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Showing papers on "Flyback converter published in 1999"


Proceedings ArticleDOI
14 Mar 1999
TL;DR: In this paper, the authors define the converter voltage transfer ratio taking into consideration the switches' parasitic capacitance and the transformer leakage and magnetizing inductance, and two breadboard models were built and tested utilizing the current fed full bridge topology.
Abstract: The full-bridge isolated current fed converter with active clamp advantages are in its ZVS capability and its well-clamped operation devoid of voltage overshoot on the converter switches and the rectifier diodes. Another relative advantage is that the isolation transformer magnetising current does not have a DC component. An analysis defines the converter voltage transfer ratio taking into consideration the switches' parasitic capacitance and the transformer leakage and magnetizing inductance. The analysis defines the selection criteria for power stage component values. Two breadboard models were built and tested utilizing the current fed full bridge topology. One model was realized as a DC/DC and the other as a single stage PFC. The models' experimental data confirmed calculations.

212 citations


Journal ArticleDOI
TL;DR: A new family of AC-DC converters is derived which integrate the functions of low-harmonic rectification, low-frequency energy storage, and wide-bandwidth output voltage control into a single converter containing one, two, or four active switches.
Abstract: A new family of AC-DC converters is derived which integrate the functions of low-harmonic rectification, low-frequency energy storage, and wide-bandwidth output voltage control into a single converter containing one, two, or four active switches. These converters utilize a discontinuous conduction mode input inductor, an internal energy storage capacitor, and transformer secondary circuits which resemble the bridge, forward, flyback, or Cuk DC-DC converters. A large-signal equivalent circuit model for this family is presented, which uses the "loss-free resistor" concept. Design strategies and experimental results are given. High-performance regulation with satisfactory line-current harmonics is demonstrated with conventional duty-ratio control. Further improvements in line current are possible by simultaneous duty-ratio and switching-frequency control.

204 citations


Patent
17 Sep 1999
TL;DR: In this article, a hysteretic mode control circuit (HMC) was proposed for DC-to-DC power converters, where the switching frequency of the first and second switches is dependent upon the ramp signal.
Abstract: A DC to DC power converter (58) and method of controlling the DC to DC power converter (58). The converter (58) has a first switch (S 1 ) coupled to a second switch (S 2 ). The converter (58) is adapted to receive an input voltage V in , generate an output voltage V out , and operate at a switching frequency. A hysteretic mode control circuit (52) includes a first circuit generating a ramp signal at input (56) for controlling the converter (58). The first circuit includes a first capacitor (C 1 ) with the ramp signal generated at an end of the first capacitor (C 1 ). The hysteretic mode control circuit (52) is coupled to the first (S 1 ) and second (S 2 ) switches, where the switching frequency of the first and second switches is dependent upon the ramp signal (56) determined by the value of the components of the first circuit rather than on the voltage from the output filter of the DC to DC power converter. The invention is particularly useful for applications such as DSPs and mixed signal or analog circuits.

168 citations


Patent
21 Dec 1999
TL;DR: In this paper, a dual-mode system for inexpensively operating electrically powered double-insulated devices, such as hand-held power tools and appliances, is presented, which includes a cordless battery pack and a non-isolated corded voltage converter.
Abstract: A dual-mode system for inexpensively operating electrically powered double-insulated devices ( 12 ), such as hand-held power tools and appliances. The system includes a cordless battery pack ( 14 ) that supplies the power and current demands of the device ( 12 ) in a cordless mode or a non-isolated corded voltage converter ( 16 ) that supplies the necessary power and current demands in a physical envelope commensurate in size and interchangeable with that of the battery pack ( 14 ). The corded voltage converter ( 16 ) is provided with a non-isolated high efficiency power supply that allows the converter ( 16 ) to generate the power and current required by the driven device ( 12 ). The double insulation of the driven device ( 12 ) negates the need for a transformer-isolated voltage converter. Eliminating the power transformer from the converter significantly reduces the cost of the module ( 16 ). Additionally, the need for multiple battery packs and fast rechargers is minimized by the availability of a low-cost converter. The voltage converter ( 16 ) includes an inrush current limiter ( 103 ) and power conditioner for filtering AC or DC input power. The filtered voltage is chopped by a transformerless buck-derived converter. The chopped voltage is rectified and filtered to provide low-voltage DC power to the drive motor of the powered double-insulated device ( 12 ).

