Capacitor comprising a plurality of capacitor units
11600448 ยท 2023-03-07
Assignee
Inventors
Cpc classification
H01G4/38
ELECTRICITY
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A capacitor has at least two capacitor units, wherein a first capacitor unit and a second capacitor unit of the at least two capacitor units have opposite polarities.
Claims
1. A capacitor, comprising: at least two capacitor units, wherein a first capacitor unit and a second capacitor unit of the at least two capacitor units have opposite polarity, the at least two capacitor units each have a first electrical connection and a second electrical connection, the first electrical connections of the at least two capacitor units are arranged next to one another in a first row within a first plane at a top side of the at least two capacitor units, the second electrical connections of the at least two capacitor units are arranged next to one another in a second row within a second plane at a bottom side of the at least two capacitor units, and for each of the at least two capacitor units, the first electrical connection is arranged opposite to the second electrical connection along a short axis of the respective capacitor unit.
2. The capacitor according to claim 1, wherein the first capacitor unit and the second capacitor unit of the at least two capacitor units are arranged in parallel with respect to their spatial alignment.
3. The capacitor according to claim 2, wherein the at least two capacitor units are arranged next to one another in a capacitor unit row.
4. The capacitor according to claim 1, wherein the at least two capacitor units are arranged next to one another in a capacitor unit row.
5. The capacitor according to claim 1, wherein the capacitor has a housing, which contains the at least two capacitor units.
6. The capacitor according to claim 1, wherein the capacitor has a first capacitor connection and a second capacitor connection.
7. The capacitor according to claim 6, wherein the first capacitor connection makes electrical contact with the first electrical connection of the first capacitor unit and with the second electrical connection of the second capacitor unit, and the second capacitor connection makes electrical contact with the second electrical connection of the first capacitor unit and with the first electrical connection of the second capacitor unit.
8. The capacitor according to claim 7, wherein the first capacitor connection has a first contact-making part and a second contact-making part, the first contact-making part of the first capacitor connection is electrically connected to the first electrical connection of the first capacitor unit, and the second contact-making part of the capacitor connection is electrically connected to the second electrical connection of the second capacitor unit.
9. The capacitor according to claim 8, wherein the second capacitor connection has a first contact-making part and a second contact-making part, the first contact-making part of the second capacitor connection is electrically connected to the second electrical connection of the first capacitor unit, and the second contact-making part of the second capacitor connection is electrically connected to the electrical connection of the second capacitor unit.
10. The capacitor according to claim 7, wherein the second capacitor connection has a first contact-making part and a second contact-making part, the first contact-making part of the second capacitor connection is electrically connected to the second electrical connection of the first capacitor unit, and the second contact-making part of the second capacitor connection is electrically connected to the electrical connection of the second capacitor unit.
11. The capacitor according to claim 6, wherein the capacitor has a third capacitor unit, the first, second and third capacitor units are arranged in parallel with one another, and the second capacitor unit and third capacitor unit have opposite polarity.
12. The capacitor according to claim 11, wherein the first capacitor connection is electrically connected to a first electrical connection of the third capacitor unit, and the second capacitor connection is electrically connected to a second electrical connection of the third capacitor unit.
13. The capacitor according to claim 11, wherein one or more of the first capacitor unit, the second capacitor unit, and the third capacitor unit is a film capacitor.
14. The capacitor according to claim 1, wherein the first and the second capacitor units are arranged at a distance from one another.
15. An electric vehicle or hybrid vehicle comprising a capacitor according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6) The exemplary embodiments explained below illustrate preferred embodiments of the present invention.
DETAILED DESCRIPTION OF THE DRAWINGS
(7) To reduce the inherent inductance of the capacitor, the invention proposes an oppositely polarized or alternating arrangement of the capacitor units.
(8) As illustrated in
(9) Owing to the oppositely polarized capacitor units, the overall electromagnetic field outside of the capacitor can be reduced. At the same time, the electromagnetic field is amplified locally between capacitor units.
(10)
(11) The capacitor windings 21, 22, 23, 24 and 25 are arranged next one another in parallel, as illustrated in
(12) The first busbar 30 has the contact-making parts 31, 32, 33, 34 and 35. The first busbar 30 is electrically connected to the first, that is to say top, electrical connection of the capacitor winding 21 by means of the contact-making part 31. The contact-making part 32 (
(13) To illustrate the busbar guidance system,
(14) Furthermore, the busbars 30 and 40 each have a connection 37 and a connection 47. The connections 37 and 47 serve to electrically connect the capacitor 20 to the IGBT module.
(15)
(16) A relatively low electromagnetic field can advantageously be realized outside of the capacitor owing to the capacitor windings with opposite polarity arranged next to one another. The weakening of the electromagnetic field outside of the capacitor leads to an improved performance with respect to acoustics and EMC.
(17) The capacitor 20 can be implemented by way of the film capacitor. It is possible to retain the rectangular shape of the capacitor winding. By retaining the rectangular shape of the capacitor, it is also easily possible to use the new capacitors in the existing inverters, as a result of which no further redesign measures arise.
(18) Furthermore, a parallel and close guidance of positive and negative busbars 30 and 40 with overlapping on the end side 36 of the capacitor 20 is provided. Therefore, in addition to a reduction of the inherent inductance in the capacitor 20, entanglements can be prevented.
(19) Furthermore, the component material can be exploited in order to save the raw material, for example copper, of the busbars. Therefore, the production costs can be reduced.
(20) The foregoing disclosure has been set forth merely to illustrate the invention and is not intended to be limiting. Since modifications of the disclosed embodiments incorporating the spirit and substance of the invention may occur to persons skilled in the art, the invention should be construed to include everything within the scope of the appended claims and equivalents thereof.