Please enter a valid full or partial manufacturer part number with a minimum of 3 letters or numbers

    L4981 EQUIVALENT Search Results

    L4981 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

    L4981 EQUIVALENT Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    220v generator power booster

    Abstract: 3kw pfc using l4981 application note l4981 AN628 rac 16a 400v l4981 thomson Ferrite Materials b50 2500 L4981 PFC 12v 200w amplifier thomson ferrites b50 full controlled ac-dc converter
    Text:  AN628 APPLICATION NOTE DESIGNING A HIGH POWER FACTOR SWITCHING PREREGULATOR WITH THE L4981 CONTINUOUS MODE by G. Comandatore and U. Moriconi INTRODUCTION Conventional AC-DC converters usually employ a full wave rectifier bridge with a simple capacitor


    Original
    AN628 L4981 220v generator power booster 3kw pfc using l4981 application note l4981 AN628 rac 16a 400v thomson Ferrite Materials b50 2500 L4981 PFC 12v 200w amplifier thomson ferrites b50 full controlled ac-dc converter PDF

    800w power amplifier circuit diagram

    Abstract: L4981 PFC schematic diagram AC to DC converter 800W L4981A APPLICATION NOTES PFC Bridgeless Rectifier STW26NM50F bridgeless boost rectifier bridgeless pfc equivalent of BS170 BS170 AN
    Text: AN1606 APPLICATION NOTE A "BRIDGELESS P.F.C. CONFIGURATION" BASED ON L4981 P.F.C. CONTROLLER. by Ugo Moriconi This technical document describes an innovative topology dedicated to a medium to high power PFC stage. The originality of this topology is the absence of the bridge that usually is placed between the


    Original
    AN1606 L4981 800w power amplifier circuit diagram L4981 PFC schematic diagram AC to DC converter 800W L4981A APPLICATION NOTES PFC Bridgeless Rectifier STW26NM50F bridgeless boost rectifier bridgeless pfc equivalent of BS170 BS170 AN PDF

    220v generator power booster

    Abstract: 3kw pfc using l4981 application note l4981 AN628 L4981 220v Ac- 10.5v Dc transformer 60Hz transformer winding formula 220v Ac to 110v Ac L4981 PFC thomson ferrites b50 L4981A 220v AC to 110v AC transformer circuit diagram de
    Text: APPLICATION NOTE DESIGNING A HIGH POWER FACTOR SWITCHING PREREGULATOR WITH THE L4981 CONTINUOUS MODE by G. Comandatore and U. Moriconi INTRODUCTION Conventional AC-DC converters usually employ a full wave rectifier bridge with a simple capacitor filter to draw power from the AC line. This ”bulk”


    Original
    L4981 220v generator power booster 3kw pfc using l4981 application note l4981 AN628 220v Ac- 10.5v Dc transformer 60Hz transformer winding formula 220v Ac to 110v Ac L4981 PFC thomson ferrites b50 L4981A 220v AC to 110v AC transformer circuit diagram de PDF

    3kw pfc using l4981 application note

    Abstract: 220v generator power booster APPLICATION L4981 l4981 AN628 L4981A L4981 PFC 12v 200w amplifier L4981 PFC 3kw L4981B
    Text: APPLICATION NOTE DESIGNING A HIGH POWER FACTOR SWITCHING PREREGULATOR WITH THE L4981 CONTINUOUS MODE by G. Comandatore and U. Moriconi INTRODUCTION Conventional AC-DC converters usually employ a full wave rectifier bridge with a simple capacitor filter to draw power from the AC line. This "bulk"


    Original
    L4981 3kw pfc using l4981 application note 220v generator power booster APPLICATION L4981 l4981 AN628 L4981A L4981 PFC 12v 200w amplifier PFC 3kw L4981B PDF