158 citations


Proceedings ArticleDOI
01 Jul 1999
TL;DR: A detailed analysis of coupled magnetics for DC-DC converters, based on a key building block, is given in this paper, where the authors also present a model of a DC converter.
Abstract: Coupled magnetics filter techniques are important tools in a converter designer's arsenal, but are not well understood. Evidence of this is one basic building block of coupled filters, reinvented numerous times during the past 65 years. A detailed analysis of coupled magnetics for DC-DC converters, based on a key building block, is given.

139 citations


Patent
14 Jan 1999
TL;DR: In this article, a method and apparatus for interleaving switching of multiple transistor switches in a power factor correction (PFC) boost converter and for timing the switching to occur when a current through a freewheeling diode corresponding to each switch is at a minimum level is presented.
Abstract: A method and apparatus for interleaving switching of multiple transistor switches in a power factor correction (PFC) boost converter and for timing the switching to occur when a current through a freewheeling diode corresponding to each switch is at a minimum level. The converter draws input current from an alternating current power supply for forming a regulated output voltage. A controller senses an input current and an output voltage across an output capacitor for controlling switching to regulate the output voltage and to ensure that the input current is substantially in phase with an input voltage. Current through a first inductor associated with a first switch is allowed to fall substantially to zero upon discharging the first inductor prior to re-charging the first inductor. Charging of a second inductor associated with a second switch, however, is initiated prior to completion of discharging the first inductor. Similarly, current through the second inductor is allowed to fall substantially to zero prior to re-charging the second inductor. An advantage is that from the perspective of the power supply, the converter operates in continuous conduction mode, while from the perspective of each of the switches, the converter operates in discontinuous conduction mode. The invention reduces power dissipated in the switches, increasing reliability and allowing higher frequency operation. In accordance with another aspect of the invention, a synchronizing signal is generated by the PFC converter for synchronizing operation of a second converter, such as a pulse-width modulation converter, with the PFC converter.

137 citations


Journal ArticleDOI
TL;DR: In this paper, a single active switch two-diodes high-voltage converter is presented, which can operate into a capacitor-diode voltage multiplier, which offers simpler structure and control, higher efficiency, reduced electromagnetic interference (EMI), and size and weight savings compared with traditional switched-mode regulated voltage multipliers.
Abstract: A novel single active switch two-diodes high-voltage converter is presented. This converter can operate into a capacitor-diode voltage multiplier, which offers simpler structure and control, higher efficiency, reduced electromagnetic interference (EMI), and size and weight savings compared with traditional switched-mode regulated voltage multipliers. Two significant advantages are the continuous input current and easy isolation extension. The new converter is experimentally verified. Both the steady-state and dynamic theoretical models are correlated well with the experimental data.

133 citations


Journal ArticleDOI
TL;DR: In this article, the authors present the use of the current control scheme in switched-capacitor (SC)-based step-up dc/dc converter, which includes all positive characteristics of previous SC converters, including small size, light weight, high power density, and the amenability to IC hybridization.
Abstract: This paper presents the use of the current control scheme in switched-capacitor (SC)-based step-up dc/dc converter. It not only includes all positive characteristics of previous SC converters, including small size, light weight, high power density, and the amenability to IC hybridization, but also has the prominent features of continuous input current waveform and better regulation capability than the traditional SC converters. The problem of conducted electromagnetic interference with the supply network, which generally exists in previous SC converters, is highly suppressed. The concept of energy transfer is achieved by using dual SC step-up converter cells operating in antiphase. Each cell is switching between two topologies for the same duration. The dc voltage conversion ratio is controlled by the current control scheme in order to adjust the charging profile of the capacitors. A generalized n-stage converter is presented and is analyzed by a simplified third-order state-space equation set. The static and dynamic behaviors and the design constraints of the converter are derived. A prototype of the 30 W 5 V/12 V two-stage converter has been built, giving an overall efficiency of 78% with power density of 15 W/in/sup 3/. Its stability of operation is also presented.

