Neo Hyponic. Right Angle Gearmotors & Speed Reducers
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- Φιλομήλ Ζερβός
- 5 χρόνια πριν
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Transcript
1 Neo Hyponic Right Angle Gearmotors & Speed Reducers Catalogue /EN -01/2012
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6 Efficiency (%) Sumitomo Hyponic Drive General-purpose worm gear Input: 1500rpm Input capacity: 0,12-5,5kw Bevel Reduction ratio Worm Hypoid Comparison of 0,37kW, 1/60 models General-purpose worm gear motor Hyponic Drive 5
7 Long Short Safety cover Chain & sprocket Mounting base & alignment Deep Shallow 6 Inline Right-angle Torque arm (option)
8 Canning, Bottling, Brewing and Sterilising Machines Meat, Dairy, Baking and Food Processin Equipment Conveyors Food and Pharmaceutical Testing Equipment Medical and Health care Apparatus Water and Sewage Treatment Facilities Packaging and Container Filling Machines Machine Tools Measurement Instrumentation 7
9 Hyponic Product range 8
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11 Δ Δ Δ 10 Δ Δ Δ Δ Δ
12 R N Y M E B 80 Hyponic Output Direction Solid/Hollow Input Connection Input Power {rating catalog page} Frame Size Shaft Direction Output Shaft Spec. Brake Ratio Y (Hollow) M {gear motor} W 25W 40W E ( ) [standard] {PG 23~27} K1 [foot] W 90W ( ) F1or G1 [left] [right] [ view from motor] ( ) [nonbrake] R (Hyponic) N (universal mounting) H (shaft & foot) F (shaft & ( ) [reducer] J [adaptor] JM [adaptor w/motor] H ,12kw 0,18kw 0,25kw 0,37kw 0,55kw 0,75kw 1,1kw 1,5kw 2,2kw 3,0kw 4,0kw 5,5kw I I I I I I I I I L [left view from motor] R [right view from motor] T [both sides] ( ) [Japanese standard] {option} E ( ) [Japanese standard] E ( ) [Japanese standard] E ( ) [Japanese standard] {option} F1or G1 [left] [right] [ view from motor] J1 X1 [standard] P1or Q1 [left] [right] [ view from motor] P1or Q1 [left] [right] [ view from motor] B [brake] G1 and Q1 11
13 12 ME MO
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15 Motor Speed n ,371 0,307 0,038 0,031 4, ,556 0,461 0,057 0,047 4, , ,742 0,615 0,076 0,063 4, ,890 0,738 0,091 0,075 4, , ,11 0,922 0,113 0,094 4, ,5 87,5 1,48 1,23 0,151 0,125 4, ,0 70,0 1,85 1,54 0,189 0,157 4, ,3 58,3 2,23 1,84 0,227 0,188 4, ,3 43,8 2,97 2,46 0,303 0,251 4, ,0 35,0 3,71 3,07 0,378 0,313 4, ,2 29,2 4,45 3,69 0,454 0,376 4, ,1 21,9 5,93 4,92 0,605 0,501 4, ,5 17,5 7,42 6,15 0,756 0,627 4, ,1 14,6 8,90 7,38 0,908 0,752 3, ,06 10,9 11,9 9,83 1,21 1,00 2, ,25 8,75 14,8 12,3 1,51 1,25 2, ,04 7,29 17,8 14,8 1,82 1,50 1, )
16 1 2 2 z ,618 0,512 0,063 0,052 2, ,927 0,768 0,095 0,078 2, , ,24 1,02 0,126 0,104 2, ,48 1,23 0,151 0,125 2, , ,85 1,54 0,189 0,157 2, ,5 87,5 2,47 2,05 0,252 0,209 2, ,0 70,0 3,09 2,56 0,315 0,261 2, ,3 58,3 3,71 3,07 0,378 0,313 2, ,3 43,8 4,95 4,10 0,504 0,418 2, ,0 35,0 6,18 5,12 0,630 0,522 2, ,2 29,2 7,42 6,15 0,756 0,627 2, ,1 21,9 9,89 8,20 1,01 0,836 2, ,5 17,5 12,4 10,2 1,26 1,04 2, ,1 14,6 14,8 12,3 1,51 1,25 2, ,06 10,9 19,8 16,4 2,02 1,67 1, ,25 8,75 24,7 20,5 2,52 2,09 1, ,04 7,29 29,7 24,6 3,03 2,51 1, W 1 2.
17 ,12 0,929 0,114 0,095 1, ,68 1,39 0,171 0,142 1, , ,24 1,86 0,229 0,189 1, ,69 2,23 0,274 0,227 1, , ,36 2,79 0,343 0,284 1, ,5 87,5 4,48 3,72 0,457 0,379 1, ,0 70,0 5,61 4,64 0,572 0,474 1, ,3 58,3 6,73 5,57 0,686 0,568 1, ,3 43,8 8,97 7,43 0,914 0,758 1, ,0 35,0 11,2 9,29 1,14 0,947 1, ,2 29,2 13,5 11,1 1,37 1,14 1, ,1 21,9 17,9 14,9 1,83 1,52 1, ,5 17,5 22,4 18,6 2,29 1,89 1, ,1 14,6 26,9 22,3 2,74 2,27 1, ,67 11,7 33,6 27,9 3,43 2,84 1, ,25 8,75 44,8 37,2 4,57 3,79 1, ,04 7,29 53,8 44,6 5,49 4,55 1,
18 1 2 2 z 4,83 5,83 63,3 55,7 6,46 5,68 1, ,03 4,86 76,0 66,9 7,75 6,82 1, ,02 3,65 98,1 89,2 10,0 9,09 * ,42 2,92 98,1 98,1 10,0 10,0 * ,01 2,43 98,1 98,1 10,0 10,0 * ,61 1,94 98,1 98,1 10,0 10,0 * ,21 1,46 98,1 98,1 10,0 10,0 * ,01 1,22 98,1 98,1 10,0 10,0 *
19 ,68 1,39 0,171 0,142 1, ,52 2,09 0,257 0,213 1, , ,36 2,79 0,343 0,284 1, ,04 3,34 0,412 0,341 1, , ,04 4,18 0,514 0,426 1, ,5 87,5 6,73 5,57 0,686 0,568 1, ,0 70,0 8,41 6,97 0,857 0,710 1, ,3 58,3 10,1 8,36 1,03 0,852 1, ,3 43,8 13,5 11,1 1,37 1,14 1, ,0 35,0 16,8 13,9 1,71 1,42 1, ,2 29,2 20,2 16,7 2,06 1,70 1, ,1 21,9 26,9 22,3 2,74 2,27 1, ,5 17,5 33,6 27,9 3,43 2,84 1, ,1 14,6 40,4 33,4 4,12 3,41 1, ,67 11,7 50,4 41,8 5,14 4,26 1, ,25 8,75 53,9 53,9 5,50 5,50 * ,04 7,29 53,9 53,9 5,50 5,50 * )