    220v generator power booster

    Abstract: 3kw pfc using l4981 application note l4981 AN628 sawtooth generator using op-amp 5tta5060 Generator 12V 220V 50Hz APPLICATION L4981 L4981 PFC L4981A L4981
    Text: AN628 APPLICATION NOTE DESIGNING A HIGH POWER FACTOR SWITCHING PREREGULATOR WITH THE L4981 CONTINUOUS MODE by G. Comandatore and U. Moriconi INTRODUCTION Conventional AC-DC converters usually employ a full wave rectifier bridge with a simple capacitor filter to draw power from the AC line. This "bulk"


    Original
    AN628 L4981 220v generator power booster 3kw pfc using l4981 application note l4981 AN628 sawtooth generator using op-amp 5tta5060 Generator 12V 220V 50Hz APPLICATION L4981 L4981 PFC L4981A PDF

    power amplifier 3000W with PCB

    Abstract: 3kw pfc using l4981 application note 1500W Power Amplifier PCB Layout SCHEMATIC 3000w Amplifier SCHEMATIC 3000w Power Amplifier D95IN255 3000w amplifier L4981 1400w mosfet amplifier MOSFET Module 100v 1000A
    Text: APPLICATION NOTE SEMICONDUCTOR KIT FOR POWER FACTOR CORRECTOR by J. M. Borgeous This paper present a new line of P.F.C. dedicated products. Both silicon and packaging have been optimized to reduce system cost, including filtering. The products shown here are offered as a kit for


    Original
    PDF

    power amplifier 3000W with PCB

    Abstract: SCHEMATIC 3000w Amplifier 3kw pfc using l4981 application note 1500W Power Amplifier PCB Layout SCHEMATIC 3000w Power Amplifier L4981 3000w 3000w power amplifier Circuit 3000w mosfet circuit D95IN255 T300-26D iron powder core
    Text: APPLICATION NOTE SEMICONDUCTOR KIT FOR POWER FACTOR CORRECTOR by J. M. Borgeous This paper present a new line of P.F.C. dedicated products. Both silicon and packaging have been optimized to reduce system cost, including filtering. The products shown here are offered as a kit for


    Original
    PDF

    power amplifier 3000W with PCB

    Abstract: 3kw pfc using l4981 application note MOSFET Module 24v 1000A SCHEMATIC 3000w Power Amplifier 1500W Power Amplifier PCB Layout 3000w mosfet circuit L4981 SCHEMATIC 3000w Amplifier 3000w amplifier APPLICATION L4981
    Text: AN829 APPLICATION NOTE SEMICONDUCTOR KIT FOR POWER FACTOR CORRECTOR by J.M. Borgeous This paper present a new line of P.F.C. dedicated products. Both silicon and packaging have been optimized to reduce system cost, including filtering. The products shown here are offered as a kit for power


    Original
    AN829 power amplifier 3000W with PCB 3kw pfc using l4981 application note MOSFET Module 24v 1000A SCHEMATIC 3000w Power Amplifier 1500W Power Amplifier PCB Layout 3000w mosfet circuit L4981 SCHEMATIC 3000w Amplifier 3000w amplifier APPLICATION L4981 PDF

    power amplifier 3000W with PCB

    Abstract: 3kw pfc using l4981 application note 1500W Power Amplifier PCB Layout SCHEMATIC 3000w Amplifier STH80N05 3000w power amplifier Circuit SCHEMATIC 3000w Power Amplifier 3000w mosfet circuit STE30NA50-DK MOSFET Module 24v 1000A
    Text: APPLICATION NOTE SEMICONDUCTOR KIT FOR POWER FACTOR CORRECTOR by J. M. Borgeous This paper present a new line of P.F.C. dedicated products. Both silicon and packaging have been optimized to reduce system cost, including filtering. The products shown here are offered as a kit for


    Original
    PDF

    ETD4916A

    Abstract: STK2N50 ferrite core geometry diode BYW 200 500watts amplifier pcb layout 3kw pfc using l4981 application note r4849-a 0.5mh l4981 AN628 400W pwm smps schematic Philips Electrolytic Capacitor 824k 400v
    Text: APPLICATION NOTE A 500W HIGH POWER FACTOR WITH THE L4981A CONTINUOUS MODE IC The widespread use of passive AC/DC off-line converters causes low power factor and high line current harmonic distortion. To reduce these phenomena and to comply with relevant regulatory


