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e-Rodless Actuator E-MY2B Series Operation Manual URL http://www.smcworld.com Thank you for purchasing the SMC E-MY2B Series e-Rodless Actuator. Please read this manual carefully before operating the e-Rodless Actuator and make sure you understand the e-Rodless Actuator, its capabilities and limitations. Please keep this manual handy for future reference.

MXS MXQ 8 x M5 x 0.8 thread depth 13 Note) MXF 6H9 + 0.030 0 depth 5.5 (Insert) 6H9 + 0.030 0 depth 5.5 7 MXW MXJ 72 98 48 MXP MXY Y Y 25 160 40 L 40 40 MTS 11 24 24 K A 60 50 32.5 Z A Bottom through-hole 5.1 N x M6 x 1 thread depth 12 (N-1) x H G H 7 GG HH 6H9 + 0.030 0 depth 5.5 NN x M6 x 1 thread depth 12 Bottom through-hole 5.1 F E 6H9 + 0.030 0 depth 5.5 (mm) DHH H J K L E N F NN G Z

= 0.2 () = 0.018 2 1000 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 H G T S (Shock absorber stroke) E SD TT EY EA EC Stroke adjusting unit h Shock absorber FA W Applicable cylinder MY2H25 MY2H40 SD 17.7 EA 8.5 13 EC 9 13.5 EY 36 56.5 FA 56.4 67.8 h 6 6 S 67.3 73.2 T 12 15 TT 7.1 (MAX 18.6) 10 (MAX 26) W 25.8 38 E 17.5 25 Shock absorber model RB1412 RB2015 8-13-19 20 Series MY2 Side Support Side support MYC-SA G 2-H C B A F E D Courtesy of Steven

EA 8.5 13 S 67.3 73.2 EC 9 13.5 EY 36 56.5 FA 56.4 67.8 h 6 6 T 12 15 TT 7.1 (Max. 18.6) 10 (Max. 26) W 25.8 38 E 17.5 25 Shock absorber model RB1412 RB2015 -X Individual -X Technical data 1103 Series MY2C Side Support Side support MYC-SA G 2 x H C B A F E D A 60.6 95.9 121.5 B 64.6 97.5 121.5 C 70.6 107.9 134.5 H 3.4 4.5 6.6 E 15 25 45 F 26 38 64 G 4.9 6.4 11.7 D 77.2 115.5 145.5 Model

Determination of kinetic energy of load (E) E > Es E Es Bore size determination Tentative determination of L type W V 2 E = () 2 1000 Note 2) E > Es Determination of pressure (P) when making intermediate stop P > Ps P Ps Consider made-to-order products, depending on an operating condition. Tentative determination of L type (For intermediate stops, refer to page 1515.)

Applicable manifold base Plug-in type With attachment plug lead wire: Type 51G Description Component parts Manifold block u, Junction box i, Lead wire assembly o Tie-rod y, O-ring e, r, Seal A q VVZS2000-1A-1-Port size (1) Manifold block assembly Manifold block u, Tie-rod y, O ring e, r, Seal A q Non plug-in type: Type 51 VVZS2000-1A-2-Port size (1) Plug-in type With D-sub connector: Type

] LEKFS40 Series Stroke[mm] 150 200 250 300 350 400 450 500 600 700 800 900 1000 1100 1200 Product weight[kg] 5.5 5.8 6.1 6.4 6.7 7.0 7.3 7.6 8.2 8.8 9.4 10.0 10.6 11.2 11.8 0.53 Additional weight with lock[kg] 4 - 2How to order L E K F S 32 G A 300 R1 CDH7T Motor type Size Lead[mm] Motor mounting position Symbol LEKFS25 LEKFS32 LEKFS40 Nil In-line 25 32 40 High performance R Right side parallel

-02-08/AN200-2 Speed controller/Silencer 800 700 600 500 400 300 200 100 Perpendicular, upward actuation Horizontal actuation VZ514--02 (Piping: 10 x 1 m) Speed controller/Silencer AS3301F-02-10/AN200-2 800 700 600 500 400 300 200 100 Perpendicular, upward actuation Horizontal actuation VZ514--02 (Piping: 12 x 1 m) Speed controller/Silencer AS4001F-02-12/AN200-2 It is when the cylinder is

P S O E N L C Breaker handle Display panel Cooling fan for the unit inside (exhaust) Power cable entry 85 mm or less 55 mm or less A B D Circulating fluid fill port REMOTE START/STOP RUN ALARM RESET Handle SEL Model no. label ENT Handle Ventilation (expiration) E S O L C SMC N E P O Circulating fluid return inlet Rc 3/4 (with plug) Circulating fluid level gauge Facility water outlet Refrigerant

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com V 1000 1 2 420 1000 1 2 E = W (-) 2 E = 1 (-) 2= 0.088 Find the kinetic energy E (J) of the load. Find the allowable kinetic energy Ea (J). Confirm that the kinetic energy of the load does not exceed the allowable kinetic energy.

A E Push type A Push-locking type E Dimensions: Single Dimensions: VZ1120-G-M5-X1 Push type A (Push type A) Manual override Manual override (Non-locking) (Mounting hole for manifold) Push-locking type E (Piping port) Manual override (Push-locking type E) ( ) Pressing makes the valve operate.

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9 e r t q !3 w !0 @3 @2 !1 !2 !5 !4 y u i o @1 @0 !8 !6 Component Parts Component Parts Qty. No. Description Material Note No.

9 e r t q !3 w !0 @3 @2 !1 !2 !5 !4 y u i o @1 @0 !8 !6 Component Parts Component Parts Qty. No. Description Material Note No.

A A a B B s j C f g t C0.5 C0.2 C0.2 b d e 45 45 Section A-A p k C0.5 45 C n h i l (d) C0.5 q m O Section B-B r (l) View C (mm) +0.2 0 l i o j k m n p q r s t b e g a c d f h Model 0 0.2 0.05 0.15 + 0.1 0 +0.2 0 3.5 +0.013 +0.001 CXS 6 2.75 M2.5 x 0.45 4.5 3.5 4.75 C0.5 2.8 0.5 4 3.5 3 3.5 16 0.1 M3 x 0.5 4 1 5.5 6 +0.2 0 0.05 0.15 0 0.2 + 0.1 0 +0.2 0 5 +0.016 +0.001 CXS10 4 M3 x 0.5 8 5

Kinetic energy (E)E max.) Allowable kinetic energy E max. : Table 1 Possible to use by E=0.018<E max.=0.045 Load rate 3 3-1 Load rate of moment Wa=W max. Calculate allowable load Wa(N). Wa=112=12 =1 W max.=12 1=2/12=0.167 Allowable load coefficient : Graph 1 Calcurate load rate (1) of moment.

900 10 500 700 900 10 700 1,000 Flow rate Q l/min (ANR) How to read the graph The sonic range pressure to generate a flow rate of 500 l/min (ANR) is P1 0.14 MPa for a 6 orifice (VX2 4), and P1 0.3 MPa for a 4.5 orifice (VX23). 3 2 For Saturated Steam [663] (179) Upstream pressure of valve P1 1.0 MPa 1.0 [664] (183) 0.9 0.95 [662] (174) 0.8 0.9 0.85 [661] (170) 0.7 0.8 0.75 Subsonic [

5 y e o r !0 !6 !5 y e o i r q !9 r u e y o i !0 i t !2 q !1 @0 !7 t !2 u !1 !7 !0 t !2 !7 !1 !5 !6 Component Parts Description Note Description No. Material Material Note No.