{"id":25548,"date":"2020-07-23T16:28:02","date_gmt":"2020-07-23T16:28:02","guid":{"rendered":"https:\/\/www.inspirenignite.com\/jntuh\/18ec303c-electronic-devices-circuits-syllabus-for-electronics-communication-engineering-3rd-sem-c18-curriculum-tssbtet\/"},"modified":"2020-07-23T16:28:02","modified_gmt":"2020-07-23T16:28:02","slug":"18ec303c-electronic-devices-circuits-syllabus-for-electronics-communication-engineering-3rd-sem-c18-curriculum-tssbtet","status":"publish","type":"post","link":"https:\/\/www.inspirenignite.com\/jntuh\/18ec303c-electronic-devices-circuits-syllabus-for-electronics-communication-engineering-3rd-sem-c18-curriculum-tssbtet\/","title":{"rendered":"18EC-303C: Electronic Devices &amp; Circuits Syllabus for Electronics &amp; Communication Engineering 3rd Sem C18 Curriculum TSSBTET"},"content":{"rendered":"<p align=\"justify\">Electronic Devices &amp; Circuits detailed Syllabus for Electronics &amp; Communication Engineering (DECE), C18 curriculum has been taken from the <a href=\"https:\/\/www.sbtet.telangana.gov.in\/\" style=\"color: inherit\" target=\"_blank\" rel=\"noopener\">TSSBTET<\/a> official website and presented for the diploma students. For Course Code, Course Name, Lectures, Tutorial, Practical\/Drawing, Internal Marks, Max Marks, Total Marks, Min Marks and other information, do visit full semester subjects post given below. <\/p>\n<p align=\"justify\">For all other Diploma in Electronics &amp; Communication Engineering (DECE) Syllabus for 3rd Sem C18 Curriculum TSSBTET, do visit <a href=\"..\/electronics-communication-engineering-dece-syllabus-for-3rd-sem-c18-curriculum-tssbtet\">Diploma in Electronics &amp; Communication Engineering (DECE) Syllabus for 3rd Sem C18 Curriculum TSSBTET Subjects<\/a>. The detailed Syllabus for electronic devices &amp; circuits is as follows.  <\/p>\n<h4>Prerequisites:<\/h4>\n<p id=\"istudy\" style=\"text-align:center\">For the complete Syllabus, results, class timetable, and many other features kindly download the <a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy\" target=\"_blank\" rel=\"noopener\">iStudy App<\/a><br \/><b> It is a lightweight, easy to use, no images, and no pdfs platform to make students&#8217;s lives easier.<\/b><br \/><a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy&amp;pcampaignid=pcampaignidMKT-Other-global-all-co-prtnr-py-PartBadge-Mar2515-1\" target=\"_blank\" rel=\"noopener\"><img decoding=\"async\" src=\"https:\/\/play.google.com\/intl\/en_us\/badges\/static\/images\/badges\/en_badge_web_generic.png\" alt=\"Get it on Google Play\" style=\"height:65px\"><\/a>.  <\/p>\n<h4>Course Outcome:<\/h4>\n<p>  Upon completion of the course, the student should be able to<\/p>\n<ol>\n<li>Measure different parameters of a transistor amplifier using small signal model<\/li>\n<li>Construct multi stage and feedback amplifiers using Transistors<\/li>\n<li>Construct tuned amplifiers and power amplifiers using Transistors<\/li>\n<li>Construct various oscillators using Transistors<\/li>\n<li>Develop various applications using special semiconductor devices<\/li>\n<li>Design wave shaping circuits using Diodes<\/li>\n<\/ol>\n<h4>Unit1-Small Signal Amplifiers:<\/h4>\n<p>  Basic CE amplifier:- Different parameters of a Transistor amplifier- h-parameter model of CE, CB and CC configuration- Conversion of h-parameters from CE into CB and CC configuration- simple problems- CS FET amplifier<\/p>\n<h4>Unit -2: Multistage and Feedback Amplifiers<\/h4>\n<p id=\"istudy\" style=\"text-align:center\">For the complete Syllabus, results, class timetable, and many other features kindly download the <a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy\" target=\"_blank\" rel=\"noopener\">iStudy App<\/a><br \/><b> It is a lightweight, easy to use, no images, and no pdfs platform to make students&#8217;s lives easier.