Brushless directa motoria currentis (BLDC) parva est sed potens species motoris electrici qui directo currenti ut suae potentiae fonte utitur. Propter amplitudinem et efficaciam, BLDC motores in favore et numero applicationum augentur.
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Apicem Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | mN.m | A | W | mm | g.cm2 | / | Kg | |
| JK33BL38-24 | 3 | 4 | 24 | 3000 | 22 | 1.5 | 7 | 38 | 7.95 | JKBLD120 | 0.085 |
| JK33BL80-24 | 3 | 4 | 24 | 7800 | 50 | 5.6 | 40 | 80 | 23.55 | JKBLD120 | 0.2 |
| JK33BL80-48 | 3 | 4 | 48 | 10000 | 40 | 2.9 | 40 | 80 | 23.55 | JKBLD120 | 0.2 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | mN.m | A | W | mm | g.cm2 | / | Kg | |
| JK42BL30 | 3 | 8 | 24 | 3500 | 18 | 1.5 | 6.5 | 30 | 15.6 | JKBLD120 | 0.25 |
| JK42BL60 | 3 | 8 | 36 | 4000 | 80 | 5 | 32 | 60 | 33 | JKBLD120 | 0.35 |
| JK42BL85 | 3 | 8 | 24 | 4000 | 150 | 7.5 | 62 | 85 | 84 | JKBLD120 | 0.7 |
| JK42BL93 | 3 | 8 | 24 | 6300 | 115 | 10 | 76 | 93 | 94 | JKBLD120 | 0.8 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | W | mm | g.cm2 | / | Kg | |
| JK42BLS01 | 3 | 8 | 24 | 4000 | 0.0625 | 1.8 | 26 | 41 | 24 | JKBLD120 | 0.3 |
| JK42BLS02 | 3 | 8 | 24 | 4000 | 0.125 | 3.3 | 52.5 | 61 | 48 | JKBLD120 | 0.45 |
| JK42BLS03 | 3 | 8 | 24 | 4000 | 0.185 | 4.8 | 77.5 | 81 | 72 | JKBLD120 | 0.65 |
| JK42BLS04 | 3 | 8 | 24 | 4000 | 0.25 | 6.3 | 105 | 100 | 96 | JKBLD120 | 0.8 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | W | mm | g.cm2 | / | Kg | |
| JK57BLS005 | 3 | 4 | 36 | 4000 | 0.055 | 1.2 | 23 | 37 | 30 | JKBLD300 | 0.33 |
| JK57BLS01 | 3 | 4 | 36 | 4000 | 0.11 | 2.0 | 46 | 47 | 75 | JKBLD300 | 0.44 |
| JK57BLS02 | 3 | 4 | 36 | 4000 | 0.22 | 3.6 | 92 | 67 | 119 | JKBLD300 | 0.75 |
| JK57BLS03 | 3 | 4 | 36 | 4000 | 0.33 | 5.3 | 138 | 87 | 173 | JKBLD300 | 1.0 |
| JK57BLS04 | 3 | 4 | 36 | 4000 | 0.44 | 6.8 | 184 | 107 | 230 | JKBLD300 | 1.25 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | W | mm | g.cm2 | / | Kg | |
| JK57BLF005 | 3 | 4 | 36 | 4000 | 0.055 | 1.2 | 23 | 37 | 30 | JKBLD300 | 0.33 |
| JK57BLF01 | 3 | 4 | 36 | 4000 | 0.11 | 2.0 | 46 | 47 | 75 | JKBLD300 | 0.44 |
| JK57BLF02 | 3 | 4 | 36 | 4000 | 0.22 | 3.6 | 92 | 67 | 119 | JKBLD300 | 0.75 |
| JK57BLF03 | 3 | 4 | 36 | 4000 | 0.33 | 5.3 | 138 | 87 | 173 | JKBLD300 | 1.0 |
| JK57BLF04 | 3 | 4 | 36 | 4000 | 0.44 | 6.8 | 184 | 107 | 230 | JKBLD300 | 1.25 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | W | mm | kg.cm2 | / | Kg | |
| JK60BLS01 | 3 | 8 | 48 | 3000 | 0.3 | 2.8 | 94 | 78 | 0.24 | JKBLD300 | 0.85 |
| JK60BLS02 | 3 | 8 | 48 | 3000 | 0.6 | 5.2 | 188 | 99 | 0.48 | JKBLD300 | 1.25 |
| JK60BLS03 | 3 | 8 | 48 | 3000 | 0.9 | 7.5 | 283 | 120 | 0.72 | JKBLD750 | 1.65 |
| JK60BLS04 | 3 | 8 | 48 | 3000 | 1.2 | 9.5 | 377 | 141 | 0.96 | JKBLD750 | 2.05 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | W | mm | g.cm2 | / | Kg | |
| JK80BLS01 | 3 | 8 | 48 | 3000 | 0.35 | 3 | 110 | 78 | 210 | JKBLD750 | 1.4 |
| JK80BLS02 | 3 | 8 | 48 | 3000 | 0.7 | 5.5 | 220 | 98 | 420 | JKBLD750 | 2 |
| JK80BLS03 | 3 | 8 | 48 | 3000 | 1.05 | 8 | 330 | 118 | 630 | JKBLD750 | 2.6 |
