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Károly Zipernowsky

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222: 239: 444: 340: 551: 31: 210: 260:, all of Ganz and Company, were researching ways of increasing efficiency of electrical power transmission. They experimented with power supplies and current transformation, which led to the invention of the ZBD alternating current transformer in 1885. The ZBD system is based on a closed-iron ring core with an arbitrary diameter and a coil around the core, which conducts 556: 488:, is a useful starting point for translations, but translators must revise errors as necessary and confirm that the translation is accurate, rather than simply copy-pasting machine-translated text into the English Knowledge. 384:, is a useful starting point for translations, but translators must revise errors as necessary and confirm that the translation is accurate, rather than simply copy-pasting machine-translated text into the English Knowledge. 272:
then proposed the use of step-up transformers, which would output higher voltage than they received. This principle is widely used for power transmission over long distances all over the world.
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Do not translate text that appears unreliable or low-quality. If possible, verify the text with references provided in the foreign-language article.
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Do not translate text that appears unreliable or low-quality. If possible, verify the text with references provided in the foreign-language article.
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Content in this edit is translated from the existing Hungarian Knowledge article at ]; see its history for attribution.
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Content in this edit is translated from the existing German Knowledge article at ]; see its history for attribution.
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Prototypes of the world's first high-efficiency transformers. (Széchenyi István Memorial Exhibition
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current. Their system converted higher voltage suitable for energy transmission to lower "
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This article about a Hungarian engineer, inventor or industrial designer is a
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to the source of your translation. A model attribution edit summary is
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to the source of your translation. A model attribution edit summary is
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and he contributed significantly with his works also to other
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a machine-translated version of the Hungarian article.
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a machine-translated version of the German article.
604: 506:accompanying your translation by providing an 468:Click for important translation instructions. 455:expand this article with text translated from 402:accompanying your translation by providing an 364:Click for important translation instructions. 351:expand this article with text translated from 587: 291:"Who's Who in Central & East Europe 1933" 288: 594: 580: 29: 268:"-level voltage (step-down transformer). 237: 220: 208: 605: 545: 518:{{Translated|hu|Zipernowsky Károly}} 437: 414:{{Translated|de|Károly Zipernowsky}} 333: 319:Technical University of Budapest. " 242:Magnetizing Current Shunt Circuit ( 13: 14: 664: 313: 633:Hungarian expatriates in Austria 554: 549: 442: 338: 101:Technical University of Budapest 643:Inventors from Austria-Hungary 638:Engineers from Austria-Hungary 628:Hungarian electrical engineers 516:You may also add the template 412:You may also add the template 293:. dreyblatt.de. Archived from 282: 1: 275: 566:. You can help Knowledge by 204: 162:– 29 November 1942 in 7: 10: 669: 544: 480:Machine translation, like 376:Machine translation, like 457:the corresponding article 353:the corresponding article 145: 131: 121: 114: 106: 96: 71: 42: 28: 21: 653:Hungarian engineer stubs 527:For more guidance, see 423:For more guidance, see 226:Dynamo Electric Machine 249: 235: 218: 193:manufacturing company 648:Engineers from Vienna 529:Knowledge:Translation 500:copyright attribution 425:Knowledge:Translation 396:copyright attribution 241: 224: 212: 181:with his colleagues ( 297:on 23 September 2015 623:Hungarian inventors 289:Dreyblatt, Arnold. 