V = 1.4 x 300 = 420 1 420 2 E = 0.2 () = 0.018 2 1000 V = 1.4 x 300 = 420 1 V 2 E = W () 2 1000 1 V 2 E = W () 2 1000 Find the kinetic energy E (J) of the load.
Stroke (mm) Up to 10 Up to 30 Up to 50 Up to 75 Up to 100 Up to 1000 Up to 800 Up to 1000 Up to 1000 Up to 800 Up to 1000 Up to 1000 Max. speed (mm/s) 20 Selection graph (6) (7) (8) (9) (10) (11) (12) 25 32 Caution If the cylinder is horizontally mounted and the plate end does not reach the load's center of gravity, use the formula below to calculate the imaginary stroke l that includes the
Stroke (mm) Up to 10 Up to 30 Up to 50 Up to 75 Up to 100 Up to 1000 Up to 800 Up to 1000 Up to 1000 Up to 800 Up to 1000 Up to 1000 Max. speed (mm/s) 20 Selection graph (6) (7) (8) (9) (10) (11) (12) 25 32 Caution If the cylinder is horizontally mounted and the plate end does not reach the load's center of gravity, use the formula below to calculate the imaginary stroke l that includes the
) (1000) (1000) MY1MW20 MY1MW20 MY1MW20 (1000) (900) (1000) (900) (1000) (900) MY1CW20 MY1CW20 MY1CW16 MY1MW16 MY1MW16 MY1MW16 MY1CW16 MY1CW16 (900) (900) (900) Caution 20 20 10 10 1.
4 (Class 1000 or equivalent) Intensive vacuum suction prevents the particles from discharging inside a clean room.
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).
Mr = 1 x 9.8 (30 + 10.5)/1000 = 0.39 A = 10.5 Examine My. My = 1 x 9.8 (10 + 30)/1000 = 0.39 A3 = 30 Find the static moment M (Nm). M = W x 9.8 (Ln + An)/1000 Corrected value of moment center position distance An: Table 3 Find the allowable static moment Ma (Nm).
20 to 1000 35 32 70 27 81 108 1/4 1/4 52 20 40 95 17 27 59 13 12 11 M8 x 1.25 7 18 80 63 Up to 1000 20 to 1000 35 32 86 27 101 115 1/4 1/4 64 20 40 102 17 26 67 18 15 11 M10 x 1.25 7 18 99 80 Up to 1000 20 to 1000 40 37 102 32 119 129 1/4 1/4 78 25 52 113 21 30 72 23 17 13 M12 x 1.75 10 22 117 100 Up to 1000 20 to 1000 40 37 116 41 133 140 1/4 1/4 92 30 52 124 21 31 76 25 19 16 M12 x 1.75
Standard Strokes Bore size (mm) Standard strokes (mm) 40 50 63 80 100 125 160 25 to 800 25 to 800 25 to 800 25 to 1000 25 to 1000 Specifications with included auto switch are the same for Double Acting/Single Rod.
MY3M Shock Absorber Specifications Piston Speed 16 to 100 10 Bore size (mm) RB 0806 RB 1412 RB 2015 RB 1007 RB 0805 Model Without stroke adjusting unit 100 to 500 mm/s 100 to 1000 mm/s 100 to 1500 mm/s (2) A unit 2.9 19.6 58.8 5.9 100 to 200 mm/s 1.0 100 to 1000 mm/s (1) Max. energy absorption (J) Stroke adjusting unit L unit and H unit 6 12 15 7 Stroke absorption (mm) 100 to 1000 mm/s 5
Z GA TDe8 TY n TT TX H S + Stroke TZ ZZ + Stroke Dimensions (mm) Symbol Stroke range GA H S TDe8 TT TX TY n TZ Z ZZ Bore size -0.032 -0.059 -0.032 -0.059 -0.032 -0.059 -0.040 -0.073 -0.040 -0.073 40 50 63 80 Up to 1000 Up to 1000 Up to 1000 Up to 1000 Up to 1000 23 26 27 32 35 11 13 13 16 16 66 71 79 80 86 94 111 121 15 15 18 25 25 22 22 28 34 40 85 95 110 140 162 62 74 90 110 130 117 127
Examine for Mep (20+6.8) Mep=1/333.6 =0.3 1000 We=42420/100=33.6 A2=6.8 Meap=0.71.7=1.19 =0.7 Mp max.=1.7 3=0.3/1.19=0.252 (Ln+An) Me=1/3We 1000 Load equivalent to collision We=4WV/100 Corrected value for center position distance of moment An : Table 3 Calculate allowable kinetic moment Mea(Nm). Mea=M max.
