Capacitor Stocks List

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

Capacitor Stocks Recent News

Date Stock Title
Jun 29 ITGR Integer Holdings (NYSE:ITGR) Has Some Way To Go To Become A Multi-Bagger
Jun 28 ITGR Why Integer (ITGR) is a Top Value Stock for the Long-Term
Jun 28 HEI Heico Corporation (HEI) Just Flashed Golden Cross Signal: Do You Buy?
Jun 28 HEI Here's How Much a $1000 Investment in Heico Corporation Made 10 Years Ago Would Be Worth Today
Jun 27 LRCX Chip Gear Stocks Rise On Micron's Capex Plans
Jun 27 ITGR Integer Schedules Second Quarter 2024 Earnings Release and Conference Call for July 25, 2024
Jun 27 HEI Why Is Heico (HEI) Up 5.7% Since Last Earnings Report?
Jun 27 ARW Arrow Electronics (ARW) Unveils Innovative EV Charging Solution
Jun 27 LRCX Lam Research Highlights its Progress to Create a Better World Through Semiconductor Innovation in 2023 ESG Report
Jun 27 HEI 4 Stocks to Watch That Recently Announced Dividend Hikes
Jun 27 KRO Why You Should Add Kronos Worldwide (KRO) to Your Portfolio Now
Jun 27 LRCX Q1 Earnings Highs And Lows: Marvell Technology (NASDAQ:MRVL) Vs The Rest Of The Semiconductor Manufacturing Stocks
Jun 26 LRCX Are You Looking for a Top Momentum Pick? Why Lam Research (LRCX) is a Great Choice
Jun 26 KRO Are Basic Materials Stocks Lagging ATI Inc. (ATI) This Year?
Jun 26 LRCX A Look Back at Semiconductor Manufacturing Stocks' Q1 Earnings: Amkor (NASDAQ:AMKR) Vs The Rest Of The Pack
Jun 25 HEI A Look At The Fair Value Of HEICO Corporation (NYSE:HEI)
Jun 25 MTSI MACOM Technology Solutions Holdings: Why A Change In Direction Could Be Near
Jun 25 HEI The Zacks Analyst Blog Highlights Elbit, AerSale, AAR, HEICO and Curtiss-Wright
Capacitor

A capacitor is a passive two-terminal electronic component that stores electrical energy in an electric field. The effect of a capacitor is known as capacitance. While some capacitance exists between any two electrical conductors in proximity in a circuit, a capacitor is a component designed to add capacitance to a circuit. The capacitor was originally known as a condenser or condensator. The original name is still widely used in many languages, but not commonly in English.
The physical form and construction of practical capacitors vary widely and many capacitor types are in common use. Most capacitors contain at least two electrical conductors often in the form of metallic plates or surfaces separated by a dielectric medium. A conductor may be a foil, thin film, sintered bead of metal, or an electrolyte. The nonconducting dielectric acts to increase the capacitor's charge capacity. Materials commonly used as dielectrics include glass, ceramic, plastic film, paper, mica, and oxide layers. Capacitors are widely used as parts of electrical circuits in many common electrical devices. Unlike a resistor, an ideal capacitor does not dissipate energy.
When two conductors experience a potential difference, for example, when a capacitor is attached across a battery, an electric field develops across the dielectric, causing a net positive charge to collect on one plate and net negative charge to collect on the other plate. No current actually flows through the dielectric. However, there is a flow of charge through the source circuit. If the condition is maintained sufficiently long, the current through the source circuit ceases. If a time-varying voltage is applied across the leads of the capacitor, the source experiences an ongoing current due to the charging and discharging cycles of the capacitor.
Capacitance is defined as the ratio of the electric charge on each conductor to the potential difference between them. The unit of capacitance in the International System of Units (SI) is the farad (F), defined as one coulomb per volt (1 C/V). Capacitance values of typical capacitors for use in general electronics range from about 1 picofarad (pF) (10−12 F) to about 1 millifarad (mF) (10−3 F).
The capacitance of a capacitor is proportional to the surface area of the plates (conductors) and inversely related to the gap between them. In practice, the dielectric between the plates passes a small amount of leakage current. It has an electric field strength limit, known as the breakdown voltage. The conductors and leads introduce an undesired inductance and resistance.
Capacitors are widely used in electronic circuits for blocking direct current while allowing alternating current to pass. In analog filter networks, they smooth the output of power supplies. In resonant circuits they tune radios to particular frequencies. In electric power transmission systems, they stabilize voltage and power flow. The property of energy storage in capacitors was exploited as dynamic memory in early digital computers.

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