109 citations


Proceedings ArticleDOI
03 Oct 1999
TL;DR: In this paper, an approach to provide ride-through with flyback converter modules (FBCMs) powered by super capacitors is explored, and both unidirectional and bidirectional flyback DC/DC converter topologies are examined.
Abstract: Adjustable speed drives (ASDs) under short-term power interruptions (STPIs) can interrupt a critical process. In this paper an approach to provide ride-through with flyback converter modules (FBCMs) powered by super capacitors is explored. The proposed approach is modular and facilitates additional modules to be added to suit higher voltage/power ratings. Both unidirectional and bidirectional flyback DC/DC converter topologies are examined. Simulation and experimental results are presented.

109 citations


Patent
Masayoshi Iwase1
06 Jul 1999
TL;DR: In this paper, a fuel cell system minimizes the power loss that may occur in a conduction passage during supply of electric power from a Fuel Cell (36) to a load.
Abstract: A fuel cell system minimizes the power loss that may occur in a conduction passage during supply of electric power from a fuel cell (36) to a load. A bypass (48) connects between the input of a DC/DC converter (38) and the output thereof, and therefore supplies power generated by the fuel cell (36) to an inverter (44), bypassing the DC/DC converter (38). A changeover switch (37) selectively changes the connection of the output of the fuel cell (36) between the connection to the input of the DC/DC converter (38) and the connection to the bypass (48). When the fuel cell (36) is connected to the DC/DC converter (38), the power from the fuel cell (36) is supplied to the inverter (44) or a battery (40) via the DC/DC converter (38). When the fuel cell (36) is connected to the bypass (48), the power from the fuel cell (36) is supplied to the inverter (44), bypassing the DC/DC converter (38). A cutoff switch (41) disconnects the output of the battery (40) from a connecting line. That is, the cutoff switch (41) disconnects the battery (40) from the inverter (44), the bypass (48) and the like when turned off. When turned on, the cutoff switch (41) connects the battery (40) to those components.

106 citations


Patent
02 Dec 1999
TL;DR: In this paper, a 3-phase auto transformer with 4 windings per phase is used to power two 6-pulse converter bridges connected in parallel with a large dc filter capacitor.
Abstract: In a 12-pulse converter system a 3-phase auto transformer with 4 windings per phase is used to power two 6-pulse converter bridges connected in parallel with a large dc filter capacitor. The transformer rating is typically about 40% of the dc kW load. The voltage ratio is typically 1:1 so that the average dc output of a multi-pulse converter is generally the same as that of a conventional 3-phase bridge rectifier without transformer, however, ac input harmonic currents are greatly reduced. A small single-phase transformer is used to block unwanted circulating currents between the two 6-pulse converters. Where necessary to further reduce high frequency harmonic currents, a 3-phase ac line reactor may be connected in series with the source of ac power. Where a smaller degree of harmonic reduction is acceptable, only 3 windings per phase are required on the transformer and the small single-phase transformer is eliminated by raising the zero-sequence impedance of the auto transformer by means of an additional magnetic path. This method provides a higher zero-sequence impedance compared to a conventional 3-limb magnetic structure used in most 3-phase transformers. The 1:1 voltage ratio feasible in this invention facilitates retrofit applications, also the concept can be applied to a greater number of parallel converters such as those giving 18-pulse operation.

