Published by uLektz
Course Code:ULZ0410
Author:uLektz
University: General for All University
Regulation:2016
Categories:Electronics & Communication
Format :
ePUB3 (DRM Protected)
Type :eBook
FREE
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1.1 Linear Wave Shaping: High Pass, Low Pass RC Circuits, And Their Response For Sinusoidal, Step, Pulse, Square And Ramp Inputs
1.2 RC Network as Differentiator and Integrator
1.3 Attenuators, Its Applications In CRO Probe
1.4 RL and RLC Circuits And Their Response For Step Input - Ringing Circuit
2.1 Non linear wave shaping: Diode clippers - Transistor clipper, clippers at two independent levels-transfer characteristics of clipper, Emitter coupled clipper
2.2 Clamping operation - Clamping circuits using diode with different inputs, Clamping Circuit Theorem
2.3 Practical Clamping Circuit - Effect Of Diode Characteristics On Clamping Voltage, Transfer Characteristics Of Clampers
3.1 Switching Characteristics Of Devices : Diode As a Switch - Piecewise Linear Diode Characteristic, Design and analysis of Transistor as a switch, Break down voltage consideration Of Transistor
3.2 Saturation Parameters Of Transistor And Their Variation With Temperature - Design Of Transistor Switch, Transistor-Switching Times
3.3 Bistable Multi Vibrator - Analysis and Design of Fixed Bias, Self Bias Bistable Multi Vibrator, Self-biased transistor binary, Collector catching Diodes
3.4 Commutating Capacitors - Triggering of Binary Circuits, Emitter Coupled Bistable Multi Vibrator (Schmitt trigger)
4.1 Monostable Multi Vibrator: Analysis And Design Of Collector Coupled Monostable Multi Vibrator - Triggering of Monostable Multi Vibrator, Applications of Monostable Multi Vibrator
4.2 Astable Multi Vibrator,Analysis And Design Of Collector Coupled Astable Multi Vibrator - Application of Astable Multi Vibrator as a Voltage To Frequency Converter
5.1 Voltage Time Base Generators : General Features Of a Time Base Signal - Methods Of Generating Time Base Waveform, Exponential Sweep Circuits, Negative Resistance Switches
5.2 Miller And Bootstrap Time Base Generators :Basic Principles - Transistor Miller time base generator, Transistor Bootstrap Time Base Generator
6.1 Diode Logic, Transistor Logic, Diode-Transistor Logic, Transistor-Transistor Logic, Emitter Coupled Logic, AOI Logic - Comparison Of Logic Families
6.2 Basic Operating Principles of Sampling Gates - Diode Unidirectional Sampling Gate, Bi-Directional Sampling Gates
6.3 Reduction of Pedestal In Gate Circuits - Applications Of Sampling Gates
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