You are asked to design a BJT inverter, as shown in Figure 2.b. The input voltage is equal to either zero (logic level 0) or 5 V (logic level 1), and Vcc = 5 V. The transistor has VBe = 0.6 V when it...


You are asked to design a BJT inverter, as shown in Figure 2.b. The input voltage<br>is equal to either zero (logic level 0) or 5 V (logic level 1), and Vcc = 5 V. The<br>transistor has VBe = 0.6 V when it is on and Vce (sat) = 0.2 V.<br>i)<br>Calculate the value of Rc to have Iç = 3 mA when the transistor is on.<br>ii)<br>Calculate the maximum value of Rp to make sure the transistor is in<br>saturation when it is on, assuming Bmin = 80 in the active mode.<br>+Vc<br>Re<br>Rg<br>Figure 2.b.<br>

Extracted text: You are asked to design a BJT inverter, as shown in Figure 2.b. The input voltage is equal to either zero (logic level 0) or 5 V (logic level 1), and Vcc = 5 V. The transistor has VBe = 0.6 V when it is on and Vce (sat) = 0.2 V. i) Calculate the value of Rc to have Iç = 3 mA when the transistor is on. ii) Calculate the maximum value of Rp to make sure the transistor is in saturation when it is on, assuming Bmin = 80 in the active mode. +Vc Re Rg Figure 2.b.

Jun 10, 2022
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