Abstract:
The invention relates to an electric multilayer component, comprising a stack (1) of dielectric layers (2) and electrode layers (3), which are disposed next to each other, and differently polarized outer contacts (4a, 4b) which are disposed at an outside surface (5a) of the stack (1) and can be contacted with flipchips, characterized in that the electrode layers are connected on one end to a respective outer connection having the same polarity.
Abstract:
The invention discloses a multilayer electrical component comprised of at least one base element (1) which is composed of a stack of dielectric layers (2) and electrode layers (3) positioned one upon the other, wherein the multilayer component additionally has a resistor (4) and a decoupling layer (5a, 5b), wherein the decoupling layer chemically isolates the resistor from at least one portion of the multilayer element.
Abstract:
The invention specifies an electrical multilayer component (1) having a plurality of inner electrodes (3, GND), in which at least one inner electrode has a transverse boundary (QB) which, in an orthogonal projection, is situated in a recess (3a, GNDa) of an adjacent inner electrode.
Abstract:
The invention relates to a method for the production of an electric component (1). Said method consists of the following steps; A) a ceramic base body (5) which comprises a through-contact (10) and at least one metal surface (20C) which is connected in an electrically conductive manner to the through-contact, is prepared. In step B), one first electrically insulating material is arranged in a layered manner on the surface of the base body and at least over the through-contact, and subsequently in step C) an electrically conductive second material is applied over the through-contact (10). In step D) a soldering contact (30B) is formed by means of hardening, said soldering contact binding, in an electrically conductive manner, the through-contact (10) through the passivation layer (25B) which is formed from a first material by means of sintering.
Abstract:
The invention relates to a component assembly (1) with a carrier (2), said carrier (2) comprising a metal structure (3, 17) having at least one cavity (5, 5a, 5b, 5c, 5d). The component assembly (1) comprises at least one electric component (6, 6a, 6b, 6c) which is at least partially arranged in the cavity (5, 5a, 5b, 5c, 5d).
Abstract:
The invention relates to an electrical multi-layer component having a base body (1) having at least two external electrodes (2, 2'). The electrical multi-layer element comprises at least one first (3) and one second (4) inner electrode that are each connected to an external electrode (2, 2') in an electrically conductive manner. The electrical multi-layer component according to the invention has at least one ceramic varistor layer (5) that at least comprises the first inner electrode (3). The electrical multi-layer component according to the invention has at least one dielectric layer (6) that is arranged between the at least one varistor layer (5) and the second inner electrode (4). The dielectric layer (6) has at least one opening (8) that is filled with a gaseous medium.
Abstract:
The invention relates to a multilayer component that comprises a dielectric ceramic material that can be co-sintered with a varistor ceramic to form a monolithic multilayer component according to the invention. Therefore, the multilayer component comprises a layer of a varistor ceramic and another layer of a dielectric. The two layers can be arranged directly adjacent in the multilayer component. In the multilayer component, metallizations that are structured to form conductor sections and metallized surfaces are arranged on or between the ceramic layers. In addition to a varistor, the metallizations, together with the ceramic layers, also form at least one further component that is selected from at least one of the component functions of capacitance, resistance, and inductance.
Abstract:
The electrical multilayered component has a basic body (1) with outer electrodes (2, 2') and inner electrodes (3, 4) and a ceramic varistor layer (5), which has been provided with the first inner electrode (3), and a dielectric layer (6) adjoining the varistor layer (5). The dielectric layer (6) has at least one opening (8), which is filled with a semiconducting material or a metal.
Abstract:
An electrical multi-layered component is provided, comprising a monolithic base member (1) that has a plurality of ceramic layers (2) and electrode layers (3) disposed one on top of the other in alternating fashion. The base member (1) comprises two end surfaces (4, 4') opposite to one another and two side surfaces (5, 5') opposite to one another. The multi-layered component comprises a plurality of external electrodes (6, 6') and a plurality of internal electrodes (7, 8, 9) designed into the electrode layers (3), wherein the internal electrodes (7, 8, 9) at least partially overlap and form overlap areas. Each internal electrode (7, 8, 9) is associated with a respective external electrode (6, 6'). At least one first internal electrode (7) extending from an end surface (4, 4') overlaps with at least one second internal electrode (8) extending from an opposite end surface (4, 4'). At least a third internal electrode (9) extends from an end surface (5, 5'), said third internal electrode overlapping with the first (7) and the second (8) internal electrode.