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    Part ECAD Model Manufacturer Description Download Buy
    TB67B001BFTG Toshiba Electronic Devices & Storage Corporation Brushless Motor Driver/3 Phases Driver/Vout(V)=25/Iout(A)=3/Square Wave Visit Toshiba Electronic Devices & Storage Corporation
    TC78B011FTG Toshiba Electronic Devices & Storage Corporation Brushless Motor Driver/3 Phases Driver/Vout(V)=30/Square, Sine Wave Visit Toshiba Electronic Devices & Storage Corporation
    TB67B001AFTG Toshiba Electronic Devices & Storage Corporation Brushless Motor Driver/3 Phases Driver/Vout(V)=25/Iout(A)=3/Square Wave Visit Toshiba Electronic Devices & Storage Corporation
    SF-QSFPLOOPBK-002 Amphenol Cables on Demand Amphenol SF-QSFPLOOPBK-002 QSFP+ 40G Loopback Adapter Module for QSFP/QSFP+ Port Testing - 0dB Attenuation & 0W Power Consumption [Copper+Optical Ready] Datasheet
    SF-QSFPLOOPBK-001 Amphenol Cables on Demand Amphenol SF-QSFPLOOPBK-001 QSFP+ 40G Loopback Adapter Module for QSFP/QSFP+ Port Testing - 0dB Attenuation & 1.5W Power Consumption [Copper+Optical Ready] Datasheet

    SQUARE LOOP TOROID Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    nickel bh curve

    Abstract: Transformer and Inductor Design Handbook, ferrite core transformer construction TWC-300 permalloy magnetization curve orthonol Permalloy powder TRANSFORMER MAGNETIC CORE CATALOG TWC-S5 01606-2D
    Text: Division of Spang & Company Technical Bulletin BULLETIN TWC-S5 COMPOSITE CORES Combine protective features of gapped cores with lower magnetizing current requirements of uncut cores Protect electronic circuitry Low-loss nickel-iron tape-wound toroidal cores


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    Inverter Transformer Core Design and Material Selection

    Abstract: TWC-S3 supermalloy bh curve TRANSISTOR bH-16 MAGNESIL - N TRANSISTOR bH-10 nickel bh curve orthonol permalloy bh curve magnesil core
    Text: Division of Spang & Company Inverter Transformer Core Design and Material Selection INTRODUCTION . . 2 TYPICAL OPERATION . 2


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    permendur

    Abstract: supermendur FERRITE core TRANSFORMER 300 watt inverter magnetic amplifier saturable core ferrite core transformer construction ferrite core transformer INVERTER TRANSFORMERS design toroid iron power core reference table SMALL high frequency transformer TUBE Light Choke Coil Winding
    Text: Soft Magnetics Application Guide p. 30.1 March 2000 GROUP ARNOLD Table of Contents Introduction . 30.3 Basics of Magnetics . 30.4 – 30.11 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. Energy. 30.4


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    LM48511

    Abstract: National Semiconductor Audio Handbook class d amplifier theory bipole EMC for PCB Layout radar modulator board spread spectrum D Amplifier Signal Path Designer Seminar national semiconductor
    Text: 8/29/2007 Reducing EMI in Class D Audio Applications The Basics 1 1 8/29/2007 Reducing EMI in Class D Audio Applications: The Basics Bill McCulley Sr. Tech Marketing Engineer Americas Audio & LV/LP Amps 2 2 8/29/2007 Outline • What is EMI? • The Class D Amplifer and EMI


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    Silectron core

    Abstract: TWC-500 permalloy 80 2605SC ring core permalloy bh curve supermalloy bh curve MAGNESIL - N Transformer and Inductor Design Handbook, orthonol ring core permalloy 80
    Text: TAPE WOUND CORES Division of Spang & Company DESIGN MANUAL TWC-500 ABOUT MAGNETICS Since 1949 Magnetics, a division of Spang & Company, has been a leading world supplier of precision, high permeability magnetic components and materials to the electronics industry. Applications for


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    PDF TWC-500 TWC-500 Silectron core permalloy 80 2605SC ring core permalloy bh curve supermalloy bh curve MAGNESIL - N Transformer and Inductor Design Handbook, orthonol ring core permalloy 80

