SMC Corporation of America
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A E D G F C P J M N H K O L mm A B C D E F G H J K L M N O P IDFC60 R1 307 745 605 161 405 681 71 330 704 355 126 94 46 12.5 IDFC70 R1-1/2 342 890 825 176 480 905 68 365 849 390 81 20 IDFC80 R2 438 957 863 169 480 958 219 78 100 11.0 463 916 485 170 IDFC90 13 mm IDFC80 IDFC90 IDFC60 745 957 () () 704 916 () 355 () 330 485 463 IDFC70 890 () 849 () 390 365 IDFC60/70/80/90 Series 7-3 IDX-OM-W095

EX140-SMJ1 Applicable system CC-Link Ver.1.10 Occupied station 1 station Station number setting range 1 to 64 (Set with a rotary switch) Communication specification Station type Remote I/O Communication speed 156 k/625 k/2.5 M/5 M/10 Mbps Cable length between stations 20 cm or more Max. cable length 1200/900/400/160/100 m Communication supply voltage 15 to 30 VDC Solenoid supply voltage 24

hole F Applicable screw M5 hexagon socket head cap screw M6 hexagon socket head cap screw M8 hexagon socket head cap screw Model AMP220 AMP320 AMP420 E OUT Maintenance space (mm) C B Bracket related dimensions Element service indicator related dimensions Port size (nominal size B) Model A D E I 66 80 90 J K L M N O P Q R S F 80 120 180 G 123 169 237 H AMP220 AMP320 AMP420 76 90 106 76 90

P (port f)] WB WA R 4-J Depth JK Inner cover holding screw TA TA WB WA TB TB R W (mm) C ED A EK B F E G H HA HB HG HI HL HP HS HT J JK K Model +0.030 0 CYP15 5.4 9.5 8 4 9.5 12.5 4H9 6.5 45 19.5 8.5 8.5 23 38.6 44 27 19.5 M6 x 1 10 21 +0.030 0 CYP32 8.6 6H9 13 12 14 6 25 8.5 75 39 19 19 39 64.9 73.5 49.5 39 M10 x 1.5 12 20 LD LW MM M N L P PA PB Q QW R T TA TB W WA WB Y Z Model CYP15 5.6

. = 16 V Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Power supply is 24 VDC Internal voltage drop in switch is 4 V. Example: Load impedance is 3 k.

(Connection port center) (Connection port center) F (Bracket mounting dimensions) Bracket (Option) B C A INA-11-402 INA-11-403 INA-11-404 INA-11-405 INA-11-406 INA-11-407 Model Port size Rc 4 1 63 63 80 85 90 100 141 164.5 170 180 230 251 15 15 15 20 22 22 8 3 , , 8 3 4 1 2 1 Bracket dimensions E C D B A Model Port size 4 3 F 345 419.2 G 32.5 0 H 95 120 J 14 14 K 57 49.6 1 1 , 87.5 125 4

C ircuit(1 ) C ircuit(2 ) Pilot valve set K T PA 5 3 8 NBR diaphragm set K T PA 3 3 2 PT F E diaphragm set K T PA 3 3 1 S w itching valve assembly set K T PA 3 3 6 A ctuator parts set K T PA 3 3 7 4 . Maintenance 3 . How to use Warning E nvironment When using hazardous fluid, take measures to keep people aw ay from the pump.

set K T PA 5 3 1 C heck valve set K T PA 5 3 6 S w itching valve set K T PA 5 3 7 4 .

