1 Air Tank Series AT Model/Standard Specifications AT11C AT22C AT37C AT55C AT75C AT125C AT150C (1) AT220C (1) AT6C Model Fluid Tank capacity (l) 400 500 700 Compressed air 1000 1500 2000 3000 100 200 Max. operating pressure (MPa) Port size 0.97 Rc 1/2 Rc 3/4 Rc 11/2 2B flange 3B flange 4B flange Set pressure for safety valve (MPa) 0.97 1.46 0 to 100 Proof pressure (Under water pressure) (
SQ2000 20 ms or less Cylinder Speed Chart Pressure: 0.5 MPa/Load factor: 50% Flow Characteristics Note) Series CJ2 6 10 16 20 25 32 40 Series CM2 Bore size (mm) Base mounted Average speed (mm/s) Metal seal Rubber seal C [dm3/(sbar)] b Cv C [dm3/(sbar)] b Cv 800 700 600 500 400 300 200 100 0 Perpendicular, Upward actuation Horizontal actuation SQ1000 0.63 0.11 0.14 0.80 0.20 0.19 800 700
, 350, 400, 450, 500, 600, 700, 800 12-REA40 12-REA50 50 1300 Non-lube 200, 250, 300, 350, 400, 450, 500, 600, 700, 800, 900, 1000 63 12-REA63 Note 1) Stroke exceeding the standard stroke but below the maximum manufacturable stroke is available as special orders.
A /B 90 0.1mm/ 2-1. 2-2 F.G CE1-R** CE1 CEU5 OUT1OUT5 RS-232C OUT1OUT20(bank ) (31 ) 221 () B L F G D 0.5 L 3 Z 12 12mm 20 20mm 32 32mm 40 40mm 50 50mm 63 63mm 4063 N R H (mm) (mm) (mm) 25 50 75 100 125 150 175 200 250 300 400 500 12 20 32 40 50 63 222 A90 D-A90 M9N D-M9N M9NW D-M9NW A93 D-A93 M9P D-M9P M9PW D-M9PW A96 D-A96 M9B D-M9B M9BW D-M9BW A90V D-A90V M9NV D-M9NV
Description Housing Outside tube Body Flower fin tube assembly Material Note SGP, SS400 STK FC200 C1220T Flower fin Flower fin q w e r q w e r Water chamber cover FC200 t AFF AM Replacement Parts Replacement Parts Misc. HAW22 HAW55 HAW75 HAW37 HAW110 No. Description HAW2 HAW7 Material No.
. *2 (4) S troke [mm] Standard Produced upon receipt of order 300 200 400 500 600 700 800 900 1000 1200 1500 Str o k e (m m ) Ty pe LEJS40 LEJS63 *2Strok es other than standard and produced up o n receipt o f order are available as special orders, so plea s e contact with our com pany . (9) Driver type *4 (7) Cable type *4 *5 *6 Com patible driv er P owe r supply v oltage [V ] Without cable
A One-touch fittings KP series B Dimensions (mm) Model A B C SFE4G 6 68.5 16.5 SFE5H 8 79 20.5 SFE7J 10 89 24 Bracket SFE-BR3 14 5 3.4 (15.5) 12.5 5.4 5.4 14 24 (20) SFE-BR4/5/7 B C (J) H D (F) G A E E Dimensions (mm) Model A B C D E F G H J SFE-BR4 30 16 7 4.5 7.5 (24.5) 17 15.5 (19.5) SFE-BR5 30 10 8.2 4.5 8.1 (29) 20 18 (23) SFE-BR7 34 14 7.35 4.5 9.8 (35) 24 20 (27.3) ( ): Reference dimensions
[Mitsubishi Electric Corporation] [Yasukawa Electric Corporation] Table Table Frame-type linear guide Frame-type linear guide One-piece structure of the linear guide integrated with the frame Martensitic stainless steel Steel balls (Circulating) Recirculating Steel Balls Speed (mm/s) Page Standard stroke (mm) and Model Non-standard motor Standard motor Deflection 100 200 300 400 500 600 700
There is a raised part on the controller side. (2) Dimensions Actuator side Controller side Protruding part 86 - 15.4 Controller setting cable (1) How to Order L E C W 2 A C Communication cable L E C W 2 U USB cable PC Communication cable (LEC-W2A-C) USB cable (LEC-W2-U) Controller configuration software USB driver Download from SMCs website https://www.smcworld.com (2) Operating environment
710 670 20 700 230 120 222 2 1 14-13-14
[mm] Bore size MXZ MXH MGP CQM 12 37.4 471 58 25 16 40.9 53.5 64 29 20 49.4 64.5 83 36 25 57.4 93 40 Compact auto switch can be mounted directly. 1 Compared with bore size of 10 Mounting Through-hole mounting Tap mounting 1 Compact Cylinder with Linear Guide MXZ Series Port Location Selectable Auto Switch Mountable on 3 Surfaces (For 20, 25) Solid state auto switch: D-M9 MXZ20 -30-M9BW
./0.05 MPa Ambient and fluid temperature 5C to 60C Port size Rc1/4 (Gauge port Rc1/8) Weight Approx. 700 g (at 100 mm stroke) Construction/Principle of Operation When signal pressure enters input chamber q, the input diaphragm e is deflected left. Clearance of the nozzle y is reduced causing higher back pressure at diaphragm A u.
