(mm) Overhang L (mm) Graph V = up to 800 mm/s (up to 700 mm/s for 15, 20) 4 CXSJM CXSJL Graph V = up to 600 mm/s 3 CXSJM CXSJL 20 32 0.5 25 1 15 20 0.5 15 Weight m (kg) 10 0.1 10 0.1 6 6 10 20 30 40 50 100 5 10 20 30 40 50 100 5 Overhang L (mm) Overhang L (mm) Note) V = 700 mm/s for 15, 20. 4 Series CXSJ Horizontal Mounting V = up to 400 mm/s V= = up to 800 mm/s V = up to 400 mm/s V= = up
CDU Double Acting, Single Rod D-A9, D-A9V D-M9, D-F9W D-M9V, D-F9WV Bore size (mm) B W A W W B B A A 6 10 16 20 25 32 3.5 4.5 17.5 6.5 0.5 3.5 13.5 17.5 2.5(5) 7.5 0.5 16.5 2.5 3.5 7.5 12.5 16.5 1.5(1) 8 0.5 20 1.5 4 8 16 20 2(0.5) 10 2 24 0 6 10 20 24 4(1.5) 11 3.5 26.5 1.5 7 11 22.5 26.5 5.5(3) 12.5 4.5 27.5 2.5 8.5 12.5 23.5 27.5 6.5(4) Note 1) Figures in the table above are used as a
Common supply bushing 136144-S Individual supply bushing 136144-K Single unit regulator / Port plug for regulator block 136144-S 136144-K Option A-A A Nil X17 None A-A A Oil-free 12 12 10 A A 8 8 15 15 10 14-4-38 21 Regulator Single Unit Type Series ARM10 How to Order F.R.L. ARM10 06 B Z 1 AV AU 1 2 3 4 1.
Common supply bushing 136144-S Individual supply bushing 136144-K Single unit regulator / Port plug for regulator block 136144-S 136144-K Option A-A A Nil X17 None A-A A Oil-free 12 12 10 A A 8 8 15 15 10 14-4-38 21 Regulator Single Unit Type Series ARM10 How to Order F.R.L. ARM10 06 B Z 1 AV AU 1 2 3 4 1.
132 11 16 13 40 100 13 340 1/2 66 140 12 20 16 47 125 15 340 1/2 77 140 12 20 16 55 160 20 375 3/4 94 159 12 24 20 60 421 CHAW Series Dimensions Rod flange type: CHAWF 4 x FD 4 x J 2 x Rc P T T V V Cushion adjustment screw GA Air release GA M Width across flats G Width across flats G MM MM R (max.) d d W W D E E D FY B C MA a a FT MA B F NA NA F K A A K H + Stroke S + Stroke FX H ZZ + 2
An ultrasonic thickness indicator may also be used to check for any reduction in material thickness. q VBA200 VBA400 VBA11 VBAT05(S) Air tank VBAT10(S) VBAT20(S) VBAT38(S) 1.13-7 5 Port Electro-Pneumatic Proportional Valve VER2000/4000 Capable of actuating a cylinder and performing analog control of pressurization VER alone can be used to switch and actuate a cylinder and to perform stepless
(mm) (mm) A H MM NDH10 NX1 U1 R2 Y Z A1 E1 L1 MM NDH10 R1 NX U1 A Applicable bore size (mm) 20 25, 32 40 Bore (mm) 20 25, 32 40 Part no.
(mm) (mm) A H MM NDH10 NX1 U1 R2 Y Z A1 E1 L1 MM NDH10 R1 NX U1 A Applicable bore size (mm) 20 25, 32 40 Bore (mm) 20 25, 32 40 Part no.
to Order MY3 A 16 300 LS M9B Type Number of auto switches Nil S n Short type (Rubber bumper) Basic type (Air cushion) 2 pcs. 1 pc. n pcs.
ML2B I C J G5-S D T W E CV U 4-N through 8-O counterbore MVGQ 20 (22) 10 (11) V CC H + Stroke A + 2 stroke B + Stroke M 0.2 E RB Built-in One-touch fittings (20 to 50) Tubing O.D.
