s Fluid velocity, m/s Fluid velocity, m/s Fluid velocity, m/s Fluid velocity, m/s Fluid velocity, m/s Fluid velocity, m/s Fluid velocity, m/s Equation to obtain fluid velocity Equation to obtain fluid velocity Equation to obtain fluid velocity Equation to obtain fluid velocity (Symbols) (Symbols) (Symbols) (Symbols) v: fluid velocity (m/s) v: fluid velocity (m/s) v: fluid velocity (m/s) v
SMC CORPORATION Contents Chapter 1: Read Before Use 38 Chapter 2: Product Summary 2-1. System Configuration 910 2-2. How to Order 11 2-2-1. MONOSASHI-KUN with BRAKE 11 2-2-2. Options 12 Chapter 3: Selection Flow Chart to Confirm Utility 1314 Chapter 4: Specifications 4-1. Cylinder Specifications 15 4-2. Sensor Specifications 15 4-3.
s2 in X, Y, Z directions for 2 hours each (De-energized) Vibration resistance 100 m/s2 in X, Y, Z directions 3 times each (De-energized) Impact resistance 2% F.S.
and Lock 32, 40, 50, 63 Series RLQ How to Order B 32 50 M F RLQ RDLQ M9BW B 32 50 M F With auto switch Number of auto switches With auto switch (Built-in magnet) Auto switch Mounting style Nil S n 2 pcs. 1 pc. n pcs.
[m] m[kg] Fig. 10 28 - Calculation formulae for moment of inertia I: Moment of inertia [ kgm ] m: Load mass [ kg ] 2 6. Thin round plate Position of rotational axis: Through the center of 1. Thin shaft Position of rotational axis: Perpendicular to the shaft through the center of gravity diameter r a 2 2 r a I = m4 I = m 12 2. Thin rectangular plate 7.
Pow er suppl y G N D Bl ue connect or ( Pl ug) 2 N . C. N . C. 3 Com m uni cat i on connect or ( Socket ) ( N ot e 2) RXD /TXD _N A G reen 4 5 N . C. 2 RXD /TXD _PB Red N . C. N ot e 1. W i re col or w hen SM C cabl e i s used. N ot e 2. SM C s PCA1557691 ( cabl e w i t h shi el d) i s recom m ended as t he com m uni cat i on cabl e.
Consult SMC for other voltages. 2.9-12 Series VQ100 Plug Lead Unit Manifold (VV3Q12) L1 10.8 3.5 5 L2 3 P E 8.9 P E 11 Round head screw M1.7 X 14 W (L type) 28.7 26.5 W (M type) 300 33.8 300 2-3.5 Mounting hole 4-M5 SY P, E port Manual override SYJ 11.5 P=10 300 Latching, 100V AC or more VK H (M type) U side D side n 5 4 3 2 1 300 H (L type) VZ VT VT 42.2 L type M type 36.3 VP W
F G H I J K L M N O Model SGHA12-7010 SGHA22-7015 SGHA321-7020 SGHA322-7020 SGHA421-7025 SGHA422-7025 Main port Pilot port 2 x 3/8 1/8 60 28 29 116 34 60 24 29 125 37.5 75 62 10.5 16 2 x 1/2 1/8 77 33 32 133 20 44.5 80 36 25 142 50 100 70 12 16 2 x 3/4 1/4 96 43 39 157 24 60.5 100 49 34 169 63 126 92 20.5 19 2 x 3/4 1/4 96 43 39 142 24 60.5 100 49 34 154 63 126 92 20.5 19 2 x 1 1/4 113
Basic inertia moment r 2 r m I m mWeight of load. kg rLoad center of gravity and distance of rotation axis. m Fig. 9 This shows inertia moment of m (weight) at r from the rotation axis. Calculation of inertia moment depends on the shape of the object.
, , + r l r c o M . 2 { + l .r!9!4t i I '.*"{ c o M . r s r + t '.*{ la:q.B js t ) L l s ! r 6 L + r tL--g.S!" i6 t+l r-fP!3zo r t I r-V-ru ?sdm,{t-!:-!!.Fst-r ?i,oxl+4r5"a, I l r c o M " I r + r t r c o M c , + l ll coM" i q (+) ( coMo ro(+) /r'Y;-"' M* fr'fi-"" ' ire!.f s | ) ,-Js!jr L , 3 smms { l'.;+_2. ( ) ( L--!9!!" zz r +r 3sd5{fj:3'?L i 3 idb61f-1:-_r: ( ' tl co 22 l+) tL-Lg!!"
, , + r l r c o M . 2 { + l .r!9!4t i I '.*"{ c o M . r s r + t '.*{ la:q.B js t ) L l s ! r 6 L + r tL--g.S!" i6 t+l r-fP!3zo r t I r-V-ru ?sdm,{t-!:-!!.Fst-r ?i,oxl+4r5"a, I l r c o M " I r + r t r c o M c , + l ll coM" i q (+) ( coMo ro(+) /r'Y;-"' M* fr'fi-"" ' ire!.f s | ) ,-Js!jr L , 3 smms { l'.;+_2. ( ) ( L--!9!!" zz r +r 3sd5{fj:3'?L i 3 idb61f-1:-_r: ( ' tl co 22 l+) tL-Lg!!"
2 4 6 13 Filtration accuracy (m) 0.5 1 5 10 20 50 75 100 No.
M plug connector 2 position double: VZS3250-M(Z)-01 02 3 position closed center: VZS3350-M(Z)-01 02 3 position exhaust center: VZS3450-M(Z)-01 02 3 position pressure center: VZS3550-M(Z)-01 02 DIN terminal 2 position double: VZS3250-D(Z)-01 02 3 position closed center: VZS3350-D(Z)-01 02 3 position exhaust center: VZS3450-D(Z)-01 02 3 position pressure center: VZS3550-D(Z)-01 02 164 (3 position
MXW 19 26 19 MXJ (Through) Note 1) MXP 3 +0.05 0 depth 2 7 3.5 MXY 3 +0.03 0 depth 2 13 (Through) Note 1) MTS M 2 x M1.7 x 0.35 thread depth 3.5 8 K 12.5 3.5 Vacuum port M3 x 0.5 (Plugged when the product is not a symmetric type.) (Plugged when the product is not a symmetric type.)
2.5 R 1 R 2 2 1.2 6 8 2 6.7 8.8 3 Applicable pad B06MU/B08MU/B10MU/B15MU ZP2-B10MU ZP2-B15MU 9 8 6 6 4 4 R 4 2 2 1.2 2 2 2 8 R 7 2 2 4 2 2 6 15 10 Note) R part has to be smooth with no corners.
with are made to order specification. 0.5 m Nil (Example) M9N 1 m M (Example) M9NM 3 m L (Example) M9NL 5 m Z (Example) M9NZ 622 Angular Style Air Gripper Series MHC2-6/MHCA2-6 Specifications Fluid Air 0.15 to 0.6 MPa 0.3 to 0.6 MPa 10 to 60C 0.02 mm 180 c.p.m Non-lube Double acting, Single acting (Normally open) Solid state auto switch (3-wire, 2-wire) Operating pressure Single acting
and Fig. 5.2-2 Key operation (2/2) show the operation of keys of the thermochiller.
If foreign objects with a size of 20 m or more are likely to enter, install the particle filter. 2 Filter Rc1/2 20m HRS-PF003 3 Flow meter 0 to 50L/min 4 Pressure gauge 0 to 1.0MPa 5 Others (pipe, hose, etc.) 15 or more Y-strainer Rc1/2 #1000 Install either the strainer or filter.