Patent
20 Sep 1999
TL;DR: In this article, an isolated and soft-switched power converter is used for DC and DC/DC/AC power conversion, which includes two resonant tank circuits coupled back-to-back through an isolation transformer.
Abstract: An isolated and soft-switched power converter is used for DC/DC and DC/DC/AC power conversion. The power converter includes two resonant tank circuits coupled back-to-back through an isolation transformer. Each resonant tank circuit includes a pair of resonant capacitors connected in series as a resonant leg, a pair of tank capacitors connected in series as a tank leg, and a pair of switching devices with anti-parallel clamping diodes coupled in series as resonant switches and clamping devices for the resonant leg. The power converter is well suited for DC/DC and DC/DC/AC power conversion applications in which high-voltage isolation, DC to DC voltage boost, bidirectional power flow, and a minimal number of conventional switching components are important design objectives. For example, the power converter is especially well suited to electric vehicle applications and load-side electric generation and storage systems, and other applications in which these objectives are important. The power converter may be used for many different applications, including electric vehicles, hybrid combustion/electric vehicles, fuel-cell powered vehicles with low-voltage starting, remote power sources utilizing low-voltage DC power sources, such as photovoltaics and others, electric power backup systems, and load-side electric storage and generation systems.

Patent
12 Feb 1999
TL;DR: In this article, a continuous mode flyback converter circuit which includes elements capable of generating a zero volt switching (ZVS) signal across the power switch is described, where the ZVS generating elements include a switched shunt inductance coupled in parallel with active clamp components and connected across the primary winding of the power transformer.
Abstract: A continuous mode flyback converter circuit which includes elements capable of generating a zero volt switching (ZVS) signal across the power switch. The ZVS generating elements include a switched shunt inductance coupled in parallel with active clamp components and connected across the primary winding of the power transformer. The circuit reduces the reverse recovery current through the secondary stage rectifier and the current through the active clamp switch during operation of the converter. The ZVS generating elements may also be used for flyback converters which do not utilize an active clamp.

Journal ArticleDOI
TL;DR: In this paper, a single-stage isolated converter topology designed to achieve a regulated DC output voltage having no low-frequency components and a high-input power factor was presented, where the converter output is operated in discontinuous mode to minimize the bulk capacitor voltage variations when the output load is varied.
Abstract: This paper presents a single-stage isolated converter topology designed to achieve a regulated DC output voltage having no low-frequency components and a high-input power factor. The topology is derived from the basic two-switch forward converter, but incorporates an additional transformer winding, inductor and a few diodes. The proposed circuit inherently forces the input current to be discontinuous and AC modulated to achieve high-input power factor. The converter output is operated in discontinuous mode to minimize the bulk capacitor voltage variations when the output load is varied. Analysis of the converter is presented, and performance characteristics are given. Design guidelines to select critical components of the circuit are presented. Experimental results on a 150 W 50 kHz universal input (90-265 V) 54.75 V output AC/DC converter are given which confirm the predicted performance of the proposed topology.

Patent
23 Mar 1999
TL;DR: In this article, the output of a first converter for switching a rectified line current and an output of an output device for switching direct current were added together to improve the efficiency, a power factor, a holding time, and a ripple characteristic.
Abstract: An output of a first converter for switching a rectified line current and an output of a second converter for switching a direct current are added together so that an efficiency, a power factor, a holding time, and a ripple characteristic can be improved. Further, the power supply apparatus can be made compact and the cost for manufacturing the apparatus can be reduced. A flyback converter type output circuit and a forward converter type output circuit are used in a parallel manner so that a transformer having a high efficiency can be used, and it becomes easier to control the apparatus.

Journal ArticleDOI
TL;DR: A novel current-control-based control strategy, obtained in stationary frame, for a three-phase pulsewidth-modulated AC/DC voltage-source converter that not only exhibits good transient response, but also provides sinusoidal line currents and unity power factor, both in the rectifying and regenerating modes.
Abstract: This paper presents a novel current-control-based control strategy, obtained in stationary frame, for a three-phase pulsewidth-modulated AC/DC voltage-source converter. In this control strategy, an error voltage is produced from the comparison of the output DC voltage with a DC reference voltage. This error voltage is then utilized by a proportional plus integral controller to generate a command signal for the input line current amplitude and is automatically controlled to the desired value. Therefore, there is no need to measure the input line currents. Stability analysis of the closed-loop system is made, and the stability region for proportional and integral gains which makes the operating point stable is also found. The resulting closed-loop system not only exhibits good transient response, but also provides sinusoidal line currents and unity power factor, both in the rectifying and regenerating modes. Experimental results are presented and compared with simulations.

