A 2 V (DC) signal with internal resistance of 10 k2 needs to be amplified to drive a red LED which connected to limiting resistor, R1. The LED has 2.0 V forward bias voltage and with maximum operating current of about 25 mA. Design and draw non-inverting amplifier circuit using Op-Amp LM324 – Figure 2 (single source supply) with voltage supply V, is 12V and another pin is grounded for above application. Choose suitable value for Rf, R and Op-amp gain to ensure Vout is at maximum voltage and LED can operate with maximum operation current. 2. Vs - 12V +V LM324 Vout -V Figure 2

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
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Publisher:Robert L. Boylestad
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A 2 V (DC) signal with internal resistance of 10 k2 needs to be amplified to drive a red
LED which connected to limiting resistor, R1. The LED has 2.0 V forward bias voltage and
with maximum operating current of about 25 mA. Design and draw non-inverting amplifier
circuit using Op-Amp LM324 – Figure 2 (single source supply) with voltage supply Vs is
12V and another pin is grounded for above application. Choose suitable value for Rf, R
and Op-amp gain to ensure Vout is at maximum voltage and LED can operate with
maximum operation current.
2.
Vs = 12V
+V
LM324
Vout
-V
Figure 2
Transcribed Image Text:A 2 V (DC) signal with internal resistance of 10 k2 needs to be amplified to drive a red LED which connected to limiting resistor, R1. The LED has 2.0 V forward bias voltage and with maximum operating current of about 25 mA. Design and draw non-inverting amplifier circuit using Op-Amp LM324 – Figure 2 (single source supply) with voltage supply Vs is 12V and another pin is grounded for above application. Choose suitable value for Rf, R and Op-amp gain to ensure Vout is at maximum voltage and LED can operate with maximum operation current. 2. Vs = 12V +V LM324 Vout -V Figure 2
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