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Обзор
Обзор
The series of SINAMICS DC MASTER DC Converters includes: - The electronics module with the Control Unit (CUD) and the slot for expansion using another CUD (in a cradle that can be swiveled out),
- The power section with thyristors in a fully-controlled three-phase bridge circuit configuration (two-quadrant drive: B6C or four-quadrant drive: (B6) A (B6) C),
- A fan (up to 125 A: self-ventilated),
- A single-quadrant field power section with integrated free-wheeling circuit (optionally, also without field or as two-quadrant field with integrated field overvoltage protection),
- The electronics power supply,
- A standard BOP20 operator panel (AOP30 Advanced Operator Panel as accessory).
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Заказные данные
Заказной № |
Вес, кг |
Описание |
Наличие на складе |
Заказать |
6RA8013-6DV62-0AA0 |
6 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 13A CONTROLLABLE FIELD RECTIFIER D420/15 MREQ-GEG6V62 OUTPUT: DC 420V, 15A |
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6RA8013-6FV62-0AA0 |
6 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 12A CONTROLLABLE FIELD RECTIFIER D500/15 MREQ-GEG6V62 OUTPUT: DC 500V, 15A |
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6RA8018-6DV62-0AA0 |
6 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 25A CONTROLLABLE FIELD RECTIFIER D420/30 MREQ-GEG6V62 OUTPUT: DC 420V, 30A |
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6RA8018-6FV62-0AA0 |
6 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 25A CONTROLLABLE FIELD RECTIFIER D500/30 MREQ-GEG6V62 OUTPUT: DC 500V, 30A |
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6RA8025-6DS22-0AA0 |
12 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 50A CONTROLLABLE FIELD RECTIFIER D485/60 MRE-GEE6S22 OUTPUT: DC 485V, 60A |
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6RA8025-6DV62-0AA0 |
12 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 50A CONTROLLABLE FIELD RECTIFIER D420/60 MREQ-GEG6V62 OUTPUT: DC 420V, 60A |
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6RA8025-6FS22-0AA0 |
12 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 50A CONTROLLABLE FIELD RECTIFIER D575/60 MRE-GEE6S22 OUTPUT: DC 575V, 60A |
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6RA8025-6FV62-0AA0 |
12 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 50A CONTROLLABLE FIELD RECTIFIER D500/60 MREQ-GEG6V62 OUTPUT: DC 500V, 60A |
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6RA8025-6GS22-0AA0 |
12 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 50A CONTROLLABLE FIELD RECTIFIER D690/60 MRE-GEE6S22 OUTPUT: DC 690V, 60A |
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6RA8025-6GV62-0AA0 |
12 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 50A CONTROLLABLE FIELD RECTIFIER D600/60 MREQ-GEG6V62 OUTPUT: DC 600V, 60A |
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6RA8028-6DS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 75A CONTROLLABLE FIELD RECTIFIER D485/90 MRE-GEE6S22 OUTPUT: DC 485V, 90A |
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6RA8028-6DV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 75A CONTROLLABLE FIELD RECTIFIER D420/90 MREQ-GEG6V62 OUTPUT: DC 420V, 90A |
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6RA8028-6FS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 75A CONTROLLABLE FIELD RECTIFIER D575/90 MRE-GEE6S22 OUTPUT: DC 575V, 90A |
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6RA8028-6FV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 75A CONTROLLABLE FIELD RECTIFIER D500/90 MREQ-GEG6V62 OUTPUT: DC 500V, 90A |
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6RA8031-6DS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 104A CONTROLLABLE FIELD RECTIFIER D485/125 MRE-GEE6S22 OUTPUT: DC 485V, 125A |
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6RA8031-6DV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 104A CONTROLLABLE FIELD RECTIFIER D420/125 MREQ-GEG6V62 OUTPUT: DC 420V, 125A |
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6RA8031-6FS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 104A CONTROLLABLE FIELD RECTIFIER D575/125 MRE-GEE6S22 OUTPUT: DC 575V, 125A |
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6RA8031-6FV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 104A CONTROLLABLE FIELD RECTIFIER D500/125 MREQ-GEG6V62 OUTPUT: DC 500V, 125A |