20 1 2 2 z 4,83 5,83 95,0 78,7 9,68 8,02 1, ,03 4,86 98,1 94,4 10,0 9,63 * ,02 3,65 98,1 98,1 10,0 10,0 * ,42 2,92 98,1 98,1 10,0 10,0 * ,01 2,43 98,1 98,1 10,0 10,0 * ,61 1,94 98,1 98,1 10,0 10,0 * ,21 1,46 98,1 98,1 10,0 10,0 * ,01 1,22 98,1 98,1 10,0 10,0 *
21 ,52 2,09 0,257 0,213 1, ,78 3,13 0,386 0,320 1, , ,04 4,18 0,514 0,426 1, ,05 5,02 0,617 0,511 1, , ,57 6,27 0,772 0,639 1, ,5 87,5 10,1 8,36 1,03 0,852 1, ,0 70,0 12,6 10,4 1,29 1,07 1, ,3 58,3 15,1 12,5 1,54 1,28 1, ,3 43,8 20,2 16,7 2,06 1,70 1, ,0 35,0 25,2 20,9 2,57 2,13 1, ,2 29,2 30,3 25,1 3,09 2,56 1, ,1 21,9 40,4 33,4 4,12 3,41 1, ,5 17,5 50,4 41,8 5,14 4,26 1, ,1 14,6 53,9 50,2 5,50 5,11 * ,67 11,7 53,9 53,9 5,50 5,50 * ,25 8,75 53,9 53,9 5,50 5,50 * ,04 7,29 53,9 53,9 5,50 5,50 *
22 1 2 2 z 4,83 5,83 98,1 98,1 10,0 10,0 * ,03 4,86 98,1 98,1 10,0 10,0 * ,02 3,65 98,1 98,1 10,0 10,0 * ,42 2,92 98,1 98,1 10,0 10,0 * ,01 2,43 98,1 98,1 10,0 10,0 * ,61 1,94 98,1 98,1 10,0 10,0 * ,21 1,46 98,1 98,1 10,0 10,0 * ,01 1,22 98,1 98,1 10,0 10,0 *
23 0,12 kw ,36 2,79 0,343 0,284 1, ,71 3,90 0,480 0,398 1, ,73 5,57 0,686 0,568 1, ,07 6,69 0,823 0,682 1, , ,09 8,36 1,029 0,852 1, ,5 87,5 13,5 11,15 1,37 1,137 1, ,0 70,0 16,8 13,9 1,71 1,42 1, ,3 58,3 20,2 16,7 2,06 1,70 1, ,3 43,8 26,9 22,3 2,74 2,27 0, , ,0 35,0 33,6 27,9 3,43 2,84 0, , ,2 29,2 40,4 33,4 4,12 3,41 0, , /2 1/2 1/2 1/2 1/2 1/2 1/2 1/2 1/2 3/4 1/2 3/4 1/2 3/4 1 2.
24 )
25 2 2 18,1 21,9 53,8 44,6 5,49 4,55 0, , ,5 17,5 67,3 55,7 6,86 5,68 0, , ,1 14,6 80,7 66,9 8,23 6,82 0, , ,67 11,7 98,1 83,6 10,00 8,52 0, , ,25 8,75 98,1 98,1 10,0 10,0 * ,5 13,7 11,37 1, ,04 7,29 98,1 98,1 10,0 10,0 * ,5 13,6 1, /2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1 2.
26 Hollow shaft
27 2 2 4,83 5, ,4 16,0 0, ,83 5, ,4 16,0 1, ,03 4, ,9 19,3 * ,03 4, ,2 19,3 1, ,02 3, ,9 19,9 * ,02 3, ,0 25,7 1, ,42 2, ,9 19,9 * ,42 2, ,7 32,1 1, ,01 2, ,9 19,9 * ,01 2, ,8 38,5 * ,61 1, ,9 19,9 * ,61 1, ,8 39,8 * ,21 1, ,9 19,9 * ,21 1, ,8 39,8 * ,01 1, ,9 19,9 * ,01 1, ,8 39,8 * /2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1/2 3/4 1 2.
28
29 ,04 4,18 0,514 0,426 1, , ,06 5,85 0,720 0,597 1, , ,1 8,36 1,03 0,852 1, ,
30 1 2 2 z ,1 10,0 1,23 1,02 1, , , ,1 12,5 1,54 1,28 1, , ,5 87,5 20,2 16,7 2,06 1,70 1, , ,0 70,0 25,2 20,9 2,57 2,13 1, , ,3 58,3 30,3 25,1 3,09 2,56 1, , ,3 43,8 40,4 33,4 4,12 3,41 1, , ,0 35,0 50,4 41,8 5,14 4,26 1, , ,2 29,2 60,5 50,2 6,17 5,11 1, ,
31 2 2 18,1 21,9 80,7 66,9 8,23 6,82 1, , ,5 17, ,6 10,3 8,52 1, , ,1 14, ,3 10,2 1, , ,67 11, ,4 12,8 1, , ,25 8, ,9 17,0 * ,6 17,0 1, ,04 7, ,9 19,9 * ,7 20,5 1,
32 1 2 2 z 4,83 5, ,0 24,1 1, ,83 5, ,0 24,1 2, ,03 4, ,9 28,9 1, ,03 4, ,9 28,9 2, ,02 3, ,8 38,5 * ,02 3, ,5 38,5 1, ,42 2, ,8 39,8 * ,42 2, ,1 48,1 1, ,01 2, ,8 39,8 * ,01 2, ,7 57,8 1, ,61 1, ,8 39,8 * ,61 1, ,6 72,2 * ,21 1, ,8 39,8 * ,21 1, ,6 74,6 * ,01 1, ,8 39,8 * ,01 1, ,6 74,6 * s
33 2 2 z ,01 5,81 0,714 0,592 1, ,81 8,13 1,00 0,829 1, ,0 11,6 1,43 1,18 1, ,8 13,9 1,71 1,42 1, , ,0 17,4 2,14 1,78 1, ,5 87,5 28,0 23,2 2,86 2,37 1, ,0 70,0 35,0 29,0 3,57 2,96 1, ,3 58,3 42,0 34,8 4,29 3,55 1, ,3 43,8 56,1 46,4 5,72 4,74 1, ,0 35,0 70,1 58,1 7,14 5,92 1, ,2 29,2 84,1 69,7 8,57 7,10 1,
34 1 2 2 z 18,1 21, ,9 11,4 9,47 1, ,5 17, ,3 11,8 1, ,1 14, ,1 14,2 1, ,67 11, ,4 17,8 1, ,25 8, ,6 23,7 1, ,04 7, ,3 28,4 1, ,83 5, ,3 33,4 1, ,03 4, ,4 40,1 1, ,02 3, ,6 53,5 1, ,42 2, ,6 66,9 * ,01 2, ,6 74,6 * ,61 1, ,6 74,6 * ,21 1, ,6 74,6 * ,01 1, ,6 74,6 * )
35 ,4 8,59 1,06 0,876 1, , ,5 12,0 1,48 1,23 1, , ,7 17,2 2,11 1,75 1, ,
36 1 2 2 z ,9 20,6 2,54 2,10 1, , , ,1 25,8 3,17 2,63 1, , ,5 87,5 41,5 34,4 4,23 3,50 1, , ,0 70,0 51,8 43,0 5,29 4,38 1, , ,3 58,3 62,2 51,6 6,34 5,26 1, , ,3 43,8 83,0 68,7 8,46 7,01 1, , ,0 35, ,9 10,6 8,76 1, , ,2 29, ,7 10,5 1, , )
37 2 2 18,1 21, ,9 14,0 1, , ,5 17, ,1 17,5 1, , ,1 14, ,4 21,0 1, , ,67 11, ,7 26,3 1, , ,25 8, ,8 35,0 * ,3 35,0 1, ,04 7, ,8 39,8 * ,8 42,1 1,
38 1 2 2 z 4,83 5, ,7 49,5 1, , ,03 4, ,7 59,4 1, , ,02 3, ,6 74,6 * ,5 79,2 1, ,42 2, ,6 74,6 * ,9 1, ,01 2, ,6 74,6 * , ,61 1, ,6 74,6 * * ,21 1, ,6 74,6 * * ,01 1, ,6 74,6 * *
39 ,4 12,8 1,57 1,30 1, ,6 17,9 2,20 1,82 1, ,8 25,5 3,14 2,60 1, ,0 30,7 3,77 3,13 1, , ,2 38,3 4,72 3,91 1, ,5 87,5 61,7 51,1 6,29 5,21 1, ,0 70,0 77,1 63,9 7,86 6,51 1, ,3 58,3 92,5 76,6 9,43 7,81 1, ,3 43, ,6 10,4 1, ,0 35, ,7 13,0 1, ,2 29, ,9 15,6 1, )
