SMC Corporation of America
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wi res and case 2M O (SOOVDC by megameter) Insulahon resistance "3 B , o to-500H z wldth_ l Smm or acceleration tOG (chose the smaller vlbralion) to X.Y,Z direction(2 hours) Vibration resistance .

How to see the manufacturing code P O 001 January 2011 O O 001 Year Symbol Remarks Month Symbol Remarks Serial no. 2011 P Repeated from A to Z in alphabetical order 1 O Repeated from O to Z in alphabetical order, with O for January and Z for December 2012 Q 2 P 2013 R 3 Q Fig. 1-3 Position of product label 1.5 Safety Measures 1.5.1 Safety Instructions for Use Follow the instructions below

Fittings & Tubing Air Cylinders Rotary Actuators Relief port 2 x M5 x 0.8 2 x P through M5 x 0.8 R GC GB E GA MM D C J 2.8 2 x P through A 4 x T counterbore E 0.5 B H S Z (mm) 6 depth 4.8 5 S 10 15 20 25 30 5 Z 10 15 20 25 30 Bore size B C D E GA GB GC H J MM P R T A 13 22 3 23 16 15 13 10 3.2 7 M3 x 0.5 31 10 7 6 10 15 24 4 24 33.5 16 15.5 16 11 M4 x 0.7 3.2 9 6 depth 5 64 69 74 79 84 89

F T n t kg RS H A Me 2 2 2 E 2 2 E 2 2 E 2 2 E 2 E m = 20 kg = 0.7 m/s d = 40 mm p = 0.5 MPa n = 20 cycle/min t = 25C rad/s 2.

M2.5 x 4l (included with auto switch) M3 x 6l (included with switch mounting bracket) 21 Series CHKGB Made to Order Specifications 1 Contact P/A for detailed specifications, lead times, and prices.

/4E-**N AD48-A 1 IDFB6E15E1-** AD48N-Z-A 1 IDFB6E15E1-**N ) 2019 3 2019 2 SERIAL No.XP AD38 AD38N-Z AD48 AD48N-Z SMC WEB 1 IDFB3E/4E IDF-S0001 IDF-S0002 1 IDFB6E15E1 1 IDFB3E/4E C32FP-260S C42FP-260S 1 IDFB6E15E1 1 IDFB3E/4E IDF-S1932 2 IDF-S1933 1 IDFB6E15E1 IDFB Series 4.2 44 IDX-OM-W020 4 0 OFF 501015 ( 1 OFF IN/OUT 2.3 ) (2 ) () IDFB Series 42 4.2 IDX-OM-W020 5

9 Water-cooled refrigeration . p. 11 Cooling Capacity. p. 13 Pump Capacity. p. 13 Dimensions. . p. 14 Parts Description. p. 14 Recommended External Piping Flow. . p. 16 Cable Specifications. p. 16 Operation Display Panel. . p. 17 Alarm. p. 17 Communication Functions. p. 18 Options. p. 19 Optional Accessories. . p. 20 VCooling Capacity Calculation Required Cooling Capacity Calculation. p.

Basic type Select type Model VEX5504 06 10 VEX57-10 12 VEX59-14 20 P1 P1 VEX VEX Description Bracket (With bolt and washer) G46-10-01 VEX7-32A VEX5-32A VEX9-32A Air operated External pilot solenoid valve 3(R) 3(R) Pressure gauge 1(P) 3(R) 3(R) 1(P) P2 P2 P3 P1 P1 3(R) 3(R) 3(R) 3(R) 1(P) 1(P) P2 P2 Note) With this valve, the port 3(R) is a supply port and port 1(P) is an exhaust port. 2441

/See 3.3.Step data setting on p.23 3.4.Parameter setting on P .29 /Refer to the LEC controller operation manual. Input the RESET signal. 45 - No.

) (ZQ1-LW6-N-A) *FUNC *ZQ-ZSV 5.2 1 2ON 3, 4 51015 10 1% 6 7LCD 8FG 19 - No.ZQ-OM01401-B 6. 6.1 ON () () 6.2 1 2(0.4N m ) 315 30 (0.06~0.10 Nm) 20 - No.ZQ-OM01401-B 7 , 7.1 () 1 PBT 2 ,Assy POM, 3 PBT 4 PBT 5 6 (PET) P.25 3 7 HNBR P.25 6 8 SUS 9 10 PC P.25 4 11 SUS 12 PVA P.25 5 13 P.2223 1 14 PBT 15 P.2425 2 16 (V) P.25 7 17 Ass'y P.25 9 O HNBR,NBR

