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Stator

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152: 302: 144: 133: 269: 36: 326:. In a mechanical siren, the stator contains one or more rows of holes that admit air into the rotor; by controlling the flow of air through the holes, the sound of the siren can be altered. A stator can reduce the turbulence and rotational energy introduced by an axial turbine fan, creating a steady column of air with a lower 222:
One design embeds thin copper traces in the PCB stator that serve as the windings. The traces are interleaved with epoxy-glass laminates, that insulate each coil from its neighbors. An air core replaces the traditional iron core, saving space and weight, and allowing a smaller air gap.
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may be used in the construction of electric motor stators. This technology, uses windings with wires that individually, may have larger cross sections than those used in conventional windings.
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put the field coils on the stator, and the power generation or motive reaction coils on the rotor. This is necessary because a continuously moving power switch known as the
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is needed to keep the field correctly aligned across the spinning rotor. The commutator must become larger and more robust as the current increases.
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produces power across multiple high-current power generation coils connected in parallel, eliminating the commutator.
242: 119: 100: 886: 72: 443: 835: 57: 79: 620: 318:, the stator element contains blades or ports used to redirect the flow of fluid. Such devices include the 207:. In fluid powered devices, the stator guides the flow of fluid to or from the rotating part of the system. 968: 348: 219:(PCB). Originally applied to low-power applications, PCB stators can be lighter, smaller, and less noisy. 978: 691: 664: 86: 988: 983: 436: 1063: 681: 659: 258: 1094: 932: 786: 68: 19:
This article is about a component of electromotive devices. For the component of a compressor, see
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Depending on the configuration of a spinning electromotive device the stator may act as the
922: 815: 564: 539: 8: 1028: 731: 726: 471: 292: 1053: 947: 902: 840: 810: 764: 587: 574: 226: 200: 164: 301: 187:). Energy flows through a stator to or from the rotating component of the system, the 1013: 917: 845: 637: 625: 615: 354: 963: 93: 1068: 1058: 998: 942: 912: 860: 756: 746: 736: 686: 549: 519: 459: 323: 273: 204: 188: 136: 1003: 402: 1099: 1043: 993: 855: 676: 654: 642: 610: 514: 327: 24: 1018: 143: 1038: 937: 907: 769: 721: 669: 597: 534: 477: 250: 192: 168: 1088: 1048: 716: 319: 285: 172: 132: 1073: 1008: 696: 184: 379:"This Axial-Flux Motor With a PCB Stator Is Ripe for an Electrified World" 249:, receiving its influence from moving field coils on the rotor. The first 850: 781: 268: 741: 711: 582: 544: 378: 295: 1023: 776: 554: 180: 176: 428: 35: 805: 649: 605: 881: 876: 315: 483: 281: 254: 139:(lower left) and stator (upper right) of an electric motor 215:
Motor stators are made either from iron/steel or from a
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Stator of a brushless DC motor from computer cooler fan.
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The stator of these devices may be either a permanent
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Dual-rotor permanent magnet induction motor (DRPMIM)
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is the stationary part of a rotary system, found in
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Operation and Maintenance of Large Turbo-Generators
346: 60:. Unsourced material may be challenged and removed. 1086: 191:. In an electric motor, the stator provides a 444: 347:Klempner, Geoff; Kerszenbaum, Isidor (2004). 376: 451: 437: 179:, or biological rotors (such as bacterial 120:Learn how and when to remove this message 300: 267: 150: 142: 131: 340: 245:to create motion, or it may act as the 1087: 458: 432: 372: 370: 58:adding citations to reliable sources 29: 305:Stator of a 3-phase induction motor 272:Stator winding of a generator at a 13: 377:Gustes-Pinto, Paulo (2022-03-26). 