40 1 2 2 z 18,1 21, ,1 20,8 1, ,5 17, ,4 26,0 1, ,1 14, ,7 31,3 1, ,67 11, ,2 39,1 1, ,25 8, ,9 52,1 1, ,04 7, ,6 62,5 * ,83 5, ,8 73,5 1, ,03 4, ,3 1, ,02 3, , ,42 2, * ,01 2, * ,61 1, * ,21 1, * ,01 1, * )
41 ,0 17,4 2,14 1,78 1, , ,4 24,4 3,00 2,49 1, , ,0 34,8 4,29 3,55 1, , s
42 1 2 2 z ,4 41,8 5,14 4,26 1, , , ,1 52,2 6,43 5,33 1, , ,5 87,5 84,1 69,7 8,57 7,10 1, , ,0 70, ,1 10,7 8,88 1, , ,3 58, ,9 10,7 1, , ,3 43, ,1 14,2 1, , ,0 35, ,4 17,8 1, , ,2 29, ,7 21,3 1, , ) Fig 6 RNYM1-1520E-40 ~ 60 Mass 26 kg (RNYM1-1520E-B-40 ~ 60) (Mass 28 kg)
43 2 2 18,1 21, ,3 28,4 1, , ,5 17, ,9 35,5 1, , ,1 14, ,4 42,6 1, , ,67 11, ,3 53,3 1, , ,25 8, ,6 71,0 * ,7 1, ,04 7, ,6 74,6 * ,2 1, Fig 2 RNYM1-1630E-100 ~ 120 Mass 30 kg Fig 3 150~240)
44 1 2 2 z 4,83 5, , ,03 4, , ,02 3, * ,42 2, * ,01 2, * ,61 1, * ,21 1, * ,01 1, *
45 ,8 25,5 3,14 2,60 1, H ,2 35,8 4,40 3,65 1, H ,7 51,1 6,29 5,21 1, H ,0 61,3 7,54 6,25 1, H , ,5 76,6 9,43 7,81 1, H ,5 87, ,6 10,4 1, H ,0 70, ,7 13,0 1, H ,3 58, ,9 15,6 1, H ,3 43, ,1 20,8 1, H ,0 35, ,4 26,0 1, H ,2 29, ,7 31,3 1, H
46 ,1 21, ,3 41,7 1, H ,5 17, ,9 52,1 2, H ,1 14, ,4 62,5 2, H ,67 11, ,3 78,1 1, H ,25 8, , H ,04 7, , H
47 ,0 34,8 4,29 3,55 1, , ,9 48,8 6,00 4,97 1, , ,1 69,7 8,57 7,10 1, ,
48 1 2 2 z ,6 10,3 8,52 1, , , ,9 10,7 1, , ,5 87, ,1 14,2 1, , ,0 70, ,4 17,8 1, , ,3 58, ,7 21,3 1, ,
49 2 2 36,3 43, ,3 28,4 1, , ,0 35, ,9 35,5 1, , ,2 29, ,4 42,6 1, , ,1 21, ,6 56,8 1, , )
50 1 2 2 z 14,5 17, ,7 71,0 1, ,1 14, ,2 1, ,67 11, , ,25 8, * ,04 7, ,0 * )
51 2 2 z ,7 51,1 6,29 5,21 1, , ,3 71,5 8,80 7,29 1, , ,6 10,4 1, , ,1 12,5 1, , , ,9 15,6 1, , ,5 87, ,1 20,8 1, , ,0 70, ,4 26 1, ,
52 1 2 2 z 48,3 58, ,7 31,3 1, , ,3 43, ,3 41,7 1, , ,0 35, ,9 52,1 1, , ,2 29, ,4 62,5 1, , ,1 21, ,3 1, ,5 17, , ,1 14, , ,67 11, * ,25 8, * ,04 7, * ,2 kw 1 2..
53 ,6 7,1 1, , ,0 9,9 1, , ,1 14,2 1, , ,6 17,0 1, , , ,7 21,3 1, ,
54 1 2 2 z 72,5 87, ,3 28,4 1, , ,0 70, ,9 35,5 1, , ,3 58, ,4 42,6 1, , ,3 43, ,6 56,8 1, , ,0 35, ,7 71,0 1, ,2 29, ,2 1,
55 ,4 9,5 0, , ,0 13,3 0, , ,9 18,9 1, , ,4 22,7 0, , , ,3 28,4 0, ,
56 1 2 2 z 72,5 87, ,7 37,9 0, , ,0 70, ,2 47,4 0, , ,3 58, ,6 56,8 0, , ,3 43, ,4 75,8 0, , ,0 35, ,3 94,7 0, ,2 29, ,2 113,7 0,
57 ,7 13,0 1, ,0 18,2 1, ,4 26,0 1, ,7 31,3 1, , ,2 39,1 1, ,5 87, ,9 52,1 1, ,0 70, ,6 65,1 1, ,3 58, ,3 78,1 1, ,3 43, ,
58
59 Option Solid shaft flange mount Frame Power Reduction size ratio Output shaft mm [kw] J N d k6 P Q R t u , , M 6 x 15 22,5 6 0, , , ,5 50 M 10 x , , , , M 10 x , , , , , M 12 x , , , , , M 12 x , , ,5 50 M 10 x , , M 10 x , , M 12 x , , , M 12 x , , ,1 80 1, M 12 x ,
60 Option Frame size Power Reduction ratio Output shaft Solid shaft flange mount [kw] a2 b2 c2 d2 e2 f2 s2 J N d k6 P Q R t u , , , M 6 x 15 22,5 6 0, , , , M 10 x , , , , , M 10 x , , , , , , M 12 x , , , , , , M 12 x , , , M 10 x , , , M 10 x , , , M 12 x , , , , M 12 x , , ,1 80 1, , M 12 x ,
61 HYPONIC q OPTION dimension sheet IEC flange Type Please refer to page for selection table and other dimensions Option Solid shaft flange mount Power 0,12kW 0,18kW 0,25kW 0,37kW 0,55kW 0,75kW 1,1kW 1,5kW 2,2kW Reduction ratio Model Motor Flange a1 b1 H8 q1 e1 s1 c1 Size 5~60 RNYJ ratio 71/A ~240 RNYJ ratio 71/A ~30 RNYJ ratio 71/A ~60 RNYJ ratio 71/A ~240 RNYJ ratio 71/A ~30 RNYJ ratio 71/A ~60 RNYJ ratio 71/A ~120 RNYJ ratio 71/A ~240 RNYJ ratio 71/A ~30 RNYJ ratio 71/A ~60 RNYJ ratio 71/A ~120 RNYJ ratio 71/A ~240 RNYJ ratio 71/A ~30 RNYJ ratio 80/A ,5 40~60 RNYJ ratio 80/A ,5 80~120 RNYJ ratio 80/A ,5 150~240 RNYJ ratio 80/A ,5 5~30 RNYJ ratio 80/A ,5 40~60 RNYJ ratio 80/A ,5 80~120 RNYJ ratio 80/A ,5 150~240 RNYJ ratio 80/A ,5 5~30 RNYJ ratio 90/A ,5 40~60 RNYJ ratio 80/A RNYJ ratio 90/A ~30 RNYJ ratio 90/A ,5 40~60 RNYJ ratio 80/A RNYJ ratio 90/A ~30 RNYJ ratio 100/A ~60 RNYJ ratio 100/A
62 Option Solid shaft flange mount
63 Option Solid shaft flange mount Frame size Reduction ratio Power A B C D E F G H I J K M N O V W [kw] , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , ,
64 Option Solid shaft Output shaft With brake Without brake flange mount d k6 P Q R S T L DM WT(kg) L DM WT(kg) M 6 x 15 22, , , , , , , M 10 x , , M 10 x M 12 x M 12 x M 10 x , , M 10 x M 12 x M 12 x M 12 x
65 64 ME MO
66
