PARAMAX Series Reducer & Drive Units. PARAMAX 9000 Series. Reducer & Drive Units CW21

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1 PARAMAX 0 Series PARAMAX 0 Series Reducer & Drive Units CW2 Reducer & Drive Units No. G2002E7.0 No. G2002E7

2 INDEX A Features Available Combination Drive Units and Reducers Basic Motor Introduction of Application B Drive Unit Standard Specifications B 2 Construction Drawing B 3 Nomenclature B 4 Selection B 6 Service Factor SF B 8 Selection and Right Angle Shaft B Parallel Shaft B 73 C Reducer Standard Specifications C 2 Construction Drawing C 3 Nomenclature C 4 Selection C 6 Service Factor SF C 8 Selection and Right Angle Shaft C Parallel Shaft C0 D Technical Data ubricant and Installation D 2 Painting Specifications and Rust Proof Standard D 3 Moment of Inertia D 4 Supplementary Drawing D 2 Supplementary Matters to ollow Shaft D 7 ollow Shaft Related s D 8 Cooling Fan D 20 Option D 24 Motor Terminal Box D 32 Motor Flange D 34 A

3 Features JUST FIT SIZE 26 sizes variation for most accurate economical selection. Prepared full range 26 sizes variation. Fitness size selection available for every requested torque. Customer's wide design availability with most accurate economical selection. Output Torque Output Torque Output Torque NEW DESIGN CONCEPT Direct motor mount for right angle type also standardized. Direct motor mount design of right angle type is standardized. It has a number of outstanding features.. No input coupling 2. No coupling alignment required 3. Compact drive assembly ARGER TERMA CAPACITY Advanced thermal capacity by new designed fan cooling system. (Option) New designed fan and conducted air cowling gain larger thermal capacity. This system benefits for severe situation like continuous operation, even if compact size. Maximum New design fan and hood (PX9) 87% higher thermal rating comparison with existing design Existing design fan and hood (PX8) No fans Comparison when the thermal rating without fan is assumed to be 00% A 2

4 Features OW NOISE ow noise resulting from optimized gear tooth profile modification and rigid housing design. FEM analysis used to maximize housing strength and rigidity, so maintaining correct gear alignment and bearing loading. FEM Analysis IG TOOT STRENGT 25 deg Pressure angle In comparison with ordinary pressure angle (20 deg), 25 deg pressure angle permits a tooth form with thicker dedendum. This translates into higher tooth strength rating, an essential feature for shock load applications. 25 deg Pressure Angle 20 deg Pressure Angle UNIVERSA OUSING orizontal, vertical or upright mounting All use the same housing. orizontal mounting Vertical mounting Upright mounting A 3

5 AVAIABE COMBINATION Drive Unit: Right Angle O/P speed Motor (kw P) Ratio z z x4 7.5x4 x4 5x4 8.5x4 22x4 30x4 37x4 45x4 55x4 Drive Unit: Parallel O/P speed Motor (kw P) Ratio z z x4 7.5x4 x4 5x4 8.5x4 22x4 30x4 37x4 45x4 55x4 75 x4 90 x4 0 x4 Reducer Ratio A 4

6 AVAIABE COMBINATION Ratio z O/P speed z 5.5x4 7.5x4 x4 5x4 8.5x4 22x4 30x4 37x4 45x4 55x4 Motor (kw P) Ratio Drive Unit: Right Angle Drive Unit: Parallel Reducer: Right Angle Reducer: Parallel Ratio A

7 AVAIABE COMBINATION Basic Motor Table. 3Phase Induction Motors (4 Pole). Capacity kw Indoor Type Outdoor Type Corrosionproof Class 2 Specifications Insulation Class Inverter Motors (Constant Torque) B F Indoor Type Outdoor Type Remarks Continuous Rating, 55kW and under, Applicable Voltage : 200V 50/60z(400V 50/60z,440V 60z,440V 60z) Provided that the base frequency for driving an inverter is 60 z. : Standard Insulation : Manufacutured Models Table 2. 3Phase Induction Motors with Builtin Brakes (4 Pole). Capacity kw Indoor Type Outdoor Type Corrosionproof Class 2 Specifications Insulation Class Inverter Motors (Constant Torque) B F Indoor Type Outdoor Type Remarks : Standard Insulation : Manufacutured Models Continuous Rating, Applicable Voltage : 200V 50/60z, 220V 50/60z (400V 50/60z, 440V 60z) Provided that the base frequency for driving an inverter is 60 z. Brake Insulation : B type Notes:. Motors with output kw specifications other than as listed in 4 are also manufactured. Consult factory. Examples: Special voltage, dustproof, humidityproof, tropical treatment, high temperature, ship use, dual shaft (round & square shaft), CSA standard, NEMA standard, etc. 2. When using an inverter drive, advice us of ambient temperature, input, mounting method, load characteristics and other conditions of use. A 6

8 AVAIABE COMBINATION Table 3. Safety Increased Explosionproof (eg3) 3Phase Induction Motor (4 Pole). Capacity kw Indoor Type Outdoor Type Specifications Corrosionproof Class 2 : Standard Insulation : Manufacutured Models Insulation Class B F Remarks Continuous Rating Applicable Voltage: 200V, 220V, 350V, 380V, 400V, 440V, 50/60z Table 4. Pressuretight Explosionproof (d2g4) 3Phase Motor (4 Pole). Capacity kw Indoor Type Outdoor Type Specifications Corrosionproof Insulation Class Class 2 B Inverter Motors (Constant Torque) Indoor Type Remarks : Standard Insulation : Manufacutured Models Continuous Rating Applicable Voltage : 200V, 220V, 350V, 380V, 400V, 440V 50/60z (Inverter Motors) : 200V 60z, 220V 60z, 400V 60z, 440V 60z Applicable Inverter :Applicable only to Sumitomo Inverters.(Refer to Inverter catalogue.) A 7

9 INTRODUCTION OF APPICATION With Motor Common base Double Stack Drive unit right angle Drive unit parallel Single stage Top mount Reducer Steel housing Right angle Mounting Parallel Special slow speed shaft Upright wall mount Upright mount Drop bearing housing Vertical mount Ceiling mount ollow shaft A 8

10 B <Drive Unit Right Angle Shaft> <Drive Unit Parallel Shaft> Drive Unit Standard Specifications B 2 Construction Drawing B 3 Nomenclature B 4 Selection B 6 Service Factor SF B 8 Right Angle Shaft B Parallel Shaft B 73 Exact Ratio B 0 B

11 Drive Unit Standard Specifications Drive Unit 選 Selection 定 表 寸 法 表 Motor Reducer Ambient Conditions Item Standard Specification Standard Specification with Builtin Brake Capacity Range 5.5kW x 4P ~ 55kW x 4P 5.5kW x 4P ~ 37kW x 4P Enclosure Totally enclosed fan cooled type Totally enclosed fan cooled type Power Source 200V 50/60z, 220V 60z 380~45V 50z, 440~460V 60z For other voltages contact Sumitomo. Insulation Class F Class F Time Rating ead Wiring (ug Type) Standards Item ubrication Method ead wiring 3 6 Continuous rating P 4P 5.5 ~ 7.5kW (Direct starting) ead wiring ~ 55kW ( Δstarting available) 0 Conforms to JIS, CE or U. Consult Sumitomo for delaits. Mounting orizontal Shaft Vertical Shaft Upright Shaft igh Speed Shaft Speed ~ ~ 800 ~ 800 ubricant Refer to the page D2 Gear Type Involute external gear Installation ocation Indoor (Minimal dust and humidity) Ambient Temperature Ambient umidity Elevation Atmosphere Installation Method of Coupling with Driven Machine Standard Specification 0 ~40 A cooling fan may be required depending on the usage (Note) Under 85% 5 8 Continuous rating P 4P 5.5 ~ 7.5kW (Direct starting) kw ( Δstarting available) 5 ~ 37kW ( Δstarting available) Oil bath lubrication In case of high speed shaft speed is less than, electric pump lubrication may be used. Consult Sumitomo for details. Pump lubrication (Two different pump lubrication systems are available; shaft connected pump lubrication and electric pump lubrication. For details, refer to the outline dimension drawing.) Oil bath lubrication Grease lubrication for right angle input shaft. ess than,000 meters above sea level Well ventilated location, free of corrosive and explosive gases, vapor, and dust. orizontal installation Refer to the page D2 Coupling, gears, chain sprocket or belt. Painting Surface preparation: Shot blast after wash before machining Inside paint: UNI GROUND PTC primer is sprayed once Outside paint: For primer coating, UNI GROUND PTC primer is sprayed once. For final coating, NEORON #2000 is sprayed once. Paint color: Donau Blue (equivalent Munsell color: 6.5PB 3.6/8.2), Refer to page D3. Note : In general, a heating or cooling system is necessary when ambient temperature is lower than 0 or higher than 50. e.g. igh temperature gas or liquid passes through the hollow shaft. Consult us when substances lower than 0 or higher than 50 will be in contact with PARAMAX DRIVES. B

12 Drive Unit Construction Drawing Drive Unit Right Angle Shaft Triple Drive Unit Parallel Shaft Triple Ref.No. Part Name Ref.No. Part Name Ref.No. Part Name Ref.No. Part Name ousing 7 Taper roller bearing 3 Taper roller bearing 9 Taper roller bearing 2 elical gear 8 Bearing housing 4 elical pinion shaft 20 elical gear 3 Slow speed shaft 9 Flange for motor 5 elical pinion shaft 2 elical pinion shaft 4 Taper roller bearing 0 Oil seal 6 elical gear 22 Motor adapter 5 Bevel gear Motor 7 Collar 23 Coupling 6 Taper roller bearing 2 Bevel pinion shaft 8 Oil seal B 3

13 Drive Unit Nomenclature P A 9055 R 3 Series Mounting ousing Torque Shaft Position knm R Number of Gear Stage Drive Unit Selection V orizontal A Monoblock Right Angle Double 3 P Paramax P Vertical Triple W D Split Parallel Upright Quadruple For shaft arrangement, refer to the dimension sheets. 2. Consult us for reduction ratios smaller than 6.3. B 4

14 Drive Unit Nomenclature R M K B 35.5 Mounting for Upright Shaft Arrangement igh Speed Shaft Slow Speed Shaft Option Ratio (Blank) R RB RR R B M Right Angle Shaft Parallel Shaft (Blank) Solid Shaft T (Blank) Without Option Right Angle Shaft W Wall Mount (Upright Mounting) R RR Y Flange for Motor (Right Angle Shaft) J Motor Adapter (Parallel Shaft) ollow Shaft (Shrink Disk Type) K ollow Shaft (Key Type) B With Backstop Parallel Shaft B 5

15 Drive Unit Selection Ambient condition Standard Specifications Page B2 Calculate motor power Drive Unit Selection Determine Nomenclature Determine Drive Unit Check Overhung oad No Select output speed and ratio Determine the service factor Determine shaft and mounting positions Determine drive unit Determine Nomenclature Is overhung load applied to the slow speed shaft? Yes Is overhung load radial load only? Yes Calculate equivalent radial load FrE No SF (Service Factor): Page B8 Nomenclature Page B4 ~ B5 Selection tables Right angle shaft: Page B6 ~ B37 Parallel shaft: Page B78 ~ B97 Page number of relevant Table is indicated in the Selection Table. Select shaft arrangement from "Standard Shaft Arrangement Configuration" in the. Calculate equivalent radial load FrE and equivalent thrust load FxE at peak load. Cf : Overhung factor FrE : Equivalent radial load = Peak radial load Fr Cf FxE : Equivalent axial load = Peak thrust load Fx Cf FrA : Allowable radial load FxA : Allowable axial load Refer to the following pages for Cf, FrA, and FxA values. Right angle shaft: Page B38 ~ B4 Parallel shaft: Page B98 ~ B0 Calculate equivalent radial load FrE and calculate equivalent thrust load FxE Check overhung load No FrE Yes FrA Yes Check overhung load FrE FrA FxE FxA No Complete selection Consult us for large overhung load. B 6

16 Drive Unit Selection Example Conditions Selected item Reference page No. Ambient condition Check ambient condition oad Power P Motor power Electric source Output speed oad condition Type of load, Operating hours Determine service factor Shaft and mounting positions Determine size, shaft position, number of stages Check dimension Check shaft arrangement Check nomenclature Indoor, Ambient temperature 20 OK : P = 7kW 8.5 kw : 200V 50z : 33 : Uniform load 4 hours/day SF=.25 : Right Angle Shaftorizontal Mounting 9030 R Right Angle Shaft Triple Ratio 45 RM PA9030R3RM45 B2 Standard Specifications B8 Service Factor B4 B5 Nomenclature B24 Selection B44 Check overhung load Overhung member Overhung factor Cf : Sprocket (Single row) Cf =.0 Radial load position and direction Peak radial load Fr Peak thrust load Fx : Center of solid shaft, Downward : 0.6 kn : 0 kn Equivalent radial load FrE FrE = = 0.6 Allowable radial load 26.5 kn B38 Allowable external load B38 Allowable Radial oad OK Motor specification Check motor specification Complete Selection Selected model : 200V 50z without brakeindoor OK PA9035R3RM45 200V 50z without brakeindoor A6 Available Combination of Basic Motor Page number of the relevant Table is indicated in the Selection Table. B 7

17 Drive Unit Service Factor SF Drive Unit Selection Service Factor SF CRANES Classification of Crane Driven Machine oisting Traverse Motion Travel Motion Slewing Motion Operating ours (hours/day) 3 hrs 0 hrs 24 hrs Boom oisting Group Group Group Group CONVEYORS (General purpose) Uniformly load or fed eavy load Not uniformly fed Reciprocating or shaker EEVATORS Elevators Escalators META MIS Draw bench carriage and main drive Runout table Non reversing Group drives Individual drivers Reversing Slab pushers Shears Wire drawing Wire winding machine META STRIP PROCESSING MACINERY Bridles.50 Coilers & uncoilers.00 Edge trimmers.00 Flatteners.25 oopers (Accumulators).50 Pinch rolls.25 Scrap choppers 2.00 Shears 2.00 Slitters.00 MI, ROTARY TYPE Ball and rod Cement Kilns Kilns (Except cement kilns) Dryers and coolers SEWAGE DISPOSA EQUIPMENT Aerators Bar screens Chemical feeders Dewatering screens Scum breakers Slow or rapid mixers Sludge collectors Thickeners Vacuum filters EXTRUDERS Plastics Rubber FEEDERS Apron Belt Disk Reciprocating Screw The crane classification is based on JIS B "Calculation standard for the structure of crane." Driven Machine RUBBER INDUSTRY Mixers Mixing mill 2 smooth rolls Batch drop mill 2 smooth rolls Cracker warmer 2 roll: corrugated roll Cracker 2 corrugated rolls olding, feed and blend mill 2 rolls Refiner 2 rolls Calenders Operating ours (hours/day) 3 hrs 0 hrs 24 hrs PAPER MI All types incl. Paper making machine AGITATORS AND MIXERS Pure liquids iquids and solids iquids variable density MIXERS Concrete CRUSER Stone or ore BOWERS Centrifugal obe Vane COMPRESSORS Centrifugal obe Reciprocating: multi cylinder Reciprocating: single cylinder FANS Centrifugal Cooling towers Forced draft Suction draft Industrial and mine PUMPS Centrifugal Screw pump Gear pump DREDGES Cable reels Conveyors Cutter head drive Pumps Screen drives Stackers Winches GENERATORS AND EXCITERS AMMER MIS SUGAR INDUSTRY Beet slicer Cane knives Crushers Mills (Slow speed end) Notes: () Values in the above table are based on AGMA standards and SUMITOMO's experience. (2) Values in the above table apply for electric motors as prime movers if prime mover is a multi cylinder combustion engine, 0.25 has to be added to the SF. (3) Consult us for special duty or when special safety specifications are needed. (4) : For SF, consult us. B 8

