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    IRF820 EQUIVALENT Search Results

    IRF820 EQUIVALENT Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    TMP89FS60AUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/LQFP64-P-1010-0.50E Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS63AUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/LQFP52-P-1010-0.65 Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS60BFG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/P-LQFP64-1414-0.80-002 Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS63BUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/P-LQFP52-1010-0.65-002 Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS62AUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/LQFP44-P-1010-0.80A Visit Toshiba Electronic Devices & Storage Corporation

    IRF820 EQUIVALENT Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    IRF820

    Abstract: No abstract text available
    Text: IRF820 N-channel 500V - 2.5Ω - 4A TO-220 PowerMesh II MOSFET General features Type VDSS RDS on ID IRF820 500V <0.3Ω 4A • Extremely high dv/dt capability ■ 100% avalnche tested ■ New high voltage benchmark ■ Gate charge minimized 3 1 2 TO-220


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    PDF IRF820 O-220 O-220 IRF820

    IRF820

    Abstract: JESD97 IRF8204
    Text: IRF820 N-channel 500V - 2.5Ω - 4A TO-220 PowerMesh II MOSFET General features Type VDSS RDS on ID IRF820 500V <0.3Ω 4A • Extremely high dv/dt capability ■ 100% avalnche tested 3 ■ New high voltage benchmark ■ Gate charge minimized 1 TO-220 c


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    PDF IRF820 O-220 IRF820 JESD97 IRF8204

    Untitled

    Abstract: No abstract text available
    Text: IRF820 N-channel 500V - 2.5Ω - 4A TO-220 PowerMesh II MOSFET General features Type VDSS RDS on ID IRF820 500V <0.3Ω 4A ) s ( t c u d o ) r s ( P t Description c e t u e d l o o r s P b Internal schematic diagram e O t e l ) o s ( s t Applications b


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    PDF IRF820 O-220 IRF820 O-220

    MTP6N60E equivalent

    Abstract: buz91a equivalent buz90 equivalent IRFBE30 equivalent IRFB11N50A equivalent irfp460a equivalent BUZ74 equivalent 2SK2645 "cross reference" equivalent buz305 EQUIVALENT irfp22n50a
    Text: Infineon Technologies Cross Reference List CoolMOS CoolMOS Company Product Name VDS [V] IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IR IRF820 IRF820A IRF820AS IRF820S IRF830A IRF830AS IRF830S IRF840 IRF840A IRF840AS IRF840LCS IRF840S


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    PDF IRF820 IRF820A IRF820AS IRF820S IRF830A IRF830AS IRF830S IRF840 IRF840A IRF840AS MTP6N60E equivalent buz91a equivalent buz90 equivalent IRFBE30 equivalent IRFB11N50A equivalent irfp460a equivalent BUZ74 equivalent 2SK2645 "cross reference" equivalent buz305 EQUIVALENT irfp22n50a

    TOP210PFI equivalent

    Abstract: TOP210 TOP210PFI irf840 mosfet drive circuit diagram IRFP460 full bridge int100s motor controller IRF830 IRFP450 bridge PI-1505-050195 INT100
    Text: Function and Application of the INT100 and INT200-202 APPLICATION NOTE AN-10 The INT100 and INT200/201/202 comprise a family of devices designed to drive N-channel MOSFET transistors in a half bridge configuration. High-voltage integrated technology is


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    PDF INT100 INT200-202 AN-10 INT200/201/202 TOP210PFI equivalent TOP210 TOP210PFI irf840 mosfet drive circuit diagram IRFP460 full bridge int100s motor controller IRF830 IRFP450 bridge PI-1505-050195

    IRF3205 equivalent

    Abstract: IRF 9732 IRFz44n equivalent IRF3710 equivalent IRF4905 equivalent IRC540 equivalent irf 9450 IRF 9734 IRF5305 equivalent irf 9740
    Text: 4.1.1 HIGH TEMPERATURE REVERSE BIAS HTRB HEXFET GENERATION 3, TO-220/D2PAK PACKAGE Junction Temperature: Tj = +150°C or 175°C, as indicated Applied Bias: Vg = Vs = 0V; Vd = 100% of maximum rated Bvdss up to 500V then 80% of maximum rated Bvdss Equivalent Dev. Test


