Round plate (Including column) Position of rotational axis: Through the center (A) Number of axis teeth =a (B) 1. Find the moment of inertia I for the rotation of shaft (B). B r 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teeth =b 5.
Round plate (Including column) Position of rotational axis: Through the center Number of teeth = a (B) axis 1. Find the moment of inertia I for the rotation of shaft (B). r B 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teeth = b 5.
Adjustment bolt b CRA1 Adjustment bolt d CRQ2 q First adjust both rotation end positions. Apply pressure to ports A and C to adjust adjusting bolt b. Apply pressure to ports B and D to adjust adjusting bolt a. Lock the bolts with fixing nuts after adjustment. w Next, apply pressure to ports A to D to adjust the center position. Loosen the fixing nuts for adjusting bolts c and d.
Description Material Note Ball bushing Spacer Steel ball Plug Piston seal Rod seal Gasket A Gasket B No.
A B A B 54 MXY6 34 MXH 59 5 MXY8 39 MXU 67 MXY12 47 MXS Solid State Auto Switch D-M9B(V), D-M9N(V), D-M9P(V) Lead wire entries inside MXQ (mm) B B Model Mounting Auto switch operating range MXF A B A B A B 50 MXY6 3 38 MXW 55 MXY8 3.5 43 MXJ 63 MXY12 3 51 MXP Lead wire entries parallel 2-Color Display Solid State Auto Switch D-M9BW(V), D-M9NW(V), D-M9PW MXY (mm) B A Model Mounting Auto switch
A B A B 54 MXY6 34 59 5 MXY8 MX 39 67 MXY12 MTS 47 MY Solid State Switch D-M9B(V), D-M9N(V), D-M9P(V) Lead wire entries inside (mm) B B CY Model Mounting Switch operating range A B A B A B 50 MXY6 2 MG Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com 38 55 MXY8 2.5
BS Bumper bolt (resin tipped): Plate B side or C side Shock absorber Applicable Auto Switches/Refer to pages 1575 to 1701 for further information on auto switches.
With lock/226) 28 (64) Stroke 39 (4) 21 Motor cable (6) 70 58 47 6.7 17.5 Vacuum port Rc1/8 Note 3) 35 Encoder cable (7) Lock cable (4.5) Motor option B: With lock 8H9 ( ) depth 6 +0.036 0 13 n x 6.8 B 30 8H9 ( ) depth 6 +0.036 0 140 200 E C x 200 (= D) 25 Note 1) Please consult with SMC for adjusting the Z-phase detecting position at the stroke end of the end side.
Round plate (Including column) Position of rotational axis: Through the center axis (B) Number of teetha 1. Find the moment of inertia I for the rotation of shaft (B). B r 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teethb 5.
Mounting side Closed C B A A Open D Open E F F Mounting side MHL2-25DZ-X86/X86A MHL2-25D Z-X86/X86A 1 2 200 200 160 160 Gripping force [N] Gripping force [N] Pressure 0.6 MPa Pressure 0.6 MPa 0.5 MPa 120 120 0.5 MPa 0.4 MPa 0.4 MPa 80 80 0.3 MPa 0.3 MPa Closed F (Fingers closed) 40 40 0 0 40 80 120 160 200 0 0 40 80 120 160 200 [mm] Model A B C D E F Weight [g] MHL2-25DZ-X86(A) 9 106 128
MY-S25 MY-S32 MY-S40 Applicable cylinder A 105 130 145 B 119 148 167 C 35 45 55 D 50 64 80 E 8 11.7 14.8 F 5 6 8.5 G 9.5 11 14 H 5.5 6.6 9 J M6 x 1 M8 x 1.25 M10 x 1.5 A B A B A B MY1H25 MY1H32 MY1H40 MY1 HT Side supports consist of a set of right and left supports.
Side support B MY-SB 2 x J MY1B MY1B MY1H E A B MY1B C D MY1M (mm) MY1C A 61 70 87 B C D E F G H J Part no.
D-Y7W D-Y7WV 10 2 pcs. 15 Auto Switch Proper Mounting Position (Detection at Sroke End) Auto Switch Proper Mounting Position Auto switch (mm) Auto switch model D-Z7/Z80 D-Y59/Y7P D-Y69/Y7PV D-Y7W D-Y7WV D-M9 D-M9V D-M9W D-M9WV D-A9 D-A9V Bore size (mm) A B A B A B A B 12 16 20 25 32 40 50 63 80 100 6 8 2 4 1 3 9 9 5 5 4 4 9.5 12.5 5.5 8.5 4.5 7.5 9.5 13 5.5 9 4.5 8 10.5 12 6.5 8 5.5 7 14.5
If air pressure is applied from the B port side, the shaft rotates counterclockwise.
Flat face and parallel key position indicate B port is pressurized. adjustment 5 adjustment 5 adjustment 5 Key or flat Key or flat B Port B Port Angle Angle Angle A Port A Port Angle adjustment 5 Rotation range180 Rotation range90 adjustment 5 Key or flat B Port Angle A Port Rotation range360 -18- Internal structure and parts description 2-1 Size 10,15 24 Heat transferred label 1 23 Seal
Calculate the moment of inertia for A and B separately as shown in the figures on the right. A part B part Procedure Calculation Calculation example 1. Check the operating conditions, dimensions of attachment, etc. Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.
Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b 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 c B part e f d 2.
B 23.5 A 7.0 B A 10.5 (13.0) B Bore size 50 63 80 23.5 19.5 25.5 12.5 25.5 14.5 25.5 10.5 21.5 14.0 (16.5) 39.5 19.5 39.5 21.5 39.5 17.5 35.5 21.0 (23.5) The values inside ( ) are for the D-A96/A96V.
+ Stroke K A + Stroke M G J W 16 Minimum lead wire bending radius 10 Auto switch Q F 4 x N through H thread effective depth C 2 x M3 x 0.5 (Port size) I D M E Z L B + Stroke K A + Stroke M G J W Standard [mm] Bore size Stroke range Without magnet for auto switch With magnet for auto switch C D E F G H I J K L M N Q W Z A B A B 12 5 to 30 19.5 16 23 19.5 6 6 23 4 21.5 M3 x 0.5 26 1.5 5 3.5
Find the moment of inertia I for the rotation of shaft (B). B 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teeth=b 5. Solid sphere Position of rotational axis: Through the center of diameter 2 2 r I = m5 27 - Kinetic energy Table (9) shows the allowable kinetic energy of the rotary actuator. The end angular speed is obtained by: Table 9.