Abstract:
A piezoelectric component includes an electromechanical transducer with two first electrodes and a second electrode. The second electrode is arranged between the two first electrodes. The transducer also includes a first main side, a second main side, opposite from the first main side, and a first longitudinal side. A first contiguous metallization layer is arranged on a first partial region of the first main side and on a partial region of the first longitudinal side adjacent to the first partial region of the first main side. Here, the partial region of the first longitudinal side is kept at a sufficient distance from a side edge facing the second main side and the partial region electrically contacts the at least two first electrodes.
Abstract:
An electrical multilayer component has a stack of dielectric layers and electrode layers arranged one above another. An electrically insulating stiffening element is arranged at a distance from at least one electrode layer on the same dielectric layer as the electrode layer. The stiffening element preferably has an increased flexural strength with respect to dielectric material surrounding it.
Abstract:
An electrical multilayer component has a stack of dielectric layers and electrode layers arranged one above another. An electrically insulating stiffening element is arranged at a distance from at least one electrode layer on the same dielectric layer as the electrode layer. The stiffening element preferably has an increased flexural strength with respect to dielectric material surrounding it.
Abstract:
An electrical component includes a ceramic base body having at least four contact surfaces. Two of the contact surfaces are on opposite sides of the ceramic base body. First protective layers are arranged on regions of the opposite sides of the ceramic base body that do not include the contact surfaces. The first protective layers have a composition that allows the first protective layers to be sintered at a higher temperature than the contact surfaces. Second protective layers are arranged on at least two opposite surfaces of the ceramic base body. The ceramic base body, the first protective layers, and the second protective layers are sintered together.
Abstract:
An electrical component includes a base body that contains dielectric layers. The dielectric layers are superimposed and contain ceramic. The component also includes outer contacts on an exterior of the base body, and a resistor in an interior of the base body located between two of the dielectric layers. The resistor is connected to the outer contacts, and is made from a layer that forms a path between the outer contacts. The path between the outer contacts has multiple bends.
Abstract:
An electric component arrangement is described, comprising a semiconductor component (1) and a varistor body (2), which is contact-connected to the semiconductor component in order to protect the latter against electrostatic discharges. The semiconductor component and the varistor body are arranged on a common carrier (3) containing a highly thermally conductive ceramic.
Abstract:
A piezoelectric component includes an electromechanical transducer with two first electrodes and a second electrode. The second electrode is arranged between the two first electrodes. The transducer also includes a first main side, a second main side, opposite from the first main side, and a first longitudinal side. A first contiguous metallization layer is arranged on a first partial region of the first main side and on a partial region of the first longitudinal side adjacent to the first partial region of the first main side. Here, the partial region of the first longitudinal side is kept at a sufficient distance from a side edge facing the second main side and the partial region electrically contacts the at least two first electrodes.
Abstract:
An electrical component includes a ceramic base body that includes a surface that is partially ceramic, electrodes in the ceramic base body that have ends that form parts of the surface of the ceramic base body, and a bonding layer on the surface of the ceramic base body. The bonding layer has a composition such that, when the bonding layer is heated, the bonding layer is less adhesive to the ends of the electrodes than when not heated.
Abstract:
An electric component arrangement is described, comprising a semiconductor component (1) mounted on a varistor body (2). The varistor body is contact-connected to the semiconductor component for the protection thereof against electrostatic discharges and contains a composite material having as matrix a varistor ceramic and as filler a highly thermally conductive material being different from the varistor ceramic.
Abstract:
An electric component arrangement is described, comprising a semiconductor component (1) and a varistor body (2), which is contact-connected to the semiconductor component in order to protect the latter against electrostatic discharges. The semiconductor component and the varistor body are arranged on a common carrier (3) containing a highly thermally conductive ceramic.