Press key f or 3 seconds or m ore. i s di spl ayed f or approx. 2 seconds and ( current ) pressure i s di spl ayed af t erw ards Lock keys ( ref er t o P11) 9 Rel at i on bet w een set t i ng of gai n and response t i m e Response t i m e Q ui ck Sl ow Set t i ng of gai n G L. 9 G L. 8 G L. 7 G L. 6 G L. 5 G L. 4 G L. 3 G L. 2 G L. 1 G L. 0 Rel at i on bet w een set t i ng and sensi t
C H G F E D B A Port size Model J K 959 317 289 363 157 152 910 260 R 3/4 IDU11C/11D 571 580 30 70 1009 337 309 383 207 175 960 280 R 1 IDU15C : Power source 220 to 240VAC 7 Refrigerated Air Dryer Series IDU Medium IDU22C, 22C1, 37C, 37C1, 55C, 75C Compressed air inlet Compressed air outlet (K) B (H) A (F) (G) (E) Run light Operation switch (Aftercooler) (Aftercooler) Stop switch Outlet air
Thread type AF30 to 60 J Note 5) Drain guide 1/4 Thread type Flow direction: Right to left Description Applicable model Symbol Nil N Note 2) Rc NPT G Nil N Note 1) AF20 to 60 R Rc NPT G AF30 to 60 J Note 5) Drain guide 1/4 Name plate and caution plate for bowl in imperial units (PSI, F) F Note 3) Flow direction: Right to left AF30 to 60 F Note 2) R Z Note 6) AF20 to 60 Note 1) Drain guide
polyurethane tubing Barb fitting U4 For 4 soft tubing Width across flats H G J Rotating K Non-rotating Width across flats E C (Buffer body) Model 2 2 B D A B C D E F G H Vacuum inlet direction q Pad dia.
Speed 300 mm/s Dimensions Basic Type REA REA 25, 32, 40 Effective thread depth J L 0 -0.1 NN G 4-MM H G B 2Port size Direct Mount Type REAR Direct Mount Type REBR X D I Slider Type/Slide Bearing REAS Slider Type/Ball Bushing REAL NB NB N N K W T F NA S + Stroke ZZ + Stroke F R (mm) MM x J B D F G H I K L N NA NB NN Model Port size Rc 1/8 REA25 REA32 REA40 46 27.8 13 8 20.5 34 10 70 M5 x 0.8
Output deviation factor (% F .S.) 0.6 0.5 0.4 Return 0.2 0 0 0.2 0.4 0.5 Out 0.6 0.8 0 25 50 75 1 1 2 3 4 1 5 100 Input signal (%F .S.)
port M5 x 0.8 Operation direction A (Plug: M-5P) 49 46 38 5 22 12 19 4 40 25 Y Y 5.5 Operating port M5 ~0.8 24 84 Operation direction B (Plug: M-5P) Operation direction B A 7 6.5 13 10 10 13 A 14.8 30 7 24 A 15.8 Z Cross section AA (scale 50%) (N-1) x H G H 6 depth 4.5 5H9 +0.03 N-M4 x 0.7 thread depth 8 0 Bottom through hole 3.3 5H9 +0.03depth 4.5 0 F E Model J N H G F E Z MXW8-25 64 3
Supply port Rc1/8 Piping option C Detection port 4 One-touch fitting 6 One-touch fitting Supply port G1/8 (ISO1179-1) Piping option F Detection port G1/8 (ISO1179-1) -15No.PS-OMT0002-E 2 About this product Model ISA3-F ISA3-G ISA3-H Lead wire with connector M12 lead wire with 4 pin connector, 4 cores, 4, 5 m Conductor O.D.: 0.72 mm, Insulator O.D.: 1.14 mm Lead wire M12 lead wire with 4 pin
Kit type Thread type Port size F T Rc G NPT/NPTF 1 2 S Kit T Kit Symbol C3 C4 C6 C8 C10 C12 N1 N3 N7 N9 N11 M5 02 03 B T02 T03 G02 G03 VQC4000 Port size VQC2000 VQC1000 3.2 One-touch fitting 4 One-touch fitting 6 8 10 12 1/8" 5/32" 1/4" 5/16" 3/8" M5 thread Rc 1/4" Rc 3/8" Rc 1/4" bottom ported 1/4" NPT/NPTF 3/8" NPT/NPTF 1/4" G 3/8" G U-side end plate assembly 12 U-side end plate assembly
AFF75B AFF-EL75B AFF2C AFF-EL2B AFF-EL2B-F AFF4C AFF-EL4B AFF-EL4B-F AFF8C AFF-EL8B AFF-EL8B-F AFF22C AFF-EL22B AFF-EL22B-F AFF37B AFF-EL37B AFF-EL2B AFF-EL37B AFF-EL4B AFF-EL8B AFF-EL11B AFF-EL22B AFF-EL75B Except option F For option F Element assembly Cotton paper, others AFF-EL11B AFF-EL11B-F 4 AFF-EL2B-F AFF-EL4B-F AFF-EL8B-F AFF-EL11B-F AFF-EL22B-F 1) Element assembly: With gasket
