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    Part ECAD Model Manufacturer Description Download Buy
    TB67S580FNG Toshiba Electronic Devices & Storage Corporation Stepping Motor Driver/Unipolar Type/Vout(V)=50/Iout(A)=1.6 Visit Toshiba Electronic Devices & Storage Corporation
    TB67S581FNG Toshiba Electronic Devices & Storage Corporation Stepping Motor Driver/Unipolar Type/Vout(V)=50/Iout(A)=2.5 Visit Toshiba Electronic Devices & Storage Corporation
    TB67S539FTG Toshiba Electronic Devices & Storage Corporation Stepping Motor Driver/Bipolar Type/Vout(V)=40/Iout(A)=2/Clock Interface Visit Toshiba Electronic Devices & Storage Corporation
    TB67S141AFTG Toshiba Electronic Devices & Storage Corporation Stepping Motor Driver/Unipolar Type/Vout(V)=84/Iout(A)=3/Phase Interface Visit Toshiba Electronic Devices & Storage Corporation
    TB67S149AFTG Toshiba Electronic Devices & Storage Corporation Stepping Motor Driver/Unipolar Type/Vout(V)=84/Iout(A)=3/Clock Interface Visit Toshiba Electronic Devices & Storage Corporation

    STEP DOWN TRANSFORMER 5V Datasheets Context Search

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    grounding transformer

    Abstract: MAX1771 equivalent AN998 AN-998 powersupply circuit 5v automatic temperature control full converter 3 phase MAX1771 MAX845 isolated feedback flyback converter 1N4148S
    Text: Maxim > App Notes > Power-Supply Circuits Keywords: 5V Step-Down Converter Has Transformer-Isolated Feedback Jul 09, 1998 APPLICATION NOTE 998 5V Step-Down Converter Has Transformer-Isolated Feedback The circuit of Figure 1 shows an alternative to opto-isolated feedback signals the system shown is a 5V


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    PDF 500VRMS 1500VRMS MAX1771: MAX845: com/an998 AN998, APP998, Appnote998, grounding transformer MAX1771 equivalent AN998 AN-998 powersupply circuit 5v automatic temperature control full converter 3 phase MAX1771 MAX845 isolated feedback flyback converter 1N4148S

    grounding transformer

    Abstract: step down transformer isolated feedback flyback converter SCHOTTKY DIODE BRIDGE centre tapped Transformer 1N4148S flyback transformer data pin AN998 APP998 MAX770
    Text: Maxim > App Notes > POWER-SUPPLY CIRCUITS Keywords: 5V Step-Down Converter Has Transformer-Isolated Feedback Jul 09, 1998 APPLICATION NOTE 998 5V Step-Down Converter Has Transformer-Isolated Feedback The circuit of Figure 1 shows an alternative to opto-isolated feedback signals the system shown is a 5V


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    PDF 500VRMS 1500VRMS com/an998 MAX770: MAX845: AN998, APP998, Appnote998, grounding transformer step down transformer isolated feedback flyback converter SCHOTTKY DIODE BRIDGE centre tapped Transformer 1N4148S flyback transformer data pin AN998 APP998 MAX770

    THA104-2R2

    Abstract: inverter Delta delta VL inverter irf7821 CMSH5-40 EMK325BJ106MN JMK107BJ105MA JMK212BJ475MG JMK325E107MM MAX4400
    Text: Maxim > App Notes > Automotive Keywords: step-down, inverter, bipolar supplies, dual output, transformer Mar 26, 2004 APPLICATION NOTE 3046 All-Ceramic Capacitor Step-Down/Inverter Supplies ±5V at 3A Abstract: A MAX8538 dual synchronous buck controller supplies both +5V and -5V outputs at 3A. One


