MOS capacitor
Core structure enabling the MOSFET and modern integrated circuits.
Last updated
The MOS capacitor is a fundamental structure in semiconductor electronics, consisting of a metal or polysilicon gate, an insulating layer of silicon dioxide or other dielectric, and a semiconductor substrate. It is the core component of the metal–oxide–semiconductor field-effect transistor (MOSFET), which revolutionized electronics by enabling amplification and switching of signals with minimal input current.
Quick Facts
- Type
- Electronic component
- Field
- Semiconductor physics, electronics
- Key developers
- Mohamed Atalla, Dawon Kahng (Bell Labs, 1959)
- Related to
- MOSFET, CMOS logic
- Material
- Silicon dioxide (SiO2) on silicon substrate
- Function
- Forms inversion layer for current control
Facts from the source article.
Lore & Background
The MOS capacitor structure is obtained by growing a layer of silicon dioxide on top of a silicon substrate, commonly by thermal oxidation, and depositing a layer of metal or polycrystalline silicon. As silicon dioxide is a dielectric material, its structure is equivalent to a planar capacitor, with one of the electrodes replaced by a semiconductor. When a voltage is applied across a MOS structure, it modifies the distribution of charges in the semiconductor, creating a depletion layer and, at sufficient voltage, an inversion layer that allows current to flow.
Reader's Guide
The MOS capacitor is the heart of the MOSFET, which is by far the most common transistor in digital circuits, with billions included in memory chips or microprocessors. Its development was enabled by the work of Carl Frosch and Lincoln Derick, who accidentally grew a layer of silicon dioxide over a silicon wafer in 1955, observing surface passivation effects.
This led to the first planar transistors and ultimately to the demonstration of a working MOS device by Mohamed Atalla and Dawon Kahng at Bell Labs in 1960. The MOS capacitor's ability to create an inversion layer under applied voltage allows the MOSFET to control current flow with almost no input current under steady-state conditions, a key advantage over bipolar junction transistors. This structure also underpins CMOS logic, where complementary pairs of MOS transistors achieve very low power consumption.
Did You Know?
- When a positive voltage is applied to the gate of a p-type MOS capacitor, holes are repelled, creating a depletion region of immobile acceptor ions.
Frequently Asked Questions
Who is MOS capacitor?
The MOS capacitor is a three-layer electronic structure first demonstrated by Mohamed Atalla and Dawon Kahng at Bell Labs in 1959. It pairs a metal or polysilicon gate electrode with a thin silicon-dioxide insulator sitting on top of a silicon substrate.
What is MOS capacitor known for?
It acts as a voltage-controlled gate that forms an inversion layer in the semiconductor, letting a tiny input signal switch or amplify a much larger current. This mechanism is the beating heart of every MOSFET and, by extension, every modern integrated circuit.
What materials make up MOS capacitor?
The classic construction uses a metal or polysilicon gate, a silicon-dioxide (SiO₂) dielectric layer, and a doped silicon substrate. Modern variants swap in high-k dielectrics, but the fundamental three-layer principle remains unchanged.
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Sources
Compiled from Wikipedia and the sources listed below. Text from Wikipedia is available under CC BY-SA 4.0; this entry is adapted from it.
- Wikipedia: MOSFET (CC BY-SA 4.0).
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