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Part Manufacturer Description Datasheet BUY
SN74LVC1404DCTR Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-SM8 -40 to 125 visit Texas Instruments Buy
SN74LVC1404DCUR Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-VSSOP -40 to 125 visit Texas Instruments Buy
SN74LVC1404YZPR Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-DSBGA -40 to 85 visit Texas Instruments Buy
COMBOLED Texas Instruments TPS92020 Resonant-Switching Driver Controller for LED Lighting visit Texas Instruments
SN74LVC1404DCURG4 Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-US8 -40 to 85 visit Texas Instruments
SN74LVC1404DCURE4 Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-US8 -40 to 85 visit Texas Instruments

self resonant driver

Catalog Datasheet MFG & Type PDF Document Tags

Self-Oscillating Flyback Converters

Abstract: 1000V igbt dc to dc buck converter or a high side switch to a 48V bus in a distributed power application. The low side driver self , delay. Self Oscillating IGBT Driver This circuit self oscillates at approximately 25kHz. The on , Approximately 25kHz oscillation FIGURE 5. SELF OSCILLATING IGBT DRIVER, DC-DC STEP UP (OR DOWN) 3 , Resonant Gate Driver 1µH 47µH 18V -12V 300ns The power consumption was measured for Case 2 , 9. RESONANT GATE DRIVER IP = 0.6RSENSE Recovery Time TR ~ RC FIGURE 10. MOS DRIVER WITH
Intersil
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halfbridge design

Abstract: self resonant driver FAN7631 - Advanced PFM Controller for Half-Bridge Resonant Converters July 2011 FAN7631 Advanced Pulse Frequency Modulation (PFM) Controller for Half-Bridge Resonant Converters Features Variable Frequency Control with 50% Duty Cycle for Half-Bridge Resonant Converter Topologies High Efficiency with Zero-Voltage-Switching (ZVS) Up to 600kHz Operating Frequency Built-in High-Side Gate Driver , half-bridge resonant converters that includes a high-side gate drive circuit, an accurate current-controlled
Fairchild Semiconductor
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halfbridge design self resonant driver A/-1000

FAN7631

Abstract: 110v resonant 11.6k R 4. Soft-Start and Self Auto-Restart Generally, the output voltage gain of a resonant , FAN7631 - Advanced PFM Controller for Half-Bridge Resonant Converters February 2012 FAN7631 Advanced Pulse Frequency Modulation (PFM) Controller for Half-Bridge Resonant Converters Features Variable Frequency Control with 50% Duty Cycle for Half-Bridge Resonant Converter Topologies High Efficiency with Zero-Voltage-Switching (ZVS) Up to 600kHz Operating Frequency Built-in High-Side Gate Driver
Fairchild Semiconductor
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110v resonant LLC resonant converter transformer 300khz 600V mosfet driver IC

vogt transformer 406 77

Abstract: vogt T4 Driver IC SO-8 IRS27952S Resonant HalfBridge Converter Control IC SO-8 www.irf.com 28 August 2013 , Application Note AN-1189 2x35W Isolated LLC LED Driver with Active PFC By Akos Hodany Table of , . 10 6.2 LLC Resonant Tank Dimensioning , driver system is presented in this application note. Schematic, BOM, PCB layout example are presented , power with isolated 700mA constant current outputs. The driver comprises a boost PFC stage (controlled
International Rectifier
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vogt transformer 406 77 vogt T4 Epcos EF20 TRANSFORMER IRS2980 transistor 2N 4236 230VAC 110VAC IRS2505L AN-1160 IRS2795 IRS2980S

UC3843 power supply atx

Abstract: SMD LED 5630 Technology (VHVIC): ~ Variable-frequency Quasi-Resonant (QR) and resonant mode architectures for higher , resonant controllers. These controllers are used respectively in critical conduction mode quasi-resonant flyback converters and half bridge resonant LLC converters. These topologies minimize EMI radiation , QuasiResonant Resonant NCP1215A 10 NCP1351 50 NCP1205 150 NCP1207A/B 150/1001 NCP1308 150 NCP1337 , 4 4 4 4 Intg HB Driver 30 150 300 500 500 500 500 500 500 180 180 180
ON Semiconductor
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UC3843 power supply atx SMD LED 5630 NCP1651 schematic adapter UC3843 ncp*1337 UC3843 buck converter application note SGD510-9 SGD510/D
Abstract: '¢ â'¢ â'¢ â'¢ â'¢ â'¢ â'¢ â'¢ â'¢ High Efficiency PFC and Half-Bridge Resonant LLC Combo , driver pulsating current returns to this pin. GD2 2 O Gate drive output for LLC stage MOSFET , : 1. Mode Select Function (MD_SEL): Select self bias or Aux bias mode of operation. 2. Power Supply , device. This pin should be decoupled with a 10-μF ceramic bypass capacitor in both Aux Bias and Self Bias Modes. An additional hold-up capacitor is needed at this pin if operating in Self Bias Mode Texas Instruments
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UCC29950 SLUSC18A SOIC-16 ISO/TS16949