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6RA8031-6GS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 104A CONTROLLABLE FIELD RECTIFIER D690/125 MRE-GEE6S22 OUTPUT: DC 690V, 125A |
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6RA8031-6GV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 104A CONTROLLABLE FIELD RECTIFIER D600/125 MREQ-GEG6V62 OUTPUT: DC 600V, 125A |
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6RA8075-6DS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 174A CONTROLLABLE FIELD RECTIFIER D485/210 MRE-GEEF6S22 OUTPUT: DC 485V, 210A |
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6RA8075-6DV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 174A CONTROLLABLE FIELD RECTIFIER D420/210 MREQ-GEGF6V62 OUTPUT: DC 420V, 210A |
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6RA8075-6FS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 174A CONTROLLABLE FIELD RECTIFIER D575/210 MRE-GEEF6S22 OUTPUT: DC 575V, 210A |
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6RA8075-6FV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 174A CONTROLLABLE FIELD RECTIFIER D500/210 MREQ-GEGF6V62 OUTPUT: DC 500V, 210A |
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6RA8075-6GS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 174A CONTROLLABLE FIELD RECTIFIER D690/210 MRE-GEEF6S22 OUTPUT: DC 690V, 210A |
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6RA8075-6GV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 174A CONTROLLABLE FIELD RECTIFIER D600/210 MREQ-GEGF6V62 OUTPUT: DC 600V, 210A |
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6RA8078-6DS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 232A CONTROLLABLE FIELD RECTIFIER D485/280 MRE-GEEF6S22 OUTPUT: DC 485V, 280A |
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6RA8078-6DV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 232A CONTROLLABLE FIELD RECTIFIER D420/280 MREQ-GEGF6V62 OUTPUT: DC 420V, 280A |
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6RA8078-6FS22-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 232A CONTROLLABLE FIELD RECTIFIER D575/280 MRE-GEEF6S22 OUTPUT: DC 575V, 280A |
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6RA8078-6FV62-0AA0 |
15 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 232A CONTROLLABLE FIELD RECTIFIER D500/280 MREQ-GEGF6V62 OUTPUT: DC 500V, 280A |
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6RA8081-6DS22-0AA0 |
28 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 332A CONTROLLABLE FIELD RECTIFIER D485/400 MRE-GEEF6S22 OUTPUT: DC 485V, 400A |
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6RA8081-6DV62-0AA0 |
28 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 332A CONTROLLABLE FIELD RECTIFIER D420/400 MREQ-GEGF6V62 OUTPUT: DC 420V, 400A |
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6RA8081-6GS22-0AA0 |
28 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 332A CONTROLLABLE FIELD RECTIFIER D690/400 MRE-GEEF6S22 OUTPUT: DC 690V, 400A |
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6RA8081-6GV62-0AA0 |
28 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 332A CONTROLLABLE FIELD RECTIFIER D600/400 MREQ-GEGF6V62 OUTPUT: DC 600V, 400A |
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6RA8082-6FS22-0AA0 |
28 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 374A CONTROLLABLE FIELD RECTIFIER D575/450 MRE-GEEF6S22 OUTPUT: DC 575V, 450A |
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6RA8082-6FV62-0AA0 |
28 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 374A CONTROLLABLE FIELD RECTIFIER D500/450 MREQ-GEGF6V62 OUTPUT: DC 500V, 450A |
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6RA8085-6DS22-0AA0 |
31 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 498A CONTROLLABLE FIELD RECTIFIER D485/600 MRE-GEEF6S22 OUTPUT: DC 485V, 600A |
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6RA8085-6DV62-0AA0 |
31 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 498A CONTROLLABLE FIELD RECTIFIER D420/600 MREQ-GEGF6V62 OUTPUT: DC 420V, 600A |
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6RA8085-6FS22-0AA0 |
31 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 498A CONTROLLABLE FIELD RECTIFIER D575/600 MRE-GEEF6S22 OUTPUT: DC 575V, 600A |
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6RA8085-6FV62-0AA0 |