67 l.. Selection procedure l. Output speed n2 r/min 50Hz 60Hz l l 30) AR 30)
68 Radial load location factor Lf Frame size *l [mm] , 07 1,0 1,0 1,2 1,3 1,4 1,5 1,6 1,7 1,8 17 1,0 1,0 1,2 1,3 1,4 1,5 1,6 1,7 1, ,0 1,0 1,2 1,3 1,4 1,5 1,6 1,8 1,9 1220, 1230, ,0 1,2 1,3 1,4 1,5 1,6 1,7 1,8 1,8 1320, 1330, ,0 1,0 1,1 1,2 1,3 1,4 1,5 1,6 1,7 1420, 1430, ,0 1,0 1,1 1,2 1,3 1,4 1,4 1,5 1,6 1520, 1521, 1522, 1530, 1531, ,0 1,0 1,1 1,2 1,3 1,3 1,4 1,5 1,5 1630, 1631, 1632, 1633, ,0 1,0 1,1 1,2 1,2 1,3 1,3 1,4 1,4 Selection procedure L Pr L AR
69 l Selection procedure l Output speed n2 r/min 50Hz 60Hz l l
70 L Pr Selection procedure
71 Selection procedure L Pr L L Pr Pr
72 Operation time Load conditions 10 hrs/ day max hrs/ day max. Applications Uniform 1 1,25 Moderate shock 1,25 1,25 Conveyors (uniform load), Pumps (centrifugal, Food processing machine (rice polishers, canning machines), Elevators (uniform load), Plastic extruders, Agitators (pure liquid), Bar screens Conveyors (variable speed and heavy duty), Food processing machine (peat slicer, dough mixer, meat grinder), Elevator (heavy duty), Agitators (liquid and solid, variable-density liquid), Feeders (belts, aprons, screws), Tickeners, Fllocculators, machine tools Selection procedure load factor Heavy shock 1,75 2,0 Punching presses, Taping machine, Crushers (crusher mills), Hoists (heavy duty), Drum barkers, Log hauls. Cutters, Platers Number of starts-stops ~10 hours/day ~24 hours/day (times/hour) I II III I II III ~10 1,00 1,15 1,50 1,20 1,30 1,65 ~200 1,10 1,35 1,65 1,30 1,50 1,85 ~500 1,15 1,50 1,80 1,40 1,65 2,00
73 Output Motor Alowable CxZ Alowable CxZ Alowable CxZ Alowable CxZ Motor moment of inertia kgf*m² Motor GD² kgf*m² kw (35%ED) (35%ED~50ED%) (50%ED~80ED%) (80%ED~100ED%) Standard With brake Standard With brake 0, , , ,0013 0,0014 0, , , ,002 0,0022 0, , , ,002 0,0022 0, , , ,0026 0,0027 0, , , , , , , , ,0048 0,0052 1, , , ,0074 0,0083 1, , ,0085 0,0094 2, , , ,0133 0,0149 3, , , ,0281 0,0325 3, , , ,0339 0,0383 5, , , ,0457 0,0501 Selection procedure
74 D [m] M [kg] D dmf R dmf M dkgf D [m] d [m] M [kg] a dmf bdmf R dmf M dkgf a [m] b [m] M [kg] c dmf L dmf M dkgf Selection procedure Moment of inertia V [m/min] D [m] π Ns [r/min] M1 [kgf] D [m] M3 [kg] M4 [kgf] V [m/min] D [m] M2 [kg] Ns [r/min] M [kg] V [m/min] Ns [r/min] Lead wire : P [m/rev] π π D [m] M1 [kgf Ns [r/min] M2 [kg] V [m/min] l l =
75 D [m] W [kgf] D [m] R [m] W [kgf] D [m] d [m] W [kgf] a [m] b [m] R [m] W [kgf] Selection procedure GD² a [m] b [m] W [kgf] c [m] L [m] W [kgf] V [m/min] D [m] π Ns [r/min] W1 [kgf] D [m] W3 [kgf] W4 [kgf] V [m/min] D [m] W2 [kgf] N [rpm] W [kgf] V [m/min] N [rpm] π π Lead wire : P [m/rev] D [m] M1 [kgf Ns [r/min] M2 [kg] V [m/min] l l ² =
76 Selection procedure Moment of inertia
77 CCW CCW CW CCW Selection procedure Rotating direction RNYM Series Frame Size Reduction Ratio Frame Size Reduction Ratio , , RNFM Series Frame Size Reduction Ratio Frame Size Reduction Ratio , ALL Series Frame Size Reduction Ratio Frame Size Reduction Ratio CCW CCW CW CCW ALL Series Frame Size Reduction Ratio Frame Size Reduction Ratio
78 Frame size Reduction ratio , 03, 05, 07 5,01 7,50 10,00 12,27 15,00 20,00 24,55 30,00 40,00 50,00 60,91 80,00 100,00 121,82 160,00 200,00 243,64 15, 17 5,00 7,50 10,18 12,00 15,00 20,36 25,42 30,48 40,00 50,71 60,83 80,00 103,16 120,00 152,14 195,61 243, ,00 7,00 10, ,00 7,00 10, ,00 7,00 10, ,00 7,00 10, ,00 7,00 10, ,00 7,00 10, ,00 7,03 9,81 11,74 15,26 20,67 24,62 30,00 41,33 49,23 60, ,00 7,03 9,81 11,74 15,26 20,67 24,62 30,00 41,33 49,23 60, ,00 7,03 9,81 11,74 15,26 20,67 24,62 30,00 41,33 49,23 60, ,00 6,97 10,00 11,96 14,75 19,69 25,00 30,45 39,38 50,00 60, ,00 7,03 9,81 11,74 15,26 20,67 24,62 30,00 41,33 49,23 60, ,00 7,03 9,81 11,74 15,26 20,67 24, ,06 7,00 10,00 12,21 15, ,45 101,01 120,15 151,51 200,39 231, ,94 102,27 122,54 153,40 199,13 232, ,37 102,35 122,64 153,52 199,29 240, ,63 101,32 119,17 151,99 191,52 232, ,20 49,88 57,60 77, ,50 102,94 119, ,41 195,42 244, ,24 41,16 49,00 56,35 83, ,88 24,33 29,40 40,25 51,47 59,50 Selection procedure Frame size Reduction ratio ,57 346,15 485,71 626,32 728,57 923, , , ,72 360,10 479,79 595,00 707,78 892, , , ,12 360,81 498,18 621,72 744,97 932, , , ,59 373,36 502,52 602,13 753,78 903, , , ,68 350,10 475,66 605,28 711,87 907, , ,15
