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MOD 10 COUNTER
MOD 10 COUNTERQ1CAT1B2
Q1CAT1B2SUFYAN SHAIK 22BKT0139 B2CATQ2A
SUFYAN SHAIK 22BKT0139 B2CATQ2ASUFYAN SHAIK 22BKT0139 CAT2Q3B2
SUFYAN SHAIK 22BKT0139 CAT2Q3B2SUFYAN SHAIK 22BKT0139 CAT2B2Q1
SUFYAN SHAIK 22BKT0139 CAT2B2Q1SUFYAN SHAIK 22BKT0139 B2CATQ5
SUFYAN SHAIK 22BKT0139 B2CATQ5Half Adder circuit
Half Adder circuitUntitled
UntitledHalf Subtractor
Half SubtractorUntitled
UntitledFULL SUBTRACTOR
FULL SUBTRACTOR4 bit SIPO Shift Register
4 bit SIPO Shift RegisterSUFYAN SHAIK 22BKT0139 SIPO SHIFT REGISTER
SUFYAN SHAIK 22BKT0139 SIPO SHIFT REGISTERSUFYAN SHAIK 22BKT0139 PIPO SHIFT REGISTER
SUFYAN SHAIK 22BKT0139 PIPO SHIFT REGISTERPISO SHIFT REGISTER
PISO SHIFT REGISTERPISO
PISO4 BIT ADDER FINAL
4 BIT ADDER FINAL2x2 Multiplier
2x2 MultiplierPOS F EXPRESSION
POS F EXPRESSIONSOP F EXPRESSION
SOP F EXPRESSIONSOP F NAND IMPLEMENTATION
SOP F NAND IMPLEMENTATIONSOP F' NAND IMPLEMENTATION
SOP F' NAND IMPLEMENTATIONPOS F' USING NOR IMPLEMENTATION
POS F' USING NOR IMPLEMENTATIONPOS F EXPRESSION
POS F EXPRESSIONSOP F' EXPRESSION
SOP F' EXPRESSIONSOP MUX REG NO
SOP MUX REG NOSOP FBAR
SOP FBARPOS F EXPRESSION MUX
POS F EXPRESSION MUXPOS F BAR MUX
POS F BAR MUX22bkt0139 random counter
22bkt0139 random counterCommon Cathode
Common CathodeMux seven segment
Mux seven segment2:1 MUX POS OAI
2:1 MUX POS OAI2:1mux sop aoi
2:1mux sop aoiNAND LOGIC 2:1 MUX
NAND LOGIC 2:1 MUXHOTS QN 2
HOTS QN 28:1 implementation using BCD select
8:1 implementation using BCD select22BKT0139 POS F EXPRESSION IMPLENTATION USING 8:1 MUX
22BKT0139 POS F EXPRESSION IMPLENTATION USING 8:1 MUX22BKT0139 TASK 1 IMPLEMENTATION USING 4:1 MUX
22BKT0139 TASK 1 IMPLEMENTATION USING 4:1 MUX22BKT0139 TASK 1 POS F EXPRESSION IMPEMENTATION WITH 4:1 MUX
22BKT0139 TASK 1 POS F EXPRESSION IMPEMENTATION WITH 4:1 MUXFull adder using 4:1 mux
Full adder using 4:1 mux22BKT0139 HALF SUBTRACTOR USING 4:1 MUX
22BKT0139 HALF SUBTRACTOR USING 4:1 MUX22BKT0139 FULL ADDER USING 8:1 MUX
22BKT0139 FULL ADDER USING 8:1 MUX22BKT0139 FULL SUBTRACTOR USING 8:1 MUX
22BKT0139 FULL SUBTRACTOR USING 8:1 MUX22BKT0139 IMPLEMENTATION OF 16:1 USING 8:1 MUX F(a,b,c,d)=(0,1,2,3,9,11)
22BKT0139 IMPLEMENTATION OF 16:1 USING 8:1 MUX F(a,b,c,d)=(0,1,2,3,9,11)22BKT0139 4:2 NAND LOGIC ENCODER L43+L44
22BKT0139 4:2 NAND LOGIC ENCODER L43+L44F SOP EXPRESSION 22BKT0139 L43+L44
F SOP EXPRESSION 22BKT0139 L43+L4422BKT0139 SOP F' EXPRESSION
22BKT0139 SOP F' EXPRESSIONHALF SUBTRACTOR USING DECODER 22BKT0139
