Program Educational Objectives (PEOs)
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1
Graduates have profound knowledge in the field of electronics and communication engineering and have successful career in industry or by pursuing higher education and research or by becoming as an entrepreneur.
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2
Graduates demonstrate their technical competency and problem-solving skills in developing innovative, economic and environmentally feasible engineering solutions for multi-disciplinary applications and societal needs.
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3
Graduates possess leadership qualities and ethical attitude to work efficiently with diverse teams, adapt to recent technology trends by engaging in lifelong learning and participating in research and development.
Program Outcomes
PO-1 | Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and engineering specialization to the solution of complex engineering problems. |
PO-2 | Problem analysis: Identify, formulate, research literature, and analyze engineering problems to arrive at substantiated conclusions using first principles of mathematics, natural, and engineering sciences. |
PO-3 | Design/development of solutions: Design solutions for complex engineering problems and design system components, processes to meet the specifications with consideration for the public health and safety, and the cultural, societal, and environmental considerations. |
PO-4 | Conduct investigations of complex problems: Use research-based knowledge including design of experiments, analysis and interpretation of data, and synthesis of the information to provide valid conclusions. |
PO-5 | Modern tool usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modeling to complex engineering activities with an understanding of the limitations. |
PO-6 | The engineer and society: Apply reasoning informed by the contextual knowledge to assess societal, health, safety, legal, and cultural issues and the consequent responsibilities relevant to the professional engineering practice. |
PO-7 | Environment and sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development. |
PO-8 | Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice. |
PO-9 | Individual and team work: Function effectively as an individual, and as a member or leader in teams, and in multidisciplinary settings. |
PO-10 | Communication: Communicate effectively with the engineering community and with society at large. Be able to comprehend and write effective reports documentation. Make effective presentations, and give and receive clear instructions. |
PO-11 | Project management and finance: Demonstrate knowledge and understanding of engineering and management principles and apply these to one’s own work, as a member and leader in a team. Manage projects in multidisciplinary environments. |
PO-12 | Life-long learning: Recognize the need for, and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological change. |
Program Specific Outcomes (PSOs)
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1
Ability to apply the basic and fundamental knowledge to identify, formulate and solve real-time problems in the field of electronics and communication engineering.
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2
Ability to comprehend and demonstrate the technical competency in the usage of modern software/hardware tools to design, analyze, synthesis and validation of components, subsystems and processes in VLSI, Signal Processing and Embedded control Systems.
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3
Ability to apply domain knowledge to carry out innovative projects with ethical and professional constraints leading to a successful career.
COURSE OUTCOME STATEMENTS
| Course Code & Name | Course Outcome No. |
Course Outcomes |
| SEMESTER – I | ||
| After completion of the course, the students will be able to | ||
HS3152 & Professional English – I | 1 | Describe the different modes of communication. |
| 2 | Describe narrative and summative techniques in communication | |
| 3 | Express a product or process description using effective lexical components | |
| 4 | Describe elements for expressing the verbal and non-verbal communication | |
| 5 | Express effectively both oral and written medium of communication | |
MA3151 Matrices and Calculus | 1 | Apply the matrices algebra method for finding higher powers, inverse of the matrices and eigen valves. |