31 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 498A CONTROLLABLE FIELD RECTIFIER D500/600 MREQ-GEGF6V62 OUTPUT: DC 500V, 600A |
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6RA8085-6GS22-0AA0 |
31 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V. 498A CONTROLLABLE FIELD RECTIFIER D690/600 MRE-GEEF6S22 OUTPUT: DC 690V, 600A |
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6RA8085-6GV62-0AA0 |
31 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 498A CONTROLLABLE FIELD RECTIFIER D600/600 MREQ-GEGF6V62 OUTPUT: DC 600V, 600A |
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6RA8086-6KS22-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 690V, 598A CONTROLLABLE FIELD RECTIFIER D830/720 MRE-GEEF6S22 OUTPUT: DC 830V, 720A |
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6RA8086-6KV62-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 690V, 631A CONTROLLABLE FIELD RECTIFIER D725/760 MREQ-GEGF6V62 OUTPUT: DC 725V, 760A |
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6RA8087-6DS22-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 706A CONTROLLABLE FIELD RECTIFIER D485/850 MRE-GEEF6S22 OUTPUT: DC 485V, 850A |
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6RA8087-6DV62-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 706A CONTROLLABLE FIELD RECTIFIER D420/850 MREQ-GEGF6V62 OUTPUT: DC 420V, 850A |
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6RA8087-6FS22-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 706A CONTROLLABLE FIELD RECTIFIER D575/850 MRE-GEEF6S22 OUTPUT: DC 575V, 850A |
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6RA8087-6FV62-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 706A CONTROLLABLE FIELD RECTIFIER D500/850 MREQ-GEGF6V62 OUTPUT: DC 500V, 850A |
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6RA8087-6GS22-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 664A CONTROLLABLE FIELD RECTIFIER D690/800 MRE-GEEF6S22 OUTPUT: DC 690V, 800A |
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6RA8087-6GV62-0AA0 |
42 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 706A CONTROLLABLE FIELD RECTIFIER D600/850 MREQ-GEGF6V62 OUTPUT: DC 600V, 850A |
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6RA8088-6LS22-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 830V, 789A CONTROLLABLE FIELD RECTIFIER D1000/950 MRE-GEEF6S22 OUTPUT: DC 1000V, 950A |
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6RA8088-6LV62-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 830V, 789A CONTROLLABLE FIELD RECTIFIER D875/950 MREQ-GEGF6V62 OUTPUT: DC 875V, 950A |
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6RA8090-6GS22-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 913A CONTROLLABLE FIELD RECTIFIER D690/1100 MRE-GEEF6S22 OUTPUT: DC 690V, 1100A |
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6RA8090-6GV62-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 913A CONTROLLABLE FIELD RECTIFIER D600/1100 MREQ-GEGF6V62 OUTPUT: DC 600V, 1100A |
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6RA8090-6KS22-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 690V, 830A CONTROLLABLE FIELD RECTIFIER D830/1000 MRE-GEEF6S22 OUTPUT: DC 830V, 1000A |
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6RA8090-6KV62-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 690V, 830A CONTROLLABLE FIELD RECTIFIER D725/1000 MREQ-GEGF6V62 OUTPUT: DC 725V, 1000A |
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6RA8091-6DS22-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 996A CONTROLLABLE FIELD RECTIFIER D485/1200 MRE-GEEF6S22 OUTPUT: DC 485V, 1200A |
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6RA8091-6DV62-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 996A CONTROLLABLE FIELD RECTIFIER D420/1200 MREQ-GEGF6V62 OUTPUT: DC 420V, 1200A |
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6RA8091-6FS22-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 480V, 996A CONTROLLABLE FIELD RECTIFIER D575/1200 MRE-GEEF6S22 OUTPUT: DC 575V, 1200A |
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6RA8091-6FV62-0AA0 |
78 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 480V, 996A CONTROLLABLE FIELD RECTIFIER D500/1200 MREQ-GEGF6V62 OUTPUT: DC 500V, 1200A |
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6RA8093-4DS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 1328A CONTROLLABLE FIELD RECTIFIER D485/1600 MRE-GEEF4S22 OUTPUT: DC 485V, 1600A |
