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In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3
(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.
The stable reading of the LED displays is (Answer up to the nearest integer)
    Correct answer is '13'. Can you explain this answer?
    Most Upvoted Answer
    In the following circuit, the comparators output is logic "1"...
    We have,
    or VDAC = 0.5b0 + b1 + 2b2 + 4b3
    The counter outputs will increase by 1 from 0000 till Vth > VDAC. The output of counter and VDAC is as shown below
    and when VADC = 6.5 V (at 1101), the output of AND is zero and the counter stops.
    The stable output of LED display is 13.
    Free Test
    Community Answer
    In the following circuit, the comparators output is logic "1"...
    We have,
    or VDAC = 0.5b0 + b1 + 2b2 + 4b3
    The counter outputs will increase by 1 from 0000 till Vth > VDAC. The output of counter and VDAC is as shown below
    and when VADC = 6.5 V (at 1101), the output of AND is zero and the counter stops.
    The stable output of LED display is 13.
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    In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer?
    Question Description
    In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer? for Electronics and Communication Engineering (ECE) 2024 is part of Electronics and Communication Engineering (ECE) preparation. The Question and answers have been prepared according to the Electronics and Communication Engineering (ECE) exam syllabus. Information about In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer? covers all topics & solutions for Electronics and Communication Engineering (ECE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer?.
    Solutions for In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer? in English & in Hindi are available as part of our courses for Electronics and Communication Engineering (ECE). Download more important topics, notes, lectures and mock test series for Electronics and Communication Engineering (ECE) Exam by signing up for free.
    Here you can find the meaning of In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer?, a detailed solution for In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer? has been provided alongside types of In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice In the following circuit, the comparators output is logic "1" if V1 > V2 and is logic "0" otherwise. The D / A conversion is done as per the relation VDAC = Volts, where b3(MSB), b1, b2 and b0 (LSB) are the counter outputs. The counter starts from the clear state.The stable reading of the LED displays is (Answer up to the nearest integer)Correct answer is '13'. Can you explain this answer? tests, examples and also practice Electronics and Communication Engineering (ECE) tests.
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