| 2 | Apply limits and differential calculus rules to solve maxima and minima problems. | |
| 3 | Apply partial differentiation techniques into maxima and minima functions of two or more variables. | |
4 | Apply the proper techniques of integration to solve engineering problems. | |
| 5 | Apply multiple integral in area and volume for solving the real-life problem. | |
PH3151 Engineering Physics | 1 | Discuss multiparticle dynamics and rotation of rigid bodies. |
| 2 | Explore the properties, energy and momentum of EM waves | |
3 | Explain the working principle and properties of oscillations, optics and lasers. | |
| 4 | Explain the important concepts and salient features of quantum mechanics | |
| 5 | Describe quantum mechanics through Oscillator, Tunneling and the formation of energy bands. | |
CY3151 Engineering Chemistry | 1 | Infer the quality of water from quality parameter data and propose suitable treatment methodologies to treat water. |
| 2 | Explain the synthesis process, characterization and the applications of nanomaterials in advanced engineering and technology. | |
| 3 | Identify the phase transitions of one and two component systems for alloys and their application in engineering fields | |
| 4 | Identify of suitable fuels for engineering processes and their applications | |
| 5 | Recognize different forms of energy resources and apply them for suitable applications in energy sectors. | |
GE3151 Problem Solving and Python Programming | 1 | Develop algorithmic solutions to simple computational problems. |
| 2 | Develop and execute simple Python programs. | |
| 3 | Write simple Python programs using conditionals, loopings and functions for solving Problems. | |
| 4 | Represent compound data using pythonlists,tuples,dictionaries etc. | |
| 5 | Develop and execute Python programs to read and write data from/to files. | |
GE3152 தமிழர் மரபு /Heritage of Tamils | 1 | Explain the origin, antiquity, and analyze the evolution of Tamil language and culture through literary and archaeological sources. |
| 2 | Identify and appreciate the uniqueness of Tamil literature, art, and architecture that reflect Tamil heritage. | |
| 3 | Interpret the ancient arts and sports through tamil literature | |
| 4 | Evaluate the contributions of Tamil scholars, rulers, and reformers who shaped Tamil civilization and influenced world culture. | |
| 5 | Assess the relevance of Tamil heritage in promoting cultural harmony, environmental awareness, and sustainable living | |
GE3171 Problem Solving and Python Programming Laboratory | 1 | Develop algorithmic solutions to simple computational problems. |
| 2 | Develop and execute simple Python programs. | |
| 3 | Implement programs in Python using conditionals and loops for solving problems. | |
| 4 | Implement Python programs using functions and process compound data using Python data structures. | |
| 5 | Develop software applications utilizing Python packages. | |
BS3171 Physics and Chemistry Laboratory |
1 | Demonstrate the basic concept like torque and elasticity and bending moment of beams for various engineering application by the determination of rigidity modulus of the wire and young’s modulus of the material of the beam by uniform and non-uniform bending. |
2 | Determine the thickness of the thin material, Wavelength and Velocity of sound and Compressibility of Liquids by Air wedge, LASER and Ultrasonic Interferometer. | |
3 | Determine the alkalinity, hardness, chloride & DO content in water sample by EDTA, Mohr’s and Winkler’s methods. | |
| 4 | Determine the strength of weak and strong acids using pH meter and conductometer | |
5 | Demonstrate the estimation of iron content in the sample by potentiometer | |
GE3172 English Laboratory | 1 | Build language fluency in situation and contexts |
2 | Demonstrate formal informal contexts in the communication strategies | |
3 | Interpret opinions effectively in both oral and written medium of communication | |
| 4 | Summarize key points in audio and video lectures | |
| 5 | Express opinions related to different situations and contexts | |
| SEMESTER – II | ||
HS3252 Professional English – II | 1 | Compare and contrast products and ideas in technical texts |
| 2 | Identify cause and effects in events, industrial processes through technical texts | |
| 3 | Suggest solution to the problems in argumentative situations through oral and writing | |
