N₂-Na No x₂ = 30 μm. 7.29 Consider a silicon pn junction with the doping profile shown in Figure P7.29. T = 300 K. (a) C

Business, Finance, Economics, Accounting, Operations Management, Computer Science, Electrical Engineering, Mechanical Engineering, Civil Engineering, Chemical Engineering, Algebra, Precalculus, Statistics and Probabilty, Advanced Math, Physics, Chemistry, Biology, Nursing, Psychology, Certifications, Tests, Prep, and more.
Post Reply
answerhappygod
Site Admin
Posts: 899603
Joined: Mon Aug 02, 2021 8:13 am

N₂-Na No x₂ = 30 μm. 7.29 Consider a silicon pn junction with the doping profile shown in Figure P7.29. T = 300 K. (a) C

Post by answerhappygod »

 1
1 (71.63 KiB) Viewed 30 times
N₂-Na No x₂ = 30 μm. 7.29 Consider a silicon pn junction with the doping profile shown in Figure P7.29. T = 300 K. (a) Calculate the applied reverse-biased voltage required so that the space charge region extends entirely through the p region. (b) Determine the space charge width into the n' region with the reverse-biased voltage calculated in part (a). (c) Cal- culate the peak electric field for this applied voltage. (N₁-N₂) (cm (N₁-N₂) (cm³) +5 x 10¹5 50 x=0 -1014 Figure P7.28 | Figure for Problem 7.28. xo Figure P7.33| Figure for Problem 7.33. 1016 1014 0 x (um) -10% Figure P7.29 | Figure for Problem 7.29. Problems 27 (N-N₂) (cm) -1 x (μm) -5 x 10¹5 i region- Figure P7.34 | Figure for Problem 7.34. 5x 10¹5 +2
Join a community of subject matter experts. Register for FREE to view solutions, replies, and use search function. Request answer by replying!
Post Reply