SMC Corporation of America
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If work is held around the finger opening/closing stroke end, the above detection combination may be limited due to hysteresis differential of the auto switches. 2.10-7 Auto Switch Series MDHR2, 3 4) Internal Holding/Auto Switch Mounted from Direction B q Confirmation of fingers in reset position w Confirmation of work held e Confirmation of work released Detection example Fingers fully closed

1 Direct Operated Solenoid Valve Metal Seal Series VS4 10 Model Flow characteristics Max. (1) operating cycle (cpm) (3) VK Response (2) time (ms) Weight (kg) Model Port size Rc (Nominal size) Number of positions JIS Symbol P A/B A/B EA/EB VZ C [dm 3/(sbar)] C [dm 3/(sbar)] b b Cv Cv AC DC AC DC AC DC VS4110-01 (6A) 3.2 3.2 0.42 0.37 0.86 0.80 1 8 2 (Single) 1,200 180 13 or less 45 or less

phase J 24-M3 x 0.5 A B C D t A COM COM COM B DC12V GND F.G.

Direct Operated Solenoid Valve Metal Seal Series VS4 10 Model Flow characteristics Max. (1) operating cycle (cpm) (3) VK Response (2) time (ms) Weight (kg) Model Port size Rc (Nominal size) Number of positions JIS Symbol P A/B A/B EA/EB VZ C [dm 3/(sbar)] C [dm 3/(sbar)] b b Cv Cv AC DC AC DC AC DC VS4110-01 (6A) 3.2 3.2 0.42 0.37 0.86 0.80 1 8 2 (Single) 1,200 180 13 or less 45 or less

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.

(c) (a) (b) (c) (b) (c) (a) (b) (c) (a) (b) (c) (b) (c) (a) (b) (c) (b) (c) (a) (b) (c) Note 1) The above (a), (b), (c) indicate heater mounting positions.

Valve side exhaust 29 Series XLS High Vacuum Angle Valve Dimensions (mm) 1in=25.4mm XLS/Without control power supply Grommet (G) D Conduit (C) J K 27010 E D G B C G(PF)1/2 Terminal (T) J K2 J H 29010 L 25 33 B C G(PF)1/2 DIN terminal (D) J K L C B F A 29.5 39 B C G(PF)1/2 6 to 9 22 A (mm) A B 104 L 48 62 C D F G H J E K 41 60 95 43 Model XLS-16G XLS-16C XLS-16D XLS-16T XLS-25G XLS-

1 e w r e 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 u r u t t y y q q Component Parts Description Material No. Option Standard Stainless steel Body C37 q w e r t y u i o !0 !

A A a B B s j C f g t C0.5 C0.2 C0.2 b d e 45 45 Section A-A p k C0.5 45 C n h i l (d) C0.5 q m O Section B-B r (l) View C (mm) +0.2 0 l i o j k m n p q r s t b e g a c d f h Model 0 0.2 0.05 0.15 + 0.1 0 +0.2 0 3.5 +0.013 +0.001 CXS 6 2.75 M2.5 x 0.45 4.5 3.5 4.75 C0.5 2.8 0.5 4 3.5 3 3.5 16 0.1 M3 x 0.5 4 1 5.5 6 +0.2 0 0.05 0.15 0 0.2 + 0.1 0 +0.2 0 5 +0.016 +0.001 CXS10 4 M3 x 0.5 8 5

How to find the flow rate for water Formula based on Cv factor Q = 14.2 Cv 10.2 P l/min Formula based on effective area (Smm) Q = 0.8 S 10.2 P l/min Q: Flow rate (l/min), P: Pressure differential (P1P2), P1: Upstream pressure (MPa) P2: Downstream pressure (MPa), S: Effective area (mm), Cv: Cv factor 17 Compact Direct Operated Series VDW 2/3 Port Solenoid Valve for Water and Air Safety

How to find the flow rate for water Formula based on Cv factor Q = 14.2 Cv 10.2 P l/min Formula based on effective area (Smm) Q = 0.8 S 10.2 P l/min Q: Flow rate (l/min), P: Pressure differential (P1P2), P1: Upstream pressure (MPa) P2: Downstream pressure (MPa), S: Effective area (mm), Cv: Cv factor 17

I$ODEL NO. 2 , 1 3 (s4) S P & S P A 0 1 1 3 43 y. qB siB s/B s/g 9a SP & SPA 0114 54 B B B B sP & sPA 0115 45 S s 2 MTNG HOLES I .FOOTPRINT' CLASS 1 SUB.PLATE MOUNTED 'SWAY VATVES '49 i.'8 (?

I$ODEL NO. 2 , 1 3 (s4) S P & S P A 0 1 1 3 43 y. qB siB s/B s/g 9a SP & SPA 0114 54 B B B B sP & sPA 0115 45 S s I 2 MTNG HOLES .FOOTPRINT' CLASS 1 SUB.PLATE MOUNTED 'SWAY VATVES '49 i.'8 (?

Type A B C Accessory fittings Clamp fitting L AERSBAN-DSET 100 86 30 clamp A: 2pcs. A 70 AERSBAN-ESET 70 56 clamp B: 1pc. B 45 11 27 11.

Rotational axis B d D I m kgm I = m kgm 8 8 Gear: I a + b I = m kgm IB = I + I + I kgm 12 Substitute the moment of inertia IB for rotation around shaft B with the moment of inertia IA for rotation around shaft A. Gear: I IA = (A/B)IB [A/B: Gear tooth ratio] Find the actual moment of inertia.

Rotational axis B d D I m kgm I = m kgm 8 8 Gear: I a + b I = m kgm IB = I + I + I kgm 12 Substitute the moment of inertia IB for rotation around shaft B with the moment of inertia IA for rotation around shaft A. Gear: I IA = (A/B)IB [A/B: Gear tooth ratio] Find the actual moment of inertia.

Refer to Fig.1) 3) Remove the junction box B (top) for all stations using a precision screwdriver. (Refer to Fig.2) (Remove the junction box B from D side.) 4) Remove all connectors mounted to the junction box B.

VHS20 to 50-A . ; . ; Built-in silencer (Option) = = @ @ 2 1 (IN) 2 (OUT) IN OUT B B : : Cross section of EXH port > > 3 (EXH) EXH Option Part No.

Communication A B RS-485 RS-232C Select B when communication is not used. Specifications (For details, please consult our Product Specifications information.)