Abstract:
The invention relates to an electrical connection contact (5) for a ceramic component (2). Said connection contact (5) comprises a first material (M1) and a second material (M2) that is arranged thereupon, said first material (M1) having a high degree of electrical conductivity, and said second material (M2) having a low coefficient of thermal expansion.
Abstract:
The invention concerns a ceramic multi-layer capacitor with a base member (1) with ceramic layers (2) and first and second electrode layers (3, 4) disposed therebetween, the ceramic layers (2) comprising a ceramic material based on BaTi 1_y Zr y O 3 where 0 ≤ y ≤ 1, displaying a temperature-dependent capacitance anomaly.
Abstract:
The invention relates to a multi-layer capacitor (1) having dielectric layers (2) and electrode layers (3, 4, 5) arranged there between, wherein the multi-layer capacitor (1) has a plurality of segments (11, 12) connected to each other and wherein at least one relief region (18, 19, 20) is provided between the segments. The invention further relates to the production of such a multi-layer capacitor (1).
Abstract:
The invention relates to a component body (1) and at least one connection element (2) having a plastic body (23) which is connected to the component body (1) by a metal layer (3).
Abstract:
This invention relates to a ceramic multi-layered capacitor (1) which comprises a base body (2), which has ceramic layers (3), which are arranged to form a stack in a layer stacking direction (S), and first and second electrode layers (41, 42), which are arranged between the ceramic layers (3). The multi-layered capacitor (1) further comprises a first external contact (51), which is arranged on a first lateral face (61) of the base body (2) and is connected in an electrically conductive manner to the first electrode layers (41), and a second external contact (52), which is arranged on a second lateral face (62), opposite the first lateral face (61), of the base body (2) and is connected in an electrically conductive manner to the second electrode layers (42). The base body (2) has a width B along the layer stacking direction (S), a height H perpendicular to the first lateral face (61) and a length L perpendicular to the height H and perpendicular to the layer stacking direction (S), wherein the relationship B/H ≥ 0.2 applies for the ratio of width B to height H.