cathode ray
TRANSCRIPT
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CATHODE RAY OSCILLOSCOPE Prepared by- RAKESH YADAV
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TOPICS COVERED :• Introduction• History• Advancement• Block diagram• Detailed description• Multi –Input Oscilloscope• Types of Oscilloscope• Application
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HOW A CRO LOOKS LIKE
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INTRODUCTION TO CRO• Versatile electronic instrument giving visual display of signals
• Used for measurement of frequency , amplitude, phase etc.
• Also used in determining the nature and characteristics of various components.
• Has a high bandwidth range thus making it a sensitive and accurate device.
• Easier to use as the internal routine act as a guide to the user.
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History• Hand-drawn oscillograms: The earliest method of creating an image of a waveform was through a laborious and painstaking process of measuring the voltage or current of a spinning rotor at specific points around the axis of the rotor, and noting the measurements taken with a galvanometer.
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Advancement:
Automatic paper-drawn oscillograph
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Cathode ray tubes
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Tektronix
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OSCILLOSCOPE:The device which convert any electrical signal to visual.(waveform)The graph, usually called the trace, is drawn by a beam of electrons striking the phosphor coating of the screen making it emit light, usually green or blue. This is similar to the way a television picture is produced.
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BASIC DIAGRAM
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ANOTHER SCOOP….
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WORKING OF A CRO
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CATHODE RAY TUBE
The main parts of Cathode Ray Tube are:
•Electron Gun Assembly•Focusing Anodes•Deflection Plates Assembly•Screen for CRT
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Electr
on Gun
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Anodes
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Fluorescent Screen
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Multi-Input OscilloscopeOscilloscope can have multiple input and display facilities.
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The most common one is of - TWO INPUTS.
Although FOUR and EIGHT inputs are available for special applications
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Types of oscilloscope:• Single beam oscilloscpe:
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• Dual beam oscilloscope:
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WHY DUAL TRACE?Unlike single trace oscilloscope , dual trace oscilloscope can display two traces on the screen, allowing you to easily compare the input and output .FOREXAMPLE: input and output of an amplifier.
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Amplifier input Amplifier output
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Input and output comparison on DTO
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Typical Applications:Troubleshoot electro optical and electrical systems.Observe a triggered event separately or relative to the trigger itself.Use with analog light meter output to visualize intensity of a source.Check response of a silicon, InGaAs, or avalanche photodiode.Analyze signals produced by function generators.Evaluate system performance.
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