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6RA8093-4DV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 1328A CONTROLLABLE FIELD RECTIFIER D420/1600 MREQ-GEGF4V62 OUTPUT: DC 420V, 1600A |
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6RA8093-4GS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 1328A CONTROLLABLE FIELD RECTIFIER D690/1600 MRE-GEEF4S22 OUTPUT: DC 690V, 1600A |
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|
6RA8093-4GV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 1328A CONTROLLABLE FIELD RECTIFIER D600/1600 MREQ-GEGF4V62 OUTPUT: DC 600V, 1600A |
------ |
|
6RA8093-4KS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 690V, 1245A CONTROLLABLE FIELD RECTIFIER D830/1500 MRE-GEEF4S22 OUTPUT: DC 830V, 1500A |
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6RA8093-4KV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 690V, 1245A CONTROLLABLE FIELD RECTIFIER D725/1500 MREQ-GEGF4V62 OUTPUT: DC 725V, 1500A |
------ |
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6RA8093-4LS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 830V, 1245A CONTROLLABLE FIELD RECTIFIER D1000/1500 MRE-GEEF4S22 OUTPUT: DC 1000V,1500A |
------ |
|
6RA8093-4LV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 830V, 1245A CONTROLLABLE FIELD RECTIFIER D875/1500 MREQ-GEGF4V62 OUTPUT: DC 875V, 1500A |
------ |
|
6RA8095-4DS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 1660A CONTROLLABLE FIELD RECTIFIER D485/2000 MRE-GEEF4S22 OUTPUT: DC 485V, 2000A |
------ |
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6RA8095-4DV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 1660A CONTROLLABLE FIELD RECTIFIER D420/2000 MREQ-GEGF4V62 OUTPUT: DC 420V, 2000A |
------ |
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6RA8095-4GS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 1660A CONTROLLABLE FIELD RECTIFIER D690/2000 MRE-GEEF4S22 OUTPUT: DC 690V, 2000A |
------ |
|
6RA8095-4GV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 1660A CONTROLLABLE FIELD RECTIFIER D600/2000 MREQ-GEGF4V62 OUTPUT: DC 600V, 2000A |
------ |
|
6RA8095-4KS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 690V, 1660A CONTROLLABLE FIELD RECTIFIER D830/2000 MRE-GEEF4S22 OUTPUT: DC 830V, 2000A |
------ |
|
6RA8095-4KV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 690V, 1660A CONTROLLABLE FIELD RECTIFIER D725/2000 MREQ-GEGF4V62 OUTPUT: DC 725V, 2000A |
------ |
|
6RA8095-4LS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 830V, 1577A CONTROLLABLE FIELD RECTIFIER D1000/1900 MRE-GEEF4S22 OUTPUT: DC 1000V,1900A |
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|
6RA8095-4LV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 830V, 1577A CONTROLLABLE FIELD RECTIFIER D875/1900 MREQ-GEGF4V62 OUTPUT: DC 875V, 1900A |
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6RA8096-4GS22-0AA0 |
132 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 1826A CONTROLLABLE FIELD RECTIFIER D690/2200 MRE-GEEF4S22 OUTPUT: DC 690V, 2200A |
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6RA8096-4GV62-0AA0 |
151 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 1826A CONTROLLABLE FIELD RECTIFIER D600/2200 MREQ-GEGF4V62 OUTPUT: DC 600V, 2200A |
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6RA8096-4MS22-0AA0 |
163 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 950V, 1826A CONTROLLABLE FIELD RECTIFIER D1140/2200 MRE-GEEF4S22 OUTPUT: DC 1140V, 2200A |
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6RA8096-4MV62-0AA0 |
182 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 950V, 1826A CONTROLLABLE FIELD RECTIFIER D1000/2200 MREQ-GEGF4V62 OUTPUT: DC 1000V, 2200A |
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6RA8097-4GS22-0AA0 |
163 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 575V, 2324A CONTROLLABLE FIELD RECTIFIER D690/2800 MRE-GEEF4S22 OUTPUT: DC 690V, 2800A |
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6RA8097-4GV62-0AA0 |
182 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 575V, 2324A CONTROLLABLE FIELD RECTIFIER D600/2800 MREQ-GEGF4V62 OUTPUT: DC 600V, 2800A |
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6RA8097-4KS22-0AA0 |
163 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 690V, 2158A CONTROLLABLE FIELD RECTIFIER D830/2600 MRE-GEEF4S22 OUTPUT: DC 830V, 2600A |
