With exhaust interference prevention valve Note 23, 25) W Exhaust interference prevention valve Note) Refer to page 31 when mounting single unit to DIN rail. 2 Series ZK2 How to Order Manifold A ZZK2 04 1 L q w t y e r Remains blank when option is not selected.
A1 D1 L5 D1 A2 T T Inch Size L4 L5 A1 A2 M1 Max.
Example: Set 20 W (100 W 20%) for the 100-W external Regenerative resistor with natural convection cooling method: Pn600 = 2 (unit: 10 W) Note 1. If Pn600 is not set to the optimum value, alarm A.320 will occur. 2. When set to the factory setting (Pn600 = 0), the DRIVERs built-in option has been used.
T I N G L O C A T I O N A N D R O T A T I O N O F A U T O S W I T C H H O W T O O R D E R NCRB1BW R O TA R Y A C T U AT O R NCDRB1BW S A U T O S W I T C H L E N G T H O F L E A D W I R E D ...W/ Auto Switch Magnet ...Without Magnet Grommet 0.5m Lead W L Grommet 5m Lead W C Connector 0.5m Lead W CL Connector 3m Lead W CN Connector No Lead Wire M O U N T I N G B ...Basic F ...Flange T Y P E
1 t LEM e Motor type*1 r Lead [mm] q Accuracy LEY Symbol Type Output [W] Actuator size Compatible driver*2 Nil Basic type H High precision type Symbol LEJS40 LEJS63 A 16 20 B 8 10 LES S2 AC servo motor (Incremental encoder) 100 40 LECSA-S1 w Size S3 AC servo motor (Incremental encoder) 200 63 LECSA-S3 LEPY LEPS t Stroke [mm]*3 40 63 S6 AC servo motor (Absolute encoder) 100 40 LECSB-S5 LECSC-S5
2 w i @5 !4 e !7 !1 @4 !5 !6 r t u q @3 !3 @0 !9 !
T6 T = T1 + T2 + T3 + T4 [s] Calculation example) T1 to T4 can be calculated as follows. L : Stroke [mm] V : Speed [mm/s] a1: Acceleration [mm/s2] a2: Deceleration [mm/s2] T1 and T3 can be obtained by the following equation.
Conductive silicone (black w/mark) tl In$fllinhffimffi Pb""","t"'t W,,Umtmf*, t Uentical IyF Uacuum Entny: tll|ithout Bulfen Specif ications Verticaltype Male thread l Female tfrread ,a2:..-',iz g: .', ,T:;l6a NIsx0.8,Nr6x1 M 4 x 0 7 , M 5 x 0 . 8 [ 4 5 x 0 . 8 , M 6 x 1 M5x0.8,1V16x l,1/g s20 s32 M 6 x l , M B x 1 M5 x 0.8,N46 x 1.M8 x 1.25,1/s s40 o50 M 6 x 1 , [ , 1 8 x 1 M G x 1 , M 8
Conductive silicone (black w/mark) tl In$fllinhffimffi Pb""","t"'t W,,Umtmf*, t Uentical IyF Uacuum Entny: tll|ithout Bulfen Specif ications Verticaltype Male thread l Female tfrread ,a2:..-',iz g: .', ,T:;l6a NIsx0.8,Nr6x1 M 4 x 0 7 , M 5 x 0 . 8 [ 4 5 x 0 . 8 , M 6 x 1 M5x0.8,1V16x l,1/g s20 s32 M 6 x l , M B x 1 M5 x 0.8,N46 x 1.M8 x 1.25,1/s s40 o50 M 6 x 1 , [ , 1 8 x 1 M G x 1 , M 8
. 1 2 3 Circuit Cable color U V W Red White Black Connector A2 terminal no.
SMC Pneumatics, Inc. 12 Series ASIII1F-T Dimensions (mm) 1in=25.4mm L2 Inch sizes L3 Applicable tubing O.D. d D1 M1 L6 D2 L1 D4 L4 H (width across flats) D3 D4 A1 L5 A2 L6 T Inch sizes A1 A2 L3 L4 L5 L6 D2 D3 D4 L1 L2 Model H D1 d T M1 ASD230F-U10/32-01T 8.4 1/8" 17.5 29.4 12.9 ASD230F-U10/32-03T 9.3 5/32" 30.7 31 0.7 9.6 10 4.5 11.7 8 10-32UNF 28.4 7.8 ASD230F-U10/32-05T 23.3 35.2 11.4 3
Example: Set 20 W (100 W 20%) for the 100-W external regenerative resistors with natural convection cooling method: Pn600 = 2 (unit: 10 W) Note 1. If Pn600 is not set to the optimum value, alarm A.320 will occur. 2. When set to the factory setting (Pn600 = 0), the DRIVERs built-in option has been used.
2 i r i t y w w e !0 !0 !2 !5 o !0 !4 q q y u !1 !3 r t !1 M5 type U10/32 type M5 type U10/32 type !1 y !2 u !4 !3 i !5 u e r r t w e o !0 i o q q t y !0 !2 w !
2 w !2 w !3 !4 !5 With reducer Tube extensions e t y r i u q o !1 !0 !2 w Component parts No.
Load Mass Allowable Moment m1, m2, m3 M1 M2 M3 100 10 10 10 q wr t Load mass (kg) Moment (NNm) Moment (NNm) Moment (NNm) e 10 1 1 1 1 100 1000 0.1 100 1000 0.1 100 1000 0.1 100 1000 Speed (mm/s) Speed (mm/s) Speed (mm/s) Speed (mm/s) 1096 e-Rodless Actuator Basic Type / Nominal Size: 16, 25 Series E-MY2B How to Order 100 T M9BW E-MY2B 16 N Integrated control type W E-MY2B 16 N 100 T M9BW
A1 D1 L5 D1 AS-D A2 AS-T T ASP T ASN AQ Metric Size ASV L4 (1) L5 (1) A1 (2) A2 (2) M1 Weight (g) Max.
L5 A1 A2 D1 D1 T T Metric Size L4 L5 A1 A2 M Max.
Rotation time t (s) . Load configuration = m x (a2 + b2) / 12 + m x H2 Effective torque 10 Ta Effective torque (3 to 5) Tf Effective torque Ts 0.2 to 1.0s / 90 Effective torque Inertial moment Allowable load Note) I substitutes for t the value for inertial moment.