Assy 3-4 3-5/ -1- 1) 2) (ISO/IEC) (JIS) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems ISO 4413: Hydraulic fluid power -General rules relating to systems IEC 60204-1: Safety of machinery -Electrical equipment of machines (Part 1: General requirements) ISO 10218-1992: Manipulating industrial robots -Safety JIS B 8370: JIS B 8361: JIS B 9960-1: 1 ) JIS B 8433-1993

24 30 L Left side parallel (Step motor 24 VDC) A 10 12 16 20 B 5 6 8 10 Stroke1[mm] Motor option Auto switch compatibility (In-line only) 23456 Nil Housing B bottom6 Positioning pin hole Grease application (Seal band part) 50 50 Nil Without option Nil With Nil None B With lock K Body bottom 2 locations N Without (Roller specification) C With (Includes 1 mounting bracket) 1200 1,200 *Refer

EX12#-SMJ1 Applicable system CC-Link Ver.1.10 Occupied station 1 station Station number setting range 1 to 64 (Set with a rotary switch) Communication specification Station type Remote I/O Communication speed 156 k/625 k/2.5 M/5 M/10 Mbps Cable length between stations 20 cm or more Max. cable length 1200/900/400/160/100 m Communication supply voltage 15 to 30 VDC Solenoid valve supply voltage

When actually mounting an auto switch, adjust the position after confirming the operating state of the auto switch. 95 Guide table10-MGF Dimensions 10-MGF40/63/100 4-N V D C D C E F H A + Stroke B + Stroke GB GA T X PP (Rc, NPT, G): Relief port 2-P(Rc, NPT, G) Port for extension Port for retraction When the cylinder is extended KA: T-slot for hexagon bolt 4-M K KB KC 6-K (6 positions) 9 9

B N.O. 1/2 G 15 With surge voltage suppressor C 110 VAC Stainless steel D 200 VAC 5 20A H C37 N.C. 3/4 20 E 230 VAC C N.O. J Stainless steel F 24 VDC 6 25A N.C. K C37 Stainless steel 1 25 G DIN terminal 24 VDC D N.O.

L O L ZX G H F K ZR J ZM ZH E D I A ZU B C Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com ZL 2-4.5 ZY ZQ A B C D E F G H I J K L Model 4 ZFC100-04 ZF 6 ZFC100-06 53.2 9.1 30 14.1 10 18 11.6 19.5 23 20 29 5/32" ZFC101-03 ZP 1/4" ZFC101-07 6 ZFC200-06 ZCU 8 ZFC200-

*sure dlsplay Accuracy J3% (lull span) Minimum unit [ i l P a : 0 . 0 1 . k a f / c m ' : 0 . 0 1 , b a r : 0 . 0 1 .

B Grommet 100 VAC With surge voltage suppressor 12 One-touch fitting C 110 VAC G H J K 3/8 D 200 VAC 4 10A C37 N.C. 1/2 E 230 VAC 15 15A 3/8 Stainless steel B N.O. F 24 VDC 1/2 G DIN terminal 24 VDC L M 5 20A C37 N.C. With surge voltage suppressor 3/4 20 H 100 VAC C N.O. Stainless steel J 110 VAC 6 25A N.C. N P C37 Stainless steel 25 1 K 200 VAC D N.O. L 230 VAC 7 32A N.C.

The instructions described in this manual must be followed in addition to ISO 4414*1) and JIS B 8370*2) and other safety regulations. *1) ISO4414: Pneumatic fluid power Recommendations for the application of equipment to transmission and control systems. *2) JIS B 8370: General rules for pneumatic equipment.

B + Stroke A + Stroke FA FB S HR E b a With front lock XAH7 c d e MO XB T-slot dimensions (mm) DM HN XAH7 XC XL Bore size (m) a b c d e End lock mechanism (locking type manual release ) 6.5 10.5 5.5 3.5 9.5 32 Section XX detailed diagram 6.5 10.5 5.5 4 11 40 8.5 13.5 7.5 4.5 13.5 50 11 17.8 10 7 18.5 63 LL With rear lock (mm) Standard strokes (mm) Bore size (mm) ML NN OA B C DA FA FB G GA

These vortexes are stable under certain conditions, and their frequency is proportional to the flow velocity, resulting in the following formula. f = k x v f: Frequency of vortexes, v: Flow velocity, k: Proportional constant (determined by the vortex generator's dimensions, shape, etc.) Therefore, the flow rate can be measured by detecting this frequency.