| 4 | Build reading proficiency for writing scientific and technical reports | |
| 5 | Construct sentences successfully for effective writing of job and internship applications | |
MA3251 Statistics and Numerical Methods | 1 | Analyze the null hypothesis for large and small number of samples. |
| 2 | Apply hypothesis testing in design of experiments. | |
| 3 | Solve root finding problems and eigen value problems using several methods. | |
| 4 | Apply numerical techniques of differentiation and integration in solving engineering problems. | |
| 5 | Solve ordinary differential equations problems using various methods. | |
| Course Code & Name | Course Outcome No. |
Course Outcomes | |||
PH3254 Physics for Electronics Engineering | 1 | Explain the characteristics of unit cell for various crystal structures and imperfection occurred in crystals. | |||
| 2 | Summarize the electrical and magnetic properties of materials used in engineering devices. | ||||
| 3 | Explain the fundamentals and functions of semiconductor physics used in semiconductor electronic devices. | ||||
| 4 | Identify the properties and working principles of optical materials in optoelectronic devices. | ||||
| 5 | Express the significance of nano structured materials for the applications of engineering devices. | ||||
BE3254 Electrical and Instrumentation Engineering | 1 | Describe the construction, types and working principle of transformer. | |||
| 2 | Illustrate the construction, working principle and output characteristics of different types of DC electrical machines. | ||||
| 3 | Select the appropriate electrical machines for various applications. | ||||
| 4 | Illustrate the types and operating principles of measuring instruments. | ||||
| 5 | Describe the basic power system structure and protection schemes. | ||||
GE3251 Engineering Graphics | 1 | Sketch the different conics and engineering curves. | |||
| 2 | Project points, lines and plane surfaces in first quadrant. | ||||
| 3 | Draw the projection of solid and perform free hand orthographic sketching of simple objects. | ||||
| 4 | Develop the projections of section of solids and development of surfaces. | ||||
| 5 | Draw the isometric and perspective projections of simple solids. | ||||
EC3251 Circuit Analysis | 1 | Apply the basic concepts of circuit analysis such as Kirchoff’s laws, mesh current and node voltage method for analysis of DC and AC circuits. | |||
| 2 | Apply suitable network theorems and analyze AC and DC circuits. Analyze steady state response of any R, L and C circuits. | ||||
| 3 | Analyze the transient response for any RC, RL and RLC circuits and frequency response of parallel and series resonance circuits. | ||||
| 4 | Analyze the coupled circuits and network topologies. | ||||
| 5 | Apply the basic concepts of circuit analysis such as Kirchoff’s laws, mesh current and node voltage method for analysis of DC and AC circuits. | ||||
GE3252 தமிழரும் தொழில்நுட்பமும் /Tamils and Technology
| 1 | Elaborate the Technology of Weaving and Ceramic | |||
| 2 | Describe the designs and structural construction of Houses | ||||
| 3 | Explain the art of ship building metallurgical Studies | ||||
| 4 | Discuss the Dams, Tanks, Ponds of Sangam period & knowledge of Sea | ||||
| 5 | Explain the Development of scientific Tamil & Tamil Software’s | ||||
GE3271 Engineering Practices Laboratory | 1 | Draw pipe line plan; lay and connect various pipe fittings used in common household plumbing work; Saw; plan; make joints in wood materials used in common household wood work. | |||
| 2 | Wire various electrical joints in common household electrical wire work. | ||||
| 3 | Weld various joints in steel plates using arc welding work; Machine various simple processes like turning, drilling, tapping in parts. | ||||
| 4 | Assemble simple mechanical assembly of common household equipments; Make a tray out of metal sheet using sheet metal work. | ||||
| 5 | Solder and test simple electronic circuits; Assemble and test simple electronic components on PCD | ||||
EC3271 Circuits Analysis Laboratory | 1 | Apply DFT for the analysis of digital signals and systems. | |||
| 2 | Design of Infinite Impulse Response filters for digital system. | ||||
| 3 | Design Finite Impulse Response filters for digital system. | ||||
| 4 | Implement the effects of finite-precision representation on digital filters | ||||
| 5 | Demonstrate the applications of DSP in multirate signal processing and adaptive filters | ||||
