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Semiconductor Electronics: Materials, Devices and Simple Circuits

Karnataka Board · Class 12 · Physics

Flashcards for Semiconductor Electronics: Materials, Devices and Simple Circuits — Karnataka Board Class 12 Physics. Quick Q&A cards covering key concepts, definitions, and formulas.

43 questions20 flashcards5 concepts
20 Flashcards
Card 1Classification of Materials

What are the three main classifications of materials based on electrical conductivity? Give their resistivity ranges.

Answer

1. **Metals**: Very low resistivity (10⁻² - 10⁻⁸ Ω m), high conductivity (10² - 10⁸ S m⁻¹) 2. **Semiconductors**: Intermediate resistivity (10⁻⁵ - 10⁶ Ω m), intermediate conductivity (10⁵ - 10⁻⁶ S m⁻¹

Card 2Energy Band Theory

What is the energy gap (Eg) for metals, semiconductors, and insulators? How does this determine their conductivity?

Answer

**Metals**: Eg ≈ 0 (conduction and valence bands overlap) **Semiconductors**: Eg = 0.2 to 3 eV (small gap allows thermal excitation) **Insulators**: Eg > 3 eV (large gap prevents electron excitation)

Card 3Intrinsic Semiconductors

Define intrinsic semiconductor and explain the relationship between electron and hole concentrations.

Answer

**Intrinsic semiconductor**: Pure semiconductor without any impurities. Charge carriers (electrons and holes) are generated only by thermal excitation. **Key relationship**: ne = nh = ni where: - ne

Card 4Intrinsic Semiconductors

What is a hole in a semiconductor? How does hole conduction occur?

Answer

**Hole**: A vacancy left behind when an electron breaks free from a covalent bond. It behaves as a positively charged particle with charge +q. **Hole conduction**: When an electron from a neighboring

Card 5Extrinsic Semiconductors

What is doping? Why is it necessary for practical semiconductor devices?

Answer

**Doping**: Deliberate addition of small amounts (few ppm) of suitable impurities (dopants) to pure semiconductors to increase conductivity. **Necessity**: - Pure semiconductors have very low conduct

Card 6n-type Semiconductors

Explain n-type semiconductor formation. What are donor impurities?

Answer

**n-type semiconductor**: Formed by doping Si or Ge with pentavalent impurities (As, Sb, P). **Formation process**: - Pentavalent atom has 5 valence electrons - 4 electrons form covalent bonds with S

Card 7p-type Semiconductors

Explain p-type semiconductor formation. What are acceptor impurities?

Answer

**p-type semiconductor**: Formed by doping Si or Ge with trivalent impurities (B, Al, In). **Formation process**: - Trivalent atom has 3 valence electrons - Forms covalent bonds with only 3 Si neighb

Card 8Extrinsic Semiconductors

State the mass action law for semiconductors. What does it signify?

Answer

**Mass Action Law**: ne × nh = ni² This relationship holds for both intrinsic and extrinsic semiconductors in thermal equilibrium. **Significance**: - Product of electron and hole concentrations is

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