Applicable Auto Switches /Refer to p.5.3-2 for further information on auto switch.
Calculate the load factor for each direction. x = Xc/Lx, y = Yc/Ly, z = Zc/Lz 5. Confirm the total of x, y, and z is 1 or less. x + y + z 1 When 1 is exceeded, please consider a reduction of acceleration and work load, or a change of the work load center position and series. Acceleration [mm/s2]: a Work load [kg]: m Work load center position [mm]: Xc/Yc/Zc z y 1. Horizontal 3.
3 y !1 e q !3 y !1 q @7 CXSJM20 to 32 CXSJL20 to 32 @5 i u !7 o !5 t !6 r !9 !8 @2 r !9 !8 @2 !6 o i u !7 !5 t #0 Rod cover Head cover Rod cover Head cover Parts List: Standard Piping No. Description Material No.
-6-35 P . 5-6-48 P . 5-6-54 P . 5-6-32 P . 5-6-26 7 3 Balanced poppet 10.8 5 Rubber spool 18 5 Metal spool 9.9 5 Metal spool 18 5 Rubber spool 6 3 Balanced poppet Dual pressure is available only on external pilot. 5-6-3 Mechanical Valves Series VM Precautions Be sure to read before handling.
AR-OMX0055-B PRODUCT NAME Regulator MODEL / Series / Product Number AR20(K)-(F,N)01(F,N)02(B,E,E1,E2,E3,E4,G,H,J,M)(-1,N,R,Y,Z,ZA)-D AR30(K)-(F,N)02(F,N)03(B,E,E1,E2,E3,E4,G,H,J,M)(-1,N,R,Y,Z,ZA)-D AR40(K)-(F,N)02(F,N)04(B,E,E1,E2,E3,E4,G,H,J,M)(-1,N,R,Y,Z,ZA)-D AR40(K)-(F,N)06(B,E,E1,E2,E3,E4,G,H,J,M)(-1,N,R,Y,Z,ZA)-D AR50(K)-(F,N)06(F,N)10(B,E,E1,E2,E3,E4,G,M)(-1,N,R,Y,Z,ZA)-D AR60(K)-(
(1) LECSS2-T P+DP+CG3G4 G3G4 P+D P+D P P+ C C G3 D (3) (1) G4 5m 5 m (12) 1.
F1 = X A1 X P . (1) F2 = X A2 X P . (2) 4 A1 = D2 . (3) 4 A2 = (D2 d2) . (4) F1 = Cylinder force generated on the extending side (N) F2 = Cylinder force generated on the retracting side (N) = Load rate A1 = Piston area on the extending side (mm2) A2 = Piston area on the retracting side (mm2) D = Tube bore size (mm) d = Piston rod diameter (mm) P = Operating pressure (MPa) While not
It is necessary to press down on the switch holder with your fingers to ensure that it does not move out of position. y Push the other clip of the switch holder into the square hole in the band, and fit these parts together.
Single Knuckle Joint I-G02/G03 Material: Rolled steel I-G04 Material: Cast iron Y-G02/G03 Material: Rolled steel Y-G04 Material: Cast iron NDH10 (Hole dia.) NDH10 MM MM L L RR1 E1 E1 A1 U1 NX NZ NX L1 NZ A Applicable bore size (mm) A A1 E1 L1 MM U1 NX NZ L Applicable bore size (mm) Applicable pin part no. Part no. NDH10 Part no.
(ZSE/ISE30A) P Reduction in setting w Reduction in setting work ork P Pre Prevention of mistakes in setting vention of mistakes in setting P Reduction in setting work P Prevention of mistakes in setting Cop Copy Copy 1 switch Slave pressure switch Master pressure switch (source of copy) 2 switches 10 switches 3-step setting -step setting 3-step setting 1 2 3 Push Push Adjust to the set-value
P EtherCAT P P P EtherNet/IP P P P P P Open network Applicable valve series PROFIBUS DP P P P P P DeviceNet P P P P P P CC-Link P P P P P P P AS-Interface P CANopen P CompoNet SY (Plug-in connector connecting base) 3000 P P P P P P 5000 P P P P P P S0700 (Stacking base) 0700 P P P P P 1000 P P P P P P 2000 P P P P P P SV 3000 P P P P P P 4000 P 1000 P P P P P P VQC 2000 P P P P P P 4000 P
Bore A1 L L1 MM Part No. B H B H d C C d 10 8 21 M4 X 0.7 16.2 Y-J010B SNJ-006B 16 11 21 M5 X 0.8 16.6 Y-J016B M6 X 1.0 4 8 9.2 6 NTJ-006A 2.4 M3 X 0.5 6.4 5.5 6 SNJ-010B M8 X 1.0 4 11 12.7 10 NTJ-010A 3.2 M4 X 0.7 8.1 7 10 Part No.
ZSE20C 0.0~-101.0 kPa K ZSE20CF -100.0~100.0 kPa T ISE20CH -0.100~2.000 MPa 24 X NPN2 A1 A Y PNP2 A3 C R NPN2+1 B T PNP2+1 E S NPN2+1 D + V PNP2+1 1: F + 4 2 M SI3 1 P psi2 2 3 kPaMpa (2m ) W 2 R1/4 C01 Rc1/8 N02 NPT1/4 A2 URJ1/4 L F02 G1/4 B2 TSJ1/4 2 2 () L() A A1 ZS-46-A1 C A3 ZS-46-E B ZS-46-B E ZS-35-B D ZS-46-D + F ZS-35-E -9No.PS-OMU0008CN-D / A ZS-46-A1
Formula CRA1 F1 = x A1 x P (1) F2 = x A2 x P (2) A1 = D2 (3) 4 CRQ2 MSQ A2 = (D2 d2) (4) 4 MSZ CRQ2X MSQX F1 = Cylinder force generated on the extending side (N) F2 = Cylinder force generated on the retracting side (N) = Load rate A1 = Piston area on the extending side (mm2) A2 = Piston area on the retracting side (mm2) D = Tube bore size (mm) d = Piston rod diameter (mm) P = Operating
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com F1 = x A1 x P (1) F2 = x A2 x P (2) A1 = D2 (3) 4 A2 = (D2 d2) (4) 4 F1 = Cylinder force generated on the extending side (N) F2 = Cylinder force generated on the retracting side (N) = Load rate A1 = Piston area on the extending side (mm2) A2 = Piston
absorbers Intemal shock absorbers ' M S O P / B 1 , 2 . 3 & 7 o n y .
A A1 E1 L1 Y-G02 Y-G03 Y-G04 Y-G05 Y-G08 Y-G10 16 25 30 30 40 50 55 M8 x 1.25 16 20 36 44 56 64 8 10 10 14 18 22 11.5 14 14 20 27 31 21 25.6 41.6 50.6 64 72 8.5 10.5 16 20 23 24 8 IY-G02 IY-G03 IY-G04 IY-G05 IY-G08 IY-G10 34 41 42 56 71 79 20 25, 32 40 50, 63 80 100 +0.4 +0.2 10.3 20 M10 x 1.25 10 +0.4 +0.2 12.8 22 M14 x 1.5 18 +0.5 +0.3 12 M18 x 1.5 28 22 +0.5 +0.3 16 M22 x 1.5 38 28 +0.5