Alternates
    Please enter a valid full or partial manufacturer part number with a minimum of 3 letters or numbers

    MARKING CODE N3T Search Results

    MARKING CODE N3T Equivalents

    Sorry, but there were no results for that search. Please update your search settings or try another search term.

    MARKING CODE N3T Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    5446/BEA
    Rochester Electronics LLC 5446 - Decoder, BCD-To-7-Segment, With Open-Collector Outputs - Dual marked (M38510/01006BEA) PDF Buy
    54LS190/BEA
    Rochester Electronics LLC 54LS190 - BCD Counter, 4-Bit Synchronous Up/Down, With Mode Control - Dual marked (M38510/31513BEA) PDF Buy
    2910/BQA
    Rochester Electronics LLC 2910 - Microprogram Controller - Dual marked (7801701QA) PDF Buy
    MQ80C186-12/BYA
    Rochester Electronics LLC 80C186 - Microprocessor, 16-Bit -Dual marked (5962-8850102YA) PDF Buy
    54L04/BDA
    Rochester Electronics LLC 54L04 - Hex Inverter - Dual marked (M38510/02005BDA) PDF Buy

    MARKING CODE N3T Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    b 103g

    Abstract: DB10XG marking CODE GA DB101G DB107G DB106G
    Contextual Info: TAIWAN SEMICONDUCTOR RoHS DB101G- DB107G Single Phase 1.0 A M R Glass Passivated Bridge Rectifiers Q B C O M P L IA N C E A r - + .255 6.5 ,?45(ß.?) .2a5(7.2¿) Features <> <> UL Recognized File # E-96005 Glass passivated junction Ideal fo r printed circuit board


    OCR Scan
    DB101G DB107G E-96C05 /0-375n MIL-STD-202. DB107G) b 103g DB10XG marking CODE GA DB107G DB106G PDF

    control code data sending processing for remote

    Contextual Info: APPLICATION NOTE 144 DATA FAX COMMANDS CLASS 1 FOR CH179X COMPONENTS 5. FAX CLASS 1 COMMANDS 5.1. FAX I/O PROCESSING The fax I/O interface supports asynchronous serial and parallel interfaces. The interface rate is 19200 bps. The character format is 8 bits data, no parity, and 1 stop bit. Start and stop elements are removed from the transmit data


    OCR Scan
    CH179X control code data sending processing for remote PDF

    marking code S3j

    Abstract: SMC marking ED
    Contextual Info: TAIWAN SEMICONDUCTOR E tò S 3A - S3M 3.0 AMPS. Surface Mount Rectifiers R oH S COMPLIANCE SMC/DO-214AB n i JT E[ Features -c- •> ■> *> *> -5-c- ■> *> ■> ■> “ For surface mounted application Glass passivated junction chip. Low forward voltage drop


    OCR Scan
    SMC/DO-214AB V9L17VEE SFT71M= marking code S3j SMC marking ED PDF

    G4034

    Abstract: Concentrated Photovoltaic solar power NF51A G4634 is814w
    Contextual Info: SPEC No. G4634 DATE PREPARED BY: FILE No. April. 10. 199~ H. YOSHIOKA ‘& V*ML ISSUE April. 10.1996 .& CHECKED BY: S.TAKEOKA PAGE SHARP CORPORATION DATE April. 10.199 4 282-1 HAJIKAMI,SHINJYOCHO, REPRESENTATIVE DIVISION ENGINEERING DEPT. PHOTOVOLTAICS DIV.


    Original
    G4634 NE51A81E NE51A81F G4034 G4034 Concentrated Photovoltaic solar power NF51A G4634 is814w PDF

    Contextual Info: V048F080T030 V048F080M030 VTM VTMTM Transformer • 48 V to 8 V V•I ChipTM Converter • 125°C operation TJ • 30 A (45.0 A for 1 ms) • 1 µs transient response • High density – 813 W/in3 • 3.5 million hours MTBF • Small footprint – 210 W/in2


    Original
    V048F080T030 V048F080M030 V048F080T030 PDF

    Contextual Info: V048F160T015 V048F160M015 VTM VTMTM Transformer • 48 V to 16 V V•I ChipTM Converter • 125°C operation TJ • 15 A (22.5 A for 1 ms) • 1 µs transient response • High density – 813 W/in3 • 3.5 million hours MTBF • Small footprint – 210 W/in2