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    PDF MAX8538 OT143) com/an3046 MAX4400: MAX837: MAX8538: AN3046, APP3046, Appnote3046, THA104-2R2 inverter Delta delta VL inverter irf7821 CMSH5-40 EMK325BJ106MN JMK107BJ105MA JMK212BJ475MG JMK325E107MM MAX4400

    PS2811-1-M

    Abstract: RLF7030T-2R2M5R4 zener 8.2V vishay resistor 0603 1 0.1W MMBT6429LT1G ser2010-122mx Z4 SOT23 AN2043 PS2811-1M tdk Isolators
    Text: National Semiconductor Application Note 2043 Ajay Hari March 18, 2010 Introduction LO modulating power switches with independent pulse width timing. The main difference between the topologies are, the Half Bridge topology employs a transformer to provide input / output ground isolation and a step down or step up


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    PDF AN-2043 PS2811-1-M RLF7030T-2R2M5R4 zener 8.2V vishay resistor 0603 1 0.1W MMBT6429LT1G ser2010-122mx Z4 SOT23 AN2043 PS2811-1M tdk Isolators

    TDK C1608COG

    Abstract: C1608COG RLF7030T-2R2M5R4 1H682J AN1755 48V 100W zener diode BAT54BRW C2012X7R1C225K P8208 1E223
    Text: National Semiconductor Application Note 1755 Steve Schulte January 15, 2008 Introduction LO modulating power switches with independent pulse width timing. The main difference between the topologies are, the Half Bridge topology employs a transformer to provide input / output ground isolation and a step down or step up


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    PDF AN-1755 TDK C1608COG C1608COG RLF7030T-2R2M5R4 1H682J AN1755 48V 100W zener diode BAT54BRW C2012X7R1C225K P8208 1E223

    C3216JB1E105K

    Abstract: C3216JB1E225K R109D mch3307 MB39A115 MB39A115PFT MCH3408 SB05-05CP SBS004 KOA58
    Text: FUJITSU MICROELECTRONICS DATA SHEET DS04-71114-1Ea ASSP for Power Supply Applications Evaluation board Manual MB39A115 • DESCRIPTION The MB39A115 evaluation board is a surface mount circuit board with five channels of down conversion and transformer conversion circuits. The internal structure consists of four channels of step-down type and one channel


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    PDF DS04-71114-1Ea MB39A115 MB39A115 C3216JB1E105K C3216JB1E225K R109D mch3307 MB39A115PFT MCH3408 SB05-05CP SBS004 KOA58

    MAX5033

    Abstract: 13 tap inductor Transformer sepic APP3740 MAX5035 sepic flyback 5v 2a transformer TRANSFORMER LC Flyback Transformers SANYO AN3740
    Text: Maxim > App Notes > POWER-SUPPLY CIRCUITS Keywords: step-down, buck, transformer, flyback, SEPIC Mar 23, 2006 APPLICATION NOTE 3740 How to Generate Auxiliary Supplies from a Positive Buck DC-DC Converter Abstract: Many applications require a low-power supply in addition to the main supply. For reasons of cost, inventory


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    PDF com/an3740 MAX5035: AN3740, APP3740, Appnote3740, MAX5033 13 tap inductor Transformer sepic APP3740 MAX5035 sepic flyback 5v 2a transformer TRANSFORMER LC Flyback Transformers SANYO AN3740

    Untitled

    Abstract: No abstract text available
    Text: User's Guide SNVA092A – July 2004 – Revised May 2013 AN–1339 LM2716 Evaluation Board 1 Abstract This Application note describes how to configure the LM3524 as a transformer isolated flyback power supply. 2 Introduction The LM2716 is composed of two high current PWM DC/DC converters. The buck step-down converter


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    PDF SNVA092A LM2716 LM3524 800mA

