The current flowing in a PN junction diode at room temperature is 15mA, when the forward bias voltage of 0.5V is applied across the diode. The leakage (reverse) current at 27°C temperature is 0.75µA....


The current flowing in a PN junction diode at room<br>temperature is 15mA, when the forward bias voltage<br>of 0.5V is applied across the diode. The leakage<br>(reverse) current at 27°C temperature is 0.75µA.<br>Calculate the ideality factor n. (q is the electronic<br>C), k is Boltzmann's constant<br>-19<br>charge (1.6×10<br>-23<br>(1.38×10 J/K))<br>a. 1.95<br>b. 1.77<br>c. 1.8<br>d. 2.0<br>Calculate the reverse current of P-N diode, if a<br>forward current of 10mA is flowing through it if<br>supplied with 0.7V at 26.5°C room temperature.<br>Assume ideality factor, n=2.<br>a. 2.5nA<br>b. 3nА<br>c. 2.56nA<br>d. 13.05nA<br>

Extracted text: The current flowing in a PN junction diode at room temperature is 15mA, when the forward bias voltage of 0.5V is applied across the diode. The leakage (reverse) current at 27°C temperature is 0.75µA. Calculate the ideality factor n. (q is the electronic C), k is Boltzmann's constant -19 charge (1.6×10 -23 (1.38×10 J/K)) a. 1.95 b. 1.77 c. 1.8 d. 2.0 Calculate the reverse current of P-N diode, if a forward current of 10mA is flowing through it if supplied with 0.7V at 26.5°C room temperature. Assume ideality factor, n=2. a. 2.5nA b. 3nА c. 2.56nA d. 13.05nA

Jun 10, 2022
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