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Researchers should cite this work as follows:

  • Muhammad A. Alam (2009), "ECE 606 Lecture 28: BJT Design I," https://nanohub.org/resources/5834.

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EE 115, Purdue University, West Lafayette, IN

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ECE 606 Lecture 28: BJT Design I
  • ECE606: Solid State Devices Lecture 28: BJT Design (I) 1. ECE606: Solid State Devices Le… 0
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  • Outline 2. Outline 37.93333333333333
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  • Ebers Moll Model 3. Ebers Moll Model 158.8
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  • Gummel Plot and Output Characteristics 4. Gummel Plot and Output Charact… 379.33333333333331
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  • Current Gain 5. Current Gain 638.86666666666667
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  • Current Gain 6. Current Gain 848.93333333333328
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  • How to make a Good Silicon Transistor 7. How to make a Good Silicon Tra… 918.8
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  • Doping for Gain … 8. Doping for Gain … 1139.2666666666667
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  • Outline 9. Outline 1192.9
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  • Problem of Low Base Doping: Current Crowding 10. Problem of Low Base Doping: Cu… 1201.9
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  • Low Base Doping: Non-uniform Turn-on 11. Low Base Doping: Non-uniform T… 1425.9
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  • Problem of Low Base Doping: Punch-through 12. Problem of Low Base Doping: Pu… 1557.5333333333333
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  • Problem of low Base-doping: Base Width Modulation 13. Problem of low Base-doping: Ba… 1690.1333333333334
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  • Problem of Low Base-doping: Early Voltage 14. Problem of Low Base-doping: Ea… 1776.9
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  • Punch-through and Early Voltage 15. Punch-through and Early Voltag… 2039.9333333333334
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  • Outline 16. Outline 2244.8
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  • Collector Doping 17. Collector Doping 2248.3666666666668
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  • … but (!) Kirk Effect and Base Pushout 18. … but (!) Kirk Effect and Ba… 2329.9333333333334
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  • Kirk Effect and Base Pushout 19. Kirk Effect and Base Pushout 2605.7333333333331
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  • Kirk Effect and Base Pushout 20. Kirk Effect and Base Pushout 2657.7333333333331
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  • Perhaps High Doping in Emitter? 21. Perhaps High Doping in Emitter… 2771.0666666666666
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  • Summary 22. Summary 2873.6333333333332
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