    200v dc voltage regulator

    Abstract: REGULATOR IC lm78L05 5V power supply using bridge rectifier LM78L05 bridge rectifier 240V AC DN2540N5 zener 120V regulator 1N4001 bridge rectifier zener diode for 240v ac voltage Transistor z1
    Text: DN25 Series Application Note AN–D30 3 Off-Line 5.0V Output Non-Isolated Linear Regulator Introduction There are many applications that call for a non-isolated, low current DC power supply operating directly from the AC line. A switchmode power supply would be far too complex and expensive, whereas a simple 60Hz step down transformer would be


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    PDF DN2535N5 DN2540N5 1N4005 50mV/div) LM78L05, 20mVPP 200v dc voltage regulator REGULATOR IC lm78L05 5V power supply using bridge rectifier LM78L05 bridge rectifier 240V AC zener 120V regulator 1N4001 bridge rectifier zener diode for 240v ac voltage Transistor z1

    Transistor z1

    Abstract: 12 volt ac to dc bridge rectifier circuit 5V power supply using bridge rectifier bridge rectifier 240V AC Z1 Transistor 240 volts AC to 5 volts DC Bridge rectifier bridge rectifier 240V AC 240v dc 120v AC to 15V dc transformer zener diode for 240v ac voltage REGULATOR IC lm78L05
    Text: DN25 Series Application Note AN–D30 Off-Line 5.0V Output Non-Isolated Linear Regulator Introduction There are many applications that call for a non-isolated, low current DC power supply operating directly from the AC line. A switchmode power supply would be far too complex and expensive, whereas a simple 60Hz step down transformer would be


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    PDF 1N4005 50mV/div) LM78L05, 20mVPP Transistor z1 12 volt ac to dc bridge rectifier circuit 5V power supply using bridge rectifier bridge rectifier 240V AC Z1 Transistor 240 volts AC to 5 volts DC Bridge rectifier bridge rectifier 240V AC 240v dc 120v AC to 15V dc transformer zener diode for 240v ac voltage REGULATOR IC lm78L05

    av to vga converter circuits

    Abstract: MAX3505 MAX3505EGP VGA TO AV CONVERTER circuit
    Text: 19-2351; Rev 0; 4/02 KIT ATION EVALU E L B A AVAIL Upstream CATV Amplifier Features ♦ Single 5V Supply Operation ♦ Accurate Gain Control, ±1dB over 56dB Range ♦ Gain Programmable in 0.5dB Steps ♦ -55dBc Harmonic Distortion at 65MHz ♦ Low Burst On/Off Transient


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    PDF -55dBc 65MHz MAX3505EGP MAX3505 20-pin MAX3505 av to vga converter circuits MAX3505EGP VGA TO AV CONVERTER circuit

    Untitled

    Abstract: No abstract text available
    Text: 19-2351; Rev 0; 4/02 KIT ATION EVALU E L B A AVAIL Upstream CATV Amplifier Features ♦ Single 5V Supply Operation ♦ Accurate Gain Control, ±1dB over 56dB Range ♦ Gain Programmable in 0.5dB Steps ♦ -55dBc Harmonic Distortion at 65MHz ♦ Low Burst On/Off Transient


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    PDF -55dBc 65MHz MAX3505 MAX3505 64dBmV 34dBmV 21-0091I G2055-1* MAX3505EGP

    mathcad forward converter design

    Abstract: TDK PC44 how to calculate ferrite core transformer mathcad flyback design tdk pc50 UCC3801 schematic TDK Ferrite Core PC44 general transformer design schematic diagram dc-dc flyback converter CURRENT TRANSFORMER
    Text: A 50W, 48V-to-5V DC-DC Converter Using the HIP2100 Application Note April 1996 AN9605 Author: Greg J. Miller Introduction HIP2100 Half-Bridge Driver The most popular DC-DC converter topologies are also the simplest - the flyback converter and the forward converter.


