l Y w H w Y w l l " i I I I r r l i | v l l . s o w d ; l w | v w f f Y L : f <.t __ I i i Y f Fw -t wl5uwl sor-;sS sownsot Y r.L. rr 5 r r a r s o s o w l s o w f s o v l , * ; * 1 i ' l , l -1 l a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a MX9IEtr-@EHN+NE_I T l I r I I I I l I o , o o @ o a @ @ @ esrio" ruup @Auto switch See
D-F9W 12 A B W 16, 20, 25 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 W A B 32, 40 D-A9 D-M9 D-F9W Auto switch model D-F9BAL Symbol A B W A B W A B W Standard Stroke 12 16 20 25 32 40 5.5 6 2.5 0.5 1 1.5 4.5 4 7.5 9.5 9 11.5 5.5 6 10 11 12 16 14.5 15 11.5 9.5
20 25 47 47 53 60 60 67 43 43 43 48 48 60 31 31 36 41 46 56 14 14 14 17 17 20 19 19 22 26 26 30 19 19 19 24 24 29 14 20 20 25 25 30 Up to 1000 3 5 30 46 114 M14 x 1.5 161 78 18 160 110 146 128 212 112 255 16 64 110 Up to 1000 130 M16 x 1.5 182 95 23 180 132 169 144 236 118 275 18.5 74 120 Up to 1200 16 21 35 30 34 42 5 5.5 6 149 M18 x 1.5 204 106 36 118 200 167 195 162 265 132 320 18.5
AP100 17 735 ARM11A/B Series Pressure Switch Block 56 ARM11AW Z A 0.4 0.2 0.6 0.5 20 MPa 24 q w 0.3 0.1 1. Accessory 2.
MY2 H/HT MY3A MY3B MY3M Load Mass Allowable Moment MY1H/m3 MY1H/M3 MY1H/M1 MY1H/M2 q r w e t 30 40 50 50 40 30 40 50 30 40 50 30 20 20 20 20 MY1H40 MY1H32 10 10 10 MY1H40 MY1H40 MY1H32 Load mass kg MY1H32 Moment Nm Moment Nm Moment Nm 5 4 3 MY1H25 MY1H40 10 5 4 3 5 4 3 MY1H32 MY1H25 MY1H25 2 MY1H25 5 4 2 2 1 3 1 1 0.5 0.4 0.3 2 0.5 0.4 0.3 0.5 0.4 0.3 D0.2 1 0.2 0.2 0.1 -X 100 200 300 400
13 340 1/2 66 140 12 20 16 47 125 15 340 1/2 77 140 12 20 16 55 160 20 375 3/4 94 159 12 24 20 60 109 Tie-rod Type Low Pressure Hydraulic Cylinder Double Acting/Double Rod Series CHAW Front flange type: CHAWF Width across flats G 4-FD 4-J 2-Rc P T T V V Cushion adjustment screw MM Width across flats G GA Air release GA M MM R (max.) d d W W D E E D FY B C MA a a FT MA B F NA NA F K A A
m 80 200 60 MSQA3A (High precision type) 50 130 150 40 MSQA30 (High precision type) 20 0 10 20 30 40 50 60 70 18 16 14 12 10 8 6 4 2 0 Load N Load N MSQ7A MSQ50 MSQB50 (Basic type) MSQB7A (Basic type) 100 200 Displacement m Displacement m MSQA7A (High precision type) 80 150 60 120 40 50 MSQA50 (High precision type) 20 24 22 20 18 16 14 12 10 8 6 4 2 0 20 40 60 80 100 120 0 Load N Load N
dia. 5.1 19 6.5 W 32 0.05 46 0.5 0.05 8 B D Piping port 2-M5 x 0.8 47 13 J Mounting reference planes B D 16.5 14.5 Section AA MXP16-30 Without magnet and switch rail 2-M3 x 0.5 depth 3.5 For rail mounting 8 2-M2 x 0.4 depth 3 For magnet mounting 8.5 10.7 6-M5 x 0.8 depth 7 20 20 L (mm) MXP16-20 MXP16-30 SMXP16, #1(#1 + #3) SMXP16, #2(#2 + #4) L K J V H S Z G M W Model 36 40 93 82 58 20
12 CUJ A B W CU 16/20/25 CQS CQM W A B CQ2 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 RQ Hs 32/40/50 MU D(mm) -X D-A9 D-M9 D-F9 W Auto switch model D-F9BAL Mounting height Hs exists only for the D-F9BAL type. 20Symbol A B W A B W A B W HS 16.5 18.5 22 24 26.5
Refer to pages 6-20-3 to 6-20-6 for Safety Instructions and Actuator Precautions.
