Dimensions [mm] Model A B C D E F G H J K L M N P Q R S T U V W Weight [g]*1 Outer body dia.
x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide Central axis
x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8 m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide Central
x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide Central axis
MY-S25 MY-S32 MY-S40 Applicable cylinder A 105 130 145 B 119 148 167 C 35 45 55 D 50 64 80 E 8 11.7 14.8 F 5 6 8.5 G 9.5 11 14 H 5.5 6.6 9 J M6 x 1 M8 x 1.25 M10 x 1.5 A B A B A B MY1H25 MY1H32 MY1H40 MY1 HT Side supports consist of a set of right and left supports.
Option Symbol and Composition Option Symbol and Composition Main body, shading coil material Holder material (in core ass'y) Option symbol Seal material Coil insulation type Main body, shading coil material Standard A B D E F G H J L N P T X Option symbol Seal material Coil insulation type NBR FKM Standard A B D E F G H J L N P T X NBR FKM B Polyacetal B FKM EPDM Brass or BC6, Copper FKM
C H G F E D B A Port size Model J K 959 317 289 363 157 152 910 260 R 3/4 IDU11C/11D 571 580 30 70 1009 337 309 383 207 175 960 280 R 1 IDU15C : Power source 220 to 240VAC 7
16 (24) 16 (24) 17 (25) 19.5 (28.5) 24 (36) 24 (36) 32.5 (46.5) 32.5 (46.5) B 20.5 (28. 5) 20.5 (28.5) 21.5 (29.5) 24 (33) 28.5 (40.5) 28.5 (40.5) B 17.5 (25.5) 17.5 (25.5) 18.5 (26.5) 21 (30) 25.5 (37.5) 25.5 (37.5) 34 (48) 34 (48) B 18 (26) 18 (26) 19 (27) 21.5 (30.5) 26 (38) 26 (38) A HS A A A B 19.5 (27.5) 19.5 (27.5) 20.5 (28.5) 23 (32) 27.5 (39.5) 27.5 (39.5) A HS A HS B 15 (22.5) 15
8370: JIS B 8361: JIS B 9960-1: 1 ) JIS B 8433-1993: *2) 1. 2. 3. 1. 2. 3. 4
A Hs 32 to 63 D-P3DWA B A Hs Auto Switch Proper Mounting Position Auto Switch Mounting Height (mm) (mm) D-M9 D-M9V D-M9W D-M9WV D-M9A D-M9AV Auto switch model Auto switch model D-A9V D-P3DWA D-M9V D-M9WV D-M9AV D-A9 D-A9V D-P3DWA Bore size (mm) Bore size (mm) B 11 12.5 13 15 16 20 A 11 10.5 12 14 13.5 16.5 B 7 8.5 9 11 12 16 A 6 7.5 9.5 9 12 B 8 8.5 10.5 11.5 15.5 Hs 24.5 26 29 33 38.5
Temperature Data A or B = Series IDUS: Data A Series IDFS: Data B Air pressure Data C = 2 Calculate corrected air flow by using A or B and C. Corrected air flow = (Air flow) (Data A x Data C) Corrected air flow = (Air flow) (Data B x Data C) 3 Select a model having an air flow capacity that is higher than the corrected air flow.
Referring to case u where "W2" is a sphere, 4a +b 2 2 2 4a +b 2 1 2 1=m1 +m2 12 12 2 r K=m2 5 2 tThin rectangle board (Parallelogram) !0Gear transmission Position of rotation axis: Passes through center of gravity and perpendicular to the board. (Same formula regardless of board thickness.) 1. Find moment of inertia1B around the rod (B). 2.
How to Order B 32 30 D C CQ2Y Standard B F9BW S 32 30 D C CDQ2Y With auto switch Number of auto switches With auto switch (Built-in magnet) 2 pcs. 1 pc. n pcs.
P-1 = A (A B) / 4 H-1 = (A B) / 2 A = Maximum pressure value B = Minimum pressure value For low differential pressure For low pressure For compound pressure PSE533 PSE543 PSE563 For positive pressure For vacuum Pressure range C Display calibration function This function eliminates slight differences in the output values and allows uniformity in the numbers displayed.
a e d c T-slot dimensions 2 x P XAH9 depth XL 2 x P (Plug) XAH9 depth XL S Q G J K PB GB GA [mm] FA PA + Stroke Bore size [mm] a b c d e FB A + Stroke B + Stroke C + Stroke 32 6.5 10.2 5.5 3.5 9.5 40 6.5 10.5 5.5 4 10 50 8.5 12.5 7.5 4 12.5 E The use of a slot (width XA, length XB, depth XC) allows for a relaxed pin pitch tolerance, with the pin hole (XAH9, depth XL) as the reference, without
Double acting PA PA B A PB B A With by-pass Suck back valve Manual Operation-Series LVH N.C. Double acting P PA PA Locking and non-locking types available B A B A PB B A Integral fitting type/Threaded type Manifolds Main applications and fields For shut off For air bleeding N.C.
L K S H J M G A A (mm) Model A 189 198 B 66 79 C 2 2 D 11 11 E 55 75 F 41 52 G 63 68 H 20 20 J Max. 5 Max. 5 K L XLDQ-40 XLDQ-50 65 70 143 153 474 XLAQ/XLDQ Series Glossary of Terms 2 Shaft Sealing Method 1 Seal Materials Bellows Bellows offer cleaner sealing with reduced particle generation and less outgassing.
Model Selection 1 Obtain the correction factor for the temperature from data A or B and the correction factor for the air pressure from data C. Temperature Data A or B = Series IDUS: Data A Series IDFS: Data B Air pressure Data C = 3 2 Calculate corrected air flow by using A or B and C.
8370: JIS B 8361: JIS B 9960-1: 1 ) JIS B 8433-1993: *2) 1. 2. 3. 1. 2. 3. 4
D-A9V D-F9V D-F9WV A 22 (20) 5 (7) W B The dimension in ( ) is for D-F9V and D-F9WV. (mm) D-A9, D-A9V D-F9, D-F9W D-F9V, D-F9WV Bore size (mm) A A W B W B W A B 20 25 32 22 22 13 (10.5) 19 18 9 19 11 15 24.5 24.5 9 (6.5) 15 20 5 15 7 11 26.5 26.5 11.5 (9) 17.5 22.5 7.5 17.5 9.5 13.5 Values in ( ) are dimensions for D-A93 type.