5th Sem, ECE Diploma

34053: Very Large Scale Integration Electronics 5th Sem Syllabus for Diploma TNDTE M Scheme

Very Large Scale Integration detail TNDTE Diploma syllabus for Electronics And Communication Engineering (EC), M scheme is extracted from TNDTE official website and presented for diploma students. The course code (34053), and for exam duration, Teaching Hr/week, Practical Hr/week, Total Marks, internal marks, theory marks, duration and credits do visit complete sem subjects post given below. The syllabus PDFs can be downloaded from official website.

For all other electronics 5th sem syllabus for diploma m scheme tndte you can visit Electronics 5th Sem Syllabus for Diploma M Scheme TNDTE Subjects. The detail syllabus for very large scale integration is as follows.

Rationale:

Very Large Scale integration technology, when especially used for digital integrated circuitdesign,is that it is mandatory the behaviour of the required system to be described (modelled) and verified(simulated) before synthesis tools translate the design into real hardware fabrication in the foundry(gates and wire

  1. Hardware Description Language (HDL) allows designs to be described using any methodology – top down, bottom up or middle out. VHDL can be used to describe hardware at the gate level or in a more abstract way. This course is to introduce the digital system design concepts through hardware description Language, VHDL programming, design flow of VLSI, and architectures of CPLD and FPGA. It is mainly aimed at design of combinational and sequential functions at gate / behavioural level and simulates and verifies their functionality using the Hardware description Language (VHDL)

Objectives:

On successful completion of the course the students must be able to

  • Understand device level implementation of digital gates.
  • Understand the combinational circuit design and optimizing of the gate
  • Design a combinational circuit for any custom made application
  • Explain the building blocks for the combinational circuit
  • Understand the VHDL code and circuit design process.
  • Develop a VHDL code for any combinational circuit
  • Answer the VHDL primitives and the importance of VHDL code in a digital circuit
  • Design a digital circuit with Muxes and Encoders
  • Understand the functionality of various flipflops through its excitation table.
  • Design of a sequential circuit for any custom made application
  • Explain the style of moore and mealy type machines
  • Understand to implement VHDL code for various flipflops
  • Design of sequential circuit and implementation with VHDL code
  • Explain the importance of PROM, PLA, PAL and PLD
  • Differentiate between the PROM,PLA and PAL.
  • Develop the circuit using PROM,PAL and PLA.
  • Understand the CPLD and FPGA hardware.
  • Describe ASICs

Unit 1

For complete syllabus and results, class timetable and more pls download iStudy Syllabus App. It’s a lightweight, easy to use, no images, no pdfs platform to make students life easier.

Unit 2

1. Vhdl For Combinational Circuit:

Introduction to VLSI and its design process. Introduction to CAD tool and VHDL: Design Entry, Synthesis, and Simulation. Introduction to HDL and different level of abstractions. HDL Statements and Assignments

2. Vhdl Code:

AND, OR, NAND, NOR gates, Implementation of Mux, Demux, Encoder, decoder. Four bit Arithmetic adder, sub tractor and comparator in VHDL

Unit 3

1. Sequential Circuit Design:

Introduction/Refreshing to Flipflops and its excitation table, counters and Shift registers

2. Design Steps:

State diagram, State table, state assignment. Example for moore and mealy machines. Design of modulo counter (upto 3 bit) with only D flip-flops through state diagram

Unit 4

For complete syllabus and results, class timetable and more pls download iStudy Syllabus App. It’s a lightweight, easy to use, no images, no pdfs platform to make students life easier.

Unit 5

Plds And Fpga:

Introduction to PROM,PLA and PAL. Implementation of combinational circuits with PROM, PAL and PLA (up to 4 variables).Comparison between PROM, PAL and PLA .Introduction to Complex Programmable Logic device, Field Programmable Gate Array Introduction to ASIC. Types Of ASIC

Text Books:

  1. Digital Design M.Morris Mano Michael D Ciletti Pearson Education 2008
  2. Fundamentals of Digital Logic with VHDL design Stephen brown and Vranesic 2nd edition McGrawHill,2008
  3. VHDL Primer Bhasker J Prentice Hall India -2009

Reference Books:

For complete syllabus and results, class timetable and more pls download iStudy Syllabus App. It’s a lightweight, easy to use, no images, no pdfs platform to make students life easier.

For detail syllabus of all other subjects of BE Electronics, M scheme do visit Electronics 5th Sem syllabus for M scheme.

Dont forget to download iStudy Syllabus App for latest syllabus and results, class timetable and more.

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