    5978008001

    Abstract: 5978015901 5978014001 5978017501
    Text: 15th Edition 106 Toroids A ring configuration provides the ultimate utilization of the intrinsic ferrite material properties. Toroidal cores are used in a wide variety of applications such as power input filters, ground-fault interrupters, common-mode filters


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    inverter welder schematic

    Abstract: permendur Arnold Magnetics inverter welder 4 schematic magnetic amplifier saturable core supermalloy bh curve TUBE Light Choke Coil Winding step down welding transformer 12 inverter welder schematic 1 phase arc welder schematic
    Text: Soft Magnetics Application Guide p. 30.1 March 2000 GROUP ARNOLD Table of Contents Introduction . 30.3 Basics of Magnetics . 30.4 – 30.11 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. Energy. 30.4


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    4832

    Abstract: steward catalog 503 911 35T0155-10P steward 248-6 LS 2027 MLT 22 721 permeability 38T0155-10P T0155-00P
    Text: STEWARD TOROIDS Table Of Contents Steward & Quality Assurance. 3 Quality Philosophy. 3


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    stl5

    Abstract: No abstract text available
    Text: AN10971 TL applications with NXP ballast controllers Rev. 1 — 15 September 2011 Application note Document information Info Content Keywords Half-bridge, electronic ballast, tube light Abstract This application note describes how to design an application to drive a


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    PDF AN10971 stl5

    SMALL high frequency transformer

    Abstract: high power FERRITE TRANSFORMER Silectron core silectron measure current toroid Arnold Magnetics theory toroid high frequency power transformer toroid cores size table Arnold
    Text: Soft Magnetics Application Guide p. 30.1 March 2000 GROUP ARNOLD Table of Contents Introduction . 30.3 Basics of Magnetics . 30.4 – 30.11 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. Energy. 30.4


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    Magnetic Cores for Switching Power Supplies

    Abstract: PS-02 2605SC transformer manufacturing process flow chart figure 19 hysteresis loop of magnetic core in flyback circuit MAGNESIL - N MPP-400 TWC-500 supermendur ferrite core selection
    Text: Division of Spang & Company Magnetic Cores For Switching Power Supplies INTRODUCTION The advantages of switching power supplies SPS are well documented. Various circuits used in these units have also been sufficiently noted in literature. Magnetic cores play an


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    PDF PS-02 Magnetic Cores for Switching Power Supplies 2605SC transformer manufacturing process flow chart figure 19 hysteresis loop of magnetic core in flyback circuit MAGNESIL - N MPP-400 TWC-500 supermendur ferrite core selection

    ESG89001

    Abstract: philips choke ferrite
    Text: Philips Semiconductors Application note Electro magnetic compatibility and printed circuit board PCB constraints 1. INTRODUCTION The routing of the traces on a Printed Circuit Board (PCB) largely effect the ElectroMagnetic Compatibility (EMC) performance of the PCB with respect to both


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    74HCT00

    Abstract: ESG8801 5v dil reed relay towards ESG89001 AR6-60 electro Display theory transmission-line coaxial cable 1 core single shield
    Text: Philips Semiconductors Microcontroller Products Application note Electro magnetic compatibility and printed circuit board PCB constraints 1. INTRODUCTION The routing of the traces on a Printed Circuit Board (PCB) largely effect the ElectroMagnetic Compatibility (EMC)


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    PDF ESG89001 74HCT00, 74HCT00 ESG8801 5v dil reed relay towards ESG89001 AR6-60 electro Display theory transmission-line coaxial cable 1 core single shield

    74HCT00

    Abstract: inverter pcb board circuit diagram 5v dil reed relay towards philips rf choke ferrite signetics 2692 DIL 14 pin reed relay philips 8702 electro magnetic flow meter APPENDIX A TTL IC CONNECTION DIAGRAM ESG89001
    Text: INTEGRATED CIRCUITS ESG89001 Electro magnetic compatibility and printed circuit board PCB constraints June 1989 Philips Semiconductors Philips Semiconductors Application note Electro magnetic compatibility and printed circuit board (PCB) constraints 1. INTRODUCTION


