Abstract:
The invention relates to a connecting assembly (10) between a control device (11) and a module (12) connected to the control device (11) for electrically contacting the control device (11), wherein the control device (11) has a housing unit (20), which is composed of a protective mass (19) and which surrounds a circuit carrier (14) at least in some areas, the control device comprising at least one circuit unit arranged on the circuit carrier (14) and comprising at least one contact unit (38 to 41) for the contacting by the module (12), wherein the housing unit (20) is free of the protective mass (19) at least in some areas in the region of the at least one contact unit (38 to 41), wherein the module (12) has at least one contact element (58), preferably in the form of a spring element (57), which is in electrically conductive contact with the at least one contact unit (38 to 41) when the module (12) is mounted on the control device (11), and wherein the control device (11) and the module (12) are mechanically connected to each other by means of a force-closed connection.
Abstract:
The invention relates to a control device (10), comprising: a housing unit (12), which is composed of a protective mass (20) made of plastic and which directly surrounds a circuit carrier (18) at least in some areas; at least one circuit unit arranged on the circuit carrier (18); and at least one contact unit (22) for establishing electrical contact between the control device (10) and another electrical module (50), wherein the housing unit (12) is free of the protective mass (20) at least in some areas in the region of the contact unit (22). According to the invention, at least one pressing element (26) is connected to the housing unit (12), the at least one pressing element being designed to at least indirectly produce a pressing force (F) on a counter element (6) of the other electrical module (50), which counter element electrically contacts the contact unit (22).
Abstract:
The capacitor (2) has housing (4) and a set of areas provided with solderable surfaces and projecting from a side over the housing. Projecting leads (8, 10, 12) serve as electrical connection pins, where the projecting leads are provided with solderable surfaces. The projecting leads withdraw from the housing through a limiting wall (6), where withdrawal points form corners of a triangle. The projecting leads serve for a mechanical attachment and a support.
Abstract:
An automotive electrical or electronic system (49) generates heat and is attached to the vehicle by a heat exchanger bar that is an extruded metal component (52). The bar incorporates an air duct with an inlet and an outlet.
Abstract:
The vibration damper is mounted between a car engine (2) and a control (9). It comprises a tubular sleeve (4) which passes through the control and a cushion (8, 8') mounted concentrically around it. Clamping plates (6) are fitted on either end of the cushion.
Abstract:
Die Erfindung betrifft eine Bilderfassungseinrichtung (100) zum Erfassen eines eine Umgebung der Bilderfassungseinrichtung (100) abbildenden Bildes. Die Bilderfassungseinrichtung (100) weist dabei ein erstes Trägerelement (110) zum Tragen einer Sensoreinheit (105) der Bilderfassungseinrichtung (100), ein mit dem ersten Trägerelement (110) verbundenes zweites Trägerelement (115) zum Tragen eines Bilddatenverarbeitungselements (120) der Bilderfassungseinrichtung (100) und einen zwischen dem ersten Trägerelement (110) und dem zweiten Trägerelement (115) angeordneten Abschirmträger (125) als Teil einer Abschirmvorrichtung (130) zum Abschirmen der Sensoreinheit (105) von dem Bilddatenverarbeitungselement (120)auf. Dabei ist der Abschirmträger (125) ausgebildet, um die Sensoreinheit (105) und das Bilddatenverarbeitungselement (120) voneinander abzuschirmen.
Abstract:
Aparato de control (1), particularmente para un vehículo, donde el aparato de control (1) posee una carcasa (2) comprendiendo por lo menos una región de disipación de calor (18), en la que se dispone por lo menos un módulo eléctrico y/o electrónico (7), que presenta por lo menos un elemento de disipación de calor (13), donde el elemento de disipación de calor (13) está conectado por una técnica de conducción térmica con la región de disipación de calor (18) por medio de un medio conductor del calor (26) introducido en el interior (12) de la carcasa (2) mediante por lo menos un orificio de la carcasa (25), siendo el medio pastoso al menos durante su introducción, caracterizado porque la carcasa (2) es una carcasa de inserción (3), en que se introduce el módulo (7), porque la carcasa (2) presenta una guía (4) para la inserción del módulo (7), donde la guía (4) se configura como canal de guía (5), donde el elemento de disipación de calor (13) se extiende en la guía (4), y porque el canal de guía (5) está provisto de por lo menos una conformación (21) para el enclavamiento a nivel del borde del módulo (7).
Abstract:
The module (10) has electrical and electronic elements such as ceramic capacitor or foil capacitor (18), flip chip slug up element (24) and a flip chip slug down element (26), arranged on a base printed circuit board or substrate (12). The board is electrically contacted at contacting regions or direct plug (38) and cutting clamp plug (40). A mold window (22) is attached to the electrical and electronic elements for heat dissipation in molding compounds (20, 50). The board has electrical through connections (28, 30) at positions of the electrical and electronic elements. The mold window is made of thermally conductive materials i.e. copper inlays, and/or thermally conductive plastic. The molding compound contains filling materials such as aluminum nitrite, carbon nano-tube, metal fibers, metallic powders or metal balls.
Abstract:
An electrical circuitry has a base element, a printed circuit board and a fastening apparatus for fastening the printed circuit board to the base element. The fastening apparatus retains the printed circuit board by virtue of the base element being present on a top side and underside of the printed circuit board. In this case, the base element acts upon the top side and underside of the printed circuit board at application points which are opposite one another at an offset with respect to one another while elastically deforming the printed circuit board.