79 Selection procedure Axial load Output Shaft
80
81 Technical data
82 < C L (Recommended length of driven shaft) L (Recommended length of driven shaft) D E F H A Technical data Hollow shaft bore size G J B A B Bore diameter A A-A Frame size Bore A B C D E F G H J L Effective length of driven shaft ,6 R1,0 5 17, ,6 R1,0 5 17, ,6 R1,0 5 17, ,15 20,6 R1,0 6 22, ) ,15 20,6 R1,5 6 22, ,2 22 1,35 25,6 R1,5 8 28, ,15 20,6 R1,5 6 22, ,2 22 1,35 25,6 R1,5 8 28, ,15 20,6 R1,5 6 22, ,2 22 1,35 25,6 R1,5 8 28, ,4 22 1,35 30,6 R1,5 8 33, ,2 22 1,35 25,6 R1,5 8 28, ,4 22 1,35 30,6 R1,5 8 33, ,75 35,6 R1, , ,2 22 1,35 25,6 R1,5 8 28, ,4 22 1,35 30,6 R1,5 8 33, ,75 35,6 R1, , ,75 38,6 R1, , ,4 22 1,35 30,6 R1,5 8 33, ,75 35,6 R1, , ,75 38,6 R1, , ,5 30 1,95 40,6 R1, , ,5 30 1,95 45,6 R1, , ,5 30 1,95 40,6 R1, , ,5 30 1,95 45,6 R1, , ,2 50,6 R1, , ,2 55,6 R2, , ) Ø38 mm not available for frame size 1440
83 t A v v2 u2 ØD s21 h m2 d2 L2 Technical data Dimensions solid shaft Detail dimensions of output shaft Frame size Dimensions A Tolerance L 2 s 21 Tolerance b Tolerance Tolerance d 2 m 2 t h6 0 +0, , ,01 0-0,030-0, h6 0 +0, ,01 0-0,030-0, h6 15 h6 15 h6 18 h6 18 h6 0 +0, , ,01 0-0,030-0, , ,01 0-0,030-0, , ,01 0-0,030-0, , , ,01 0-0,030-0, , M6 12 3, ,01 0-0,030-0, E k6 22 h6 +0,015 +0, M6 15 3, ,030-0, , M6 3, ,01 0-0,030-0, E +0,015 +0, k6 50 M E ,036-0,090 3, h6 0 +0, M ,01 0-0,036-0, E +0,015 +0, k6 60 M E ,036-0,090 3, h6 0 +0, M ,02 0-0,036-0, E +0,018 +0, k6 70 M E +0, ,036-0, , h6 82 M ,02 0-0,043-0, E +0,018 +0, k6 80 M E +0, ,043-0, , h6 82 M , ,02 0-0,043-0, Note: 1. These are standard dimensions for SHI and SCA. 2. Keyway dimensions in accordance with JIS B parallel keyway (Normal Grade) * Reference dimension to SHI standard solid shaft: C1, P1 corresponding C, P for RNHM type with bolt on foot P2 corresponding P for RNFM type (mm) h v v 2 D C1* P1* P2* ,5 77, R MODEL RATIO kw P TYPE VOLTS Hz M.AMP r/min B.AMP SERIAL NO. FRAME M/B I NS. CLASS TIME RATING JISC4004 JP B.TORQUE J A P A N N m AM446516
84 n 1 = 1450 min -1 n 1 = input speed [min -1 ] n 2 = output speed [min -1 ] P 1 = input power [kw] T out = output torque [Nm] P r0 = appliable radial load [N] Size n 2 [min -1 ] ,7 72,5 58,0 48,3 36,3 29,0 24,2 18,1 14,5 12,1 9,67 7,25 6,04 Ratio P 1 [kw] 0,200 0,200 0,200 0,200 0,200 0,200 0,200 0,200 0,100 0,100 0,100 T out [Nm] 5,61 7,85 11,2 13,5 16,8 22,4 28,0 33,6 22,4 28,0 33,6 P r0 [N] P 1 [kw] 0,100 0,100 0,100 0,100 0,063 0,053 T out [Nm] 44,8 56,1 67,3 84,1 98,1 98,1 P r0 [N] P 1 [kw] 0,400 0,400 0,400 0,400 0,400 0,400 0,400 0,400 0,200 0,200 0,200 T out [Nm] 11,2 15,7 22,4 26,9 33,6 44,8 56,1 67,3 44,8 56,1 67,3 P r0 [N] P 1 [kw] 0,200 0,200 0,200 0,200 0,126 0,105 T out [Nm] 89, P r0 [N] P 1 [kw] 0,800 0,800 0,800 0,800 0,800 0,800 0,800 0,800 0,400 0,400 0,400 T out [Nm] 22,4 31,4 44,8 53,8 67,3 89, , P r0 [N] P 1 [kw] 0,400 0,400 0,400 0,400 0,252 0,210 T out [Nm] P r0 [N] P 1 [kw] 1,54 1,54 1,54 1,54 1,54 1,54 1,54 1,54 0,800 0,800 0,800 T out [Nm] 43,2 60,4 86, P r0 [N] P 1 [kw] 0,800 0,800 0,800 0,800 0,472 0,393 T out [Nm] P r0 [N] P 1 [kw] 2,20 2,20 2,20 2,20 2,20 2,20 2,20 2,20 1,54 1,54 1,54 T out [Nm] 61,7 86, P r0 [N] P 1 [kw] 2,20 2,20 2,20 1,54 T out [Nm] P r0 [N] Technical data
85 n 1 = 980 min -1 n 1 = input speed [min -1 ] n 2 = output speed [min -1 ] P 1 = input power [kw] T out = output torque [Nm] P r0 = appliable radial load [N] Technical data Reducer rating Hollow shaft Size n 2 [min -1 ] ,3 49,0 39,2 32,7 24,5 19,6 16,3 12,3 9,8 8,2 6,53 4,90 4,08 Ratio P 1 [kw] 0,098 0,098 0,098 0,098 0,098 0,098 0,098 0,098 0,049 0,049 0,049 T out [Nm] 5,61 7,85 11,2 13,5 16,8 22,4 28,0 33,6 22,4 28,0 33,6 P r0 [N] P 1 [kw] 0,049 0,049 0,049 0,049 0,043 0,036 T out [Nm] 44,8 56,1 67,3 84,1 98,1 98,1 P r0 [N] P 1 [kw] 0,195 0,195 0,195 0,195 0,195 0,195 0,195 0,195 0,098 0,098 0,098 T out [Nm] 11,2 15,7 22,4 26,9 33,6 44,8 56,1 67,3 44,8 56,1 67,3 P r0 [N] P 1 [kw] 0,098 0,098 0,098 0,098 0,085 0,071 T out [Nm] 89, P r0 [N] P 1 [kw] 0,391 0,391 0,391 0,391 0,391 0,391 0,391 0,391 0,195 0,195 0,195 T out [Nm] 22,4 31,4 44,8 53,8 67,3 89, , P r0 [N] P 1 [kw] 0,195 0,195 0,195 0,195 0,170 0,142 T out [Nm] P r0 [N] P 1 [kw] 0,752 0,752 0,752 0,752 0,752 0,752 0,752 0,752 0,391 0,391 0,391 T out [Nm] 43,2 60,4 86, P r0 [N] P 1 [kw] 0,391 0,391 0,391 0,391 0,319 0,266 T out [Nm] P r0 [N] P 1 [kw] 1,074 1,074 1,074 1,074 1,074 1,074 1,074 1,074 0,752 0,752 0,752 T out [Nm] 61,7 86, P r0 [N] P 1 [kw] 1,074 1,074 1,074 0,752 T out [Nm] P r0 [N]