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    PDF ESG89001 74HCT00 inverter pcb board circuit diagram 5v dil reed relay towards philips rf choke ferrite signetics 2692 DIL 14 pin reed relay philips 8702 electro magnetic flow meter APPENDIX A TTL IC CONNECTION DIAGRAM ESG89001

    HP34401A

    Abstract: AN9670 Jolo SPCJ-123-01 HIP5020 HIP5020EVAL2 MBR0540 PAC27A01T SPCJ-123-01 TPSE107M016S0100 TPSE227M010S0100
    Text: HIP5020 Circuit 2 - Evaluation Board HIP5020EVAL2 Application Note January 1997 AN9670 Introduction Design Considerations for Small Size The HIP5020EVAL2 is a DC-to-DC converter evaluation tool for the HIP5020. The converter is designed for portable power systems and is optimized for small size. For detailed


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    PDF HIP5020 HIP5020EVAL2) AN9670 HIP5020EVAL2 HIP5020. HIP5020, HIP5020 HP34401A AN9670 Jolo SPCJ-123-01 MBR0540 PAC27A01T SPCJ-123-01 TPSE107M016S0100 TPSE227M010S0100

    Designing Type II Compensation for Current Mode

    Abstract: 55030 design of 20 khz step up ferrite transformer AN724 mpp schematic self resonant driver Siliconix EFD15 Si9118 Si9119
    Text: AN724 Vishay Siliconix AN724 Designing A High-Frequency, Self-Resonant Reset Forward DC/DC For Telecom Using Si9118/9 PWM/PSM Controller by Thong Huynh FEATURES • • • • Fixed Telecom Input Voltage Range: 30 V to 80 V • Self-Resonant Reset 5-V Output Voltage, 5-A Max., Total 25-W Continuous Power • Current Mode Control with Slope Compensation


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    PDF AN724 Si9118/9 500-kHz 35-mV 11-Dec-98 Designing Type II Compensation for Current Mode 55030 design of 20 khz step up ferrite transformer AN724 mpp schematic self resonant driver Siliconix EFD15 Si9118 Si9119

    UC7907

    Abstract: UC1901 60W 12V Ferrite transformer for Switching Power Supplies fly back transformer Intermediate frequency transformer transformer less power supply 6v output E3493A SC-16 UC1840
    Text: - U-94 APPLICATION NOTE THE UC1901 SIMPLIFIES THE PROBLEM OF ISOLATED FEEDBACK IN SWITCHING REGULATORS 1. Introduction bility. The gain, or current transfer ratio, through an opto-coupler is loosely specified and changes as a function of time and temperature. This variation will


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    PDF UC1901 Review-60 UC7907 60W 12V Ferrite transformer for Switching Power Supplies fly back transformer Intermediate frequency transformer transformer less power supply 6v output E3493A SC-16 UC1840

    TPSE107M016S0100

    Abstract: JOLO SPCJ-123-01 HP34401A operational amplifier discrete schematic AN9670 HIP5020 HIP5020EVAL2 MBR0540 PAC27A01T SPCJ-123-01
    Text: Harris Semiconductor No. AN9670 Harris Intelligent Power January 1997 HIP5020 Circuit 2 - Evaluation Board HIP5020EVAL2 Author: Mike Walters Introduction The thermal cooling path for the HIP5020 includes these pins, the eight vias linking both sides of the printed circuit


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    PDF AN9670 HIP5020 HIP5020EVAL2) 41C/W. HIP5020EVAL2 HIP5020. HIP5020, HIP5020 TPSE107M016S0100 JOLO SPCJ-123-01 HP34401A operational amplifier discrete schematic AN9670 MBR0540 PAC27A01T SPCJ-123-01

    half bridge converter 2kw

    Abstract: mosfet inverter 2kW 100khz NE5560 6 volt dc to 110v ac inverter circuit diagram 12v dc to 230v ac CONVERTERS SIMPLE CIRCUITS 230v to 12v center tap transformer 12V DC to 230V AC inverters circuit diagram 12 volt ac to dc bridge rectifier circuit 12v center tap transformer ely transformers
    Text: APPLICATION NOTE 952A A Multiple Output, Off-Line Switching Power Supply Using HEXFETs H E X F E T is the trademark for International Rectifter Power M O S FETs By P E T E R W O O D Intraduction The recent introduction of H EX ­ F E T power M O SFETs has provided