18 Drive Unit Service Factor SF Refer to the following for driven machines not shown on the left page. Prime Mover Operating ours Uniform oad Type of oad Moderate Shock oad eavy Shock oad U M Electric Motor 3 hours/day 0 hours/day 24 hours/day Internal Combustion Engine (multi cylinder) 3 hours/day 0 hours/day 24 hours/day Note: Consult us when the operating hours are less than 3 hours/day or when an internal combustion engine (single cylinder) is used. B 9

19 B 0

20 <Drive Unit Right Angle Shaft orizontal Mounting> B <Drive Unit Right Angle Shaft Upright Mounting> <Drive Unit Right Angle Shaft Vertical Mounting> Drive Unit Right Angle Shaft Selection B 2 Allowable Radial B 38 and Thrust oads Sheets B 42 Exact Actual Ratio B 0 B

21 SEECTION Drive Unit Right Angle Shaft Combinations with 4P motor Shaft Position igh Speed Shaft Speed Ambient Temperature Right Angle Shaft Degree Drive Unit Selection kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P ow Speed Shaft Speed SF Ratio of Reducer B 2

22 SEECTION Drive Unit Right Angle Shaft Combinations with 4P motor ow Speed Shaft Speed SF Ratio kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P B 3

23 SEECTION Drive Unit Right Angle Shaft Combinations with 4P motor Shaft Position igh Speed Shaft Speed Ambient Temperature Right Angle Shaft Degree Drive Unit Selection kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P ow Speed Shaft Speed SF Ratio of Reducer B 4

24 SEECTION Drive Unit Right Angle Shaft Combinations with 4P motor ow Speed Shaft Speed SF Ratio kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P B 5

25 SEECTION Drive Unit Right Angle Shaft 5.5kW 5.5kW Frequency z 50z 60z Pole P 4 4 n Drive Unit Selection B 6 Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 3.5 B44 B54 B R B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 80 B44 B54 B R4 80 B48 B58 B R3 80 B48 B58 B R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B48 B58 B R4 90 B48 B58 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B50 B60 B R4 60 B48 B58 B R4 60 B48 B58 B R4 60 B48 B58 B R4 80 B48 B58 B R4 80 B48 B58 B R4 80 B48 B58 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B48 B58 B R4 200 B48 B58 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B48 B58 B R4 224 B48 B58 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B48 B58 B R4 250 B48 B58 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 280 B48 B58 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B48 B58 B R4 35 B48 B58 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 355 B48 B58 B R4 355 B48 B58 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B70

26 SEECTION Drive Unit Right Angle Shaft 5.5kW, 7.5kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 400 B48 B58 B R4 400 B50 B60 B R4 400 B50 B60 B R4 450 B48 B58 B R4 450 B50 B60 B R4 450 B50 B60 B R4 450 B50 B60 B70 7.5kW Frequency z 50z 60z Pole P 4 4 n Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 28 B44 B54 B R3 3.5 B44 B54 B R B44 B54 B R3 40 B44 B54 B R3 40 B44 B054 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 80 B44 B54 B R4 80 B48 B58 B R3 80 B44 B54 B R4 80 B50 B60 B R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B50 B60 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B50 B60 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B50 B60 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B50 B60 B70 B 7

27 SEECTION Drive Unit Right Angle Shaft 7.5kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B48 B58 B R4 60 B48 B58 B R4 60 B48 B58 B R4 60 B50 B60 B R4 80 B48 B58 B R4 80 B48 B58 B R4 80 B48 B58 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B48 B58 B R4 200 B48 B58 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B48 B58 B R4 224 B48 B58 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B48 B58 B R4 250 B48 B58 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 280 B48 B58 B R4 280 B48 B58 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B48 B58 B R4 35 B48 B58 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 355 B48 B58 B R4 355 B48 B58 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 400 B48 B58 B R4 400 B50 B60 B R4 400 B50 B60 B R4 400 B50 B60 B R4 450 B48 B58 B R4 450 B50 B60 B R4 450 B50 B60 B R4 450 B50 B60 B70 B 8

28 SEECTION Drive Unit Right Angle Shaft kw kw Frequency z 50z 60z Pole P 4 4 n Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 6 B42 B52 B R2 8 B42 B52 B R3 20 B44 B54 B R B44 B54 B R3 25 B44 B54 B R3 25 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B46 B56 B R3 80 B44 B54 B R4 80 B48 B58 B R3 80 B44 B54 B R3 80 B44 B54 B R3 90 B44 B54 B R4 90 B48 B58 B R3 80 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B50 B60 B R3 90 B46 B56 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B50 B60 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B70 B 9

29 SEECTION Drive Unit Right Angle Shaft kw Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B48 B58 B R4 60 B48 B58 B R4 60 B48 B58 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B48 B58 B R4 80 B48 B58 B R4 80 B48 B58 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B48 B58 B R4 200 B48 B58 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B48 B58 B R4 224 B48 B58 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B70 3, R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B48 B58 B R4 250 B48 B58 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 280 B48 B58 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B48 B58 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 400 B50 B60 B R4 400 B50 B60 B R4 400 B50 B60 B R4 450 B50 B60 B R4 450 B50 B60 B R4 450 B50 B60 B70 B 20

30 SEECTION Drive Unit Right Angle Shaft 5kW 5kW Frequency z 50z 60z Pole P 4 4 n Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 2.5 B42 B52 B R2 4 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R3 20 B44 B54 B R3 20 B44 B54 B R B44 B54 B R B44 B54 B R3 25 B44 B54 B R3 25 B44 B54 B R3 25 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B46 B56 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B46 B56 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B46 B56 B R3 63 B46 B56 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B46 B56 B R3 7 B46 B56 B66 B 2

31 SEECTION Drive Unit Right Angle Shaft 5kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 80 B44 B54 B R4 80 B48 B58 B R3 80 B44 B54 B R3 80 B44 B54 B R3 80 B46 B56 B R4 80 B50 B60 B R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B50 B60 B R4 00 B50 B60 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 40 B48 B58 B68, R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B48 B58 B R4 60 B48 B58 B R4 60 B48 B58 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B48 B58 B R4 80 B48 B58 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B48 B58 B R4 200 B48 B58 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B70 B 22

32 SEECTION Drive Unit Right Angle Shaft 5kW, 8.5kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 224 B48 B58 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B48 B58 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 400 B50 B60 B R4 400 B50 B60 B R4 450 B50 B60 B R4 450 B50 B60 B70 8.5kW Frequency z 50z 60z Pole P 4 4 n Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) Output Speed Output Torque (Tout) SF SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 0 B42 B52 B R2.2 B42 B52 B R2 2.5 B42 B52 B R2 4 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R2 20 B42 B52 B R3 20 B44 B54 B R B42 B52 B R B44 B54 B R3 25 B44 B54 B R3 25 B44 B54 B64 B 23

33 SEECTION Drive Unit Right Angle Shaft 8.5kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B46 B56 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B46 B56 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B46 B56 B R3 56 B46 B56 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 80 B44 B54 B R4 80 B48 B58 B R3 80 B44 B54 B R3 80 B44 B54 B R3 80 B46 B56 B R4 80 B50 B60 B R3 80 B46 B56 B66 B 24

34 SEECTION Drive Unit Right Angle Shaft 8.5kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R3 90 B46 B56 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B48 B58 B , R4 00 B50 B60 B R4 00 B50 B60 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 40 B48 B58 B R4 40 B48 B58 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B48 B58 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B48 B58 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B70 B 25

35 SEECTION Drive Unit Right Angle Shaft 8.5kW, 22kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 400 B50 B60 B R4 400 B50 B60 B R4 450 B50 B60 B R4 450 B50 B60 B70 22kW Frequency z 50z 60z Pole P 4 4 n Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 8 B42 B52 B R2 9 B42 B52 B R2 0 B42 B52 B R2.2 B42 B52 B R2 2.5 B42 B52 B R2 4 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R3 20 B44 B54 B R3 20 B44 B54 B R3 20 B46 B56 B R B44 B54 B R B44 B54 B R B46 B56 B R3 25 B44 B54 B R3 25 B44 B54 B R3 25 B44 B54 B R3 25 B46 B56 B66 B 26

36 SEECTION Drive Unit Right Angle Shaft 22kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B46 B56 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B46 B56 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B46 B56 B R B46 B56 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B46 B56 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B46 B56 B R3 45 B46 B56 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B66 B 27

37 SEECTION Drive Unit Right Angle Shaft 22kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 80 B48 B58 B R3 80 B44 B54 B R3 80 B44 B54 B R3 80 B46 B56 B R4 80 B50 B60 B R3 80 B46 B56 B R4 80 B50 B60 B R3 90 B44 B54 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R4 00 B48 B58 B R4 00 B48 B58 B R4 00 B50 B60 B R4 00 B50 B60 B R4 00 B50 B60 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B48 B58 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 25 B48 B58 B R4 25 B48 B58 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 40 B48 B58 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B48 B58 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B70 B 28

38 SEECTION Drive Unit Right Angle Shaft 22kW, 30kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 400 B50 B60 B R4 400 B50 B60 B R4 450 B50 B60 B R4 450 B50 B60 B70 30kW Frequency z 50z 60z Pole P 4 4 n marked model upright type need additional cooling system for continuous operation. Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 6.3 B42 B52 B R2 7. B42 B52 B R2 8 B42 B52 B R2 9 B42 B52 B R2 0 B42 B52 B R2 0 B42 B52 B R2.2 B42 B52 B R2.2 B42 B52 B R2 2.5 B42 B52 B R2 4 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R3 20 B44 B54 B R3 20 B44 B54 B R3 20 B46 B56 B R B44 B54 B R B44 B54 B R B46 B56 B66 B 29

39 SEECTION Drive Unit Right Angle Shaft 30kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 25 B44 B54 B R3 25 B44 B54 B R3 25 B46 B56 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B46 B56 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B46 B56 B R B46 B56 B R B46 B56 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B46 B56 B R3 40 B46 B56 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B46 B56 B R3 45 B46 B56 B R3 45 B46 B56 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B66 B 30

40 SEECTION Drive Unit Right Angle Shaft 30kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 80 B44 B54 B R3 80 B44 B54 B R3 80 B46 B56 B R4 80 B50 B60 B R3 80 B46 B56 B R4 80 B50 B60 B R4 90 B48 B58 B R3 90 B44 B54 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R4 00 B48 B58 B R4 00 B50 B60 B R4 00 B50 B60 B R4 00 B50 B60 B R4 2 B48 B58 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 25 B48 B58 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 35 B50 B60 B R4 355 B50 B60 B R4 355 B50 B60 B R4 400 B50 B60 B R4 450 B50 B60 B70 B 3

41 SEECTION Drive Unit Right Angle Shaft 37kW 37kW Frequency z 50z 60z Pole P 4 4 n marked model upright type need additional cooling system for continuous operation. Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 6.3 B42 B52 B R2 7. B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R2 9 B42 B52 B R2 9 B42 B52 B R2 0 B42 B52 B R2 0 B42 B52 B R2.2 B42 B52 B R2.2 B42 B52 B R2 2.5 B42 B52 B R2 4 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R3 20 B44 B54 B R3 20 B44 B54 B R3 20 B46 B56 B R3 20 B46 B56 B R B44 B54 B R B44 B54 B R B46 B56 B R B46 B56 B R3 25 B44 B54 B R3 25 B44 B54 B R3 25 B46 B56 B R3 25 B46 B56 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B46 B56 B R3 28 B46 B56 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R B44 B54 B R B44 B54 B R B44 B54 B R B44 B54 B R B46 B56 B R B46 B56 B R B46 B56 B R B46 B56 B66 B 32

42 SEECTION Drive Unit Right Angle Shaft 37kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B46 B56 B R3 40 B46 B56 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B46 B56 B R3 45 B46 B56 B R3 45 B46 B56 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 63 B44 B54 B R3 63 B44 B54 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 7 B44 B54 B R3 7 B44 B54 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 80 B44 B54 B R3 80 B46 B56 B R4 80 B50 B60 B R3 80 B46 B56 B R4 80 B50 B60 B R3 90 B44 B54 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R4 00 B50 B60 B R4 00 B50 B60 B R4 00 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B70 B 33

43 SEECTION Drive Unit Right Angle Shaft 37kW, 45kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 280 B50 B60 B R4 280 B50 B60 B R4 35 B50 B60 B R4 355 B50 B60 B70 45kW Frequency z 50z 60z Pole P 4 4 n marked model upright type need additional cooling system for continuous operation. Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 6.3 B42 B52 B R2 7. B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R2 9 B42 B52 B R2 9 B42 B52 B R2 0 B42 B52 B R2 0 B42 B52 B R2.2 B42 B52 B R2.2 B42 B52 B R2 2.5 B42 B52 B R2 4 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R3 20 B44 B54 B R3 20 B44 B54 B R3 20 B46 B56 B R3 20 B46 B56 B R B44 B54 B R B44 B54 B R B46 B56 B R B46 B56 B R3 25 B44 B54 B R3 25 B44 B54 B R3 25 B46 B56 B R3 25 B46 B56 B66 B 34

44 SEECTION Drive Unit Right Angle Shaft 45kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B44 B54 B R3 28 B46 B56 B R3 28 B46 B56 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B44 B54 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R B44 B54 B R B44 B54 B R B44 B54 B R B46 B56 B R B46 B56 B R B46 B56 B R B46 B56 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B44 B54 B R3 40 B46 B56 B R3 40 B46 B56 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B44 B54 B R3 45 B46 B56 B R3 45 B46 B56 B R3 45 B46 B56 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B44 B54 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 56 B44 B54 B R3 56 B44 B54 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 63 B44 B54 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 7 B44 B54 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 80 B44 B54 B R3 80 B46 B56 B R4 80 B50 B60 B R3 80 B46 B56 B R4 80 B50 B60 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R4 00 B50 B60 B R4 00 B50 B60 B R4 00 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B70 B 35