C 0.2 2 x 4-H counterbore Q + 2 x Clamp stroke + 0.15 + 0.05 2-3.3 depth 3 K A P Both ends tapped style: MKA A thread (mm) A B Model MKA MKA50 MKA63 32 40 10 M6 x 1.0 14 M8 x 1.25 18 M10 x 1.5 R + Clamp stroke (Basic) (mm) Q A G I J S T B H K L O U C P V D E R X F Yh9 Z Model 0.1 0.2 MKB32 1 8 0 0.15 0.15 31.5 9 depth 7 M10 x 1.5 93.5 71.5 45 5.5 12 37 7.5 60 14 16 34 4.5 Rc / 54 3 6.5 14

Type of Impact Load Free fall impact Check Model Selection Step z to c prior to use. Graph !3/RJ06 Graph !5/RJ10 Graph !

, 710 P.711, 712 P.713 to 717 P.713 to 717 P.718, 719 P.720 to 723 Buffer stroke Adsorption is possible even on a slanted surface.

Spring return ZZ + Stroke Spring extend Z + 2 x Stroke 7-8-17 18 Plate Cylinder Series MU Accessory Bracket Dimensions Single Knuckle Joint Double Knuckle Joint 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 Z + Stroke ZZ + Stroke Z + Stroke ZZ + Stroke (mm) (mm)

Spring return ZZ + Stroke Spring extend Z + 2 x Stroke 7-8-17 18 Plate Cylinder Series MU Accessory Bracket Dimensions Single Knuckle Joint Double Knuckle Joint Z + Stroke ZZ + Stroke Z + Stroke ZZ + Stroke (mm) (mm) ZZ 116 127 138 171 175 Z 107.5 117 127 155 159 Z 107.5 117 127 155 159 LX RR 8.5 10 11 16 16 LX RR 8 10 10 16 16 LD LU 11 14 15 20 20 LD LU 13 14 17 23 23 LC 16 18 20 28 28 LC

through Q R E GB GA 4-NN MM D CB CA C K J JA E H A' A 2-P through KA B 4-T counterbore Width across flats L S + Stroke Z + Stroke (mm) Port size Bore size (mm) GA H J JA A B A' C CA CB D E GB 20 25 32 29 32.5 35 19 23 27 16 20 24 12 15 19 26 32 40 42 50 62 20 25 31 22 25 31 9 10 11 27 22.5 25 14 18 22 12 15.5 19.5 8 10 12 M5 x 0.8 M5 x 0.8 Rc 1/8 Bore size (mm) NN T S Z K KA L MM P Q R Standard

Lead wire length: 2000 mm V114-5LOZ-M5 SY100-68-A-20 Lead wire length: 300 mm (Standard) V114-5LPZ-M5 Standard With power saving circuit) 0.4 W 0.1 W 0 W 62 ms Grommet, L/M Plug Connector With indicator light (Z) Z N R Coil Symbol of connector assembly with protective cover Caution No part numbers of connector assembly with cover are needed to be indicated in this

D-A9, F9 Rod end nut C1 X L1 Rod end male thread (mm) Bore size (mm) C1 X H1 L1 32 20.5 23.5 28.5 M14 x 1.5 40 20.5 23.5 28.5 M14 x 1.5 50 26 28.5 33.5 M18 x 1.5 (mm) Without auto switch With auto switch A B A B U Z Bore size (mm) Stroke range (mm) C D E F H I J K L M N O P Q S 5 to 50 40 33 9 depth 7 32 50 43 13 16 45 7.5 M8 x 1.25 60 4.5 14 7 34 5.5 1/8 10.5 58.5 31.5 14 75, 100 50 43

How to find the flow rate for air/ Flow rate formulas based on the air temperature of 20C For subsonic range where P + 0.1013 < 1.89 (P + 0.1013) Q = 226S P(P + 0.1013) For sonic range where P + 0.1013 1.89 (P + 0.1013) Q = 113S (P + 0.1013) Q : Flow rate [l/min(ANR)] S : Effective area (mm) P : Pressure drop P P (MPa) P: Upstream pressure (MPa) P: Downstream pressure (MPa) How to make

Model r e b m u N A f o t r o P l e d o M g n i t r o P e z i s t r o P B e z i s t r o P A c i r t e M " 2 3 / 5 " 4 " 4 / 1 " 6 " 6 1 / 5 " 8 t r o P A t r o P B h c n I 1 1 M K h c u o t e n O g n i t t i f g n i t t i f h c u o t e n O 0 1 , 6 6 1 / 5 8 8 / 3 0 1 2 / 1 2 1 2 1 M K h c u o t e n O g n i t t i f d a e r h t T P N 0 1 , 6 4 / 1 T P N ) T P ( c R 4 / 1 d a e r h