C D A B (mm) D-A9, D-A9V (mm) D-F9, D-F9V (mm) D-F9W, D-F9WV A B A B A B Bore size 16 25 32 Operating range Bore size 16 25 40 Operating range Bore size 16 25 40 Operating range 54 106 58 102 57 103 54 156 58 152 57 153 11 8.5 8.5 85 245 89 241 88 242 (mm) (mm) (mm) C D C D C D Bore size 16 25 32 Operating range Bore size 16 25 32 Operating range Bore size 16 25 32 Operating range 27 133
(See note 2.) .I" END "B Er{O "4" El|D o c c o o c o st noit I Srrlro[ 2 $rl|oir ! STA!|O|{ a @ World Wide QS\E Support... North American Branch Offices For a branch office near you call: 1-800-SMC-SMC1 (762-7621) SMC Pneumatics lnc. (Milwaukee) SMC Pneumatics lnc. (Richmond) SMC Pneumatics Inc.
Correction Factors Data A: Inlet Air Temperature Data C: Outlet Air Pressure Dew Point Data E: Air Flow Capacity Model IDF100FS IDF125FS IDF150FS Outlet air pressure dew point F (C) Correction factor Inlet air temp.
When P2 + 0.1 b, choked flow P1 + 0.1 293 Q = 600 x C (P1 + 0.1) (1) 273 + t When P2 + 0.1 > b, subsonic flow P1 + 0.1 2 P2 + 0.1 b P1 + 0.1 Q = 600 x C (P1 + 0.1) 1 (2) 1 b 293 273 + t Q : Air flow rate [dm3/min (ANR)], dm3 (Cubic decimeter) of SI units are also allowed to be described by L (liter). 1 dm3 = 1 L 8 VXB Series C : Sonic conductance [dm3/(sbar)] b : Critical pressure
4 C-9 MYMK-40-Stroke MYM50-15AK0502 GMY50 MC-16 P44 C-4 C-11.2 MYM63-15AK0503 GMY63 MC-20 P53 C-4 C-14 MYM16-15AK0500 GMY16 MYB16-15-A7163 P12 4 x 1.8 x 1.1 7 x 4 x 1.5 MYMK-16-Stroke 7.15 x 3.75 x 1.7 8.3 x 4.5 x 1.9 C-6 MYMK-25-Stroke C-7 MYMK-32-Stroke Polyurethane Note) Two types of dust seal bands are available.
(PLC ) Alarm _Comment _061 (01-061) <> (1) ()1(ABS)2(INC) (2)PLC 15ms(30ms) 13.2[2](P.53) 3D B RESET (+)(-) Alarm _Comment _062 (01-062) (+)(-) 3E B RESET <> (01-096) C RESET <> -64- (01-097) <> C RESET <> <>OFF JOG OFF (01-098) OFF DRV C RESET <>ON (SVRE ON) DRIVE ON (01-099) <> SET OFF DRV C RESET <> <>12 (01-103) C RESET 1 [] A [a ] 2 [SW] [] A [a ] <> <>
B RESET PLC 15ms30ms 2(P.40) 49 - +JOG 1-052 B RESET +1-096 C RESET (1-097) C RESET OFF JOG OFF 1-098 OFF DRV C RESET ON SVRE ON DRIVE ON 1-099 SETOFF DRV C RESET 12 (1-103) 1 [] A [a ] C RESET 2 [SW] [] A [a ] () (1-106) C RESET SVON 1 1-144 RESETS VON (1) D 50 - ON (M24V) 1-145 RESETS VON (1) D 1-146 RESETS VON (1) D (C24V) RESETS VON (1) 1-147
, 1 (3m) CN4 CN1 EMG C24V M24V 24V 0V 0V 20 - 2 DC24V EMG () DC24V 0V Ry Ry U (1 ) BK RLS EMG Ry C 24V 24V 0V 0V M 24V (2 ) BK RLS Ry EMG C 24V 24V 0V M 24V 0V (3 ) BK RLS Ry EMG C 24V 24V 0V M 24V 0V OFF 21 - 3() DC24V M24V EMG () DC24V 0V Ry Ry U (1 ) BK RLS EMG C 24V Ry 24V 0V M 24V 0V (2 ) BK RLS EMG C 24V Ry 24V 0V M 24V 0V (3 ) BK RLS EMG C 24V Ry 24V
