SMC Corporation of America
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Search Results "VDW250-6G-1-M5-A-F"

20 25 31 ED 60 74 94 EA 10 12 15 h 3.5 4.5 4.5 Applicable cylinder ML2B25 ML2B32 ML2B40 10-13-15 13 Series ML2B Dimensions Side support A MY-SA 2-G F E 2-H C D A B Side support B MY-SB 2-J C D A B (mm) A 61 70 87 B 75 84 105 C D E F G H J Part no.

A 65 82 98 B2 53 64 76 B3 78 88 108 C1 14 20 22 C2 39 44 54 F 96 111 131 E1 1 1 1 E2 1 1 1 MY-J25 MY-J32 MY-J40 MYAJ25 MYAJ32 MYAJ40 63 73 93.5 61 72 88 30.5 36 44 40 46 55 73 84 104 14 14 19 6 6 8 Note) Floating brackets consist of a set of right and left bracket.

Thread type Rc G NPT NPTF Nil F N T Stations 02 : 10 2 stations : 10 stations D side U side 1 2 3 4 5 How to Order Valves (VCA30/40) VC A 5 1 G 3 4 03 For air Thread type Rc G NPT NPTF Nil F N T Series 3 4 Class 3 Class 4 Port size (OUT) 5 N.C. for manifold Valve type Symbol 03 04 06 Class 3 Port size 3/8 (10A) 1/2 (15A) 3/4 (20A) Class 4 Fluid General air Dry air Nil A Orifice size Orifice

E 2 x H A B C D Side support B MY-SB 2 x J A B C D A 61 70 87 B 75 84 105 C D E F G H J Part no.

, 40, 50, 75, 100, 125, 150, 175, 200 20, 30, 40, 50, 75, 100, 125, 150, 175, 200 26 64 17 10 19 52 74 2 8.5 4 46 36 72 8 30 10 60 37 13 18 47 8 M5 x 0.8 13 M5 x 0.8 7 M5 x 0.8 Rc 1/8 10.5 32 76 21 10 21 62 88 2 9 2 56 42 86 8 38 12 70 37.5 14 26 47.5 9 M6 x 1.0 15 M6 x 1.0 8 M6 x 1.0 Rc 1/8 11.5 MGQM (Slide bearing) A, DB, E Dimensions MGQL (Ball bushing bearing) A, DB, E Dimensions E E

E = mV 2 1 Formula (1) : Kinetic energy : Load mass : Speed Figure 1. Linear motion E m V Rotary actuator I = mr m: Mass (kg) (However, the weight of the L section is ignored) E= I Formula (2) 2 1 = mr 2 1 This indicates the moment of inertia with respect to the rotation axis of a mass "m" which is a distance "r" from the rotational axis.

Q 27 30 32 32 VCA21 VCA31 41 50 60 68 18 24 30 35 64 76 86 91 28 34 40 40 11.5 14 15 17.5 15 17 20 20 20.5 25 30 34 12.8 19 23 23 M4 M5 M5 M5 1/4 1/4, 3/8 3/8, 1/2 3/4 VCA41 17-2-13 8 Series VCA How to Order Manifold (VCA20) How to Order Manifold Assembly VV2C A 2 02 02 Enter the mounting valve and option part numbers under the manifold base part number.

Signal 1 Pitch Magnetic section Non-magnetic section 0.2 0.1 0.3 Movement A phase B phase Signal 2 q A scale of magnetic layers and non-magnetic layers with a pitch of 0.8mm is cut into the piston rod. w With movement of the piston rod, a sin, cos 2-phase signal (Signal 1) is received by the magnetic resistance element.

(0-0.7 MPa) o.25 n 1 < 1/8 NPTF u.zt ir5 0.271 lbs (120 sf) NVKF334Y lLow waltaoe: 2WDC) NVKF334V lVacuum) '1 Torr-100 PSI (-100 KPa-0.7 [,lPa) NVKF334W ilow waltaoe + Vacuuml Basg mounted 1 1 0V 50/60 HZ, 220v 51 er,t1z, 1 00v 50/6o HZ, 2o0v 59 @lz 130"F or less (Standard) 95"F or less (Low power cons!

Variable hysteresis 1 to 10% of set pressure (Variable) Easy and simple wiring 16-6-1 2 Series ZSE1/ISE1 How to Order Operating pressure range/ Setting pressure range Piping specifications R 1/8 NPTF 1/8 01 T1 Nil L 0 to 1 MPa 0 to 100 kPa Note) M5 x 0.8 (female) threaded.

