Consider the transistor inverter on the right driving a long cable, modelled as a 0.1uF capacitance. The input voltage vi = OV for t < 0s and 5V for t> 0s. Assume ß = 100, VBE,ON = 0.7V and VCE,SAT = 0.2. a) Determine v (0) b) Determine dvo(0+) dt c) Use the general step response formula to determine vo(t). Assume the transistor is initially forward active. General Step Response Formula: t Vo(t) = V₂ (∞) + [V₂ (0+) — Vo(∞)]e ReqC - Vi w RB = 10k 5V 1k Vo 0.1uF
Consider the transistor inverter on the right driving a long cable, modelled as a 0.1uF capacitance. The input voltage vi = OV for t < 0s and 5V for t> 0s. Assume ß = 100, VBE,ON = 0.7V and VCE,SAT = 0.2. a) Determine v (0) b) Determine dvo(0+) dt c) Use the general step response formula to determine vo(t). Assume the transistor is initially forward active. General Step Response Formula: t Vo(t) = V₂ (∞) + [V₂ (0+) — Vo(∞)]e ReqC - Vi w RB = 10k 5V 1k Vo 0.1uF
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Please solve all 3 subproblems. Thank you.
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Using solution from (c), how long until BJT goes into saturation. Was the forward active assumption correct?
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