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    MOSFET 4813 Search Results

    MOSFET 4813 Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    TCK424G Toshiba Electronic Devices & Storage Corporation MOSFET Gate Driver IC, 2.7 to 28 V, External MOSFET Gate drive / Inrush current reducing, WCSP6G Visit Toshiba Electronic Devices & Storage Corporation
    TCK425G Toshiba Electronic Devices & Storage Corporation MOSFET Gate Driver IC, 2.7 to 28 V, External MOSFET Gate drive / Inrush current reducing, WCSP6G Visit Toshiba Electronic Devices & Storage Corporation
    TCK423G Toshiba Electronic Devices & Storage Corporation MOSFET Gate Driver IC, 2.7 to 28 V, External MOSFET Gate drive / Inrush current reducing, WCSP6G Visit Toshiba Electronic Devices & Storage Corporation
    TCK422G Toshiba Electronic Devices & Storage Corporation MOSFET Gate Driver IC, 2.7 to 28 V, External MOSFET Gate drive / Inrush current reducing, WCSP6G Visit Toshiba Electronic Devices & Storage Corporation
    MG800FXF1JMS3 Toshiba Electronic Devices & Storage Corporation N-ch SiC MOSFET Module, 3300 V, 800 A, iXPLV, High-side: SiC SBD、Low-side: SiC MOSFET Visit Toshiba Electronic Devices & Storage Corporation

    MOSFET 4813 Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    spw -079 transformer

    Abstract: samsung galaxy s2 numeric digital 600 plus ups ckt diagram samsung galaxy s2 display Zener Diode ph 4148 ph 4148 zener diode CD4046 spice model DIODE SMD L4W lm2576 spice SN75492
    Text: Micrel Semiconductor 1997 Databook 1 _ General Information 2 _ Computer Peripherals 3 _ Low-Dropout Linear Voltage Regulators 4 _ Switch-Mode Voltage Regulators 5 _ MOSFET Drivers 6 _


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    1-06A spw -079 transformer samsung galaxy s2 numeric digital 600 plus ups ckt diagram samsung galaxy s2 display Zener Diode ph 4148 ph 4148 zener diode CD4046 spice model DIODE SMD L4W lm2576 spice SN75492 PDF

    TL494 car charger schematic diagram

    Abstract: samsung galaxy s2 controller for PWM fan tl494 1A current to 0-5v voltage converter using LM317 SMD LD33 capacitor huang 2200uF 35V uc3843 flyback supply opto-coupler SMD MOSFET DRIVE 4606 schematic lcd inverter samsung sine wave inverter tl494 circuit diagram
    Text: Micrel Semiconductor 1997 Databook 1 _ General Information 2 _ Computer Peripherals 3 _ Low-Dropout Linear Voltage Regulators 4 _ Switch-Mode Voltage Regulators 5 _ MOSFET Drivers 6 _


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    accurat49565 TL494 car charger schematic diagram samsung galaxy s2 controller for PWM fan tl494 1A current to 0-5v voltage converter using LM317 SMD LD33 capacitor huang 2200uF 35V uc3843 flyback supply opto-coupler SMD MOSFET DRIVE 4606 schematic lcd inverter samsung sine wave inverter tl494 circuit diagram PDF

    TB370

    Abstract: No abstract text available
    Text: ITF87056DQT TM Data Sheet 5A, 20V, 0.045 Ohm, Dual P-Channel, 2.5V Specified Power MOSFET Packaging TSSOP-8 File Number 4813.3 Features • Ultra Low On-Resistance - rDS ON = 0.045Ω, VGS = −4.5V - rDS(ON) = 0.048Ω, VGS = −4.0V - rDS(ON) = 0.077Ω, VGS = −2.5V


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    ITF87056DQT TB370 PDF

    AN7254

    Abstract: AN7260 ITF87056DQT ITF87056DQT2 TB370 625o 67e4
    Text: ITF87056DQT Data Sheet 5A, 20V, 0.045 Ohm, Dual P-Channel, 2.5V Specified Power MOSFET Packaging TSSOP-8 File Number 4813.2 Features • Ultra Low On-Resistance - rDS ON = 0.045Ω, VGS = −4.5V - rDS(ON) = 0.048Ω, VGS = −4.0V - rDS(ON) = 0.077Ω, VGS = −2.5V


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    ITF87056DQT AN7254 AN7260 ITF87056DQT ITF87056DQT2 TB370 625o 67e4 PDF