86 n 1 = 720 min -1 n 1 = input speed [min -1 ] n 2 = output speed [min -1 ] P 1 = input power [kw] T out = output torque [Nm] P r0 = appliable radial load [N] Size n 2 [min -1 ] ,0 36,0 28,8 24,0 18,0 14,4 12,0 9,0 7,2 6,0 4,80 3,60 3,00 Ratio P 1 [kw] 0,072 0,072 0,072 0,072 0,072 0,072 0,072 0,072 0,036 0,036 0,036 T out [Nm] 5,61 7,85 11,2 13,5 16,8 22,4 28,0 33,6 22,4 28,0 33,6 P r0 [N] P 1 [kw] 0,036 0,036 0,036 0,036 0,031 0,026 T out [Nm] 44,8 56,1 67,3 84,1 98,1 98,1 P r0 [N] P 1 [kw] 0,144 0,144 0,144 0,144 0,144 0,144 0,144 0,144 0,072 0,072 0,072 T out [Nm] 11,2 15,7 22,4 26,9 33,6 44,8 56,1 67,3 44,8 56,1 67,3 P r0 [N] P 1 [kw] 0,072 0,072 0,072 0,072 0,062 0,052 T out [Nm] 89, P r0 [N] P 1 [kw] 0,287 0,287 0,287 0,287 0,287 0,287 0,287 0,287 0,144 0,144 0,144 T out [Nm] 22,4 31,4 44,8 53,8 67,3 89, , P r0 [N] P 1 [kw] 0,144 0,144 0,144 0,144 0,125 0,104 T out [Nm] P r0 [N] P 1 [kw] 0,552 0,552 0,552 0,552 0,552 0,552 0,552 0,552 0,287 0,287 0,287 T out [Nm] 43,2 60,4 86, P r0 [N] P 1 [kw] 0,287 0,287 0,287 0,287 0,234 0,195 T out [Nm] P r0 [N] P 1 [kw] 0,789 0,789 0,789 0,789 0,789 0,789 0,789 0,789 0,552 0,552 0,552 T out [Nm] 61,7 86, P r0 [N] P 1 [kw] 0,789 0,789 0,789 0,552 T out [Nm] P r0 [N] Technical data Reducer rating Hollow shaft
87 n 1 = 580 min -1 n 1 = input speed [min -1 ] n 2 = output speed [min -1 ] P 1 = input power [kw] T out = output torque [Nm] P r0 = appliable radial load [N] Technical data Reducer rating Hollow shaft Size n 2 [min -1 ] ,7 29,0 23,2 19,3 14,5 11,6 9,7 7,3 5,8 4,8 3,87 2,90 2,42 Ratio P 1 [kw] 0,058 0,058 0,058 0,058 0,058 0,058 0,058 0,058 0,029 0,029 0,029 T out [Nm] 5,61 7,85 11,2 13,5 16,8 22,4 28,0 33,6 22,4 28,0 33,6 P r0 [N] P 1 [kw] 0,029 0,029 0,029 0,029 0,025 0,021 T out [Nm] 44,8 56,1 67,3 84,1 98,1 98,1 P r0 [N] P 1 [kw] 0,116 0,116 0,116 0,116 0,116 0,116 0,116 0,116 0,058 0,058 0,058 T out [Nm] 11,2 15,7 22,4 26,9 33,6 44,8 56,1 67,3 44,8 56,1 67,3 P r0 [N] P 1 [kw] 0,058 0,058 0,058 0,058 0,050 0,042 T out [Nm] 89, P r0 [N] P 1 [kw] 0,231 0,231 0,231 0,231 0,231 0,231 0,231 0,231 0,116 0,116 0,116 T out [Nm] 22,4 31,4 44,8 53,8 67,3 89, , P r0 [N] P 1 [kw] 0,116 0,116 0,116 0,116 0,101 0,084 T out [Nm] P r0 [N] P 1 [kw] 0,445 0,445 0,445 0,445 0,445 0,445 0,445 0,445 0,231 0,231 0,231 T out [Nm] 43,2 60,4 86, P r0 [N] P 1 [kw] 0,231 0,231 0,231 0,231 0,189 0,157 T out [Nm] P r0 [N] P 1 [kw] 0,636 0,636 0,636 0,636 0,636 0,636 0,636 0,636 0,445 0,445 0,445 T out [Nm] 61,7 86, P r0 [N] P 1 [kw] 0,636 0,636 0,636 0,445 T out [Nm] P r0 [N]
88 n 1 = 50 min -1 n 1 = input speed [min -1 ] n 2 = output speed [min -1 ] P 1 = input power [kw] T out = output torque [Nm] P r0 = appliable radial load [N] Size n 2 [min -1 ] ,3 2,5 2,0 1,7 1,3 1,0 0,8 0,6 0,5 0,4 0,33 0,25 0,21 Ratio P 1 [kw] T out [Nm] 5,61 7,85 11,2 13,5 16,8 22,4 28,0 33,6 22,4 28,0 33,6 P r0 [N] P 1 [kw] T out [Nm] 44,8 56,1 67,3 84,1 98,1 98,1 P r0 [N] P 1 [kw] T out [Nm] 11,2 15,7 22,4 26,9 33,6 44,8 56,1 67,3 44,8 56,1 67,3 P r0 [N] P 1 [kw] T out [Nm] 89, P r0 [N] P 1 [kw] T out [Nm] 22,4 31,4 44,8 53,8 67,3 89, , P r0 [N] P 1 [kw] T out [Nm] P r0 [N] P 1 [kw] T out [Nm] 43,2 60,4 86, P r0 [N] P 1 [kw] T out [Nm] P r0 [N] P 1 [kw] T out [Nm] 61,7 86, P r0 [N] P 1 [kw] T out [Nm] P r0 [N] Technical data Reducer rating Hollow shaft
89 88 ME MO
90
91 a b c e d Handling precautions Hollow shaft Bearing unit Spacer Set screw Stopper ring Machine side Machine side Machine side
92 Stopper ring Snap ring Spacer End plate Set screw Machine side Machine side Machine side Handling procedure Torque arm Spacer Keep some allowance Plain washer Special bolt (or pin) Rubber bush No allowance between the torque arm and the machine A Machine side
93 i g h A f A~ Handling precautions Hollow shaft Good Bad Bad Bearing unit Bearing unit Bearing unit Hollow shaft type Hyponic Drive Hollow shaft type Hyponic Drive Hollow shaft type Hyponic Drive (Poor concentricity of the driven shaft and mounting foucet) (Poor perpendicularity of the driven shaft center and mounting flange surface) (Excessive force on Hyponic and the bearing unit may cause damage on inner parts.)
