16VZ Search Results
16VZ Datasheets Context Search
Catalog Datasheet | Type | Document Tags | |
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4V3Z
Abstract: 7v5z
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BZT52C2V4-BZT52C75 500mW OD-123F OD-123 MIL-STD-202, 4V3Z 7v5z | |
8V2Z
Abstract: 4V3Z
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500mW OD-123 8V2Z 4V3Z | |
FET marking code
Abstract: HEXFET SO-8 IRF 450 MOSFET MIC4452BM 10BQ040 EIA-541 F7101 IRF7101 IRF7811AV irf710
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PD-94009A IRF7811AV IRF7811AV EIA-481 EIA-541. FET marking code HEXFET SO-8 IRF 450 MOSFET MIC4452BM 10BQ040 EIA-541 F7101 IRF7101 irf710 | |
48V to 12V buck transformerContextual Info: LX7309 Advanced Multi-topology Current-Mode Controller Preliminary Datasheet Description Features The LX7309 is a versatile current-mode DC-DC controller for isolated/non-isolated topologies. It features a low-resistance current-sensing scheme for max 200mV drop, using a differential current-sense |
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LX7309 LX7309 200mV 155mm( 48V to 12V buck transformer | |
IRF7811AVTRPBFContextual Info: IRF7811AVPbF-1 HEXFET Power MOSFET VDS 30 RDS on max (@VGS = 4.5V) Qg (typical) ID (@TA = 25°C) V 14 mΩ 17 nC 10.8 A Base Part Number Package Type IRF7811AVPbF-1 SO-8 1 8 S 2 7 D S 3 6 D G 4 5 D SO-8 Features Industry-standard pinout SO-8 Package Compatible with Existing Surface Mount Techniques |
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IRF7811AVPbF-1 IRF7811AVTRPbF-1 D-020D IRF7811AVTRPBF | |
ZGFM053V3C-MH
Abstract: 18Vz 3v0z ZGFM0520C-MH 22VZ ZGFM053V0C-MH ZGFM053V6C-MH ZGFM0575C-MH ZGFM052V ZGFM052V4C-MH
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ZGFM052V4C-MH ZGFM0575C-MH OD-123 30REF MIL-STD-750, OD-123 500mW 10-THERMAL ZGFM053V3C-MH 18Vz 3v0z ZGFM0520C-MH 22VZ ZGFM053V0C-MH ZGFM053V6C-MH ZGFM0575C-MH ZGFM052V | |
20VZ
Abstract: BZT52C3V3-FL 564 code smd
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BZT52-FL iJESD22-A102 MIL-STD-750D METHOD-1051 METHOD-1056 METHOD-1021 METHOD-1031 20VZ BZT52C3V3-FL 564 code smd | |
5V6Z
Abstract: 6v2z
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500mW OD-123 DB-100 5V6Z 6v2z | |
5V1Z
Abstract: 9v1z 5V6Z 15VZ BZT52C12V 3v0z BZT52-C12-V BZT52C30V BZT52-C12V BZT52C20-V
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BZT52C2V0 BZT52C75 500mW OD-123F OD-123 th329 60-cycle 5V1Z 9v1z 5V6Z 15VZ BZT52C12V 3v0z BZT52-C12-V BZT52C30V BZT52-C12V BZT52C20-V | |
5V1Z
Abstract: MMSZ11VCW MMSZ30V 22VZ MMSZ15VCW 3v0z MMSZ12V 15VZ MMSZ12VCW 6v2z
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500mW OD-123 5V1Z MMSZ11VCW MMSZ30V 22VZ MMSZ15VCW 3v0z MMSZ12V 15VZ MMSZ12VCW 6v2z | |
6v2z
Abstract: 12VZ 5V1Z TCMMSZ10V TCMMSZ22V
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500mW OD-123 6v2z 12VZ 5V1Z TCMMSZ10V TCMMSZ22V | |
MMSZ24V
Abstract: MMSZ10V MMSZ15V MMSZ36V MMSZ39V 9v1z 5V1Z MMSZ75V MMSZ2V7 MMSZ4V7