AMK Series Construction Size 20 to 40 q w OUT IN t Component Parts e No.
X axis Y axis Z axis Z 5 W 5 mm 10 mm 20 mm 0.8 kg 20 Y 10 3.
E , W E , W M P Work Potential energy Kinetic energy Torque Power Joule = Newton meter Joule Joule Joule Watt J J t ' J w = kg . m2's-2 0.5-m-i = J's-l 3.
resred lIr) flor. l{rn/rytle (lloloq l{0. tt odell OEtl l ,5lllx l 20 25.0 0.3.3.J 260 126,000 t3,000 19 58 2,890 0.9 lR0tl.5lltxl 20 25.0 0.08-t.3 260 t26,000 13,000 49 68 6,660 0.9 Offll.5Xtx2 20 50.0 0.3-3.5 520 167.000 t3,000 JI 68 2,890 1.0 tR0tXll.5ltlx2 20 50.0 0.08-1.3 520 1o,000 r3,000 49 80 6,660 L0 0tlSl.5flr3 20 75.0 0.3-3.5 7S0 201,000 ,000 32 80 2,890 1.2 0IIlt2.0tltx2 30 50.0
RSH REC20 20 Front flange: F Rear flange: G 39 50 56 61 0.3 Foot: L L CE1 10 30 38 43 47 0.5 W W W CE2 F 5 24 31 36 39 0.7 11 17 19 21 0.3 ML2B 7 11 13 13 G 0.5 ML1C 1 10 50 100 200 300400 Max. speed u (mm/s) (Initial cushioning speed) 4 7 9 9 0.7 500 REA Front trunnion: U Rear trunnion: T 32 42 48 52 0.3 Clevis: C, D C 22 30 35 37 0.5 REC Graph w Applicable max. stroke against lateral load
E , W E , W M P Work Potential energy Kinetic energy Torque Power Joule = Newton meter Joule Joule Joule Watt J J t ' J w = kg . m2's-2 0.5-m-i = J's-l 3.
GR GQ H1 I 18 13 38 93 1/8 56.5 14 8 12 2 85 10 18 5.5 6 4 8 5 26 20 to 200 15.5 to 200 22 17 45 103 1/8 66 16.5 10 14 2 96 10 25 6.5 9 7 10 6 31 20 to 300 19.5 to 300 22 17 45 104 1/8 67.5 20 12 18 2 97 10 25 6.5 9 7 10 6 38 20 to 300 19.5 to 300 30 19 52 112 1/8 75 26 16 25 2 104 10 (13) 26 7 11 7 12 8 47 20 to 300 301 to 500 301 to 500 27 to 300 (mm) Bore size (mm) 20 25 32 40 P
l b --" ,m'i$;:f, 4ra 20 Standard Stroke lmm) 30 40 50 60 75 100 125 175 200 225 250 275 300 350 400 150 Y f r N t * w -l Yw Y Ns a a a a a a a a a a a a a o a a a a a a a a a a a a a a a a a '*?
Model determination 61 Series REBR Model Selection 2 Design Parameters 1 Selection Method REBR25 REBR32 REBR15 500 400 300 200 300 200 Allowable driving force Fn (N) Load weight W (kg) Allowable driving force Fn (N) Allowable driving force Fn (N) 50 100 100 40 30 40 50 20 30 40 50 30 20 20 Usable range 10 10 10 Usable