45 SEECTION Drive Unit Right Angle Shaft 45kW, 55kW Drive Unit Selection Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B50 B60 B R4 224 B50 B60 B R4 250 B50 B60 B R4 250 B50 B60 B R4 280 B50 B60 B R4 35 B50 B60 B70 55kW Frequency z 50z 60z Pole P 4 4 n marked model upright type need additional cooling system for continuous operation. Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R2 6.3 B42 B52 B R2 7. B42 B52 B R2 8 B42 B52 B R2 8 B42 B52 B R2 9 B42 B52 B R2 9 B42 B52 B R2 0 B42 B52 B R2 0 B42 B52 B R2.2 B42 B52 B R2.2 B42 B52 B R2 2.5 B42 B52 B R2 2.5 B42 B52 B R2 4 B42 B52 B R2 4 B42 B52 B R2 6 B42 B52 B R2 6 B42 B52 B R2 8 B42 B52 B R2 20 B42 B52 B R3 20 B44 B54 B R3 20 B46 B56 B R3 20 B46 B56 B R B42 B52 B R B44 B54 B R B46 B56 B R B46 B56 B R3 25 B44 B54 B R3 25 B46 B56 B R3 25 B46 B56 B R3 28 B44 B54 B R3 28 B46 B56 B R3 28 B46 B56 B66 B 36

46 SEECTION Drive Unit Right Angle Shaft 55kW Frequency 50z 60z Model Page of Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio orizontal Vertical Upright R3 3.5 B44 B54 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R3 3.5 B46 B56 B R B44 B54 B R B46 B56 B R B46 B56 B R B46 B56 B R B46 B56 B R3 40 B44 B54 B R3 40 B46 B56 B R3 40 B46 B56 B R3 45 B44 B54 B R3 45 B46 B56 B R3 45 B46 B56 B R3 45 B46 B56 B R3 50 B44 B54 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 50 B46 B56 B R3 56 B44 B54 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 56 B46 B56 B R3 63 B44 B54 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 63 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 7 B46 B56 B R3 80 B46 B56 B R4 80 B50 B60 B R3 80 B46 B56 B R4 80 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R3 90 B46 B56 B R4 90 B50 B60 B R4 00 B50 B60 B R4 00 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 2 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 25 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 40 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 60 B50 B60 B R4 80 B50 B60 B R4 80 B50 B60 B R4 200 B50 B60 B R4 200 B50 B60 B R4 224 B50 B60 B R4 250 B50 B60 B70 B 37

47 SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Allowable Radial oad (kn) Sheet Applicable to configurations: Double RMR, M Triple RM,MR/Quadruple RMR, M Drive Unit Selection.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Sheet 2.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Applicable to configurations: Double RM, MR Triple RMR, M/Quadruple RM, MR Allowable Axial oad (kn).speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model B 38

48 SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Overhang Factor Overhang Member Overhang Factor Sprocket (Single Row) Sprocket (Double Row).25 Gears.25 Notes. The value shown in the table is allowable radial load when it is applied to the center of the solid shaft (except hollow shaft). Consult us when a load is not in the center. 2. Consult us for the blanks in the table. 3. Consult us when the radial load is applied upward. 4. In case of double projection shaft (RMB,MB) () See sheet when the radial load is applied only to the shaft. (2) See sheet2 when the radial load is applied only to the shaft2. (3) Consult us when the radial load is applied to both shafts. 5. Refer to B6 to check overhang load, and calculate equivalent load at peak load value. Be careful under following condition because large peak load may be generated. Application: When the inertia is large, such as for crane driving, slewing, etc. Motor: inline motor Connecting method: Sprocket or gear Consult us when the peak load is larger than allowable value. RMB MB Double Ratio 2 2 Triple Ratio 2 2 Quadruple Ratio 2 2 B 39

49 SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Allowable Radial oad (kgf) Drive Unit Selection Applicable to configurations: Double RMR, M Sheet Triple RM,MR/Quadruple RMR, M.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Sheet 2.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Applicable to configurations: Double RM, MR Triple RMR, M/Quadruple RM, MR Allowable Axial oad (kgf).speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model B 40

50 SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Overhang Factor Overhang Member Overhang Factor Sprocket (Single Row) Sprocket (Double Row).25 Gears.25 Notes. The value shown in the table is allowable radial load when it is applied to the center of the solid shaft (except hollow shaft). Consult us when a load is not in the center. 2. Consult us for the blanks in the table. 3. Consult us when the radial load is applied upward. 4. In case of double projection shaft (RMB,MB) () See sheet when the radial load is applied only to the shaft. (2) See sheet2 when the radial load is applied only to the shaft2. (3) Consult us when the radial load is applied to both shafts. 5. Refer to B6 to check overhang load, and calculate equivalent load at peak load value. Be careful under following condition because large peak load may be generated. Application: When the inertia is large, such as for crane driving, slewing, etc. Motor: inline motor Connecting method: Sprocket or gear Consult us when the peak load is larger than allowable value. RMB MB Double Ratio 2 2 Triple Ratio 2 2 Quadruple Ratio 2 2 B 4

51 DIMENSIONS Right Angle Double orizontal Mounting B A MA DP MB MC MD DP F E E E2 [Fig. ] ocation of oil fill and air vent for 9030 with reduction ratio 6.3 or 7. FY Drive Unit Selection O P DP2 4 J K K D G Y G ocation of oil fill and air vent changes for 9030 with reduction ratio 6.3 or 7.. Refer to Fig.. Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 42

52 DIMENSIONS Right Angle Double orizontal Mounting A B D E E E2 F FY G J K O P Y See below Oil Qty. Wt.[kg] DP DP2 () 5.530kW 3755kW /4" 3/4" /4" 3/4" " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Btake P A 9030 R 2 PARAMAX orizontal Monoblock 9045 Right Angle Double Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P A R 2 Ratio RM RMR RMB MR M MB (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 43

53 DIMENSIONS Right Angle Triple orizontal Mounting B A MA B DP E MB MD MC BD Drive Unit Selection F E O P DP2 4 J K K D G Y G Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 44

54 DIMENSIONS Right Angle Triple orizontal Mounting A B D E E F G J K O P Y See below Oil Qty. Wt. [kg] BD B DP DP2 () 5.530kW 3755kW /4" 3/4" /4" 3/4" " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P A 9030 R 3 PARAMAX orizontal Monoblock 9055 Right Angle Triple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Nomenclature ow Speed Shaft Shaft Arrangement Type Option P A R 3 Ratio Unit: mm RM RMR RMB MR M MB (blank) : Without Option B : With Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 45

55 E DIMENSIONS Right Angle Triple orizontal Mounting B A MA MB B MD MC BD Drive Unit Selection F E E2 O P DP G K D Y 4 J K G Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 46

56 DIMENSIONS Right Angle Triple orizontal Mounting A B D E E E2 F G J K O P Y See below BD B DP Oil Qty. Wt. [kg] () 5.530kW 3755kW " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P D 9060 R 3 PARAMAX orizontal Split 9075 Right Angle Triple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type Option P D R 3 Ratio RM RMR RMB MR M MB (blank) B : Without Option : With Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 47

57 DIMENSIONS Right Angle Quadruple orizontal Mounting B A MA MB MD MC B BD DP Drive Unit Selection E F E O P DP2 K G D Y K 4 J G Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 48

58 DIMENSIONS Right Angle Quadruple orizontal Mounting A B D E E F G J K O P Y See below Oil Qty. Wt. [kg] BD B DP DP2 () 5.530kW 3755kW 9040 " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P A 9040 R 4 PARAMAX orizontal Monoblock 9055 Right Angle Quadruple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Arrangement Shaft Type Option P A R 4 Ratio RM RMR RMB MR M MB (blank) : Without Option B : With Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 49

59 E DIMENSIONS Right Angle Quadruple orizontal Mounting B A MA B MB MD MC BD Drive Unit Selection F E E2 O P DP 4 J K K D G Y G Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 50

60 DIMENSIONS Right Angle Quadruple orizontal Mounting A B D E E E2 F G J K O P Y See below BD B DP Oil Qty. Wt. [kg] () 5.530kW 3755kW " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P D 9060 R 4 PARAMAX orizontal Split 9085 Right Angle Quadruple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type Option P D R 4 Ratio RM RMR RMB MR M MB (blank) : Without Option B : With Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 5

61 DIMENSIONS Right Angle Double Vertical Mounting B A MA MC N P P N MB NP N2 E3 E2 Drive Unit Selection DP E O M C DP2 M G K RI D Y K 4 J G MD Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 52

62 DIMENSIONS Right Angle Double Vertical Mounting A B C D E E2 E3 G RI J K M N N N2 NP O P Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW /4" 3/4" /4" 3/4" " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P V A 9030 R 2 PARAMAX Vertical Monoblock 9045 Right Angle Double Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V A R 2 Ratio RM RMR (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 53

63 DIMENSIONS Right Angle Triple Vertical Mounting B A MA MC P P N N MB NP N2 E3 E2 Drive Unit Selection DP E O M C DP2 M G K RI D Y K 4 J G MD Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 54

64 DIMENSIONS Right Angle Triple Vertical Mounting A B C D E E2 E3 G RI J K M N N N2 NP O P Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW /4" 3/4" /4" 3/4" " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P V A 9030 R 3 PARAMAX Vertical Monoblock 9055 Right Angle Triple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V A R 3 Ratio RM RMR (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 55

65 DIMENSIONS Right Angle Triple Vertical Mounting B A MA P P P N NP N MB MC E3 E2 Drive Unit DP C Selection E O DP2 M M G RI K D Y K 4 J G Refer to footnote 3. MD Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V V2 V3 V4 V5 Y X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement RMR is equipped with visible gauge. Refer to page D28. B 56

66 DIMENSIONS Right Angle Triple Vertical Mounting A B C D E E2 E3 G RI J K M N N NP O P P Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW 9060 " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P V D 9060 R 3 PARAMAX Vertical Split 9075 Right Angle Triple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V D R 3 Ratio RM RMR (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 57

67 DIMENSIONS Right Angle Quadruple Vertical Mounting B A MA E3 E2 MC P N MB P N NP C Drive Unit DP2 M2 Selection E O M M RI MD DP G K D Y K 4 J G Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration MR M Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 58

68 DIMENSIONS Right Angle Quadruple Vertical Mounting A B C D E E2 E3 G RI J K M M2 N N NP O P Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW 9040 " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P V A 9040 R 4 PARAMAX Vertical Monoblock 9055 Right Angle Quadruple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V A R 4 Ratio MR M (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 59

69 DIMENSIONS Right Angle Quadruple Vertical Mounting B A MA E3 E2 DP M C E O P MB P N N P MC NP Drive Unit Selection M2 M DP2 RI Refer to K footnote 3. K 4 J G D Y G MD Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V V2 V3 V4 V5 Y X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration MR M Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement MR is equipped with visible gauge. Refer to page D28. B 60

70 DIMENSIONS Right Angle Quadruple Vertical Mounting A B C D E E2 E3 G RI J K M M2 N NP N O P P Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW 9060 " " " " " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P V D 9060 R 4 PARAMAX Vertical Split 9085 Right Angle Quadruple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V D R 4 Ratio MR M (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 6

71 DIMENSIONS Right Angle Double Upright Mounting MD MB MA MC DP Drive Unit Selection B A 4 J2 K3 K3 D G Y4 G K2 Y P K2 4 J K Y2 E F E K 2 DP2 Y3 Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 62

72 DIMENSIONS Right Angle Double Upright Mounting A B D E E F G 2 J J2 K K2 K3 P Y Y2 Y3 Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW /4" 3/4" /4" 3/4" " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P W A 9030 R 2 PARAMAX Upright Monoblock 9045 Right Angle Double Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P W A R 2 Ratio RM RMR RMB MR M MB (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 63

73 DIMENSIONS Right Angle Triple Upright Mounting MD MB MA MC DP Drive Unit Selection B A 4 J2 K3 K3 D G Y4 G K2 Y P K2 4 J K Y2 E F E K 2 DP2 Y3 Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 Y V V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 64

74 DIMENSIONS Right Angle Triple Upright Mounting A B D E E F G 2 J J2 K K2 K3 P Y Y2 Y3 Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW /4" 3/4" /4" 3/4" " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P W A 9030 R 3 PARAMAX Upright Monoblock 9055 Right Angle Triple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P W A R 3 Ratio RM RMR RMB MR M MB (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 65

75 DIMENSIONS Right Angle Triple Upright Mounting MD MB MA MC DP Drive Unit Selection B A P DP2 E E 4 J K K D Y G G O F Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 Y V V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 66

76 DIMENSIONS Right Angle Triple Upright Mounting A B D E E F G J K O P Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW 9060 " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P W D 9060 R 3 W PARAMAX Upright Split 9075 Right Angle Triple Wall Mount Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P W D R 3 W Ratio RM RMR RMB MR M MB (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 67

77 DIMENSIONS Right Angle Quadruple Upright Mounting MD MB MA MC DP 4 J2 K3 G Drive Unit Selection B A K2 Y P K2 4 J 2 K Y2 E F E K K3 D Y4 G DP2 Y3 Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 Y V V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB Refer to the Page D8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 68

78 DIMENSIONS Right Angle Quadruple Upright Mounting A B D E E F G 2 J J2 K K2 K3 P Y Y2 Y3 Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW 9040 " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor Mass of Motor [kg] kw Without Brake With Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P W A 9040 R 4 PARAMAX Upright Monoblock 9055 Right Angle Quadruple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: Nomenclature ow Speed Shaft Shaft Arrangement Type P W A R 4 Ratio RM RMR RMB MR M MB (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 69

79 DIMENSIONS Right Angle Quadruple Upright Mounting MD MB MA MC DP Drive Unit Selection A B P DP2 E F E 4 J K K D G Y G O Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V Y V2 V3 V4 V5 X Z W Refer to the Page D8 for details. Refer to the Page D8 for details. Standard Shaft Arrangement Configuration RM RMR RMB MR M MB. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. B 70

80 DIMENSIONS Right Angle Quadruple Upright Mounting A B D E E F G J K O P Y See below Oil Qty. Wt. [kg] DP DP2 () 5.530kW 3755kW 9060 " " " " " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor A Mass of Motor [kg] Mass of Motor kw Without Brake Brake Mounting Without With MD Flange [kg] MA MB MC MA MB MC Brake Brake P W D 9060 R 4 W PARAMAX Upright Split 9085 Right Angle Quadruple Wall Mount Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P W D R 4 W Ratio RM RMR RMB MR M MB (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 7

