p p p m m m m m m m p p p p p p p p m m m m m M m M m R p m p p p m m m M m R m p R M p m p p m p m p M m m m m M m p p M m M p p m m m m p m M M m R m m m p m m p m m p p m p m p m p m m R p m m p m p m m M M m m m m p m m p M m p m p m m m m p m M p p m m R p p p p p p p p R p p p m m p m m R p m p m p m m p M p m m m m p p m p p m p m m p R m p p p R m p p p R p p m m p m m p p p p p p
A44 PLC Terminal conduit 12V 100V, 200V Relay, PLC DIN terminal P P P P P P A59W F59 F5P J51 J59 Diagnostic indication (2 color) Grommet p p p p 3 wire (NPN) 5V, 12V 24V IC 3 wire (PNP) Grommet P P P P 100V, 200V 2 wire 12V P P G39 K39 5V, 12V 3 wire (NPN) IC Terminal conduit 12V 2 wire P P P P P P P P P P F59W F5PW J59W F5BA F5NT F59F Relay, PLC p p p p p p 3 wire (NPN) 5V, 12V IC Diagnostic
/Fixed Mounting Height Heavy Duty Stopper Cylinder Floating Joint /Standard Type /For Compact Cylinders /Stainless Steel Type Shock Absorber Rotary Table/Rack & Pinion Style P.33 P.34 Auto Switches D-M9BW(V)SDPC-900 D-M9BW(V)L-900 D-Y7BW(V)L-900 D-A90L-900 D-Z80L-900 P.62 P.63 P.64 P.65 P.65 P.66 Solid State Auto Switch Direct Mounting Style 90-JA 90-JB 90-JS 90-RB/RBC 92-MSQ P.35 P.35 P.35
Note 2) Refer to p.5.3-5 for lead wire length.
p, (1) ru&or @$prugd.Err 13,11) hdE bi|Eme$nbr! d.bir21, 0 ) d1.r l s, t4 d.i.ir 13, (2)d.'
determination F3 D 1.6 x P WB Inclined operation W + WB WV P PV W + WB WV P PV Allowable driving force table (Fn) (n=1,2,3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (COS + SIN) Inclined (Refer to page 5 for vertical operation.)
Please refer P 8-4 for how to mount. 9. Refer to Fig. 8-6 to mount the plug to the piping of the product.
I J to 350 20 18 15.5 13 14 8 12.5 12 2 12 12 35 5 25.3 37 26 M4 x 0.7 depth 7 to 400 25 22 19.5 17 16.5 10 12.5 14 2 12 12 40 6 28.3 40 31 M5 x 0.8 depth 7.5 to 450 32 22 19.5 17 20 12 12 18 2 12 12 40 6 31.3 43 38 M5 x 0.8 depth 8 to 800 40 30 27 19 26 16 15 25 2 13 13 50 8 38.3 52.5 47 M6 x 1 depth 12 to 1200 50 35 32 27 32 20 16.5 30 2 14 14 58 11 44.5 58.5 58 M8 x 1.25 depth 16 to 1200
size determination F3 D 1.6 x P WB Inclined operation W + WB WV P PV W + WB WV P PV Determination of allowable load mass & pressure (Refer to page 1466 for vertical operation.)
Refer to gauge guide (P.94,95).
determination F3 D 1.6 x P WB Inclined operation W + WB WV P PV W + WB WV P PV Allowable driving force table (Fn) (n=1,2,3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (COS + SIN) Inclined (Refer to page 5 for vertical operation.)
0.1 x mcos + msin P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m mv P Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 29) 1 Review of operating conditions Determination of load factor () = Load mass (m) Maximum allowable load (m max) + Static moment (M) Allowable static moment (Mmax)+ Dynamic moment (ME) Allowable dynamic moment (MEmax
m P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m > mv P > Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 8-16-8
m P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m > mv P > Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 8-16-8
930 750 610 500 500 410 340 250 200 170 [mm/s] 24 16 8 () [mm/s] 39 26 13 () 108 No.SFOD-OMT0009CN-B LEFS40 H A B [mm] 30 20 10 [mm] 1200 1000 1100 1200 1000 1100 1200 [mm/s] 500 500 410 340 250 200 170 [mm/s] 30 20 10 () [mm/s] 49 33 17 () 1.3 LES(H) LES(H)8 LES(H)16 LES(H)25 J K J K J K [mm] 8 4 10 5 16 8 [mm/s] 400 200 400 200 400 200 [mm/s] 20 10 20 10 20 10 () [mm/s] 25 13 27 14
930 750 610 500 500 410 340 250 200 170 [mm/s] () 24 16 8 [mm/s] () 39 26 13 -108No.JXC-OMT0001CN-C LEFS40 H A B [mm] 30 20 10 [mm] 1200 1000 1100 1200 1000 1100 1200 mm/s 500 500 410 340 250 200 170 [mm/s] () 30 20 10 [mm/s] () 49 33 17 1.3 LES(H) LES(H)8 LES(H)16 LES(H)25 J K J K J K [mm] 8 4 10 5 16 8 mm/s 400 200 400 200 400 200 [mm/s] () 20 10 20 10 20 10 [mm/s] () 25 13 27 14