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Capacitors using preformed dielectric

a dielectric and capacitor technology, applied in the direction of electrolytic capacitors, fixed capacitor details, fixed capacitors, etc., can solve the problems of low storage density, impractical mass and thermal complexity, and deliver a relatively small current, and achieve high dielectric constant, high breakdown voltage, and high relative permittivity

Inactive Publication Date: 2010-08-05
SPACE CHARGE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0009]Devices for storing energy at a high density are described. The devices include an electrode preformed to present a high exposed area onto which a dielectric is formed. The dielectric material has

Problems solved by technology

Though basic batteries have a high energy density, they can only deliver a relatively small current since the current must be generated by a chemical reaction occurring within each storage cell.
Superconducting magnetic energy storage (SMES) is an alternative, but still suffers from a low storage density combined with impractical mass and thermal complexities.

Method used

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Examples

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Embodiment Construction

[0020]Devices for storing energy at a high density are described. The devices include an electrode preformed to present a high exposed area onto which a dielectric is formed. The dielectric material has a high dielectric constant (high relative permittivity) and a high breakdown voltage, allowing a high voltage difference between paired electrodes to effect a high stored energy density in one embodiment.

[0021]The quantity of energy stored in a capacitor is proportional to the capacitance which, in turn, is proportional to the contact area between the dielectric material and the electrodes as well as the effective relative permittivity of the dielectric material between the two electrodes. The electric double-layer capacitor (EDLC) described above owes its relatively high energy storage capacity to an increased effective surface area of the electrodes, which creates increased capacitance. However, the EDLC design is not conducive to operation at elevated voltages since the electric f...

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Abstract

Devices for storing energy at a high density are described. The devices include an electrode preformed to present a high exposed area onto which a dielectric is formed. The dielectric material has a high dielectric constant (high relative permittivity) and a high breakdown voltage, allowing a high voltage difference between paired electrodes to effect a high stored energy density.

Description

CROSS-REFERENCES TO RELATED APPLICATIONS[0001]This application claims the benefit of U.S. Prov. Pat. App. No. 61 / 206,677 filed Feb. 2, 2009, and titled “METHOD AND APPARATUS FOR UTILIZING A HIGH VOLTAGE CAPACITOR BANK AS A SOURCE OF SUSTAINED LOW VOLTAGE ELECTRICAL CURRENT,” U.S. Prov. Pat. App. No. 61 / 223,688 filed Jul. 7, 2009, and titled “HIGH-VOLTAGE CAPACITOR SOURCE,” and U.S. Prov. Pat. App. No. 61 / 254,903 filed Oct. 26, 2009, and titled “HIGH-VOLTAGE CAPACITOR SOURCE.” The entire contents of all these applications are incorporated herein by reference for all purposes.FIELD[0002]This application relates to high-density energy storage systems, components and manufacturing methods.BACKGROUND[0003]Capacitive interaction occurs in all electronic circuits. Discrete capacitors are included in the circuits to fulfill a variety of roles including frequency filtration, impedance matching and the production of electrical pulses and repetitive signals. Regardless of the complexity of the...

Claims

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Application Information

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IPC IPC(8): H01G4/12H01G4/06H01G4/08B05D5/12
CPCH01G4/008H01G4/01Y10T29/435H01G9/058H01G4/1209H01G11/22
Inventor SWEENEY, DANIEL C.READ, JOHN B.
Owner SPACE CHARGE
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