| JK80BLS04 | 3 | 8 | 48 | 3000 | 1.4 | 10.5 | 440 | 138 | 840 | JKBLD750 | 3.2 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | W | mm | g.cm2 | / | Kg | |
| JK86BLS58-X002 | 3 | 8 | 48 | 3000 | 0.35 | 3 | 110 | 71 | 400 | JKBLD750 | 1.5 |
| JK86BLS71-X001 | 3 | 8 | 48 | 3000 | 0.7 | 6.3 | 220 | 84.5 | 800 | JKBLD750 | 1.9 |
| JK86BLS84 | 3 | 8 | 48 | 3000 | 1.05 | 9 | 330 | 98 | 1200 | JKBLD750 | 2.3 |
| JK86BLS98-X015 | 3 | 8 | 48 | 3000 | 1.4 | 11.5 | 440 | 111.5 | 1600 | JKBLD750 | 2.7 |
| JK86BLS125-X015 | 3 | 8 | 48 | 3000 | 2.1 | 18 | 660 | 138.5 | 2400 | JKBLD750 | 4 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Coegi | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | KW | mm | / | Kg | |
| JK110BLS50 | 3 | 8 | 310 | 3000 | 2.38 | 2.7 | 0.75 | 134 | JKBLD1100 | 4.2 |
| JK110BLS75 | 3 | 8 | 310 | 3000 | 3.3 | 3.7 | 1.03 | 159 | JKBLD2200 | 5.7 |
| JK110BLS100 | 3 | 8 | 310 | 3000 | 5 | 5.6 | 1.57 | 184 | JKBLD2200 | 7 |
| JK110BLS125 | 3 | 8 | 310 | 3000 | 6.6 | 7.5 | 2.07 | 209 | JKBLD2200 | 8.5 |
| Exemplar | Phase | Poloni | Rated Voltage | Rated Speed | Rated Torque | Ratum Current | Rated Power | Corpus Longitudo | Rotor Inertia | Pondus |
| Phase | Poloni | Vdc | Rpm | Nm | A | KW | mm | kg.cm2 | Kg | |
| JK130BLS115 | 3 | 10 | 310 | 3000 | 2.39 | 2.8 | 0.75 | 115 | 5.9 | 6.1 |
| JK130BLS120 | 3 | 10 | 310 | 3000 | 3.18 | 3.8 | 1 | 120 | 7.4 | 6.5 |
| JK130BLS140 | 3 | 10 | 310 | 3000 | 4.77 | 5.7 | 1.5 | 140 | 9.7 | 7 |
| JK130BLS165 | 3 | 10 | 310 | 3000 | 7 | 8.5 | 2.2 | 165 | 13.5 | 8.5 |
| JK130BLS190 | 3 | 10 | 310 | 3000 | 11.94 | 9.5 | 2.5 | 190 | 19.7 | 11 |
Brushless dc motoribus generari potest secundum eorum modos constructionem et commutationem;
In hoc consilio, rotor intra statorem sita est. Motores rotores interiores noti sunt pro torque magno suo et communiter in applicationibus industrialibus adhibentur.
Hic, extra stator rotor sistitur, unde in consilio pacti cum summa inertia est. Haec popularia sunt in applicationibus sicut fuci et adjumenta parva.
Sensoriis instructi (eg, Hall-effectus sensoriis), hi motores praecise opiniones de situ rotoris praebent, accurate imperium procurantes.
Motores sensorenses confidunt in dorso-EMF (Vis Electromotiva) ad positionem rotoris determinare. Sunt magis parabilis et adhibentur in applicationibus cost-sensilibus sicut alit et soleatus.
Operatio Brushless DC motoris innititur in commercio inter campum magneticum ambages Statoris et magnetes rotoris permanentes. Dissimiles motoribus iniectis, ubi perterget physice electricitatem ad rotorem transfert, BLDC motores nituntur moderatori electronico ad generandum campum magneticum circumactum.
Hic processus inconsutibilitas maiorem efficaciam et deminutam indumentum efficit, BLDC motorum specimen ad applicationes postulandas facit.
Cum eligendo Brushless DC motore ad applicationem specificam, necesse est sequentes factores aestimare;
Torque et Volo Requirements
Virtus Efficens
Magnitudine et pondere coactus
Environmental Conditions
Pretium vs. euismod
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