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6RA8097-4KV62-0AA0 |
182 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 690V, 2158A CONTROLLABLE FIELD RECTIFIER D725/2600 MREQ-GEGF4V62 OUTPUT: DC 725V, 2600A |
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6RA8098-4DS22-0AA0 |
163 |
SINAMICS DCM DC CONVERTER FOR TWO-QUADRANT DRIVES CONNECTION B6C INPUT: 3-PHASE AC 400V, 2490A CONTROLLABLE FIELD RECTIFIER D485/3000 MRE-GEEF4S22 OUTPUT: DC 485V, 3000A |
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6RA8098-4DV62-0AA0 |
182 |
SINAMICS DCM DC CONVERTER FOR FOUR-QUADRANT DRIVES CONNECTION (B6) A (B6) C INPUT: 3-PHASE AC 400V, 2490A CONTROLLABLE FIELD RECTIFIER D420/3000 MREQ-GEGF4V62 OUTPUT: DC 420V, 3000A |
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Тех. данные
Дальнейшая информация
Free function blocks Application, properties Logic operations, which link several states (e.g. access control, plant status) to a control signal (e.g. ON command), is required for controlling the drive system in a wide variety of applications. Along with logic operations, a number of arithmetic operations and storing elements are becoming increasingly important in drive systems. This functionality is available as function module "Free function blocks" (FBLOCKS) for SINAMICS DC MASTER and can be activated in the Control Unit (CUD). A detailed description is provided in the Function Manual "Free function blocks" (see under “Services and Documentation”). Configuring and use The free function blocks are configured at the parameter level. The following parameters are required for this: - Input parameters (e.g. inputs I0 ... I3 for the AND function block)
- Output parameters (e.g. output Y for the numeric change-over switch)
- Adjustable parameters (e.g. pulse duration for pulse generator MFP)
- Runtime group (this includes the sampling time; the free function blocks are not computed in the factory setting)
- Run sequence within the runtime group
A parameter is assigned to each input, output, and setting variable. These can be accessed by means of the Advanced Operator Panel AOP30 or STARTER commissioning software. The free function blocks can be interconnected at the BICO level. The free function blocks do not support data set dependency. Range of blocks The table below shows the range of free function blocks available. The special technical properties of the individual function blocks can be taken from the function block diagrams in Chapter 3 of the Function Manual. Short name | Name of function block | Data type | Count per drive object | AND | AND function block | BOOL | 4 | OR | OR function block | BOOL | 4 | XOR | XOR function block | BOOL | 4 | NOT | Inverter | BOOL | 4 | ADD | Adder | REAL | 2 | SUB | Subtracter | REAL | 2 | MUL | Multiplier | REAL | 2 | DIV | Divider | REAL | 2 | AVA | Absolute value generator with sign evaluation | REAL | 2 | MFP | Pulse generator | BOOL | 2 | PCL | Pulse shortener | BOOL | 2 | PDE | ON delay | BOOL | 2 | PDF | OFF delay | BOOL | 2 | PST | Pulse stretcher | BOOL | 2 | RSR | RS flip-flop, reset dominant | BOOL | 2 | DFR | D flip-flop, reset dominant | BOOL | 2 | BSW | Binary change-over switch | BOOL | 2 | NSW | Numeric change-over switch | REAL | 2 | LIM | Limiter | REAL | 2 | PT1 | Smoothing element | REAL | 2 | INT | Integrator | REAL | 1 | DIF | Derivative-action element | REAL | 1 | LVM | Double-sided limit monitor with hysteresis | BOOL | 2 | Drive Control Chart (DCC) The "Drive Control Chart" function (DCC) is available for more complex applications. DCC allows you to graphically configure the required functionality and then download it to the drive. It provides a significantly extended range of block types available. In online operation, the signal values can be monitored in STARTER/SCOUT in the DCC chart. Power section and cooling SINAMICS DC MASTER converters distinguish themselves as a result of the compact, space-saving design. The electronics module (available in various customer-specific combinations with options) is installed in a cradle that can be swiveled out. The easy access to individual components makes this technology very service-friendly. Plug-in terminals are used to connect external signals (binary inputs/outputs, analog inputs/outputs, pulse generators etc.). The device software is saved in a flash EPROM and can be easily exchanged by loading via the serial interface of the SINAMICS DC MASTER. Power section: Armature and field circuit The armature circuit is implemented as a three-phase bridge circuit: - For units for two-quadrant operation, in a fully-controlled three-phase bridge circuit B6C
