Filter Arrangement For High-Voltage Connector and High-Voltage Connector
20170170610 ยท 2017-06-15
Assignee
Inventors
Cpc classification
H01R13/53
ELECTRICITY
H01R27/02
ELECTRICITY
H01R13/7197
ELECTRICITY
International classification
Abstract
A filter assembly for a high-voltage connector is disclosed. The filter assembly has a first and a second bus bar, a filter circuit disposed on a circuit carrier, a ring core, and a filter housing. Each bus bar has a first terminal section, a second terminal section, and a connecting section between the first terminal section and the second terminal section. The filter circuit, the ring core, and at least a part of the first and second bus bars are disposed in the filter housing. The first and second bus bars extend substantially parallel to each other and through the ring core. The circuit carrier is disposed in a region of the filter housing in which the connecting section of each of the first and second bus bars is accommodated.
Claims
1. A filter assembly for a high-voltage connector, comprising: a first and a second bus bar, each bus bar having a first terminal section, a second terminal section, and a connecting section between the first terminal section and the second terminal section; a filter circuit disposed on a circuit carrier; a ring core; and a filter housing in which the filter circuit, the ring core, and at least a part of the first and second bus bars are disposed, the first and second bus bars extending substantially parallel to each other and through the ring core, the circuit carrier disposed in a region of the filter housing in which the connecting section of each of the first and second bus bars is accommodated.
2. The filter assembly of claim 1, wherein the first terminal section is connected to a first connector of the high-voltage connector.
3. The filter assembly of claim 2, wherein the second terminal section is connected to a second connector of the high-voltage connector.
4. The filter assembly of claim 3, wherein the ring core is formed from a magnetic material.
5. The filter assembly of claim 3, wherein the second terminal section of each of the first and second bus bars forms a plug contact of the second connector.
6. The filter assembly of claim 5, wherein the second terminal section of each of the first and second bus bars connects to a mating plug connector.
7. The filter assembly of claim 6, wherein the second terminal section of each of the first and second bus bars extends as a rectilinear prolongation from the connecting section of each of the first and second bus bars.
8. The filter assembly of claim 1, wherein the ring core is torus-shaped and a central axis of the ring core extends along the connecting section of each of the first and second bus bars.
9. The filter assembly of claim 1, wherein the filter housing has a base body in which the first and second bus bars and the circuit carrier are disposed and a cover fixed to the base body enclosing the filter housing.
10. The filter assembly of claim 9, wherein the base body and the cover are interlocked.
11. The filter assembly of claim 1, further comprising filter terminals extending through the filter housing and electrically contacting the filter circuit.
12. A high-voltage connector, comprising: a first connector contacting a power source; a second connector contacting a power consumer; and a filter assembly connecting the first and second connectors, the filter assembly having a first and a second bus bar, each bus bar having a first terminal section connected to the first connector, a second terminal section connected to the second connector, and a connecting section between the first terminal section and the second terminal section, a filter circuit disposed on a circuit carrier, a ring core, and a filter housing in which the filter circuit, the ring core, and at least a part of the first and second bus bars are disposed, the first and second bus bars extending substantially parallel to each other and through the ring core, the circuit carrier disposed in a region of the filter housing in which the connecting section of each of the first and second bus bars is accommodated.
13. The high-voltage connector of claim 12, wherein the first terminal section of each of the first and second bus bars is connected by a screw to the first connector.
14. The high-voltage connector of claim 13, wherein the first connector is a plug connector.
15. The high-voltage connector of claim 12, wherein the second terminal section of each of the first and second bus bars forms a plug contact of the second connector.
16. The high-voltage connector of claim 12, further comprising a connector housing in which a plurality of filter assemblies are disposed.
17. The high-voltage connector of claim 16, wherein the connecting section of each of the first and second bus bars of each of the plurality of filter assemblies extend parallel to one another.
18. The high-voltage connector of claim 17, wherein each of the plurality of filter assemblies has a separate filter housing.
19. The high-voltage connector of claim 18, further comprising a shielding disposed in the connector housing and at least partly surrounding the plurality of filter assemblies.
20. The high-voltage connector of claim 12, wherein at least one of the first and second connectors hermetically seals the filter assembly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The invention will now be described by way of example with reference to the accompanying Figures, of which:
[0011]
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION OF THE EMBODIMENT(S)
[0016] Embodiments of the present invention will be described hereinafter in detail with reference to the attached drawings, wherein like reference numerals refer to the like elements. The present invention may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that the disclosure will be thorough and complete, and will fully convey the concept of the invention to those skilled in the art.
[0017] A filter assembly 100 according to the invention is shown generally in
[0018] Each of the first and second bus bars 102, 104, as shown in
[0019] The filter housing 112, as shown in
[0020] The ring core 120 and the filter circuit 125 are accommodated in the filter housing 112, as shown in
[0021] The filter circuit 125, as shown in
[0022] The ring core 120 is formed from a magnetic material, and as shown in
[0023] The bus bars 102, 104 are held in the base body 114 via a press-fit and the ring core 120 is disposed in the filter housing 112. The first and second bus bars 102, 104 extend substantially parallel to each other and the connecting sections 110 of the bus bars 102, 104 extend through the ring core 120 along the longitudinal central axis, with at least a portion of the first and second bus bars 102, 104 disposed in the filter housing 112.
[0024] The circuit carrier 126 is disposed in a region of the filter housing 112 in which the connecting sections 110 are accommodated. The circuit carrier 126 is disposed above or underneath the ring core 120 and along the bus bars 102, 104. The circuit carrier 126 may alternatively be disposed within the opening of the ring core 120 and between the bus bars 102, 104. As would be understood by one with ordinary skill in the art, is also possible to provide several ring cores 120 in the filter housing 112.
[0025] Due to the design of the filter assembly 100 according to the invention as a closed module, any number of such filter assemblies 100 can be installed in a simple manner in a high-voltage connector 200 according to the present invention.
[0026] The high-voltage connector 200 according to the present invention having a first filter assembly 100A and a second filter assembly 100B is shown in
[0027] The high-voltage connector 200, as shown in
[0028] The first terminal sections 106 of the filter assemblies 100A, 100B are respectively coupled, via a screw and corresponding lead frames 138, to a first connector 140 which can be connected to a first mating plug connector 142 and a battery or other power source. Two second connectors 144, as shown in
[0029] The high-voltage connector 200 also has a shielding 148 disposed in the connector housing 136 and at least partly surrounding the two filter assemblies 100A, 100B to eliminate disturbance variables. External components 150 are attached externally to the housing half shell 136 B and are connected to the filter terminals 124 of the filter assemblies 100A, 100B.
[0030] As shown in
[0031] Advantageously, in the filter assembly 100 according to the invention, because the bus bars 102, 104 extend through the ring core 120, the filtering and inductive shielding of the bus bars 102, 104 can be performed in a particularly space-saving manner. The mechanical connections of the bus bars 102, 104 are stable and satisfy a motor vehicle's existing high requirements with regard to vibration resistance and temperature resistance. Furthermore, because the second terminal sections 108 of the bus bars 102, 104 directly form plug contacts of the second connectors 144 and directly electrically contact the second mating plug connectors 146, the integrated design of the high-voltage connector 200 reduces the number of electrical connections and electrically conductive components, requiring minimal installation space, while increasing filtering efficiency. Additionally, because additional plug contacts no longer have to be mounted for the second connector 144, the mounting outlay of the high-voltage connector 200 is reduced, the transfer resistance is kept low, and the reliability is increased.