D-G5NTL 75 + 50 (n-2) 15 75 30.5 38 43 50 A B 0 (1) 0.5 2 2 D-A3 D-G3, D-K3 100 + 100 (n-2) 35 + 30 (n-2) 35 100 D-B5, D-B6 33.5 23.5 25 25 Approx. Hs 25.5 (28.5) 38 43.5 50.5 D-A4 35 + 30 (n-2) 50 + 50 (n-2) 35 55 A B 0 2 3.5 3.5 D-G5NTL 27 25 26.5 26.5 Approx. Hs 33.5 38 43.5 50.5 A B 0 1.5 1.5 D-A3 D-G3, D-K3 23 24.5 24.5 Approx.
M L Slide bearing Ball bushing bearing Nil S n 2 pcs. 1 pc. n pcs.
4 E1,2,3,4... 110+100111 Same surface 7s+50(n-2) n=2,3,4,,.. 90+s0(n-2) 110+50 (n'2) with 1 1 0 90 100 1 1 0 D-A4 Wi$l2 Differenl sudace 35 75 80 90 Same surface 100 100 r00 100 Different 7s+30(n-2) 80+30(n,2) 90+30(n-2) Same 100+100(n 2), n=2,4,5,8... l 0 75 80 90 Different 80 90 D-B5.86 D-G5.K5 Same 35 80 90 With n Ditlerenl 35+30(n-2) n=1,2,3,4.. n=2,4,6,a.. 80+30(n-2J E2,4,6,8... 90+30
175 185.5 5 77.5 88 162.5 173 4 67 77.5 150 160.5 3 56.5 67 150 160.5 2 46 56.5 137.5 148 VQ4 25 35.5 112.5 123 L1 L2 L3 L4 VQZ Dimensions/Top entry connector [FU] (mm) VQD n L 1 100 110.5 16 15 250 260.5 14 237.5 248 13 237.5 248 12 225 235.5 11 212.5 223 10 200 210.5 9 187.5 198 8 175 185.5 7 162.5 173 6 162.5 173 5 150 160.5 4 137.5 148 3 125 135.5 2 112.5 123 L3 L4 100 110.5 VZS How
"n" pcs. Nil S n Stroke (mm) 12mm 16mm 20mm 25mm 2 pcs. 1 pc. "n" pcs.
9 M18 x 1.5 3/8 55 58 23 12 61.5 321 80 157 26 M10 x 1.5 5 10 38 245 10.5 11.5 M22 x 1.5 3/8 61 72 33 14 69.5 341 100 177 26 M10 x 1.5 5 10 38 265 10.5 17 M26 x 1.5 1/2 68 72 37.5 15 With rod boot (mm) 151 to 200 l 151 to 200 h Bore size (mm) e f 1 to 50 25 25 25 25 25 25 51 to 100 37.5 37.5 37.5 37.5 37.5 37.5 101 to 150 50 50 50 50 50 50 201 to 300 100 100 100 100 100 100 301 to 400 125
D-A3 D-G39 D-K39 D-A44 100 + 100 (n 2) (n = 2, 3, 4, 5 ) 35 + 30 (n 2) (n = 2, 3, 4, 5 ) 35 100 10 Mounting nut width across flats (mm) Bore size (mm) Mounting nut thread Tightening torque (Nm) n: Number of auto switches 20 25 32 40 45 M22 x 1.5 26 Theoretical Output 60 M24 x 1.5 32 85 M30 x 1.5 38 Unit (N) M33 x 1.5 41 110 1 3 7 Operating direction Operating pressure (MPa) Bore size (mm
D-G5NTL 75 + 50 (n-2) 15 75 30.5 38 43 50 A B 0 (1) 0.5 2 2 D-A3 D-G3, D-K3 100 + 100 (n-2) 35 + 30 (n-2) 35 100 D-B5, D-B6 33.5 23.5 25 25 Approx. Hs 25.5 (28.5) 38 43.5 50.5 D-A4 35 + 30 (n-2) 50 + 50 (n-2) 35 55 A B 0 2 3.5 3.5 D-G5NTL 27 25 26.5 26.5 Approx. Hs 33.5 38 43.5 50.5 A B 0 1.5 1.5 D-A3 D-G3, D-K3 23 24.5 24.5 Approx.