Journal ArticleDOI
TL;DR: In this paper, a design-oriented steady-state analysis of the forward-flyback converter with the current-doubler rectifier is provided, and the advantages and disadvantages of this topology compared to the conventional forward converter are discussed.
Abstract: Complete design-oriented steady-state analysis of the forward-flyback converter, with the current-doubler rectifier is provided. Advantages and disadvantages of this topology compared to the conventional forward converter are discussed. In particular, the transformer-secondary copper losses are evaluated. In addition, a step-by-step design procedure is given, Finally, experimental evaluation results obtained on a 3.3 V/50 A DC/DC converter prototype for the 40-60 V input-voltage range are presented.

Proceedings ArticleDOI
14 Mar 1999
TL;DR: In this article, a PWM full-bridge converter that integrates input power factor correction (PFC) with DC-DC conversion is examined, and the results of the analysis are used to determine its steady-state characteristics.
Abstract: A simple PWM full-bridge converter that integrates input power factor correction (PFC) with DC-DC conversion is examined in the paper. The converter's operation is analyzed, and the results of the analysis are used to determine its steady-state characteristics. A design procedure for the selection of components is derived and demonstrated with an example. The feasibility of the converter and its ability to satisfy the IEC 1000-3-2 Class D requirements for electrical equipment are shown with results obtained from an experimental prototype.

Journal ArticleDOI
TL;DR: In this article, a simple and effective approach of turning an isolated hard-switched converter design into a softswitched one is presented, by adding an auxiliary winding, switch and small capacitor to the conventional PWM isolated flyback converter, all switches and diodes are softly turned on and off.
Abstract: A simple and effective approach of turning an isolated hard-switched converter design into a soft-switched one is presented. By adding an auxiliary winding, switch and small capacitor to the conventional pulsewidth modulation (PWM) isolated flyback converter, all switches and diodes are softly turned on and off. No extra active or passive voltage clamp circuit is needed to suppress voltage stress on the switching devices that were usually found in classical converters. A zero-current-switching (ZCS) PWM flyback converter topology with multiple outputs is analyzed and examined. The proposal inherently utilizes the leakage inductance of the "flyback" transformer to achieve ZCS of all switching devices. A complete steady-state DC analysis and the operating principle are described. The performance of an 80 W experimental converter prototype with dual-voltage outputs is included.

Journal ArticleDOI
TL;DR: In this paper, a simple mapping is derived, which describes the behavior of a peak currentmode controlled boost converter operating chaotically, and the invariant density of this mapping is calculated iteratively and, from this, the power density spectrum of the input current at the clock frequency and its harmonics are deduced.
Abstract: A simple mapping is derived, which describes the behavior of a peak current-mode controlled boost converter operating chaotically. The invariant density of this mapping is calculated iteratively and, from this, the power density spectrum of the input current at the clock frequency and its harmonics are deduced. The calculation is presented, along with experimental verification. The possibility of a novel application of chaos-amelioration of power supply interference-is discussed,.

Patent
Yoshihito Nomura1
21 Jan 1999
TL;DR: In this article, a power supply device for an electromotive railcar, including a series circuit composed of a plurality of first capacitors, connected to receive a first DC voltage from an electric power line, was presented.
Abstract: A power supply device for an electromotive railcar, including a series circuit composed of a plurality of first capacitors, connected to receive a first DC voltage from an electric power line; a plurality of DC/AC/DC converters. Each of the DC/AC/DC converters including an inverter bridge with an input thereof connected in parallel to one of the first capacitors and having a plurality of power transistors, an insulating transformer with a high carrier frequency and having a primary winding connected to an output of the inverter bridge, and a rectifier circuit connected to a secondary winding of the insulating transformer to output a DC voltage. The power supply device further including a smoothing circuit including a DC reactor and a second capacitor for smoothing the DC voltages output from the rectifier circuits of the DC/AC/DC converters, the smoothing circuit generating a second DC voltage; and a three-phase inverter including a bridge circuit having a plurality of power transistors, the three-phase inverter generating a three-phase AC voltage on the basis of the second DC voltage. The respective outputs of the rectifier circuits of the DC/AC/DC converters are connected to each other in parallel.

