Using only the gates listed in the gate table, implement a transistor-minimal hamming distance circuit. The circuit takes four bits of input: • x₁ and xo: a two-bit string x = x1x0 •y₁ and yo: a two bit string y = yıyo The circuit produces two bits of output: ● d₁ and do: a two-bit number d = d₁do that indicates how many bits differ between x and y - E.g. the hamming distance between x = 00 and y = 01 is d = 01

Introductory Circuit Analysis (13th Edition)
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• When a problem references the "gate table”, use the following table of gate information:
Number of Transistors ted tpd
0.4 0.5
2.2 2.6
2.2
2.6
1.8 2.1
1.8 2.1
2.6
3.2
2.6 3.2
Gate
NOT
AND2
OR2
NAND2
NOR2
XOR2
XNOR2
2
6
6
4
4
8
8
Transcribed Image Text:• When a problem references the "gate table”, use the following table of gate information: Number of Transistors ted tpd 0.4 0.5 2.2 2.6 2.2 2.6 1.8 2.1 1.8 2.1 2.6 3.2 2.6 3.2 Gate NOT AND2 OR2 NAND2 NOR2 XOR2 XNOR2 2 6 6 4 4 8 8
3. Using only the gates listed in the gate table, implement a transistor-minimal hamming distance circuit.
The circuit takes four bits of input:
• x₁ and xo: a two-bit string x = x1x0
y₁ and yo: a two bit string y = yıyo
The circuit produces two bits of output:
• dị and do: a two-bit number d = d₁do that indicates how many bits differ between x and y
E.g. the hamming distance between x = 00 and y = 01 is d = 01
-
Transcribed Image Text:3. Using only the gates listed in the gate table, implement a transistor-minimal hamming distance circuit. The circuit takes four bits of input: • x₁ and xo: a two-bit string x = x1x0 y₁ and yo: a two bit string y = yıyo The circuit produces two bits of output: • dị and do: a two-bit number d = d₁do that indicates how many bits differ between x and y E.g. the hamming distance between x = 00 and y = 01 is d = 01 -
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