94 Y Brg1 Driven shaft Brg2 G m YR Torque arm Sec. B Frame size AG [mm] , , , , , ,3 AG rotation AR rotation G R R l Handling procedure l Frame size A R D Thickness , , , , ,4 15
95 D H A R a a c b d H d D a a c b A R D H d a a c b A R c b d a a A R H D Handling precautions torque arm D AR H a b a b d a b b d a H AR D Frame size A R H D a b c d Thickness , , , , , , , , , ,
96
97 Motor General Information
98 Motor Standards
99 ϕ η Standard 3ph Motors Motor Standard 3-phase PM motor nm Mn In 230 V In 400V cos EFF2 Efficiency MA/MN MK/MN IA / IN JM [kwxp] size 1/min Nm A A 100 % 75 % % % % 10-4 kg m2 0,015 F-50S ,11 0,11 0,58 59,6 55, ,500 0,025 F-50M ,18 0,17 0,60 61,4 59, ,575 0,040 F-50L ,30 0,23 0,68 63,0 63, ,700 0,040 F-56S ,27 0,27 0,15* 0,64 58,8 54, ,080 0,060 F-50L ,47 0,35 0,76 57,9 62, ,700 0,060 F-56M ,41 0,38 0,22* 0,65 59,9 57, ,23 0,090 F-56L ,62 0,56 0,33* 0,63 61,9 59, ,45 0,090 F-63S ,60 0,59 0,35 0,62 61,9 57, ,25 0,12 V 63S ,8 0,67 0,39 0,71 64,3 61, ,25 0,18 V 63M ,2 1,02 0,59 0,66 66,7 64, ,00 0,25 V 63M ,7 1,22 0,7 0,74 69,9 69, ,00 0,25 V 71M ,7 1,8 1,0 0,53 65,0 61, ,50 0,37 V 71M ,5 2,05 1,18 0,66 68,8 66, ,50 0,55 V 80S ,7 2,45 1,41 0,77 73,8 74, ,1 0,75 V 80M ,0 3,38 1,94 0,76 73,7 73, ,0 1,1 V 90S ,4 4,6 2,67 0,77 EFF2 77,6 77, ,5 1,5 V90L ,0 3,5 0,79 EFF2 78,5 78, ,3 2,2 V 100L ,44 4,87 0,79 EFF2 82,3 83, ,3 3,0 V 112S ,2 6,45 0,82 EFF2 82,6 82, ,0 4,0 V 112M ,2 8,19 0,84 EFF2 84,2 85, ,8 5,5 V 132S ,2 0,84 EFF2 85,7 86, ,0 * motors can be ordered for either 230V or 400V. Only three leads. 230/400V is not possible. Δ Δ Δ rated point 1,10 1,05 V/Vr 0,95 0,98 1,02 0,95 0,90 B A 1,03 F/fr
100 Motor technical data
101 U1 U2 V W2 V1 W TERMINAL BLOCK M25xP1.5 1-M16xP M255P1.5 Motor terminal box Left (N33) Up Standard (N36) (N35) Right (N34) Up Standard (N33) Down (N36) (N35) Right (N34) L type (N35) (N35) (N35) Up Up Up (N34) Standard Right Left Standard Standard (N33) (N33) (N34) (N33) Down Down Down (N36) (N36) L type R type T type Left (N33) Up Down R type (N36) (N36) Right (N34) (N35) Standard (N34)
102 Motor technical data
103 V V Current Current W U 2 Remaining current N (3) M 1 4 Fig. 1 standard circuit W 2 (3) N U 4 1 M Fig. 2 quick braking circuit S VR (Varistor) OFF tb Holding current Time Fig. 3 current curve of standard braking circuit OFF 1 Time Fig. 4 current curve or quick braking circuit 2 (3) 4 Motor brake motor
104 Standard Brake Connection Standard Brake Connection Motor technical data
105 Motor wiring diagram
106 Motor technical data
107 Motor wiring diagram
108 Motor range of application winding voltage for 50Hz voltage at 60 Hz factor power n60hz/n50hz factor power n60hz/n50hz factor rated torque MN60Hz/MN50Hz factor break down/ starting torque MK60Hz/MK50HZ MA60Hz/MA50Hz Volt Volt K1 K2 K3 K ,2 0,9 0,75 0, ,2 1,0 0,83 0, ,2 0,9 0,75 0, ,2 1,0 0,83 0, ,2 1,1 0,92 0, ,2 1,2 1,0 0, ,2 1,2 1,0 0,83
109 Motor technical data
110 Motor technical data 1, Index Protection against Human/ 2, Index Protection against water Tool Contact 0 No special protection 0 No special protection 1 Large foreign bodies, diam, >50mm 1 Water dripping/falling vertically 2 Medium-sized foreign bodies, diam, >12 2 Water sprayed at an angle (up to 15º degrees from the vertical) 3 Small foreign bodies, diam, >2,5mm 3 Spray water (any direction up to 60º degrees from the vertical) 4 Granular foreign bodies, diam, >1mm 4 Spray water from all directions, (limited ingress permitted) 5 Dust protected; dust deposits are permitted, but their volume must not affect the function of 5 Low pressure water jets from all directions, (limited ingress permitted) the unit, 6 Dust-proof 6 High pressure jets from all directions, (limited ingress permitted) 7 Temporary immersion, 15 cm to 1m 8 Permanent Immersion, under pressure.
