Cylinder speed 1000 mm/sec. Sequencer response time 0.1 sec. Detecting point dispersion Within 100 mm (= 1000 mm/sec. x 0.1 sec.) Take PLC response time into consideration when using.
D-M9P D-M9NV D-M9B D-M9N D-M9PV D-M9BV Auto switch part no.
Cylinder speed 1000 mm/sec. Sequencer response time 0.1 sec. Detecting point dispersion Within 100 mm (= 1000 mm/sec. x 0.1 sec.) Take PLC response time into consideration when using.
] 1000 1000 1000 1000 800 800 800 800 L4 L4 [mm] L4 [mm] L4 [mm] L4 [mm] 600 600 600 600 Me X 400 400 400 400 m 200 200 200 200 0 0 0 0 0 10 20 30 50 40 0 20 40 60 80 0 10 5 15 20 0 10 5 15 20 30 25 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 1000 1000 1000 1000 800 800 800 800 Me L5 [mm] L5 [mm] L5 [mm] L5 [mm] m 600 600 600 600 L5 Wall Y 400 400 400 400 200 200 200 200 0
Cylinder speed 1000 mm/sec. Sequencer response time 0.1 sec. Detecting point dispersion Within 100 mm (= 1000 mm/sec. x 0.1 sec.) Take PLC response time into consideration when using.
Cylinder speed 1000 mm/sec. PLC response time 0.1 sec. Detecting point dispersion Within 100 mm (= 1000 mm/sec. x 0.1 sec.) Take PLC response time into consideration when using.
Cylinder speed 1000 mm/sec. Sequencer response time 0.1 sec. Detecting point dispersion Within 100 mm (= 1000 mm/sec. x 0.1 sec.) Take PLC response time into consideration when using.
MHF Type Solid state switch Reed switch 3-wire: 100 A or less, 2-wire: 0.8 mA or less (4) Leakage current None MHL Note 2) Operating time 1 ms or less (3) 1.2 ms Impact resistance 1000 m/s2 300 m/s2 MHR 50 M or more at 500 M VDC (Between lead wire and case) Insulation resistance Note 3) MHK 1000 VAC for 1 minute (Between lead wire and case) 1500 VAC for 1 minute (1) (Between lead wire and
MHF Type Solid state switch Reed switch 3-wire: 100 A or less, 2-wire: 0.8 mA or less (4) Leakage current None MHL Note 2) Operating time 1 ms or less (3) 1.2 ms Impact resistance 1000 m/s2 300 m/s2 MHR 50 M or more at 500 M VDC (Between lead wire and case) Insulation resistance Note 3) MHK 1000 VAC for 1 minute (Between lead wire and case) 1500 VAC for 1 minute (1) (Between lead wire and
Mr = 1 x 9.8 (30 + 10.5)/1000 = 0.39 A6 = 10.5 Mar = 36 Mrmax = 36 K = 1 = 1 '2 = 0.39/36 = 0.011 Examine My. My = 1 x 9.8 (10 + 30)/1000 = 0.39 A3 = 30 May = 1 x 1 x 18 = 18 Mymax = 18 K = 1 = 1 2 = 0.39/18 = 0.022 M = W x 9.8 (Ln + An)/1000 Correction value of moment center position distance An: Table (3) Find the static moment M (Nm).
[kg] Work load [kg] 1500 1500 1500 Mep 1000 1000 1000 L3 [mm] L3 [mm] L3 [mm] m L3 Z 500 500 500 0 0 0 0 1 2 3 4 5 0 5 10 15 0 5 10 15 20 25 Work load [kg] Work load [kg] Work load [kg] 1500 1500 1500 L4 1000 1000 1000 L4 [mm] L4 [mm] L4 [mm] X 500 500 500 0 0 0 0 1 2 3 4 5 0 5 10 15 0 5 10 15 20 25 Work load [kg] Work load [kg] Work load [kg] 1500 1500 1500 Mey 1000 1000 1000 L5 [mm] L5
gravity [mm] Model LEFS25 LEFS32 LEFS40 LEF 1500 1500 1500 LEJ L1 1000 1000 1000 LEL L1 [mm] L1 [mm] L1 [mm] X LEM 500 500 500 LEY 0 0 0 0 5 10 15 20 Work load [kg] 0 10 20 30 40 Work load [kg] 0 10 20 30 40 50 60 Work load [kg] LES 1000 1000 1000 LEPY LEPS Horizontal/Bottom 800 800 800 L2 L2 [mm] L2 [mm] L2 [mm] 600 600 600 LER Y 400 400 400 Mer m LEH 200 200 200 0 0 0 LEY -X5 0 5 10 15
(between lead wire and case) 1000 VAC for 1 min.
800 Up to 800 Up to 1000 Up to 1000 Up to 1000 Up to 1000 Up to 1000 37 44 50 56 66 8-25-11 11 Series MGZ With Mounting Bracket Transaxial foot style: (L) 4-LD through LT LH LY X/2 ZZ + Stroke LS + Stroke X X Y LZ LX (mm) Stroke range Bore size (mm) LS ZZ LD Y X LH LT LX LY LZ Up to 800 Up to 800 Up to 1000 Up to 1000 Up to 1000 Up to 1000 Up to 1000 20 25 32 40 50 63 80 86 107 120 138 148
mass m [kg] 32 32 [Example] 50 50 40 40 32 32 10 10 1 100 500 1000 1 100 500 1000 400 300 200 400 300 200 Maximum speed V [mm/s] Maximum speed V [mm/s] Graph m Graph v 0.5 MPa P 0.5 MPa P 1000 1000 80 80 100 100 63 63 50 50 40 40 80 80 100 100 63 63 50 50 40 40 100 100 32 32 Load mass m [kg] Load mass m [kg] 50 50 32 32 10 10 1 100 500 1000 1 100 500 1000 400 300 200 400 300 200 Maximum
1500 100 200 300 400500 1000 1500 100 200 300 400500 1000 1500 Piston speed mm/s Piston speed mm/s Piston speed mm/s Load Weight/MY2C MY2C/m1 MY2C/m2 MY2C/m3 60 60 60 50 50 50 30 30 30 20 20 20 Load weight Nm Load weight Nm Load weight Nm MY2C40 MY2C40 MY2C40 10 10 10 MY2C25 MY2C25 MY2C25 5 5 5 4 4 4 MY2C16 MY2C16 3 3 3 MY2C16 2 2 2 1 1 1 100 200 300 400500 1000 1500 100 200 300 400500 1000
Standard Stroke Bore size (mm) Standard stroke (mm) 40 50 63 80 100 25 to 800 25 to 800 25 to 800 25 to 800 25 to 1000 Theoretical Output OUT IN Unit: N Bore size (mm) Rod size (mm) Operating direction Piston area (mm2) Operating pressure (MPa) 10 7 3.5 OUT 1256 12560 8792 4396 40 22 IN 876 8760 6132 3066 OUT 1963 19630 13741 6871 50 28 IN 1347 13470 4715 9429 OUT 3117 31170 21819 10910 63
Lateral load Operating pressure: 1 MPa 1000 200 300 500 Stroke Eccentric distance 100 100 Load weight (kg) 10 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com 63 Allowable lateral load (N) 50 40 63 1 32 25 20 50 40 10 32 0.1 25 10 100 200 300 500 1000 Maximum piston
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.
Mr = 0.2 x 9.8 (20 + 6.8)/1000 = 0.053 Ma = Mmax Find the allowable static moment Ma (Nm).