Semiconductor Devices Stocks List

Related ETFs - A few ETFs which own one or more of the above listed Semiconductor Devices stocks.

Semiconductor Devices Stocks Recent News

Date Stock Title
May 17 AMAT What the Options Market Tells Us About Applied Mat
May 17 AMAT Applied Materials (AMAT) Q2 Earnings & Revenues Top Estimates
May 17 AMAT Dow Jones Holds Strong Near 40,000; GameStop Slammed On Share Offering, But Reddit Jumps On OpenAI Pact
May 17 AMAT Applied Materials earnings reveal AI chip demand
May 17 AMAT Microsoft, Meta Platforms, Applied Materials, and Other Tech Stocks in Focus Today
May 17 DD DuPont pops to fresh two-year high as Jefferies raises to Buy
May 17 AMAT Stock Market Hits Highs On Cooling Inflation; Walmart Jumps On Earnings: Weekly Review
May 17 AMAT Applied Materials: Q2 Earnings Results Simply Not Good Enough
May 17 DD Robinhood upgraded, Baidu downgraded: Wall Street's top analyst calls
May 17 AMAT Applied Materials gets renewed vote of confidence from Wall Street after Q2 results
May 17 AMAT These Analysts Boost Their Forecasts On Applied Materials After Upbeat Results
May 17 AMAT Walmart To Rally Over 17%? Here Are 10 Top Analyst Forecasts For Friday
May 17 AMAT Applied Materials to Participate in Upcoming Investor Conferences
May 17 AMAT Q2 2024 Applied Materials Inc Earnings Call
May 17 AMAT What's Going On With Applied Materials Stock Today?
May 17 AMAT Applied Materials Offers Fiscal Third-Quarter Outlook in Line With Street Views
May 17 AMAT Applied Materials, RBC Bearings And 3 Stocks To Watch Heading Into Friday
May 17 AMAT Reddit, GameStop, Take-Two Interactive, Applied Materials, Tesla On Investors' Radars As Dow Hits Historic 40K Milestone
May 17 AMAT Applied Materials (AMAT) Q2 2024 Earnings Call Transcript
May 17 AMAT Dow Jones Futures: Walmart, Tesla Rival Join Nvidia In Buy Areas With Market Rally At Highs
Semiconductor Devices

Semiconductor devices are electronic components that exploit the electronic properties of semiconductor material, principally silicon, germanium, and gallium arsenide, as well as organic semiconductors. Semiconductor devices have replaced thermionic devices (vacuum tubes) in most applications. They use electronic conduction in the solid state as opposed to the gaseous state or thermionic emission in a high vacuum.
Semiconductor devices are manufactured both as single discrete devices and as integrated circuits (ICs), which consist of a number ā€“ from a few (as low as two) to billions ā€“ of devices manufactured and interconnected on a single semiconductor substrate, or wafer.
Semiconductor materials are useful because their behavior can be easily manipulated by the addition of impurities, known as doping. Semiconductor conductivity can be controlled by the introduction of an electric or magnetic field, by exposure to light or heat, or by the mechanical deformation of a doped monocrystalline grid; thus, semiconductors can make excellent sensors. Current conduction in a semiconductor occurs via mobile or "free" electrons and holes, collectively known as charge carriers. Doping a semiconductor such as silicon with a small proportion of an atomic impurity, such as phosphorus or boron, greatly increases the number of free electrons or holes within the semiconductor. When a doped semiconductor contains excess holes it is called "p-type", and when it contains excess free electrons it is known as "n-type", where p (positive for holes) or n (negative for electrons) is the sign of the charge of the majority mobile charge carriers. The semiconductor material used in devices is doped under highly controlled conditions in a fabrication facility, or fab, to control precisely the location and concentration of p- and n-type dopants. The junctions which form where n-type and p-type semiconductors join together are called pā€“n junctions.
Semiconductor devices made per year have been growing by 9.1% on average since 1978, and shipments in 2018 are predicted for the first time to exceed 1 trillion, meaning that well over 7 trillion has been made to date, in just in the decade prior.

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