Abstract:
An example includes a capacitor case sealed to retain electrolyte, at least one anode disposed in the capacitor case, the at least one anode comprising a sintered portion disposed on a substrate, an anode conductor coupled to the substrate in electrical communication with the sintered portion, the anode conductor sealingly extending through the capacitor case to an anode terminal disposed on the exterior of the capacitor case with the anode terminal in electrical communication with the sintered portion, a cathode disposed in the capacitor case, a separator disposed between the cathode and the anode and a cathode terminal disposed on an exterior of the capacitor case and in electrical communication with the cathode, with the anode terminal and the cathode terminal electrically isolated from one another.
Abstract:
Módulo de almacenamiento de energía para vehículos ferroviarios, constituido por múltiples condensadores (1) interconectados que presentan unas bornas (2) para establecer conexión eléctrica con una única placa (7) de conexiones común a todos los condensadores (1) y amarre mecánico con una placa (6) soporte que va dispuesta entre las bornas (2) y la placa (7) de conexiones; estando las bornas (2) sobredimensionadas de modo que definen un canal de refrigeración entre la placa (6) soporte y los condensadores (1), quedando la placa (7) de conexiones aislada de dicho canal de refrigeración mediante la placa (6) soporte.
Abstract:
An example includes a capacitor case sealed to retain electrolyte, at least one anode disposed in the capacitor case, the at least one anode comprising a sintered portion disposed on a substrate, an anode conductor coupled to the substrate in electrical communication with the sintered portion, the anode conductor sealingly extending through the capacitor case to an anode terminal disposed on the exterior of the capacitor case with the anode terminal in electrical communication with the sintered portion, a cathode disposed in the capacitor case, a separator disposed between the cathode and the anode and a cathode terminal disposed on an exterior of the capacitor case and in electrical communication with the cathode, with the anode terminal and the cathode terminal electrically isolated from one another.
Abstract:
A capacitor for a DC-DC converter includes a plurality of capacitor element (Ca, Cb, Cc, Cd) and an electroconductive member (Bl, B2) that uniformizes the currents that flow into the capacitor elements.
Abstract:
A capacitor of an extendable cable includes a capacitor body (1) having at its interior a capacitor core. The upper end surface of the capacitor body (1) has a jointing soldered dot (6) which is connected with the capacitor core and the lower end of a extendable cable (4). The jointing soldered dot (6) of the upper end surface of the capacitor body (1) is provided on a lead-out cover (2). The periphery ring of the lead-out cover (2) encloses the jointing soldered dot (6) therein. A lead-out locating sleeve (3) is muff coupling on the periphery ring of the lead-out cover (2). The lead-out locating sleeve (3) is formed from the mutually-communicated upside (33) and bottom (34). The bottom (34) of the lead-out locating sleeve (3) is muff coupling with the lead-out cover (2). A wire clip structure (32) is provided on the upside of the lead-out locating sleeve (3).The epoxy resin (7) is poured into the lead-out locating sleeve (3).