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    PDF O-220/D2PAK IRF9630 IRF9510L IRF9520 IRF9510 IRF9Z14 IRF9Z34 IRCZ34 IRCZ44 IRC540 IRF3205 equivalent IRF 9732 IRFz44n equivalent IRF3710 equivalent IRF4905 equivalent IRC540 equivalent irf 9450 IRF 9734 IRF5305 equivalent irf 9740

    g1l transistor

    Abstract: AN8829 lossless passive clamp flyback converter SP600 mosfet discrete totem pole drive CIRCUIT 8829 mosfet dv/dt HVIC IRF820 SP601 130KHZ FORWARD IC
    Text: Harris Semiconductor No. AN8829.2 April 1994 Harris Intelligent Power Products SP600 AND SP601 AN HVIC MOSFET/IGT DRIVER FOR HALF-BRIDGE TOPOLOGIES Author: Dean F. Henderson The interfacing of low-level logic to power half-bridge configurations can be accomplished by an 500VDC intelligent IC,


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    PDF AN8829 SP600 SP601 500VDC 230VAC SP600 SP601 g1l transistor lossless passive clamp flyback converter mosfet discrete totem pole drive CIRCUIT 8829 mosfet dv/dt HVIC IRF820 130KHZ FORWARD IC

    RBS 2111

    Abstract: lossless passive clamp flyback converter AN8829 8829 mosfet SP600 SP601 3 phase UPS block diagram using MOSFET
    Text: SP600 and SP601 an HVIC MOSFET/IGT Driver for Half-Bridge Topologies Application Note April 1994 AN8829.2 Author: Dean F. Henderson The interfacing of low-level logic to power half-bridge configurations can be accomplished by an 500VDC intelligent IC, the SP600 series driver, which is designed for up to 230VAC


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    PDF SP600 SP601 AN8829 500VDC 230VAC RBS 2111 lossless passive clamp flyback converter 8829 mosfet 3 phase UPS block diagram using MOSFET

    36W CFL

    Abstract: schematic diagram 120v ballast GI BYV26C t3 electronic ballast inductor 600UH cfl ballast ELECTRONIC BALLAST 1 T5 LAMP SCHEMATIC ELECTRONIC BALLAST 36W circuit diagram dimmer 10 amp 220v P-42510-EC
    Text: March 1999 Application Note 42042 Low Cost 42W CFL Ballast INTRODUCTION CONVERSION This Application Note contains all the information necessary to convert an ML4835EVAL-L Evaluation Board into a low cost, high performance ballast capable of operating 42W, 32W, or 26W compact fluorescent lamps


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    PDF ML4835EVAL-L ML4835 36W CFL schematic diagram 120v ballast GI BYV26C t3 electronic ballast inductor 600UH cfl ballast ELECTRONIC BALLAST 1 T5 LAMP SCHEMATIC ELECTRONIC BALLAST 36W circuit diagram dimmer 10 amp 220v P-42510-EC

    panasonic inverter manual

    Abstract: QTC 4N32 circuit diagram of luminous inverter ELECTRONIC BALLAST 1 T5 LAMP SCHEMATIC Electronic ballast 58W panasonic frequency inverter manual 58w electronic ballast dual panasonic inverter operating manual qtc4n32 circuit diagram T5 Ballast
    Text: May 1999 Application Note 42044 58W Single Lamp Dimming Ballast INTRODUCTION This Application Note contains all the information necessary to convert an ML4835EVAL-L Evaluation Board into a low cost, high performance ballast capable of dimming IEC 58W lamps to within 5% of full luminous


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    PDF ML4835EVAL-L ML4835 187VRMS 253VRMS panasonic inverter manual QTC 4N32 circuit diagram of luminous inverter ELECTRONIC BALLAST 1 T5 LAMP SCHEMATIC Electronic ballast 58W panasonic frequency inverter manual 58w electronic ballast dual panasonic inverter operating manual qtc4n32 circuit diagram T5 Ballast

    AN707

    Abstract: 2N7000 AN88 IN4148 IRF820 Si9120 SMP25N05 BLOCK DIAGRAM OF SMPS power transformer lg monitor flyback transformer data pin
    Text: AN707 Siliconix Designing LowĆPower OffĆLine Flyback Converters Using the Si9120 Switchmode Controller IC by Craig Varga Getting high efficiency from lowĆpower offĆline power supplies has always posed difficulties for the design engineer. Power hungry control circuits require either


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    PDF AN707 Si9120 J40401TC IRF820 2N7000 AN707 2N7000 AN88 IN4148 IRF820 SMP25N05 BLOCK DIAGRAM OF SMPS power transformer lg monitor flyback transformer data pin

    AN757

    Abstract: SP600 g1l transistor mosfet discrete totem pole drive CIRCUIT AN75 AN-7507 P601 SP601 h5 t6 diode
    Text: SP600 and SP601 an HVIC MOSFET/IGT Driver for Half-Bridge Topologies Application Note April 1997 AN-7507 Author: Dean F. Henderson /Title AN75 7 Subect SP600 nd P601 n VIC OSET/I T river or alfridge opolgie ) Autho ) Keyords Interil orpoation, emionuctor,


