Series MNB Cylinder with Lock Double Acting, Single Rod Proper Auto Switch Mounting Position D-F5W D-J59W D-F5 D-J5 D-F5BAL D-F59F D-Z7/Z80 D-Y59/Y69 D-Y7P/Y7PV D-Y7W, D-Y7WV D-Y7BAL D-A3 D-A44 D-G39 D-K39 D-A5 D-A6 D-A59W D-F5NTL D-P5DWL Bore size (mm) A B A B A B A B A B A B A B 32 1 3.5 1.5 4 0 0.5 9.5 12 4.5 7 2 4.5 0 0.5 CL 40 1 3.5 1.5 4 0 0.5 9.5 12 4.5 7 2 4.5 0 0.5 50 1.5 4 2 4.5
K F BN S + Stroke Cushion valve GF 4-J Width across flats B1 GB Effective thread length H1 MM Q CDH10 D V E U Width across flats CX CZ N L RR Z + Stroke ZZ + Stroke T Bore size (mm) Stroke range (mm) CDH10 CX CZ Width across flats 54 Effective thread length (mm) GA GB GC GD GL GL1 Ee11 B B1 A H1 B2 BN BP C D F +0.3 +0.1 32 1/8 97 12 Up to 500 30 10 19.5 10 32.5 46 6 83 13 45.5 22 17 28 12
B 15 A 33 B D-A3l D-G39/K39 D-A5l/A6l D-A59W G1/2 (Applicable cable O.D.: 6.8 to 9.6) Hs Auto switch Hs Ht Ht 49 56 34 S M C AUTO SWITCH S M C AUTO SWITCH A 33 B A 36 B D-A3lC D-G39C/K39C Auto switch G1/2 (Applicable cable O.D.: 6.8 to 9.6) Auto switch D-G5l/K59 D-G5lW/K59W D-G5BA D-G59F/G5NT Hw A 49 B Hs Hs Auto switch 36 24.5 56 D-F5l/J59 D-F5NT D-F5lW/J59W D-F5BA/F59F 14 A 33 B
This may cause damage to the machinery. ) m m ( e z i s e r o B e v l a v n o i h s u C s t a l f s s o r c a h t d i W h c n e r w n o g a x e H 0 5 , 0 5 , 2 3 7 4 2 1 C 0 1 2 3 B M 5 . 2 5 . 2 y e k h c n e r w n o g a x e H 0 0 1 , 0 8 , 3 6 0 5 2 1 C 0 1 3 6 B M 4 4 y e k h c n e r w n o g a x e H Mounting & Piping 2. Be certain to activate the air cushion at the stroke end.
C T FA AL MLGP A K CT N F N U RLQ S + Stroke H BY L B RR Z + Stroke MLU ZZ + Stroke ML1C BW With rod boot 180, 200, 250 DBV BZ -X e BG BE 20f Data l 15 h + l 4-MA Effective thread depth MB (To attach eyebolt) Z1 + l + Stroke ZZ1 + l + Stroke Bore size (mm) Stroke range (mm) 125 140 160 180 200 250 GA A AL B BA BB BC BD BE BG BZ BV BW BP C CDH10 CT CX CZ D E EA F FA GB GC H J K KA L BY 0
B2 H + Stroke A K AL A S + Stroke H Width across flats B1 ?? ??
are vertical upward mounting with a speed of 500 mm/s, use graph (2).
1 Cylinder with Lock Series CNG 20, 25, 32, 40 FREE A locking cylinder ideal for intermediate stops, emergency stops and drop prevention. Simple construction A force magnifying mechanism is employed based on the wedge effect of the taper ring and steel balls. Maximum piston speed: 1000 mm/s It can be used at 50 to 1000 mm/s provided that it is within the allowable kinetic energy range.
1 Cylinder with Lock Series CNS 125, 140, 160 A locking cylinder ideal for intermediate stops, emergency stops and drop prevention. CL Simple construction A force magnifying mechanism is employed based on the wedge effect of the taper ring and steel balls. Maximum piston speed: 500 mm/s It can be used at 50 to 500 mm/s provided that it is within the allowable kinetic energy range.
