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By Hartman, E.F.; Sandia National Laboratories.; United States. Dept. of Energy.; United States. Dept. of Energy. Office of Scientific and Technical Information

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Extra info for Aging and Radiation Effects in Stockpile Electronics

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Alternating currents and voltages vary with time and periodically change their direction. 1 shows examples of some alternating waveforms. qxd 2/10/09 2:18 PM Page 22 22 CHAPTER 2 MEASUREMENT OF VOLTAGES AND CURRENTS Of these, by far the most important is the sinusoidal waveform or sine wave. Indeed, in many cases, when engineers use the terms ‘alternating current’ or ‘alternating voltage’ they are referring to a sinusoidal quantity. Since sine waves are so widely used, it is important that we understand the nature of these waveforms and the ways in which their properties are defined.

S. is applied across a resistor of 25 Ω. What power is dissipated in the resistor? 19 A sinusoidal waveform with an average voltage of 6 V is measured by an analogue multimeter. What voltage will be displayed? 20 A square-wave voltage signal has a peak amplitude of 5 V. What is its average value? 21 A square wave of 5 V peak is applied across a 25 Ω resistor. What will be the power dissipated in the resistor? 22 A moving-coil meter produces a full-scale deflection for a current of 50 μA and has a resistance of 10 Ω.

If this signal were applied to an analogue or digital multimeter, the reading would simply reflect the magnitude of the DC component. However, using an oscilloscope the presence of the alternating component is visible, and the true nature of the signal becomes apparent. Oscilloscopes also allow the DC component to be ‘blocked’ by selecting an AC-coupled input, permitting the AC component to be seen and measured easily. We will see how capacitors can be used to block DC signals in Chapter 8. When used with AC signals, it is normal to measure the peak-to-peak voltage of a waveform when using an oscilloscope, since this is the quantity that is most readily observed.

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Aging and Radiation Effects in Stockpile Electronics by Hartman, E.F.; Sandia National Laboratories.; United States. Dept. of Energy.; United States. Dept. of Energy. Office of Scientific and Technical Information


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