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    A1012* TRANSISTOR Search Results

    A1012* TRANSISTOR Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    TTC5886A Toshiba Electronic Devices & Storage Corporation NPN Bipolar Transistor / hFE=400~1000 / VCE(sat)=0.22V / tf=120ns Visit Toshiba Electronic Devices & Storage Corporation
    TTA2097 Toshiba Electronic Devices & Storage Corporation PNP Bipolar Transistor / hFE=200~500 / VCE(sat)=-0.27V / tf=60ns Visit Toshiba Electronic Devices & Storage Corporation
    XPQR8308QB Toshiba Electronic Devices & Storage Corporation N-ch MOSFET, 80 V, 350 A, 0.00083 Ω@10V, L-TOGL Visit Toshiba Electronic Devices & Storage Corporation
    XPQ1R00AQB Toshiba Electronic Devices & Storage Corporation N-ch MOSFET, 100 V, 300 A, 0.00103 Ω@10V, L-TOGL Visit Toshiba Electronic Devices & Storage Corporation
    TK190U65Z Toshiba Electronic Devices & Storage Corporation MOSFET, N-ch, 650 V, 15 A, 0.19 Ohm@10V, TOLL Visit Toshiba Electronic Devices & Storage Corporation

    A1012* TRANSISTOR Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    transistor A1012

    Abstract: a1012 transistor UTC A1012 A1012
    Text: UTC A1012 SILICON PNP EPITAXIAL TRANSISTOR SILICON PNPEPITAXIAL TRANSISTOR DESCRIPTION The A1012 is designed for silicon current switching application. 1 FEATURES *Low collector saturation voltage Vce sat =-0.4V(MAX.) at Ic=-3A *High speed switching time Tstg=1.0us(Typ.)


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    PDF A1012 A1012 2SC2562 O-220 transistor A1012 a1012 transistor UTC A1012

    a1012 transistor

    Abstract: transistor A1012 a1012 a1012* transistor
    Text: UTC 2SA1012 SILICON PNP EPITAXIAL TRANSISTOR SILICON PNP EPITAXIAL TRANSISTOR DESCRIPTION The A1012 is designed for high current switching application. 1 FEATURES *Low collector saturation voltage Vce sat =-0.4V(max.) at Ic=-3A *High speed switching time tstg=1.0µs(Typ.)


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    PDF 2SA1012 A1012 2SC2562 O-220 QW-R203-015 a1012 transistor transistor A1012 a1012* transistor

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    Abstract: No abstract text available
    Text: UTC 2SA1012 SILICON PNP EPITAXIAL TRANSISTOR SILICON PNP EPITAXIAL TRANSISTOR DESCRIPTION The A1012 is designed for high current switching application. 1 FEATURES *Low collector saturation voltage Vce sat =-0.4V(max.) at Ic=-3A *High speed switching time tstg=1.0µs(Typ.)


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    PDF 2SA1012 A1012 2SC2562 O-252 QW-R209-008

    a1012 transistor

    Abstract: transistor A1012 A1012 a1012* transistor IC 4047 BTA1012E3 C601E3 BTA1012 A-101-2 data sheet of IC 4047
    Text: CYStech Electronics Corp. Spec. No. : C601E3 Issued Date : 2004.07.26 Revised Date : Page No. : 1/4 Low Vcesat PNP Epitaxial Planar Transistor BTA1012E3 Features • Low VCE sat , VCE(sat)=-0.4 V (typical), at IC / IB = -3A / -0.15A • Excellent DC current gain characteristics


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    PDF C601E3 BTA1012E3 O-220AB UL94V-0 a1012 transistor transistor A1012 A1012 a1012* transistor IC 4047 BTA1012E3 C601E3 BTA1012 A-101-2 data sheet of IC 4047

    transistor d468

    Abstract: D468 transistor transistor D468 circuit diagram application transistor A1012 a1012 transistor A1012 thermistor RY 126 BBV transistor 4 pin battery charger laptop 12v d468
    Text: AIC1782 Dual-Battery Charge Controller FEATURES DESCRIPTION Quick and Easy Testing for Production. Sequential Charging Control of Two NiMH/NiCd Battery Packs. Reliable Sequential Fast Charge Control of Dual NiMH and/or NiCd Battery Packs, even with a Fluctuating Charging Current.


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    PDF AIC1782 AIC1782 transistor d468 D468 transistor transistor D468 circuit diagram application transistor A1012 a1012 transistor A1012 thermistor RY 126 BBV transistor 4 pin battery charger laptop 12v d468

    transistor D468 circuit diagram application

    Abstract: thermistor RY 126
    Text: AIC1782 Dual-Battery Charge Controller FEATURES DESCRIPTION Quick and Easy Testing for Production. Sequential Charging Control of Two NiMH/NiCd Battery Packs. Reliable Sequential Fast Charge Control of Dual NiMH and/or NiCd Battery Packs, even with a Fluctuating Charging Current.


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    PDF AIC1782 transistor D468 circuit diagram application thermistor RY 126

    transistor D468 circuit diagram application

    Abstract: 4 pin battery charger laptop 12v transistor d468 a1012 transistor transistor A1012 78L05 voltage regulator pin configuration d468 3904 dual ATS diagram TL 78l05
    Text: SS6782G Charge Controller for Dual Batteries FEATURES DESCRIPTION Quick and easy testing for production. Sequential charging control of two NiMH/NiCd Battery Packs. Reliable sequential fast charge control of dual NiMH and/or NiCd Battery Packs, even with a fluctuating charging current.


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    PDF SS6782G transistor D468 circuit diagram application 4 pin battery charger laptop 12v transistor d468 a1012 transistor transistor A1012 78L05 voltage regulator pin configuration d468 3904 dual ATS diagram TL 78l05

    AIC1782

    Abstract: a1012 transistor D468 transistor transistor d468 d468 transistor A1012 thermistor RY 126 5W battery charger aic1563 step up 1N4148
    Text: AIC1782 Dual-Battery Charge Controller n FEATURES l l l l l l l l l l l l n DESCRIPTION Quick and Easy Testing for Production. Sequential Charging Control of Two NiMH/NiCd Battery Packs. Reliable Sequential Fast Charge Control of Dual NiMH and/or NiCd Battery Packs, even with a


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    PDF AIC1782 AIC1782 a1012 transistor D468 transistor transistor d468 d468 transistor A1012 thermistor RY 126 5W battery charger aic1563 step up 1N4148

    Untitled

    Abstract: No abstract text available
    Text: AIC1782 Dual-Battery Charge Controller FEATURES DESCRIPTION Quick and Easy Testing for Production. Sequential Charging Control of Two NiMH/NiCd Battery Packs. Reliable Sequential Fast Charge Control of Dual NiMH and/or NiCd Battery Packs, even with a Fluctuating Charging Current.


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    PDF AIC1782

    j2y transistor

    Abstract: T15J10 MP4704 MG100M2CK1 2sb834 MP3103 MG50J6ES91 MP3002 mp4505 2sc497
    Text: As you well know, semiconductors are today essential for use in a very wide range of applications— from consumer to industrial use. In any application, your choice of Toshiba semiconductors will always be correct. To help you choose which semi­ conductor is correct for your application, this brochure outlines maximum ratings,


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    PDF O220AB O-126 j2y transistor T15J10 MP4704 MG100M2CK1 2sb834 MP3103 MG50J6ES91 MP3002 mp4505 2sc497