GE3272 Communication Laboratory/ Foreign Language | 1 | Infer workplace situations and communicate effectively through speaking and E-mail writing | |||
| 2 | Enhance communication skills using common technological terms | ||||
| 3 | Improve speaking ability to communicate effectively in varied formal and informal contexts | ||||
| 4 | Classify main and sub-ordinate ideas in technical writing | ||||
| 5 | Infer ideas in effective writing recommendations and job winning applications | ||||
| SEMESTER – III | |||||
MA3355 Random Processes and Linear Algebra | 1 | Apply the fundamental concepts of probability with a thorough knowledge of standard distributions that can describe uncertainty. | |||
| 2 | Identify the basic concepts of one- and two-dimensional random variables and apply them to model engineering problems. | ||||
| 3 | Apply the concept of random processes in engineering disciplines. | ||||
| 4 | Utilize the fundamental concepts of advanced algebra and their role in modern mathematics. | ||||
| 5 | Apply the accurate and efficient use of advanced algebraic techniques. | ||||
CS3353 C Programming and Data Structures | 1 | Develop C program for any real world/technical application | |||
| 2 | Apply advanced features of C in solving problems | ||||
| 3 | Develop C program to implement linear and non-linear data structure operations | ||||
| 4 | Suggest and use appropriate linear and non-linear data structure operations for solving a given problem | ||||
| 5 | Apply sort and search algorithm for a given application | ||||
EC3354 Signals and Systems | 1 | Apply the properties of signals& systems. | |||
| 2 | Determine Fourier series, Laplace transform and Fourier transform for the LTI Continuous time systems | ||||
| 3 | Analyze the continuous time LTI systems using Fourier and Laplace Transforms | ||||
| 4 | Determine Fourier transform and Z transform for the LTI Discrete Time Systems | ||||
| 5 | Analyze the discrete time LTI systems using Z transform and DTFT | ||||
EC3353 Electron Devices and Circuits | 1 | Describe about Semiconductor devices, Amplifiers,oscillators and DC Convertors | |||
| 2 | Explain the Working principle of Semiconductor devices, Amplifiers,Differential amplifiers, oscillators, Power amplifiers and DC Convertors | ||||
| 3 | Compute the various Parameters of Hie,Hib,Hic,Rif, Rof associated with Negative feedback amplifiers,oscillators and Power amplifiers | ||||
| 4 | Analyze frequency response of BJT amplifiers,MOSFET amplifiers,Tuned amplifiers, oscillators, Negative feedback amplifiers and power amplifiers | ||||
| 5 | Design DC/DC converter and Power amplifier using MOSFET | ||||
EC3351 Control Systems | 1 | Develop representation and transfer functions of mechanical and electromechanical systems. | |||
| 2 | Analyze time domain parameters of linear systems. | ||||
| 3 | Analysis frequency domain parameters of linear systems. | ||||
| 4 | Investigate Stability and design appropriate compensator to achieve desired output. | ||||
| 5 | Apply state variable analysis techniques to solve complex control problems. | ||||
EC3352 Digital Systems Design | 1 | Analyse and Design Boolean algebra and simplification procedures relevant to digital logic | |||
| 2 | Design various combinational digital circuits using logic gates. | ||||
| 3 | Analyse and design synchronous sequential circuits. | ||||
| 4 | Analyse and design asynchronous sequential circuits | ||||
| 5 | Build logic gates and use programmable devices | ||||
EC3361 Electronic Devices and Circuits Laboratory | 1 | Determine the characteristics of PN junction diode, Zener diode, rectifiers and regulators. | |||
| 2 | Design different types of amplifiers using Bipolar Junction Transistor. | ||||
| 3 | Design different types of amplifiers using MOSFET. | ||||
| 4 | Demonstrate the operation of power amplifiers. | ||||
| 5 | Analyze the frequency response of amplifiers. | ||||
CS3362 C Programming and Data Structures Laboratory | 1 | Construct basic and advanced programs in C. | |||
| 2 | Implement and use the appropriate linear / non-linear data structure operations for a given problem | ||||
| 3 | Implement Sorting and searching algorithms for a given application | ||||
| 4 | Apply appropriate hash functions that result in a collision free scenario for data storage and Retrieval | ||||
| 5 | Construct basic and advanced programs in C. | ||||
| SEMESTER –IV | |||||
