F.Y.B.Sc Eletronics COURSE OUTCOMES ELE 111: Analog Electronics I

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F.Y.B.Sc Eletronics COURSE OUTCOMES ELE 111: Analog Electronics I 1. Understand electronic systems with a continuously variable signal 2. Understand proportional relationship between a signal and a voltage or current that represents the signal. 3. To learn function of basic component s use in linear circuits. 4. Understand component symbol, working principle, classification and specification. 5. To learn different theorems for simplification of basic linear electronics circuits. ELE 112 - Digital Electronics I 1. Understand basic digital electronic systems 2. To learn function of basic digital circuits and use of transistors to create logic gates in order to perform Boolean logic. 3. To learn different theorems for simplification of basic Digital electronics circuits. 4. Student understand symbols, Truth tables, Boolean equations, & working principle. ELE 121: Analog Electronics II 1. Understand Basic Circuits using Active Devices 2. Learn function of basic circuit components used in linear circuits. 3. Understand basic construction, equivalent circuits and characteristics of basic electronics devices. 4. Students understand basic linear electronics circuits and their working principle, ELE 122 - Digital Electronics II 1. Understand combinational and logical digital circuits and their differences. 2. Students will be introduced to Flip-flop, shifts register, counters and Semiconductor memory for data Processing circuits. 3. To learn symbol, working principle of basic Digital electronics circuits for data processing application. 4. At the end of this course, students should be able to recognize and analyze the

basic digital circuits. S.Y.B.Sc Eletronics COURSE OUTCOMES ELE 231: Analog Circuits and Applications 1. To understand Basic Analog Circuits and their applications using Active Devices 2. To learn basic function of single stage amplifier, multistage amplifier and power Amplifier and their working principle. 3. To understand basic construction of feedback circuits and their application in Oscillators 4. understand basic amplifier and oscillator circuits and their application in analog circuits. ELE 232: Instrumentation 1. To understand Basic Analog and digital meters for measurement of various electrical parameter. 2. To learn basic test instruments such as power supply,function generator, DFM and CRO and their construction and working principle. 3. To understand basic principle of transducers and their construction, Working principle, classification and application in various fields. 4. Students understand the construction of data convertor circuits and their applications in digital circuits. ELE 241: LINEAR INTEGRATED CIRCUITS & APPLICATIONS 1. To understand Basic differential amplifier and their applications in linear Integrated circuits 2. To learn basic function of operational amplifier, Ideal and practical characteristics and their mathematical application. 3. To understand basic construction of active filters,comparators and their application in electronics. 4. Students understand different types of multivibrator and wave form generator using IC 555.

ELE 242: 8085 Microprocessor 1. To understand the basic architecture of 8- bit microprocessors. 2. Able to write programs on 8085 microprocessor based systems. 3. Identify the addressing modes of an instruction. 4. Develop programming skills in assembly language.

ELE 351: Semiconductor Physics T.Y.B.Sc (Electronics) COURSE OUTCOMES 1. To enrich the understanding of fundamentals of semiconductor devices. 2. To have an awareness of IC fabrication techniques. 1. Understand the fundamental concept of semiconductor like crystal structure, energy band gap, charge carrier statistics. 2. Understand the physics, basic characteristics and operation of semiconductor devices such as p-n junctions and Zener diodes 3. Have knowledge of fabrication technology for semiconductor devices and integrated circuits ELE 361: Electrodynamics 1. To enrich the understanding of fundamentals concepts of electrodynamics and electromagnetics. 2. To have basic knowledge of electromagnetic waves and their propagation. 1. Conceptual understanding of electrostatic law. 2. Conceptual understanding of the electromagnetic laws, set up a model and perform the necessary calculations. 3. Have knowledge of electromagnetic waves and their propagation. ELE 352: Basic Communication Systems 1. To learn the concepts of communication system. 2. To know the various modulations and demodulation techniques. 3. To learn the radio wave propagation 1. Understand the basic concept of communication system. 2. Understand AM, FM and demodulation. 3. Understand antenna and radio wave propagation used in communication system. ELE 362: Advanced Communication Systems 1. To learn the digital communication. 2. To learn the telephony systems 3. To learn the Fiber optic communications. 4. Introduction to computer network and security 1. Understand basic concept of digital communication system. 2. Understand the fiber optic communication. 3. Understand computer network and security.

ELE 353: 8086 Microprocessor 1. To learn the architecture of 8086. 2. To learn the assembly language programming of 16 bit microprocessor. 1. To understand basic architecture of 16 bit microprocessors. 2. Able to write programs on 8086 microprocessor based systems. 3. Illustrate the organization of registers and memory in microprocessors. 4. Differentiate Minimum and Maximum Mode bus cycle. 5. Identify the addressing mode of an instruction. 6. Develop programming skills in assembly language. ELE 363: Microprocessor Interfacing Techniques and Advanced Microprocessors 1. To learn the interfacing of I/O devices with microprocessor. 2. To learn interfacing techniques. 3. Introduction to Advance Microprocessors. 1. Understand interrupt and interrupt service routine. 2. Understand I/O interfacing and techniques. 3. Understand advance microprocessor. ELE 354: The C Programming Language 1. To learn the basics of C programming language 2. Development of programming skill to write simple C programs. 1. Understand basic of the programming language 2. Able to switch any other programming language 3. Able to write C program for simple real life applications using structures. ELE 364: Numerical Simulation in Electronics 1. To learn the different numerical methods. 2. To study application of numerical methods to electronic circuits. 1. Find root of equation by different numerical methods 2. Find out differentiation and integration of equation 3. Solve linear equation system. 4. Simulate electronic circuits numerically. ELE 355: Microcontroller 8051 1. To learn the architecture of 8051 microcontroller. 2. To learn the programming of 8 bit microcontroller 1. Ability to differentiate microprocessor and microcontroller.

2. Describe the architecture of 8051 3. Able to write assembly language program for 8 bit microcontroller ELE 365: Embedded Systems 1. To know about advanced microcontroller programming 2. To learn the 8 bit microcontroller interfacing. 1. to write interfacing programming. 2. to identify embedded systems in various applications. 3. to write advanced microcontroller programming for real life application. ELE 356: Advanced Digital System Design 1. To study the principles required for designing of advanced digital systems. 2. To acquire basic knowledge of Hardware Description Languages (HDL). 3. To know designing of combinational and sequential logic circuits using VHDL. 1. To design advanced digital systems. 2. Understand the Hardware Description Languages (HDL). 3. Design combinational and sequential logic circuits using VHDL. ELE 366: Industrial and Power Electronics 1. To know about power semiconductor devices frequently used in industries. 2. To have an idea about the principle and operation of circuits using power semiconductor devices to control various operations in industries. 3. To acquaint with industrial and domestic applications of power semiconductor 4. devices. 1. Understand power semiconductor devices used in industries. 2. Understand the construction and working of different power semiconductor devices 3. Analyze various triggering circuits used for different semiconductor devices 4. Design power electronic circuit for real time application like rectifier and convertor etc. ---------------------------------------------------------------------------------------------------------------