    Original
    L4981A L4981A ETD4916A STK2N50 ferrite core geometry diode BYW 200 500watts amplifier pcb layout 3kw pfc using l4981 application note r4849-a 0.5mh l4981 AN628 400W pwm smps schematic Philips Electrolytic Capacitor 824k 400v PDF

    philips carbon film 2W resistors

    Abstract: 89F1949 NTC R29 500watts amplifier pcb layout 3kw pfc L4981 3kw pfc 3kw pfc using l4981 application note F127-ND 3kw smps pfc
    Text: APPLICATION NOTE A 500W HIGH POWER FACTOR WITH THE L4981A CONTINUOUS MODE IC The widespread use of passive AC/DC off-line converters causes low power factor and high line current harmonic distortion. To reduce these phenomena and to comply with relevant regulatory


    Original
    L4981A IEC555-2, philips carbon film 2W resistors 89F1949 NTC R29 500watts amplifier pcb layout 3kw pfc L4981 3kw pfc 3kw pfc using l4981 application note F127-ND 3kw smps pfc PDF

    Philips Electrolytic Capacitor 824k 400v

    Abstract: ETD4916A ETD 39 x 20 x 13 siemens zener diode 100V DO-35 ferrite core geometry 3kw smps pfc STK2N50 500watts amplifier pcb layout r4849-a 0.5mh R4849-A
    Text: AN827 APPLICATION NOTE A 500W HIGH POWER FACTOR WITH THE L4981A CONTINUOUS MODE IC The widespread use of passive AC/DC off-line converters causes low power factor and high line current harmonic distortion. To reduce these phenomena and to comply with relevant regulatory agency requirements , designers are employing active power factor correction in their off-line SMPS applications. This


    Original
    AN827 L4981A L4981A Philips Electrolytic Capacitor 824k 400v ETD4916A ETD 39 x 20 x 13 siemens zener diode 100V DO-35 ferrite core geometry 3kw smps pfc STK2N50 500watts amplifier pcb layout r4849-a 0.5mh R4849-A PDF

    500 WATT smps

    Abstract: smps 800W siemens zener diode 100V DO-35 integrated byw100 smps 500w 5V 2 PHASE 220V AC to 220V DC regulated switching ETD-39 3kw smps pfc l4981 AN628 3kw pfc
    Text: APPLICATION NOTE A 500W HIGH POWER FACTOR WITH THE L4981A CONTINUOUS MODE IC The widespread use of passive AC/DC off-line converters causes low power factor and high line current harmonic distortion. To reduce these phenomena and to comply with relevant regulatory


    Original
    L4981A L4981A 500 WATT smps smps 800W siemens zener diode 100V DO-35 integrated byw100 smps 500w 5V 2 PHASE 220V AC to 220V DC regulated switching ETD-39 3kw smps pfc l4981 AN628 3kw pfc PDF

    3kw smps pfc

    Abstract: 3kw half bridge smps 12v to Amplifier 200w circuit diagrams irf740 pins connections pwm power MOSFET IRF740 driver circuit PFC 3kw 3kw pfc L4981A 12v to Amplifier 200w gain L4981
    Text: L4981A L4981B POWER FACTOR CORRECTOR ADVANCE DATA CONTROL BOOST PWM UP TO 0.99P.F. LIMIT LINE CURRENT DISTORTION TO < 5% UNIVERSAL INPUT MAINS FEED FORWARD LINE AND LOAD REGULATION AVERAGE CURRENT MODE PWM FOR MINIMUM NOISE SENSITIVITY HIGH CURRENT BIPOLAR AND DMOS TOTEM POLE OUTPUT


