SMC Corporation of America
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Search Results "CLA2B50-200-E"

to E: Matsushita Electric Works, Ltd. and G: Rockwell Automation, Inc. widens to 24.3 mm .

Judgement n = 1 + 2A + 2B + 3A + 3B = 0 + 0.32 + 0.10 + 0.42 + 0.12 = 0.96 CY1S CY1S CY1L M1, M3 [Graph 11] Allowable moment CY1H 200 CY1F 100 Moment M1, M3 [Nm] CYP CY1S20-Z B C D E 10 5 100 400 280 200 DPiston speed [mm/s] -X Load factors on the guides can be calculated with the SMC Pneumatic CAD system.

A A Width across flat D (Hexagon) Width across flat 8 (Hexagon) 3 3 B E E Width across flat 12 (Hexagon) B Width across flat 8 (Hexagon) 6 8 5 10.5 E 2.5 11.7 6.6 Dimensions Dimensions A B E 4 3 A B Model ZPT4-A6 ZPT4-A8 M6 x 1 M8 x 1 D 8 12 E 3 4.5 Model ZPT2-A5 ZPT2-A6 M5 x 0.8 M6 x 1 21 26 26 16 ZPT3-A6 Adapter part no. ZPT1-B4/B5 Adapter part no.

How to Order S 2 B P H S4 200 LEY 63 A2 w y !0 i o e r t q u !1 !2 !3 !

.: JXC-W1-1 To CI PC Note2) Motor control power 120.3 120.3 mm mm 200 200 mm/s mm/s supply connector 100 500 100 500 1 1 200 1000 200 1000 2 2 50 200 50 200 3 3 (Accessory) AWG20 (0.5mm2) USB cable Product No.: JXC-W1-2 Motor control and Controller set up kit motor drive power Contents supply 24 VDC -Controller Setting Kit -USB cable To M PWR Product No.:

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.

Component Parts No. q w e r t y u No. i o !0 !1 !2 !3 !

( (L Li in ne ea ar r g gu ui id de e ( (L Li in ne ea ar r g gu ui id de e s si in ng gl le e a ax xi is s t ty yp pe e) ) d do ou ub bl le e a ax xi is s t ty yp pe e) ) LECP Series This manual describes the actuators operation in combination with the LECP6 series controllers.

E Es Note 3) Bore size determination NG Determination of allowable stroke (W + WB) V 2 E = x ( ) 2 1000 E Es Note 2) OK Determination of pressure (P) when making intermediate stop Review of order made products based on operating conditions P Ps Note 1) This cylinder cannot perform an intermediate stop using an air pressure circuit in vertical operation.

E Es Note 3) Bore size determination NG Determination of allowable stroke (W + WB) V 2 E = x ( ) 2 1000 E Es Note 2) OK Determination of pressure (P) when making intermediate stop Review of order made products based on operating conditions P Ps Note 1) This cylinder cannot perform an intermediate stop using an air pressure circuit in vertical operation.

Piston speed mm/s Piston speed mm/s Features 6 Series MY2H Maximum Allowable Moment/Maximum Allowable Load Moment/MY2HT (Double axis) MY2HT/M3 MY2HT/M1 MY2HT/M2 300 300 300 200 200 200 100 100 100 Moment Nm Moment Nm Moment Nm 50 50 50 MY2H40 40 40 40 MY2H40 MY2H40 30 30 30 MY2H25 20 20 20 MY2H25 MY2H25 MY2H16 10 10 10 MY2H16 MY2H16 8 8 8 5 5 5 100 200 300 400500 1000 1500 100 200 300 400500

128 200 300 38 50 88 124 174 110 80 5 6 4 8 20 24 63 M10 x 1.5 MLGPM (slide bearing)/A, DB, E dimensions MLGPL (ball bushing)/A, DB, E dimensions A E A E Bore size (mm) Bore size (mm) DB DB st50 50200200200200

/Plug-in Unit 10-SQ1000 Kit (Lead wire cable) L Electrical entry G1/2 P=11.5 1.5 36.9 L1 L2 L3 L4 49.4 47 31.8 20.5 5 7.3 Indicator light Station number 19.2 1.5 AWG24 Lead wire Manual override (Mounting hole dimension) 4.6 10 34.3 74.5 108.5 (Single) 113.1 (Double) 122 (3 position) (108.5) 10 74.5 35 5.5 28.1 12.7 2 x M4 DIN rail clamp screw 9 e d i s U e d i s D n 8 7 6 5 4 3 2 Stations

C D A B 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.

Coil rated voltage 100 VAC, 50/60 Hz 200 VAC, 50/60 Hz 110 to 120 VAC, 50/60 Hz 220 VAC, 50/60 Hz 24 VDC 12 VDC 240 VAC, 50/60 Hz Other 1 2 3 Light/Surge voltage suppressor Electrical entry None With light/surge voltage suppressor With surge voltage suppressor S Z Nil 4 T E H G Grommet (Lead wire: 300 mm) Grommet (Lead wire: 600 mm) 5 6 Indicator light is not available for grommet type.

Floating Joint Center of sphere M M U U D H G B F P C E R A (mm) Max. operating tension and compression N Center of sphere R Model Max. screw-in depth P Allowable eccentricity U M A Applicable bore size Weight (kg) B C D E F G H Nominal size Pitch Compression Tension JB40-8-125 JB63-10-150 JB80-16-200 JB100-20-250 JB140-22-250 20, 25 32 40 50, 63 80 8 10 16 20 22 29 35.5 47.5 59 71.5 1.25

8 w e q !1 !0 !6 CL MLGC r CNA !2 !3 t !

L1 L2+A5 L3 Kinetic Energy 2 1 V 2 E = W () 2 1000 Collision speed V = 1.4 Va 1 420 2 E = x 1 () = 0.088 2 1000 Find the kinetic energy E (J) of the load. ) Correction factor (Reference values) V = 1.4 x 300 = 420 Ea = K E max Find the allowable kinetic energy Ea (J). Confirm that the kinetic energy of the load does not exceed the allowable kinetic energy.

L1 L2+A5 L3 2 1 W V 2 E= ( ) 2 9.8 1000 Collision speed V=1.4 Va *) Corrected coeficient 1 10 420 E= ( ) =0.09 2 9.8 1000 V=1.4 x 300=420 Calculate kinetic energy E(J) of moment. Calculate allwable kinetic energy Ea(J). Check that kinetic energy of moment does not exceed allowable kinetic energy.

0 CG1YB20 -200 Example Smooth cylinder combined with precision regulator (e.g.