81 memo B 72

82 B <Drive Unit Parallel Shaft Vertical Mounting> Drive Unit: Parallel Shaft Selection B 74 Allowable Radial and Axial oads B 98 B02 Actual Ratio B B 73

83 SEECTION Drive Unit Parallel Shaft Combinations with 4P motor Shaft Position igh Speed Shaft Speed Ambient Temperature Parallel Shaft Dgree Drive Unit Selection kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P 75kW 4P 90kW 4P 0kW 4P ow Speed Shaft Speed SF Ratio of Reducer B 74

84 SEECTION Drive Unit Parallel Shaft Combinations with 4P motor ow Speed Shaft Speed Ratio SF kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P 75kW 4P 90kW 4P 0kW 4P B 75

85 SEECTION Drive Unit Parallel Shaft Combinations with 4P motor Shaft Position igh Speed Shaft Speed Ambient Temperature Parallel Shaft Dgree Drive Unit Selection kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P 75kW 4P 90kW 4P 0kW 4P ow Speed Shaft Speed SF Ratio of Reducer B 76

86 SEECTION Drive Unit Parallel Shaft Combinations with 4P motor ow Speed Shaft Speed Ratio SF kw 5.5kW 4P 7.5kW 4P kw 4P 5kW 4P 8.5kW 4P 22kW 4P 30kW 4P 37kW 4P 45kW 4P 55kW 4P 75kW 4P 90kW 4P 0kW 4P B 77

87 SEECTION Drive Unit Parallel Shaft 5.5kW, 7.5kW 5.5kW Frequency z 50z 60z Pole P 4 4 n Drive Unit Selection Output Speed Frequency Model Page of Sheet 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 4 B P2 6 B P2 8 B P3 20 B P B P3 25 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P B P B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 80 B P3 90 B P3 90 B06 7.5kW Frequency z 50z 60z Pole P 4 4 n Output Speed Frequency Model Page of Sheet 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2.2 B P2 2.5 B P2 4 B P2 6 B P2 8 B P2 8 B P3 20 B P3 20 B P B P B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B06 B 78

88 SEECTION Drive Unit Parallel Shaft 7.5kW, kw Frequency 50z 60z Model Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B06 Output Speed Page of Sheet kw Frequency z 50z 60z Pole P 4 4 n Output Speed Frequency Model Page of Sheet 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 7. B P2 8 B P2 9 B P2 0 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P3 20 B P3 20 B P3 20 B06 B 79

89 SEECTION Drive Unit Parallel Shaft kw Drive Unit Selection Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B P3 90 B06 B 80

90 SEECTION Drive Unit Parallel Shaft 5kW 5kW Frequency z 50z 60z Pole P 4 4 n Output Speed Frequency Model Page of Sheet 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 7. B P2 8 B P2 9 B P2 9 B P2 0 B P2 0 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P3 20 B P3 20 B P3 20 B P2 20 B P B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B06 B 8

91 SEECTION Drive Unit Parallel Shaft 5kW, 8.5kW Drive Unit Selection Frequency Page of Model 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B P3 90 B08 8.5kW Frequency z 50z 60z Pole P 4 4 n B 82 Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 7. B P2 7. B P2 8 B P2 8 B P2 9 B P2 9 B P2 0 B P2 0 B P2.2 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 2.5 B02

92 SEECTION Drive Unit Parallel Shaft 8.5kW Frequency Page of Model 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 4 B P2 4 B P2 4 B P2 4 B P2 6 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P3 20 B P3 20 B P2 20 B P3 20 B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B08 B 83

93 SEECTION Drive Unit Parallel Shaft 8.5kW, 22kW Drive Unit Selection Output Speed Frequency 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) Nm kgf m Nm kgf m Model Page of Sheet SF Assembly Ratio Vertical P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B P3 90 B P3 90 B08 22kW Frequency z 50z 60z Pole P 4 4 n B 84 Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 6.3 B P2 7. B P2 7. B P2 8 B P2 8 B P2 9 B P2 9 B P3 9 B P2 0 B P2 0 B P3 0 B P2.2 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 4 B P2 4 B02

94 SEECTION Drive Unit Parallel Shaft 22kW Frequency Page of Model 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6 B P2 6 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P3 20 B P3 20 B P2 20 B P3 20 B P2 20 B P B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B08 B 85

95 SEECTION Drive Unit Parallel Shaft 22kW, 30kW Drive Unit Selection Output Speed Frequency 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) Nm kgf m Nm kgf m Model Page of Sheet SF Assembly Ratio Vertical P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B P3 90 B08 30kW Frequency z 50z 60z Pole P 4 4 n B 86 Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 6.3 B P2 7. B P2 7. B P2 8 B P2 8 B P2 9 B P2 9 B P2 9 B P2 0 B P2 0 B P2 0 B P2.2 B P2.2 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 4 B P2 4 B02

96 SEECTION Drive Unit Parallel Shaft 30kW Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6 B P2 6 B P2 6 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P3 20 B P2 20 B P3 20 B P2 20 B P3 20 B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B08 B 87

97 SEECTION Drive Unit Parallel Shaft 30kW, 37kW Drive Unit Selection Output Speed Frequency 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) Nm kgf m Nm kgf m Model Page of Sheet SF Assembly Ratio Vertical P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B P3 90 B08 37kW Frequency z 50z 60z Pole P 4 4 n B 88 Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 6.3 B P2 7. B P2 8 B P2 8 B P2 9 B P2 9 B P2 9 B P2 0 B P2 0 B P2 0 B P2.2 B P2.2 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 2.5 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 4 B P2 4 B02

98 SEECTION Drive Unit Parallel Shaft 37kW Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6 B P2 6 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P2 20 B P3 20 B P2 20 B P3 20 B P2 20 B P B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B08 B 89

99 SEECTION Drive Unit Parallel Shaft 37kW, 45kW Drive Unit Selection Output Speed Frequency 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) Nm kgf m Nm kgf m Model Page of Sheet SF Assembly Ratio Vertical P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B P3 90 B08 45kW Frequency z 50z 60z Pole P 4 4 n Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 7. B P2 8 B P2 8 B P2 8 B P2 9 B P2 9 B P2 9 B P2 0 B P2 0 B P2 0 B P2.2 B P2.2 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 4 B P2 4 B02 B 90

100 SEECTION Drive Unit Parallel Shaft 45kW Frequency Page of Model 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6 B P2 6 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P2 20 B P3 20 B P2 20 B P3 20 B P2 20 B P3 20 B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B08 B 9

101 SEECTION Drive Unit Parallel Shaft 45kW, 55kW Drive Unit Selection Output Speed Frequency 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) Nm kgf m Nm kgf m kW Model Page of Sheet SF Assembly Ratio Vertical P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B08 Frequency z 50z 60z Pole P 4 4 n B 92 Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 7. B P2 8 B P2 8 B P2 8 B P2 9 B P2 9 B P2 9 B P2 0 B P2 0 B P2 0 B P2 0 B P2.2 B P2.2 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 4 B P2 4 B P2 6 B P2 6 B P2 6 B P2 6 B04

102 SEECTION Drive Unit Parallel Shaft 55kW Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 8 B P2 8 B P2 8 B P2 8 B P2 8 B P2 20 B P3 20 B P2 20 B P3 20 B P2 20 B P B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B P3 63 B08 B 93

103 SEECTION Drive Unit Parallel Shaft 55kW, 75kW Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 80 B P3 90 B P3 90 B P3 90 B08 Drive Unit Selection 75kW Output Speed Frequency z 50z 60z Pole P 4 4 n Frequency 50z 60z Model Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6.3 B P2 7. B P2 8 B02 Page of Sheet P2 9 B P2 9 B P2 0 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 6 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P2 20 B P3 20 B P2 20 B P3 20 B P B P B P B P B P B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P B08 B 94

104 SEECTION Drive Unit Parallel Shaft 75kW, 90kW Frequency 50z 60z Model Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P3 40 B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 50 B P3 50 B P3 56 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 90 B P3 90 B08 Output Speed Page of Sheet 90kW Frequency z 50z 60z Pole P 4 4 n Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 8 B P2 9 B P2 9 B P2 0 B P2.2 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 8 B P2 20 B P3 20 B P2 20 B04 B 95

105 SEECTION Drive Unit Parallel Shaft 90kW, 0kW Drive Unit Selection Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P B P B P B P B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P B P3 40 B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 50 B P3 56 B P3 56 B P3 56 B P3 63 B P3 63 B P3 63 B P3 7 B P3 7 B P3 7 B P3 80 B P3 80 B P3 90 B P3 90 B08 0kW Frequency z 50z 60z Pole P 4 4 n Output Speed Frequency Model Page of Sheet 50z 60z Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 9 B P2 0 B P2.2 B P2.2 B P2 2.5 B P2 2.5 B P2 4 B P2 4 B P2 4 B04 B 96

106 SEECTION Drive Unit Parallel Shaft 0kW Frequency Model Page of 50z 60z Sheet Output Speed Output Torque (Tout) SF Output Speed Output Torque (Tout) SF Assembly Nm kgf m Nm kgf m Ratio Vertical P2 6 B P2 6 B P2 6 B P2 8 B P2 8 B P2 8 B P2 20 B P3 20 B P B P B P B P3 25 B P3 25 B P3 25 B P3 28 B P3 28 B P3 28 B P3 3.5 B P3 3.5 B P3 3.5 B P B P B P B P3 40 B P3 40 B P3 40 B P3 45 B P3 45 B P3 45 B P3 50 B P3 50 B P3 56 B P3 56 B P3 63 B P3 7 B P3 80 B P3 90 B08 B 97

107 SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Allowable Radial oad (kn) Drive Unit Selection Sheet Applicable to configurations: RM.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Sheet 2 Applicable to configurations: RMR.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Allowable Axial oad (kn).speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model B 98

108 Parallel SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Overhang Factor Overhang Member Overhang Factor Sprocket (Single Row) Sprocket (Double Row).25 Gears.25 Notes. The value shown in the table is allowable radial load when it is applied to the center of the solid shaft (except hollow shaft). Consult us when a load is not in the center. 2. Consult us for the blanks in the table. 3. Consult us when the radial load is applied upward. 4. In case of double projection shaft (RMB,MB,BMB) () See sheet when the radial load is applied only to the shaft. (2) See sheet2 when the radial load is applied only to the shaft2. (3) Consult us when the radial load is applied to both shafts. 5. Refer to B6 to check overhang load, and calculate equivalent load at peak load value. Be careful under following condition because large peak load may be generated. Application: When the inertia is large, such as for crane driving, slewing, etc. Motor: inline motor Connecting method: Sprocket or gear Consult us when the peak load is larger than allowable value. RB 2 B 2 BB 2 B 99

109 SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Allowable Radial oad (kgf) Drive Unit Selection Sheet Applicable to configurations: RM.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Sheet 2 Applicable to configurations: RMR.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Allowable Axial oad (kgf).speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model B 00

110 SEECTION Drive Unit Allowable Radial and Axial oads on Slow Speed Shaft Overhang Factor Overhang Member Overhang Factor Sprocket (Single Row) Sprocket (Double Row).25 Gears.25 Notes. The value shown in the table is allowable radial load when it is applied to the center of the solid shaft (except hollow shaft). Consult us when a load is not in the center. 2. Consult us for the blanks in the table. 3. Consult us when the radial load is applied upward. 4. In case of double projection shaft (RMB,MB,BMB) () See sheet when the radial load is applied only to the shaft. (2) See sheet2 when the radial load is applied only to the shaft2. (3) Consult us when the radial load is applied to both shafts. 5. Refer to B6 to check overhang load, and calculate equivalent load at peak load value. Be careful under following condition because large peak load may be generated. Application: When the inertia is large, such as for crane driving, slewing, etc. Motor: inline motor Connecting method: Sprocket or gear Consult us when the peak load is larger than allowable value. RB 2 B 2 BB 2 B 0

111 DIMENSIONS Parallel Shaft Double Vertical Mounting MD MB Drive Unit Selection P P DP M N B C A NP N2 N MC C MA Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V V2 V3 V4 V5 E O M G DP2 Y RI K K 4 J D Y G E2 E3 X Z W Refer to the page D 8 for details. Standard Shaft Arrangement Configuration RM RMR Refer to the page D 8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996) Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D2 for dimensions not shown in these drawings. 4. Refer to the page D 25 for the dimension of optional parts. 5. Refer to the page D33 for motor terminal box position. 6. Refer to the page D34 for flange dimension. B 02

112 DIMENSIONS Parallel Shaft Double Vertical Mounting A B C C D E E2 E3 G RI J K M N N N2 NP O P Y See below DP DP2 Oil Oty () Wt. (kg) ) 905 3/4" 3/4" /4" 3/4" /4" 3/4" /4" 3/4" " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor C Mass of Motor Mass of Motor (kg) kw Without Brake With Brake Mounting MD Without With MA MG MC MA MB MC Flange (kg) Brake Btake P V A 905 P 2 PARAMAX Vertical Monoblock 9055 Parallel Double Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V A P 2 Ratio RM RMR (blank): Solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 03

113 DIMENSIONS Parallel Shaft Double Vertical Mounting MD MB P Drive Unit P P DP E O M N B C A NP N MC C MA M RI K K 4 J G D Y G DP2 E2 E3 Refer to footnote 3. U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V V2 V3 V4 V5 Selection Slow Speed Shaft Y X Z W Refer to the page D 8 for details. Standard Shaft Arrangement Configuration RM RMR Refer to the page D 8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996) Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement RMR is equipped with oil gauge. Refer to the page D Refer to the page D4 for dimensions not shown in these drawings. 5. Refer to the page D 28 for the dimension of optional parts. 6. Refer to the page D33 for motor terminal box position. 7. Refer to the page D34 for flange dimension. B 04

114 DIMENSIONS Parallel Shaft Double Vertical Mounting A B C C D E E2 E3 G RI J K M N N NP O P P Y See below DP DP2 Oil Oty () Wt. (kg) ) 9060 " " " " " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor C Mass of Motor Mass of Motor (kg) kw Without Brake With Brake Mounting MD MA MG MC MA MB MC Flange (kg) Without Brake With Btake P V D 9060 P 2 PARAMAX Vertical Split 9085 Parallel Double Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V D P 2 Ratio RM RMR (blank): Solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 05

115 P N DIMENSIONS Parallel Shaft Triple Vertical Mounting MB MD Drive Unit Selection P DP2 M N B 94 (905 Only) C A NP M2 MC C MA E O M G DP RI K D Y K G 4 J E2 E3 Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V V2 V3 V4 V5 Y X Z W Refer to the page D 8 for details. Standard Shaft Arrangement Configuration RM RMR Refer to the page D 8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996) Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D3 for dimensions not shown in these drawings. 4. Refer to the page D 25 for the dimension of optional parts. 5. Refer to the page D33 for motor terminal box position. 6. Refer to the page D34 for flange dimension. B 06

