Question: Q1. A) Design a synchronous counter that counts the sequence as below: a+b+c+de+f... To find out the digits corresponding to the variables a, b, c,

Q1. A) Design a synchronous counter that counts the sequence as below: a+b+c+de+f... To find out the digits corresponding to the variables a, b, c, d, e, f, you need to re-arrange your registration number in the following manner. For example, your registration no is FA19-BCS-152, your counter will start from the least value in your registration no, then move to higher hex digits one by one (no-repetition) such as in this case your counter will have this sequence, (Replace S with A and P with B) 0+2+9+10A+B+E+F Make sure your counter displays outputs within the range 6-10 (in the above case the counter displays 8 outputs (from 0 F)) Use any suitable flip flops to design the above-mentioned counter out of JK-FF, D- FF or T-FF. B) A minimum of what size of Multiplexer, Encoder and Decoder might be required to facilitate the communication of 12 senders trying to send a data of 2 bytes over a single transmission line at the same time. Q1. A) Design a synchronous counter that counts the sequence as below: a+b+c+de+f... To find out the digits corresponding to the variables a, b, c, d, e, f, you need to re-arrange your registration number in the following manner. For example, your registration no is FA19-BCS-152, your counter will start from the least value in your registration no, then move to higher hex digits one by one (no-repetition) such as in this case your counter will have this sequence, (Replace S with A and P with B) 0+2+9+10A+B+E+F Make sure your counter displays outputs within the range 6-10 (in the above case the counter displays 8 outputs (from 0 F)) Use any suitable flip flops to design the above-mentioned counter out of JK-FF, D- FF or T-FF. B) A minimum of what size of Multiplexer, Encoder and Decoder might be required to facilitate the communication of 12 senders trying to send a data of 2 bytes over a single transmission line at the same time
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