EC3452 Electromagnetic Fields | 1 | Apply the fundamentals of vector and coordinate systems for determining properties of electromagnetic Fields fields determining properties of electromagnetic fields | |||
| 2 | Solve the boundary condition problems using the concepts of Electrostatic field in material space | ||||
| 3 | Solve the boundary condition problems using the concepts and characteristics of Magneto Static field in Material space | ||||
| 4 | Determine the significance of time varying fields. | ||||
| 5 | Explain the characteristics of plane electromagnetic waves in lossless and dielectric medium. | ||||
EC3401 Networks and Security | 1 | Understand the fundamental concepts, principles, and need for DevOps in modern software development. | |||
| 2 | Demonstrate the use of version control systems like Git and GitHub for collaborative development. | ||||
| 3 | Apply continuous integration and continuous deployment (CI/CD) practices using tools like Jenkins, Maven, and Docker. | ||||
| 4 | Implement infrastructure automation and configuration management using cloud platforms (AWS, Azure, GCP). | ||||
| 5 | Evaluate the performance, reliability, and scalability of DevOps pipelines for software delivery. | ||||
EC3451 Linear Integrated Circuits | 1 | Design linear and nonlinear applications of OP – AMPS | |||
| 2 | Construct applications using analog multiplier and PLL. | ||||
| 3 | Design ADC and DAC using OP – AMPS | ||||
| 4 | Design waveforms using op – amp circuits. | ||||
| 5 | Analyze special function ICs | ||||
EC3492
Digital Signal Processing | 1 | Apply DFT for the analysis of digital signals and systems. | |||
| 2 | Design of Infinite Impulse Response filters for digital system. | ||||
| 3 | Design Finite Impulse Response filters for digital system. | ||||
| 4 | Implement the effects of finite-precision representation on digital filters representation on digital filters | ||||
| 5 | Demonstrate the applications of DSP in multirate signal processing and adaptive filters in multirate signal processing and adaptive filters | ||||
EC3491 Communication Systems
| 1 | Describe the different types of amplitude modulation schemes. | |||
| 2 | Explain the concepts of Random Process to the design of communication systems | ||||
| 3 | Illustrate the working principles of PCM, Differential PCM, Delta modulation, multiplexers, Hamming Codes and Viterbi Decoder | ||||
| 4 | Explain the different types of digital Modulation technique | ||||
| 5 | Analyse the different types of demodulation schemes used in Communication System. | ||||
GE3451 Environmental Sciences and Sustainability | 1 | Describe the various types of eco system and biodiversity. | |||
| 2 | Explain the causes, effects and control measures of different types of environmental pollution. | ||||
| 3 | Compare the different types of renewable energy sources and its applications. | ||||
| 4 | Illustrate the concepts of sustainability and environmental management. | ||||
| 5 | Summarize the various green technologies and sustainability practices. | ||||
EC3461 Communication Systems Laboratory | 1 | Design AM, FM & Digital Modulators for specific applications. | |||
| 2 | Compute the sampling frequency for digital modulation. | ||||
| 3 | Simulate & validate the various functional modules of Communication system. | ||||
| 4 | Demonstrate their knowledge in base band signaling schemes through implementation of digital modulation schemes. | ||||
| 5 | Apply various channel coding schemes & demonstrate their capabilities towards the improvement of the noise performance of Communication system. | ||||
EC3462 Linear Integrated Circuits Laboratory | 1 | Design amplifiers, oscillators, D-A converters using operational amplifiers. | |||
| 2 | Design filters using op-amp and performs an experiment on frequency response. | ||||
| 3 | Analyze the working of PLL and describe its application as a frequency multiplier. | ||||
| 4 | Design DC power supply using ICs. | ||||
| 5 | Analyze the performance of filters, multivibrators, A/D converter and analog multiplier using SPICE. | ||||
| SEMESTER –V | |||||
EC3501 Wireless Communication | 1 | Design a cellular system based on resource availability and traffic demands. | |||
| 2 | Demonstrate the various pathloss models and compute the various parameters associated with fading and Multipath propagation in wireless communication. | ||||
| 3 | Illustrate the various Digital Modulation Techniques, Equalization Techniques and Diversity Techniques in wireless communication. | ||||