    Original
    V048F160T015 V048F160M015 V048F160T015 PDF

    Contextual Info: V048F030T070 V048F030M070 VTM VTMTM Transformer • 48 V to 3 V V•I ChipTM Converter • 125°C operation TJ • 70 A (105.0 A for 1 ms) • 1 µs transient response • High density – 237 A/in3 • 3.5 million hours MTBF • Small footprint – 60 A/in2


    Original
    V048F030T070 V048F030M070 V048F030T070 PDF

    Contextual Info: V048F096T025 V048F096M025 VTM VTMTM Transformer • 48 V to 9.6 V V•I ChipTM Converter • 125°C operation TJ • 25 A (37.5 A for 1 ms) • 1 µs transient response • High density – 813 W/in3 • 3.5 million hours MTBF • Small footprint – 210 W/in2


    Original
    V048F096T025 V048F096M025 V048F096T025 PDF

    Contextual Info: V048F015T100 V048F015M100 VTM VTMTM Transformer • 48 V to 1.5 V V•I ChipTM Converter • 125°C operation TJ • 100.0 A (150.0 A for 1 ms) • 1 µs transient response • High density – 339 A/in3 • 3.5 million hours MTBF • Small footprint – 80 A/in2


    Original
    V048F015T100 V048F015M100 V048F015T100 PDF

    Contextual Info: V048F040T050 V048F040M050 VTM VTMTM Transformer • 48 V to 4 V V•I ChipTM Converter • 125°C operation TJ • 50 A (75.0 A for 1 ms) • 1 µs transient response • High density – 169 A/in3 • 3.5 million hours MTBF • Small footprint – 40 A/in2


    Original
    V048F040T050 V048F040M050 V048F040T050 PDF

    Contextual Info: V048F020T080 V048F020M080 VTM VTMTM Transformer • 48 V to 2 V V•I ChipTM Converter • 125°C operation TJ • 80.0 A (120.0 A for 1 ms) • 1 µs transient response • High density – 271 A/in3 • 3.5 million hours MTBF • Small footprint – 70 A/in2


    Original
    V048F020T080 V048F020M080 V048F020T080 PDF

    Contextual Info: V048F120T025 V048F120M025 VTM VTMTM Transformer • 48 V to 12 V V•I ChipTM Converter • 125°C operation TJ • 25 A (37.5 A for 1 ms) • 1 µs transient response • High density – 1017 W/in3 • 3.5 million hours MTBF • Small footprint – 260 W/in2


    Original
    V048F120T025 V048F120M025 V048F120T025 PDF

    Contextual Info: V048F320T009 V048F320M009 VTM VTMTM Transformer • 48 V to 32 V V•I ChipTM Converter • 125°C operation TJ • 9.4 A (14.1 A for 1 ms) • 1 µs transient response • High density – 1017 W/in3 • 3.5 million hours MTBF • Small footprint – 260 W/in2


    Original
    V048F320T009 V048F320M009 V048F320T009 PDF

    Contextual Info: V048F060T040 V048F060M040 VTM VTMTM Transformer • 48 V to 6 V V•I ChipTM Converter • 125°C operation TJ • 40 A (60.0 A for 1 ms) • 1 µs transient response • High density – 813 W/in3 • 3.5 million hours MTBF • Small footprint – 210 W/in2


    Original
    V048F060T040 V048F060M040 V048F060T040 PDF

    B048F060M24

    Abstract: B048F060T24 D496 D505 709m
    Contextual Info: B048F060T24 B048F060M24 BCMTM Bus Converter • 48 V to 6 V V•I ChipTM Converter • Typical efficiency 95% • 240 Watt 360 Watt for 1 ms • 125°C operation (TJ) • High density – 813 W/in3 • <1 µs transient response • Small footprint – 210


    Original
    B048F060T24 B048F060M24 B048F060M24 B048F060T24 D496 D505 709m PDF

    D496

    Abstract: D505 V048F030T070
    Contextual Info: V048F030T070 V048F030M070 VTM VTMTM Transformer • 48 V to 3 V V•I ChipTM Converter • 125°C operation TJ • 70 A (105.0 A for 1 ms) • 1 µs transient response • High density – 237 A/in3 • 3.5 million hours MTBF • Small footprint – 60 A/in2