116 DIMENSIONS Parallel Shaft Triple Vertical Mounting A B C C D E E2 E3 G RI J K M M2 N N NP O P Y See below DP DP2 Oil Oty () Wt. (kg) 905 3/4" 3/4" /4" 3/4" /4" 3/4" /4" 3/4" " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor C Mass of Motor Mass of Motor (kg) kw Without Brake With Brake Mounting MD Without With MA MG MC MA MB MC Flange (kg) Brake Btake P V A 905 P 3 PARAMAX Vertical Monoblock 9055 Parallel Triple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ ow Speed Unit: mm Nomenclature Shaft Shaft Arrangement Type Ratio P V A P RM RMR (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 07

117 DIMENSIONS Parallel Shaft Triple Vertical Mounting MD MB P P P N C NP N MC C MA DP B A Drive Unit Selection E O M M RI M2 E2 E3 DP2 K G D Y K 4 J G Refer to footnote 3. Slow Speed Shaft U Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T U2 TU2 T2 U4 TU4 T4 V V2 V3 V4 V5 Y X Z W Refer to the page D 8 for details. Standard Shaft Arrangement Configuration RM RMR Refer to the page D 8 for details.. Key and keyways are based on ISO R Close keys (JIS B30996) Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement RMR is equipped with oil gauge. Refer to the page D Refer to the page D5 for dimensions not shown in these drawings. 5. Refer to the page D 28 for the dimension of optional parts. 6. Refer to the page D33 for motor terminal box position. 7. Refer to the page D34 for flange dimension. B 08

118 DIMENSIONS Parallel Shaft Triple Vertical Mounting A B C C D E E2 E3 G RI J K M M2 N N NP O P P Y See below DP DP2 Oil Oty () Wt. (kg) ) 9060 " " " " " " " " " " " " ) Mass of drive unit with motor, add mass of motor flange and mass of motor, shown in table below. Motor C Mass of Motor Mass of Motor (kg) kw With Brake Without Brake Mounting MD MA MG MC MA MB MC Flange (kg) Without Brake With Btake P V D 9060 P 3 PARAMAX Vertical Split 9085 Parallel Triple Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm Nomenclature ow Speed Shaft Shaft Arrangement Type P V D P 3 Ratio RM RMR (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side B 09

119 Exact Ratio Drive Unit Right Angle Shaft Drive Unit Selection of Reducer Ratio B 0

120 Exact Ratio Drive Unit Parallel Shaft of Reducer Ratio B

121 memo B 2

122 C <Reducer: Right Angle Shaft orizontal Mounting> <Reducer: Parallel Shaftorizontal Mounting> Reducer Standard Specifications C 2 Construction Drawing C 3 Nomenclature C 4 Selection Flowchart and Formula for Selection C 6 Service Factor C 8 Right Angle Shaft C Parallel Shaft C0 C

123 Reducer Standard Specifications Item Mounting igh Speed Shaft Speed Standard Specification orizontal Shaft ~ 800 Oil bath lubrication In case of high speed shaft speed is less than, electric pump lubrication may be used. Consult SUMITOMO for details. Reducer ubrication Method Vertical Shaft Upright Shaft 400 ~ 800 ~ 800 Pump lubrication (Two different pump lubrication systems are available; shaft connected pump lubrication and electric pump lubrication. For details, refer to the outline dimension drawing.) Oil bath lubrication Grease lubrication for right angle input shaft. ubricant Gear Type Installation ocation Refer to the page D2. Involute external gear Indoor (Minimal dust and humidity) Ambient Conditions Ambient Temperature Ambient umidity Elevation 0 ~ 40 A cooling fan may be required depending on the usage (Note) Under 85% Under,000 meters Atmosphere Installation Method of Coupling with Driven Machine Well ventilated location, free of corrosive gases, explosive gases, vapors and dust. orizontal installation Refer to the page D2 Coupling, gears, chain sprocket or belt. Speed Reducer Selection Painting Surface preparation: Shot blasting after washing before machining Inside painting: UNI GROUND PTC primer is sprayed once Outside painting: For primer coating, UNI GROUND PTC primer is sprayed once. For final coating, NEORON #2000 is sprayed once. Painting color: Donau Blue (equivalent Munsell color: 6.5PB 3.6/8.2), Refer to the page D3. Note : In general, a heating or cooling system is necessary when ambient temperature is lower than 0 or higher than 50. e.g. igh temperature gas or liquid passes through the hollow shaft. Consult us when substances lower than 0 or higher than 50 will be in contact with PARAMAX DRIVES. C 2

124 Reducer Construction Drawing <Reducer: Right Angle Triple > <Reducer: Parallel Shaft Triple > Ref.No. Part Name Ref.No. Part Name Ref.No. Part Name Ref.No. Part Name ousing 7 Taper roller bearing 3 Bearing housing 9 elical gear 2 elical gear 8 Bevel gear 4 Oil pump 20 Collar 3 Slow speed shaft 9 Spherical roller bearing 5 elical gear 2 elical pinion shaft 4 Taper roller bearing 0 Bevel pinion shaft 6 Taper roller bearing 5 elical pinion shaft Oil seal 7 Collar 6 elical pinion shaft 2 Taper roller bearing 8 Oil seal C 3

125 Reducer Nomenclature P D 9075 R 3 Series Mounting ousing Torque Shaft Position Number of Gear knm Stages R A Monoblock orizontal Double Right Angle V Speed Reducer Selection P Paramax W Vertical D Split P 4 Triple Parallel Upright Quadruple C 4. For shaft arrangement, refer to the dimension sheets. 2. Consult us for reduction ratios smaller than 6.3.

126 Reducer Nomenclature R K F 35.5 Mounting for Upright Shaft Arrangement Slow Speed Shaft Option Ratio Right Angle Shaft R RB RR R B T Solid Shaft Without option F With fan W Wall Mount (Upright Mounting) R RB B BB RR R B BR ollow Shaft (Shrink Disk Type) K ollow Shaft (Key Type) B With backstop FB With fan & backstop Parallel Shaft C 5

127 Reducer Selection Determine Determine Nomenclature Ambient condition Determine the service factor Calculate Equivalent Transmission Power Determine PE P Determine page number indicating Table. Determine Nomenclature Standard Specifications Page C2 PM : Actual transmission power or motor SF : Service factor Page C8 ~ C9 PE : Equivalent transmission power PE PM SF P : Mechanical power rating Right angle shaft: Page C2 ~ C4 Parallel shaft: Page C06 ~ C35 Refer to the bottom row of Mechanical Power Rating Table for page number of dimensional drawing. Select shaft arrangement from "Standard Shaft Arrangement Configuration" in the. Determine nomenclature. Check Thermal Power Determine Temperature Correction Factor Check Thermal Power PT Ta PM No Ta : Temperature correction factor PT : Thermal power rating Right angle shaft: Page C2 ~ C4 Parallel shaft: Page C06 ~ C35 Consult us for forced cooling system such as oil cooler. Speed Reducer Selection Check Overhung oad No Yes Is overhung load applied to the high speed shaft? No Is overhung load applied to the slow speed shaft? Yes Is overhung load radial load only? Yes Calculate equivalent radial load FrE Yes No Calculate equivalent radial load FrE and equivalent thrust load FxE at peak load. Cf : Overhung factor FrE : Equivalent radial load = Peak radial load Fr Cf FxE : Equivalent axial load = Peak thrust load Fx Cf FrA : Allowable radial load FxA : Allowable axial load Refer to the following pages for Cf, FrA, and FxA values. Right angle shaft: Page C42 ~ C45 Parallel shaft: Page C32 ~ C35 Calculate equivalent radial load FrE and calculate equivalent thrust load FxE Check overhung load No Yes Check overhung load FrE FxE FrA FxA FrE FrA Yes No Complete selection Consult us for large overhung load. C 6

128 Reducer Selection Example Conditions Selected item Ambient condition Check ambient condition Motor power igh speed shaft speed Shaft and mounting positions : Indoor, Ambient temperature 40 OK : 55 kw : 500 : Right Angle Shaftorizontal Mounting C2 Standard Specifications oad Condition Type of load, Operating hours : Uniform load4 hours/day Determine service factor SF =.25 C8 Service Factor Calculate equivalent transmission power Slow speed shaft speed ratio Select nominal reduction ratio PE = = kw : /85 = C4 C5 Nomenclature Determine size 9035, Ratio 8 Mechanical power rating P = 72 kw PE P OK Check dimension Check shaft arrangement Check nomenclature R PA9035R2RF8 Ambient temperature : 40 Temperature correction factor without fan Ta Ta = 0.70 Thermal rating without fan PT PT = 48kW PTTa = 33.6 < 55 = PM OUT Temperature correction factor with fan Ta Ta = 0.73 Thermal rating with fan PT PT = 20kW PTTa = 87.6 > 55 = PM OK With fan C8 Selection C50 Standard shaft arrangement configuration in Nomenclature in C8 Selection C8 Selection Standard Specifications C8 Selection Check overhung load Overhung load to high speed shaft : No load Overhung member : Sprocket (Single row) Overhang factor Cf Cf =.0 Radial load position and direction : Center of solid shaft, Downward Peark radial load Fr : 0.6 kn Peark thrust load Fx : 0 kn Equivalent radial load FrE FrE = = 0.6 Allowable radial load 29.4 kn C42 Allowable External oad C42 Allowable External oad OK Complete selection Selected model PA9035R2RF8 Page number of the relevant Table is indicated in the Selection Table. C 7

129 Reducer Service Factor SF Speed Reducer Selection Service Factor SF CRANES Classification of Crane Driven Machine oisting Traverse Motion Travel Motion Slewing Motion Operating ours (hours/day) 3 hrs 0 hrs 24 hrs Boom oisting Group Group Group Group CONVEYORS (General purpose) Uniformly load or fed eavy load Not uniformly fed Reciprocating or shaker EEVATORS Elevators Escalators META MIS Draw bench carriage and main drive Runout table Non reversing Group drives Individual drivers Reversing Slab pushers Shears Wire drawing Wire winding machine META STRIP PROCESSING MACINERY Bridles.50 Coilers & uncoilers.00 Edge trimmers.00 Flatteners.25 oopers (Accumulators).50 Pinch rolls.25 Scrap choppers 2.00 Shears 2.00 Slitters.00 MI, ROTARY TYPE Ball and rod Cement Kilns Kilns (Except cement kilns) Dryers and coolers SEWAGE DISPOSA EQUIPMENT Aerators Bar screens Chemical feeders Dewatering screens Scum breakers Slow or rapid mixers Sludge collectors Thickeners Vacuum filters EXTRUDERS Plastics Rubber FEEDERS Apron Belt Disk Reciprocating Screw The crane classification is based on JIS B "Calculation standard for the structure of crane." Driven Machine RUBBER INDUSTRY Mixers Mixing mill 2 smooth rolls Batch drop mill 2 smooth rolls Cracker warmer 2 roll: corrugated roll Cracker 2 corrugated rolls olding, feed and blend mill 2 rolls Refiner 2 rolls Calenders Operating ours (hours/day) 3 hrs 0 hrs 24 hrs PAPER MI All types incl. Paper making machine AGITATORS AND MIXERS Pure liquids iquids and solids iquids variable density MIXERS Concrete CRUSER Stone or ore BOWERS Centrifugal obe Vane COMPRESSORS Centrifugal obe Reciprocating: multi cylinder Reciprocating: single cylinder FANS Centrifugal Cooling towers Forced draft Suction draft Industrial and mine PUMPS Centrifugal Screw pump Gear pump DREDGES Cable reels Conveyors Cutter head drive Pumps Screen drives Stackers Winches GENERATORS AND EXCITERS AMMER MIS SUGAR INDUSTRY Beet slicer Cane knives Crushers Mills (Slow speed end) Notes: () Values in the above table are based on AGMA standards and SUMITOMO's experience. (2) Values in the above table apply for electric motors as prime movers if prime mover is a multi cylinder combustion engine, 0.25 has to be added to the SF. (3) Consult us for special duty or when special safety specifications are needed. (4) : For SF, consult us. C 8

130 Reducer Service Factor SF Refer to the following for driven machines not shown on the left page. Prime Mover Operating ours Uniform oad Type of oad Moderate Shock oad eavy Shock oad U M Electric Motor 3 hours/day 0 hours/day 24 hours/day Internal Combustion Engine (multi cylinder) 3 hours/day 0 hours/day 24 hours/day Note: Consult us when the operating hours are less than 3 hours/day or when an internal combustion engine (single cylinder) is used. C 9

131 C 0

132 C <Reducer: Right Angle Shaftorizontal Mounting> <Reducer: Right Angle Shaft Upright Mounting> <Reducer: Right Angle Shaft Vertical Mounting> Reducer: Right Angle Selection C 2 Allowable oads C 42 Sheets C 46 C

133 SEECTION Right Angle Shaft Double Ratio MECANICA POWER RATING (kw) Ratio Speed Shaft Speed.Speed Shaft Speed of Reducer Exact Ratio Exact Ratio Exact Ratio orizontal C46 C46 C46 C46 C46 C46 C46 C48 C48 C48 C48 Vertical C72 C72 C72 C72 C72 C72 C72 C74 C74 C74 C74 Upright C88 C88 C88 C88 C88 C88 C88 C90 C90 C90 C90 TERMA POWER RATING (kw) Speed Reducer Selection Ratio Double orizontal Type Double Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Double Upright Type C 2

134 SEECTION Right Angle Shaft Double Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio orizontal Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Double orizontal Type Double Vertical Type Double Upright Type Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 3

135 SEECTION Right Angle Shaft Double Ratio 9.2 MECANICA POWER RATING (kw) Ratio Speed Shaft Speed.Speed Shaft Speed of Reducer Exact Ratio Exact Ratio Exact Ratio orizontal C46 C46 C46 C46 C46 C46 C46 C46 C48 C48 C48 C48 C48 C48 Vertical C72 C72 C72 C72 C72 C72 C72 C72 C74 C74 C74 C74 C74 C74 Upright C88 C88 C88 C88 C88 C88 C88 C88 C90 C90 C90 C90 C90 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Double orizontal Type 9.2 Double Vertical Type 9.2.Speed Shaft Speed Number of Cooling Fans of Reducer Double Upright Type C 4

136 SEECTION Right Angle Shaft Double Ratio 9.2 of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C50 C50 C50 orizontal Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Double orizontal Type 9.2 Double Vertical Type 9.2 Double Upright Type 9.2 Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 5