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    PDF HIP2100 AN9605 HIP2100 mathcad forward converter design TDK PC44 how to calculate ferrite core transformer mathcad flyback design tdk pc50 UCC3801 schematic TDK Ferrite Core PC44 general transformer design schematic diagram dc-dc flyback converter CURRENT TRANSFORMER

    general transformer design

    Abstract: TDK PC44 TM 9605 mathcad flyback UCC3801 schematic TDK Ferrite Core PC44 mathcad flyback design tdk pc50 pc50 core pulse transformer driver ic
    Text: A 50W, 48V-to-5V DC-DC Converter Using the HIP2100 TM Application Note April 1996 AN9605 Author: Greg J. Miller Introduction HIP2100 Half-Bridge Driver The most popular DC-DC converter topologies are also the simplest - the flyback converter and the forward converter.


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    PDF HIP2100 AN9605 HIP2100 general transformer design TDK PC44 TM 9605 mathcad flyback UCC3801 schematic TDK Ferrite Core PC44 mathcad flyback design tdk pc50 pc50 core pulse transformer driver ic

    how to calculate turn ratio for ferrite core transformer

    Abstract: mathcad forward converter design mathcad flyback design TDK PC44 tdk pc50 TDK Ferrite Core PC44 EPC-19 TRANSFORMER UCC3801 schematic mathcad INDUCTOR DESIGN HIP2100
    Text: A 50W, 48V-to-5V DC-DC Converter Using the HIP2100 Application Note April 1996 AN9605 Author: Greg J. Miller The most popular DC-DC converter topologies are also the simplest - the flyback converter and the forward converter. Much of their simplicity is because they employ a single power


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    PDF HIP2100 AN9605 how to calculate turn ratio for ferrite core transformer mathcad forward converter design mathcad flyback design TDK PC44 tdk pc50 TDK Ferrite Core PC44 EPC-19 TRANSFORMER UCC3801 schematic mathcad INDUCTOR DESIGN HIP2100

    IR3M92N4

    Abstract: No abstract text available
    Text: IR3M92N4 IR3M92N4 Application note Contents 1. 2. 3. 4. 5. 6. 6.1 6.2 6.3 6.4 7. 7.1 7.2 7.3 7.4 7.5 7.6 7.7 8. 8.1 8.2 8.3 8.4 9. 9.1 9.2 9.3 9.4 9.5 10. 10.1 10.2 10.3 10.4 10.5 11. General description Pin assignment and Package outline Pin description Absolute maximum ratings


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    PDF IR3M92N4 OP13026EN Attachment-26 IR3M92N4

    Untitled

    Abstract: No abstract text available
    Text: a +5V CATV Line Driver Fine Step Preliminary Technical Data FEATURES Supports DOCSIS standard for reverse path transmission Gain Programmable in .75 dB steps over a 53.5 dB Range Low Distortion at 11dBm output: -54 dBc SFDR at 42MHz -52 dBc SFDR at 65MHz 12nV/√Hz Output Noise Level


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    PDF 11dBm 42MHz 65MHz 12nV/Hz AD8323 AD8323ARU 28-Pin

    1nF Y1 CAPACITOR

    Abstract: voltage transformer 3.3kv - 400v PC817 orient ef25 bobbin 12 pins EF25 bobbin zener 1v8 LXZ16VB101MF11LL SHARP PC817 ug2d equivalent SBC1-681-251
    Text: Design Example Report Title 16W Power Supply using TOP243P Input: 195Vac - 265Vac Specification Output: 1.8V/600mA, 3.3V/750mA, 5V/520mA, 12V/0.8A Application Set Top Box Author Power Integrations Applications Department Date April 20, 2005 Document Number


