+ Stroke F F ZZ + Stroke H B E G Mounting nut NN NA F N CY3B15 (mm) Model CY3B15 CY3B20 CY3B25 CY3B32 CY3B40 B 35 36 46 60 70 NA 17 24 30 36 46 R 28 34 40 50 S 83 106 111 124 150 W 35 50 50 50 60 X 19 25 30 40 40 D 16.6 21.6 26.4 33.6 41.6 ZZ 103 132 137 156 182 E 3 2 2 2 3 N 11 18 18.5 20 26 F 10 13 13 16 16 MM M4 x 0.7 M4 x 0.7 M5 x 0.8 M6 x 1 M6 x 1 G 5.5 7.5 7.5 8 11 NN M10 x 1 M20 x
Q N F I NA F N CC 0.1 + CY3B6 to 15 CY3B50, 63 (mm) B 17 25 35 36 46 60 70 86 100 0.007 0.043 30 32 CC 32 38 D 7.6 12 16.6 21.6 26.4 33.6 41.6 52.4 65.4 E 4 1.5 2 2 2 2 3 8 8 F 8 9 10 13 13 16 16 2 2 G 5 5 5.5 7.5 7.5 8 11 14 14 H 13.5 12.5 13 20 20.5 22 29 33 33 I 28 34 40 50 58 72 J 4.5 4.5 6 6 8 8 10 12 12 K 5 4 11 8 10 15 16 25 26 N 9.5 11 11 18 18.5 20 26 25 25 Q NN S 62 63 83 106 111
+ Stroke F F ZZ + Stroke H B E G Mounting nut NN NA F N CY3B15 (mm) Model CY3B15 CY3B20 CY3B25 CY3B32 CY3B40 B 35 36 46 60 70 NA 17 24 30 36 46 R 28 34 40 50 S 83 106 111 124 150 W 35 50 50 50 60 X 19 25 30 40 40 D 16.6 21.6 26.4 33.6 41.6 ZZ 103 132 137 156 182 E 3 2 2 2 3 N 11 18 18.5 20 26 F 10 13 13 16 16 MM M4 x 0.7 M4 x 0.7 M5 x 0.8 M6 x 1 M6 x 1 G 5.5 7.5 7.5 8 11 NN M10 x 1 M20 x
CJ1 2 to 20 in/s (50 to 500 mm/s) 2 to 20 in/s (50 to 500 mm/s) Piston speed (50 to 500 mm/s) CJP Cushion Air cushion standard Basic style, Foot style, Rod side flange style, Head side flange style, Clevis style, Side tapped style, Center trunnion style, Head side trunnion style, Side lug style, Rod side trunnion style Basic style, Foot style, Clevis style, Rod side flange style, Head side
CJ1 2 to 20 in/s (50 to 500 mm/s) 2 to 20 in/s (50 to 500 mm/s) Piston speed (50 to 500 mm/s) CJP Cushion Air cushion standard Basic style, Foot style, Rod side flange style, Head side flange style, Clevis style, Side tapped style, Center trunnion style, Head side trunnion style, Side lug style, Rod side trunnion style Basic style, Foot style, Clevis style, Rod side flange style, Head side
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
Without Air Cushion Bore size (mm) Bore size (mm) S ZZ S ZZ In the case of w/o air cushion, it comes with rubber bumper.
Option symbol T Option symbol S With terminal block for power supply, run & alarm signal and remote operation Power supply terminal block connection IDFB3E-11 to 22E-11 IDFB4E to 75E The option allows the connection of a power cable to a terminal block. 200 V and 460 V specifications are equipped as standard.
time: tp = ta + tc + td [s] 0 0 250 500 750 1000 (Add settling time to the Positioning time to get the total Load Ma[g] positioning time).
9.5 11 12 14 16 20 Since this is a guideline including hysteresis, not meant to be guaranteed.