- For units for four-quadrant operation in two fully-controlled three-phase bridge circuits (B6) A (B6) C.
The field circuit is implemented in a half-controlled single-phase bridge circuit B2HZ. In the case of units with a 15 A to 1 200 A rated DC current, the power sections for the armature and field include electrically isolated thyristor modules, which means that the heat sink is floating. For units up to 30 A, the armature and field power sections are implemented in the form of a printed circuit board with compact modules that are soldered on. For units with rated currents ≥ 1 500 A, the power section for the armature circuit uses disc-type thyristors and heat sinks at voltage potential. For units from 1 500 to 3 000 A, the thyristor phases are implemented as plug-in modules and can therefore be quickly replaced. Checking the motor insulation has been significantly simplified due to the fact that the line supply voltage sensing for the armature and the field sections is electrically isolated. Cooling Units with a rated DC current up to 125 A are designed for natural air cooling, units with a rated current above 210 A are designed for forced air cooling (fan). The fans are always horizontally mounted at the top so that they can be quickly replaced without having to disconnect the power connections. Parameterizing devices BOP20 Basic Operator Panel BOP20 Basic Operator Panel As standard, all of the units are equipped with a BOP20 Basic Operator Panel from the SINAMICS family. The basic operator panel offers customers a basic functionality for commissioning as well as operator control and monitoring. Faults can be acknowledged, parameters set and diagnostics information read-out (e.g. alarm and fault messages) using the BOP20. The BOP20 has a backlit two-line display area and 6 keys. The BOP20 power supply and communication with the CUD Control Unit are established via the connector integrated at the rear of the BOP20. AOP30 Advanced Operator Panel The AOP30 Advanced Operator Panel is an optional input/output device for SINAMICS DC MASTER converters. It can be separately ordered. Additional information on the AOP30 is available in section "Accessories and supplementary components". PC based parameterization The STARTER tool is available for PC-based commissioning and diagnostics. More detailed information is provided in section “Tools and Engineering”. Closed-loop control and open-loop drive control The closed-loop and open-loop drive control is essentially designed for supplying the armature and field of variable-speed DC drives. Using BICO technology permits the closed-loop and open-loop drive control structure to be simply adapted to the application-specific requirements as well as the use in alternative applications (e.g. as excitation equipment for synchronous motors). The most important functions of the closed-loop control include: - Setpoint processing (including digital setpoints, jogging, motorized potentiometer)
- Ramp-function generator
- Speed controller actual value processing
- Speed controller
- Torque and armature current control
- Closed-loop armature current control
- Armature gating unit
- Closed-loop EMF control
- Closed-loop field current control
- Field gating unit
BICO technology BICO technology (Binector Connector Technology) allows signal paths to be defined (and therefore the controller structure) using parameters. Mode of operation: All important points of the closed-loop control are accessible via connectors. Connectors are measuring points that are mapped to display parameters. Important connectors include: - Analog inputs and outputs
- Interface inputs (e.g. PROFIBUS)
- Actual value sensing inputs (e.g. speed, armature current, armature voltage)
- Inputs and outputs of the ramp-function generator, speed controller, armature current controller, armature gating unit, EMF controller, field current controller, field gating unit
- General quantities such as operating state, motor temperature rise, thyristor temperature rise
All important binary signals of the closed-loop and open-loop control are accessible via binectors. Binectors are measuring points for binary signals, which are mapped to display parameters. Important binectors include: - Status of binary inputs