AFF75B AFF-EL75B AFF2C AFF-EL2B AFF-EL2B-F AFF4C AFF-EL4B AFF-EL4B-F AFF8C AFF-EL8B AFF-EL8B-F AFF22C AFF-EL22B AFF-EL22B-F AFF37B AFF-EL37B AFF-EL2B AFF-EL37B AFF-EL4B AFF-EL8B AFF-EL11B AFF-EL22B AFF-EL75B Except option F For option F Element assembly Cotton paper, others AFF-EL11B AFF-EL11B-F 4 AFF-EL2B-F AFF-EL4B-F AFF-EL8B-F AFF-EL11B-F AFF-EL22B-F 1) Element assembly: With gasket
3 position double check: VQ565 0 1 0 1 0 1 0 1 G H G H G H G H 194.5 (200) 121.3 53 73.2 (78.7) Indicator light 213 121.3 91.5 13.5 (Port B) 59.5 53 (Port A)17.5 13.5 (Port B) 59.5 (Port A) 17.5 Indicator light SMC 2 4 2 4 SMC A B A B 53 40 66 162 50 41 37 31.5 18 53 40 66 B A A B Manual override 1 3 5 14 12 14 5 1 3 12 53 2-6.5 Mounting hole 35 2-6.5 Mounting hole 35 53 Manual override
ISE80() ISE80H() ZSE80() ZSE80F() IP65 050 -1060 () 3585RH AC250 V 1 2 M (DC50 V ) 3F.S.(25 ) 3 (N.P) 3.52 m 4 (A.B) 0.15 mm 2(AWG26) 5 (R.T.S.V) 0.95 mm CE UL/CSA RoHS 02 N02 F02 C01 A2 B2 R1/4 NPT1/4 G1/4 Rc1/8 URJ1/4 TSJ1/4 () 117 g 118 g 114 g 120 g 111 g () 89 g 90 g 86 g 86 g 92 g 83 g 110 -5 Pam 3/s 110 -10 Pam 3/s A B C 0.0-101.0kPa 0 -101.0 kPa -100.0100.0kPa -100
, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Workpiece transfer direction 17.5 61 RSQB -K 16 20 Bore size: 16, 20 E 4-O counterbore 2-N through Q 2-P F Stroke Y G T D W 20 (22) Workpiece transfer direction U V M 10 (11) H + Stroke A + 2 stroke B + Stroke 32 40 50 RSQB -K Bore size: 32, 40, 50 Stroke F Q 2-P Z J I G W E D T U 4-
M SI*7 N02*1 NPT1/4 6 F02*1 G1/4*2 SI 1 2ISO1179-1 7:L/min :L 1 (11) L*3 3 OUT1 OU2 A NPN NPN B PNP PNP C NPN (1~5V) D NPN (4~20mA) E*4 PNP (1~5V) F*4 PNP (4~20mA) G*4 NPN *5 H*4 PNP *5 4 5 -10No.PF-OMO0004CN-E 1 W N (2 m) (2 m) + () 2 R S () () T V () () -11No.PF-OMO0004CN-E / ZS-33-D 2m ZS-33-F ZS-33-J () ZS-33-JS () ZS-33-M () (3.02 ) ZS-33-MS () (3.03 ) ZS-33-R DIN
;;l:=i.:., i:illl:i'l:l ,,:.a ;l';:':'':'" .r*,*i9.X,i t1*ff ,i=gr.g . ii : * f i'.f i,,.:,a.:.aa.':.: -: "' ,t*11*t3.s.&1*fi::{{'i: r:l:i, i:ar&i1 f i!.-r ..,;.;:li.i..i.i;t,l.il i.ii=i i i=i li,i !;;r,i:i l,t,t.t,::,:,,.4 a',::r:t:,. . *,,t;,,-:,i,:li=:3;d*:a*,,r.i,i t.i-i+,,i=r.t.r,,..r,r:,:t:*,:t:t i.3.li!i.i*i*!!i.
Head flange: EQY H -G LL FV M FV M FZ FX FT FX FZ 4 x FD FT 4 x FD The head flange type is not available for the EQY32.
Calculation of applied lateral load F The lateral load F equals the coefficient between the workpiece and the conveyor. Thus, from the total amount of the work piece and coefficient of friction, F = x m g (N) 1. Calculation of applied lateral load The lateral load F equals the total load of the workpiece. Thus, F = x m g (N) 2.
Calculation of applied lateral load F The lateral load F equals the coefficient between the workpiece and the conveyor. Thus, from the total amount of the work piece and coefficient of friction, F = x m g (N) 1. Calculation of applied lateral load The lateral load F equals the total load of the workpiece. Thus, F = x m g (N) 2.
RY RT [mm] Bore size [mm] Stroke range [mm] A AL B B1 BN BP BQ C D E F GA GB GC GD GL GR Without rod boot With rod boot 40 Up to 800 20 to 800 30 27 60 22 96 1/4 1/4 44 16 32 10 85 15 26 54 10 10 50 Up to 1200 20 to 1200 35 32 70 27 108 1/4 1/4 52 20 40 10 95 17 27 59 13 12 63 Up to 1200 20 to 1200 35 32 86 27 115 1/4 1/4 64 20 40 10 102 17 26 67 18 15 80 Up to 1400 20 to 1400 40 37 102 32