137 SEECTION Right Angle Shaft Double Ratio MECANICA POWER RATING (kw) Ratio Speed Shaft Speed.Speed Shaft Speed of Reducer Exact Ratio Exact Ratio Exact Ratio orizontal C46 C46 C46 C46 C46 C46 C46 C46 C48 C48 C48 C48 C48 C48 Vertical C72 C72 C72 C72 C72 C72 C72 C72 C74 C74 C74 C74 C74 C74 Upright C88 C88 C88 C88 C88 C88 C88 C88 C90 C90 C90 C90 C90 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Double orizontal Type Double Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Double Upright Type C 6

138 SEECTION Right Angle Shaft Double Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C50 C50 C50 orizontal Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Double orizontal Type Double 500 Vertical 200 Type Double Upright Type Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 7

139 SEECTION Right Angle Shaft Double Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C46 C46 C46 C46 C46 C46 C46 C46 C48 C48 C48 C48 C48 C48 Vertical C72 C72 C72 C72 C72 C72 C72 C72 C74 C74 C74 C74 C74 C74 Upright C88 C88 C88 C88 C88 C88 C88 C88 C90 C90 C90 C90 C90 C90 TERMA POWER RATING (kw) Speed Reducer Selection Ratio Double orizontal Type Double Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Double Upright Type C 8

140 SEECTION Right Angle Shaft Double Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C50 C50 C50 orizontal Vertical Upright Marked models are triple reduction units. Refer to C20 and C2.. For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio 800 Double 500 orizontal 200 Type Double Vertical Type Double Upright Type Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 9

141 SEECTION Right Angle Shaft Triple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C52 C52 C52 C52 C52 C54 C54 C54 C54 C56 Vertical C76 C76 C76 C76 C76 C78 C78 C78 C78 C80 Upright C92 C92 C92 C92 C92 C94 C94 C94 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Triple orizontal Type Triple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Triple Upright Type C 20

142 SEECTION Right Angle Shaft Triple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C56 C56 C56 C56 C56 C58 orizontal C80 C80 C80 C80 C80 Vertical Upright marked models are double reduction units. Refer to C8 and C For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Triple orizontal Type Triple Vertical Type Triple Upright Type Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 2

143 SEECTION Right Angle Shaft Triple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C52 C52 C52 C52 C52 C52 C54 C54 C54 C54 C54 C54 C56 Vertical C76 C76 C76 C76 C76 C76 C78 C78 C78 C78 C78 C78 C80 Upright C92 C92 C92 C92 C92 C92 C94 C94 C94 C94 C94 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Triple orizontal Type Triple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Triple Upright Type C 22

144 SEECTION Right Angle Shaft Triple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C56 C56 C56 C56 C56 C58 C58 C58 C60 C60 C60 orizontal C80 C80 C80 C80 C80 Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Triple orizontal Type Triple Vertical Type Triple Upright Type Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 23

145 SEECTION Right Angle Shaft Triple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C52 C52 C52 C52 C52 C52 C54 C54 C54 C54 C54 C54 C56 Vertical C76 C76 C76 C76 C76 C76 C78 C78 C78 C78 C78 C78 C80 Upright C92 C92 C92 C92 C92 C92 C92 C92 C92 C92 C92 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Triple orizontal Type Triple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Triple Upright Type C 24

146 SEECTION Right Angle Shaft Triple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C56 C56 C56 C56 C56 C58 C58 C58 C60 C60 C60 orizontal C80 C80 C80 C80 C80 Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Triple orizontal Type Triple Vertical Type Triple Upright Type Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 25

147 SEECTION Right Angle Shaft Triple Ratio 56 7 MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C52 C52 C52 C52 C52 C52 C54 C54 C54 C54 C54 C54 C56 Vertical C76 C76 C76 C76 C76 C76 C78 C78 C78 C78 C78 C78 C80 Upright C92 C92 C92 C92 C92 C92 C94 C94 C94 C94 C94 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Triple orizontal Type 56 7 Triple Vertical Type 56 7.Speed Shaft Speed Number of Cooling Fans of Reducer Triple Upright Type C 26

148 SEECTION Right Angle Shaft Triple Ratio 56 7 of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C56 C56 C56 C56 C56 C58 C58 C58 C60 C60 C60 orizontal C80 C80 C80 C80 C80 Vertical Upright marked models are quadruple reduction units. Refer to C30 and C For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Triple orizontal Type 56 7 Triple Vertical Type 56 7 Triple Upright Type 56 7 Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 27

149 SEECTION Right Angle Shaft Triple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio orizontal C52 C52 C52 C54 C54 C54 C56 Vertical C76 C76 C76 C78 C78 C78 C80 Upright C92 C92 C92 C94 C94 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Triple orizontal Type Triple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Triple Upright Type C 28

150 SEECTION Right Angle Shaft Triple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio C56 C56 C56 C56 C56 C58 C58 C58 C60 orizontal C80 C80 C80 C80 C80 Vertical Upright marked models are quadruple reduction units. Refer to C30 and C For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of Cooling Fans.Speed Shaft Speed Ratio Triple orizontal Type Triple Vertical Type Triple Upright Type Temperature Ambient Correction Factor Temperature Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 29

151 SEECTION Right Angle Shaft Quadruple Ratio 7 90 MECANICA POWER RATING (kw) Ratio Speed.Speed Shaft Speed Shaft Speed Exact Ratio of Reducer Exact Ratio Exact Ratio orizontal C62 C62 C64 C64 C64 C66 Vertical C82 C82 C84 C84 C84 C86 Upright C96 C96 C98 C98 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Quadruple orizontal Type 7 90 Quadruple Vertical Type 7 90.Speed Shaft Speed Number of Cooling Fans of Reducer Quadruple Upright Type C 30

152 SEECTION Right Angle Shaft Quadruple Ratio 7 90 of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C66 C66 C68 C68 C70 C70 C70 orizontal C86 C86 Vertical Upright 000 marked models are triple reduction units. Refer to C28 C For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of.speed Cooling Shaft Speed Fans Ratio Quadruple orizontal Type Quadruple Vertical Type Quadruple Upright Type Ambient Temperature Temperature Correction Factor Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 3

153 SEECTION Right Angle Shaft Quadruple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C62 C62 C62 C62 C64 C64 C64 C64 C64 C64 C66 Vertical C82 C82 C82 C82 C84 C84 C84 C84 C84 C84 C86 Upright C96 C96 C96 C96 C98 C98 C98 C98 C98 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Quadruple orizontal Type Quadruple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Quadruple Upright Type C 32

154 SEECTION Right Angle Shaft Quadruple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C66 C66 C66 C66 C66 C68 C68 C68 C70 C70 C70 orizontal C86 C86 C86 C86 C86 Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of.speed Cooling Shaft Speed Fans Ratio Quadruple orizontal Type Quadruple Vertical Type Quadruple Upright Type Ambient Temperature Temperature Correction Factor Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 33

155 SEECTION Right Angle Shaft Quadruple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C62 C62 C62 C62 C64 C64 C64 C64 C64 C64 C66 Vertical C82 C82 C82 C82 C84 C84 C84 C84 C84 C84 C86 Upright C96 C96 C96 C96 C98 C98 C98 C98 C98 C TERMA POWER RATING (kw) Speed Reducer Selection Ratio Quadruple orizontal Type Quadruple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Quadruple Upright Type C 34

156 SEECTION Right Angle Shaft Quadruple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C66 C66 C66 C66 C66 C68 C68 C68 C70 C70 C70 orizontal C86 C86 C86 C86 C86 Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of.speed Cooling Shaft Speed Fans Ratio Quadruple orizontal Type Quadruple Vertical Type Quadruple 500 Upright 200 Type Ambient Temperature Temperature Correction Factor Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 35

157 SEECTION Right Angle Shaft Quadruple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C62 C62 C64 C64 C64 C64 C64 C64 C66 Vertical C82 C82 C84 C84 C84 C84 C84 C84 C86 Upright C96 C96 C98 C98 C98 C98 C98 C98 TERMA POWER RATING (kw) Speed Reducer Selection Ratio Quadruple orizontal Type Quadruple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Quadruple Upright Type C 36

158 SEECTION Right Angle Shaft Quadruple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C66 C66 C66 C66 C66 C68 C68 C68 C70 C70 C70 orizontal C86 C86 C86 C86 C86 Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of.speed Cooling Shaft Speed Fans Ratio Quadruple orizontal Type Quadruple Vertical Type Quadruple Upright Type Ambient Temperature Temperature Correction Factor Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 37

159 SEECTION Right Angle Shaft Quadruple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio Exact Ratio orizontal C62 C62 C64 C64 C64 C64 C64 C64 C66 Vertical C82 C82 C84 C84 C84 C84 C84 C84 C86 Upright C96 C96 C98 C98 C98 C98 C98 C98 TERMA POWER RATING (kw) Speed Reducer Selection Ratio Quadruple orizontal Type Quadruple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Quadruple Upright Type C 38

160 SEECTION Right Angle Shaft Quadruple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio Exact Ratio C66 C66 C66 C66 C66 C68 C68 C68 C70 C70 C70 orizontal C86 C86 C86 C86 C86 Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of.speed Cooling Shaft Speed Fans Ratio Quadruple orizontal Type Quadruple Vertical Type Quadruple Upright Type Ambient Temperature Temperature Correction Factor Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 39

161 SEECTION Right Angle Shaft Quadruple Ratio MECANICA POWER RATING (kw) Ratio Speed.Speed of Reducer Shaft Speed Shaft Speed Exact Ratio Exact Ratio orizontal C62 C64 C64 C64 Vertical C82 C84 C84 C84 Upright C96 C98 C98 C98 TERMA POWER RATING (kw) Speed Reducer Selection Ratio Quadruple orizontal Type Quadruple Vertical Type Speed Shaft Speed Number of Cooling Fans of Reducer Quadruple Upright Type C 40

162 SEECTION Right Angle Shaft Quadruple Ratio of Reducer.Speed.Speed Shaft Speed Shaft Speed Ratio Exact Ratio Exact Ratio C66 C66 C66 C68 orizontal C86 C86 C86 Vertical Upright For marked values, the forced oil lubrication is required at continuous operation. 2. Consult us when the high speed shaft speed is over When the high speed shaft speed is not shown in the table, find it by the interpolation method. 4. When the high speed shaft speed (N) is lower than, find the mechanical power rating (PN) according to the following formula. N PN = P X 5. Shown in the table are the ratings for the slow speed shaft. 6. Refer to C42C45 for the allowable radial and axial load on each shaft. of Reducer Number of.speed Cooling Shaft Speed Fans Ratio Quadruple orizontal Type Quadruple Vertical Type Quadruple Upright Type Ambient Temperature Temperature Correction Factor Without Fan With Fan Shown in the table are the ratings for models without a fan cooling unit and those with a fan. (: none fan, : with a fan) 2. The values are applicable to continuous operation at ambient temperatures of 20 C or less. When the temperature is out of the range, refer to the temperature correction factor shown above. 3. When the high speed shaft speed is not shown in the table, find it by interpolation method. C 4

163 SEECTION Allowable Radial and Axial oads on Slow Speed Right Angle shaft Allowable Radial oad (kn) Sheet Applicable to configurations: Double RR, /.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Speed Reducer Selection Allowable Axial oad (kn) Sheet 2 Applicable to configurations: Double R, R/.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model C 42

164 SEECTION Allowable Radial and Axial oads on Slow Speed Right Angle shaft Triple R, R/Quadruple RR, of Reducer.Speed Shaft Speed Triple RR, /Quadruple R, R of Reducer.Speed Shaft Speed Standard bearing model eavy duty bearing model Unit: kn Standard bearing model eavy duty bearing model Unit: kn Overhang Factor Overhang Member Overhang Factor Sprocket (Single Row) Sprocket (Double Row).25 Gears.25 Notes. The value shown in the table is allowable radial load when it is applied to the center of the solid shaft (except hollow shaft). Consult us when a load is not in the center. 2. Consult us for the blanks in the table. 3. Consult us when the radial load is applied upward. 4. In case of double projection shaft (RB,B) () See sheet when the radial load is applied only to the shaft. (2) See sheet2 when the radial load is applied only to the shaft2. (3) Consult us when the radial load is applied to both shafts. 5. Refer to C6 to check overhang load, and calculate equivalent load at peak load value. Be careful under following condition because large peak load may be generated. Application: When the inertia is large, such as for crane driving, slewing, etc. Motor: inline motor Connecting method: Sprocket or gear Consult us when the peak load is larger than allowable value. RB B of Reducer.Speed Shaft Speed Standard bearing model eavy duty bearing model Unit: kn Double Ratio Triple Ratio Quadruple Ratio C 43

165 SEECTION Allowable Radial and Axial oads on Slow Speed Right Angle shaft Allowable Radial oad (kgf) Sheet Applicable to configurations: Double RR, /.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Speed Reducer Selection Applicable to configurations: Double R, R/.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model Allowable Axial oad (kgf) Sheet 2.Speed Shaft of Reducer Speed Standard bearing model eavy duty bearing model C 44

166 SEECTION Allowable Radial and Axial oads on Slow Speed Right Angle shaft Triple R, R/Quadruple RR, of Reducer.Speed Shaft Speed Triple RR, /Quadruple R,R of Reducer.Speed Shaft Speed Standard bearing model eavy duty bearing model Unit: kgf Standard bearing model eavy duty bearing model Unit: kgf Overhang Factor Overhang Member Overhang Factor Sprocket (Single Row) Sprocket (Double Row).25 Gears.25 Notes. The value shown in the table is allowable radial load when it is applied to the center of the solid shaft (except hollow shaft). Consult us when a load is not in the center. 2. Consult us for the blanks in the table. 3. Consult us when the radial load is applied upward. 4. In case of double projection shaft (RB,B) () See sheet when the radial load is applied only to the shaft. (2) See sheet2 when the radial load is applied only to the shaft2. (3) Consult us when the radial load is applied to both shafts. 5. Refer to C6 to check overhang load, and calculate equivalent load at peak load value. Be careful under following condition because large peak load may be generated. Application: When the inertia is large, such as for crane driving, slewing, etc. Motor: inline motor Connecting method: Sprocket or gear Consult us when the peak load is larger than allowable value. RB B of Reducer.Speed Shaft Speed Standard bearing model eavy duty bearing model Unit: kgf Double Ratio Triple Ratio Quadruple Ratio C 45