245:U.S. patent 284,110 231:U.S. patent 284,110 175:electrical engineer 140:alternating current 508:interlanguage link 404:interlanguage link 325:". Budapest, 1996. 322:Károly Zipernowsky 252:Zipernowsky, with 250: 236: 219: 177:. He invented the 158:, 4 April 1853 in 152:Károly Zipernowsky 116:Engineering career 36:Károly Zipernowsky 23:Károly Zipernowsky 16:Hungarian engineer 575: 574: 540: 539: 469: 465: 436: 435: 365: 361: 149: 148: 660: 596: 589: 582: 558: 553: 546: 519: 513: 486:Google Translate 467: 463: 446: 445: 438: 415: 409: 382:Google Translate 363: 359: 342: 341: 334: 307: 306: 304: 302: 286: 247: 233: 189:) at the famous 156:Carl Zipernowsky 82:29 November 1942 81: 79: 56: 54: 47:Carl Zipernowsky 33: 19: 18: 668: 667: 663: 662: 661: 659: 658: 657: 603: 602: 601: 600: 536: 535: 534: 517: 511: 470: 447: 443: 432: 431: 430: 413: 407: 366: 343: 339: 316: 311: 310: 300: 298: 287: 283: 278: 243: 229: 207: 138: 92: 83: 77: 75: 67: 65:Austrian Empire 58: 52: 50: 49: 48: 38: 24: 17: 12: 11: 5: 666: 656: 655: 650: 645: 640: 635: 630: 625: 620: 615: 599: 598: 591: 584: 576: 573: 572: 559: 538: 537: 533: 532: 525: 514: 492: 489: 478: 471: 452: 451: 450: 448: 441: 434: 433: 429: 428: 421: 410: 388: 385: 374: 367: 348: 347: 346: 344: 337: 332: 331: 326: 315: 314:External links 312: 309: 308: 280: 279: 277: 274: 206: 203: 201:technologies. 147: 146: 143: 142: 133: 129: 128: 123: 119: 118: 112: 111: 108: 104: 103: 98: 94: 93: 84: 73: 69: 68: 59: 46: 44: 40: 39: 34: 26: 25: 22: 15: 9: 6: 4: 3: 2: 665: 654: 651: 649: 646: 644: 641: 639: 636: 634: 631: 629: 626: 624: 621: 619: 616: 614: 611: 610: 608: 597: 592: 590: 585: 583: 578: 577: 571: 569: 565: 560: 557: 552: 548: 547: 543: 530: 526: 523: 515: 509: 505: 501: 497: 493: 490: 487: 483: 479: 476: 473: 472: 466: 460: 458: 453:You can help 449: 440: 439: 426: 422: 419: 411: 405: 401: 397: 393: 389: 386: 383: 379: 375: 372: 369: 368: 362: 356: 354: 349:You can help 345: 336: 335: 330: 327: 324: 323: 318: 317: 296: 292: 285: 281: 273: 271: 267: 263: 259: 255: 246: 240: 232: 227: 223: 216: 211: 202: 200: 196: 192: 188: 184: 180: 176: 173: 169: 165: 161: 157: 153: 144: 141: 137: 134: 130: 127: 124: 120: 117: 113: 109: 105: 102: 99: 95: 91: 87: 74: 70: 66: 62: 45: 41: 37: 32: 27: 20: 568:expanding it 561: 541: 504:edit summary 495: 462: 459:in Hungarian 454: 400:edit summary 391: 358: 350: 320: 299:. Retrieved 295:the original 284: 270:Nikola Tesla 265: 251: 155: 151: 150: 122:Institutions 115: 57:4 April 1853 35: 618:1942 deaths 613:1853 births 464:(June 2010) 360:(June 2010) 254:Ottó Bláthy 187:Ottó Bláthy 179:transformer 136:transformer 607:Categories 276:References 258:Miksa Déri 195:Ganz Works 183:Miksa Déri 126:Ganz Works 107:Occupation 78:1942-11-29 53:1853-04-04 522:talk page 418:talk page 355:in German 205:Biography 191:Hungarian 172:Hungarian 166:) was an 154:(born as 97:Education 498:provide 394:provide 329:His life 301:14 March 215:Nagycenk 168:Austrian 164:Budapest 132:Projects 110:Engineer 86:Budapest 520:to the 502:in the 461:. 416:to the 398:in the 357:. 266:service 90:Hungary 170:-born 160:Vienna 61:Vienna 482:DeepL 378:DeepL 564:stub 496:must 494:You 475:View 392:must 390:You 371:View 303:2014 256:and 185:and 72:Died 43:Born 484:or 380:or 609:: 542:¨ 262:AC 199:AC 88:, 63:, 595:e 588:t 581:v 570:. 531:. 524:. 427:. 420:. 305:. 248:) 234:) 228:( 217:) 80:) 76:( 55:) 51:(

Index


Vienna
Austrian Empire
Budapest
Hungary
Technical University of Budapest
Ganz Works
transformer
alternating current
Vienna
Budapest
Austrian
Hungarian
electrical engineer
transformer
Miksa Déri
Ottó Bláthy
Hungarian
Ganz Works
AC

Nagycenk

Dynamo Electric Machine
U.S. patent 284,110

U.S. patent 284,110
Ottó Bláthy
Miksa Déri
AC

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