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MMSZ75V OD-123 MIL-STD-750, OD-123 500mW 10-THERMAL MMSZ24V MMSZ10V MMSZ15V MMSZ36V MMSZ39V 9v1z 5V1Z MMSZ75V MMSZ2V7 MMSZ4V7 | |
12v to 1000v inverters circuit diagrams
Abstract: 1n4007 MTBF IHD680 ihd680ai diode SO1 Diode 1N4007 transistor japanese transistor manual IHD280 4N7 CAPACITOR 1000V japanese transistor reference manual
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ISO9001 12v to 1000v inverters circuit diagrams 1n4007 MTBF IHD680 ihd680ai diode SO1 Diode 1N4007 transistor japanese transistor manual IHD280 4N7 CAPACITOR 1000V japanese transistor reference manual | |
3v0z
Abstract: 22VZ 5V1Z zener smd marking BZT52C2V4 BZT52C2V4-BZT52C75 BZT52C2V7 BZT52C3V0 4V3Z BZT52C3V6
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BZT52C2V4-BZT52C75 500mW OD-123F OD-123 MIL-STD-202, 3v0z 22VZ 5V1Z zener smd marking BZT52C2V4 BZT52C2V4-BZT52C75 BZT52C2V7 BZT52C3V0 4V3Z BZT52C3V6 | |
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DB-083
Abstract: 15VZ
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500mW OD-123 DB-100 DB-083 15VZ | |
5V1Z
Abstract: 3v0z 22VZ 9v1z 12VZ 5V6Z 15VZ 3V3Z 24vz 18VZ
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BZT52C2V4 BZT52C75 500mW OD-123F OD-123 BZT52C68 60-cycle 5V1Z 3v0z 22VZ 9v1z 12VZ 5V6Z 15VZ 3V3Z 24vz 18VZ | |
IRF7811AVPBF
Abstract: F7101 IRF7101 IRF7811AV 10BQ040 EIA-541
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PD-95265 IRF7811AVPbF IRF7811AV EIA-481 EIA-541. IRF7811AVPBF F7101 IRF7101 10BQ040 EIA-541 | |
IRF7811AV
Abstract: 10BQ040 EIA-541 F7101 IRF7101
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PD-94009B IRF7811AV IRF7811AV EIA-481 EIA-541. 10BQ040 EIA-541 F7101 IRF7101 | |
10BQ040
Abstract: IRF7811AV 16VZ
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PD-94009 IRF7811AV IRF7811AV IA-48 10BQ040 16VZ | |
5V6Z
Abstract: 4V3Z 3v0z 8V2Z 5V1Z 6V2Z 24vz 12VZ 47VZ 75VZ
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500mW OD-123 5V6Z 4V3Z 3v0z 8V2Z 5V1Z 6V2Z 24vz 12VZ 47VZ 75VZ | |
36VZ diode
Abstract: 9v1z 39VZ
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500mW OD-123 36VZ diode 9v1z 39VZ | |
18VZ
Abstract: 9v1z MMSZ18VCWF 5V1Z 4V3Z 5V6Z MMSZ5V6CW mmsZ18V 12VZ 3v0z
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MMSZ75VCWF OD-123F OD-123F 18VZ 9v1z MMSZ18VCWF 5V1Z 4V3Z 5V6Z MMSZ5V6CW mmsZ18V 12VZ 3v0z | |
Contextual Info: PD-94009B IRF7811AV IRF7811AV • • • • • N-Channel Application-Specific MOSFETs Ideal for CPU Core DC-DC Converters Low Conduction Losses Low Switching Losses Minimizes Parallel MOSFETs for high current applications • 100% RG Tested 1 8 S 2 7 S |
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PD-94009B IRF7811AV IRF7811AV EIA-481 EIA-541. | |
Contextual Info: PD-TBD IRF7811AV IRF7811AV • • • • • N-Channel Application-Specific MOSFETs Ideal for CPU Core DC-DC Converters Low Conduction Losses Low Switching Losses Minimizes Parallel MOSFETs for high current applications Description This new device employs advanced HEXFET Power |
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IRF7811AV IRF7811AV |