| 4 | Develop communication systems using various multiple access techniques and capacity improvement techniques. | ||||
| 5 | Analyze the different generations of wireless communication systems, traffic routing, switching techniques and network databases in wireless communication. | ||||
EC3552 VLSI and Chip Design | 1 | Illustrate the basics of CMOS circuits and the CMOS process technology. | |||
| 2 | Design a combinational logic circuits for various application. | ||||
| 3 | Design a sequential circuit for various application. | ||||
| 4 | Design arithmetic building blocks and memory subsystems. | ||||
| 5 | Illustrate the process of ASIC design and testing. | ||||
EC3551 Transmission lines and RF Systems | 1 | Explain the characteristics of transmission lines and its losses | |||
| 2 | Calculate the standing wave ratio and input impedance in high frequency transmission lines | ||||
| 3 | Analyze impedance matching in high frequency lines by stubs using smith charts | ||||
| 4 | Comprehend the characteristics of TE and TM waves | ||||
| 5 | Design a RF transceiver system for wireless communication. | ||||
CBM370 Wearable Devices | 1 | Describe the concepts of wearable system | |||
| 2 | Explain the energy harvestings in wearable device. | ||||
| 3 | Explain the concepts of BAN in health care. | ||||
| 4 | Illustrate the concept of smart textile | ||||
| 5 | Explain the various wearable devices in healthcare system | ||||
CEC368 IOT Based System Design | 1 | Articulate the main concepts, key technologies, strength and limitations of IoT. | |||
| 2 | Explain the architecture, infrastructure models of IoT. | ||||
| 3 | Analyze the networking and how the sensors are communicated in IoT . | ||||
| 4 | Analyze and design different models for IoT implementation. | ||||
| 5 | Design the new models for market strategic interaction. | ||||
CEC348 Remote Sensing | 1 | Explain the basic principles of electromagnetic radiation. | |||
| 2 | Describe the interactions between electromagnetic radiation and the atmosphere. | ||||
| 3 | Discuss the laws governing planetary motion. | ||||
| 4 | Classify and explain the different types of resolution in remote sensing. | ||||
| 5 | Explain the fundamental concepts of digital image interpretation. | ||||
EC3561 VLSI Laboratory | 1 | Develop HDL programs for basic and advanced digital integrated circuits using Verilog/VHDL. | |||
| 2 | Implement digital logic modules on FPGA development boards and validate their functionality. | ||||
| 3 | Execute synthesis, place-and-route, and implementation of digital IPs using FPGA design tools. | ||||
| 4 | Construct, simulate, and extract the layouts of digital and analog IC blocks using Electronic Design Automation (EDA) tools. | ||||
| 5 | Evaluate the functionality and performance of integrated circuit designs through testing and verification techniques. | ||||
| SEMESTER – VI | |||||
ET3491 Embedded Systems and IOT Design | 1 | Explain 8051 microcontroller architecture and its features | |||
| 2 | Develop a model for Embedded system Design Process and ARM Processor | ||||
| 3 | Implement the concepts of real time operating systems using Scheduling Algorithms | ||||
| 4 | Illustrate the architecture and protocols of IoT | ||||
| 5 | Design and Implement IoT based system for any application | ||||
CS3491 Artificial Intelligence and Machine Learning | 1 | Apply appropriate search algorithms for solving the problem. | |||
| 2 | Apply the appropriate reasoning algorithms to solve the problems under uncertainty. | ||||
| 3 | Build supervised learning models. | ||||
| 4 | Build ensembling and unsupervised models. | ||||
| 5 | Implement deep learning neural network models. | ||||
OEE351 Renewable Energy System | 1 | Analyze the role, availability, current utilization, and future potential of renewable energy resources in India for sustainable power generation. | |||
| 2 | Apply principles of solar radiation, solar thermal collectors, and photovoltaic systems to design and evaluate solar energy solutions for domestic and power generation applications. | ||||
| 3 | Analyze wind energy resources, turbine characteristics, and wind energy conversion systems to assess performance and suitability for power generation. | ||||
| 4 | Analyze biomass and biogas conversion technologies, plant configurations, and economic feasibility for effective bio-energy utilization. | ||||
