In this problem we are interested in evaluating how well the 0.7V Skimation works for the NPN BE junction. Given the NPN circuit to the right, the iterative method (applied to the BJT equation) to find vE for V1=0, 0.4, 0.6, 1.6, 2.2, and 3.0 volts. en your findings, for what values of V1 would you consider using the 0.7V roximation? You are given Is = 5E-14 A. Assume B = 30. Be sure to use the sistor equations and not the diode equations.

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In this problem, we are interested in evaluating how well the 0.7V approximation works for the NPN BE junction. Given the NPN circuit shown, use the iterative method (applied to the BJT equation) to find \( V_{BE} \) for \( V1 = 0, 0.4, 0.6, 1.1, 1.6, 2.2, \) and \( 3.0 \) volts.

Given your findings, for what values of \( V1 \) would you consider using the 0.7V approximation? You are given \( I_S = 5 \times 10^{-14} \) A. Assume \( \beta = 30 \). Be sure to use the transistor equations and not the diode equations.

---

**Diagram Description:**

The circuit consists of:

- A DC voltage source \( V1 \) connected to a grounded base.
- An NPN transistor with the collector connected to a 5V supply and a 1K resistor attached to the emitter (grounded).
Transcribed Image Text:In this problem, we are interested in evaluating how well the 0.7V approximation works for the NPN BE junction. Given the NPN circuit shown, use the iterative method (applied to the BJT equation) to find \( V_{BE} \) for \( V1 = 0, 0.4, 0.6, 1.1, 1.6, 2.2, \) and \( 3.0 \) volts. Given your findings, for what values of \( V1 \) would you consider using the 0.7V approximation? You are given \( I_S = 5 \times 10^{-14} \) A. Assume \( \beta = 30 \). Be sure to use the transistor equations and not the diode equations. --- **Diagram Description:** The circuit consists of: - A DC voltage source \( V1 \) connected to a grounded base. - An NPN transistor with the collector connected to a 5V supply and a 1K resistor attached to the emitter (grounded).
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