Encapsulated printed circuit board assembly
US-11683880-B2 · Jun 20, 2023 · US
US12149055B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12149055-B2 |
| Application number | US-202017754519-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 12, 2020 |
| Priority date | Oct 28, 2019 |
| Publication date | Nov 19, 2024 |
| Grant date | Nov 19, 2024 |
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Assembly ( 1 ) of a busbar ( 20 ), a cable termination ( 40 ) (or an insulating element ( 300 ) or a bushing ( 400 )) and a voltage sensor ( 10 ) in a high-voltage or medium-voltage power network. The cable termination (or the insulating element or the bushing) and the voltage sensor are mechanically and electrically connected to the busbar.
Opening claim text (preview).
The invention claimed is: 1. An assembly having a busbar, for use in a switchgear or transformer in a high-voltage or medium-voltage power network for distributing electrical power in a national grid, comprising: a cable termination, arranged on an end portion of a high-voltage or medium-voltage power cable for distributing electrical power, the cable termination insulating a section of the end portion, wherein a power conductor of the power cable is mechanically and electrically connected to the busbar via the cable termination, and a voltage sensor, mechanically connected to the busbar and comprising a voltage divider, electrically connected between the busbar and electrical ground, for sensing the voltage of the bus bar, wherein the voltage divider comprises a high-voltage portion comprising one or more discrete impedance elements, electrically serially connected with each other and electrically connected to the busbar, a low-voltage portion comprising one or more discrete impedance elements, serially connected between the high-voltage portion and ground, and a signal contact, electrically arranged between the high-voltage portion and the low-voltage portion, for providing a signal voltage indicative of the voltage, and wherein the cable termination has an elongated shape defining a termination length direction, wherein the voltage sensor has an elongated shape defining a sensor length direction, and wherein the voltage sensor is connected to the busbar such that the voltage sensor is arranged next to the cable termination, such that the sensor length direction is parallel to the termination length direction. 2. Assembly according to claim 1 , wherein the cable termination is mechanically and electrically connected to the busbar at a device connection position, wherein the voltage sensor is mechanically and electrically connected to the busbar at a sensor connection position, and wherein the geometric distance between device connection position and the sensor connection position is 20 cm or less. 3. Assembly according to claim 1 , further comprising a grounding element of the switchgear or of the transformer, wherein the cable termination comprises a ground attachment means and is electrically and mechanically attached to the grounding element by the ground attachment means, and wherein the voltage sensor is electrically and mechanically attached to the same grounding element. 4. An electrical apparatus comprising the switchgear or the transformer, in a high-voltage or medium-voltage power network for distributing electrical power in the national grid, the apparatus comprising the assembly according to claim 1 . 5. A process of enhancing an electrical apparatus in a high-voltage or medium voltage power network for distributing electrical power in a national grid, such as a switchgear or a transformer, wherein the electrical apparatus comprises a busbar to conduct the power, and wherein a power cable termination is mechanically and electrically connected to the busbar, wherein the power cable termination has an elongated shape defining a termination length direction, the process comprising the steps of a) providing a voltage sensor comprising a voltage divider for sensing a voltage, the voltage divider comprising i) a high-voltage portion comprising one or more electrically serially connected discrete impedance elements, ii) a low-voltage portion comprising one or more discrete impedance elements, serially connected between the high-voltage portion and ground, and iii) a signal contact, electrically arranged between the high-voltage portion and the low-voltage portion, for providing a signal voltage indicative of the voltage; and b) mechanically and electrically connecting the voltage sensor to the busbar and electrically connecting the voltage sensor between the busbar and electrical ground such that the high-voltage portion is electrically connected to the busbar and the low-voltage portion is serially connected between the high-voltage portion and ground, wherein the voltage sensor has an elongated shape defining a sensor length direction, and wherein the voltage sensor is connected to the busbar such that the voltage sensor is arranged next to the power cable termination, such that the sensor length direction is parallel to the termination length direction.
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