Demonstrate clipping of negative waves with an inverted diode in the output. A circuit which removes the peak of a waveform is known as a clipper. Show a negative Produce a schematic diagram. During the positive half cycle of the 5 V peak input, the diode is reversed biased. The diode does not conduct. It is as if the diode were not there. Show the positive half cycle is unchanged at the output V(2). Show the output positive peaks overlays the input sinewave V(1). Voltage values: Resistor valuse: 1 K Ω DC offset: 0 V Amplitude: 5 V Freq: 1 KHz
Demonstrate clipping of negative waves with an inverted diode in the output. A circuit which removes the peak of a waveform is known as a clipper. Show a negative Produce a schematic diagram. During the positive half cycle of the 5 V peak input, the diode is reversed biased. The diode does not conduct. It is as if the diode were not there. Show the positive half cycle is unchanged at the output V(2). Show the output positive peaks overlays the input sinewave V(1). Voltage values: Resistor valuse: 1 K Ω DC offset: 0 V Amplitude: 5 V Freq: 1 KHz
Chapter59: Motor Startup And Troubleshooting Basics
Section: Chapter Questions
Problem 12SQ: How is a solid-state diode tested? Explain.
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- Demonstrate clipping of negative waves with an inverted diode in the output.
A circuit which removes the peak of a waveform is known as a clipper. Show a negative
Produce a schematic diagram.
During the positive half cycle of the 5 V peak input, the diode is reversed biased. The diode
does not conduct. It is as if the diode were not there. Show the positive half cycle is
unchanged at the output V(2). Show the output positive peaks overlays the input sinewave
V(1).
Voltage values: Resistor valuse: 1 K Ω
DC offset: 0 V
Amplitude: 5 V
Freq: 1 KHz
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