L 60.5 3 48 2 85.5 5 73 4 110.5 7 98 6 135.5 9 123 8 160.5 11 148 10 185.5 13 173 12 210.5 15 198 14 235.5 17 223 16 19 248 18 20 260.5 VP7 285.5 21 273 No.
Shock Absorber Specifications Made to Order Specifications (For details, refer to page 8-31-1.)
(Tightening torque of M3 screw should be 0.5 to 0.7Nm.) tModification of the detecting position should be made in the condition of e.
IDFB4E to 15E AT 1.6 [40] IDF IDU Air Flow Capacity 2.36 [60] Model IDFB3E IDFB4E IDFB6E IDFB8E IDFB11E IDFA D Circuit breaker 5 SCFM (8 m3/h) 13 SCFM (23 m3/h) 17 SCFM (29 m3/h) 19 SCFM (32 m3/h) 23 SCFM (39 m3/h) Air flow capacity (ANR) IDFB IDFB A Conditions: Inlet air pressure: 100 psi (0.7 MPa), Inlet air temperature: 100F (37.8C), Outlet air temperature: 50F (10C), Ambient temperature
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 60
Auto switch operating range Auto switch operating range 15 40.5 20.5 Model Model 25 50.5 30.5 30 59 39 10 35 15 25 46.5 34.5 30 55 43 10 31 19 15 36.5 24.5 A B A B A B A B A B A B 11-/22-MXP10 11-/22-MXP10 11-/22-MXP12 11-/22-MXP12 3 5 11-/22-MXP16 11-/22-MXP16 832 Air Slide Table MXP/MXPJ6 11221122Dimensions: MXPJ6 5 C 11-/22-MXPJ6-5 depth 2.5 2.5 7 H 5 3 3.5 4 x M3 x 0.5
Width across flats 5.5 4-M3 x 0.5 depth 4 6.5 16.4 M3 x 0.5 7 4 3.7 21 20 8.5 depth 2.5 3 4-M4 x 0.7 A 0.5 19 +0.030 0 depth 2.5 3 20 0.05 Prepared hole diameter 3.3 +0.030 0 15 W 0.50.05 B D 2-M5 x 0.8 Piping port M5 x 0.8 Vacuum suction port 28 27 10 4.5 depth 1.5 3 J 6 +0.030 0 10 9.5 4 Section AA Mounting base side B D +0.030 0 Q QL depth 1.5 3 11-/22-MXP10-20 Without magnet and switch
(M3: Port PE) Pilot valve exhaust port Hysteresis setting trimmer (AN203-KM8) Silencer 62.1 57.1 49.4 41.6 33.6 29.5 23.5 21 10 Vacuum port (8.25) 3.75 6 One-touch fitting Port V (5.25) (13.5) 19 88 18.75 16.75 Supply port Button for block separation 6 One-touch fitting Port P1 27 ZYX35LOZ-10S1 (Specifications without vacuum switch) End plate (P44027A) 31 20 EXH.
For example, changing from F Kit (D-sub connector) to S Kit (serial transmission) is achieved by simply changing the kit piece. 19 20 19 20 19 20 19 20 19 20 19 20 19 20 19 20 COM Station 1 Double wiring Station 2 Single wiring Station 3 Double wiring Station 4 Single wiring (Refer to the connector wiring diagram) Printed circuit board patterns between connectors are shifted at every station
62 32 16.5 10.5 73 133 (141) 32 35 19 62 38 18.5 10.5 73 135 (143) 40 35 19 70 48 21.5 10.5 82 150 (159) 50 40 19 78 59 24 10.5 91 170 (182) 63 40 20 78 72 24 10.5 91 170 (182) 1/4 stroke * Refer to the basic type for the female rod end.
(mm) Note) Weight (g) D Applicable tubing KGF04-01 KGF04-02 KGF06-01 KGF06-02 KGF06-03 KGF08-01 KGF08-02 KGF08-03 KGF10-02 KGF10-03 KGF12-02 KGF12-03 1 8 4 15 23 11 16 14 11 13 15 17 13.1 10.4 14 27 31 27.5 31 33.5 29 32.5 33.5 34.5 36.5 35 37 41 4 5.6 10 Connection thread 1 4 17 14 17 19 14 17 19 17 19 17 1 8 15 22 25 17 24 24 27 30 36 31 1 4 12 6 3 8 1 8 1 4 3 8 1 4 3 8 1 4 3 8 11 13 14
16 323 313 17 342 332 18 361 351 19 380 370 20 399 389 4-13-10
holes) 67.5 59 P R P R mPm 4Rc(PT) 1/8 (ports P, R) 8 23 39 2.3 Pg.7 1 20.5 P = 19 13.5 5 1.5 20.5 25 30 53.5 Approx. 300 (lead wire length) L2 L1 31 10.5 8 39 23 49.5 1.5 10.5 49.5 4-M3 x 0.5 depth 6 (bracket mounting screws) 4-4.5 (bracket mounting holes) 7 7 5 L3 P = 19 16 nRc(PT) 1/8 (port A) 23 8 19.5 L: Dimension table n: Stations n L L1 L2 L3 1 37 27 13 2 56 46 32 3 75 65 51 4 94
holes) 67.5 59 P R P R mPm 4Rc(PT) 1/8 (ports P, R) 8 23 39 2.3 Pg.7 1 20.5 P = 19 13.5 5 1.5 20.5 25 30 53.5 Approx. 300 (lead wire length) L2 L1 31 10.5 8 39 23 49.5 1.5 10.5 49.5 4-M3 x 0.5 depth 6 (bracket mounting screws) 4-4.5 (bracket mounting holes) 7 7 5 L3 P = 19 16 nRc(PT) 1/8 (port A) 23 8 19.5 L: Dimension table n: Stations n L L1 L2 L3 1 37 27 13 2 56 46 32 3 75 65 51 4 94
Calculate (1) (Wmax) from the graph of max. payload (W1, W2, W3) and calculate (2) and (3) (Mmax) from the maximum allowable moment graph (M1, M2, M3).
Calculate (1) (Wmax) from the graph of max. payload (W1, W2, W3) and calculate (2) and (3) (Mmax) from the maximum allowable moment graph (M1, M2, M3).
40 26 23 26.5 23.5 30.5 25 22 29 28 31.5 23.5 20.5 27.5 26 25 28.5 50 33.5 24.5 34 31 38 32.5 23.5 36.5 35.5 39 25 22 29 27.5 26.5 30 63 33.5 28.5 34 31 38 32.5 27.5 36.5 35.5 39 29 26 33 31.5 30.5 34 80 40.5 30 41 38 45 39.5 29 43.5 42.5 46 30.5 27.5 34.5 33 32 35.5 100 44.5 32.5 45 42 49 43.5 31.5 47.5 46.5 50 33 30 37 35.5 34.5 38 31 Compact Hydraulic Cylinder Double Acting/Single Rod
Max. load mass 2 = M/Mmax Review M1, M2, M3 Mmax is the allowable moment 2. Static moment 3 = Me/Memax Review Me1, Me3 Memax is the allowable moment 3.
Max. load mass 2 = M/Mmax Review M1, M2, M3 Mmax is the allowable moment 2. Static moment 3 = Me/Memax Review Me1, Me3 Memax is the allowable moment 3.
Max. load mass 2 = M/Mmax Review M1, M2, M3 Mmax is the allowable moment 2. Static moment 3 = Me/Memax Review Me1, Me3 Memax is the allowable moment 3.