10Kf6 diode

Abstract: ir2155 40w electronic ballast and operates at the resonant frequency of L-C. Unfortunately, the circuit is not self starting and , series resonant circuits with the lamp(s) across one of the reactances. Figure 1 shows this basic , L-C resonant circuit. The sinusoidal voltage across C is magnified by the Q at resonance and develops , shortcomings: 1) not self starting 2) poor switch times 3) labor intensive torroidal current transformer 4 , VDC and, unlike driver transformers, can provide super-clean waveforms of any duty cycle 0 99%. The
International Rectifier
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IR215X EE-30Z T106-26 10Kf6 diode ir2155 40w electronic ballast IR2155 equivalent IR2151 DT 94-3 self oscillating Electronic ballast 40W AN-995A IRF720 BE-30-1110CP

self resonant driver

Abstract: MOTOROLA SEMICONDUCTOR TECHNICAL DATA Product Preview Low Voltage PLL Clock Driver The MPC990/991 is a 3.3V compatible, PLL based ECL/PECL clock driver. The fully differential design ensures , ±25ps Cycle-to-Cycle Jitter MPC990 MPC991 LOW VOLTAGE PLL CLOCK DRIVER 52 1 FA SUFFIX , for seed clock generaytion as well as final distribution. The on-board oscillator is completely self , to place a 1k resistor across the two crystal leads. The oscillator circuit is a series resonant
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400MH BR1333

rectifier diode 230V AC input and 230V DC output

Abstract: PTC thermistor 501Y 1002 USING IR2155 MOS GATE DRIVER By Peter N. Wood & Gerry Limjuco IR2155 BALLAST CIRCUIT Description , MOS Gate Driver IC (MGD) which operates directly from the DC bus via a dropping resistor Rl. Internal , and the frequency is set by the selection of R2 and C4 to approximate the resonant frequency of the lamp circuits. The lamp operates in its own series resonant circuit consisting of a series inductor L , thermistor (PTC). The PTC is a low resistance when cold and transitions to a very high resistance as it self
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rectifier diode 230V AC input and 230V DC output PTC thermistor 501Y 1002 PTC THERMISTOR TDK BE30-1110CP ir2155 design tips SIMPLE ELECTRONIC BALLAST 320VDC 15VDC 22AWG BE-22-118CP 26AWG 120VAC

MOSFET Royer oscillator

Abstract: 24 volt 200 w to mosfet inverter circuit diagram regulator in a buck configuration that feeds an inverter driver. The inverter uses a self synchronizing , Frebruary 1997 r o ML4864 LCD Backlight Lamp Driver with Contrast GENERAL DESCRIPTION The , the ML4864 is that this contrast control voltage can remain active even though the main lamp driver , ) Contrast voltage is active with lamp driver disabled Improved efficiency (=95%) Allows all N-channel MOSFET drive Positive or negative contrast control voltage Driven self-timing resonant lamp
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MOSFET Royer oscillator 24 volt 200 w to mosfet inverter circuit diagram buck royer inverter lcd Power MosFet inverter schematic diagram zero crossing detector inverter Royer oscillator ML4864CR ML4864ER

NEC lcd inverter schematic

Abstract: inverter using two parallel transformer efficiency is achieved by using a switching regulator in a buck configuration that feeds an inverter driver. The inverter uses a self synchronizing scheme with zero voltage switching for the lowest possible , active even though the main lamp driver circuit is disabled. It has a duty cycle adjustment range from 0 , Backlight Lamp Driver with Contrast The ML4864 is available in very small form factor package (20-pin SSOP , Lamp Driver Disabled Improved Efficiency (=95%) Allows All N-Channel M OSFET Drive Positive or
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NEC lcd inverter schematic inverter using two parallel transformer 7232 diode flyback transformer pin configuration schematic PWM inverter L4864 L4864CR

Royer oscillator

Abstract: September 1994 PRELIMINARY Micro Linear ML4864 LCD Backlight Lamp Driver with Contrast , achieved by using a switching regulator in a buck configuration that feeds an inverter driver. The inverter uses a self synchronizing scheme with zero voltage switching for the lowest possible losses. The , even though the main lamp driver circuit is disabled. It has a duty cycle adjustment range from 0% to , Voltage is Active with Lamp Driver Disabled â  Improved Efficiency (=95%) â  Allows All N-Channel
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125 kHz RFID READER EM 18 CIRCUIT

Abstract: 125 kHz RFID EM 18 · · · · · · · Integrated PLL system to achieve self adaptive carrier frequency to antenna resonant frequency No external quartz required 100 to 150 kHz carrier frequency range Data transmission , Supply voltage Antenna circuit resonant frequency 250°C x 10s Symbol TA VDD FRES Min -40 , FANT_L 100 100 Drivers Output current of main driver Antenna drivers output resistance Output , capacitor connection « out » Antenna current sensing voltage Modulation driver Supply ground (substrate
EM Microelectronic-Marin
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V4050 125 kHz RFID READER EM 18 CIRCUIT 125 kHz RFID EM 18 125 kHz RFID Antenna immobiliser circuit diagram 125 kHz RFID antenna EM 125kHz RFID antenna P4092 H400X V4070 C/215

