15. a. Determine the thermal voltage for a diode at a temperature of 20°C. b. For the same diode of part (a), find the diode current using Eq. 1.2 if I, = 40 nA, n = 2 (low value of Vp), and the applied bias voltage is 0.5 V.
15. a. Determine the thermal voltage for a diode at a temperature of 20°C. b. For the same diode of part (a), find the diode current using Eq. 1.2 if I, = 40 nA, n = 2 (low value of Vp), and the applied bias voltage is 0.5 V.
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![15. a. Determine the thermal voltage for a diode at a temperature of 20°C.
b. For the same diode of part (a), find the diode current using Eq. 1.2 if I, = 40 nA, n = 2 (low
value of Vp), and the applied bias voltage is 0.5 V.
16. Repeat Problem 15 for T = 100°C (boiling point of water). Assume that I, has increased to 5.0 µA.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe0d26358-013e-4ff2-9909-d31d2702fe94%2Ff7cfb03d-1b2f-4723-abb7-d91cce6cdfcb%2F2jqsgfy8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:15. a. Determine the thermal voltage for a diode at a temperature of 20°C.
b. For the same diode of part (a), find the diode current using Eq. 1.2 if I, = 40 nA, n = 2 (low
value of Vp), and the applied bias voltage is 0.5 V.
16. Repeat Problem 15 for T = 100°C (boiling point of water). Assume that I, has increased to 5.0 µA.
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