<\/b><br \/><a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy&amp;pcampaignid=pcampaignidMKT-Other-global-all-co-prtnr-py-PartBadge-Mar2515-1\" target=\"_blank\" rel=\"noopener\"><img decoding=\"async\" src=\"https:\/\/play.google.com\/intl\/en_us\/badges\/static\/images\/badges\/en_badge_web_generic.png\" alt=\"Get it on Google Play\" style=\"height:65px\"><\/a>.  <\/p>\n<h4>Unit 3 -Tuned and Power Amplifiers<\/h4>\n<p>  Voltage and Power Amplifier:- Difference between Voltage and Power amplifiers- Classification of power amplifiers- Class A single ended- Push-pull amplifier circuit- Effect of distortion in amplifiers- Choice of Class A , Class B Class AB Amplifier and Class C Amplifiers- Applications of Class C Amplifiers &#8211; Efficiencies of different types of power amplifiers(A,B, AB &amp; C)<\/p>\n<h4>Unit -4:Oscillators<\/h4>\n<p>  Oscillators: Barkhausen criteria in oscillators- Oscillator circuits- Hartley oscillator- Colpitts oscillator- Crystal Oscillator- Expressions for frequency of oscillation and condition for sustained oscillations of the above circuits- Reasons for instability in oscillator circuits- Remedies for instability in oscillators- Advantages of crystal oscillators- Merits and demerits of RC and LC oscillators.<\/p>\n<h4>Unit 5- Special Semiconductor Devices<\/h4>\n<p id=\"istudy\" style=\"text-align:center\">For the complete Syllabus, results, class timetable, and many other features kindly download the <a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy\" target=\"_blank\" rel=\"noopener\">iStudy App<\/a><br \/><b> It is a lightweight, easy to use, no images, and no pdfs platform to make students&#8217;s lives easier.<\/b><br \/><a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy&amp;pcampaignid=pcampaignidMKT-Other-global-all-co-prtnr-py-PartBadge-Mar2515-1\" target=\"_blank\" rel=\"noopener\"><img decoding=\"async\" src=\"https:\/\/play.google.com\/intl\/en_us\/badges\/static\/images\/badges\/en_badge_web_generic.png\" alt=\"Get it on Google Play\" style=\"height:65px\"><\/a>.  <\/p>\n<h4>Unit- 6: Wave Shaping Circuits<\/h4>\n<p>  Clippers: Design of simple clippers- Clamper circuits &#8211; Applications of clippers and clampers-Sweep Voltage generators, Applications of Voltage and current Time base circuits Suggested Learning Outcomes: After completing this course the student will be able to<\/p>\n<p><strong>Explain the Working of Small Signal Amplifiers<\/strong>\n  <\/p>\n<ul>\n<li>Explain the working of basic amplifier circuit using BJT in CE mode.<\/li>\n<li>Define the terms Av, Ai, Zi and Zo of an amplifier<\/li>\n<li>Define frequency response and bandwidth of an amplifier<\/li>\n<li>Explain the concept of Gain-Bandwidth product<\/li>\n<li>Define h-parameters of a transistor<\/li>\n<li>Draw the h-parameter model for CE, CB and CC Configuration<\/li>\n<li>Derive expressions for Av, Ai, Zi and Zo using h-parameter model for CE configuration<\/li>\n<li>Obtain h-parameters of CB and CC from CE parameters<\/li>\n<li>Solve simple problems related to Av, Ai, Zi, Zo and Gain &#8211; bandwidth product<\/li>\n<li>Draw the circuit of CS FET amplifier<\/li>\n<li>Explain CS FET amplifier operation<\/li>\n<li>Draw the JFET as current source circuit<\/li>\n<li>Explain the use of JFET as current source<\/li>\n<\/ul>\n<p><strong>Explain the Working of Multi-Stage and Feedback Amplifiers<\/strong>\n  <\/p>\n<ul>\n<li>Classify amplifiers based on coupling, feedback and frequency<\/li>\n<li>State the need for multi-stage amplifiers<\/li>\n<li>Define gain, frequency response and bandwidth of multi-stage amplifier<\/li>\n<li>Give the expressions for gain, frequency response and bandwidth of multi-stage amplifier<\/li>\n<li>Solve simple problems on overall gain, overall frequency response and overall bandwidth of multi-stage amplifiers<\/li>\n<li>Draw 2-stage RC coupled amplifier circuit.