Electrical measurement, signal processing, and displays by John G. Webster

By John G. Webster

The CRC ideas and functions in Engineering sequence is a library of handy, good value references sharply involved in specific engineering themes and subspecialties. each one quantity within the sequence contains chapters conscientiously chosen from CRC's bestselling handbooks, logically prepared for max comfort, and thoughtfully priced to slot each budget.

Electrical size, sign Processing, and monitors describes using tools and strategies for sensible size of electromagnetic variables, sign processing apparatus and parameters, and diverse different types of monitors, from cathode ray tubes to LED units. For this quantity, chapters appropriate to those themes have been culled from the bestselling size, Instrumentation, and Sensors instruction manual and revised via their unique authors to carry them completely brand new.

This is a concise, well-illustrated, and hugely useful reference. It units forth the foundations, formulation, and equations engineers and scientists want for fixing the instrumentation and size questions they come upon in perform, quite while difficulties come up in components open air their very own specialties.

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Extra info for Electrical measurement, signal processing, and displays

Example text

One scope has a memory depth of 5 K points and the other only 1 K. At a sweep speed of 1 ms per division, both scopes will be able to store data into their memory at their full sampling speed, and each will be storing 100 data points per division, for a total of 1000 data points being stored. The scope with the 5 K memory will have a data point in one of every 5 memory locations, and the scope with the 1 K memory will have a data point in every memory location. If one reduces the sweep speed to 5 ms/div, the deeper memory scope will now fill every one of its memory locations with data points separated by 10 ns.

So, the oscilloscope must pass all of these high-frequency components to the display with little or no distortion. Group delay is the measure of the propagation time of each component through the vertical system. A constant group delay means that each of these components will take the same amount of time to propagate through the vertical system to the CRT, independent of their frequencies. If the higher-order harmonics take more or less time to reach the scope’s deflection system than the lower harmonics, the resulting display will be a distorted representation of the input signal.

21 shows the input signal is applied to the vertical axis of a cathode ray tube. This is the correct model for an analog oscilloscope but it is overly simplified in the case of the digital oscilloscope. The important thing to learn from this diagram is that the input signal will be operated on by the oscilloscope’s vertical axis circuits so that it can be displayed by the CRT. The differences between the analog and digital oscilloscope are covered in later sections. 21 Simplified oscilloscope block diagram that applies to either analog or digital oscilloscopes.

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