    Original
    V048F030T070 V048F030M070 V048F030T070 D496 D505 PDF

    V048F240T012

    Abstract: D496 D505 V048
    Contextual Info: V048F240T012 V048F240M012 VTM VTMTM Transformer • 48 V to 24 V V•I ChipTM Converter • 125°C operation TJ • 12.5 A (18.8 A for 1 ms) • 1 µs transient response • High density – 1017 W/in3 • 3.5 million hours MTBF • Small footprint – 260 W/in2


    Original
    V048F240T012 V048F240M012 V048F240T012 D496 D505 V048 PDF

    V048F040T050

    Abstract: V048F040M050 D496 D505 VTM48EF040T050A00 VTM*48
    Contextual Info: Not recommended for New Designs Replaced by VTM48EF040T050A00 V048F040T050 V048F040M050 VTM VTMTM Transformer • 48 V to 4 V V•I ChipTM Converter • 125°C operation TJ • 50 A (75.0 A for 1 ms) • 1 µs transient response • High density – 169 A/in3


    Original
    VTM48EF040T050A00 V048F040T050 V048F040M050 V048F040T050 V048F040M050 D496 D505 VTM48EF040T050A00 VTM*48 PDF

    Contextual Info: B048F015T14 B 048 F 015 M 14 BCMTM Bus Converter • 48 V to 1.5 V V•I Chip Bus Converter • Typical efficiency 91% • 135 Watt 203 Watt for 1 ms • 125°C operation (TJ) • High density – 305 A/in3 • <1 µs transient response • Small footprint – 80 A/in2


    Original
    B048F015T14 B048F015T14 PDF

    D496

    Abstract: D505
    Contextual Info: B048F015T14 B048F015M14 BCMTM Bus Converter • 48 V to 1.5 V V•I ChipTM Converter • Typical efficiency 91% • 135 Watt 203 Watt for 1 ms • 125°C operation (TJ) • High density – 305 A/in3 • <1 µs transient response • Small footprint – 80


    Original
    B048F015T14 B048F015M14 D496 D505 PDF

    VTM 48

    Abstract: D496 D505 V048F480M006 V048F480T006 J1 DIODE
    Contextual Info: V048F480T006 V048F480M006 VTM VTMTM Transformer • 48 V to 48 V V•I ChipTM Converter • 125°C operation TJ • 6.3 A (9.4 A for 1 ms) • 1 µs transient response • High density – 1017 W/in3 • 3.5 million hours MTBF • Small footprint – 260 W/in2


    Original
    V048F480T006 V048F480M006 V048F480T006 VTM 48 D496 D505 V048F480M006 J1 DIODE PDF

    D496

    Abstract: D505
    Contextual Info: B048F320T30 B048F320M30 BCMTM Bus Converter • 48 V to 32 V V•I ChipTM Converter • Typical efficiency 96% • 300 Watt 450 Watt for 1 ms • 125°C operation (TJ) • High density – 1017 W/in3 • <1 µs transient response • Small footprint – 260


    Original
    B048F320T30 B048F320M30 D496 D505 PDF

    V048F060T040

    Abstract: D496 D505 V048F060M040
    Contextual Info: V048F060T040 V048F060M040 VTM VTMTM Transformer • 48 V to 6 V V•I ChipTM Converter • 125°C operation TJ • 40 A (60.0 A for 1 ms) • 1 µs transient response • High density – 813 W/in3 • 3.5 million hours MTBF • Small footprint – 210 W/in2


    Original
    V048F060T040 V048F060M040 V048F060T040 D496 D505 V048F060M040 PDF

    B048F240M30

    Abstract: D496 D505 B048F240T30
    Contextual Info: B048F240T30 B048F240M30 BCMTM Bus Converter • 48 V to 24 V V•I ChipTM Converter • Typical efficiency 96% • 300 Watt 450 Watt for 1 ms • 125°C operation (TJ) • High density – 1017 W/in3 • <1 µs transient response • Small footprint – 260


    Original
    B048F240T30 B048F240M30 B048F240M30 D496 D505 B048F240T30 PDF