R-067 Helical gear units can output up to 600 Nm (depends on ratio) Calculate your machine and find the required gearbox output torque using this tool Engineering Calculator Horizontal TabsOverview Performance data: Transmission ratios: 4.29:1 to 199.81:1 Efficiency Up to 97% Input motor flanges: For IEC motors and servomotors Output shaft: Solid Smooth Output Shaft with Key Versions: Flange mounted Foot mounted Typical Applications: Cement and Mining Chemical and Paper Industry Conveyors Cranes and Construction Machinery Food and Beverages Metalworking machines Pumps and Compressors Water Treatment Woodworking Machines R Helical gear units have the following advantages: Carburized, case hardened, and ground gears, offering greater reliability and longer service life. Compact design Excellent reliability Intermittent and continuous operation ATEX standard requirements Optional NSF H1 certified food grade lubrication For any mounting position Specifications Ratio n1N n1Max T2N1 T2Max2 T2E3 F2RMax J C Δφ η M (rpm) (rpm) (N·m) (N·m) (N·m) (N) (Kg·cm2) (Nm/arcmin) (arcmin) % (Kg) 4.29 1400 3700 270 405 455 5000 5.9 24 10 97 27 - 43.2 4.93 1400 4252 290 435 490 5210 4.6 24 9 97 27 - 43.2 5.70 1400 4500 310 465 525 5450 3.6 24 9 97 27 - 43.2 6.27 1400 4500 330 485 560 5590 3.0 24 9 97 27 - 43.2 7.36 1400 4500 370 485 625 5790 2.4 24 8 97 27 - 43.2 7.79 1400 4500 380 485 645 5830 2.1 24 8 97 27 - 43.2 8.70 1400 4500 440 660 745 5960 4.0 32 7 97 27 - 43.2 10.00 1400 4500 470 665 795 6220 3.2 32 7 97 27 - 43.2 11.54 1400 4500 500 665 850 6500 2.5 32 7 97 27 - 43.2 12.70 1400 4500 520 665 880 6640 2.2 32 6 97 27 - 43.2 14.91 1400 4500 550 665 930 6980 1.7 32 6 97 27 - 43.2 15.79 1400 4500 560 665 950 7130 1.6 32 6 97 27 - 43.2 17.95 1400 4500 590 665 1000 7330 1.2 32 6 97 27 - 43.2 19.89 1400 4500 600 665 1020 7560 1.0 32 6 97 27 - 43.2 23.44 1400 4500 560 665 950 8010 0.80 32 6 97 27 - 43.2 26.72 1400 4500 540 665 910 8210 0.56 32 6 97 27 - 43.2 28.13 1400 4500 540 665 910 8210 0.50 32 6 97 27 - 43.2 28.83 1400 4500 520 595 880 8400 1.5 33 7 95 28 - 44.2 32.27 1400 4500 540 595 910 8210 1.3 33 7 95 28 - 44.2 37.50 1400 4500 570 595 960 7900 1.0 33 7 95 28 - 44.2 39.88 1400 4500 580 595 980 7790 0.93 33 7 95 28 - 44.2 46.29 1400 4500 600 600 1020 7560 0.72 33 7 95 28 - 44.2 51.56 1400 4500 600 600 1020 7560 0.61 33 7 95 28 - 44.2 56.89 1400 4500 600 600 1020 7560 0.50 33 7 95 28 - 44.2 61.26 1400 4500 600 600 1020 7560 0.47 33 7 95 28 - 44.2 69.75 1400 4500 600 660 1020 7560 0.88 33 7 95 28 - 44.2 74.17 1400 4500 600 660 1020 7560 0.81 33 7 95 28 - 44.2 86.11 1400 4500 600 660 1020 7560 0.63 33 6 95 28 - 44.2 95.91 1400 4500 600 660 1020 7560 0.54 33 6 95 28 - 44.2 105.83 1400 4500 600 660 1020 7560 0.45 33 6 95 28 - 44.2 113.94 1400 4500 600 660 1020 7560 0.42 33 6 95 28 - 44.2 128.97 1400 4500 600 660 1020 7560 0.36 33 6 95 28 - 44.2 137.67 1400 4500 600 660 1020 7560 0.32 33 6 94 28 - 44.2 158.14 1400 4500 600 660 1020 7560 0.26 33 6 94 28 - 44.2 184.07 1400 4500 600 660 1020 7560 0.21 33 6 94 28 - 44.2 199.81 1400 4500 600 660 1020 7560 0.19 33 6 93 28 - 44.2 (1) T2N value is calculated at n1n, continuous duty cycle, uniform operation, KA=1 and unlimited theoretical life time as per ISO-6336 (NL>N00 in the Woehler line). The application factor KA according to DIN-3990-1 must be considered for each duty cycle and machine type. (2) T2Max only for very short time intervals(3) Up to 1000 times during the gearbox's lifetime Dimensions