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Question 49 of 88

Q.The emitter base junction of a given transistor is forward biased and its collector base junction is reverse biased. If the base current is increased, then its :

(a) VCEV_{CE} will increase
(b) ICI_C will decrease
(c) ICI_C will increase
(d) VCCV_{CC} will increase
Puducherry TnboardTamil Nadu HSC (DGE) Board 2017MCQ· 1mImportance★★★★★
56% · 49/88 Questions
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In active-mode operation (IC=βIBI_C=\beta I_B), raising the base current proportionally raises the collector current.

The bias condition described — emitter-base (EB) junction forward biased, collector-base (CB) junction reverse biased — is precisely the definition of a bipolar junction transistor (BJT) operating in its active region, the normal mode used for amplification. In this mode, a small current IBI_B injected into the thin, lightly doped base controls a much larger current ICI_C flowing from collector to emitter, related by the transistor's common-emitter current gain β\beta (or hFEh_{FE}):

IC=βIB.I_C = \beta I_B.

Physically, forward-biasing the EB junction injects majority carriers (electrons, in an npn transistor) from the emitter into the thin base region; because the base is thin and lightly doped, most of these carriers diffuse across it without recombining and are then swept into the collector by the strong reverse-bias field at the CB junction. The fraction of base current that must be supplied is fixed (mostly) by the transistor's construction (as β\beta), so increasing the base current IBI_B directly and proportionally increases the collector current ICI_C that this active-mode relation permits.

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