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    P014 MARKING Search Results

    P014 MARKING Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    MG80C186-10/BZA
    Rochester Electronics LLC 80C186 - Microprocessor, 16-Bit -Dual marked (5962-8850101ZA) PDF Buy
    ICM7555MTV/883
    Rochester Electronics LLC ICM7555MTV/883 - Dual marked (5962-8950303GA) PDF Buy
    MQ80C186-10/BYA
    Rochester Electronics LLC 80C186 - Microprocessor, 16-Bit -Dual marked (5962-8850101YA) PDF Buy
    54121/BCA
    Rochester Electronics LLC 54121 - Multivibrator, Monostable - Dual marked (M38510/01201BCA) PDF Buy
    54F191/QEA
    Rochester Electronics LLC 54F191/QEA - Dual marked (5962-9058201EA) PDF Buy

    P014 MARKING Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    CL2N3-G

    Abstract: CL2K CL2N3-GP005 p014 marking
    Contextual Info: Supertex inc. CL2 Simple 90V, 20mA, Temperature Compensated Constant Current LED Driver IC Features General Description ►► ►► ►► ►► The Supertex CL2 is a high voltage, temperature compensated, constant current source. The device is trimmed to provide


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    O-243AA OT-89) O-252 C071012 CL2N3-G CL2K CL2N3-GP005 p014 marking PDF

    Contextual Info: Supertex inc. CL2 Simple 90V, 20mA, Temperature Compensated Constant Current LED Driver IC General Description Features The Supertex CL2 is a high voltage, temperature compensated, constant current source. The device is trimmed to provide a constant current of 20mA±10% at an input voltage of 5.0


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    O-243AA OT-89) O-252 C071012 PDF

    DN5m

    Contextual Info: Supertex inc. DN3545 N-Channel Depletion-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► General Description High input impedance Low input capacitance Fast switching speeds Low on-resistance Free from secondary breakdown Low input and output leakage


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    DN3545 DSFP-DN3545 C070113 DN5m PDF

    b0715

    Contextual Info: Supertex inc. LP0701 P-Channel Enhancement-Mode Lateral MOSFET Features General Description ►► Ultra-low threshold ►► High input impedance ►► Low input capacitance ►► Fast switching speeds ►► Low on-resistance ►► Freedom from secondary breakdown


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    LP0701 DSFP-LP0701 B071513 b0715 PDF

    Contextual Info: Supertex inc. N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► TN2540 General Description Low threshold 2.0V max. High input impedance Low input capacitance (125pF max.) Fast switching speeds Low on-resistance


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    TN2540 125pF DSFP-TN2540 A062113 PDF

    Contextual Info: Supertex inc. VN4012 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VN4012 DSFP-VN4012 B082013 PDF

    Contextual Info: Supertex inc. VP0808 P-Channel Enhancement-Mode Vertical DMOS FETs Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VP0808 DSFP-VP0808 B082313 PDF

    Contextual Info: Supertex inc. VN2410 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VN2410 DSFP-VN2410 C081913 PDF

    Contextual Info: Supertex inc. VN0300 N-Channel Enhancement-Mode Vertical DMOS FET General Description Features ►► ►► ►► ►► ►► ►► ►► This enhancement-mode normally-off transistor utilizes a vertical DMOS structure and Supertex’s well-proven,


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    VN0300 DSFP-VN0300 B081913 PDF

    Contextual Info: Supertex inc. VN2406 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VN2406 DSFP-VN2406 D081913 PDF

    Contextual Info: Supertex inc. VN0808 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VN0808 DSFP-VN0808 B081913 PDF

    Contextual Info: Supertex inc. VN1206 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VN1206 DSFP-VN1206 B081913 PDF

    Contextual Info: Supertex inc. VP0104 P-Channel Enhancement-Mode Vertical DMOS FETs Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VP0104 DSFP-VP0104 C082313 PDF

    Contextual Info: Supertex inc. TN5325 N-Channel Enhancement-Mode Vertical DMOS FET General Description Features ►► ►► ►► ►► Low threshold 2.0V max. High input impedance and high gain Free from secondary breakdown Low CISS and fast switching speeds Applications


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    TN5325 DSFP-TN5325 B081213 PDF

    Contextual Info: Supertex inc. TP0620 P-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Low threshold -2.4V max. High input impedance Low input capacitance (85pF typical) Fast switching speeds Low on-resistance


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    TP0620 DSFP-TP0620 C081313 PDF

    Contextual Info: Supertex inc. VN0106 N-Channel Enhancement-Mode Vertical DMOS FET General Description Features ►► ►► ►► ►► ►► ►► ►► This enhancement-mode normally-off transistor utilizes a vertical DMOS structure and Supertex’s well-proven,


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    VN0106 DSFP-VN0106 C081913 PDF

    TP0604N3-G

    Contextual Info: Supertex inc. TP0604 P-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Low threshold -2.4V max. High input impedance Low input capacitance (95pF typical) Fast switching speeds Low on-resistance


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    TP0604 DSFP-TP0604 C082012 TP0604N3-G PDF

    TN0604N3-G

    Contextual Info: Supertex inc. TN0604 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Low threshold 1.6V max. High input impedance Low input capacitance (140pF typical) Fast switching speeds Low on-resistance


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    140pF TN0604 DSFP-TN0604 C082012 TN0604N3-G PDF

    Contextual Info: Supertex inc. TP2635 P-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Low threshold -2.0V max. High input impedance Low input capacitance Fast switching speeds Low on-resistance Free from secondary breakdown


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    TP2635 DSFP-TP2635 B081613 PDF

    Contextual Info: Supertex inc. VP2106 P-Channel Enhancement-Mode Vertical DMOS FETs General Description Features ►► ►► ►► ►► ►► ►► ►► This enhancement-mode normally-off transistor utilizes a vertical DMOS structure and Supertex’s well-proven,


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    VP2106 DSFP-VP2106 C082313 PDF

    Contextual Info: Supertex inc. VN0550 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Free from secondary breakdown Low power drive requirement Ease of paralleling Low CISS and fast switching speeds


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    VN0550 DSFP-VN0550 C081913 PDF

    Contextual Info: Supertex inc. TN0604 N-Channel Enhancement-Mode Vertical DMOS FET Features ►► ►► ►► ►► ►► ►► ►► General Description Low threshold 1.6V max. High input impedance Low input capacitance (140pF typical) Fast switching speeds Low on-resistance


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    TN0604 140pF DSFP-TN0604 D080813 PDF

    Contextual Info: Supertex inc. TN0604 N-Channel Enhancement-Mode Vertical DMOS FET Features General Description Low threshold 1.6V max. High input impedance Low input capacitance (140pF typical) Fast switching speeds Low on-resistance Free from secondary breakdown Low input and output leakage


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    TN0604 140pF DSFP-TN0604 C082012 PDF

    Contextual Info: Supertex inc. TP0604 P-Channel Enhancement-Mode Vertical DMOS FET Features General Description Low threshold -2.4V max. High input impedance Low input capacitance (95pF typical) Fast switching speeds Low on-resistance Free from secondary breakdown Low input and output leakage


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    TP0604 DSFP-TP0604 C082012 PDF