Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
AC DC Auto switch model Lead wire length (m) Load voltage Indicator light Wiring (Output) Pre-wire connector Special function Type Electrical entry Applicable load 0.5 (Nil) 3 (L) 5 (Z) Perpendicular In-line 3-wire Reed switch Solid state switch A96V A96 5 V IC circuit Grommet (NPN equivalent) Yes Yes Relay, PLC 100 V 24 V 12 V A93 M9N M9P M9B F9NW F9PW F9BW A93V M9NV M9PV M9BV F9NWV
AC DC Auto switch model Lead wire length (m) Load voltage Indicator light Wiring (Output) Pre-wire connector Special function Type Electrical entry Applicable load 0.5 (Nil) 3 (L) 5 (Z) Perpendicular In-line 3-wire Reed switch Solid state switch A96V A96 5 V IC circuit Grommet (NPN equivalent) Yes Yes Relay, PLC 100 V 24 V 12 V A93 M9N M9P M9B F9NW F9PW F9BW A93V M9NV M9PV M9BV F9NWV
AC DC Auto switch model Lead wire length (m) Load voltage Indicator light Wiring (Output) Pre-wire connector Special function Type Electrical entry Applicable load 0.5 (Nil) 3 (L) 5 (Z) Perpendicular In-line 3-wire Reed switch Solid state switch A96V A96 5 V IC circuit Grommet (NPN equivalent) Yes Yes Relay, PLC 100 V 24 V 12 V A93 M9N M9P M9B F9NW F9PW F9BW A93V M9NV M9PV M9BV F9NWV
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.
9@0 MHY2-D MHY2-D2 MHY-A1001 MHY-A1601 MHY-A2001 MHY-A2501 Finger assembly ro MHY-A1001-2 MHY-A1601-2 MHY-A2001-2 MHY-A2501-2 <10, 16> e!2 Joint assembly MHY-A1002 MHY-A1602 MHY-A2002 MHY-A2502 <20, 25> e!2!
Additionally, do not mount the foot bracket with the pressure applied to the port. y 0 A port B port a 1 w y y a e k w of y e e k g n of ra n e io at g ot R n R +4 0 ra ot n io 0 at at ot 8 R io 1 R +4 0 n y ot ra a w n y 0 g at e e k of 9 io 1 n ay ra w n g ey e of k 189
Determination of load's kinetic energy (E) E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 1548.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 1548.)
Wn Mass mn X-axis xn xa xb xc xd Y-axis yn ya yb yc yd Z-axis zn za zb zc zd X 1 mt = x (mn x xn)w Wa Wb Wc Wd ma mb mc md Y 1 mt = x (mn x yn)e D1 mt = x {mn x (A + zn)} r Z -X (n = a,b,c,d) Refer to the following sections 1 to 4 to calculate the center of gravity and the total load.
The tightening torque of the M3 screw must be 0.35 to 0.45 Nm. t The detection position can be changed under the conditions in step e. Auto switch y Confirm where the mounting position is, and tighten the auto switch fixing screw (M2.5) to fix the auto switch mounting nut. The tightening torque of the M2.5 screw must be 0.25 to 0.35 Nm.
Dimensions MGQL (Ball bushing bearing)/A, DB, E Dimensions (mm) (mm) E E A A Bore size Bore size DB DB (mm) 12 16 20 25 (mm) 12 16 20 25 Over 50 st Over 30 st Over 30 st 50 st or less 50 st or less Over 50 st 30 st or less 30 st or less 8 6 39 0 55 16 43 4 10 8 43 0 65 22 49 6 12 10 74 27 61.5 57 10 47 0 14.5 16 13 79.5 32 62 63.5 16 47.5 0 14.5 Note) For intermediate strokes other than standard
Dimensions (mm) MGPWL, MGPWA 32 to 63/A, E Dimensions (mm) Bore size (mm) A E Bore size (mm) A E 25 st or less Over 25 st 100 st or less Over 100 st 25 st or less 50 st or less Over 25 st 100 st or less Over 50 st 100 st or less Over 100 st Over 100 st 50 st or less Over 50 st 100 st or less Over 100 st D20 25 32 40 50 63 57.5 53.5 62.5 55.5 37.5 33.5 42.5 35.5 20.5 16.5 21.5 14.5 109.5 109.5
1 u t q w e y !2 i r !4 !0 MX MTS MY CY !9 !8 !5 !7 MG CX MY1WK with side seal D@5 @0 @3 @4 @2 @1 -X 20Data Component Parts No. q w e r t y u i o !0 !
1 u t q w e y !2 i r !4 !0 MX MTS MY CY !9 !8 !5 !7 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 CX MY1WK with side seal D@5 @0 @3 @4 @2 @1 -X 20Data Component Parts No. q w e r t y u i o !0 !
8 e w !7 t !5 r o !8 e !6 w @0 !7 t !5 r o !8 e !6 w @0 !7 t !5 !0 u !2 i q !1 !4 y !9 !0 u !2 i q !1 !4 y !9 !0 u !3 !2 i q !1 !4 y !9 Open condition Component Parts Note No.
D-X Individual -X 857 Series RLQ Simple Joint: 32 to 63 Type A Mounting Bracket Type A Mounting Bracket 2 x D T1 T2 M W V U Joint F B E Material: Chromium molybdenum steel (mm) Joint and Mounting Bracket (Type A, Type B) Part No. Bore size (mm) 32, 40 50, 63 B D E F M T1 T2 Part No.
8 Piston rod B Rod seal e Aluminum bearing alloy NBR !
8 Piston rod B Rod seal e Aluminum bearing alloy NBR !
Bore size (mm) 32, 40 50, 63 T2 T1 M F E D B Part No.
The kinetic energy can be calculated using the formula below. 2 1 = I E E: Kinetic energy [ J ] 2 I: Moment of inertia [ 2 m kg ] : Angular speed [ s rad ] There is a threshold of kinetic energy that a rotary actuator allows. Therefore, by finding the moment of inertia, it is possible to find the threshold value of the rotation time.