g20n60
Abstract: G20N60 IGBT g20n60 G igbt 400V 20A SGW20N60 180W PG-TO-220-3-1 PG-TO-247-3 PG-TO-247-3-21 SGP20N60
Text: SGP20N60 SGW20N60 Fast IGBT in NPT-technology • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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SGP20N60
SGW20N60
PG-TO-220-3-1
PG-TO-247-3
G20N60
g20n60
G20N60 IGBT
g20n60 G
igbt 400V 20A
SGW20N60
180W
PG-TO-220-3-1
PG-TO-247-3
PG-TO-247-3-21
SGP20N60
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PDF
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g20n60
Abstract: G20N60 IGBT igbt 400V 20A 180W PG-TO-220-3-1 PG-TO-247-3 PG-TO-247-3-21 SGP20N60 SGW20N60
Text: SGP20N60 SGW20N60 Fast IGBT in NPT-technology • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGP20N60
SGW20N60
PG-TO-220-3-1
PG-TO-247-3
G20N60
g20n60
G20N60 IGBT
igbt 400V 20A
180W
PG-TO-220-3-1
PG-TO-247-3
PG-TO-247-3-21
SGP20N60
SGW20N60
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PDF
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G20N60
Abstract: G20N60 IGBT
Text: SGP20N60 SGW20N60 Fast IGBT in NPT-technology • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGP20N60
SGW20N60
PG-TO-220-3-1
O-220AB)
PG-TO-247-3-1
O-247AC)
SGW20N60
G20N60
G20N60 IGBT
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PDF
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G20N60
Abstract: G20N60 IGBT
Text: SGP20N60 SGW20N60 Fast IGBT in NPT-technology • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGP20N60
SGW20N60
PG-TO-220-3-1
PG-TO-247-3-21
SGW20N60
G20N60
G20N60 IGBT
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PDF
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g20n60
Abstract: G20N60 IGBT
Text: SGP20N60 SGW20N60 Fast IGBT in NPT-technology • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGP20N60
SGW20N60
PG-TO-220-3-1
PG-TO-247-3-21
SGW20N60
g20n60
G20N60 IGBT
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PDF
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G20N60
Abstract: No abstract text available
Text: SGP20N60 SGW20N60 Fast IGBT in NPT-technology • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGP20N60
SGW20N60
PG-TO-220-3-1
PG-TO-247-3-21
SGW20N60
G20N60
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PDF
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Untitled
Abstract: No abstract text available
Text: SGB20N60 Fast IGBT in NPT-technology C • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGB20N60
P-TO-263-3-2
O-263AB)
G20N60
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PDF
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g20n60
Abstract: G20N60 IGBT
Text: SGB20N60 Fast IGBT in NPT-technology C • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGB20N60
SGB20N60
g20n60
G20N60 IGBT
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PDF
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g20n60
Abstract: igbt 400V 20A PG-TO-263-3-2 SGB20N60
Text: SGB20N60 Fast IGBT in NPT-technology C • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGB20N60
PG-TO-263-3-2
O-263AB)
G20N60
g20n60
igbt 400V 20A
PG-TO-263-3-2
SGB20N60
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PDF
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g20n60
Abstract: G20N60 IGBT
Text: SGB20N60 Fast IGBT in NPT-technology C • 75% lower Eoff compared to previous generation combined with low conduction losses • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter • NPT-Technology for 600V applications offers:
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Original
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SGB20N60
P-TO-263-3-2
O-263AB)
SGB20N60
g20n60
G20N60 IGBT
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PDF
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