ITV End Block IC O-ring ARM5 E L A ITVH ITVX End block Air supply specification Air supply speicification Symbol 1 2 PVQ Centralized supply Manifold mounting Individual supply VY1 Mounting Symbol A B 1 Applicable for the end block on the right side only.
d e. 6. f. g. ( ) h. i. 7. j. k. l. 2. 8. ,,, 9. 1. 10. 2. 11. 3. 1. 1. 0.11.0MPa 0.30.5MPa :060 2. 3 2. 1. 3. 5 2. 35% 1. ( 6 ) ()70% ()35% 2. 50% ( 6 ) 15% 3. 1. 4. () 0.5 3. 5. F.G. 4. 1. 1. 2. 2. 3. 1. 1. 2. 2 3. 2. 1.52 4. 5. 1. 1ISO VG32 1. 2. 1. 2. 3. 1. 2. 1. 2. 14.5mT CE2 3. 15,000 18cm 4. 3. 4. IP65 5.
(F) C (10, (10 1m) 1m) J K L2 N1 M P 13 4x H (911)[] 911)[] mm A B C D E F G H J K L M N P IDU22E R1 325 775 1153 93 445 1235 279 353 600 379 46 85 IDU37E R11/2 360 1258 64 550 1350 290 388 680 414 50 13 IDU55E 855 1345 1440 R2 470 53 530 360 36 500 75 700 526 IDU75E 1480 1575 70 IDU Series 6-2 GWP 6 2 IDX-OM-W029 6 6-4 IDU22E-23 IDU37E-23 GFCI For Option R GFCI R GFCI For Option
Built-in rubber bumper reduces the metal noise that occurs when piston stops. 1 Air Cylinder Double Acting, Single Rod JMB Series 32, 40, 45, 50, 56, 63, 67, 80, 85, 100 How to Order With auto switch JMDB 32 50 M9BW B With auto switch (Built-in magnet) Not available without magnet Number of auto switches Nil 2 S 1 3 3 n n Mounting B Basic Auto switch Bore size Nil Without auto switch 32
2 r w u e !5 y !9 u t MDHR3 !4 !3 q !1 @0 @1 w o e i !5 MHZ MHF r !7 !6 t !8 !0 !2 i !9 y u MHL Component Parts MHR MHR Description Material Description Material Note No. Note No.
, 5, 6 Front nose mount (B) 12 32 32 40 Rear pivot mount (C) 40 Double end mount (E) Note) Minimum stroke for mounting auto switches: 0.6 inch for 2 switches, 0.4 inch for one switch. 2 Stainless Steel Body Cylinder Series NCM-A Dimensions ZB + STROKE A K W 0.50 2-ZD NE ZC MM E N KK UNF-2A N B -0.003 0.000 PILOT YC WA WB D ACROSS FLATS Y NN MOUNTING NUT Bore MM KK A B D E K N 075 (3/4") 0.250
The kinetic energy can be calculated using the formula below. 2 1 = I E E: Kinetic energy [ J ] 2 I: Moment of inertia [ 2 m kg ] : Angular speed [ s rad ] There is a threshold of kinetic energy that a rotary actuator allows. Therefore, by finding the moment of inertia, it is possible to find the threshold value of the rotation time.