SMC Corporation of America
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Search Results "ISE70-F02-AB-B"

(16.3) 10 (7) 5.5 20.8 56.2 35 17.2 PE X DIN rail B A B A B A B A B A B A 9.9 Manual override (Locking type: Press, then rotate.)

B-1 A-1 B-2 A-2 B-3 A-3 B-4 A-4 Connector D terminal no. 12 13 7 6 9 8 11 10 3 Signal Cable color Shield Brown Black Red Black Orange Black Yellow Black Vcc GND A A B B Z Z Connector B terminal no.

5 A-A t y @2 C B e @1 !0 C B r w C-C B-B !4 !2 Body Table !3 Component Parts No. Description Material Note No.

B B B B 19 P 40 39 P 35 A A A A A 19 2 MAX.5 10 10 (Lead wire length) G : About 300 H : About 600 24.5 (Pitch) P=10.5 10.5 (Mounting holes) L2 4 L1 (Non-locking) Manual override A A 20 48.5 [55] 15 B B 5 36.1 1.5 29.5 A A (Pitch) P=10.5 17.5 2n-One-touch fitting (A, B port) 20 15 B B 5 1.5 2n-M5 0.8 (A, B port) (Pitch) P=10.5 15.7 Other dimensions are the same as the M5T.

SUP block plate VVQ2000-16A EXH block plate VVQ2000-19A Port plug Note 1) A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B A B C4 (N3) With 4 (5/32") One-touch fitting Side port Cylinder port sizes Fill out in case of mixed sizes (CM/LM/NM).

B-1 A-1 B-2 A-2 B-3 A-3 B-4 A-4 Connector D terminal no. 12 13 7 6 9 8 11 10 3 Signal Cable color Shield Brown Black Red Black Orange Black Yellow Black Vcc GND A A B B Z Z Connector B terminal no.

Flow Characteristics SJ2000 Flow characteristics Port size 4/23/5 (A/BE) 12/4 (PA/B) 1(P) 3/5(E) 4, 2 (A, B) C [dm3/(sbar)] C [dm3/(sbar)] Cv b b Cv 0.04 0.55 0.13 0.13 0.50 0.04 C2 C8 0.08 0.16 0.33 0.36 0.13 0.08 C4 0.52 0.06 0.18 0.20 0.29 M3 0.06 SJ3000 Flow characteristics Port size 4/23/5 (A/BE) 12/4 (PA/B) 1(P) 3/5(E) 4, 2 (A, B) C [dm3/(sbar)] C [dm3/(sbar)] Cv b Cv b 0.04 0.56 C2

S) SMC C A B D SMC B A SMC (Max. T) U Z M N LVQ40, LVQ60 C B A D (Max.

bolt A Adjustment amount by adjustment bolt B Adjustment amount by adjustment bolt B Adjustment amount by adjustment bolt B 90 Rotation 90 Rotation 90 Rotation 278 Rotary Table/Rack & Pinion Style Series MSQ Construction CRB2 CRBU2 CRB1 MSU CRJ o i t !

Material Description NBR NBR NBR NBR NBR NBR NBR NBR NBR NBR NBR NBR NBR NBR NBR Piston seal Rod seal A Rod seal B Brake piston seal Middle cover gasket Cam gasket Cushion seal A Cushion seal B Piston gasket Cushion ring gasket A Cushion ring gasket B Valve seal A Valve seal B Gasket for valve retainer Cylinder tube gasket $1 $2 $3 $4 $5 $6 $7 $8 $9 %0 %1 %2 %3 %4 %5 MGQ MGG MGC MGF MGZ CY

L r b a = K + mL2 K: The moment of inertia around the center of gravity of the load K = m r2 12 a2 + b2 = m In case of 4. Round plate 2 4. Round plate (Including column) Position of rotational axis: Passing through the center axis 9. Gear transmission (A) (B) No. of teeth = a 1. Find the moment of inertia B for the rotation of shaft (B). 2.

rib O Deep type B Bellows type List o Pad dia.

Next, B is entered to find A the inertial moment for the rotation of shaft (A) as 5 b a A = ( ) 2 B Number of teeth = b Kinetic Energy/Rotation Time Even in cases where the torque required for rotation of the load is small, damage to internal parts may result from the inertial force of the load.

PB B A B A B A N.C. N.O. Double acting Double acting With flow rate adjustment PA PA N.C. B A PB B A Double acting N.C. Double acting With by-pass PA PA N.C. PB B A B A Double acting N.C. Double acting With flow rate adjustment & by-pass PA PA N.C. PB B A B A Double acting N.C.

AB B MK MK Basic (mm) MK2T A B C D E F Yh9 G 45 52 64 77 H 16 16 20 20 I 9 9 11 14 J 7 7 8 10.5 K M6 x 1.0 M6 x 1.0 M8 x 1.25 M10 x 1.5 L 10 10 14 18 S 31.5 29 34 34.5 T 10.5 9 11.5 10.5 W 14 15 19 19 X 3 3 3.5 3.5 Z 6.5 6.5 7.5 7.5 AA 4.5 5 7 7 AB 1 1 1 1.4 AC 5.5 5.5 6.6 9 AE 1/8 1/8 1/4 1/4 Model 30 30 37 48 MKB32-Z MKB40-Z MKB50-Z MKB63-Z 0 0.062 0 0.062 0 0.062 0 0.062 49.5 57 71 84

Rotational axis B d D I m kgm I = m kgm 8 8 Gear: I a + b I = m kgm IB = I + I + I kgm 12 Substitute the moment of inertia IB for rotation around shaft B with the moment of inertia IA for rotation around shaft A. Gear: I IA = (A/B)IB [A/B: Gear tooth ratio] Find the actual moment of inertia.