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The V-Star 1100 Charging System
The V-Star 1100 Charging System

Chapter 2: DC Circuit Analysis
Chapter 2: DC Circuit Analysis

Power System Analysis of a Microgrid using ETAP
Power System Analysis of a Microgrid using ETAP

... Transient Analyzer Program (ETAP) software for analyses and monitoring of electrical power system which involves a Microgrid consisting of a wind turbine, a solar panel and two diesel generators. This paper embodies an innovative approach to analyze the power system network by using ETAP with the he ...
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... ‘‘floating’’ and sees only the input-to-output differential voltage, supplies of several hundred volts can be regulated as long as the maximum input to output differential is not exceeded, i.e., avoid short-circuiting the output. Also, it makes an especially simple adjustable switching regulator, a ...
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... • If X = 0 and Y = 0, then both diodes D1 and D2 are reverse biased and thus both the diodes are in cut-off and thus F is low • If X = 0 and Y = 1, D1 is reverse biased, thus does not conduct. But D2 is forward biased, thus conducts and thus pulling F to HIGH • If X = 1 and Y = 0, D2 is reverse bias ...
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... The I/O tracking gap described above occurs if configuration SRAM bits pass their values (zeros or ones) to device I/O cells before an internal Power-On Reset (POR) is able to clear them. It can also occur if internal nodes (such as Node A from the earlier supply sequencing discussion) cause the out ...
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... • Switch closes at t = 0. • Capacitor has initial voltage, Vo. v-i relationship: ...
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Switched-mode power supply



A switched-mode power supply (switching-mode power supply, switch-mode power supply, SMPS, or switcher) is an electronic power supply that incorporates a switching regulator to convert electrical power efficiently. Like other power supplies, an SMPS transfers power from a source, like mains power, to a load, such as a personal computer, while converting voltage and current characteristics. Unlike a linear power supply, the pass transistor of a switching-mode supply continually switches between low-dissipation, full-on and full-off states, and spends very little time in the high dissipation transitions, which minimizes wasted energy. Ideally, a switched-mode power supply dissipates no power. Voltage regulation is achieved by varying the ratio of on-to-off time. In contrast, a linear power supply regulates the output voltage by continually dissipating power in the pass transistor. This higher power conversion efficiency is an important advantage of a switched-mode power supply. Switched-mode power supplies may also be substantially smaller and lighter than a linear supply due to the smaller transformer size and weight.Switching regulators are used as replacements for linear regulators when higher efficiency, smaller size or lighter weight are required. They are, however, more complicated; their switching currents can cause electrical noise problems if not carefully suppressed, and simple designs may have a poor power factor.
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