Abstract:
The invention relates to a carrier (1) for an LED (2) which has a main body (5), wherein a protection device (6) for protecting an LED (2) mounted on the carrier (1) against electrostatic discharges is integrated in the main body (5).
Abstract:
The invention specifies an electrical component (1) which has a main body (2), a metallic contact structure (3) which is in direct contact with the main body (2), and an electrically insulating passivation layer (5) which is provided with an opening (4). The metallic contact structure (3) is connected to an external contact-making means (6) through the opening (4). Furthermore, the external contact-making means (6) is covered and surrounded by a flexible metal composite layer (7). The invention also specifies a method for producing an electrical component (1).
Abstract:
A method for producing an electrical component comprises providing a ceramic semiconducting base body (10) with a surface (O10) and a first side face (S10a) opposite the surface (O10), wherein a metal layer (40) is contained within the base body. Once at least two further metal layers (210) are arranged separately from one another on the side face (S10a) of the base body, sintering of the arrangement is performed. An electrically insulating layer (30) is arranged between the at least two further metal layers (210). In each case one contact layer (220) is arranged on the metal layers (210) by means of a chemical process. Furthermore, the material of the base body (10) is removed, starting from the surface (O10) of the base body (10) up to at most the metal layer (40) arranged within the base body.
Abstract:
The invention relates to a method for increasing the ESD pulse stability of an electrical component. A prepared electrical component is seasoned by means of a seasoning pulse generated by a pulse generator. The seasoning of the component improves the degradation of an electrical characteristic curve by ESD pulses occurring during the operation of the electrical component.
Abstract:
The invention relates to an electric component assembly comprising a semiconductor component (1) and a carrier, said carrier containing a highly thermally conductive ceramic and being connected to a varistor element. Heat from the semiconductor component can be at least partially dissipated via the varistor element to the carrier (3).
Abstract:
The invention relates to an electric component arrangement comprising a semiconductor component (1) and a varistor body (2) that is in contact with said semiconductor component for protecting said semiconductor component against electrostatic discharges. Said semiconductor component and the varistor body are arranged on a common support (3) that contains a good heat conducting ceramic.
Abstract:
A multi-layered component is provided, comprising at least one inductive area (1), wherein the inductive area (1) comprises a ferrite ceramic. The inductive area (1) comprises electrode structures that form at least one inductance (3). The multi-layered component comprises at least one capacitive area (2), wherein at least one capacitive area (2) comprises a varistor ceramic. The capacitive area (2) forms at least one capacitor (4). At least one inductive area (1) and at least one capacitive area (2) form at least one LC filter (6).
Abstract:
Disclosed is a multilayer component comprising a body (5), inside which at least one first inner electrode (1) and at least one second inner electrode (2) are disposed. Said inner electrodes (1, 2) have an overlapping area (12) that extends to the surface of the body (5) on at least one side. Furthermore, the inner electrodes (1, 2) are provided with a recess (7) in the corner area of the body (5).