{"product_id":"9789355855091","title":"BASIC ELECTRONICS K Scheme (II - E\u0026Tc\/ECE\/ELEX. - 312314)","description":"\u003cp\u003eSyllabus \tBasic Electronics - (312314)  Learning Scheme\t    Credits\tAssessment Scheme Actual Contact Hrs.\/Week\t   SLH\t   NLH\t\t  Paper Duration\t  Theory\t Based on LL \u0026amp; TL\t Based on SL\t Total Marks  CL\t TL\t LL\t\t\t\t\t\tPractical\t\t \t\t\t\t\t\t\tFA-TH\tSA-TH\t Total\tFA-PR\tSA-PR\tSLA\t \t\t\t\t\t\t\tMax\tMax\tMax\tMin\tMax\tMin\tMax\tMin\tMax\tMin\t 4\t-\t4\t-\t8\t4\t3\t30\t70\t100\t40\t50\t20\t25\t10\t-\t-\t175  Sr. No.\tTheory Learning Outcomes(TLO's) aligned to CO's.\tLearning content mapped with Theory Learning Outcomes (TLO's) and CO's. 1.\tTLO 1.1\tDescribe working principle, characteristics, and application of the given type of diode. TLO 1.2\tDescribe the working of  given type of rectifier. TLO 1.3\tCalculate ripple factor, PIV and efficiency of the given type of filter. TLO 1.4\tDescribe the need and working of rectifier filter circuit.  \tUnit - I Applications of Diode 1.1 \tDifferent types of diodes and their materials : Construction, Symbol, working principle, applications, Forward and reverse biasing and     V - I characteristics of following diodes : P-N junction diode, Zener diode, LED, Photo diode, Schottky diode. 1.2 \tDiode as rectifier : Types of Rectifiers, Half wave, Full wave (bridge rectifier and center tapped), circuit operation, Input - output waveform for voltage and current, Parameters of rectifier : Average DC value, value of current and voltage, ripple factor, ripple frequency, PIV of diode, TUF, efficiency of rectifier. 1.3 \tTypes of Filters : Shunt capacitor, Series inductor, LC and CLC filter. 1.4 \tRectifier IC - KBU 808 IC pin diagram and application.  (Chapter - 1) 2.\tTLO 2.1\tDescribe the working principle of the given type of transistor. TLO 2.2\tCalculate current gain for given configuration of BJT. TLO 2.3\tCompare configuration of transistors. TLO 2.4\tJustify the need of biasing method. TLO 2.5\tDescribe the procedure to minimize the thermal runaway effect.  \tUnit - II Bipolar Junction Transistor 2.1 \tCurrent operating device. 2.2 \tDifferent types of transistors : PNP, NPN. 2.3 \tTransistor configurations : CB, CE, CC Transistor characteristics (input and output) in different transistor configuration. Relation between alpha, beta, gama. Comparison between CB, CC and CE. 2.4 \tBJT biasing : Need of DC load Line, Operating point, stabilization, thermal runaway, heat sink. Types of biasing : Fixed biasing, base bias with emitter feedback, voltage divider. (Chapter - 2)    3.\tTLO 3.1 \tExplain with sketches the working principle of the given type of amplifier. TLO 3.2 \tDescribe working of Single Stage Transistor Amplifier. TLO 3.3 \tCalculate  Voltage gain and bandwidth. TLO 3.4 \tDescribe working of Multistage amplifiers. TLO 3.5 \tDescribe working of BJT as a Switch.\tUnit - III BJT Amplifiers 3.1 \tClassification of amplifier, BJT as an amplifier. 3.2 \tSingle Stage Amplifier : Working , various currents(Ib, Ic,Ie), Voltage gain of CE amplifier (no derivations required), Frequency response of CE amplifier. Simple numericals. 3.3 \tMultistage amplifiers : General Multistage BJT based amplifiers. 3.4 \tTypes of BJT amplifier coupling : Circuit diagram, operation frequency response and applications of Direct coupled, RC coupled and transformer coupled. 3.5 \tBJT as a Switch. (Chapter - 3)  4.\tTLO 4.1\tExplain the working of given type of FET. TLO 4.2\tExplain the given type of FET biasing method. TLO 4.3\tDescribe working of FET Amplifier. TLO 4.4\tExplain working of given type of MOSFET. TLO 4.5\tDifferentiate working principle of FET and MOSFET on the basis of the given characteristics of curve. \tUnit - IV Field Effect Transistor 4.1 \tVoltage operating device, Construction of JFET (N-channel and        P- channel), symbol, working principle and characteristics (Drain and Transfer characteristics) ,different parameters of FET . FET applications. 4.2 \tFET Biasing : Source self-bias, drain to source bias. 4.3 \tCommon source FET amplifier. 4.4 \tMOSFET : Construction, working principle and characteristics of Enhancement and depletion MOSFET, MOSFET handling.  (Chapter - 4)  5.\tTLO 5.1\tDescribe the working of the DC regulated power supply. TLO 5.2\tCalculate output voltage of the given Zener voltage regulator circuit. TLO 5.3\tDescribe the working of 78XX and 79XX fixed voltage IC Regulator. TLO 5.4\tDescribe the working of IC 723 as Low and High voltage regulator. TLO 5.5\tExplain block diagram of Switch Mode Power supply. \tUnit - V Regulators and Power supply 5.1 \tNeed of Regulated power supply . Basic block diagram of DC regulated power supply and function of each block 5.2 \tLoad and Line regulation. 5.3 \tZener diode voltage regulator. 5.4 \tFixed voltage IC Regulator : Three terminal Pin diagram, working and application of 78XX and 79XX series. 5.5 \tVariable voltage IC Regulator : IC 723 pin diagram, block diagram, working. Low voltage regulator, High voltage regulator. 5.6 \tSwitch Mode Power supply : Need of SMPS , block diagram and functions of blocks. (Chapter - 5)\u003c\/p\u003e","brand":"Technical Publications","offers":[{"title":"Default Title","offer_id":48024571347236,"sku":"9789355855091","price":168.0,"currency_code":"INR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0671\/3661\/8788\/files\/9789355855091_1.jpg?v=1707204598","url":"https:\/\/bookstation.in\/products\/9789355855091","provider":"BookStation","version":"1.0","type":"link"}