<\/li>\n<li>Explain the operation of 2-stage RC coupled amplifier.<\/li>\n<li>Explain the frequency response of the above circuit.<\/li>\n<li>Draw 2-stage Transformer coupled amplifier circuit.<\/li>\n<li>Explain the operation of 2-stage Transformer coupled amplifier<\/li>\n<li>Explain the frequency response of the above circuit.<\/li>\n<li>Draw 2-stage Direct coupled amplifier circuit.<\/li>\n<li>Explain the operation of 2-stage Direct coupled amplifier<\/li>\n<li>Draw Darlington pair circuit.<\/li>\n<li>Explain the operation of Darlington pair circuit.<\/li>\n<li>Give the expression for current gain of Darlington pair circuit<\/li>\n<li>Explain high current gain amplifier using Darlington pair<\/li>\n<li>Draw Cascode amplifer.<\/li>\n<li>Explain Cascode amplifer.<\/li>\n<li>Draw the basic block diagram of a feedback amplifier.<\/li>\n<li>Derive the expression for gain in a feedback amplifier.<\/li>\n<li>Compare negative and positive feedback.<\/li>\n<li>Draw the block diagram of voltage series feedback amplifier.<\/li>\n<li>Draw the block diagram of voltage shunt feedback amplifier<\/li>\n<li>Draw the block diagram of current series feedback amplifier<\/li>\n<li>Draw the block diagram of current shunt feedback amplifier<\/li>\n<li>State the effect of negative feedback on gain<\/li>\n<li>State the effect of negative feedback on bandwidth<\/li>\n<li>State the effect of negative feedback on input impedance<\/li>\n<li>State the effect of negative feedback on output impedance<\/li>\n<li>List the advantages of negative feedback amplifiers.<\/li>\n<li>Solve simple problems on effect of negative feedback on gain, bandwidth, Zi and Zo<\/li>\n<\/ul>\n<p><strong>Explain the Working of Power Amplifiers and Tuned Amplifiers<\/strong>\n  <\/p>\n<ul>\n<li>State the need for a power amplifier.<\/li>\n<li>Distinguish between voltage and power amplifiers.<\/li>\n<li>Classify power amplifier based on conduction.<\/li>\n<li>Define Conversion efficiency<\/li>\n<li>Define distortion in power amplifier<\/li>\n<li>Draw the circuit of class A amplifier with resistor load.<\/li>\n<li>Explain operation of class A amplifier with resistive load<\/li>\n<li>Derive the expression for efficiency of the above circuit.<\/li>\n<li>Draw the circuit of class A amplifier with transformer load.<\/li>\n<li>Explain the operation of class A amplifier with transformer load.<\/li>\n<li>Derive the expression for efficiency of the above circuit.<\/li>\n<li>Draw the circuit of class-B push-pull amplifier.<\/li>\n<li>Explain the operation of class-B push-pull amplifier<\/li>\n<li>Derive the expression for efficiency of class-B push-pull amplifier.<\/li>\n<li>List the advantages &amp; disadvantages of push-pull amplifier.<\/li>\n<li>Draw the circuit of complementary symmetry push-pull amplifier.<\/li>\n<li>Explain the operation of complementary symmetry push-pull amplifier<\/li>\n<li>List the conditions to avoid thermal runaway in a power transistor<\/li>\n<li>State the necessity of heat sink for a power transistor.<\/li>\n<li>List different types of heat sinks and mounting methods.<\/li>\n<li>Classify tuned amplifiers.<\/li>\n<li>Draw single tuned amplifier circuit.<\/li>\n<li>Explain the operation of single tuned amplifier circuit<\/li>\n<li>Draw double tuned amplifier circuit<\/li>\n<li>Explain the operation of double tuned amplifier circuit<\/li>\n<li>Draw class C tuned amplifier circuit.<\/li>\n<li>Explain class C tuned amplifier circuit with waveforms<\/li>\n<li>List applications of tuned circuits<\/li>\n<\/ul>\n<p><strong>Explain the Working of Oscillators<\/strong>\n  <\/p>\n<ul>\n<li>State the condition for an amplifier to work as oscillator.<\/li>\n<li>Mention the requisites of an oscillator.