SMC Corporation of America
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Cross-section of a cylinder tube is the same configuration regardless of w/ switch or w/o switch.

(kg) Fig. (2) Overhang: Ln (mm), Correction Value of Moment Center Position Distance: An (mm) Pitch moment Yaw moment Roll moment W My Mp Mr W W W Static moment Dynamic moment L1 A1 L3 A5 L2 A3 MXH W Mp Mr W MXU W My L3 A6 W L1 A2 L2 A4 MXS W Mey Mep MXQ Note) There is no need to consider this load factor in the case of using perpendicularly in a vertical position.

Positioning pin hole Counter-clockwise 5 Adjustment bolt A 5 (For counter-clockwise rotation end adjustment) 9 22 e B port .5 g Adjustment bolt B n ra (For clockwise rotation end adjustment) nt e e m is st w u k dj c lo a e is -c d w C A port B port n k er c lo o e l Clockwise C a nt c n dj k u o w o 0 u ti is C st ta e 19 m ro ro ta e ti o d n n e nt e ra ng n g e 5 9 ra With adjust bolt

(lM5) 5 port Base mounted type tlVJA32.tO 2 position double 0.112 (s1) (0.055 (25)) 1.0 f(s) 41 : o.o8 | L (S) 46 : 0.055 | M3x0.5 [io-32 Nom.

(lM5) 5 port Base mounted type tlVJA32.tO 2 position double 0.112 (s1) (0.055 (25)) 1.0 f(s) 41 : o.o8 | L (S) 46 : 0.055 | M3x0.5 [io-32 Nom.

MTS Air pressure supplied from A operates on both surfaces q and w. (Extension) MY q w A B Piping is concentrated in the head cover. CY MG 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 CX Air pressure supplied from B operates on surfaces e.

DC (17 mA), 0.95 W DC (40 mA) (4) Power consumption (Current) 12 VDC 0.4 W DC (34 mA), 0.95 W DC (80 mA) (4) (R1)5 1 (P) 3(R2) Note 1) Use dry air to prevent condensation when operating at low temperatures.

Description Body Material Body Zinc die-cast Zinc die-cast q q Spool valve Spool/Sleeve Aluminum/NBR Stainless steel w w Piston Piston Resin Resin e e rPilot Valve Assembly rPilot Valve Assembly (1) (1) L M G L M G VQ111P (H) (Y) VQ111P (H) (Y) 2 2 Single Single Voltage 1 to 6 Voltage 1 to 6 L M L M VQ110L VQ110L 2 2 Double (latching) Double (latching) Voltage 1 to 6 Voltage 1 to 6 The

(IEC 60417-5032-1) How to see the serial number W Z 001 December 2018 W Z 001 Year Symbol Remarks Month Symbol Remarks Serial no. 2018 W Repeated from A to Z in alphabetic al order 1 o Repeated from O to Z in alphabetical order, with O for January and Z for December 2019 X 2 P 2020 y 3 Q Fig. 1-1 Position of the product label HRS Series 1.4 Product Label 1-3 HRX-OM-W032 Chapter 1 Safety Instructions

2 (N)AF900 200 488 46 2 H O W T O O R D E R A I R F I LT E R (N)AF800-12 (1 14) (N)AF800-14 (1 12) (N)AF900-20 (2) H O W T O O R D E R A I R F I LT E R W I T H A U T O D R A I N (N)AF811-12 (1 14) (N)AF811-14 (1 12) (N)AF911-20 (2) ACCESSORIES A I R F I LT E R Filter Elements 11345-5B NAF800 11352-5B NAF900 Note) (N)AF AF Japanese NAF North American Courtesy of Steven Engineering, Inc. !

/s2 3000 mm/s2 4 Work load: W [kg] Work load: W [kg] 3 2 5000 mm/s2 1 10 mm/s2 0 0 Speed: V [mm/s] 200 400 600 800 1000 1400 1200 0 Speed: V [mm/s] 200 400 600 800 1000 1200 EQFS40HA/Ball Screw Drive Horizontal/Lead 20 Vertical/Lead 20 70 5 4.5 4 3.5 3 2.5 2 1.5 1 0.5 0 3000 mm/s2 60 Work load: W [kg] Work load: W [kg] 50 40 3000 mm/s2 30 5000 mm/s2 20 10 10 mm/s2 0 0 Speed: V [mm/s] 200

D 1.6 x P 0.1 x Wcos + Wsin D 5.0 x P 0.1 x W + W D 5.0 x P W W > Wv P > Pv Determination of allowable load mass & pressure Inclined operation (For vertical operation, refer to page 1515.)

How to Order w q e r t y ZK2 A C K 5 K W 12 08 u i q Body/Exhaust type e Combination of supply valve and release valve w Nominal nozzle size Symbol Nominal nozzle size 07 0.7 10 1.0 12 1.2 15 1.5 Symbol Body Exhaust type Symbol Supply valve Release valve N.C. N.C.

DOGZ .54 5.6.13 .56 5.6.14 .57 5.7 .58 5.8 .59 5 1 5 5 () 5.1 5.1.1 DO(7.7.4) (5.1.2) (5.1.3) MR Configurator (6) (7.7) (8) 5 2 5 5.1.2 (1) (a) (L1L2L3L11L21) (1.2) (b) (UVW)(UV W) U U V V M W W (UVW) M U V W U V W PE M P1-P2(11kWP1-P) P1 P2 (C) 200V CNP2P-D PC (13.2) 5 3 5 (2) (a) DO CN6ON/OFF (b) CN6 DC24V (c) CN6 SD DOCOM CN6 DOCOM SD 5.1.3 (1) (a) (b) (12.4

E , W E , W M P Work Potential energy Kinetic energy Torque Power Joule = Newton meter Joule Joule Joule Watt J J t ' J w = kg . m2's-2 0.5-m-i = J's-l 3.

E , W E , W M P Work Potential energy Kinetic energy Torque Power Joule = Newton meter Joule Joule Joule Watt J J t ' J w = kg . m2's-2 0.5-m-i = J's-l 3.