    AN7254

    Abstract: AN7260 ITF87056DQT ITF87056DQT2 TB370
    Text: ITF87056DQT Data Sheet 5A, 20V, 0.045 Ohm, Dual P-Channel, 2.5V Specified Power MOSFET Packaging TSSOP-8 File Number 4813.3 Features • Ultra Low On-Resistance - rDS ON = 0.045Ω, VGS = −4.5V - rDS(ON) = 0.048Ω, VGS = −4.0V - rDS(ON) = 0.077Ω, VGS = −2.5V


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    ITF87056DQT AN7254 AN7260 ITF87056DQT ITF87056DQT2 TB370 PDF

    TL 173C

    Abstract: 11111I td 1410 67e4 KP-43 AN7254 AN7260 ITF87056DQT TB370
    Text: ITF87056DQT interrii F e b u a ry . Data Sheet 5A, 20 V, 0.045 Ohm, Dual P-Channel, 2.5V Specified Power MOSFET ma File Num ber 4813.1 Features • Ultra Low On-Resistance Packaging TSSO P-8 ‘ rDS ON = 0.045i2, VGs = -4 .5 V ‘ rDS(ON) = 0.048i2, VGs = -4 .0 V


    OCR Scan
    ITF87056DQT TL 173C 11111I td 1410 67e4 KP-43 AN7254 AN7260 ITF87056DQT TB370 PDF

    13ng

    Abstract: NTD4813N 4813NG NTD4813N-1G 369D 4813N 369ac
    Text: NTD4813N Power MOSFET 30 V, 40 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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    NTD4813N NTD4813N/D 13ng NTD4813N 4813NG NTD4813N-1G 369D 4813N 369ac PDF

    13nhg

    Abstract: 48 13nhg mosfet 48 13nhg 4813nhg 4813NH 13nhg mosfet 369D NTD4813NH NTD4813NHT4G
    Text: NTD4813NH Power MOSFET 30 V, 40 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 Low RG These are Pb−Free Devices


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    NTD4813NH NTD4813NH/D 13nhg 48 13nhg mosfet 48 13nhg 4813nhg 4813NH 13nhg mosfet 369D NTD4813NH NTD4813NHT4G PDF

    48 13ng mosfet

    Abstract: 369C 369D NTD4813N NTD4813NT4G TF 241
    Text: NTD4813N Power MOSFET 30 V, 40 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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    NTD4813N NTD4813N/D 48 13ng mosfet 369C 369D NTD4813N NTD4813NT4G TF 241 PDF

    48 13ng mosfet

    Abstract: NTD4813N
    Text: NTD4813N Power MOSFET 30 V, 40 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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    NTD4813N NTD4813N/D 48 13ng mosfet PDF

    Untitled

    Abstract: No abstract text available
    Text: NTD4813N Power MOSFET 30 V, 40 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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    NTD4813N NTD4813N/D PDF

    369D

    Abstract: NTD4813N
    Text: NTD4813N Power MOSFET 30 V, 40 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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    NTD4813N NTD4813N/D 369D NTD4813N PDF

    4813N

    Abstract: No abstract text available
    Text: NTD4813N Power MOSFET 30 V, 40 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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    NTD4813N NTD4813N/D 4813N PDF

    13nhg

    Abstract: 48 13nhg 48 13nhg mosfet 4813NH 4813nhg NTD4813NH-1G 369D NTD4813NH
    Text: NTD4813NH Power MOSFET 30 V, 40 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 Low RG These are Pb-Free Devices


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    NTD4813NH NTD4813NH/D 13nhg 48 13nhg 48 13nhg mosfet 4813NH 4813nhg NTD4813NH-1G 369D NTD4813NH PDF

    13nhg

    Abstract: 48 13nhg mosfet 4813nhg 48 13nhg 4813NH 369D NTD4813NH 13nhg mosfet
    Text: NTD4813NH Power MOSFET 30 V, 40 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 •ăLow RG •ăThese are Pb-Free Devices


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    NTD4813NH 25aws NTD4813NH/D 13nhg 48 13nhg mosfet 4813nhg 48 13nhg 4813NH 369D NTD4813NH 13nhg mosfet PDF

    48 13ng mosfet

    Abstract: 48 13ng
    Text: NTD4813N Power MOSFET 30 V, 40 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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    NTD4813N NTD4813N/D 48 13ng mosfet 48 13ng PDF

    Untitled

    Abstract: No abstract text available
    Text: NTD4813NH, NVD4813NH Power MOSFET 30 V, 40 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 Low RG AEC−Q101 Qualified and PPAP Capable − NVD4813NH


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    NTD4813NH, NVD4813NH NTD4813NH/D PDF

