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    NTD4806 Search Results

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    NTD4806 Price and Stock

    Rochester Electronics LLC NTD4806N-35G

    MOSFET N-CH 30V 11.3A/79A IPAK
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey NTD4806N-35G Tube 46,050 1,110
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    • 10000 $0.27
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    Rochester Electronics LLC NTD4806NT4G

    MOSFET N-CH 30V 11.3A/79A DPAK
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey NTD4806NT4G Bulk 43,497 1,066
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    • 10000 $0.28
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    Rochester Electronics LLC NTD4806NA-1G

    MOSFET N-CH 30V 11.3A/79A IPAK
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey NTD4806NA-1G Tube 7,725 2,664
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    • 10000 $0.11
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    Rochester Electronics LLC NTD4806NAT4G

    MOSFET N-CH 30V 11.3A/79A DPAK
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey NTD4806NAT4G Bulk 7,500 1,211
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    • 10000 $0.25
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    Rochester Electronics LLC NTD4806N-1G

    MOSFET N-CH 30V 11.3A/79A IPAK
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey NTD4806N-1G Tube 2,850 2,850
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    • 10000 $0.11
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    NTD4806 Datasheets (6)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    NTD4806N On Semiconductor Power MOSFET 30 V, 76 A, Single N-Channel, DPAK/IPAK Original PDF
    NTD4806N-1G On Semiconductor Power MOSFET 30 V, 76 A, Single N-Channel, DPAK Original PDF
    NTD4806N-1H On Semiconductor Power MOSFET 30V 76A 6 mOhm Single N-Channel IPAK Original PDF
    NTD4806N-35G On Semiconductor Power MOSFET 30 V, 76 A, Single N-Channel, DPAK/IPAK Original PDF
    NTD4806NT4G On Semiconductor Power MOSFET 30 V, 76 A, Single N-Channel, DPAK Original PDF
    NTD4806NT4H On Semiconductor Power MOSFET 30V 76A 6 mOhm Single N-Channel DPAK Original PDF

    NTD4806 Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    Untitled

    Abstract: No abstract text available
    Text: NTD4806N, NVD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features • • • • • Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses AEC−Q101 Qualified and PPAP Capable − NVD4806N


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    NTD4806N, NVD4806N NTD4806N/D PDF

    48 06ng

    Abstract: 4806NG 06ng 49 06ng mosfet 06ng 48 06ng mosfet 4806n NTD4806N 369ad NTD4806NT4G
    Text: NTD4806N Power MOSFET 30 V, 76 A, Single N-Channel, DPAK/IPAK Features •ăLow RDS on to Minimize Conduction Losses •ăLow Capacitance to Minimize Driver Losses •ăOptimized Gate Charge to Minimize Switching Losses •ăThese are Pb-Free Devices http://onsemi.com


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    NTD4806N NTD4806N/D 48 06ng 4806NG 06ng 49 06ng mosfet 06ng 48 06ng mosfet 4806n NTD4806N 369ad NTD4806NT4G PDF

    4806n

    Abstract: 06ng 4806ng 48 06ng 369AA-01
    Text: NTD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses These are Pb−Free Devices http://onsemi.com RDS(on) MAX


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    NTD4806N NTD4806N/D 4806n 06ng 4806ng 48 06ng 369AA-01 PDF

    4806n

    Abstract: NTD4806NT4G 4806ng 48 06ng 369ad
    Text: NTD4806N, NVD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features • • • • • Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses AEC−Q101 Qualified and PPAP Capable − NVD4806N


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    NTD4806N, NVD4806N AEC-Q101 NTD4806N/D 4806n NTD4806NT4G 4806ng 48 06ng 369ad PDF

    06ng

    Abstract: 48 06ng 4806ng mosfet 06ng 4806N 49 06ng on 48 06ng
    Text: NTD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses These are Pb−Free Devices http://onsemi.com RDS(on) MAX