    Original
    L4981A L4981B L4981 3kw smps pfc 3kw half bridge smps 12v to Amplifier 200w circuit diagrams irf740 pins connections pwm power MOSFET IRF740 driver circuit PFC 3kw 3kw pfc L4981A 12v to Amplifier 200w gain PDF

    schematic hid lamp ballast

    Abstract: some theory about diodes 1N4007 L6561 an1089 L6561 AN L6561 AN966 AN1616 Electronic ballast 220 v 40W L6561 application note three phase bridge rectifier picture L6561
    Text: AN1616 APPLICATION NOTE THD-OPTIMIZER CIRCUITS FOR PFC PRE-REGULATORS by Claudio Adragna Although THD Total Harmonic Distortion is not explicitly considered in IEC 61000-3-2 standards, neither it needs to be very low in order for a piece of equipment to get the presumption of conformity, however it has become established to require an ultra-low THD in some applications such as electronic


    Original
    AN1616 schematic hid lamp ballast some theory about diodes 1N4007 L6561 an1089 L6561 AN L6561 AN966 AN1616 Electronic ballast 220 v 40W L6561 application note three phase bridge rectifier picture L6561 PDF

    Eyf 06 ROE

    Abstract: 12V DC to 24V dC converter schematic diagram 12v 150W AUDIO AMPLIFIER CIRCUIT DIAGRAM ROE capacitor EYF schematic diagram converter input 24v to 12v Power Factor corrector L4981 SCHEMATIC DIAGRAM OF POWER factor corrector capacitor 3300uf 63v schematic diagram converter input 12v to output 2 DZ18V
    Text: APPLICATION NOTE P.F.C. APPLICATION IDEAS USING MAINS TRANSFORMER The typical PFC boost scheme is mainly suggested for off-line applications, with the galvanic insulation located in the downstream converter side. There are some industrial and consumer applications in which the galvanic insulation is provided by


    Original
    PDF

    schematic diagram AC to DC converter high output

    Abstract: SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A 12v 150W AUDIO AMPLIFIER CIRCUIT DIAGRAM 220vac to 220vac voltage converter schematic 12V DC to 24V dC converter schematic diagram 24v center tapped transformer schematic diagram converter input 24v to 12v 220VAC to 24Vac transformer roe EYF SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A
    Text: APPLICATION NOTE P.F.C. APPLICATION IDEAS USING MAINS TRANSFORMER The typical PFC boost scheme is mainly suggested for off-line applications, with the galvanic insulation located in the downstream converter side. There are some industrial and consumer applications in which the galvanic insulation is provided by


    Original
    PDF

    SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A

    Abstract: 12V DC to 24V dC converter schematic diagram schematic diagram converter input 24v to 12v SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A ROE capacitor 220 schematic diagram converter 12v to 24v ROE ELECTROLYTIC CAPACITOR 220VAC to 24Vac transformer ROE capacitor EYF roe EYF
    Text: AN825 APPLICATION NOTE  P.F.C. APPLICATION IDEAS USING MAINS TRANSFORMER The typical PFC boost scheme is mainly suggested for off-line applications, with the galvanic insulation located in the downstream converter side. There are some industrial and consumer applications in which the galvanic insulation is provided by


    Original
    AN825 SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A 12V DC to 24V dC converter schematic diagram schematic diagram converter input 24v to 12v SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A ROE capacitor 220 schematic diagram converter 12v to 24v ROE ELECTROLYTIC CAPACITOR 220VAC to 24Vac transformer ROE capacitor EYF roe EYF PDF

    12v 120W AUDIO AMPLIFIER CIRCUIT DIAGRAM

    Abstract: SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A diagram Converter 24V to 12V SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A schematic diagram converter input 24v to 12v 24v, 5A transformer 220VAC to 24Vac transformer schematic diagram AC to DC converter high output schematic diagram dc-dc L4970
    Text: APPLICATION NOTE P.F.C. APPLICATION IDEAS USING MAINS TRANSFORMER The typical PFC boost scheme is mainly suggested for off-line applications, with the galvanic insulation located in the downstream converter side. There are some industrial and consumer applications in which the galvanic insulation is provided by