Check using a feeler gauge that the clearance between the position indicator (109) and the electronics cover is 1 mm. 7 ND90 71 en 17 N O I T A C O L S U O D R A Z A H N O I T A C O L S U O D R A Z A H N O N ND9000H Valve Positioner Position Transmitter X300 Ui (Vmax) = 28 V Ii (Imax) = 120 mA Pi (Pmax) = 1 W Li = 53 uH Ci = 22 nF Ex i Barrier + 1 Uo (Voc) 28 V Io (Isc) 120 mA Po 1 W
Vacuum Pad: Ball Joint Type ZPT/ZPR Series Pad Diameter: 10, 13, 16, 20, 25, 32, 40, 50 on n io on n a io a pt pt s s or la or la ds nt ds nt ed ed a a or or w w l f l f or or ea ea k k id su id su pe rfa pe rfa ty ty ce ce nt nt s s oi oi ac ac l j l j ac ac al al e e B B s s ZP3 ZP3E ZP2 ZP2V ZP ZPT ZPR ZPT ZPR XT661 ZPT Series: Vertical Vacuum Entry Type ZPR Series: Lateral Vacuum Entry
15 8 30 8 6 8 10 5 5 20 4 5 12 10 16 10 12 16 10 2 0 0 0 0 100 200 300 400 500 600 V (mm/s) 0 100 200 300 400 500 600 V(mm/s) 0 100 200 300 400 500 600 V(mm/s) -9- (1)(DC24V) LEFS40 (mm) 1) 200, 300, (400), 500, (600) (700), 800, (900), (1000) 50 60 (kg) ) 23 (mm/s) 2) 20500 10250 (mm/s 2) 3,000 (mm) 0.02 (mm) 20 10 (m/s 2) 3) 50/20 () 540 (%) 90 RH ) 56.4 (DC24V) A/B 800 / (
x 0.8 MM D D FY FB H + Stroke Z + 2 x Stroke S + Stroke NA F NA FT F A H FZ FX A 2 x FC Mounting hole C B 0 0.3 B 0 0.3 Drawing of view E (mm) Bore size 16 10 15 15 B GA FX FT F A 18.3 15 C 20 17 5 4 8 8 5.5 5.5 2.3 2.3 33 33 20 20 5 5 FB FY D FC FZ 12-0.027 10-0.022 H NA NDh8 Z S NN 11 11 17.5 19 66 65 M12 x 1.0 M10 x 1.0 MM 42 42 GC 0 M4 x 0.7 28 28 122 121 20.5 20.5 0 M5 x 0.8 Specific
Contents Action CQSB12-S-PS CQSB12-T-PS 12 12 Kits include items !2, !3 and !4 from the table above. CQSB16-S-PS CQSB16-T-PS 16 16 Kits include item !3 Single acting Spring return Single acting Spring extend CQSB20-S-PS CQSB20-T-PS 20 20 from the table above. CQSB25-S-PS CQSB25-T-PS 25 25 Seal kits consist of item !
A (Part no.: ZS-46-A1) 20 20 45 30 2 5.2 30 34.6 19 5.2 14.7 47 9.6 The bracket configuration allows for mounting in four orientations.
B C W W CX RR L S + Stroke ZZ + Stroke H CB Stroke range Bore size (mm) B CD F A D CB G C E GA J NB S CX GB L NA P PJ RR MM MA K H 40 52 14 64 8 25 to 800 M6 x 1 M16 x 1.5 46 29 12 22 22 19 40 34 33 107 20 16 19 3/8 58 17 19 47 50 25 to 800 65 64 M8 x 1 M20 x 1.5 46.5 28.5 14 15 28 28 24 50 42 34 108 20 16 19 3/8 58 17 25 11 59 +0.043 0 63 25 to 800 77 93 M8 x 1 M27 x 2 46 33 20 19 36 36
The kinetic energy of a load can be found using the following formula. 20 10 5 M 100 300 1000 2000 500 M 2 2 Ek = Maximum drive speed (mm/s) Ek: Kinetic energy (J) M: Weight of load (kg) : Piston speed (m/s) Example) Find the rod end load limit when a 63 air cylinder is operated at a maximum drive speed of 500mm/s.
D D t D t t c e c c e e u u s u s s d i d i d i g g g o o o n n n r r r P P P A A A 1 1 9 9 9 9 9 9 w w 9 w 9 9 m I m I n n 9 9 9 u d u d a a a r u r u o s o F s tr F i e tr i e 9 9 9 D r r D r r r e e e e v v s 1 d d s 1 1 d o o i i n g n g n n n n a a H H n P n P g g r r o o i i s s d d e e u u D D c c t t d A d A r r w w a a 12-11-1 2 Courtesy of Steven Engineering, Inc.-230 Ryan Way,