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    NTD4806N NTD4806N/D 06ng 48 06ng 4806ng mosfet 06ng 4806N 49 06ng on 48 06ng PDF

    48 06ng

    Abstract: 4806ng 06ng mosfet 06ng 4806N 48 06ng mosfet 49 06ng mosfet on 06ng 369D NTD4806N
    Text: NTD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses These are Pb−Free Devices http://onsemi.com RDS(on) MAX


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    NTD4806N NTD4806N/D 48 06ng 4806ng 06ng mosfet 06ng 4806N 48 06ng mosfet 49 06ng mosfet on 06ng 369D NTD4806N PDF

    48 06ng

    Abstract: 06NG 4806ng NTD4806N mosfet on 48 06ng 369D 4806N 49 06ng
    Text: NTD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses These are Pb−Free Devices http://onsemi.com RDS(on) MAX


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    NTD4806N NTD4806N/D 48 06ng 06NG 4806ng NTD4806N mosfet on 48 06ng 369D 4806N 49 06ng PDF

    48 06ng

    Abstract: 06NG 4806ng 369D NTD4806N NTD4806NT4G IPAK
    Text: NTD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features • • • • Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses These are Pb−Free Devices http://onsemi.com


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    NTD4806N NTD4806N/D 48 06ng 06NG 4806ng 369D NTD4806N NTD4806NT4G IPAK PDF

    48 06ng

    Abstract: 06ng mosfet on 48 06ng 4806n mosfet on 06ng mosfet 06ng 49 06ng 4806ng NTD4806NT4G 369D
    Text: NTD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features • • • • Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses These are Pb−Free Devices http://onsemi.com


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    NTD4806N NTD4806N/D 48 06ng 06ng mosfet on 48 06ng 4806n mosfet on 06ng mosfet 06ng 49 06ng 4806ng NTD4806NT4G 369D PDF

    Untitled

    Abstract: No abstract text available
    Text: NTD4806N, NVD4806N Power MOSFET 30 V, 76 A, Single N−Channel, DPAK/IPAK Features • • • • • Low RDS on to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses AEC−Q101 Qualified and PPAP Capable − NVD4806N


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    NTD4806N, NVD4806N NTD4806N/D PDF

    Untitled

    Abstract: No abstract text available
    Text: NCP1588, NCP1589 Low Voltage Synchronous Buck Controller The NCP158x is a low cost PWM controller designed to operate from a 5 V or 12 V supply. This device is capable of producing an output voltage as low as 0.8 V. This device is capable of converting voltage from as low as 2.5 V. This 10-pin device provides an optimal


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    NCP1588, NCP1589 NCP158x 10-pin NCP1588/D PDF

    NCP1588

    Abstract: NCP1588MTR2G DFN10 NTD30N02 Diode marking ug LG LX DIODE MARKING code UG 45 lg controller circuit diagram LG monitor circuit diagram diagram LG monitor circuits
    Text: NCP1588 Low Voltage Synchronous Buck Controller The NCP1588 is a low cost PWM controller designed to operate from a 5 V or 12 V supply. This device is capable of producing an output voltage as low as 0.8 V. This device is capable of converting voltage from as low as 2.5 V. This 10-pin device provides an optimal


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    NCP1588 NCP1588 10-pin 300kHz NCP1588/D NCP1588MTR2G DFN10 NTD30N02 Diode marking ug LG LX DIODE MARKING code UG 45 lg controller circuit diagram LG monitor circuit diagram diagram LG monitor circuits PDF

    smd R552

    Abstract: R614 smd regulator marking AJ NCP1587DR2G smd diode R635 SMD R618 NCP1587ADR2G TP20 R603 diode smd marking FZ
    Text: NCP1587, NCP1587A Low Voltage Synchronous Buck Controller The NCP1587 and NCP1587A are low cost PWM controllers designed to operate from a 5 V or 12 V supply. These devices are capable of producing an output voltage as low as 0.8 V. These 8−pin devices provide an optimal level of integration to reduce size and cost


