Battery connection device
11581668 ยท 2023-02-14
Assignee
Inventors
- Sebastian Taubert (Munich, DE)
- Sorin Andrei (Munich, DE)
- Eduard losif Trif (Munich, DE)
- Jens Reiter (Munich, DE)
- Thomas Schmid (Munich, DE)
Cpc classification
H01M50/24
ELECTRICITY
B60R16/033
PERFORMING OPERATIONS; TRANSPORTING
B60S5/06
PERFORMING OPERATIONS; TRANSPORTING
H05K9/0081
ELECTRICITY
H01M50/249
ELECTRICITY
Y02E60/10
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
H01R13/5202
ELECTRICITY
H01R13/6583
ELECTRICITY
H01M2220/20
ELECTRICITY
H05K9/0009
ELECTRICITY
H01M50/244
ELECTRICITY
International classification
H01M50/24
ELECTRICITY
H05K9/00
ELECTRICITY
H01M50/249
ELECTRICITY
B60S5/06
PERFORMING OPERATIONS; TRANSPORTING
H01R13/6583
ELECTRICITY
H01R13/52
ELECTRICITY
B60R16/023
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A battery connection device for connecting to a vehicle battery includes a top member, a bottom member having a side wall and a bottom wall. The side wall, top member, and bottom member form a box-like enclosure. The bottom wall includes a through-hole with a circumferential face, an adapter member arranged inside the box-like enclosure extends at least partially through the through-hole for connection with the battery. A dimension of the adapter member is smaller than a dimension of the through-hole to form a gap between an outer face of the adapter member facing the circumferential face and the circumferential face, and flexible connection member connected to the adapter member and to the bottom member and closing the gap between the outer face and the circumferential face. The flexible connection member includes an electromagnetic shield for shielding electromagnetic radiation and a seal for sealing the gap against dust and/or moisture.
Claims
1. A battery connection device configured to be connected to a battery of a vehicle, the battery connection device comprising: a top member; a bottom member having a side wall and a bottom wall connected to the side wall, the side wall being connected to the top member such that the top member and the bottom member form a box-like enclosure, the bottom wall further including a through-hole with a circumferential face; an adapter member arranged inside the box-like enclosure and extending at least partially through the through-hole for connection with the battery, wherein a dimension of the adapter member is smaller than a dimension of the through-hole such that a gap is formed between an outer face of the adapter member facing the circumferential face and the circumferential face; and a flexible connection member connected to the adapter member and to the bottom member and closing the gap between the outer face and the circumferential face, wherein the flexible connection member includes an electromagnetic shielding function for shielding electromagnetic radiation and a sealing function for sealing the gap against dust and/or moisture.
2. The battery connection device of claim 1, wherein the flexible connection member further includes: a sealing member made of rubber material for providing the sealing function; and a shielding member made of conductive material for providing the electromagnetic shielding function.
3. The battery connection device of claim 2, wherein the sealing member and the shielding member are both connected to the bottom wall of the bottom member and to a bottom side of the adapter member.
4. The battery connection device of claim 3, wherein the shielding member protrudes from the bottom side of the adapter member towards the battery.
5. The battery connection device of claim 3, wherein the sealing member and the shielding member are connected to the bottom wall using a plastic clamp.
6. The battery connection device of claim 3, wherein the shielding member includes a stamped copper part and a braided copper part connected to the stamped copper part.
7. The battery connection device of claim 6, wherein a first end of the stamped copper part is connected to the bottom side (38) of the adapter member, a second end of the stamped copper part is connected to a first end of the braided copper part, and a second end of the braided copper part is connected to the bottom wall (16) of the bottom member.
8. The battery connection device of claim 4, wherein the sealing member and the shielding member are connected to the bottom wall using a plastic clamp.
9. The battery connection device of claim 4, wherein the shielding member includes a stamped copper part and a braided copper part connected to the stamped copper part.
