SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator. The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles.
SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator. The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles.
SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator. The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles.
SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator. The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles.
low load shock absorber + Adjusting bolts MY1W Bore size Stroke L TT h h E F EA h EB W F Stroke adjusting unit S (Shock absorber stroke) T MY1W16, 20 F MY1W50, 63 Shock absorber EC EY h 3.6 3.6 3.5 4.5 4.5 5.5 5.5 TT 5.4 (Max. 11) 5 (Max. 11) 5 (Max. 16.5) 8 (Max. 20) 9 (Max. 25) 13 (Max. 33) 13 (Max. 38) S 40.8 40.8 46.7 67.3 67.3 73.2 73.2 E 14.6 20 24 29 35 40 52 EY 39.5 45.5 53.5 67
At this time, instead of removing the plate and the solenoid valve separately, remove them together, with the hexagon socket bolts remaining inserted. 700 25 600 32 Piston speed (mm/sec) e size 20 5 500 2 2 3 400 40 or B 300 0 Hexagon. socket head cap screw Plate 4 200 Solenoid valve Convex position of sub-plate gasket 100 0 1 2 3 4 5 6 7 8 Fully open Without throttle valve Opening of throttle
SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator. The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles.
ID Construction IDG SFD101-02 SFD102-02 IDK w q r t e q r e w AMG AFF AM AMD AMH Component Parts Component Parts No. Description Note Material Aluminum alloy No.
Inlet air temperature 35C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.5MPa Air flow 1200 l/min (ANR) Inlet air temperature 55C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.7MPa Air flow 350 l/min (ANR) Condition Condition A = 0.75 based on conditions q, w and e 1 B = 0.95 based on conditions q, w and e 1 C = 1.00 based on
M o n m e t e r kg.m=kilogram-meter ft. lb = foot pound mm (H2O) = millimeter water column in (H2O) = inches water column mm (Hg) = fnillimeter mercury column in (Hg) = inches mercury column Basic Formulas Circle circumference = '[D = 2rr Circle atea = fit2 Force=PressurexArea Cylinder Volume (rod side) = (pislon area rod cross-section area) x stroke Cylinder Volume (head end) = piston area
e E , q 1.5 8 1 2 1 6 2 0 Cylinder speed (in/sec.) Sl6ct a propr unit sccording to exhaust flo/, in lh6 following ordr: (l) Oete|mine air con6umplion ot actuaicrs uaed in tl|e ckc\rii.
Vacuum switch unit Filter unit Release flow rate adjusting needle Manual operation Vacuum switch Electrical entry Ejector exhaust Electrical entry PV/V port size Pilot valve Components Vacuum switch unit Valve unit N.C. type Ejector unit ZX1 1 10 5 L Z E C K1 L Vacuum switch unit Ejector unit 1 10 L Z E C K3 5 ZX1 Valve unit N.O. type Vacuum switch unit ZX1 1 10 E C Ejector unit CE compliant
f g Nil Reed switch L R Solid state switch S h Nil L R S Operating direction Left Right a b h g d c f e Note) Lead wire length symbols 0.5m .
Condition Condition Inlet air temperature 35 C Outlet air pressure dew point 10 C Ambient temperature 35 C Inlet air pressure 0.5MPa Air flow 1200 l/min (ANR) Inlet air temperature 55 C Outlet air pressure dew point 10 C Ambient temperature 35 C Inlet air pressure 0.7MPa Air flow 350 l/min (ANR) A = 0.75 based on conditions q, w and e 1 B = 0.95 based on conditions q, w and e 1 C = 1.00 based
HRG HRS HRZ HRZD HRW HEC HEB HED Technical Data Related Products REMOTE e [ENT] key Decides the settings. START/STOP [G] [H] key Moves the cursor and changes the setting values. RUN [E] key Moves the cursor. r A L A RM [REMOTE] indicator Lights up when the unit is in the remote status.
2 w e !3 !4 r t y u i !5 !6 No.
(ANR) c V -~ AM~4S0 E V ;;2 1 -E t~ AM~350 ~ ~ 2 ~05 -tV 'ct! AM~2S0 1. Select the point of contact A of inlet pressure and max. air flow capacity in the graph. V j.--v v V AMl,so 0.2 Ij.--~ V I 2.Select the type whose max. air flow capacity is over that point; AMH650. 0.2 0.4 0.6 0.8 1.0 tnlet air pressure MPa SeriesAMH How to Order .
0 o e AS-FM !4 u Meter-in type Meter-out type AS-D e Seal method: Face seal For G thread AS-T Meter-in type Meter-out type ASP !1 ASN r !2 AQ q w ASV y t AK i VCHC o ASR ASQ !0 u !5 e Meter-out type Meter-in type Component Parts No.
Inlet air temperature 35C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.5MPa Air flow 1200 l/min (ANR) Inlet air temperature 55C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.7MPa Air flow 350 l/min (ANR) Condition Condition A = 0.75 based on conditions q, w and e 1 1 B = 0.95 based on conditions q, w and e C = 1.00 based on
The end angular speed is obtained by: Table 7 Allowable kinetic energy (J) t Size Allowable kinetic energy : Rotation angle [ rad ] : Rotation time [ s ] 10 0.00025 15 0.00039 Kinetic energy E is obtained by: 20 0.025 30 0.048 40 0.081 E Therefore, the rotary actuator rotation time is: E: Allowable kinetic energy [ J ] : Rotation range [ rad ] I: Moment of inertia [ kgm2 ] Note) If the