M = W x 9.8 (Ln + An)/1000 Corrected value of moment center position distance An: Table (1) Examine Mr. Mr = 0.2 x 9.8 (40 + 15.5)/1000 = 0.1 A2 = 15.5 Obtain Mar = 13 from Va = 300 in Graph (3). Find the allowable static moment Ma (Nm). Pitch, Yaw moment: Graph (2) Roll moment: Graph (3) 13 Find the load factor 1 of the static moment.
M = W x 9.8 (Ln + An)/1000 Corrected value of moment center position distance An: Table (1) Examine Mr. Mr = 0.2 x 9.8 (40 + 15.5)/1000 = 0.1 A2 = 15.5 Obtain Mar = 13 from Va = 300 in Graph (3). Find the allowable static moment Ma (Nm). Pitch, Yaw moment: Graph (2) Roll moment: Graph (3) 13 Find the load factor 1 of the static moment.
Piston Speed Standard Stroke Bore size (mm) 16 25 40 63 20 32 50 Bore size (mm) Max. manufacturable stroke (mm) Standard stroke (mm) 80 to 500 mm/s Without stroke adjustment unit (MY3A) 80 to 1000 mm/s Without stroke adjustment unit (MY3B) 16, 20, 25 32, 40, 50 63 100, 200, 300, 400, 500, 600 700, 800, 900, 1000, 1200 1400, 1600, 1800, 2000 3000 80 to 1000 mm/s (16, 20 L unit: 80 to 800 mm
(Between lead wire and the case) 1000 m/s2 300 m/s2 Impact resistance 50 M or more at 500 M VDC (Between lead wire and case) Insulation resistance 1500 VAC for 1 minute 1) (Between lead wire and case) 1000 VAC for 1 minute (Between lead wire and case) Withstand voltage Except magnetic resistant 2-color indication type solid state switch (DP5DWL/P5DWSC).
Extension Locking, Rubber Bumper Retraction Locking, Rubber Bumper 1000 1000 100 100 80 100 80 100 Load mass (kg) Load mass (kg) 63 63 10 10 50 50 40 40 25 32 25 32 1 1 20 20 0.5 MPa 0.4 MPa 0.5 MPa 0.4 MPa 0.1 0.1 100 500 Maximum speed (mm/s) 100 500 Maximum speed (mm/s) Allowable Load Mass Horizontal (Without switch) Horizontal (With switch) 30 30 10 10 100 100 80 Load mass m (kg) Load
The maximum detectable piston speed is: Auto switch operating range (mm) Time load applied (ms) x 1000 V (mm/s) = In cases of high piston speed, the use of an auto switch (DF5NTL, F7NTL, G5NTL, M5NTL, M5PTL) with a built-in OFF delay timer ( 200 ms) makes it possible to extend the load operating time.
Auto Switches Common Specifications Type Solid state auto switch Reed auto switch Leakage current 3-wire: 100 A or less, 2-wire: 0.8 mA or less None Operating time 1ms or less3) 1.2 ms Impact resistance 1000 m/s2 4) 300 m/s2 Insulation resistance 50 M or more (500 VDC measured via megohmmeter) (Between lead wire and case) 1500 VAC for 1 minute1) 1000 VAC for 1 minute (Between lead wire and