Pulse and Digital Circuits Textbook by U. A. Bakshi and A. P. Godse Free Download

Pulse and Digital Circuits Textbook by U. A. Bakshi and A. P. Godse Free Download

Pulse and Digital Circuits Textbook by Bakshi Free Download

Pulse and Digital Circuits Textbook by U. A. Bakshi and A. P. Godse free download. It one of the famous textbook for Engineering ECE students, Click below to download Pulse and digital circuits textbook by bakshi free download in Pdf Format. Other important authors who wrote about the pulse and digital circuits are pulse and digital circuits are pulse and digital circuits by yoganarasimha and anand kumar.

Unit I (Chapter – 1) Linear Wave Shaping: High pass, Low pass RC circuits, Their response for sinusoidal, Step, Pulse, Square and ramp inputs. RC network as differentiator and integrator, Double differentiation, Attenuators, RL and RLC circuits and their response for step input, Ringing circuit.

Unit II (Chapter – 2) Non-Linear Wave Shaping: Diode clippers, Transistor clipperes, Clipping at two independent levels, Transfer characteristics of clippers, Emitter coupled clipper, Comparators, Applications of voltage comparators, Clamping operation, Clamping circuits using diode with different inputs, Clamping circuit theorem, Practical clamping circuits, Effect of diode characteristics on clamping voltage, Transfer characteristics of clampers.

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Unit III (Chapters – 3, 4) Switching Characteristics of Devices: Diode and transistor as switches, Break down voltage consideration of transistor, Saturation parameters of transistor and their variation with temperature, Design of transistors switch, Transistor-switching times. Digital Logic Gate Circuits : Realization of logic gates using DTL, TTL, ECL and CMOS logic circuits, Comparison of logic families.

Unit IV (Chapter – 5) Multivibrators: Analysis and design of bistable multivibrators : Fixed bias and self biased transistor binary, Commutating capacitors, Triggering in binary, Schmitt trigger circuit, Applications. Unit V (Chapter – 5) Multivibrators (Cotnd.) : Analysis and design of Monostable Multivibrator: Collector-coupled and emitter-coupled monostable multivibrators, Triggering in monostable multivibrator; Analysis and design of astable multivibrator (Collector coupled and emitter-coupled) using transistors.

Unit VI (Chapter – 6) Time Base Generators: General features of a time base signal, Methods of generating time base waveform, Miller and bootstrap time base generators – Basic principles, Transistor miller time base generator, Transistor bootstrap time base generator, Current time base generators.

Unit VII (Chapter – 7) Synchronization and Frequency Division: Principles of synchronization, Frequency division in sweep circuit, Astable relaxation circuits, Monostable relaxation circuits, Phase delay and phase jitters; Synchronization of a sweep circuit with symmetrical signals, Sine wave frequency division with a sweep circuit.

Unit VIII (Chapters – 8, 9) Blocking Oscillators and Sampling Gates: Blocking Oscillators : Monostable blocking oscillators (Base timing and emitter timing) : Astable blocking oscilltors (Diode-controlled and RC controlled), Applications. Sampling Gates : Basic operating priniples of sampling gates, Unidirectional and Bi-directional sampling gates, Reduction of pedestal in gate circuits, Four-diode sampling gates; Applications of sampling gates.

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