    Original
    PDF

    12V DC to 24V dC converter schematic diagram

    Abstract: diagram Converter 24v to 12v 220VAC to 24Vac transformer schematic diagram converter input 24v to 12v MP1830 SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A ROE capacitor 220 transformer 220 12v L4970 schematic diagram AC to DC converter high output
    Text: AN825 APPLICATION NOTE P.F.C. APPLICATION IDEAS USING MAINS TRANSFORMER The typical PFC boost scheme is mainly suggested for off-line applications, with the galvanic insulation located in the downstream converter side. There are some industrial and consumer applications in which the galvanic insulation is provided by


    Original
    AN825 12V DC to 24V dC converter schematic diagram diagram Converter 24v to 12v 220VAC to 24Vac transformer schematic diagram converter input 24v to 12v MP1830 SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A ROE capacitor 220 transformer 220 12v L4970 schematic diagram AC to DC converter high output PDF

    ST 9221

    Abstract: L4981A APPLICATION NOTES AN2649 AN264 l4981 AN628 1N5406 AN628 L4981 L4981A STP12NM50N
    Text: AN2649 Application note A power factor corrector with MDmeshTM II and SiC diode Introduction The electrical and thermal performances of switching converters are strongly influenced by the behavior of the switching devices. Modern power devices design requires a trade-off in


    Original
    AN2649 ST 9221 L4981A APPLICATION NOTES AN2649 AN264 l4981 AN628 1N5406 AN628 L4981 L4981A STP12NM50N PDF

    smps 1KVA

    Abstract: L4981 l4981 AN628 AN1485 L4981A STP12NM50 STW14NB50 STW15NB50
    Text: AN1485 APPLICATION NOTE MDmesh PERFORMANCE EVALUATION IN A CONTINUOUS MODE PFC BOOST CONVERTER G. Belverde - M. Melito - A. Raciti - M. Saggio - S. Musumeci 1. ABSTRACT A new high voltage MOSFET structure is presented which results in static as well as dynamic


    Original
    AN1485 smps 1KVA L4981 l4981 AN628 AN1485 L4981A STP12NM50 STW14NB50 STW15NB50 PDF

    AN2951

    Abstract: l6562 PFC boost converter design AN1792 SHORT CIRCUIT PROTECTION FOR L6562 AN1792 ST L6562 Application Note l6562 L6562 boost PFC inductor l6562 PFC design STW77N65M5
    Text: AN2951 Application note 3 kW fixed-off-time FOT power factor correction Introduction In recent years, regulation in terms of electrical efficiency, electromagnetic noise, and reliability of the electronic apparatus, in all the application fields, are pushing to use power


    Original
    AN2951 AN2951 l6562 PFC boost converter design AN1792 SHORT CIRCUIT PROTECTION FOR L6562 AN1792 ST L6562 Application Note l6562 L6562 boost PFC inductor l6562 PFC design STW77N65M5 PDF

    100w audio amplifier circuit diagram per channel

    Abstract: 100w mosfet audio amplifier circuit diagram 100w low cost audio amplifier circuit diagram AN3027 IC 8 PIN 2267 emi calculation excel sheet schematic diagram for ac line voltage monitor 100w audio amplifier schematic datasheet VMOS Transistor TH 2267
    Text: AN3027 Application note How to design a transition-mode PFC pre-regulator with the L6563S and L6563H Introduction The transition-mode TM technique is widely used for power factor correction in low and middle power applications such as lamp ballasts, high-end adapters, flatscreen TVs and


    Original
    AN3027 L6563S L6563H L6563H L6563, 100w audio amplifier circuit diagram per channel 100w mosfet audio amplifier circuit diagram 100w low cost audio amplifier circuit diagram AN3027 IC 8 PIN 2267 emi calculation excel sheet schematic diagram for ac line voltage monitor 100w audio amplifier schematic datasheet VMOS Transistor TH 2267 PDF