<\/li>\n<li>State Barkhausen criteria in oscillators.<\/li>\n<li>Classify oscillator circuits.<\/li>\n<li>Draw the Hartely oscillator circuit.<\/li>\n<li>Explain the working of Hartely oscillator circuit<\/li>\n<li>Mention the condition for sustained oscillations in Hartley Oscillator<\/li>\n<li>Give the expression for frequency of oscillations in Hartley Oscillator<\/li>\n<li>Draw the Colpitts oscillator circuit.<\/li>\n<li>Explain the working of Colpitts oscillator circuit<\/li>\n<li>Mention the condition for sustained oscillations in Colpitts Oscillator<\/li>\n<li>Give the expression for frequency of oscillations in Colpitts Oscillator<\/li>\n<li>Draw the equivalent circuit of crystal and explain.<\/li>\n<li>Draw the transistor crystal oscillator circuit.<\/li>\n<li>Explain the working of transistor crystal oscillator circuit<\/li>\n<li>List the advantages of crystal oscillator<\/li>\n<li>State the reasons for instability in oscillator.<\/li>\n<li>Mention the remedies to avoid instability in oscillators.<\/li>\n<li>Compare the LC and RC oscillators<\/li>\n<\/ul>\n<p><strong>Explain the Working of Special Semiconductor Devices<\/strong>\n  <\/p>\n<ul>\n<li>Explain the working principle of varactor diode.<\/li>\n<li>Draw the characteristics of Varactor Diode.<\/li>\n<li>Explain the working principle of UJT with its equivalent circuit<\/li>\n<li>Draw UJT characteristics.<\/li>\n<li>Explain UJT characteristics.<\/li>\n<li>List the application of varactor diode<\/li>\n<li>List applications of UJT.<\/li>\n<li>Explain constructional details of photo diode.<\/li>\n<li>Draw the characteristics of photo diode.<\/li>\n<li>Explain operation of photo diode.<\/li>\n<li>Explain constructional details of photo transistor.<\/li>\n<li>Draw the characteristics of photo transistor.<\/li>\n<li>Explain operation of photo transistor.<\/li>\n<li>Explain the principle of photovoltaic cell.<\/li>\n<li>Explain the working principle of LCD<\/li>\n<li>Mention the types of LCD displays<\/li>\n<li>Give constructional details of LCD<\/li>\n<li>List the merits and demerits of LCD Displays<\/li>\n<li>List the applications of LCD<\/li>\n<\/ul>\n<p><strong>Wave Shaping Circuits<\/strong>\n  <\/p>\n<ul>\n<li>List the different types of clippers.<\/li>\n<li>Explain the unbiased and biased clippers with waveforms<\/li>\n<li>Explain the double ended clipper with waveforms<\/li>\n<li>Draw the output waveforms of a given clipper circuit for sinusoidal\/square input<\/li>\n<li>Draw the clipper circuits for a given input and output waveforms<\/li>\n<li>Explain the principle of clamper circuit with waveforms<\/li>\n<li>Mention the applications of clippers and clampers<\/li>\n<li>Design simple clippers and clampers for a given input and output waveform<\/li>\n<li>Define Sweep Voltage.<\/li>\n<li>State the fundamental consideration of sweep waveform.<\/li>\n<li>Distinguish between voltage and current time-base generation<\/li>\n<li>List errors in sweep signal<\/li>\n<li>Draw simple voltage time base generator<\/li>\n<li>Explain the operation of voltage time base generator<\/li>\n<li>Draw simple current time base generator<\/li>\n<li>Explain the operation of current time base generator<\/li>\n<li>Draw the Bootstrap sweep circuit<\/li>\n<li>Explain the operation of Bootstrap sweep circuit<\/li>\n<li>Draw the Miller sweep circuit<\/li>\n<li>Explain the operation of Miller sweep circuit<\/li>\n<li>List the applications of Voltage and current Time base circuits.<\/li>\n<\/ul>\n<h4>Recommended Books<\/h4>\n<ol>\n<li>Basic Electrical Engineering Volume 1 by PS Dhogal , TMH<\/li>\n<li>Electronic devices and applications by B. Somanathan Nair, PHI.