166. What is the output voltage?
(a) 15 V
(b) 5 V
(c) –5 V
(d) –15 V
167. What is the output waveform of the circuit?
(a) sine wave
(b) square wave
(c) sawtooth wave
(d) triangle wave
168. With a differential gain of 50,000 and a common-mode gain of 2, what is the common-mode rejection ratio?
(a) –87.9 dB
(b) –43.9 dB
(c) 43.9 dB
(d) 87.9 dB
169. How many leads does the TO-5 metal can package of an operational amplifier have?
(a) 8, 10, or 12
(b) 6, 8, or 10
(c) 8 or 14
(d) 8 or 16
170. A circuit that uses an amplifier with passive filter elements is called a(n):
(a) relaxation oscillator
(b) signal generator
(c) differential amplifier
(d) active filter
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Operational Amplifier Fundamentals » Exercise - 3 101. An operational amplifier has a ________ input impedance and a ________ output impedance. (a) high, low (b) high, high (c) low, low (d) low, high 102. What is the difference voltage if the inputs are an ideal opposite signal? (a) The differential gain times twice the input signal. (b) The differential gain times the input signal. (c) The common-mode gain times twice the input signal. (d) The common-mode gain times the input signal. 103. At what input voltage level does the output voltage level become numerically equal to the value of the common-mode gain of the amplifier? (a) Vi1 = –Vi2 = 0.25 V (b) Vi1 = –Vi2 = 0.50 V (c) Vi1 = –Vi2 = 0.75 V (d) Vi1 = –Vi2 = 1.00 V 104. What is the difference output voltage of any signals applied to the input terminals? (a) The differential gain times the difference input voltage. (b) The common-mode gain times the common input voltage. (c) The sum of the differential gain times the difference input voltage and the common-mode gain times the common input voltage. (d) The difference of the differential gain times the difference input voltage and the common-mode gain times the common input voltage. 105.…
555555555580. Which of the following is (are) the result of gain reduction by a feedback? (a) The amplifier voltage gain is a more stable and precise value. (b) The input impedance of the circuit is increased over that of the op-amp alone. (c) The output impedance is reduced over that of the op-amp alone. (d) All of the above