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Half Adder
Half Adder3bit half adders
3bit half adders5 bit adder using half adders
5 bit adder using half adders3 TO 8 DECODER
3 TO 8 DECODERhalf adderf
half adderfF1 Simple
F1 SimpleF1 Simple
F1 SimpleUntitled
Untitledrr
rrDec_5_32
Dec_5_32Dec_5_32
Dec_5_32Untitled
UntitledUntitled
UntitledUntitled
Untitled2:4 Decoder
2:4 DecoderPRIORITY ENCODER
PRIORITY ENCODERSum and sub circuit
Sum and sub circuitF 8/3/22
F 8/3/22F 8/3/22
F 8/3/22F1 15MARCH
F1 15MARCHF2 15MARCH SIMPLE
F2 15MARCH SIMPLEF2 15MARCH NAND
F2 15MARCH NANDF3 15MARCH SIMPLE
F3 15MARCH SIMPLE15M 5ADDER
15M 5ADDERFULL ADDER 15M
FULL ADDER 15Mf0 15march
f0 15marchF3 15MARCH NAND
F3 15MARCH NAND15M
15M7 segment
7 segment7 Segment Display
7 Segment Display7 Segment Display
7 Segment Display7 Segment Display
7 Segment DisplayNor Latch With Enable Bit
Nor Latch With Enable BitNand Latch
Nand LatchNand Latch With Enable Bit
Nand Latch With Enable BitNOR LATCH
NOR LATCHFull Subtractor
Full SubtractorCCC
CCC2:4 Decoder
2:4 Decoderf0 15march nand
f0 15march nandFlip-Flops using NAND Gate
Flip-Flops using NAND Gate4BIT UP COUNTER USING JK FLIPFLOP
4BIT UP COUNTER USING JK FLIPFLOP4BIT UP COUNTER USING JK FLIPFLOP
4BIT UP COUNTER USING JK FLIPFLOPmultiplexer
multiplexerMUX USING GATE
MUX USING GATEmultiplexer
multiplexerF1 15MARCH NAND
F1 15MARCH NAND2 to 4 Line Decoder
2 to 4 Line Decoder3:8 Decoder
3:8 DecoderA synchronous Counter can count random number with 4,7,3,0,2
A synchronous Counter can count random number with 4,7,3,0,2Flip-Flops using NAND Gate
Flip-Flops using NAND Gate32x1 MUX USING 2X1 MUX
32x1 MUX USING 2X1 MUX