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BASIC ELECTRONICS


DIT-01 : Digital IC Trainer

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FEATURES:

  • Built in regulated power supply.
  • Covers basic logic gates, universal gates, flip-flops, counters,
         registers, multiplexer & de-multiplexer, seven segment display
         driver, parity generator / checker and code converters.
  • Easy interconnections between circuits
  • On board resources such as logic switches for providing inputs to
         digital ICs and LED indicators to check the outputs from the
         digital ICs.
  • Descriptive experimental manual and an interactive E-manual.


  • SPECIFICATIONS:

  • Basic logic gate IC's NOT (7404), OR (7432), AND (7408), NOR (7402),NAND (7400), EX-0R (7486), EX-NOR (74266)
  • NAND and NOR gates as Universal Logic Gates
  • TTL to CMOS and CMOS to TTL Interface
  • De-morgans theorem I and II
  • Boolean Equation
  • Half Adder, Full Adder, Half Subtractor, Full Subtractor
  • Basic Flip-Flops RS (using NOR), JK (7476), D (7474), MS-JK (7476), D (7474) and T (using JK)
  • Ripple Counter (7490)
  • Synchronous Binary Counter (74191)
  • 4 Bit Ring Counter using 7476
  • Decade / BCD counter using 7490
  • Universal Shift register 74194
  • 9 bit parity Generator / Checker (74280)
  • Multiplexer (74153) and Demultiplexer (74138)
  • BCD to seven segment decoder (7447)
  • 4 bit Comparator (7485)
  • Binary to Gray, Gray to Binary, Binary to BCD, BCD to Binary, BCD to Excess 3, Excess 3 to BCD
  • 16 switches to provide Logic 0 & 1 inputs
  • 16 LEDs to observe the output logic states
  • Manual clock to observe the counter operation

    EXPERIMENTS:

  • To verify the truth table and function of Basic Logic Gates
  • To verify NAND and NOR gates as Universal Logic Gates
  • To study and Verification of TTL to CMOS and CMOS to TTL Interface
  • To verify De-morgans Theorem I and II
  • To verify Boolean Equation
  • To study and verify working and truth table of Half Adder, Full Adder, Half Subtractor and Full Subtractor
  • Design of Half adder and Half Subtractor using Multiplexer & De-multiplexer
  • To study the Behavior of Basic Flip-Flops (RS, JK, MSJK, D & T)
  • To study and design ripple/ Asynchronous counter using JK flip-flop
  • To study the Synchronous Binary Counter using Ic74191
  • To design 4 bit ring counter using JK flip-flop
  • To verify decade / BCD counter using 7490
  • To study Universal Shift Register using IC 74194
  • To study 8 bit Parity Generator / Checker using IN 74280
  • To study Multiplexer 74153 and Demultiplexer 74138
  • To study BCD to Seven Segment Decoder 7447
  • To study 4 bit Comparator 7485
  • To study Binary to Gray, Gray to Binary, Binary to BCD, BCD to Binary, BCD to Excess 3 and Excess 3 to BCD Converters
  • To Study 4-Bit binary Adder


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