167 DIMENSIONS Right Angle Shaft Double orizontal Mounting B A C R 2 FC FD FB FA Y2 X2 Z2 FA S W2 With Fan Refer to the page D20 for details. igh Speed Shaft DP DP FY E F E E2 Speed Reducer Selection DP2 4 J K K D G Y G ocation of oil fill and air vent changes for with reduction ratio 6.3 or 7.. Refer to Fig.. [Fig. ] ocation of oil fill and air vent for with reduction ratio 6.3 or 7. A B C D E E E2 F FY G J K O P Y O P ight Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD k6 M2/ /4" 3/4" k6 M2/ /4" 3/4" k6 M6/ /4" 3/4" k6 M6/ /4" 3/4" k6 M6/ " " k6 M6/ " " k6 M6/ " " k6 M6/ " " Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D2 for dimensions shown in these drawings. 4. Refer to the page D 24 for the dimension of optional parts. C 46

168 DIMENSIONS Right Angle Shaft Double orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T TU2 R RR RB R B V2 Standard Shaft Arrangement Configuration U2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P A 905 R 2 PARAMAX orizontal Monoblock 9055 Right Angle Double Nomenclature ow Speed Shaft Arrangement Shaft Type Fan P A R 2 Ratio R RR RB R B (blank) F : Without Fan : With Fan (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 47

169 DIMENSIONS Right Angle Shaft Double orizontal Mounting B A C R 2 FC FD FB FA Y2 X2 Z2 FA S W2 With Fan Refer to the page D20 for details. igh Speed Shaft FY E F E E2 Speed Reducer DP G K D Y 4 J K G O P Selection A B C D E E E2 F FY G J K O P Y ight Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD m6 M20/ " m6 M20/ " m6 M20/ " m6 M20/ " m6 M20/ " m6 M20/ " Fan DP Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D4 for dimensions not shown in these drawings. 4. Refer to the page D27 for the dimension of optional parts. C 48

170 DIMENSIONS Right Angle Shaft Double orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V5 P D 9060 R 2 PARAMAX orizontal Split 9085 Right Angle Double Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Arrangement Shaft Type Fan P D R 2 Ratio R RR RB R B (blank) F : Without Fan : With Fan (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 49

171 DIMENSIONS Right Angle Shaft Double orizontal Mounting 9095, 905, 95 B A C R 2 FC FD FB FA Y2 X2 Z2 FA S W2 With Fan Refer to the page D20 for details. igh Speed Shaft E 2 F M Speed Reducer DP G D Y Y 6 J G O P Selection A B C D E F G 2 J M O P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD m6 M24/ /2" m6 M24/ /2" m6 M24/ /2" In case of continuous load, the forced oil lubrication is necessary. For details, consult us. Fan DP Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Consult us for the dimensions not shown in these drawings. 4. Refer to the page D 30 for the dimension of optional parts. C 50

172 DIMENSIONS Right Angle Shaft Double orizontal Mounting 9095, 905, 95 Slow Speed Shaft V Y X U Z W Solid Shaft TU T ollow Shaft (Shrink Disk Type) V2 U2 TU2 T2 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V m6 M30/ m6 M30/ m6 M30/ Unit: mm V3 P D 9095 R 2 PARAMAX orizontal Split 95 Right Angle Double Steel ousing A Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Shaft Arrangement Type P D R 2 A Fan Ratio R RR RB R B (blank) F : Without Fan : With Fan (blank):solid Shaft T : ollow Shaft (Shrink Disk type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 5

173 DIMENSIONS Right Angle Shaft Triple orizontal Mounting B A C R 2 FC FD FB FA Y2 X2 B BD Z2 E FA DP F E S W2 With Fan Refer to the page D2 for details. igh Speed Shaft Speed Reducer DP2 4 J K K D G Y G O P Selection A B C D E E F G J K O P Y igh Speed Shaft Fan Backstop Wt. Oil Key DP DP2 Qty. R S W2/Depth FA FB FC FD BD B kg X2 Y2 Z k6 M0/ /4" 3/4" k6 M0/ /4" 3/4" k6 M0/ " " k6 M0/ " " k6 M2/ " " k6 M2/ " " Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D2 for dimensions shown in these drawings. 4. Refer to the page D 24 for the dimension of optional parts. C 52

174 DIMENSIONS Right Angle Shaft Triple orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P A 9030 R 3 PARAMAX orizontal Monoblock 9055 Right Angle Triple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Arrangement Shaft Type Option P A R 3 Ratio R RR RB R B (blank) F B FB : Without Fan : With Fan : With Backstop : With Fan & Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 53

175 DIMENSIONS Right Angle Shaft Triple orizontal Mounting B A C R 2 FC FD FB FA Y2 X2 Z2 B FA S W2 BD With Fan Refer to the page D2 for details. igh Speed Shaft E F E E2 Speed Reducer DP G K D Y 4 J K G O P Selection A B C D E E E2 F G J K O P Y igh Speed Shaft Fan Backstop Wt. Oil Key DP Qty. R S W2/Depth FA FB FC FD BD B kg X2 Y2 Z k6 M6/ " k6 M6/ " k6 M6/ " k6 M6/ " m6 M20/ " m6 M20/ " Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D4 for dimensions not shown in these drawings. 4. Refer to the page D 27 for the dimension of optional parts. C 54

176 DIMENSIONS Right Angle Shaft Triple orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V5 P D 9060 R 3 PARAMAX orizontal Split 9085 Right Angle Triple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Arrangement Shaft Type Option P D R 3 Ratio R RR RB R B (blank) F B FB : Without Fan : With Fan : With Backstop : With Fan & Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 55

177 DIMENSIONS Right Angle Shaft Triple orizontal Mounting B (9090) A B (90595) C R 2 FC FD FB FA Y2 X2 Z2 FA S W2 With Fan Refer to the page D2 for details. igh Speed Shaft E F E E2 Speed Reducer DP G K K2 K3 D Y Y 6 J G O P Selection A B C D E E E2 F G J K K2 K3 O P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" Fan DP Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D 6 for dimensions shown in these drawings. 4. Refer to the page D 30 for the dimension of optional parts. C 56

178 DIMENSIONS Right Angle Shaft Triple orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft TU T ollow Shaft (Shrink Disk Type) V2 U2 TU2 T2 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V3 P D 9090 R 3 PARAMAX orizontal Split 95 Right Angle Triple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Arrangement Shaft Type Fan P D R 3 Ratio R RR RB R B (blank): Without Fan F : With Fan (blank) :Solid Shaft T : ollow Shaft (Shrink Disk type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 57

179 DIMENSIONS Right Angle Shaft Triple orizontal Mounting Y2 X2 Z2 Y X Z S W2 igh Speed Shaft V W Slow Speed Shaft F E E2 B A C R 2 U E TU T DP K K2 K3 D 6 J G Y Y G O P Speed Reducer Selection Ratio A B C D E E E2 F G J K K2 K3 O P Y 98 A Ratio igh Speed Shaft Wt. Oil Key DP Qty. R S W2/Depth kg X2 Y2 Z A 70 85m6 M20/ /2" m6 M24/ /2" m6 M24/ /2" m6 M24/ /2" m6 M24/ /2" Solid Shaft Ratio Key TU T U V W/Depth X Y Z 98 A m6 M36/ m6 M36/ m6 M36/ m6 M36/ m6 M36/ Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Consult us for the dimensions not shown in these drawings. C 58

180 DIMENSIONS Right Angle Shaft Triple orizontal Mounting Standard Shaft Arrangement Configuration R RR RB R B Nomenclature P D R Shaft Arrangement R RR RB R B Fan Ratio (blank) :Without Fan F : With Fan Ratio P D 98 R 3 PARAMAX orizontal Split 926 Right Angle Triple Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 59

181 DIMENSIONS Right Angle Shaft Triple orizontal Mounting Y2 X2 Z2 Y X Z S W2 igh Speed Shaft W V W Slow Speed Shaft B A TU C R U T 2 E F E K K2 M DP G D G 6 J Y Y3 G O P Speed Reducer Selection A B C D E E F G J K K2 M O P Y Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 DP Wt. kg Oil Qty m6 M24/ /2" m6 M24/ /2" m6 M24/ /2" Solid Shaft Key TU T U V W/Depth W X Y Z m6 M36/ m6 M36/ m6 M36/ Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Consult us for the dimensions not shown in these drawings. C 60

182 DIMENSIONS Right Angle Shaft Triple orizontal Mounting Standard Shaft Arrangement Configuration R RR RB R B Nomenclature P D R 3 A Shaft Arrangement R RR RB R B Fan Ratio (blank) :Without Fan F : With Fan P D 928 R 3 PARAMAX orizontal Split 936 Right Angle Triple Steel ousing A Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 6

183 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting B A C R 2 Y2 X2 Z2 B S W2 BD igh Speed Shaft DP E F E Speed Reducer Selection DP2 K G D Y 4 J K G O P A B C D E E F G J K O P Y igh Speed Shaft Key Backstop R S W2/Depth X2 Y2 Z2 2 BD B k6 M0/ " " k6 M0/ " " k6 M0/ " " k6 M0/ " " DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D3 for dimensions shown in these drawings. 4. Refer to the page D 24 for the dimension of optional parts. C 62

184 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P A 9040 R 4 PARAMAX orizontal Monoblock 9055 Right Angle Quadruple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Arrangement Shaft Type Option P A R 4 Ratio R RR RB R B (blank) : Without Option B : With Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 63

185 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting B C A R 2 Y2 X2 E Z2 F E E2 B S W2 igh Speed Shaft BD Speed Reducer Selection DP 4 J K K D G Y G O P A B C D E E E2 F G J K O P Y igh Speed Shaft Backstop R S W2/Depth X2 Y2 Z2 2 BD B k6 M0/ " k6 M0/ " k6 M2/ " k6 M2/ " k6 M6/ " k6 M6/ " Key DP Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D5 for dimensions shown in these drawings. 4. Refer to the page D 27 for the dimension of optional parts. C 64

186 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V5 P D 9060 R 4 PARAMAX orizontal Split 9085 Right Angle Quadruple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Shaft Arrangement Type Option P D R 4 Ratio R RR RB R B (blank) : Without Option B : With Backstop (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 65

187 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting B (9090) B (90595) C A R 2 Y2 X2 Z2 S W2 igh Speed Shaft E F E E2 Speed Reducer Selection DP G K K2 K3 D Y Y 6 J G O P A B C D E E E2 F G J K K2 K3 O P Y igh Speed Shaft Wt. Oil Key DP Qty. R S W2/Depth kg X2 Y2 Z k6 M6/ /2" k6 M6/ /2" m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D6 for dimensions shown in these drawings. 4. Refer to the page D 30 for the dimension of optional parts. C 66

188 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting Slow Speed Shaft V Y X U Z W Solid Shaft TU T ollow Shaft (Shrink Disk Type) V2 U2 TU2 T2 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V3 P D 9090 R 4 PARAMAX orizontal Split 95 Right Angle Quadruple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Shaft Arrangement Type P D R 4 Ratio R RR RB R B (blank):solid Shaft T : ollow Shaft (Shrink Disk type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 67

189 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting Y2 X2 Z2 Y X Z S W2 igh Speed Shaft V W Slow Speed Shaft B A TU C R U T F E E2 2 E DP G K K2 K3 D Y Y 6 J G O P Speed Reducer Selection A B C D E E E2 F G J K K2 K3 O P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 DP Wt. kg Oil Qty m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" Solid Shaft Key TU T U V W/Depth X Y Z m6 M36/ m6 M36/ m6 M36/ Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Consult us for the dimensions not shown in these drawings. C 68

190 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting Standard Shaft Arrangement Configuration R RR RB R B Nomenclature P D R Shaft Arrangement R RR RB R B Ratio Ratio P D 98 R 4 PARAMAX orizontal Split 926 Right Angle Quadruple Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 69

191 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting Y2 X2 Z2 Y X Z B A S W2 igh Speed Shaft W V W Slow Speed Shaft TU C R U T 2 E F E K K2 M DP G D Y G Y3 6 J G O P Speed Reducer Selection A B C D E E F G J K K2 M O P Y Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 DP Wt. kg Oil Qty m6 M20/ /2" m6 M20/ /2" m6 M20/ /2" Solid Shaft Key TU T U V W/Depth W X Y Z m6 M36/ m6 M36/ m6 M36/ Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Consult us for the dimensions not shown in these drawings. C 70

192 DIMENSIONS Right Angle Shaft Quadruple orizontal Mounting Standard Shaft Arrangement Configuration R RR RB R B Nomenclature P D R 4 A Shaft Arrangement R RR RB R B Ratio Ratio P D 928 R 4 PARAMAX orizontal Split 936 Right Angle Quadruple Steel ousing A Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 7

193 DIMENSIONS Right Angle Shaft Double Vertical Mounting B A C R 2 N P P N NP N2 E2 E3 DP C FC FD M FA Y2 X2 Z2 FA E O FB S W2 Speed Reducer M DP2 G RI K D Y K 4 J G With Fan Refer to the page D20 for details. igh Speed Shaft Selection A B C C D E E2 E3 G RI J K M N N N2 NP O P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD k6 M2/ /4" 3/4" k6 M2/ /4" 3/4" k6 M6/ /4" 3/4" k6 M6/ /4" 3/4" k6 M6/ " " k6 M6/ " " k6 M6/ " " k6 M6/ " " Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D2 for dimensions shown in these drawings. 4Refer to the page D 25 for the dimension of optional parts. C 72

194 DIMENSIONS Right Angle Shaft Double Vertical Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 TU2 Standard Shaft Arrangement Configuration R RR U2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P V A 905 R 2 PARAMAX Vertical Monoblock 9055 Right Angle Double Nomenclature ow Speed Shaft Shaft Arrangement Type Fan P V A R 2 Ratio R RR (blank): Without Fan F : With Fan (blank) :Solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 73

195 DIMENSIONS Right Angle Shaft Double Vertical Mounting P B A C R 2 N P N P NP E2 E3 DP C FC FD M FA Y2 X2 Z2 FA M E O FB S W2 RI DP2 G K D Y K 4 J G With Fan Refer to the page D20 for details. igh Speed Shaft Speed Reducer Refer to footnote 3. Selection A B C C D E E2 E3 G RI J K M N N NP O P P Y igh Speed Shaft Fan Key Wt. DP DP2 R S W2/Depth FA FB FC FD kg X2 Y2 Z m6 M20/ " " m6 M20/ " " m6 M20/ " " m6 M20/ " " m6 M20/ " " m6 M20/ " " 560 Oil Qty. Refer to the next page. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement RR is equipped with oil gauge. Refer to the page D Refer to the page D4 for dimensions shown in these drawings. 5. Refer to the page D 28 for the dimension of optional parts. C 74

196 DIMENSIONS Right Angle Shaft Double Vertical Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. V5 P V D 9060 R 2 PARAMAX Vertical Split 9085 Right Angle Double Standard Shaft Arrangement Configuration R RR Nomenclature ow Speed Shaft Shaft Arrangement Type Fan P V D R 2 Ratio Approx. Oil Qty. Ratio Unit: liters R RR (blank): Without Fan F : With Fan (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 75