AN1543 Electronic Lamp Ballast Design

Abstract: CFL electronic ballast two alternatives: self oscillant or driven by a specific controller. 1 AN1576 Q1 100 nF L C 4.7 nF Q2 3.9 mH LINE 100 nF DIAC Figure 1. Basic Self Oscillant CFL 82 kW/1W , CFL The resonant frequency of a serial RLC network is given by equation [ 1 ]: fo +2* p , can imagine, a bipolar transistor based self oscillant topology is most sensitive to the AC , STRIKES fo F fo Figure 3. RLC Series Resonant Network Behavior IC IC PEAK AS A
Motorola
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AN1543 Electronic Lamp Ballast Design CFL electronic ballast electronic ballast kW power ELECTRONIC BALLAST DIAGRAM pcb foot print of transformer cfl circuit AN1576/D

MUR-150

Abstract: cfl circuit two alternatives: self oscillant or driven by a specific controller. 1 AN1576 Q1 100 nF L C 4.7 nF Q2 3.9 mH LINE 100 nF DIAC Figure 1. Basic Self Oscillant CFL 82 kW/1W , CFL The resonant frequency of a serial RLC network is given by equation [ 1 ]: fo +2* p , can imagine, a bipolar transistor based self oscillant topology is most sensitive to the AC , STRIKES fo fo F Figure 3. RLC Series Resonant Network Behavior IC IC PEAK AS A
Motorola
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MUR-150 igbt gate driver ic for three phase pure sine wave ptc fluorescent ballast MMG05N60E IGBT in TO92 Package ELECTRONIC BALLAST FLUORESCENT LAMP

desaturation design

Abstract: ELECTRONIC BALLAST DIAGRAM the 230 V line. The basic circuits given in figures #1 and #2 show the two alternatives: self , AN1576 Q1 100 nF L Q2 LINE 3.9 mH C 4.7 nF 100 nF DIAC Figure 1. Basic Self Oscillant CFL , 7 10 W C Q1 MTD1N50E 100 nF Figure 2. Basic Driven CFL The resonant frequency of a serial RLC , imagine, a bipolar transistor based self oscillant topology is most sensitive to the AC parameters: ­ The , / Emitter. F fo fo Figure 3. RLC Series Resonant Network Behavior IC tr 90% 90% EXPECTED IC
Motorola
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desaturation design half bridge 600V MOSFET driver IC 175C ELECTRONIC BALLAST 6 LAMP SCHEMATIC

4X1N4007

Abstract: AN1543 Electronic Lamp Ballast Design . show the two alternatives: self oscillant or driven by a specific controller. Q1 100 nF L C 4.7 nF Q2 3.9 mH LINE 100 nF DIAC Figure 1. Basic Self Oscillant CFL 82 kW/1W , Driven CFL The resonant frequency of a serial RLC network is given by equation [ 1 ]: fo + 1 2 , STRIKES fo fo F Figure 3. RLC Series Resonant Network Behavior - The frequency - F - is , influence the performance of the electronic ballast. As one can imagine, a bipolar transistor-based self
ON Semiconductor
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4X1N4007 schematic diagram of energy saving lamps an1543 To92 thyristor datasheet motorola 600V igbt dc to dc boost converter BALLAST CFL

MMG05N60E

Abstract: cfl circuit given in Figures 1. and 2. show the two alternatives: self oscillant or driven by a specific controller. Q1 100 nF L C 4.7 nF Q2 3.9 mH LINE 100 nF DIAC Figure 1. Basic Self , Figure 2. Basic Driven CFL The resonant frequency of a serial RLC network is given by equation [ 1 , LOW LAMP STRIKES fo fo F Figure 3. RLC Series Resonant Network Behavior - The , transistor-based self oscillant topology is most sensitive to the AC parameters: IC time - tsi - as depicted
ON Semiconductor
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MPIC2151P mgw05n60e transistor diac BIPOLAR MC34262 PD MUR150E 1N4937
Abstract: PLL Clock Driver The MPC990 is a 3.3 V compatible, PLL based clock driver. The fully differential , extensions to the Qc bank of outputs. MPC990 LOW VOLTAGE PLL CLOCK DRIVER 2 FA SUFFIX 52 , completely self contained so that the only external component required is the crystal. As the oscillator is , recommended, but not required. The oscillator circuit is a series resonant circuit as opposed to the more common parallel resonant circuit, this eliminates the need for large on­board capacitors. Because the Motorola
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MPC990/D

MPC990

Abstract: MPC991 parallel resonant discussion. The MPC990/991 is a clock driver which was designed to generate outputs , Preview MPC990 MPC991 Low Voltage PLL Clock Driver The MPC990/991 is a 3.3V compatible, PLL based ECL/PECL clock driver. The fully differential design ensures optimum skew and PLL jitter performance , · · · · · · LOW VOLTAGE PLL CLOCK DRIVER Fully Integrated PLL Output Frequency Up to , generaytion as well as final distribution. The on­board oscillator is completely self contained so that the
Motorola
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Nippon capacitors MPC950/D
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