Chapter 4: Difference between revisions

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*What does the Reverse Active large-signal model look like? How about graphically?
*What does the Reverse Active large-signal model look like? How about graphically?
*For the Saturation region, why is 0.2V the magic number for V_CE?
*For the Saturation region, why is 0.2V the magic number for V_CE?
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Revision as of 12:22, 3 March 2010

Bipolar Junction Transistor

Base, Emitter, Collector
  • NPN: Not Pointing iN
  • PNP: Pointing iN Please
  • The arrow is for the emitter current.
  • For an NPN the current flows into the collector. For a PNP the current flows out of the collector.

How a BJT works

Large-Signal DC models

BJT Regions
Base-Emitter Collector-Base Region
FB FB Saturation
FB RB Active
RB RB Cutoff
RB FB Reverse Active
Region Constraints
Region NPN PNP
Saturation IB>0 and βIB>IC>0 IB>0 and βIB>IC>0
Active IB>0 and VCE>0.2 IB>0 and VCE<0.2
Cutoff VBE<0.5 and VBC<0.5 VBE>0.5 and VBC>0.5
  • Active: The normal mode of operation. This mode has the largest common-emitter current gain.
  • Reverse Active: The collector and emitter roles are reversed. Most BJTs are not symmetrical, thus α and β take on different values.
  • Saturation: High current from the emitter to collector. Logical "on".
  • Cutoff: Very little current flow. Logical "off".
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  • What are the Saturation, Reverse Active and Cutoff regions used for?
  • Why do we always seem to use a common emitter configuration?
  • What does the Reverse Active large-signal model look like? How about graphically?
  • For the Saturation region, why is 0.2V the magic number for V_CE?