An analog-to-digital converter is monitoring the dc voltage (VB) of a 12-V storage battery on an orbiting spaceship. The converter’s output is a four-bit binary number, ABCD, corresponding to the battery voltage in steps of 1 V, with A as the MSB. The converter’s binary outputs are fed to a logic circuit that is to produce a HIGH output as long as the binary value is greater than 0110(binary) = 6(Decimal); that is, the battery voltage is greater than 6 V. Design the logic circuit and simulate it.
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Transcribed image text: An analog-to-digital converter is monitoring the dc voltage of a 12-V storage battery on an orbiting spaceship. The converter's output is a four-bit binary number, ABCD, corresponding to the battery voltage in steps of 1 V with A as the MSB. The converter's binary outputs are fed to a logic circuit that is to produce a HIGH output as long as the binary value is greater than 0110_2 = 6_10; that is, the battery voltage is greater than 6V. Set up the truth table for the logic circuit shown in Figure 1 Use Karna Ughhhh map to derive a Boolean expression for that logic circuit. Implement the logic circuits using minimum number of logic gates.
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