111 G x G x x Motor technical data
112 FB-01A, FB-02A, FB-05A FB-1D, FB-2D, FB-3D FB-5B, FB-8B, Part no. Description FB-01A, 02A, 05A Part no. Description FB-5B, 8B 1 Stationary Core 2 Spacer 3 Brake lining 4 Bolt 5 Bushing 6 Retaining Ring 7 Brake Cover 8 Fan 9 Leaf Spring 10 Plate 11 Armature Plate 12 Pressure Spring 13 Solenoid Coil 14 Bearing 15 Motor Shaft 1 Stationary Core 2 Stud Bolt 3 Spacer 4 Spring Washer 5 Gap Adjusting Nut 6 Brake lining 7 Bushing 8 Retaining Ring 9 Brake Cover 10 Spring Pin 11 Fan 12 Leaf Spring 13 Plate 14 Armature Plate 15 Pressure Spring 16 Solenoid Coil 17 Bearing 18 Motor Shaft Motor standard brake motor
113 112 ME MO
114
115 Model Treatment Kind of painting Classification Paint of finish coat Additional lead time (days) Type Painting specifications Layers (μm) Quality Applied paint Brand Weather resistance Submersible Oil-proof Acid resistance Alkali resistance Heat resistance ( C ) Application 15W~90W 90W (1240) - 5,5 kw Cast iron: Near White blast cleaning Steel plate: Power tool cleaning Standard Standard Acryl resin Acryl resin Under coating Finish coating Under coating Finish coating 1 (5~10) 1 (15~25) 1 (20~40) 1 (15~30) Etching Primer Acrylic resin baking top coat Modified alkyd resin Acrylic modified phtalic Shinto wash #20 Saglan 33 UNIGROUND PTC PRIMER SUPIKA X X 100 Standard under coat Standard finish coat Standard under coat Standard finish coat X Appropriate Caution in selection Inappropriate Painting Standard
116 Treatment Cast iron: Near white blast cleaning Steel plate: power tool cleaning Classification Standard export painting Extra rustpreventive painting (sand blast undercoating) Kind of painting Special painting inculding rustproof and heat resistant painting) one layer of unigrond PTC Primer as the first primer Exra rust-proof painting Paint of finish coat Additional lead time (days) Under 1 Modified Acrylic UNIGROUND PTC PRIMER coating (30~60) alkyd resin modified 2 Finish 1 Acrylic modified phtalic SUPIKA '3000 coating (15~30) alkyd resin 100 Under 1 Vinyl modified NEO-GOSE #500 Modified coating (20~40) epoxy paint Red lead primer epoxy Finish 1 Acrylic modified Acron #300 coating (30~60) alkyd resin Under 2 Lead rust SD MARINE Long oil phtalic coating (40~70) preventive paint PRIMER (rust) (synthetic resin 7 Finish 2 Synthetics type) PENFORTE #600 coating (30~60) resin paint 100 Under coating 2 (40~70) Lead rust preventive paint SD MARINE PRIMER (rust) Chloride Second 1 10 rubber coating (20~40) Phenol M.I.O. paint SHINTOH M10 80 Finish 2 Chloride coating (40~70) rubber paint RUBBER #100 Under 2 Lead rust SD MARINE coating (40~70) preventive paint PRIMER (rust) Phenol Finish 2 Phenol resin NEW AKNON coating (30~60) enamel Under 1 Lead rust SD MARINE Heat-proof coating (20~40) preventive paint PRIMER (rust) 7 Finish 1 SILVER TOP 120 silver Aluminium paint coating (15~30) (heat resistant) Special permeability epoxy CARBOMASTIC #15 Under 1 coating (50~60) Epoxy 10 * aluminium paint 150 Finish 3 coating (30~90) Polyamide epoxy NEO-GOSE #200 Special permeability epoxy CARBOMASTIC #15 Under 1 coating (50~60) * Epoxy 10 aluminium paint 150 Finish 3 coating (30~90) Polyamide epoxy NEO-GOSE #2300CW Polyurethane 10 Special permeability epoxy CARBOMASTIC #15 Under 1 coating (50~60) aluminium paint Polyisocianate Finish 3 NY POLIN K finish urethane resin coating (45~90) coat paint 150 Thick film epoxy 12 Type Painting specifications Layers (μm) 5 (250350) Quality Thick film type modified epoxy resin paint Applied paint Brand Weather resistance Submersible Oil-proof Acid resistance Alkali resistance Heat resistance ( C ) NEO-GOSE #2300 NTHB 100 Application Export Moderate corrosive atmosphere, sea side, outdoor humid atmosphere, chemical plant area, Ocean-going vessel & boat, bridge, sea side, outdoor humit atmosphere, etc. Ocean-going vessel & boat, bridge, sea side, outdoor humit atmosphere, etc. Indoor/outdoor acid treating plant chemical plant, etc. Heating furnace (120 C), etc. Chemical contact area, chemical plant, anticorrosion plant, etc Nuclear power plant, etc. Nuclear power plant, etc. Submersible equipment, marine structure, etc. Painting specifications Note: 1. Additional lead time for coating refers to the number of days required for special coating Appropriate compared to standard painting. Caution in selection 2. Coating may be substituted. Inappropriate 3. The coatings marked with * may fade when exposed to sun light 4. Consult us when ambient temperature is above the heat resistance temperature. (The above heat resistance temperature is only for the painting and not for the gearmotor 5. Consult us when ambient temperature varies widely in a short period.
117 Surface Painting conditionig
118 EC machinery directive 2006/42/EG Reducers Reducers are considered as machinery components and are not subject of the EC machinery directive 2006/42/EG. The start of operation within the ambit of the EC machinery directive is forbidden, as long as it is not confirmed, that the machine, where the reducer is built in, complies with this directive. From 2010 no manufacturers declaration, EC conformity declaration and declaration of incorporation will be issued. Gearmotors For gearmotors a conformity declaration according low voltage directive will be issued. reducer gearmotor inverter machine directive 2006/42/EG low voltage directive 73/23/EG EMV 89/336/EG 25 ATEX 94/9/EG CE mark no no no yes declaration of conformity no no no yes declaration of incorporation no no no yes CE mark no yes (motor) no yes (reducer) declaration of conformity no yes (motor) no yes (reducer) declaration of incorporation no no no no CE mark no yes (inverter) yes no declaration of conformity no yes (inverter) yes no declaration of incorporation no no no no
119
120 Worldwide locations World Headquarters JAPAN Sumitomo Heavy Industries Ltd. PTC Group Think Park Tower, 1-1, Osaki 2-chome, Shinagawa-ku, Tokyo Headquarters & Manufacturing EUROPE Germany Sumitomo (SHI) Cyclo Drive Germany GmbH European Headquarters Cyclostraße Markt Indersdorf Germany Tel. +49 (0) Fax +49 (0) Headquarters & Manufacturing USA Sumitomo Drive Technologies Sumitomo Machinery Corp. of America 4200 Holland Boulevard Chesapeake, VA Tel. +1 (757) Fax +1 (757) Europe Austria Gruentalerstraße 30 A 4020 Linz Austria Tel. +43 (0) Fax +43 (0) Benelux Heikneuterlaan Kessel-Lo/ Leuven Belgium Tel. +32 (0) Fax +32 (0) France SM-Cyclo France S.A.S. 8 Avenue Christian Doppler Arlington Techniparc Serris France Tél. +33 (1) Fax +33 (1) Italy SM-Cyclo Italy S.R.L Via dell Artigianato Cornaredo (MI) Italy Tel. +39 (0) Fax +39 (0) Spain SM-Cyclo Iberia C/Landabarri no. 4 Escalera Izqda Leioa, Vizcaya Spain Tel. +34 (0) Fax +34 (0) Sweden SM-Cyclo Scandinavia AB Ridbanegatan Malmö Sweden Tel. +46 (0) Fax +46 (0) United Kingdom SM-Cyclo UK, Ltd. Unit 29, Bergen Way, Sutton Fields Industrial Estate Kingston upon Hull HU7 0YQ, East Yorkshire United Kingdom Tel. +44 (0) Fax +44 (0) Sumitomo (SHI) Cyclo Drive Germany GmbH
ECOL Motors In Aluminum Housing
ECOL Motors In Aluminum Housing FEATURES APPLICATIONS E TBS C TBW B L K AC TBH A AA KK H AD N T E TBS R TBW L AC M 56-160 IM B3 56-160 IM B5 56-160 IM B14 TBH 4-S KK P HD N TBS T E R TBW L AC P M TBH 4-S
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