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    NCP1587, NCP1587A NCP1587 NCP1587A NCP1587/A NCP1587) NCP1587A) NCP1587/D smd R552 R614 smd regulator marking AJ NCP1587DR2G smd diode R635 SMD R618 NCP1587ADR2G TP20 R603 diode smd marking FZ PDF

    Untitled

    Abstract: No abstract text available
    Text: NCP1589A, NCP1589B Low Voltage Synchronous Buck Controller The NCP1589A/B is a low cost PWM controller designed to operate from a 5 V or 12 V supply. This device is capable of producing an output voltage as low as 0.8 V. This device is capable of converting


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    NCP1589A, NCP1589B NCP1589A/B NCP1589A/D PDF

    Untitled

    Abstract: No abstract text available
    Text: NCP1587G Low Voltage Synchronous Buck Controller The NCP1587G is a low cost PWM controller designed to operate from a 5 V or 12 V supply. These devices are capable of producing an output voltage as low as 0.8 V. These 8−pin devices provide an optimal level of integration to reduce size and cost of the power supply. The


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    NCP1587G NCP1587G NCP1587G/D PDF

    ic 74169

    Abstract: NCP1589 DIODE MARKING code UG 45 LG monitor circuit diagram NCP1589amntwg DFN10 NCP1589A NCP1589B Diode marking ug
    Text: NCP1589A, NCP1589B Product Preview Low Voltage Synchronous Buck Controller The NCP1589A/B is a low cost PWM controller designed to operate from a 5 V or 12 V supply. This device is capable of producing an output voltage as low as 0.8 V. This device is capable of converting


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    NCP1589A, NCP1589B NCP1589A/B 10-pin NCP1589A/D ic 74169 NCP1589 DIODE MARKING code UG 45 LG monitor circuit diagram NCP1589amntwg DFN10 NCP1589A NCP1589B Diode marking ug PDF

    ic 74169

    Abstract: Diode marking ug MV-808 74169 NCP1589A DIODE MARKING code UG 45 lg controller circuit diagram NCP1589 NCP1589B lg monitor
    Text: NCP1589A, NCP1589B Low Voltage Synchronous Buck Controller The NCP1589A/B is a low cost PWM controller designed to operate from a 5 V or 12 V supply. This device is capable of producing an output voltage as low as 0.8 V. This device is capable of converting


    Original
    NCP1589A, NCP1589B NCP1589A/B 10-pin NCP1589A/D ic 74169 Diode marking ug MV-808 74169 NCP1589A DIODE MARKING code UG 45 lg controller circuit diagram NCP1589 lg monitor PDF

    ncp1589

    Abstract: Diode marking ug NCP1588 NCP1588MTR2G 74169 diagram LG monitor circuits DFN10 LG monitor circuit diagram counter 74169 DIODE MARKING code UG 45
    Text: NCP1588, NCP1589 Low Voltage Synchronous Buck Controller The NCP158x is a low cost PWM controller designed to operate from a 5 V or 12 V supply. This device is capable of producing an output voltage as low as 0.8 V. This device is capable of converting voltage from as low as 2.5 V. This 10-pin device provides an optimal


    Original
    NCP1588, NCP1589 NCP158x 10-pin 300kHz NCP1588/D ncp1589 Diode marking ug NCP1588 NCP1588MTR2G 74169 diagram LG monitor circuits DFN10 LG monitor circuit diagram counter 74169 DIODE MARKING code UG 45 PDF