    4813NH

    Abstract: 13nhg 48 13nhg NVD4813NH 48 13nhg mosfet
    Text: NTD4813NH, NVD4813NH Power MOSFET 30 V, 40 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 Low RG AEC−Q101 Qualified and PPAP Capable − NVD4813NH


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    NTD4813NH, NVD4813NH AEC-Q101 NTD4813NH/D 4813NH 13nhg 48 13nhg 48 13nhg mosfet PDF

    Untitled

    Abstract: No abstract text available
    Text: NTD4813NH, NVD4813NH Power MOSFET 30 V, 40 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 Low RG NVD Prefix for Automotive and Other Applications Requiring


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    NTD4813NH, NVD4813NH NTD4813NH/D PDF

    philips diode PH 37m

    Abstract: K1388 10KW 1N5817 AN42 AP-523 RC5040 RC5042 RC5043 sanyo timing controller
    Text: www.fairchildsemi.com Application Note 42 Implementing the RC5040 and RC5042 DC-DC Converters on Pentium Pro Motherboards Introduction This document describes how to implement a switching voltage regulator using an RC5040 or an RC5042 high speed controller, a power inductor, a Schottky diode, appropriate


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    RC5040 RC5042 RC5042 AN30000042 philips diode PH 37m K1388 10KW 1N5817 AN42 AP-523 RC5043 sanyo timing controller PDF

    k1388

    Abstract: pin out of mosfet k1388 SW 2596 K 2611 MOSFET sw 2596 pwm DIODE SMD 5050 smd led 5050 0.5 w datasheet MBR2015CT intl PC MOTHERBOARD CIRCUIT diagram SMD 2596
    Text: Electronics Semiconductor Division Application Note 50 Implementing the RC5050 and RC5051 DC-DC Converters on Pentium Pro Motherboards Introduction This document describes how to implement a switching voltage regulator using an RC5050 or an RC5051 high speed


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    RC5050 RC5051 AP-523 AN30000050 k1388 pin out of mosfet k1388 SW 2596 K 2611 MOSFET sw 2596 pwm DIODE SMD 5050 smd led 5050 0.5 w datasheet MBR2015CT intl PC MOTHERBOARD CIRCUIT diagram SMD 2596 PDF

    k1388

    Abstract: pin out of mosfet k1388 MBR2015CT K1388 Transistor transistor k1388 Fuji Shottky Diodes AN50 AP-523 IRF7413 MBR2015CTL
    Text: www.fairchildsemi.com Application Note 50 Implementing the RC5050 and RC5051 DC-DC Converters on Pentium Pro Motherboards Introduction This document describes how to implement a switching voltage regulator using an RC5050 or an RC5051 high speed controller, a power inductor, a Schottky diode, appropriate


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    RC5050 RC5051 AP-523 AN30000050 k1388 pin out of mosfet k1388 MBR2015CT K1388 Transistor transistor k1388 Fuji Shottky Diodes AN50 IRF7413 MBR2015CTL PDF

    k1388

    Abstract: K 2611 MOSFET SW 2596 sw 2596 pwm philips diode PH 37m mosFET K 2611 pin out of mosfet k1388 schematic diagram converter 12v to 24v 30a fuji smd code 612 "Power Semiconductor" Philips
    Text: Electronics Semiconductor Division Application Note 42 Implementing the RC5040 and RC5042 DC-DC Converters on Pentium Pro Motherboards Introduction This document describes how to implement a switching voltage regulator using an RC5040 or an RC5042 high speed


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    RC5040 RC5042 RC5042 AN30000042 k1388 K 2611 MOSFET SW 2596 sw 2596 pwm philips diode PH 37m mosFET K 2611 pin out of mosfet k1388 schematic diagram converter 12v to 24v 30a fuji smd code 612 "Power Semiconductor" Philips PDF

    k1388

    Abstract: MBR2015CT K1388 Transistor transistor k1388 philips diode PH 37m diode k1388 philips 3.3V DC-DC converter step down AN50 FAIRCHILD MBR1545C Fuji Shottky Diodes
    Text: www.fairchildsemi.com Application Note 50 Implementing the RC5050 and RC5051 DC-DC Converters on Pentium Pro Motherboards Introduction This document describes how to implement a switching voltage regulator using an RC5050 or an RC5051 high speed controller, a power inductor, a Schottky diode, appropriate


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    RC5050 RC5051 AN30000050 k1388 MBR2015CT K1388 Transistor transistor k1388 philips diode PH 37m diode k1388 philips 3.3V DC-DC converter step down AN50 FAIRCHILD MBR1545C Fuji Shottky Diodes PDF