HALF SUBTRACTOR USING DECODER 22BKT013922BKT0139 FULL ADDER USING DECODER
22BKT0139 FULL ADDER USING DECODERFULL SUB USING DECODER 22BKT0139
FULL SUB USING DECODER 22BKT013922BKT0139 1 BIT ALU IMPLEMENTATION L43+L44
22BKT0139 1 BIT ALU IMPLEMENTATION L43+L4422BKT0139 4 BIT ALU IMPLEMENTATION L43+L44A
22BKT0139 4 BIT ALU IMPLEMENTATION L43+L44A22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 NAND IMPLEMENTATION
22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 NAND IMPLEMENTATIONNOR BASED DESIGN FOR CODE CONVERTER
NOR BASED DESIGN FOR CODE CONVERTERSEVEN SEGEMENT CIRCUIT
SEVEN SEGEMENT CIRCUITVIVA
VIVA22BKT0139 HALF ADDER USING DECODER
22BKT0139 HALF ADDER USING DECODERQuestion 18 GROUP 6
Question 18 GROUP 6QUESTION 2 VIVA 22BKT0139
QUESTION 2 VIVA 22BKT0139SOP MUX REG NO
SOP MUX REG NOMUX SOP
MUX SOPSUFYAN SHAIK 22BKT0139 cat2 q4 b2
SUFYAN SHAIK 22BKT0139 cat2 q4 b222bkt0139 random counter
22bkt0139 random counterQ2SUFYANCAT1B1
Q2SUFYANCAT1B1B1Q1SUFYAN
B1Q1SUFYANcat1_b1_q4
cat1_b1_q4CAT_Q5_B1
CAT_Q5_B1SUFYAN SHAIK 22BKT0139 cat1_q5_b2
SUFYAN SHAIK 22BKT0139 cat1_q5_b2SUFYAN SHAIK 22BKT0139 B1CATQ5
SUFYAN SHAIK 22BKT0139 B1CATQ5SUFYAN SHAIK 22BKT0139 cat2_q3_b1
SUFYAN SHAIK 22BKT0139 cat2_q3_b122BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 using decoder
22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 using decoder22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 POSSOP FORM
22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 POSSOP FORMhalf adder design using 4:1 MUX
half adder design using 4:1 MUXcode convertor circuit using Multiplexer
code convertor circuit using Multiplexer22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 USING DEMUX
22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 USING DEMUXSUFYAN SHAIK 22BKT0139 CAT1+Q4+B2
SUFYAN SHAIK 22BKT0139 CAT1+Q4+B2Serial In Serial Out Shift Register - D flip flop
Serial In Serial Out Shift Register - D flip flopPOS F EXPRESSION
POS F EXPRESSIONBCD CODE CONVERTER
BCD CODE CONVERTER22BKT0139 FULL SUBTRACTOR USING 4:1 MUX
22BKT0139 FULL SUBTRACTOR USING 4:1 MUXShift Register - PIPO Mode
Shift Register - PIPO Mode22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 SOP FORM
22BKT0139 SUFYAN SHAIK BCD TO CUSTOM CODE CONVERTOR -163-1 SOP FORMSUFYAN SHAIK 22BKT0139 SISO SHIFT REGISTER
SUFYAN SHAIK 22BKT0139 SISO SHIFT REGISTERQuestion 8 Group 6
Question 8 Group 64 BIT ALU IMPLEMENTATION
4 BIT ALU IMPLEMENTATION