Member since: 4 years
Educational Institution: Not Entered
Country: Not Entered
8 : 1 MUX
8 : 1 MUXserial in parallel out
serial in parallel outFULL ADDER USING NOR GATES
FULL ADDER USING NOR GATES2 TO 4 DECODER
2 TO 4 DECODERFULL ADDER USING NAND GATES
FULL ADDER USING NAND GATESDEMUX
DEMUXUntitled
Untitled1 TO 16 DEMUX
1 TO 16 DEMUXSHIFT COUNTER
SHIFT COUNTERDECIMAL TO BCD ENCODER
DECIMAL TO BCD ENCODER1 TO 2 DECODER
1 TO 2 DECODERUntitled
UntitledT FLIP FLOP USING D FLIP FLOP
T FLIP FLOP USING D FLIP FLOP3 BIT PARITY GENERATOR
3 BIT PARITY GENERATOR4 BIT ADDER
4 BIT ADDER4-BIT FULL ADDER
4-BIT FULL ADDER1. DFF USING SRFF
1. DFF USING SRFF4 TO 1 MUX
4 TO 1 MUXEXOR
EXORring counter
ring counter4 TO 2 ENCODER
4 TO 2 ENCODER4 BIT SYNCHRONOUS DOWN COUNTER
4 BIT SYNCHRONOUS DOWN COUNTER4 BIT PARITY GENERATOR
4 BIT PARITY GENERATORFULL SUBTRACTOR USING BASIC GATES
FULL SUBTRACTOR USING BASIC GATESBOOLEAN POSTULATES
BOOLEAN POSTULATESBCD ADDER
BCD ADDER15 TO 1 MUX
15 TO 1 MUX4 TO 16 DECODER
4 TO 16 DECODEROR GATE
OR GATERIPPLE COUNTER
RIPPLE COUNTERAND GATE
AND GATECONSENSUS THEOREM
CONSENSUS THEOREMDecimal to BCD priority Encoder
Decimal to BCD priority Encoder4 BIT ADDER
4 BIT ADDERFULL ADDER USING XOR AND BASIC GATES
FULL ADDER USING XOR AND BASIC GATESFULL ADDER USING XOR GATES
FULL ADDER USING XOR GATESHALF SUBTARCTOR USING BASIC GATES
HALF SUBTARCTOR USING BASIC GATESD FLIP FLOP USING SR FLIP FLOP
D FLIP FLOP USING SR FLIP FLOPT FLIP FLOP USING JK FLIP FLOP
T FLIP FLOP USING JK FLIP FLOP8 TO 1 MUX
8 TO 1 MUXUntitled
Untitled24 TO 1
24 TO 1PARALLEL IN SERIAL OUT
PARALLEL IN SERIAL OUT2 TO 1 MUX
2 TO 1 MUXMOD 10 COUNTER
MOD 10 COUNTERRING COUNTER
RING COUNTERFULL ADDER USING BASIC GATES
FULL ADDER USING BASIC GATES2 TO 1 MUX
2 TO 1 MUX4 TO 1 MUX
4 TO 1 MUX1 TO 4 DEMUX
1 TO 4 DEMUXFULL ADDER USING BASIC GATES
FULL ADDER USING BASIC GATESBCD TO 7 SEGMENT DECODER
BCD TO 7 SEGMENT DECODER24 TO 1 MUX USING 8 TO 1 MUX
24 TO 1 MUX USING 8 TO 1 MUX4 TO 2 PRIORITY ENCODER
4 TO 2 PRIORITY ENCODERBCD ADDER
BCD ADDER1:8 DEMUX
1:8 DEMUXJK FLIPFLOP USING D FLIP FLOP
JK FLIPFLOP USING D FLIP FLOP16X1 MUX
16X1 MUXPARALLEL IN PARALLEL OUT
PARALLEL IN PARALLEL OUTT FLIP FLOP USING SR FLIP FLOP
T FLIP FLOP USING SR FLIP FLOP8 to 3 octal to binary encoder
8 to 3 octal to binary encoder4 BIT SYNCHRONOUS UP/DOWN COUNTER
4 BIT SYNCHRONOUS UP/DOWN COUNTER4 BIT SYNCHRONOUS DOWN COUNTER
4 BIT SYNCHRONOUS DOWN COUNTER4 BIT SYNCHRONOUS UP/DOWN COUNTER
4 BIT SYNCHRONOUS UP/DOWN COUNTERBCD TO EXCESS-3 CONVERTER
BCD TO EXCESS-3 CONVERTERSEERIAL IN SERIAL OUT
SEERIAL IN SERIAL OUT2 TO 4 DECODER
2 TO 4 DECODERJK FLIP FLOP USING SR FLIP FLOP
JK FLIP FLOP USING SR FLIP FLOPBCD TO DECIMAL DECODER
BCD TO DECIMAL DECODER4 BIT SYNCHRONOUS DOWN COUNTER
4 BIT SYNCHRONOUS DOWN COUNTERSERIAL IN PARALLEL OUT
SERIAL IN PARALLEL OUTRING COUNTER
RING COUNTERUntitled
UntitledBOOLEAN THEOREMS USING LOGIC GATES
BOOLEAN THEOREMS USING LOGIC GATES4 TO 1 MUX
4 TO 1 MUXMOD 12 COUNTER
MOD 12 COUNTER2 BIT MAGNITUDE COMPARATOR
2 BIT MAGNITUDE COMPARATOR1 BIT MAGNITUDE COMPARATOR
1 BIT MAGNITUDE COMPARATOR3 TO 8 DECODER
3 TO 8 DECODERUP / DOWN COUNTER
UP / DOWN COUNTERGRAY TO BINARY CODE CONVERTER
GRAY TO BINARY CODE CONVERTER32 TO 1 MUX USING 4 TO 1 MUX
32 TO 1 MUX USING 4 TO 1 MUX8 TO 1 MUX
8 TO 1 MUXD FLIPFLOP USING JK FLIPFLOP
D FLIPFLOP USING JK FLIPFLOP3 BIT PARITY CHECKER
3 BIT PARITY CHECKERBOOLEAN THEOREM USING LOGIC GATES
BOOLEAN THEOREM USING LOGIC GATESDISTRIBUTIVE LAW
DISTRIBUTIVE LAW