<\/li>\n<li>Understanding Electronics Components by Filipovic D. Miomir. Mikroe online Edition<\/li>\n<li>Electronic Devices and Circuits by David A.Bell Prentice hall<\/li>\n<\/ol>\n<h4>Suggested Student Activities:<\/h4>\n<p id=\"istudy\" style=\"text-align:center\">For the complete Syllabus, results, class timetable, and many other features kindly download the <a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy\" target=\"_blank\" rel=\"noopener\">iStudy App<\/a><br \/><b> It is a lightweight, easy to use, no images, and no pdfs platform to make students&#8217;s lives easier.<\/b><br \/><a href=\"https:\/\/play.google.com\/store\/apps\/details?id=ini.istudy&amp;pcampaignid=pcampaignidMKT-Other-global-all-co-prtnr-py-PartBadge-Mar2515-1\" target=\"_blank\" rel=\"noopener\"><img decoding=\"async\" src=\"https:\/\/play.google.com\/intl\/en_us\/badges\/static\/images\/badges\/en_badge_web_generic.png\" alt=\"Get it on Google Play\" style=\"height:65px\"><\/a>.  <\/p>\n<h4>E-Links:<\/h4>\n<ol>\n<li>http:\/\/electrical4u.com\/<\/li>\n<li>www.electronics-tutorials.ws<\/li>\n<li>www.nptel.ac.in<\/li>\n<\/ol>\n<h4>Course Outcome:<\/h4>\n<ol>\n<li>Construct small signal model of a transistor amplifier and analyze different parameters<\/li>\n<li>Apply the basic knowledge of transistor amplifiers and Understand and analyze the working of multi stage and feedback amplifiers and be able to select for proper application<\/li>\n<li>Apply the basic knowledge of transistor amplifiers and Understand and analyze the working of tuned and power amplifiers and be able to select for proper application<\/li>\n<li>Explain the working of oscillators and be able to select the proper oscillator for the application<\/li>\n<li>Understand the different special semiconductor devices and be able to select for required application<\/li>\n<li>Apply the knowledge of diodes and transistors in designing, constructing regulators and wave shaping circuits<\/li>\n<\/ol>\n<p align=\"justify\">For detail Syllabus of all other subjects of Electronics &amp; Communication Engineering, C18 curriculum do visit <a href=\"..\/category\/dece+3rd-sem\">Diploma In Electronics &amp; Communication Engineering 3rd Sem Syllabus for C18 curriculum<\/a>.<\/p>\n<p align=\"justify\">For all Electronics &amp; Communication Engineering results, visit <a href=\"https:\/\/www.inspirenignite.com\/jntuh\/ts-sbtet-diploma-result-nov-2019-declare\/\">TSSBTET DECE all semester results<\/a> direct links.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Electronic Devices &amp; Circuits detailed Syllabus for Electronics &amp; Communication Engineering (DECE), C18 curriculum has been taken from the TSSBTET official website and presented for the diploma students. For Course [&hellip;]<\/p>\n","protected":false},"author":2344,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_bbp_topic_count":0,"_bbp_reply_count":0,"_bbp_total_topic_count":0,"_bbp_total_reply_count":0,"_bbp_voice_count":0,"_bbp_anonymous_reply_count":0,"_bbp_topic_count_hidden":0,"_bbp_reply_count_hidden":0,"_bbp_forum_subforum_count":0,"footnotes":""},"categories":[128,136],"tags":[],"class_list":["post-25548","post","type-post","status-publish","format-standard","hentry","category-3rd-sem","category-dece"],"_links":{"self":[{"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/posts\/25548","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/users\/2344"}],"replies":[{"embeddable":true,"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/comments?post=25548"}],"version-history":[{"count":0,"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/posts\/25548\/revisions"}],"wp:attachment":[{"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/media?parent=25548"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/categories?post=25548"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.inspirenignite.com\/jntuh\/wp-json\/wp\/v2\/tags?post=25548"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}