Trade Resources Industry Views New 2525 MLCC for RF Applications Was Launched by Vishay

New 2525 MLCC for RF Applications Was Launched by Vishay

Vishay Intertechnology, Inc. (NYSE: VSH) is adding to its QUAD HIFREQ series of high-power surface-mount multilayer ceramic chipThe main differences between ceramic dielectricThe insulating material between the plates of the capacitor. The material is chosen for its ability to permit electrostatic attraction and repulsion to take place across it. The material will have the property that energy required to establish an electric field is recoverable in whole or in part, as electric energy. In other words, a good dielectric material is a poor conductor of electricity while being an effective supporter of electrostatic fields. types are the temperature coefficient of capacitanceThat property of a system of conductors and dielectrics which permits the storage of electricity when potential difference exists between the conductors. Its value is expressed as the ratio of a quantity of electricity to a potential difference. A capacitance value is always positive., and the dielectricThe insulating material between the plates of the capacitor. The material is chosen for its ability to permit electrostatic attraction and repulsion to take place across it. The material will have the property that energy required to establish an electric field is recoverable in whole or in part, as electric energy. In other words, a good dielectric material is a poor conductor of electricity while being an effective supporter of electrostatic fields. loss.Ceramic capacitors tend to have low inductance because of their small size. capacitors (MLCCs) with a new device in the quad 2525 case size.

Designed for high-frequencyThe number of complete cycles or vibrations per unit of time. Rate of alternation in an AC current. Expressed in cycles per second or hertz (Hz). RF applications in magnetic resonance imaging (MRI) coils and generators, RF instrumentation, telecom base stations, lasers, and military communications systems, the QUAD HIFREQ 2525 case device features an ultra-high Q ( > 4000 at 10 MHz, 1pF), ultra-low ESRLow Equivalent Series ResistanceLow Equivalent Series ResistanceLow Equivalent Series Resistance down to 0.018 ohmA unit or resistance in which a current of one ampere flows when one volt is connected across it, and DC voltage ratings up to 3600 V.

Based on an extremely stable ceramic dielectricThe insulating material between the plates of the capacitor. The material is chosen for its ability to permit electrostatic attraction and repulsion to take place across it. The material will have the property that energy required to establish an electric field is recoverable in whole or in part, as electric energy. In other words, a good dielectric material is a poor conductor of electricity while being an effective supporter of electrostatic fields. and offering high serial resonant frequencyThe number of complete cycles or vibrations per unit of time. Rate of alternation in an AC current. Expressed in cycles per second or hertz (Hz). (SRF) and parallel resonant frequencyThe number of complete cycles or vibrations per unit of time. Rate of alternation in an AC current. Expressed in cycles per second or hertz (Hz). (PRF), the Vishay Vitramon device released today is designed to provide reliable performance in critical applications such as UHF and microwave RF power amplifiers, filter and impedanceThe total opposition that a circuit offers to the flow of alternating current or any other varying current at a particular frequencyThe number of complete cycles or vibrations per unit of time. Rate of alternation in an AC current. Expressed in cycles per second or hertz (Hz).. It is a combination of resistance R and reactance X, measured in ohms. matching networks, timing circuits, mixers, and oscillators.

The QUAD HIFREQ 2525 device offers a broad working voltage from 300 V to 3600 V and a wide capacitanceThat property of a system of conductors and dielectrics which permits the storage of electricity when potential difference exists between the conductors. Its value is expressed as the ratio of a quantity of electricity to a potential difference. A capacitance value is always positive. range from 1.0 pFUnit of capacitance. The basic unit of a measure of a capacitor. A capacitor charged to 1 volt with a charge of 1 coulombA coulomb is the unit of electric charge. It is named after Charles-Augustin de Coulomb.1 coulomb is the amount of electric charge transported by a current of 1 ampere in 1 second. It can also be defined in terms of capacitance and voltage, where one coulomb is defined as one farad of capacitance times one volt of electric potential difference. would have a capacitance of 1 farad. 1 microF = .000001 Farads. to 2700 pFUnit of capacitance. The basic unit of a measure of a capacitor. A capacitor charged to 1 volt with a charge of 1 coulombA coulomb is the unit of electric charge. It is named after Charles-Augustin de Coulomb.1 coulomb is the amount of electric charge transported by a current of 1 ampere in 1 second. It can also be defined in terms of capacitance and voltage, where one coulomb is defined as one farad of capacitance times one volt of electric potential difference. would have a capacitance of 1 farad. 1 microF = .000001 Farads.. The device offers tight tolerances to +/- 0.1 pFUnit of capacitance. The basic unit of a measure of a capacitor. A capacitor charged to 1 volt with a charge of 1 coulombA coulomb is the unit of electric charge. It is named after Charles-Augustin de Coulomb.1 coulomb is the amount of electric charge transported by a current of 1 ampere in 1 second. It can also be defined in terms of capacitance and voltage, where one coulomb is defined as one farad of capacitance times one volt of electric potential difference. would have a capacitance of 1 farad. 1 microF = .000001 Farads., an excellent aging rate of 0 % per decade, and an operating temperature range of -55 °C to +125 °C.

Manufactured in noble metal electrodeA solid electric conductor through which an electric current enters or leaves in a medium (NME) technology with a wet build process, the QUAD HIFREQ 2525 capacitor is available with RoHS-compliant nickel barrier terminations with 100 % matte tin plate for reflow assembly (code “X”), and with a lead-bearing (minimum 4 %) termination finish (code “L”). The device is halogen-free and conforms to Vishay Green standards.

Source: http://www.capacitorindustry.com/vishay-launches-new-2525-mlcc-for-rf-applications
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Vishay Launches New 2525 MLCC for RF Applications