Patent
Lake Lau1
14 Sep 1999
TL;DR: In this paper, a ballast circuit for a high intensity discharge lamp (24) includes a boost converter (16), a boost controller (36), responsive to the boosted dc output voltage, for driving the boost converter to maintain the boosted output voltage at a predetermined level; a buck converter (18); and a buck controller (38) for driving buck converter to operate the lamp in a transition mode.
Abstract: A ballast circuit for a high intensity discharge lamp (24) includes a boost converter (16), a boost controller (36), responsive to the boosted dc output voltage, for driving the boost converter (16) to maintain the boosted output voltage at a predetermined level; a buck converter (18); and a buck controller (38) for driving the buck converter to operate the lamp in a transition mode and maintaining the reduced dc output voltage at a preselected level for operating the lamp in a steady mode.

Journal ArticleDOI
TL;DR: This paper presents the analysis and design of an isolated single-stage converter achieving high-power-factor correction and fast regulation by using the technique suggested by Wu et al., using a buck-boost converter and a flyback converter to form the discussed converter.
Abstract: This paper presents the analysis and design of an isolated single-stage converter achieving high-power-factor correction and fast regulation. By using the technique suggested by Wu et al., a buck-boost converter and a flyback converter can be integrated to form the discussed converter. The buck-boost semistage working in the discontinuous conduction mode (DCM) functions as a power-factor corrector, and the flyback semistage operating in the DCM is a voltage regulator which is controlled, theoretically, to be independent of load variation. An approximated small-signal model of the converter operating in the DCM is developed. Design of a peak-current feedback loop with an optimal proportional integral controller is also presented. A prototype is implemented to verify that the analysis and design are effective and feasible.

Patent
10 Nov 1999
TL;DR: In this paper, a DC/DC converter combines elements of a boost and a buck converter with synchronous switching and a single controller to provide a step-up or step-down regulator with continuous input and output currents.
Abstract: A DC/DC converter combines elements of a boost and a buck converter with synchronous switching and a single controller to provide a step-up or step-down regulator with continuous input and output currents. A boost converter composed of an inductor in series with the input, a switch to ground, and a diode to an intermediate voltage node provides an intermediate voltage that is greater than the input voltage. A buck converter composed of a switch in series with the intermediate voltage node, a diode to ground, and an inductor in series with the output provides an output voltage that is less than the intermediate voltage. The output is regulated by a single pulse width modulating controller which drives the boost switch and buck switch simultaneously. This technique provides a DC/DC converter that can operate with an input voltage greater than or less than the output voltage. Further, series inductance on both input and output nodes provides continuous input and output AC current reducing conducted noise effects. Further, the input and output inductors have equivalent volt-second characteristics allowing for the possibility to couple the input and output inductors on a single magnetic element. An isolated form of the invention is possible by replacing the buck stage with a transformer-isolated forward converter.

Journal ArticleDOI
TL;DR: In this article, an accurate dynamic modeling and quantitative controller design for an isolated converter with optocoupler isolation in its feedback loop are considered, since the transfer characteristics of some blocks are highly nonlinear and difficult to be modeled analytically.
Abstract: The accurate dynamic modeling and quantitative controller design for an isolated converter with optocoupler isolation in its feedback loop are considered to be difficult issues, since the transfer characteristics of some blocks are highly nonlinear and difficult to be modeled analytically. First a current-mode controlled flyback converter with an optically isolated feedback path is designed. Then the equivalent control system block diagram is constructed, and its block transfer functions are found. To increase the accuracy, the dynamic models of some critical blocks are estimated from measurements. In order to facilitate the controller design, the model simplification is further made. Finally, based on the reduced dynamic model, a quantitative design procedure is derived to find the parameters of the voltage controller to meet the prescribed regulating specifications. Validity of the estimated dynamic model and the proposed controller design approach is demonstrated by some simulation and experimental results.

