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Physics · Ch 14 — Semiconductor Electronics: Materials, Devices and Simple Circuits

Summary

Summary

  • Energy bands: In solids, discrete atomic levels broaden into bands — the valence band (filled with valence electrons) and the conduction band (empty or partially filled). The forbidden energy gap EgE_g determines whether a material is an insulator (Eg>3 eVE_g > 3\ \text{eV}), a semiconductor (Eg≈1 eVE_g \approx 1\ \text{eV}), or a conductor (bands overlap).

  • Intrinsic semiconductors: Pure Si or Ge have equal electron (nen_e) and hole (nhn_h) concentrations: ne=nh=nin_e = n_h = n_i. Conductivity is low and increases with temperature.

  • Extrinsic semiconductors: Doping introduces donor (pentavalent, e.g., P, As) or acceptor (trivalent, e.g., B, Al) impurities. n-type has electrons as majority carriers (ne≫nhn_e \gg n_h); p-type has holes as majority carriers (nh≫nen_h \gg n_e).

  • p-n junction: Formed by joining p-type and n-type semiconductors. At equilibrium, a depletion region (with no mobile carriers) and a built-in potential barrier (V0V_0, about 0.7 V0.7\ \text{V} for Si, 0.3 V0.3\ \text{V} for Ge) appear.

  • Forward bias: p-side connected to positive terminal, n-side to negative. The barrier height reduces, and current flows once the applied voltage exceeds the knee voltage (≈0.7 V\approx 0.7\ \text{V} for Si). Current grows exponentially with voltage.

  • Reverse bias: p-side negative, n-side positive. The barrier height increases, and only a tiny reverse saturation current I0I_0 (due to minority carriers) flows until breakdown occurs at high reverse voltage.

  • Rectification: A p-n junction diode acts as a half-wave rectifier (conducts only during one half-cycle) or a full-wave rectifier (uses two diodes or a bridge to conduct both half-cycles). The output is pulsating DC, smoothed by a capacitor filter.

  • Zener diode: A heavily doped diode designed to operate in the reverse breakdown region (Zener voltage VZV_Z). It maintains a nearly constant voltage across it — used as a voltage regulator.

  • Optoelectronic devices:

    • Light Emitting Diode (LED): Forward-biased p-n junction that emits light (wavelength λ=hc/Eg\lambda = hc/E_g). Used in displays and indicators.
    • Photodiode: Reverse-biased; current increases when light falls on it (due to generation of electron-hole pairs). Used as a light sensor.
    • Solar cell: Converts light energy into electrical energy. The open-circuit voltage VocV_{oc} and short-circuit current IscI_{sc} define its performance.
  • Transistor (BJT): Three-layer device (npn or pnp) with three terminals: emitter (heavily doped), base (thin, lightly doped), collector (moderately doped). Operates in active region (emitter-base forward biased, collector-base reverse biased) for amplification.

  • Transistor as an amplifier: In common-emitter configuration, a small change in base current ΔIB\Delta I_B produces a large change in collector current ΔIC\Delta I_C. The current gain β=ΔIC/ΔIB\beta = \Delta I_C / \Delta I_B (typically 50–300). Voltage gain AV=β×(RC/Rin)A_V = \beta \times (R_C / R_{in}). …