Search results for "Voltage regulator"

showing 8 items of 8 documents

Small-Signal Modeling of a Controlled Transformer Parallel Regulator as a Multiple Output Converter High Efficient Post-Regulator

2004

This paper presents a post-regulator based on the use of a controlled transformer, which adds or subtracts an additional voltage to the output filter of a converter in order to regulate its output voltage. So, their actuation is complementary to that of more known post-regulators, such as the magnetic amplifier (magamp) and synchronous switch post-regulator (SSPR), because the regulation is achieved by controlling the voltage across the filter inductor instead of its charge time. Besides, the post-regulator processes the power in parallel to the one flowing from input to output and only handles a percentage of it. The post-regulation by controlled transformer is suitable of being employed i…

Forward converterEngineeringLow-dropout regulatorSwitched-mode power supplyBuck converterbusiness.industryVoltage regulatorDistribution transformerControl theoryBoost converterElectronic engineeringVoltage regulationElectrical and Electronic EngineeringbusinessIEEE Transactions on Power Electronics
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Non-linear digital control improving transient response: Design and test on a multiphase VRM

2010

Multiphase interleaved buck converters are widely used for point of load applications, especially for VRMs. Performance optimization issue often clashes with size and cost requirements thus leading the industrial and academic research to focus on advanced solutions. This paper presents a control technique for multiphase VRMs including two interacting sections: the linear loop implements a PWM peak current mode control and the nonlinear subsystem modifies few linear loop parameters under load transients only. Steady-state performances are affected by the linear control only while dynamic performance optimization is a non-linear algorithm issue. The proposed control system improves the dynami…

EngineeringSteady state (electronics)business.industryControl theoryBuck converterControl systemElectronic engineeringDigital controlVoltage regulatorTransient responseConvertersbusinessPulse-width modulationSPEEDAM 2010
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The Sequential Switching Shunt Maximum Power Regulator and its Application in the Electric Propulsion System of a Spacecraft

2007

This paper describes a baseline solution of a Power Conditioning and Distribution Unit (PCDU) for Electrical Propulsion (EP) systems. The solution adopted uses two high efficiency, low-mass power regulators; a solar array regulator (SAR) based on the classical Sequential Switching Shunt Regulator with Maximum Power Point Tracking (MPPT) capability followed by a step-up converter to achieve the desired regulated bus voltage. This paper focuses on the first part of the PCDU, the Sequential Switching Shunt Maximum Power Regulator (S3MPR). This electrical architecture has been adapted and recently proposed for the Electric Propulsion power system of the European and Japanese Mercury Mission (Be…

EngineeringElectric power systemMaximum power principleElectrically powered spacecraft propulsionbusiness.industryPower electronicsPhotovoltaic systemElectrical engineeringVoltage regulatorbusinessMaximum power point trackingPower distribution unit2007 IEEE Power Electronics Specialists Conference
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Current-Sensing Technique for Current-Mode Controlled Voltage Regulator Modules

2008

This paper introduces an innovative current-sense technique for voltage regulator modules (VRMs). The proposed method is applied to a multiphase buck converter although the converter topology does not affect the accuracy or effectiveness of the proposed technique. A RC network is parallel connected with the buck converter low-side MOSFET and the voltage signal across the sense capacitor reconstructs the inductor current waveform. The RC technique benefits from all the advantages of the most popular current-sensing technique, the inductor DC resistance current-sense method, cutting off its main disadvantage. The sense network design is oriented to obtain high immunity to noise and a great dy…

EngineeringCurrent sensing Current sharing Multiphase buckconverteBuck converterbusiness.industryGeneral EngineeringBuck–boost converterĆuk converterElectrical engineeringVoltage regulatorInductorPower electronicsBoost converterElectronic engineeringRC circuitbusiness
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A battery-based, low-noise voltage source.

2010

A highly stable, low-noise voltage source was designed to improve the stability of the electrode bias voltages of a Penning trap. To avoid excess noise and ground loops, the voltage source is completely independent of the public electric network and uses a 12 V car battery to generate output voltages of +/-15 and +/-5 V. First, the dc supply voltage is converted into ac-voltage and gets amplified. Afterwards, the signal is rectified, filtered, and regulated to the desired output value. Each channel can deliver up to 1.5 A. The current as well as the battery voltage and the output voltages can be read out via a universal serial bus (USB) connection for monitoring purposes. With the presented…

PhysicsLow-dropout regulatorbusiness.industryDropout voltagePre-chargeVoltage dividerElectrical engineeringVoltage regulatorVoltage sourcebusinessInstrumentationLow voltageDisturbance voltageThe Review of scientific instruments
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A new current-mode control for DC/DC converter

2005

Current-sensing is used widely in smart power chips, especially in DC/DC converter for voltage regulator modules (VRM), implemented with interleaved synchronous rectifier buck converters. The interleaved technique main difficulty is due to its current-sharing control between the several modules. Besides, if the used control technique is current-mode type, it is necessary create a ramp signal proportional to current on the inductor. In this paper, a lossless current-sensing method, solving the major disadvantages of the current-mode control and implementing a current-sharing technique, is proposed. This innovative technique is tested in a two-module interleaved buck converter.

Forward converterElectric potentialBuck converterComputer scienceFlyback converterDC-DC convertersBoost converterElectronic engineeringĆuk converterconstant on-timeVoltage regulatorInductorSignalINTELEC 05 - Twenty-Seventh International Telecommunications Conference
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A new efficiency low mass bi-directional battery discharge-charge regulator for low voltage batteries

2002

Since the policies of the space agencies are focused on the development of smaller satellites, it is becoming more and more important the save of volume and mass in the necessary satellite equipment. Due to this need, the authors introduce a bi-directional battery discharge-charge regulator for low voltage batteries that reaches these new goals and besides which has high efficiency.

Battery (electricity)Engineeringbusiness.industryElectrical engineeringRegulatorSatelliteTopology (electrical circuits)Charge (physics)Voltage regulatorbusinessLow MassLow voltagePESC Record. 27th Annual IEEE Power Electronics Specialists Conference
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MATLAB Co-Simulation Tools for Power Supply Systems Design

2011

ion level. Circuit simulation software as Powersim PSIM and Orcad Pspice are the most common choice for circuit modelling. In (Basso, 2008), the design and simulation of switchmode power supplies is deeply analyzed and simulation tips in several environments are proposed. ASIC simulation and verification tools as Xilinx ISE/Modelsim or Aldec ActiveHDL are available to implement the digital controller by the VHDL or VERILOG source code. Since the interaction between subsystems is the most common source of faults, testing separately analog and digital subsystems by the means of different verification tools is a severe mistake. Matlab is a powerful simulation environment for mixed-mode systems…

Computer scienceVoltage regulator moduleCo-simulationSettore ING-INF/01 - ElettronicaElectronic circuit simulationlaw.inventionMicroprocessorpower electronics MATLAB switching converterslawControl theoryPower electronicsElectronic engineeringVerilogcomputerModelSimcomputer.programming_language
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