Confirm the total of x, y and z is 1 or less. x + y + z 1 When 1 is exceeded, please consider a reduction of acceleration and work load, or a change of the work load center position and series. 25AAcceleration [mm/s2]: a Work load [kg]: m Work load center position [mm]: Xc/Yc/Zc z y 1. Horizontal 3. Wall LEC x y LEC S x z LEC SS-T x 2. Bottom 4.

For M5, 10-32UNF Tightening method Connection thread size Chamfered dimension D (Recommended value) Rc NPT, NPTF 1/8 10.2 to 10.4 10.5 to 10.7 1/4 13.6 to 13.8 14.1 to 14.3 3/8 17.1 to 17.3 17.4 to 17.6 1/2 21.4 to 21.6 21.7 to 21.9 First, tighten it by hand, then give it an additional 1/6 turn to 1/4 turn with a wrench. A reference value for the tightening torque is 1 to 1.5 Nm.

(0-0.7 MPa) o.25 n 1 < 1/8 NPTF u.zt ir5 0.271 lbs (120 sf) NVKF334Y lLow waltaoe: 2WDC) NVKF334V lVacuum) '1 Torr-100 PSI (-100 KPa-0.7 [,lPa) NVKF334W ilow waltaoe + Vacuuml Basg mounted 1 1 0V 50/60 HZ, 220v 51 er,t1z, 1 00v 50/6o HZ, 2o0v 59 @lz 130"F or less (Standard) 95"F or less (Low power cons!

(mm) <M5, M6> <M5, M6> A Weight (g) D P M L Model Urethane 2-applicable tubing KAU23-M5 38 9.6 15.5 34.5 9 M5 x 0.8 M6 x 1 2.2 2.2 10 38.5 3.4 2.9 11 1 8 KAU23-M6 KAU23-U01 11 3.2 9.6 KAU04-M5 39.5 M5 x 0.8 M6 x 1 4 2.2 2.2 KAU04-M6 10 11 10.4 16 36 10.4 40 4 1 8 KAU04-U01 11 4.2 4.2 K 1 4 KAU04-U02 42 16 14 KAU06-M5 42.5 M5 x 0.8 M6 x 1 39 2.2 2.2 12 KAU06-M6 43 13 M Connection thread 17

Shigeyuki Ota and Hironori Shimizu (Eds) Ozone Riyo no Riron to Jissai ("Theory and Practice of Ozone Use") Riaraizu Co., Inc., (1989) 8 List of Ozone Resistant Products 1: Standard (HNBR) Description Series Description Series ARM Pressure control valves 1000 2000 2500 3000 2000 3000 4000 2000 3000 4000 1000-M3 1200-M3 1400-M3 1000-M5 120-M3 (U10, 32) 120-M5-F 220-01 220-01-F 220-02 220-02

x 0.7 depth 7 M5 x 0.8 depth 7.5 M5 x 0.8 depth 8 M6 x 1 depth 12 Up to 200 Up to 300 Up to 300 Up to 300 25 Without rod boot With rod boot Bore size (mm) H1 NA P PG PH PL PW S TA TB TC l H ZZ e f h ZZ Stroke range Rc 1/8 Rc 1/8 Rc 1/8 Rc 1/8 33 38 39 44 55 62 62 70 19.5 24 24 24 16 17 17 17 20 24 24 24 30 30 35 35 38 41 41 41 178 193 196 221 141 151 154 169 35 40 40 50 Up to 200 Up to 300

[Option] How to Order Manifold VV5Q 1 1 08 C6 U1 F 10 CE compliant Series Nil CE compliant VQ1000 1 Q Note) For CE compliant models, DC-type only.

(mm) M5 Weight (g) D A Nylon Urethane M5 0.8 KGS04-M5 KGS04-01 KGS06-M5 KGS06-01 KGS06-02 KGS08-01 KGS08-02 KGS08-03 KGS10-01 KGS10-02 2.7 2.6 8 3.6 2.7 2.7 4.1 2.7 15.5 13 16 19 16.5 9.5 9.8 11.5 11.8 13.8 2.5 19 23 20 4 1 8 3 2.5 M5 0.8 14 3.2 9 15 12 11 24 18 12 10.0 10.0 9.9 1 8 1 4 1 8 1 4 3 8 1 8 1 4 6 4 20 17 24 10.7 17.2 5 24 19.5 21 26 21.5 28 25.5 27.5 30 14 8 18.5 16.2 23.3 6 17

brake spring acting on a brake shoe 1 attached to brake holder, brake rails and holds brake plate between brake shoe 1 and brake shoe 2 fixed to slider side so that slider will stop.

Evaluate (1) and (2) as a (average speed), and (3) as (collision speed = 1.4 a). Calculate (1) (Wmax) from the graph of max. payload (W1, W2, W3) and calculate (2) and (3) (Mmax) from the maximum allowable moment graph (M1, M2, M3).