24V 0V4 DC24V 0V 1(DC24V) 2LK RLS 3LK RLS 26 - 6.4 1 (3m) SI PWR (3)EMG (2)M 24V (1)C 24V 0V(4) DC24V 0V 27 - 21 DC24V EMG DC24V 0V Ry U Ry LK RLS6 Ry (1 ) (3) EMG (2) M 24V (1) C 24V 0V4 DC24V 0V LK RLS6 Ry (2 ) (3)EMG (2)M 24V (1)C 24V 0V4 DC24V 0V LK RLS(6) Ry 3 (3)EMG (2)M 24V (1)C 24V 0V(4) DC24V 0V OFF 28 - 32 DC24V M24V EMG () 0V DC24V Ry (1 ) (3)EMG
O O MHS2MHS4 MHS3 15 MHSJ3 C J O O J J J 16 MHSH3 C A O O O A A 17 / / C S (P) P O O S O P P C / ; ; ; ; C 18 4-3 3 MHS2 MHS3 MHS4 1 C C 4 2 5 mm Nm 16 M30.5 2.5 0.6 20 M30.5 2.5 0.6 25 M40.7 3 1.4 32 M50.8 4 5.1 40 M50.8 4 5.1 50 M61 5 8.6 63 M81.25 6 21.6 80 M101.5 8 24 100 M121.75 10 42.2 125 M142 12 67.7 19 MHSJ3 4 1J J 5 2 C C 6 3 mm Nm 16 M2.50.45 2 0.3
4 C-9 MYM50-15AK0502 GMY50 MC-16 P44 C-4 C-11.2 MYM63-15AK0503 GMY63 MC-20 P53 C-4 C-14 GMY20 GMY16 GMY25 GMY32 MYB20-15-A7164 MYB16-15-A7163 RCS-8 RCS-10 P16 P12 TMY-25 TMY-32 5.1 x 3 x 1.05 4 x 1.8 x 1.1 7.15 x 3.75 x 1.7 8.3 x 4.5 x 1.9 7 x 4 x 1.5 7 x 4 x 1.5 C-6 C-7 MYMK-20-stroke Side seal assembly Polyurethane MYMK-16-stroke MYMK-40-stroke MYMK-25-stroke MYMK-32-stroke Note) Two
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 (
BJ4-1 (Switch bracket: White) BJ5-1 (Switch bracket: Transparent) (2) BMA2-A(S) is a set of c and d. Band (c) is mounted so that the projected part is on the internal side (contact side with the tube).
Analog Output Flow/Analog output Output A B C Voltage output 1 V 1.1 V 5 V Current output 4 mA 4.4 mA 20 mA C Model Rated flow [L/min] Minimum Maximum LFE1 0.5 20 LFE2 2.5 100 LFE3 5 200 B A Outside the range 0 Min.
9 i@2 q r y #0$0 $2 w $3 #8 @9 A C CJ1 CJP CJ2 B CM2 Section A !2 !2 !22 $1 e $8 o $7!1@1!6 @5 u!0 $6 #7 #6 $4@8#9 @6 #4 C85 with through piston rod C76 100 80 63 50 40 32 CG1 #1 #2 Section B Section C MB MB1 80, 100 80, 100 CP95 Description Material Note Parts list Description Material Note Parts list No. q w e r t y u i o !
Q Approx. 300 F D Approx. 280 D Q F C G (PF) 1/2 C R R E E B A H 2-P Port size 2-P A B H 2-M Port size 2-M Thread depth N L L K K Conduit terminal: T F (Q) 34 25 U R C G (PF) 1/2 E B A H D 2-P Port size (S) 2-M L K N.C.
Solenoid Pilot ODerated Series: NVJ3OO t_l f ;+;,a"ten"tdPit.top"[t.o-Serie-f,tV-.t-SOOO] iMKx;;*.Ki -t witrr-SuigJv.lt g" --lzvo-c-1 rw I t l r v n c i l i o l 5 w t t r12V0C 1l i0.r5w)i l e v P { a I 6VDC tl sVDC I 1W I NVJ100: Can be used for vacuum application. NVJ300: jSuppressor L \_l_, ! 1 r-, Diodel ;lCoil I sru"o !
Solenoid Pilot ODerated Series: NVJ3OO t_l f ;+;,a"ten"tdPit.top"[t.o-Serie-f,tV-.t-SOOO] iMKx;;*.Ki -t witrr-SuigJv.lt g" --lzvo-c-1 rw I t l r v n c i l i o l 5 w t t r12V0C 1l i0.r5w)i l e v P { a I 6VDC tl sVDC I 1W I NVJ100: Can be used for vacuum application. NVJ300: jSuppressor L \_l_, ! 1 r-, Diodel ;lCoil I sru"o !
Connector C (Terminal no.) Cable length (L) [m] A1 1 2 5 6 (17.7) (10.2) (14) (18) 1 3 5 8 A B C 1.5 3 5 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) 10 15 Actuator side Controller side 20 (5.5) (6.3) (5.7) (14.2) Connector C (Terminal no.)