- Control words, status words
- Status of controllers, limits, faults
All of the important inputs of the open-loop and closed-loop control can be interconnected using BICO selection parameters. This means that by setting the corresponding BICO selection parameter, a connection can be established between any connector or binector. Important inputs include: - Setpoint input, supplementary setpoint input
- Ramp-function generator input
- Speed controller input
- Armature current controller input
- Armature gating unit input
- Speed setpoint limiting (before and after the ramp-function generator)
- Torque limiting
- Armature current limiting
- Signal source for binary and analog outputs
Data sets Many open-loop and closed-loop control parameters depend on the particular data set. This means that they have several indices where various values can be set. All data set dependent parameters can be simultaneously switched over to another data set using binary control signals. There are two groups of data set-dependent parameters: - DDS parameters:
Parameters that are associated with the drive data set (DDS). The drive data set contains various adjustable parameters that are relevant for open-loop and closed-loop drive control. - CDS parameters:
Parameters that are associated with the command data set (CDS). Many BICO selection parameters are combined in the command data set. These parameters are used to interconnect the signal sources of a drive. By parameterizing several command data sets and switching between them, the drive can be operated with different pre-configured signal sources. Optimization run The SINAMICS DC MASTER converter units are supplied with the factory settings. Controller setting is supported by selecting automatic optimization runs. The selection is made using special key numbers. The following controller functions can be set using an automatic optimization run: - Current controller optimization run to set the current controller and pre-controls (armature and field circuit).
- Speed controller optimization run to set the speed controller characteristics; the friction and moment of inertia compensation for the speed controller pre-control is automatically recorded.
- Automatic recording of the field characteristic for an EMF-dependent field-weakening control and automatic optimization of the EMF controller for field-weakening operation.
- In addition, all of the parameters set during the automatic optimization runs can be changed via the operator panel.
Monitoring and diagnostics Displaying operating values The operating state of the converter is displayed using a parameter. Several hundred signals can be displayed via parameter or selected for output on the display unit. Examples of measured values that can be displayed: Setpoints, actual values, status of binary inputs/outputs, line supply voltage, line frequency, firing angle, inputs/outputs of the analog terminals, controller input and output, limits. Trace function Up to eight measured quantities can be saved by selecting the trace function. A measured quantity or the occurrence of a fault message can be parameterized as trigger condition. By selecting a trigger delay, it is also possible to record (trace) the pre-history and post-history of events. The sampling time of the measured value storage can be parameterized. The measured values can be output via the serial interfaces using the STARTER commissioning tool. Fault messages A number is assigned to each fault message. In addition, the operating hour of the event is saved together with the fault message. This allows the cause of the fault to be quickly pinpointed. By using the optional AOP30 Advanced Operator Panel, fault messages can be stamped in real time. Then, instead of the operating hour of the event, the day and the time of day of the event are displayed in the AOP30 fault list. For diagnostic purposes, the last eight fault messages are saved with fault number, fault value and the operating hours. When a fault occurs - the binary output function "Fault" is set to LOW (user-assignable function),
- the drive is switched-off (controller inhibit, current I = 0 is entered, pulses are inhibited, the relay "line contactor CLOSE" drops out) and
- an F is displayed with fault number, LED "Fault" is lit.