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    PDF OP243P 195Vac 265Vac V/600mA, V/750mA, V/520mA, DER-51 1nF Y1 CAPACITOR voltage transformer 3.3kv - 400v PC817 orient ef25 bobbin 12 pins EF25 bobbin zener 1v8 LXZ16VB101MF11LL SHARP PC817 ug2d equivalent SBC1-681-251

    h.out transistor

    Abstract: st h bridge PQFP44 TDA7278
    Text: TDA7278 HIGH-EFFICIENCY CD ACTUATOR DRIVER WIDE OPERATIVE SUPPLY RANGE 1.6 to 5V LOW VOLTAGE OPERATION CAPABILITY 4 LOAD DRIVING VOLTAGES PWM REGULATED (STEP DOWN FROM BATTERY) LOW ON RESISTANCE H BRIDGES (2 x 1.6Ω MAX + 2 x 2.5Ω MAX) FOR: – FOCUS AND TRACKING ACTUATORS


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    PDF TDA7278 PQFP44 h.out transistor st h bridge PQFP44 TDA7278

    6V H bridge

    Abstract: step down transformer 12v step down transformer step down transformer 12 step down transformer 6v TDA7278 PQFP44 h.out transistor
    Text: TDA7278 HIGH-EFFICIENCY CD ACTUATOR DRIVER WIDE OPERATIVE SUPPLY RANGE 1.6 to 5V LOW VOLTAGE OPERATION CAPABILITY 4 LOAD DRIVING VOLTAGES PWM REGULATED (STEP DOWN FROM BATTERY) LOW ON RESISTANCE H BRIDGES (2 x 1.6Ω MAX + 2 x 2.5Ω MAX) FOR: – FOCUS AND TRACKING ACTUATORS


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    PDF TDA7278 PQFP44 6V H bridge step down transformer 12v step down transformer step down transformer 12 step down transformer 6v TDA7278 PQFP44 h.out transistor

    PQFP44

    Abstract: TDA7278 12v step down transformer
    Text: TDA7278 HIGH-EFFICIENCY CD ACTUATOR DRIVER WIDE OPERATIVE SUPPLY RANGE 1.6 to 5V LOW VOLTAGE OPERATION CAPABILITY 4 LOAD DRIVING VOLTAGES PWM REGULATED (STEP DOWN FROM BATTERY) LOW ON RESISTANCE H BRIDGES (2 x 1.6Ω MAX + 2 x 2.5Ω MAX) FOR: – FOCUS AND TRACKING ACTUATORS


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    PDF TDA7278 PQFP44 PQFP44 TDA7278 12v step down transformer

    MAX796

    Abstract: MAX797
    Text: JV\JYXAJV\ ADVANCE INFORMATION All information in this data sheet is preliminary and subject to change. 7/94 Step-Down Controllers w ith Synchronous R e c tifie r for CPU P o w er The MAX796/MAX799 are specially equipped with a sec­ ondary feedback input SECFB for transformer-based


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    PDF AX796-MAX799 300kHz MAX796/ MAX799. 796-M A14XIA1 MAX797 MAX798 6VT030V MAX796

    MAX797

    Abstract: No abstract text available
    Text: 19-0221; Rev 1; 11/94 y k iy jx i> k i -•ä s ? ! Step-Down Controllers w ith Synchronous R ectifier for CPU P ow er The MAX796/MAX799 are specially equipped with a sec­ ondary feedback input SECFB for transformer-based dual-output applications. This secondary feedback path


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    PDF MAX796/MAX799 MAX796) MAX799) MAX797 MAX797EPE_ MAX797ESE_ MAX797MJE_ MAX799CPE MAX799CSE_ MAX799C/D_

    DIODE d3s 57

    Abstract: No abstract text available
    Text: 19-0221; Rev 2: 4/96 JV W Y X A JV X Step-Down Controllers w ith Synchronous R e c tifie r for CPU P ow er Features ♦ 96% Efficiency The MAX796/MAX799 are specially equipped with a sec­ ondary feedback input SECFB for transformer-based dual-output applications. This secondary feedback path


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    PDF MAX796/MAX799 MAX796) MAX799) 375pA MAX797 MAX797CSE WAX797C/D MAX797EPE MAX797ESE MAX797MJE DIODE d3s 57