10. The battery connection device of claim 5, wherein the shielding member includes a stamped copper part and a braided copper part connected to the stamped copper part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the present invention are described by the accompanying drawings, which are incorporated herein and constitute a part of the specification. In the drawings
(2)
(3)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(4) Referring to
(5) Battery connection device 10 includes a pot-like bottom member 14. Bottom member 14 can be made, for example, from sheet metal which is stamped and bent to arrive at the pot-like shape. Bottom member 14 includes a bottom wall 16 and a side wall 18 connected to bottom wall 16. Side wall 18 protrudes from bottom wall 16 to form the pot-like shape of bottom member 14. Bottom member 14 is configured to be connected to mounting ports 19 of battery 12. Mounting ports 19 serve the purpose of fixedly connecting bottom member 14 to battery 12. Usually, mounting ports 19 are predefined by a supplier of battery 12. Thus, the position of mounting ports 19 is usually fixed by the supplier of battery 12. Mounting ports 19 are only shown schematically in
(6) Battery connection device 10 further includes a top member 20. Top member 20 can be, for example, made from die casted aluminum. Top member 20 is connected to side wall 18 of bottom member 14 and covers bottom member 14 from on top so that top member 20 and bottom member 14 together form a box-like enclosure 22 for accommodating certain components of battery connection device 10 such as electronic components of battery connection device 10. As can be seen in
(7) Still referring to
(8) Due to manufacturing processes and/or tolerances during manufacturing of battery 12 the position of mounting ports 19 may vary relative to the position of battery ports 27. This positional variation between mounting ports 19 and battery ports 27, however, creates some difficulty upon mounting battery connection device 10 to battery 12. The reason for this is that especially bottom member 14 is made from a rigid material and therefore is not able to compensate the positional variation between mounting ports 19 and battery ports 27. In order to not cause any unnecessary mechanical stress to connection parts of battery connection device 10, battery connection device 10 allows for some relative movement between bottom wall 14 and adapter member 26 compensating the positional variation between mounting ports 19 and battery ports 27, as will be explained in connection with
(9) Referring now to
(10) As can be seen, bottom member 14 includes through-hole 24 extending through bottom wall 16. Through-hole 24 includes a circumferential face 28. A dimension of through-hole 24 is adjusted such that it is larger than a dimension of adapter member 26. As a result of which, an outer face 30 of adapter member 26 facing circumferential face 28 of through-hole 24 is not in contact with circumferential face 28. In other words, there is a gap between circumferential face 28 and outer face 30. This gap allows for movement of adapter member 26 relative to bottom member 14, and vice versa. Movement may be in all three dimensions. As bottom member 14 is configured to be connected to mounting ports 19 and as adapter member 26 is configured to be connected to battery ports 27 of battery 12, a positional variation between mounting ports 19 and battery ports 27 can be compensated by the relative movement between adapter member 26 and bottom member 14.
(11) In order to prevent dust and/or moisture entering the inside of battery connection device 10, the gap between circumferential face 28 and outer face 30 is closed by a flexible connection member 32. Flexible connection member 32 includes a flexibility that allows for the relative movement between adapter member 26 and bottom member 14. Flexible connection member 32 also includes a sealing function to prevent dust and/or moisture entering the inside or enclosure 22 of battery connection device 10. In addition, flexible connection member 32 includes an electromagnetic shielding function that prevents electromagnetic radiation from leaving and/or entering enclosure 22 via the gap.
(12) In the particular embodiment shown in
(13) In the embodiment shown in
(14) As can be further seen in
(15) In the particular embodiment shown in
(16) In more detail, a first end 46 of stamped copper part 42 is connected to bottom side 38 and includes spring-like protrusion 40. A second end 48 of stamped copper part 42 is connected to a first end 50 of braided copper part 44. A second end 52 of braided copper part 44 is connected to bottom wall 16 of bottom member 14. Second end 52 of braided copper part 44 and sealing member 34 are then clamped to bottom wall 16 of bottom member 14 using plastic clamp 37.
(17) Battery connection device 10 as explained in connection with