14: 1111: 424: 403:"Destratification Fans by Airius" 367: 309: 34: 23:. For the genus of beetles, see 409:from the original on 2017-04-20 45:needs additional citations for 836:Timeline of the electric motor 395: 1: 621:Dahlander pole changing motor 333: 147:Stator of a 3-phase AC-motor 7: 665:Brushless DC electric motor 274:hydroelectric power station 16:Stationary part of a system 10: 1116: 18: 956: 895: 869: 824: 755: 682:Switched reluctance (SRM) 660:Brushed DC electric motor 596: 573: 498: 466: 353:. John Wiley & Sons. 232: 210: 195:that drives the rotating 870:Experimental, futuristic 787:Variable-frequency drive 887:Superconducting machine 525:Coil winding technology 241:, interacting with the 306: 277: 156: 148: 140: 928:Power-to-weight ratio 792:Direct torque control 304: 271: 253:generators (known as 217:printed circuit board 154: 146: 135: 923:Open-loop controller 816:Ward Leonard control 540:DC injection braking 54:improve this article 826:History, education, 472:Alternating current 165:electric generators 989:Dolivo-Dobrovolsky 948:Voltage controller 903:Blocked-rotor test 841:Ball bearing motor 811:Motor soft starter 765:AC-to-AC converter 626:Wound-rotor (WRIM) 588:Electric generator 307: 278: 157: 149: 141: 1082: 1081: 918:Open-circuit test 757:Motor controllers 638:Synchronous motor 460:Electric machines 360:978-0-471-61447-0 130: 129: 122: 104: 1107: 933:Two-phase system 913:Electromagnetism 861:Mouse mill motor 828:recreational use 702:Permanent magnet 631:Linear induction 484:Permanent magnet 453: 446: 439: 430: 429: 418: 417: 415: 414: 399: 393: 392: 390: 389: 374: 365: 364: 344: 324:torque converter 227:Hairpin windings 205:electric current 125: 118: 114: 111: 105: 103: 62: 38: 30: 21:Axial compressor 1115: 1114: 1110: 1109: 1108: 1106: 1105: 1104: 1095:Electric motors 1085: 1084: 1083: 1078: 952: 891: 865: 856:Mendocino motor 829: 827: 820: 751: 611:Induction motor 592: 569: 515:Braking chopper 503: 501: 494: 462: 457: 427: 422: 421: 412: 410: 401: 400: 396: 387: 385: 375: 368: 361: 345: 341: 336: 328:Reynolds number 312: 235: 213: 169:electric motors 126: 115: 109: 106: 63: 61: 51: 39: 28: 25:Stator (beetle) 17: 12: 11: 5: 1113: 1103: 1102: 1097: 1080: 1079: 1077: 1076: 1071: 1066: 1061: 1056: 1051: 1046: 1041: 1036: 1031: 1026: 1021: 1016: 1011: 1006: 1001: 996: 991: 986: 981: 976: 971: 966: 960: 958: 954: 953: 951: 950: 945: 940: 938:Inchworm motor 935: 930: 925: 920: 915: 910: 908:Circle diagram 905: 899: 897: 896:Related topics 893: 892: 890: 889: 884: 879: 873: 871: 867: 866: 864: 863: 858: 853: 848: 846:Barlow's wheel 843: 838: 832: 830: 825: 822: 821: 819: 818: 813: 808: 803: 802: 801: 800: 799: 797:Vector control 794: 779: 774: 773: 772: 770:Cycloconverter 761: 759: 753: 752: 750: 749: 744: 739: 734: 729: 724: 719: 714: 709: 704: 699: 694: 689: 684: 679: 674: 673: 672: 667: 662: 657: 647: 646: 645: 640: 635: 634: 633: 628: 623: 618: 602: 600: 594: 593: 591: 590: 585: 579: 577: 571: 570: 568: 567: 562: 557: 552: 547: 542: 537: 535:Damper winding 532: 527: 522: 517: 512: 506: 504: 500:Components and 499: 496: 495: 493: 492: 486: 480: 478:Direct current 474: 467: 464: 463: 456: 455: 448: 441: 433: 426: 425:External links 423: 420: 419: 394: 366: 359: 338: 337: 335: 332: 311: 308: 234: 231: 212: 209: 193:magnetic field 128: 127: 42: 40: 33: 15: 9: 6: 4: 3: 2: 1112: 1101: 1098: 1096: 1093: 1092: 1090: 1075: 1072: 1070: 1067: 1065: 1062: 1060: 1057: 1055: 1052: 1050: 1047: 1045: 1042: 1040: 1037: 1035: 1032: 1030: 1027: 1025: 1022: 1020: 1017: 1015: 1012: 1010: 1007: 1005: 1002: 1000: 997: 995: 992: 990: 987: 985: 982: 980: 977: 975: 972: 970: 967: 965: 962: 961: 959: 955: 949: 946: 944: 941: 939: 936: 934: 931: 929: 926: 924: 921: 919: 916: 914: 911: 909: 906: 904: 901: 900: 898: 894: 888: 885: 883: 880: 878: 875: 874: 872: 868: 862: 859: 857: 854: 852: 849: 847: 844: 842: 839: 837: 834: 833: 831: 823: 817: 814: 812: 809: 807: 804: 798: 795: 793: 790: 789: 788: 785: 784: 783: 780: 778: 775: 771: 768: 767: 766: 763: 762: 760: 758: 754: 748: 745: 743: 740: 738: 735: 733: 732:Piezoelectric 730: 728: 727:Electrostatic 725: 723: 720: 718: 715: 713: 710: 708: 705: 703: 700: 698: 695: 693: 690: 688: 685: 683: 680: 678: 675: 671: 668: 666: 663: 661: 658: 656: 653: 652: 651: 648: 644: 641: 639: 636: 632: 629: 627: 624: 622: 619: 617: 614: 613: 612: 609: 608: 607: 604: 603: 601: 599: 595: 589: 586: 584: 581: 580: 578: 576: 572: 566: 563: 561: 558: 556: 553: 551: 548: 546: 543: 541: 538: 536: 533: 531: 528: 526: 523: 521: 518: 516: 513: 511: 508: 507: 505: 497: 491: 487: 485: 481: 479: 475: 473: 469: 468: 465: 461: 454: 449: 447: 442: 440: 435: 434: 431: 408: 404: 398: 384: 383:IEEE Spectrum 380: 373: 371: 362: 356: 352: 351: 343: 339: 331: 329: 325: 321: 320:steam turbine 317: 310:Fluid devices 303: 299: 297: 294: 289: 287: 286:electromagnet 283: 275: 270: 266: 264: 260: 256: 252: 248: 244: 240: 239:field magnet 230: 228: 224: 220: 218: 208: 206: 202: 198: 194: 190: 186: 182: 178: 174: 170: 166: 162: 153: 145: 138: 134: 124: 121: 113: 102: 99: 95: 92: 88: 85: 81: 78: 74: 71: –  70: 66: 65:Find sources: 59: 55: 49: 48: 43:This article 41: 37: 32: 31: 26: 22: 559: 411:. 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Axial compressor
Stator (beetle)

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Rotor


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Hairpin windings

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