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    PDF SP600 SP601 AN-7507 SP600 500VDC 230VAC AN757 g1l transistor mosfet discrete totem pole drive CIRCUIT AN75 AN-7507 P601 h5 t6 diode

    SI9120

    Abstract: 1KW SMPS IRF820 2N7000 AN707 IN4148 31AWG 1kw full bridge converter design inverter Controller PWM 1kw 1kw sine wave inverter circuit diagram
    Text: Siliconix AN707 Designing LowĆPower OffĆLine Flyback Converters Using the Si9120 Switchmode Controller IC by Craig Varga Getting high efficiency from low-power off-line power supplies has always posed difficulties for the design engineer. Power hungry control circuits require either line


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    PDF AN707 Si9120 J40401TC IRF820 2N7000 1KW SMPS IRF820 2N7000 AN707 IN4148 31AWG 1kw full bridge converter design inverter Controller PWM 1kw 1kw sine wave inverter circuit diagram

    SI9120

    Abstract: smp25n05 7133 A-1 AN707 Sine wave PWM DC to AC Inverter Circuits F1710-247 F1710-247-1000 high efficiency current mode flyback converter inverter FERRITE TRANSFORMER design 220 ac voltage regulator without transformer
    Text: AN707 Vishay Siliconix Designing Low-Power Off-Line Flyback Converters Using the Si9120 Switchmode Controller IC Getting high efficiency from low-power off-line power supplies has always posed difficulties for the design engineer. Power hungry control circuits require either line frequency


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    PDF AN707 Si9120 CRCW120602JRT1 CRCW1206511JRT1 CRCW1206103JRT1 24-Mar-97 smp25n05 7133 A-1 AN707 Sine wave PWM DC to AC Inverter Circuits F1710-247 F1710-247-1000 high efficiency current mode flyback converter inverter FERRITE TRANSFORMER design 220 ac voltage regulator without transformer

    datasheet for transformer AN707 Si9120

    Abstract: Si9120 1kw full bridge converter smps SI9120 equivalent 2N7000 AN703 AN707 IN4148 IRF820 Sine wave PWM DC to AC Inverter ics
    Text: AN707 Designing Low-Power Off-Line Flyback Converters Using the Si9120 Switchmode Controller IC Getting high efficiency from low-power off-line power supplies has always posed difficulties for the design engineer. Power hungry control circuits require either line


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    PDF AN707 Si9120 J40401TC IRF820 2N7000 24-Mar-97 datasheet for transformer AN707 Si9120 1kw full bridge converter smps SI9120 equivalent 2N7000 AN703 AN707 IN4148 IRF820 Sine wave PWM DC to AC Inverter ics

    transformerless charger

    Abstract: UCC1890 IRF820 UCC2890 UCC3890 Flyback transformer 9 pin 96056
    Text: UCC1890 UCC2890 UCC3890 Off-Line Battery Charger Circuit FEATURES • Transformerless Off-Line Operation • Low Voltage Operation to 0.8V • Ideal for Battery Trickle Charger Applications • Current Mode Operation With 100mV Shunt • Voltage Mode Operation With


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    PDF UCC1890 UCC2890 UCC3890 100mV UCC3890 transformerless charger UCC1890 IRF820 UCC2890 Flyback transformer 9 pin 96056

    10Kf6 diode

    Abstract: ir2155 40w electronic ballast IR2155 equivalent T106-26 IR2151 DT 94-3 self oscillating Electronic ballast 40W 10KF6 ir2155 design tips IR2111 APPLICATIONS transistor IRF 630
    Text: Application Notes AN-995A Electronic Ballasts Using the Cost-Saving IR215X Drivers Introduction Electronic ballast circuits have recently undergone a revolution in sophistication from the early bipolar designs of ten years ago. This has been brought about


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    PDF AN-995A IR215X IR2151 IR2111 IRF820 1N4007 10DF6 250VAC T106-26 EE-30Z 10Kf6 diode ir2155 40w electronic ballast IR2155 equivalent T106-26 IR2151 DT 94-3 self oscillating Electronic ballast 40W 10KF6 ir2155 design tips IR2111 APPLICATIONS transistor IRF 630

    IRF820

    Abstract: UCC1890 transformerless charger UCC2890 UCC3890 1.25V Adjustable Shunt Regulator
    Text: UCC1890 UCC2890 UCC3890 Off-Line Battery Charger Circuit FEATURES • Transformerless Off-Line Operation • Low Voltage Operation to 0.8V • Ideal for Battery Trickle Charger Applications • Current Mode Operation With 100mV Shunt • Voltage Mode Operation With


