTC C01 FM PRS C02 OLR PC C11 ILS TB GFCI 12 3 13.S S 13 13.1 13.2 IDF15E1-20 L N PE M3 6.5mm 1.25mm 2 13 1 13.S 13.3 IDF15E-10-S PE N L TB CM ILS FM PTC OLR OLR ILS PTC PTC CM PRS C01 C02 TB C01 C02 C11 FM C11 PRS P 13 2 14.T T 14 14.1 IEC 14.2 AC200V, 1A (AC10mA, DC30mA) 14.3 ON 3 () 5 /1 () 14 1 14.T 14.4 PE 1 2 3 PE: LN: LN PE M3 6.5mm

M ast er Pow er SU P. ( D C24V) PRO FI BU SD P Sl ave1 O t her D P equi pm ent Sl ave2 O t her D P equi pm ent The pressure proportional to the signal on the second side is obtained.