We provide you some Digital Electronics Tutorials for your reference. These are automated E-circuits, you just need to refer each step to understand the circuit. We also provide Circuit diagram for each tutorial.
- 2-Input AND GateShow circuit diagram
- 2-Input OR GateShow circuit diagram
- 2-Input NAND GateShow circuit diagram
- 2-Input NOR GateShow circuit diagram
- 2-Input Ex-OR GateShow circuit diagram
- Hex Inverting NOT GateShow circuit diagram
- Triple 3-Input AND GateShow circuit diagram
- Triple 3-Input NOR GatesShow circuit diagram
- Triple 3-Input NAND GateShow circuit diagram
- Dual 4-Input NAND GatesShow circuit diagram
- Dual 4-Input AND GatesShow circuit diagram
- 8-Input NAND GateShow circuit diagram
- Implementation of NOT Gate using NAND gateShow circuit diagram
- Implementation of AND Gate using NAND gateShow circuit diagram
- Implementation of OR Gate using NAND gateShow circuit diagram
- Implementation of Ex-OR Gate using NAND gateShow circuit diagram
- Implementation of NOR Gate using NAND gateShow circuit diagram
- Implementation of Ex-NOR Gate using NAND gateShow circuit diagram
- Implementation of NOT Gate using NOR gateShow circuit diagram
- Implementation of AND Gate using NOR gateShow circuit diagram
- Implementation of OR Gate using NOR gateShow circuit diagram
- Implementation of NAND Gate using NOR gateShow circuit diagram
- Implementation of EX-NOR Gate using NOR gateShow circuit diagram
- Quad 2-input NAND Gates with Open-Collector OutputsShow circuit diagram
- Quad 2-input NAND Gates with Open-Collector OutputsShow circuit diagram
- Hex Inverters with Open-Collector OutputsShow circuit diagram
- Hex Inverters with Open-Collector OutputsShow circuit diagram
- Quad 2-input NAND Gates with Schmitt Trigger InputsShow circuit diagram
- 4:1 Multiplexer Using IC 74LS153Show circuit diagram
- 8:1 Multiplexer using IC 74LS153Show circuit diagram
- Design and Implement 8:1 MUX using IC-74LS153Show circuit diagramICs used: 74LS15374LS0474LS32
- 1:4 Demultiplexer Using IC 74LS139Show circuit diagram
- To design and implement Multiplexer using gatesShow circuit diagramICs used: 74LS1074LS0474LS20
- To design and implement DeMultiplexer and using gatesShow circuit diagram
- Design & Implement the given 4 variable function Y= m(0,2,4,6,8,10,12,13) Show circuit diagram
- Design 8:1 Mux and implement F (A, B, C) = m (0, 2, 4, 7)Show circuit diagramICs used: 74LS15374LS0474LS32
- Binary to Gray code converter using logic gatesShow circuit diagram
- 3 Bit Binary to Gray Code ConversionShow circuit diagram
- 3 Bit Gray to Binary Code ConversionShow circuit diagram
- BCD to Excess-3 code converter using logic gatesShow circuit diagramICs used: 74LS8674LS0474LS0874LS32
- Design & Implement 3-bit Binary to Gray code converter using IC- 74LS138.Show circuit diagram
- Half Adder Using Basic GatesShow circuit diagram
- Half subtractor basic gatesShow circuit diagramICs used: 74LS8674LS0474LS08
- Half Adder Using NAND GatesShow circuit diagram
- Half Subtracter Using NAND GatesShow circuit diagram
- HALF ADDER USING MUXShow circuit diagram
- Full Adder Using NAND GatesShow circuit diagram
- Full Subtractor using Two half adders basic gatesShow circuit diagramICs used: 74LS8674LS0474LS0874LS32
- Full Adder function using 3:8 DecoderShow circuit diagram
- Design and Implement 4-bit Binary subtractor using IC-74LS83Show circuit diagramICs used: 74LS0474LS8374LS86
- One Bit ComparatorShow circuit diagramICs used: 74LS0474LS0874LS02
- One Bit ComparatorShow circuit diagramICs used: 74LS8674LS0474LS08
- Implement 4-Bit Magnitude Comparator using IC-74LS85Show circuit diagram
- 8 Bit Comparator Using 74LS85Show circuit diagram
- 2-Bit Asynchronous UP Counter using 74LS76Show circuit diagram
- 2-Bit Asynchronous DOWN Counter using 74LS76Show circuit diagram
- 3-Bit Asynchronous UP Counter using 74LS76Show circuit diagram
- 3-Bit Asynchronous DOWN Counter using 74LS76Show circuit diagram
- 4-Bit Asynchronous UP Counter using 74LS76Show circuit diagram
- 4-Bit Asynchronous DOWN Counter using 74LS76Show circuit diagram
- 4 bit Synchronous DOWN counter using JK Flip flops 74LS76Show circuit diagram
- 4 bit Synchronous UP counter using JK Flip flops 74LS76Show circuit diagram
- 3-bit Synchronous UP Counter using IC74LS76Show circuit diagram
- 4 bit Up/Down Counter using 74HC191Show circuit diagram
- Decade 4-bit Synchronous counter using 74LS76Show circuit diagramICs used: 74LS7674LS0874LS32
- To Design and Verify the operation BCD ripple counter using JK flip-flopsShow circuit diagram
- MOD-2 Counter using D Flip-Flop IC-74LS74Show circuit diagram
- MOD-4 Counter using D Flip-Flop IC-74LS74Show circuit diagram
- Mod 6 CounterShow circuit diagram
- MOD-8 Counter using D Flip-Flop IC-74LS74Show circuit diagram
- Mod-10 Counter using IC-74LS90Show circuit diagram
- Mod-16 Counter using IC-74LS93Show circuit diagram
- Design and implement MOD-96 counter using IC 74LS90Show circuit diagram
- Design and implement MOD-100 counter using IC 74LS90Show circuit diagram
- Universal Shirt Register using 74LS194Show circuit diagram
- Design and implement pulse train generator using IC74HC194 for pulse 111001 (Use right shift)Show circuit diagramICs used: 74HC19474LS0474LS32
- Design and implement pulse train generator using IC74HC194 for pulse 111001 (Use left shift)Show circuit diagramICs used: 74HC19474LS0474LS32
- Design and Implement 4-bit right shift register using D-flip flopShow circuit diagram