Digital Electronics 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 (34043), 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 4th sem syllabus for diploma m scheme tndte you can visit Electronics 4th Sem Syllabus for Diploma M Scheme TNDTE Subjects. The detail syllabus for digital electronics is as follows.
Rationale:
The subject of Digital Electronics holds applications in all branches of engineering. This subject will impart in depth knowledge of Number systems, Logics of Combinational & Sequential circuits and also about various & recent Memory devices and microprocessor. The concept of Digital Electronics will be implemented in all processor.
Objectives:
- To understand various Number System.
- To understand basic Boolean postulates and laws.
- To understand the De-Morgan’s theorem.
- To understand the concept of Karnaugh Map.
- To Learn about Basic logic Gates.
- To Study about Boolean techniques.
- To learn the different digital logic families
- To learn arithmetic circuits-adder/subtractor, BCD adder.
- To understand the encoder/decoder & MUX / DEMUX
- To understand the concept of parity Generator, and checkers
- To understand various types of flip-flops.
- To understand various types of counters.
- To understand various modes of shift registers
- To understand the concept of RAM & ROM and its types.
- To understand the history and need of Microprocessor.
- To understand the internal architecture details of 8085 Microprocessor.
- To know the instruction set of 8085
- To understand Interrupt Structure of 8085
Unit 1
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Unit 2
Combinational Circuits
Arithmetic circuits – Binary – Addition, subtraction, 1’s and 2’s complement – Signed binary numbers- Half Adder- Full Adder- Half Subtractor – Full Subtractor- Parallel and serial Adders- BCD adder. Encoder and decoder – 3 to 8 decoder, BCD to seven segment decoderMultiplexer- basic 2 to 1 MUX, 4 to 1 MUX, 8 to 1 MUX – applications of the MUX – Demultiplexer – 1 to 2 demultiplexer, 1 to 4 demultiplexer, 1 to 8 demultiplexer – Parity Checker and generator. 7 6
Unit 3
Sequential Circuits
FLIP FLOPS – SR, JK, T, D FF, JK- MS FF – Triggering of FF – edge & level , Counters – 4 bit Up – Down Asynchronous / ripple counter -Decade counter- Mod 3, Mod 7 counter. 4 bit Synchronous Up – Down counter – Johnson counter, Ring counter
Registers
4-bit shift register- Serial IN Serial OUT- Serial IN Parallel OUT – Parallel IN Serial OUT- Parallel IN Parallel OUT
Unit 4
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Unit 5
Microprocessor – 8085
Evolution of microprocessor 8085 – Architecture of 8085- Instruction sets- Addressing modes – Memory mapped I/O and I/O mapped I/O and its Comparison. Machine cycle – Opcode fetch – memory read- memory write- I/O read, I/O write – Instruction cycle (Timing diagram) for MOV r1, r2 instruction. Interrupts (types & Priorities. 12
Reference Books:
- Principles of Digital Electronics K.Meena PHI – 2011
- Modern Digital Electronics R.P.Jains TMH -2003
- Microprocessor architecture programming and application Ramesh S. Gaonkar, Wiley Eastern Limited.
- Digital principles & Applications Albert Paul Malvino & Donald P.Leach TMH – 4th Edition 2002
- Digital Electronics William H.Gothmann prentice Hall of India – 2nd Edition ,1995
- Introduction to Microprocessor Aditya P Mathur Tata McGraw-Hil publishing Company Limited
- Digital Electronics Roger L.Tokheim Macmillan McGraw hill -1994
- Digital Electronics- an introduction to theory and practice William H.Gothmann PHI 1998 Curriculum Development Centre, DOTE.
For detail syllabus of all other subjects of BE Electronics, M scheme do visit Electronics 4th Sem syllabus for M scheme.
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