197 DIMENSIONS Right Angle Shaft Triple Vertical Mounting B A C R 2 N P N P NP N2 E2 E3 DP C FC FD M FA Y2 X2 Z2 FA M E O FB S W2 RI Speed Reducer DP2 G K D Y K 4 J G With Fan Refer to the page D2 for details. igh Speed Shaft Selection A B C C D E E2 E3 G RI J K M N N N2 NP O P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD k6 M0/ /4" 3/4" k6 M0/ /4" 3/4" k6 M0/ " " k6 M0/ " " k6 M2/ " " k6 M2/ " " Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D2 for dimensions shown in these drawings. 4. Refer to the page D 25 for the dimension of optional parts. C 76

198 Slow Speed Shaft V Y DIMENSIONS Right Angle Shaft Triple Vertical Mounting X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P V A 9030 R 3 PARAMAX Vertical Monoblock 9055 Right Angle Triple Standard Shaft Arrangement Configuration R RR Nomenclature ow Speed Shaft Shaft Arrangement Type Fan P V A R 3 Ratio R RR (blank): Without Fan F : With Fan (blank) T K :Solid Shaft : ollow Shaft (Shrink Disk type) : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 77

199 DIMENSIONS Right Angle Shaft Triple Vertical Mounting P B A C R 2 DP M N E O P N P NP E2 E3 C FC FD M FA Y2 X2 FB Z2 FA S W2 RI DP2 G K D Y K 4 J G With Fan Refer to the page D2 for details. igh Speed Shaft Speed Reducer Refer to footnote 3. Selection A B C C D E E2 E3 G RI J K M N N NP O P P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD k6 M6/ " " k6 M6/ " " k6 M6/ " " k6 M6/ " " m6 M20/ " " m6 M20/ " " Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement RR is equipped with oil gauge. Refer to the page D Refer to the page D4 for dimensions shown in these drawings. 5. Refer to the page D 28 for the dimension of optional parts. C 78

200 V Y DIMENSIONS Right Angle Shaft Triple Vertical Mounting Slow Speed Shaft X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. V5 P V D 9060 R 3 PARAMAX Vertical Split 9085 Right Angle Triple Standard Shaft Arrangement Configuration R RR Nomenclature ow Speed Shaft Shaft Arrangement Type Fan P V D R 3 Ratio R RR (blank): Without Fan F : With Fan (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 79

201 DIMENSIONS Right Angle Shaft Triple Vertical Mounting Refer to footnote 3. B A C R 2 N M M Speed Reducer Selection E O E4 N P P P NP DP2 E2 E2 (9090,9095) E3 C FC FD FA Y2 X2 FB Z2 FA S W2 RI DP K G D Y K G 4 J With Fan Refer to the page D2 for details. igh Speed Shaft A B C C D E E2 E3 E4 G RI J K M N N NP O P P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD m6 M20/ " /2" m6 M20/ " /2" m6 M20/ " /2" m6 M20/ " /2" m6 M20/ " /2" m6 M20/ " /2" ~ 95 Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement RR is equipped with oil gauge. Refer to the page D3. 4. Refer to the page D6 for dimensions shown in these drawings. 5. Refer to the page D 3 for the dimension of optional parts. C 80

202 V Y DIMENSIONS Right Angle Shaft Triple Vertical Mounting Slow Speed Shaft X U Z W Solid Shaft TU T ollow Shaft (Shrink Disk Type) V2 Solid Shaft ollow Shaft (Shrink Disk Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm U2 TU2 T2 Refer to the page D8 for details. V3 P V D 9090 R 3 PARAMAX Vertical Split 95 Right Angle Triple Standard Shaft Arrangement Configuration R RR Nomenclature ow Speed Shaft Shaft Arrangement Type Fan P V D R 3 Ratio R RR (blank): Without Fan F : With Fan (blank):solid Shaft T : ollow Shaft (Shrink Disk type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 8

203 DIMENSIONS Right Angle Shaft Quadruple Vertical Mounting B A C R 2 N P N P NP C E2 E3 DP2 M M2 Y2 X2 Z2 M E O RI S W2 Speed Reducer DP G K D Y K 4 J G igh Speed Shaft Selection A B C C D E E2 E3 G RI J K M M2 N N NP O P Y igh Speed Shaft DP DP2 Wt. kg Oil Qty. R S W2/Depth X2 Y2 Z k6 M0/ " " k6 M0/ " " k6 M0/ " " k6 M0/ " " Key Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D3 for dimensions shown in these drawings. 4. Refer to the page D 25 for the dimension of optional parts. C 82

204 DIMENSIONS Right Angle Shaft Quadruple Vertical Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P V A 9040 R 4 PARAMAX Vertical Monoblock 9055 Right Angle Quadruple Standard Shaft Arrangement Configuration R Nomenclature ow Speed Shaft Shaft Arrangement Type P V A R 4 Ratio R (blank) :Solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 83

205 DIMENSIONS Right Angle Shaft Quadruple Vertical Mounting P B A C R 2 N N P P NP E2 E3 C DP M M2 Y2 X2 M E O Z2 S W2 RI Speed Reducer DP2 Refer to K footnote 3. K 4 J G D Y G igh Speed Shaft Selection A B C C D E E2 E3 G RI J K M M2 N N NP O P P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z k6 M0/ " " k6 M0/ " " k6 M2/ " " k6 M2/ " " k6 M6/ " " k6 M6/ " " DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement R is equipped with oil gauge. Refer to the page D Refer to the page D5 for dimensions shown in these drawings. 5. Refer to the page D 28 for the dimension of optional parts. C 84

206 DIMENSIONS Right Angle Shaft Quadruple Vertical Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. V5 P V D 9060 R 4 PARAMAX Vertical Split 9085 Right Angle Quadruple Standard Shaft Arrangement Configuration R Nomenclature ow Speed Shaft Shaft Arrangement Type P V D R 4 Ratio R (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 85

207 DIMENSIONS Right Angle Shaft Quadruple Vertical Mounting Refer to footnote 3. B A C R 2 P P P N N NP DP2 E2 E3 C E O M M E4 Y2 X2 S Z2 W2 RI Speed Reducer Selection DP G K D Y K 4 J G igh Speed Shaft A B C C D E E2 E3 E4 G RI J K M N N NP O P P Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 DP DP2 Wt. kg Oil Qty k6 M6/ " /2" k6 M6/ " /2" m6 M20/ " /2" m6 M20/ " /2" m6 M20/ " /2" m6 M20/ " /2" Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Shaft arrangement R is equipped with oil gauge. Refer to the page D3. 4. Refer to the page D6 for dimensions shown in these drawings. 5. Refer to the page D 3 for the dimension of optional parts. C 86

208 Slow Speed Shaft V DIMENSIONS Right Angle Shaft Quadruple Vertical Mounting Y X U Z W Solid Shaft TU T ollow Shaft (Shrink Disk Type) V2 U2 TU2 T2 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V3 P V D 9090 R 4 PARAMAX Vertical Split 95 Right Angle Quadruple Standard Shaft Arrangement Configuration R Nomenclature ow Speed Shaft Shaft Arrangement Type P V D R 4 Ratio R (blank):solid Shaft T : ollow Shaft (Shrink Disk type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 87

209 DIMENSIONS Right Angle Shaft Double Upright Mounting FA FA FB DP B A C R 2 FC Y2 FD X2 Z2 Y3 S W2 igh Speed Shaft With Fan Refer to the page D20 for details. 2 E 4 J2 K3 K3 D G Y4 G Speed Reducer Selection K2 Y P K2 A B C D E E F G 2 J J2 K K2 K3 P Y Y2 Y3 Y4 K 4 J Y2 E F K DP igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD k6 M2/ /4" 3/4" k6 M2/ /4" 3/4" k6 M6/ /4" 3/4" k6 M6/ /4" 3/4" k6 M6/ " " k6 M6/ " " k6 M6/ " " k6 M6/ " " Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 4. Refer to the page D 26 for the dimension of optional parts. 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D2 for dimensions shown in these drawings. Fan DP DP2 Wt. kg Oil Qty. C 88

210 DIMENSIONS Right Angle Shaft Double Upright Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T TU2 R RR RB R B V2 Standard Shaft Arrangement Configuration U2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P W A 905 R 2 PARAMAX Upright Monoblock 9055 Right Angle Double Nomenclature ow Speed Shaft Shaft Arrangement Type Fan P W A R 2 Ratio R RR RB R B (blank): Without Fan F : With Fan (blank) T K :Solid Shaft : ollow Shaft (Shrink Disk type) : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 89

211 DIMENSIONS Right Angle Shaft Double Upright Mounting FA FA DP FC FD FB Y2 X2 Z2 O P S W2 igh Speed Shaft With Fan Refer to the page D20 for details. E B A C R 2 DP2 4 J K D Y G Speed Reducer K G Selection A B C D E E F G J K O P Y E F igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD m6 M20/ " " m6 M20/ " " m6 M20/ " " m6 M20/ " " m6 M20/ " " m6 M20/ " " Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D4 for dimensions shown in these drawings. 4. Refer to the page D 29 for the dimension of optional parts. C 90

212 DIMENSIONS Right Angle Shaft Double Upright Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V5 P W D 9060 R 2 PARAMAX Upright Split 9085 Right Angle Double Wall Mount W Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Shaft Arrangement Type P W D R 2 W Fan Ratio R RR RB R B (blank) : Without Fan F : With Fan (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 9

213 DIMENSIONS Right Angle Shaft Triple Upright Mounting FA FA DP FB Y2 X2 FC Z2 FD Y3 S W2 2 igh Speed Shaft With Fan Refer to the page D2 for details. E B A C R 2 4 J2 K3 K3 D G Y4 G Speed Reducer Selection K2 Y P K2 A B C D E E F G 2 J J2 K K2 K3 P Y Y2 Y3 Y K 4 J Y2 E F K DP2 igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD k6 M0/ /4" 3/4" k6 M0/ /4" 3/4" k6 M0/ " " k6 M0/ " " k6 M2/ " " k6 M2/ " " Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D2 for dimensions shown in these drawings. 4. Refer to the page D 26 for the dimension of optional parts. C 92

214 Slow Speed Shaft V Y DIMENSIONS Right Angle Shaft Triple Upright Mounting X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M20/ m6 M20/ m6 M24/ m6 M24/ m6 M24/ m6 M24/ Unit: mm V5 P W A 9030 R 3 PARAMAX Upright Monoblock 9055 Right Angle Triple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Shaft Arrangement Type Fan P W A R 3 Ratio R RR RB R B (blank): Without Fan F : With Fan (blank) :Solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 93

215 DIMENSIONS Right Angle Shaft Triple Upright Mounting FA FB FA DP Y2 X2 Z2 O P FC FD S W2 igh Speed Shaft With Fan Refer to the page D2 for details. E Speed Reducer B A C R 2 4 J K K D Y G X G Selection A B C D E E F G J K O P X Y DP2 E F igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 FA FB FC FD k6 M6/ " " k6 M6/ " " k6 M6/ " " k6 M6/ " " m6 M20/ " " m6 M20/ " " Fan DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D4 for dimensions shown in these drawings. 4. Refer to the page D 29 for the dimension of optional parts. C 94

216 Slow Speed Shaft V Y DIMENSIONS Right Angle Shaft Triple Upright Mounting X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V5 P W D 9060 R 3 PARAMAX Upright Split 9085 Right Angle Triple Wall Mount W Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Arrangement Shaft Type Fan P W D R 3 W Ratio R RR RB R B (blank): Without Fan F : With Fan (blank) :Solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 95

217 DIMENSIONS Right Angle Shaft Quadruple Upright Mounting Y2 X2 Z2 DP A C R 2 4 J2 K3 K3 G B D Y4 Y3 S W2 igh Speed Shaft 2 E G Speed Reducer Selection K2 Y P K2 K 4 J Y2 E F K DP2 A B C D E E F G 2 J J2 K K2 K3 P Y Y2 Y3 Y igh Speed Shaft Key R S W2/Depth X2 Y2 Z k6 M0/ " " k6 M0/ " " k6 M0/ " " k6 M0/ " " DP DP2 Wt. kg Oil Qty. Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D3 for dimensions shown in these drawings. 4. Refer to the page D 26 for the dimension of optional parts. C 96

218 DIMENSIONS Right Angle Shaft Quadruple Upright Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M24/ m6 M24/ m6 M24/ V5 Unit: mm P W A 9040 R 4 PARAMAX Upright Monoblock 9055 Right Angle Quadruple Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Shaft Arrangement Type P W A R 4 Ratio R RR RB R B (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 97

219 DIMENSIONS Right Angle Shaft Quadruple Upright Mounting DP Y2 X2 Z2 O P S W2 igh Speed Shaft E B A C R 2 4 J K K D G Y G X Speed Reducer Selection A B C D E E F G J K O P X Y DP2 E F igh Speed Shaft Key R S W2/Depth X2 Y2 Z2 2 DP DP2 Wt. kg Oil Qty k6 M0/ " " k6 M0/ " " k6 M2/ " " k6 M2/ " " k6 M6/ " " k6 M6/ " " Unit: mm. Key and keyways are based on ISO R Close keys (JIS B30996 Parallel key in fastening type) 2. The oil quantity is approximate. Oil shall be supplied within the range shown on the oil gauge. 3. Refer to the page D5 for dimensions shown in these drawings. 4. Refer to the page D 29 for the dimension of optional parts. C 98

220 DIMENSIONS Right Angle Shaft Quadruple Upright Mounting Slow Speed Shaft V Y X U Z W Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) TU T V2 U2 TU2 T2 Refer to the page D8 for details. V3 V4 U4 TU4 T4 Refer to the page D8 for details. Solid Shaft ollow Shaft (Shrink Disk Type) ollow Shaft (Key Type) Key TU T U V W/Depth X Y Z TU2 T2 U2 V2 V3 TU4 T4 U4 V4 V m6 M24/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ m6 M30/ Unit: mm V5 P W D 9060 R 4 PARAMAX Upright Split 9085 Right Angle Quadruple Wall Mount W Standard Shaft Arrangement Configuration R RR RB R B Nomenclature ow Speed Shaft Shaft Arrangement Type P W D R 4 W Ratio R RR RB R B (blank):solid Shaft T : ollow Shaft (Shrink Disk type) K : ollow Shaft (Key type) Ratio Air Breather Air Vent Oil Fill Drain Plug Dip Stick Oil Gauge Inspection Cover Oil Pump Backstop (Option) Opposite Side C 99

221 C 00

222 C <Reducer: Parallel Shaft orizontal Mounting> <Reducer: Parallel Shaft Upright Mounting> <Reducer: Parallel Shaft Vertical Mounting> Reducer: Parallel shaft Selection C 02 Allowable oads C 32 Sheets C 36 C 0

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