4 E1,2,3,4... 110+100111 Same surface 7s+50(n-2) n=2,3,4,,.. 90+s0(n-2) 110+50 (n'2) with 1 1 0 90 100 1 1 0 D-A4 Wi$l2 Differenl sudace 35 75 80 90 Same surface 100 100 r00 100 Different 7s+30(n-2) 80+30(n,2) 90+30(n-2) Same 100+100(n 2), n=2,4,5,8... l 0 75 80 90 Different 80 90 D-B5.86 D-G5.K5 Same 35 80 90 With n Ditlerenl 35+30(n-2) n=1,2,3,4.. n=2,4,6,a.. 80+30(n-2J E2,4,6,8... 90+30
90 5 90 10 180 10 90 5 90 10 180 10 90 5 90 10 180 10 90 5 Air (Non-lube) Fluid 1.05 1.5 Proof pressure (MPa) 5 to 60C Ambient and fluid temperature 0.15 to 0.7 0.2 to 0.7 0.15 to 1.0 Operating pressure range (MPa) Rotation time adjustment range (sec/90) 0.07 to 0.3 Allowable radial load 40 N 50 N 60 N 20 N 30 N 60 N 80 N 15 N Shaft load Allowable thrust load 2 15 N 30 N 40 N 10 N Allowable
0 20 40 60 80 100 0 20 40 60 80 100 Gripping point L mm Gripping point L mm MRHQ25S MRHQ25C 140 Pressure 0.7MPa 80 120 Pressure 0.7MPa Gripping force N 0.6MPa Gripping force N 100 0.6MPa 60 0.5MPa 80 0.5MPa 0.4MPa 40 60 0.4MPa 0.3MPa 40 0.3MPa 20 0.25MPa 20 0.25MPa 0 20 40 60 80 100 0 20 40 60 80 100120 Gripping point L mm Gripping point L mm 6 Rotary Gripper Series MRHQ Rotational Torque
Flow rate conversion NO OFF n-2 n-1 High flow rate Basic state: 0C, 101.3kPa Standard state: 20C, 101.3kPa, 65%RH (ANR) Switchable between these states.
Note) ( ): Denotes the dimensions for long stroke. 728 1011Series CG1W-Z 20, 25, 32, 40, 50, 63, 80, 100 Double Rod Cylinder How to Order 10 C D G 1 W L N 25 100 Z M9BW Mounting Number of auto switches B L F Basic Axial foot Rod flange Nil S n 2 pcs. 1 pc. n pcs.
MXY8 Table deflection mm Table deflection mm Table deflection mm MXY8 DMXY8 MXY6 0.04 MXY6 MXY6 0.03 -X 0.02 0.01 200 Load N 0 20 40 60 80 100 Load N 0 20 40 60 80 100 Load N 0 50 100 150 200 250 Data 8-9-9 9 Series MXY Table Deflection Table deflection due to pitch moment load Displacement at A when load is applied F Table deflection due to yaw moment load Displacement at A when load is
I N I n / N l / . \ I n i r N l a / N l ^ l : , ! . : ' : ) ' , + . .
(3.5) 63 (2.2) (N)ZL112 200 (7.0) 126 (4.4) (N)ZL212 2 Multistage Ejector Series (N)ZL Selection ZL112 ZL212 Exhaust characteristics Exhaust characteristics 100 90 100 90 Vacuum pressure Vacuum pressure 300 150 Suction flow rate Suction flow rate [l/min (ANR)] Air consumption [l/min (ANR)] Suction flow rate [l/min (ANR)] Air consumption [l/min (ANR)] Suction flow rate 250 125 Vacuum pressure
/115 VAC) p. 12 Applicable to DI Water Piping p. 32 Water-cooled Refrigeration (Single-phase 100/115 VAC) p. 12 Inverter Pump Mounted p. 33 Specifications High-Pressure Pump Mounted p. 34 Air-cooled Refrigeration (Single-phase 100/115 VAC) p. 13 With Feet/Without Rack Mounting Brackets p. 35 Water-cooled Refrigeration (Single-phase 100/115 VAC) p. 13 Removed Parts p. 35 HRR012/
Calculation of Load Factor for Dynamic Moment MTS Equivalent load FE at impact FE = x a x g x m = x 200 x 9.8 x 6.525 = 179.1 (N) FE 1.4 100 1.4 100 MY M1E M1E: Moment CY Z M1Emax (from 4 of graph MY1MW: M1 where 1.4a = 280 mm/s) = 42.1 (Nm) M1 MG 1 3 1 3 M1E = x FE x Z = x 179.1 x 37.4 x 10 3 = 2.23 (Nm) Load factor 4 = M1E/M1Emax = 2.23/42.1 = 0.05 CX M3 M3E: Moment Y DM3Emax (from 5 of
Calculation of Load Factor for Dynamic Moment MTS Equivalent load FE at impact FE = x a x g x m = x 200 x 9.8 x 6.525 = 179.1 (N) FE 1.4 100 1.4 100 MY M1E M1E: Moment CY Z M1Emax (from 4 of graph MY1MW: M1 where 1.4a = 280 mm/s) = 42.1 (Nm) M1 MG Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258