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    PDF IRF720 AN-952A half bridge converter 2kw mosfet inverter 2kW 100khz NE5560 6 volt dc to 110v ac inverter circuit diagram 12v dc to 230v ac CONVERTERS SIMPLE CIRCUITS 230v to 12v center tap transformer 12V DC to 230V AC inverters circuit diagram 12 volt ac to dc bridge rectifier circuit 12v center tap transformer ely transformers

    Rf power splitter

    Abstract: schematic diagram ac 150 kva generator HP3478A hp3478 DC to 500 MHz RMS-to-DC Converter differential pair cascode AD534 AD539 AD711 AD734
    Text: ANALOG DEVICES AN-212 APPLICATION NOTE □ ONE TECHNOLOGY WAY • P.O. BOX 9106 • NORWOOD, MASSACHUSETTS 02062-9106 • 617/329-4700 Using the AD834 in DC to 500 MHz Applications: RMS-to-DC Conversion, Voltage-Controlled Amplifiers, and Video Switches by M ark Elbert and Barrie Gilbert


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    PDF AN-212 AD834 AD539 AD734 AD534 Rf power splitter schematic diagram ac 150 kva generator HP3478A hp3478 DC to 500 MHz RMS-to-DC Converter differential pair cascode AD711

    MC1648

    Abstract: MC1648 equivalent MC1648 internal schematic variable inductor for 100MHz oscillator variable inductor values for 100MHz oscillator symbol of varactor diode and equivalent circuit variable inductor values for 10MHz- 100MHz oscillator Transistor t30 motorola varactor diode HP608
    Text: MOTOROLA SEMICONDUCTOR TECHNICAL DATA Voltage Controlled Oscillator MC1648 Consider M C12148 for New Designs The MC1648 requires an external parallel tank circuit consisting of the inductor L and capacitor (C). For Maximum Performance Q|_ £ 100 at Frequency of Operation.


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    PDF C12148 MC1648 MC1648 100MHz 0-35pF 10MHz MC1648 equivalent MC1648 internal schematic variable inductor for 100MHz oscillator variable inductor values for 100MHz oscillator symbol of varactor diode and equivalent circuit variable inductor values for 10MHz- 100MHz oscillator Transistor t30 motorola varactor diode HP608

    Untitled

    Abstract: No abstract text available
    Text: MOTOROLA SEMICONDUCTOR TECHNICAL DATA M C 1648 V oltage C ontrolled O scillato r Consider MC12148 for New Designs The MC1648 requires an external parallel tank circuit consisting of the inductor L and capacitor (C). For Maximum Performance Q l £ 100 at


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    PDF MC12148 MC1648

    UC7907

    Abstract: forward convert UC1901
    Text: — - U-94 U N IT R O D E APPLICATION NOTE THE UC1901 SIMPLIFIES THE PROBLEM OF ISOLATED FEEDBACK IN SWITCHING REGULATORS 1. Introduction bility. The gain, or current transfer ratio, through an opto-coupler is loosely specified and changes as a function of time and temperature. This variation will


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    PDF UC1901 Review-60 UC7907 forward convert

    DC to 500 MHz RMS-to-DC Converter

    Abstract: AD834 HP3478A 37SV hp3478 HP436 Design -5V dc power supply using center-tapped transformer differential pair cascode 2N3904 AD539
    Text: ► ANALOG DEVICES AN-212 APPLICATION NOTE ONE TECHNOLOGY WAY • P.O. BOX 9106 • NORWOOD, MASSACHUSETTS 02062-9106 • 617/329-4700 Using the AD834 in DC to 500 MHz Applications: RMS-to-DC Conversion, Voltage-Controlled Amplifiers, and Video Switches by M ark Elbert and Barrie Gilbert


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    PDF AN-212 AD834 AD539 AD734 AD534 DC to 500 MHz RMS-to-DC Converter HP3478A 37SV hp3478 HP436 Design -5V dc power supply using center-tapped transformer differential pair cascode 2N3904