EE2002-ANALOG ELECTRONICS (TEL) (Part 1: P02A_Diode-Average) 17: P02A_Q25 Given the empirical diode junction equation V₂ = nV In with V₁ = 26 mV, Is = 3.9x10-15 A. Determine the Q-points I₁ = mA and V₂ = ID Is V of the diode D, in the Figure Q25. (Answer to 3 decimal places.) R₂ 9kQ 12V www www Answer: ID Mark Now! R₁ 6kQ D₁ R3 2kQ W R₁ 6kQ Figure Q25 - 4V VD (correct to 3 decimal places)
EE2002-ANALOG ELECTRONICS (TEL) (Part 1: P02A_Diode-Average) 17: P02A_Q25 Given the empirical diode junction equation V₂ = nV In with V₁ = 26 mV, Is = 3.9x10-15 A. Determine the Q-points I₁ = mA and V₂ = ID Is V of the diode D, in the Figure Q25. (Answer to 3 decimal places.) R₂ 9kQ 12V www www Answer: ID Mark Now! R₁ 6kQ D₁ R3 2kQ W R₁ 6kQ Figure Q25 - 4V VD (correct to 3 decimal places)
Chapter59: Motor Startup And Troubleshooting Basics
Section: Chapter Questions
Problem 12SQ: How is a solid-state diode tested? Explain.
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Transcribed Image Text:EE2002-ANALOG ELECTRONICS (TEL) (Part 1: P02A_Diode-Average)
17: P02A_Q25
Given the empirical diode junction equation V₂ = nV In with V₁ = 26 mV, Is = 3.9x10-15 A. Determine the Q-points I₁ =
mA and V₂ =
ID
Is
V of the diode D, in the Figure Q25. (Answer to 3 decimal places.)
R₂
9kQ
12V
www
www
Answer: ID
Mark Now!
R₁ 6kQ
D₁
R3 2kQ
W
R₁
6kQ
Figure Q25
- 4V
VD
(correct to 3 decimal places)
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