| 5 | Apply energy conversion principles of emerging renewable sources such as fuel cells, geothermal, ocean, tidal, wave, and mini-hydel systems to real-world power applications. | ||||
CEC352 Satellite Communication | 1 | Identify the satellite orbits. | |||
| 2 | Analyze the satellite subsystems. | ||||
| 3 | Evaluate the satellite link power budget. | ||||
| 4 | Identify access technology for satellite. | ||||
| 5 | Design various satellite applications. | ||||
CEC331 4G/5G Communication Networks | 1 | Explain the evolution of Wireless Networks. | |||
| 2 | Describe the 5G concepts and technologies. | ||||
| 3 | Explain the 5G network architecture and protocols. | ||||
| 4 | Illustrate the Spectrum management and spectrum trading. | ||||
| 5 | Describe the Security and threats in 5G networks. | ||||
CEC334 Analog IC Design | 1 | Build the amplifiers based on user requirements. | |||
| 2 | Examine the amplifiers performance in terms of noise and frequency. | ||||
| 3 | Create and evaluate one-stage operational amplifiers and feedback amplifiers. | ||||
| 4 | Examine op amp stability. | ||||
| 5 | Test logic circuits | ||||
| SEMESTER – VII | |||||
GE3791 Human Values and Ethics | 1 | Identify the importance of democratic values through illustration of world democracies. | |||
| 2 | Explain the secular values in Indian context. | ||||
| 3 | Describe the methods of scientific thinking. | ||||
| 4 | Describe the application of ethical reasoning to social problems and outline constitutional protection policies. | ||||
| 5 | Explain the importance of transparency and fairness in scientific pursuits and roles & responsibilities of scientists in the modern society. | ||||
GE3751 Principles of Management | 1 | Upon completion of the course, students will be able to have clear understanding of managerial functions like planning, organizing, staffing, leading & controlling. | |||
| 2 | Have same basic knowledge on international aspect of management. | ||||
| 3 | Ability to understand management concept of organizing. | ||||
| 4 | Ability to understand management concept of directing. | ||||
| 5 | Ability to understand management concept of controlling. | ||||
CCS342 DevOps | 1 | Apply version control operations using Git for source code management. | |||
| 2 | Perform Continuous Integration and Continuous Deployment using Jenkins, Maven, and Gradle. | ||||
| 3 | Execute automated continuous deployment processes for software delivery. | ||||
| 4 | Apply configuration management techniques using Ansible. | ||||
| 5 | Utilize cloud-based DevOps tools using Azure DevOps for application lifecycle management. | ||||
OMR351 Mechatronics | 1 | Select sensors to develop mechatronics systems. | |||
| 2 | Explain the architecture and timing diagram of microprocessor, and also interpret and develop programs. | ||||
3 | Design appropriate interfacing circuits to connect I/O devices with microprocessor | ||||
| 4 | Apply PLC as a controller in mechatronics system. | ||||
| 5 | Design and develop the apt mechatronics system for an application. | ||||
OMR353 Sensors | 1 | Explain the various sensor effects, sensor characteristics, signal types, calibration methods and obtain transfer function and empirical relation of sensors. They can also analyze the sensor response. | |||
| 2 | Analyze and select suitable sensor for displacement, proximity and range measurement. | ||||
| 3 | Analyze and select suitable sensor for force, magnetic field, speed, position and direction measurement. | ||||
| 4 | Analyze and Select suitable sensor for light detection, pressure and temperature measurement and also familiar with other miniaturized smart sensors | ||||
| 5 | Select and design suitable signal conditioning circuit with proper compensation and linearizing element based on sensor output signal. | ||||
| SEMESTER-VIII | |||||
EC3811 – Project Work
| 1 | Demonstrate a sound technical knowledge of their selected project topic. | |||
| 2 | Identification of appropriate Electronics and Communication engineering problem and its solution for the benefit of the society | ||||
| 3 | Design Hardware and associated software for providing solutions to complex Electronics and Communication engineering problems. | ||||
| 4 | Analyse the performance of given Electronics/Communication related systems | ||||
| 5 | Evaluate the efficiency of the given system in terms of system parameter and optimization of the parameter. | ||||