Compact lock unit saves space The lock unit is extremely compact, without a large overhang. I 20, 25, 32, 40 for intermediate stops, d drop prevention. Maximum piston speed: 100mm/s (39in/s) Within the allowable kinetic energy range, speeds between 50 to 1000mm/s (2 to 39inls) can be achieved.
length FL AL NA CZ CX K A U F N N MQ ZZ + Stroke Z + Stroke S + Stroke H L RR RHC (mm) RZQ CZ MM A AL F G H H1 I K FL KA D B1 CX L CD E Bore (mm) 0 -0.033 0 -0.033 0 -0.033 0 -0.039 20 M8 x 1.25 20 18 15.5 13 8 13 10 9 19 10 41 5 33.5 5 10.5 6 30 25 M10 x 1.25 26 22 19.5 13 10 17 10 9 19 10 45 6 37.5 5.5 10.5 8 30 D32 M10 x 1.25 26 22 19.5 13 12 17 10 9 19 11 45 6 46.5 5.5 10.5 10 30 40
length FL AL NA CZ CX K A U F N N MQ ZZ + Stroke Z + Stroke S + Stroke H L RR RHC (mm) RZQ CZ MM A AL F G H H1 I K FL KA D B1 CX L CD E Bore (mm) 0 -0.033 0 -0.033 0 -0.033 0 -0.039 20 M8 x 1.25 20 18 15.5 13 8 13 10 9 19 10 41 5 33.5 5 10.5 6 30 25 M10 x 1.25 26 22 19.5 13 10 17 10 9 19 10 45 6 37.5 5.5 10.5 8 30 D32 M10 x 1.25 26 22 19.5 13 12 17 10 9 19 11 45 6 46.5 5.5 10.5 10 30 40
(Double that of a conventional P/A product) A metal rod scraper is standard Resistance against welding process spatter and other external contaminants is achieved by providing a metal rod scraper as standard. Features 1 for intermediate stops, d drop prevention. Maximum piston speed: 500mm/s Within the allowable kinetic energy range, speeds between 50 to 500mm/s can be achieved.
Eh8 D MM AL CX -0.1 -0.2 K A U CZ N N F S+Stroke H L lNA Z+Stroke RR ZZ+Stroke (mm) A AL B1 CD CX CZ D E F G H H1 I K L MM N Bore size Stroke range 0 -0.033 0 -0.033 0 -0.033 0 -0.039 20 M8 X 1.25 18 15.5 13 9 10 8 20 13 10 41 5 33.5 5 30 20 19 150 to 700 M10 X 1.25 25 22 19.5 17 9 10 10 26 13 10 45 6 37.5 5.5 30 20 19 150 to 700 M10 X 1.25 32 22 19.5 17 9 10 12 26 13 11 45 6 46.5 5.5 30
A K CT N N U 43 C L H BY S + Stroke B RR Z + Stroke ZZ + Stroke With rod boot 75 l 15 40 h + l Z1 + l + Stroke ZZ1 + l + Stroke (mm) Bore size (mm) Stroke range (mm) 125 140 160 A AL B BA BB BC BY BZ C CDH10 CT CX CZ D GA GB GC 0 0.2 0 0.2 0 0.2 + 0.3 + 0.1 + 0.3 + 0.1 + 0.3 + 0.1 + 0.084 0 + 0.084 0 + 0.100 0 50 47 145 75 18 110 136 115 25 17 32 64 36 16 107 58 to 1000 50 47 161 78
A + Stroke FZ (mm) Double clevis type/MQQLD Bore size (mm) Stroke range (mm) A B CL CD CT CU Special cap bolt 10 to 40 CU CD hole H10 Shaft d9 90.5 61.5 5 84.5 4 10 10 10 to 60 107.5 70.5 8 98.5 5 12 16 10 to 60 119 79 10 109 5 14 20 10 to 50, 75, 100 126.5 84.5 10 116.5 5 14 25 10 to 50, 75, 100 148 104 10 138 6 14 28 CX +0.4 +0.2 CT B + Stroke CW CZ -0.1 -0.3 L Bore size (mm) CW CX CZ L
K ZZ + 2 strokes S + Stroke H A K F N C B With rod boot In the case of w/o air cushion, it comes with rubber bumper.
MM 2-RcP G G MM D D e e Effective thread Effective thread 13 13 9 A K f N N f h + Stroke K A l + Stroke 9 l ZZ + 2 strokes S + Stroke h Without Air Cushion Stroke range Bore size (mm) Effective thread length Width across flats MB J K MM N P V W S ZZ S ZZ A C B D Ee11 F G H 32 40 50 63 80 100 4 4 5 5 5 5 M6 x 1 6 6 7 7 10 10 M10 x 1.25 26.5 26.5 31 31 37.5 37.5 1/8 1/4 1/4 3/8 3/8 1/2 84
The kinetic energy of a load can be found using the following formula. 20 10 5 M 100 300 1000 2000 500 M 2 2 Ek = Maximum drive speed (mm/s) Ek: Kinetic energy (J) M: Weight of load (kg) : Piston speed (m/s) Example) Find the rod end load limit when a 63 air cylinder is operated at a maximum drive speed of 500mm/s.