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    PDF UCC1890 UCC2890 UCC3890 100mV UCC3890 IRF820 UCC1890 transformerless charger UCC2890 1.25V Adjustable Shunt Regulator

    UCC1890

    Abstract: No abstract text available
    Text: UCC1890 UCC2890 UCC3890 Off-Line Battery Charger Circuit FEATURES • Transformerless Off-Line Operation • Low Voltage Operation to 0.8V • Ideal for Battery Trickle Charger Applications • Current Mode Operation With 100mV Shunt • Voltage Mode Operation With


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    PDF UCC1890 UCC2890 UCC3890 100mV UCC3890

    IRFZ44 equivalent

    Abstract: IRFBE30 equivalent IRFBg30 equivalent IRFPE40 equivalent IRFC110 IRFP150 equivalent IRFZ14 equivalent irfp450 equivalent Irfp250 irfp460 IRFCE30
    Text: International l SRectifier HEXFET Power MOSFETs Table I. HEXFET III Die Recomnn. Source Bondi ig Wire Die 1 Outline Figure mils mm Equivalent Device Type HEX Size Part Number V DS Z IRFC1Z0 100 2.400 D1 3 0.08 IRFS1Z0 1 1 1 1 1 IRFC014 IRFC110 IRFC210 IRFC214


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    PDF IRFC014 IRFC110 IRFC210 IRFC214 IRFC310 IRFC024 IRFC120 IRFC220 IRFC224 IRFC320 IRFZ44 equivalent IRFBE30 equivalent IRFBg30 equivalent IRFPE40 equivalent IRFP150 equivalent IRFZ14 equivalent irfp450 equivalent Irfp250 irfp460 IRFCE30

    irf740 switching 3 phase motor driver

    Abstract: IRF510 SEC mosfet h-bridge power MOSFET IRF740 working of mosfet IRF450 IRF540 complementary transistor IRF740 VDMOS reliability testing report transistor equivalent irf740 IRF640 mosfet snubber circuit for mosfet push pull
    Text: MQSFET RUGGEDNESS Application Note DESIGN RELIABILITY PREFACE PART 1-FAILURE MECHANISMS INTRODUCTION This application note discusses why and how MOSFET devices fail in switch-mode applications. It deals with the issue of ruggedness in the design of the device, and with system design strategies that can


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    transformerless charger

    Abstract: 100V transformerless power supply circuit lambda Regulated Power Supply Schematic Diagram UCC1890
    Text: y- UNITRODE UCC1890 UCC2890 UCC3890 h Off-Line Battery Charger Circuit FEATURES DESCRIPTION • The UCC3890 controller is optimized for use as an off-line, low power, low voltage, regulated current supply, ideally suited for battery trickle charger applications. The unique circuit topology used in this device can be visual­


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    PDF 100mV UCC1890 UCC2890 UCC3890 UCC3890 IRF820 100kHz, 030S4 transformerless charger 100V transformerless power supply circuit lambda Regulated Power Supply Schematic Diagram

    IRFZ44 equivalent

    Abstract: IRFBE30 equivalent IRFP260 equivalent IRFC110 irf634 equivalent IRF540 IRFZ48 equivalent irf*234 n IRFCG50 IRFC034
    Text: I I n t e r n a t io n a l R e c t if ie r HEXFET Power MOSFETS BVdss Drain Sourct Vofcag* Vote PMt Numbtr Rd s m Ondate IMltMCI (Ohm) H E X -P a k M o d u l« P a ra lle l Chip N-Cham xel 60 IRFK4H054 100 IRFK4H150 200 IRFK4H250 400 IRFK4H350 500 IRFK4H450


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    PDF IRFK4H054 IRFK4H150 IRFK4H250 IRFK4H350 IRFK4H450 IRFK4HC50 IRFK4HE50 IRFK4J054 IRFK4J150 IRFK4J250 IRFZ44 equivalent IRFBE30 equivalent IRFP260 equivalent IRFC110 irf634 equivalent IRF540 IRFZ48 equivalent irf*234 n IRFCG50 IRFC034

    UCC1890

    Abstract: No abstract text available
    Text: UCCI 890 UCC2890 UCC3890 y U N IT R O D E O ff-Line Battery C h arg e r Circuit FEATURES Transformerless Off-Line Operation Low Voltage Operation to 0.8V Ideal for Battery Trickle Charger Applications Current Mode Operation With 100mV Shunt Voltage Mode Operation With


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    PDF UCC2890 UCC3890 100mV UCC3890 IRF820 100kHz, T34A5n UCC1890