    NTP2955G

    Abstract: m74vhc1gt50 MBRA340T3G NTR4003NT1G NCV78L00A ncv7420 MBRB20100CTT4G BAT54CL MBRS2H100T3G MBRS340T3G
    Text: 5V ±3% 80 mA 0.8 V — 6 mA 1 mA CS8101 5V ±2% 100 mA 0.6 V 50 mA 140 mA (100 mA) CS8151 5V ±2% 100 mA 0.6 V — 750 mA (200 mA) CS8221 5V ±2% 100 mA 0.6 V — NCV317L Adj ±4% 100 mA 1.9 V (Typ) — Overvoltage Current Limit Wakeup l Overtemperature


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    CS8101 CS8151 CS8221 NCV317L NCV553 SC-82 SOIC-20 SGD516/D NTP2955G m74vhc1gt50 MBRA340T3G NTR4003NT1G NCV78L00A ncv7420 MBRB20100CTT4G BAT54CL MBRS2H100T3G MBRS340T3G PDF

    Untitled

    Abstract: No abstract text available
    Text: NCP1588, NCP1589 Low Voltage Synchronous Buck Controller The NCP158x is a low cost PWM controller designed to operate from a 5 V or 12 V supply. This device is capable of producing an output voltage as low as 0.8 V. This device is capable of converting voltage from as low as 2.5 V. This 10-pin device provides an optimal


    Original
    NCP1588, NCP1589 NCP158x 10-pin NCP1588/D PDF

    NCP1587 D

    Abstract: smd R552 smd diode R622 IC 9347 pin diagram smd diode R630 SO8F DIODE smd R552 R584 smd diode R635 R613
    Text: NCP1587, NCP1587A Low Voltage Synchronous Buck Controller The NCP1587 and NCP1587A are low cost PWM controllers designed to operate from a 5 V or 12 V supply. These devices are capable of producing an output voltage as low as 0.8 V. These 8−pin devices provide an optimal level of integration to reduce size and cost


    Original
    NCP1587, NCP1587A NCP1587 NCP1587/A NCP1587) NCP1587A) NCP1587/D NCP1587 D smd R552 smd diode R622 IC 9347 pin diagram smd diode R630 SO8F DIODE smd R552 R584 smd diode R635 R613 PDF

    smd diode R622

    Abstract: NCP1587ADR2G NCP1587DR2G TP20 NTD4806 R636 R614 121KW smd R552 Diode R620
    Text: NCP1587, NCP1587A Low Voltage Synchronous Buck Controller The NCP1587 and NCP1587A are low cost PWM controllers designed to operate from a 5 V or 12 V supply. These devices are capable of producing an output voltage as low as 0.8 V. These 8−pin devices provide an optimal level of integration to reduce size and cost


    Original
    NCP1587, NCP1587A NCP1587 NCP1587A NCP1587/A NCP1587) NCP1587A) NCP1587/D smd diode R622 NCP1587ADR2G NCP1587DR2G TP20 NTD4806 R636 R614 121KW smd R552 Diode R620 PDF

    smd diode R622

    Abstract: smd code MH1 R571 Z1 DIODE smd diode R635
    Text: NCP81044 Product Preview Low Voltage Synchronous Buck Controller The NCP81044 is a PWM controller designed to operate from a 5 V or 12 V supply. These devices are capable of producing an output voltage as low as 0.8 V. These 8−pin devices provide an optimal level


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    NCP81044 NCP81044/D smd diode R622 smd code MH1 R571 Z1 DIODE smd diode R635 PDF

    TP96

    Abstract: smd diode R635 smd code marking r5 tp98 MH3 8PIN r622 marking smd diode code R639
    Text: NCP1587, NCP1587A Low Voltage Synchronous Buck Controller The NCP1587 and NCP1587A are low cost PWM controllers designed to operate from a 5 V or 12 V supply. These devices are capable of producing an output voltage as low as 0.8 V. These 8−pin devices provide an optimal level of integration to reduce size and cost


    Original
    NCP1587, NCP1587A NCP1587 NCP1587/A NCP1587) NCP1587A) NCP1587/D TP96 smd diode R635 smd code marking r5 tp98 MH3 8PIN r622 marking smd diode code R639 PDF