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High Temperature Electronic Systems Using
High Temperature Electronic Systems Using

... The waveforms for an oven temperature of 30.1 "C are shown in Fig. 7a. It can be seen that the converter operates properly with a small spike in the resonant capacitor voltage corresponding to the gating of the MOSFET. The off-time for the MOSFET was adjusted such that it was not gated when the anti ...
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... This internally fixed blanking time, 400ns, is appropriate for typical applications. However, for high voltage applications the blanking time becomes a critical parameter. The effects of the transformer’s parasitic capacitance is to extend the “spike” width past the blanking time causing the LT1070 ...
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Images for clicker questions - PhET: Free online physics

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... kΩ (typ.) pull-down resistor is built-in for each input signal. In order to prevent input signal oscillation, an RC filter was added on each input and placed as close as possible to the IPM. The filter is designed using a time constant of 10 ns (1 kΩ and 10 pF). ...
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... are added because they have lower on-state voltage than the body diodes of the MOSFETs. It would be possible to replace the transformer and selector with an H-bridge arrangement – removing the second winding. However, the structure of the multiplexer would mean that each switch of the H-bridge would ...
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... transformers is impossible. In power distribution, current and voltage values are among the most important measured values. Above a certain level, the voltage can no longer be measured directly, but must first be reduced to a lower value using suitable devices – converters. In medium-voltage switchg ...
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... In the equivalent circuit Q1 and Q2 are forward-biased, and Q3 and Q4 are reversedbiased. The device operates on the upper right portion of the characteristic curve under this bias condition. When the diac is biased as in part (c), the npnp structure from A2 to A1 is used. In the equivalent circuit, ...
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AAT3340 数据资料DataSheet下载

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... Figure 9 shows the calculation method and result for the required capacitor size. In addition, it also shows a model calculation for the current-voltage curve at the capacitor during the largest current pulse. Presumptions regarding the internal resistance, the capacitor (5 Ω) and the battery (60 Ω) ...
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Capacitor



A capacitor (originally known as a condenser) is a passive two-terminal electrical component used to store electrical energy temporarily in an electric field. The forms of practical capacitors vary widely, but all contain at least two electrical conductors (plates) separated by a dielectric (i.e. an insulator that can store energy by becoming polarized). The conductors can be thin films, foils or sintered beads of metal or conductive electrolyte, etc. The nonconducting dielectric acts to increase the capacitor's charge capacity. A dielectric can be glass, ceramic, plastic film, air, vacuum, paper, mica, oxide layer etc. Capacitors are widely used as parts of electrical circuits in many common electrical devices. Unlike a resistor, an ideal capacitor does not dissipate energy. Instead, a capacitor stores energy in the form of an electrostatic field between its plates.When there is a potential difference across the conductors (e.g., when a capacitor is attached across a battery), an electric field develops across the dielectric, causing positive charge +Q to collect on one plate and negative charge −Q to collect on the other plate. If a battery has been attached to a capacitor for a sufficient amount of time, no current can flow through the capacitor. However, if a time-varying voltage is applied across the leads of the capacitor, a displacement current can flow.An ideal capacitor is characterized by a single constant value, its capacitance. Capacitance is defined as the ratio of the electric charge Q on each conductor to the potential difference V between them. The SI unit of capacitance is the farad (F), which is equal to one coulomb per volt (1 C/V). Typical capacitance values range from about 1 pF (10−12 F) to about 1 mF (10−3 F).The larger the surface area of the ""plates"" (conductors) and the narrower the gap between them, the greater the capacitance is. In practice, the dielectric between the plates passes a small amount of leakage current and also has an electric field strength limit, known as the breakdown voltage. The conductors and leads introduce an undesired inductance and resistance.Capacitors are widely used in electronic circuits for blocking direct current while allowing alternating current to pass. In analog filter networks, they smooth the output of power supplies. In resonant circuits they tune radios to particular frequencies. In electric power transmission systems, they stabilize voltage and power flow.
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