Rotations per Second Distance of movement per second Distance of movement per rotation Rotation Speed (rpm) = Speed (mm/s) Lead (mm) }60 (S) = {500 (mm/s) 20 (mm) }60 (s) =1500 (rpm) -38- 6.6.3 Acceleration/deceleration Time Configuration < Acceleration/deceleration Time Configuration> Acceleration/deceleration time (ms) configuration: The acceleration/deceleration time sets the amount
1 LECP1 ( 1 NPN NPN 64 32 32 32 32 64 PNP PNP 1P 1P 80 40 40 40 40 80 AN LECPA ( AN LECPA NPN NPN AP AP PNP PNP (m) () 8 8 8 8 L L 1.5 1 1.5 1 A A 10 10 3 3 3 3 B B 15 15 5 5 5 C C 20 20 5 () () R R S S / P.42 7.3 <> (NPNPNP) LEHF10K2-16 3 - 3.3 9 13 16 10 18 15 8 11 6 ( 12 4 5 7 2 1 3 17 14 1 2 A 3 B 4 + 5 6 + 7 + 8 9 10 A 11 B 12 13 NBR 14 15
Suffix for stroke adjusting unit Nil S Piping Both sides One side Standard type Centralized piping type Nil G Note) S is applicable for stroke adjusting units L and H.
Rc 18 02 Rc 14 07 1/4 Tube 11 3/8 Tube T01 1/8NPT T02 1/4NPT S Y M B O L S T Y P E I N L E T P O R T B Box type D Body type 06 6mm Tube 08 8mm Tube 01 Rc1/8 07 1/4 Tube 09 5/16 Tube T01 1/8NPT V A C U U M P R E S S U R E S 660mm Hg L 360mm Hg D I M E N S I O N S M A X I M U M S U C T I O N F L O W R AT E/ A I R C O N S U M P T I O N U N I T (ln/min) Nozzle Diameter mm Specifications Max Vacuum
time: tp = ta + tc + td [s] 0 (Add settling time to the Positioning time to get the total 0 250 500 750 1000 positioning time).
Terminal No. 2 4 6 8 10 12 14 16 18 20 Output No. 1 3 5 7 9 11 13 15 24 V Type +COM EX510-S102 Terminal No. 1 3 5 7 9 11 13 15 17 19 Output No. 0 2 4 6 8 10 12 14 0 V Type + + + + + + + + -COM Terminal No. 2 4 6 8 10 12 14 16 18 20 Output No. 1 3 5 7 9 11 13 15 0 V Type + + + + + + + + -COM : Only a flat cable type manifold (P kit) can be connected to EX510-S 02 .
Terminal No. 2 4 6 8 10 12 14 16 18 20 Output No. 1 3 5 7 9 11 13 15 24 V Type +COM EX510-S102 Terminal No. 1 3 5 7 9 11 13 15 17 19 Output No. 0 2 4 6 8 10 12 14 0 V Type + + + + + + + + -COM Terminal No. 2 4 6 8 10 12 14 16 18 20 Output No. 1 3 5 7 9 11 13 15 0 V Type + + + + + + + + -COM : Only a flat cable type manifold (P kit) can be connected to EX510-S 02 .
B1 MM LH D 2 x LD NN Width across flats KA Effective thread length FL LV LT LF LG LY Refer to page 11 for details of pivoting clevis bracket.
My = 0.5 x 9.8 (10 + 11)/1000 = 0.11 A3 = 11 May = 1 x 1 x 9.14 = 9.14 Mymax = 9.14 K = 1 = 1 2 = 0.11/9.14 = 0.012 Examine Mr.
Terminal No. 2 4 6 8 10 12 14 16 18 20 Output No. 1 3 5 7 9 11 13 15 24 V Type +COM EX510-S102 Terminal No. 1 3 5 7 9 11 13 15 17 19 Output No. 0 2 4 6 8 10 12 14 0 V Type + + + + + + + + -COM Terminal No. 2 4 6 8 10 12 14 16 18 20 Output No. 1 3 5 7 9 11 13 15 0 V Type + + + + + + + + -COM : Only a flat cable type manifold (P kit) can be connected to EX510-S 02 .