Proceedings ArticleDOI
01 Jul 1999
TL;DR: In this paper, a simple single-stage AC/DC converter based on the flyback topology is presented, with a single switch, a fast-regulated output voltage is achieved and although the line current is not sinusoidal, the converter complies with the standard IEC 1000-3-2 for low frequency harmonics in the medium power range.
Abstract: In this paper a simple single-stage AC/DC converter, based on the flyback topology, is presented. With a single switch, a fast-regulated output voltage is achieved and although the line current is not sinusoidal, the converter complies with the standard IEC 1000-3-2 for low frequency harmonics in the medium power range. The major advantages of this converter are its size and the efficiency. Design guidelines, analysis of the line current and extensions to other topologies are analyzed. Experimental results are included in the paper.

Journal ArticleDOI
TL;DR: In this article, a dc voltage conversion ratio is controlled by the gate-source voltage of a quasi-switch in each cell, in order to adjust the charging trajectory of the capacitors.
Abstract: A new switched-capacitor (SC)-based dc/dc boost converter is presented. It features good regulation capability and continuous input current, giving lower conducted electromagnetic interference with the supply network than classical SC converters. The converter is realized by using two quasi-switched-capacitor boost converter cells. The dc voltage conversion ratio is controlled by the gate-source voltage of a quasi-switch in each cell, in order to adjust the charging trajectory of the capacitors. By renouncing inductive elements, the converter can be implemented in small size, light weight, high power density, and it is possible to fabricate it in an IC form. A prototype of a 20 W, 6 V/9 V dc/dc boost converter with overall efficiency of 74% and power density of 10 W/in/sup 3/ has been built. The state-space averaging technique is applied to study the static and dynamic behaviors of the converter.

Patent
22 Sep 1999
TL;DR: A flyback DC-DC converter employs a flyback transformer for storing and transferring energy to a load having an auxiliary winding whose voltage is compared by a comparator with a threshold to detect its crossing.
Abstract: A flyback DC--DC converter employs a flyback transformer for storing and transferring energy to a load having an auxiliary winding whose voltage is compared by a comparator with a threshold to detect its crossing. As a consequence, a power transistor driving the primary winding of the transformer is switched on through a control flip-flop, for a new phase of conduction and accumulation of energy, whose duration is established by a secondary control loop of the output voltage producing the switching off of the power transistor for a successive energy transfer phase toward the load of the energy stored in the transformer during the preceding conduction phase. The converter has a wholly integrated control circuit that includes a second comparator of the voltage existing on the current terminal of the power transistor connected to the primary winding of the transformer with respect to the ground potential of the circuit. Furthermore, a delay network is coupled in cascade to the output of a first comparator and has an output coupled to a second input of a logic gate, so that under steady state functioning conditions of the converter, the setting of the flip-flop is done by the second comparator rather than by the first comparator.

Journal ArticleDOI
TL;DR: In this paper, a single-stage high-power-factor electronic ballast based on a flyback converter is presented, which is able to supply a fluorescent lamp assuring a high-input power factor for the utility line.
Abstract: A new single-stage high-power-factor electronic ballast based on a flyback converter is presented in this paper. The ballast is able to supply a fluorescent lamp assuring a high-input power factor for the utility line. Other features are lamp power regulation against line voltage variations and low lamp current crest factor, both assuring long lamp life. The ballast is analyzed at steady-state operation, and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

Proceedings ArticleDOI
26 May 1999
TL;DR: In this paper, a new integrated design environment for device optimization for DC/DC converter applications is presented, which combines a physical device model with a power loss model and uses the results to evaluate optimum die specifications.
Abstract: This paper presents a new integrated design environment for device optimization for DC/DC converter applications. The tool, developed for a synchronous buck converter, combines a physical device model with a power loss model and uses the results to evaluate optimum die specifications. This integrated environment has been used for several different applications and has led to significant improvements in the final in-circuit efficiency.