Quick review:
Model no.: BMER-2-300-FH-SW
matching White motor RE530/531 ;Parker TG series motor
displacement | 300 ml/r |
flange | Magneto mount 6-hole |
pilot | 82.55*2.8 |
ports | BMER-2-300-FH-SW |
output shaft | Shaft Ø25.4 ,splined key SAE 6B |
rotation | right |
paint | black |
Specification:
Type | BMER | BMER | BMER | BMER | BMER | BMER | BMER | BMER | BMER | BMER | BMER | |
125 | 160 | 200 | 230 | 250 | 300 | 350 | 375 | 475 | 540 | 750 | ||
Geometric displacement (cm3/rev.) | 118 | 156 | 196 | 228 | 257 | 296 | 345 | 371 | 462 | 540 | 745 | |
Max. speed (rpm) | cont. | 360 | 375 | 330 | 290 | 290 | 250 | 220 | 200 | 160 | 140 | 100 |
int. | 490 | 470 | 425 | 365 | 350 | 315 | 270 | 240 | 195 | 170 | 120 | |
Max. torque (N•m) | cont. | 325 | 450 | 530 | 625 | 700 | 810 | 905 | 990 | 1085 | 980 | 1050 |
int. | 380 | 525 | 600 | 710 | 790 | 930 | 1035 | 1140 | 1180 | 1240 | 1180 | |
peak | 450 | 590 | 750 | 870 | 980 | 1120 | 1285 | 1360 | 1260 | 1380 | 1370 | |
Max. output (kW) | cont. | 12.0 | 15.0 | 15.5 | 16.0 | 17.5 | 18.0 | 17.5 | 16.5 | 14.5 | 11.5 | 8.0 |
int. | 14.0 | 17.5 | 18.0 | 19.0 | 20.0 | 21.0 | 20.0 | 19.0 | 16.5 | 15.0 | 10.0 | |
Max. pressure drop (MPa) | cont. | 20.5 | 20.5 | 20.5 | 20.5 | 20.5 | 20.5 | 20.5 | 20.5 | 17.5 | 14 | 10.5 |
int. | 24 | 24 | 24 | 24 | 24 | 24 | 24 | 24 | 19 | 17.5 | 12 | |
peak | 27.6 | 27.6 | 27.6 | 27.6 | 27.6 | 27.6 | 27.6 | 27.6 | 20.5 | 20.5 | 14 | |
Max. flow (L/min) | cont. | 45 | 60 | 70 | 70 | 75 | 80 | 80 | 75 | 75 | 75 | 75 |
int. | 60 | 75 | 85 | 85 | 90 | 95 | 95 | 90 | 90 | 90 | 90 |
Typical Application Scenarios
Engineering machinery: excavator slewing motor, loader drive wheel motor.
Agricultural machinery: combine harvester cutting table drive, tractor hydraulic suspension system.
Marine equipment: ship anchor, underwater robot propeller.
Metallurgical equipment: rolling mill press down device, steel mill ladle tipping mechanism.
With the core advantages of “low speed and high torque, compact structure and shock resistance”, orbital motor is a cost-effective power element in the industrial field with outstanding performance under heavy load and severe working conditions. When choosing an orbital motor, it is necessary to weigh its advantages and disadvantages according to the actual needs (such as speed, torque, environmental conditions) in order to realize the best performance.
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