SMC Corporation of America
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Search Results "ASP530F-03-08S-J"

Absorbing Energy ft lb (J) Absorbing Stroke mm Max. Impact Speed mm/sec Max. Frequency cycles/min Max.

A Tightening torque Model MY-J 80 MY-J100 Model MY-J 80 MY-J100 Applicable bore size MY1B 80 MY1B100 Description Bracket Parallel pin Holding bolt Qty. 1 2 4 25 181 15 9 44 221 15 9 Note) Flat bar or round bar mounting are possible for the support bracket (slanted lines) mounted by the customer.

H I J K Stroke 5 5 D C 20 +38 +10 +28 I 30 +48 +20 40 +84 +30 +54 50 +94 +40 J H F Width across flats 7 Hexagon width across flats 12 M8 x 1.25 Y 2.5 A B Stroke 20 to 50 mm Dimensions: 10 mm Stroke (mm) A B C D F H I J Y Model ZPT40F10-B01-A14 40 43 12.5 18.5 39 51.5 118 5 50 ZPT50F10-B01-A14 50 53 13.5 19.5 40 52.5 119 6 Additional Dimensions by Stroke (mm) I J H Stroke 20 +10 +5.5 0 30

32 F J/K10-0-A14 (With Buffer) S S M14 x 1 M14 x 1 Width across flats 19 I 5 Width across flats 19 5 I 5 J 5 J Width across flats 12 Width across flats 12 Applicable tube O.D.

Applicable shaft types: J, K, T Shaft through-hole and female thread machining Applicable shaft types: J, X, Z Equal dimensions are indicated by the same marker. Applicable shaft types: K, T Equal dimensions are indicated by the same marker.

for vacuum/pressure sensor Cannot be selected when e is J PD port D With individual release pressure supply (PD) port (M3)6 100 to 100 Screwdriver operation type long lock nut Screwdriver operation type long lock nut Cannot be selected when e is J Can be selected only for the combination of J and K E Vacuum break flow adjusting needle Lock nut J Round lock nut 3 The unit selection function

(Example) For M3: L1 = 6 mm Applicable shaft types: J, K, T The maximum dimension L2 is, as a rule, twice the thread size. (Example) For M3: L2 = 6 mm Applicable shaft types: J, K, T 2. Q1 = M L2 = L2 + (3 x P) 3. L1 + (3 x P) L2 + (3 x P) 4.

Series ZPT F 10-0-A14 (With buffer/One-touch fitting) 20 25 32 J K ZPT F 10-0-A14 (With buffer/One-touch fitting) 40 50 J K Applicable tubing O.D.

PFM5-(N)01/(N)02/F01-1/2 -25No.PF-OMJ0016-J PFM5-(N)01L/(N)02L/F01L-1/2 -26No.PF-OMJ0016-J PFM5S-(N)01/(N)02/F01-1/2 -27No.PF-OMJ0016-J PFM5S-(N)01L/(N)02L/F01L-1/2 -28No.PF-OMJ0016-J PFM5-F02-1/2 -29No.PF-OMJ0016-J PFM5-F02L-1/2 -30No.PF-OMJ0016-J PFM5S-F02-1/2 -31No.PF-OMJ0016-J PFM5S-F02L-1/2 -32No.PF-OMJ0016-J PFM5-C/N-1/2 -33No.PF-OMJ0016-J PFM5-C/NL-1/2 -34No.PF-OMJ0016-J PFM5S-C/N

of the load. ) Correction factor (Reference values) V = 1.4 x 300 = 420 Find the allowable kinetic energy Ea (J).

W K CY1RG50/63 HB HC N X MX H MTS CB HA 2-P (Piping port) 4-J x E (Depth) 4-Counterbore dia.

stop using an air pressure circuit (J) Ps: Operating pressure limit for intermediate stop using an external stopper, etc.

4 x J 2 x P Width across flats KA ~ = ~ = d S + Stroke ZZ + Stroke ZZ1 + l + Stroke (mm) Stroke range Type Bore size (mm) A AL B C D E EA F FA G J K KA M MM N P S (mm) 125 140 160 180 200 250 300 1 2 1 2 3 4 3 4 3 4 to 1000 50 47 145 115 36 90 59 43 14 16 15 31 27 35 98 M14 x 1.5 M30 x 1.5 Lube Non-lube Air-hydro to 1000 50 47 161 128 36 90 59 43 14 16 15 31 27 35 98 M14 x 1.5 M30 x 1.5

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.