Fault messages should either be acknowledged via the operator panel, a binary user-assignable terminal or a serial interface. The "switch-on inhibit" state is reached after the fault has been acknowledged. "Switch-on inhibit" is canceled by an OFF command. Automatic restart: An automatic restart is possible within a time that can be parameterized between 0 and 10 s. If the time is set to zero, a fault message is immediately output (for power failure) without a restart. A restart can be selected for the following fault messages: Phase failure (field or armature), undervoltage, overvoltage, electronics power supply failure, undervoltage condition at the parallel SINAMICS DC MASTER. A distinction is made between the following groups of fault messages: - Power system faults: Phase failure, fault in the field circuit, undervoltage, overvoltage, line frequency < 45 or > 65 Hz
- Interface faults: CUD interfaces or interfaces to the supplementary modules faulted
- Drive faults:
Controller monitoring for speed controller, Current controller, EMF controller, Field current controller has responded, Drive stalled, No armature current possible - Electronic motor overload protection (I2t monitoring of the motor has responded)
- Tachometer monitoring and overspeed signal
- Commissioning fault
- Fault on the electronics module
- Fault message from the thyristor check: This fault message can only occur if the thyristor check has been activated using the appropriate parameter. In this case, a check is made as to whether the thyristors can be blocked and whether they can be fired.
- Fault messages from the motor sensor system:
Monitoring of brush length, bearing condition, air flow, motor temperature - External faults via binary user-assignable terminals
The fault messages can be individually deactivated using a parameter. Some fault messages are already deactivated in the factory and can be activated using this parameter. Alarms Alarm messages display special states; however, they do not cause the drive to be switched-off. Alarms that occur do not have to be acknowledged, but rather they are automatically reset as soon as the cause of the alarm is no longer present. When one or several alarms occur - the binary output function "Alarm" must be set to LOW (user-assignable function) and
- the alarm is displayed by the flashing "Fault" LED.
A distinction is made between the following groups of alarms: - Motor overtemperature: The calculated I2t value of the motor has reached 100%.
- Alarms from the motor sensor system: Monitoring of brush length, bearing condition, motor fan, motor temperature
- Drive alarms: Drive has stalled, no armature current possible
- External alarms via binary user-assignable terminals
- Alarms from supplementary modules
Functions of the inputs and outputs Analog user-assignable inputs After converting to a digital value, the quantity of the analog inputs can be flexibly adapted via parameters for scaling, filter, sign selection and offset input. The values are available as connector. This is the reason that the analog inputs can be effective as main setpoint and also as quantity for a supplementary setpoint or a limit. Analog outputs Selectable analog outputs are available to output analog signals. Analog signals can be output as bipolar signal or as absolute value. In this case, scaling, an offset, polarity and a filter time can be parameterized. The required output quantities are selected at the intervention points by entering connector numbers. For instance, speed actual value, ramp-function generator output, current setpoint, line supply voltage etc. can be output. Binary inputs - Switch-on/shutdown (OFF 1)
This terminal function is ANDed with the control bit of the serial interface. For an H signal at terminal switch-on/shutdown, the main contactor closes via an internal sequence control. The controllers are enabled if there is an H signal at the operating enable terminal. The drive accelerates up to the operating speed with the speed setpoint. For an L signal at the terminal switch-on/shutdown, the drive is ramp-down to speed n < nmin via the ramp-function generator; after the brake control delay time, the controllers are inhibited and at I = 0, the main contactor is opened. After this, after a
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