Explain parameters rπ, gm, ro from the input and output characteristics of BJT.
Question
Explain parameters r_π
, g_m
, r_o
from the input and output characteristics of BJT.
Solution
The parameters rπ, gm, and ro are key parameters in the small-signal model of a Bipolar Junction Transistor (BJT). Here's a step-by-step explanation of each:
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rπ (base-emitter resistance): This is the small-signal resistance looking into the base-emitter junction of the BJT when the base current is perturbed. It is given by the ratio of the thermal voltage (Vt) to the DC base current (Ib). The thermal voltage is approximately 26mV at room temperature. rπ is an important parameter because it determines the input impedance of the BJT.
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gm (transconductance): This is a measure of the sensitivity of the collector current to changes in the base-emitter voltage. It is given by the ratio of the change in collector current (ΔIc) to the change in base-emitter voltage (ΔVbe). In other words, gm = ΔIc/ΔVbe. The transconductance is a key parameter because it determines the gain of the BJT.
-
ro (output resistance): This is the small-signal resistance looking into the collector of the BJT when the collector current is perturbed. It is given by the ratio of the thermal voltage (Vt) to the DC collector current (Ic). The output resistance is an important parameter because it determines the output impedance of the BJT.
These parameters are used to analyze the AC behavior of BJTs. They are derived from the DC characteristics of the BJT and are used to create a linearized model of the BJT for small-signal analysis.
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