CONTROL UNIT HAVING A CONTACTING CONCEPT FOR A GROUND CONNECTION
20230276582 · 2023-08-31
Assignee
Inventors
Cpc classification
B60R16/06
PERFORMING OPERATIONS; TRANSPORTING
B60R16/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A control unit for a motor vehicle, including a housing and at least one electronic component accommodated in the housing. The housing is provided with at least one screw-receiving hole for receiving a mounting screw, and a bridging element consisting of metal and used for a ground connection of the at least one electronic component is also present, which bridging element, via a first end region which is located inside the housing, is electrically connected to the electronic component and, via a second end region which can be resiliently deformed along the screw-receiving hole, is arranged in a support region intended for axial support of a screw head of the mounting screw. A drive module with this control unit is also provided.
Claims
1. A control unit for a motor vehicle, the control unit comprising: a housing; at least one electronic component accommodated in the housing; at least one screw-receiving hole provided in the housing and a mounting screw that is received in the at least one screw-receiving hole; a bridging element consisting of metal and used for a ground connection of the at least one electronic component, the bridging element having a first end region which is located inside the housing and is electrically connected to the electronic component, and a second end region which is resiliently deformable along the screw-receiving hole is arranged in a support region configured for axial support of a screw head of the mounting screw.
2. The control unit according to claim 1, wherein the bridging element is fixed in the housing by at least one of injection molding or a mechanical fixing element.
3. The control unit according to claim 1, wherein the screw-receiving hole is formed by a metallic support sleeve fixedly accommodated in the housing and the bridging element is arranged such that the second end region projects axially beyond the support sleeve.
4. The control unit according to claim 1, wherein the second end region is provided with an elongated hole extending transversely to a longitudinal direction of the screw-receiving hole.
5. The control unit according to claim 1, wherein the second end region is eye-shaped, hook-shaped or S-shaped.
6. The control unit according to claim 1, wherein the bridging element is formed from a metal sheet having a uniform sheet thickness.
7. The control unit according to claim 1, wherein the second end region is configured to be further resiliently compressed when the screw head is supported in a planar manner on the support region.
8. The control unit according to claim 1, wherein the electronic component comprises a printed circuit board or is arranged on the printed circuit board.
9. A drive module for a parking lock actuation of a motor vehicle, comprising the control unit according to claim 1 and an electric motor connected to the control unit.
10. The drive module according to claim 9, wherein the electric motor and the control unit are located in the housing which is a common housing.
11. A control unit for a motor vehicle, the control unit comprising: a housing; at least one electronic component accommodated in the housing; at least one screw-receiving hole provided in the housing and a mounting screw that is received in the at least one screw-receiving hole; a bridging element comprised of metal and forming a ground connection of the at least one electronic component, the bridging element having a first end region which is located inside the housing and is electrically connected to the electronic component, and a second end region which is resiliently deformable arranged in a support region configured for axial support of a screw head of the mounting screw.
12. The control unit according to claim 11, wherein the bridging element is fixed in the housing by at least one of injection molding or a mechanical fixing element.
13. The control unit according to claim 11, wherein the screw-receiving hole is formed by a metallic support sleeve fixedly accommodated in the housing and the bridging element is arranged such that the second end region projects axially beyond the support sleeve.
14. The control unit according to claim 11, wherein the second end region comprises an elongated hole extending transversely to a longitudinal direction of the screw-receiving hole.
15. The control unit according to claim 11, wherein the second end region is eye-shaped, hook-shaped or S-shaped.
16. The control unit according to claim 11, wherein the bridging element is formed from a metal sheet having a uniform sheet thickness.
17. The control unit according to claim 11, wherein the second end region is configured to be further resiliently compressed when the screw head is supported in a planar manner on the support region.
18. The control unit according to claim 11, wherein the electronic component comprises a printed circuit board or is arranged on the printed circuit board.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The disclosure will now be explained in more detail with reference to figures, in which connection various exemplary embodiments are also shown.
[0020] In the figures:
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DETAILED DESCRIPTION
[0035] The figures are only schematic in nature and serve only for understanding the disclosure. The same elements are provided with the same reference symbols.
[0036] In
[0037] The housing 2 of the control unit 1 is made of plastic. The housing 2 essentially has two parts: A trough-shaped main part 18 and a cover 19 mounted on the main part 18. The cover 19 is accommodated on the main part 18 in such a way that an interior 23 of the housing 2 is hermetically sealed off from the environment 24.
[0038] Various electronic components 3 are present in the interior 23, which are placed on a printed circuit board 14/PCB, forming the control electronics unit for the electric motor 16. In an overall consideration of
[0039] In this embodiment, the cover 19 is supported on the outer wall 21/main part 18 via a separately provided seal (solid seal), which is not shown in detail for reasons of clarity. In further embodiments, another seal, such as an adhesive seal, is also provided or a material connection (preferably as a laser welded connection) of the cover 19 to the main part 18 is implemented. Both the cover 19 and the main part 18 are molded/made of a plastic.
[0040] According to the disclosure, a bridging element 6 is now provided for ground connection of the printed circuit board 14 and thus of the individual electronic components 3 as arranged on the printed circuit board 14.
[0041] In the
[0042] In this embodiment, the screw-receiving hole 4 is reinforced by a metallic support sleeve 11, or is formed directly by this support sleeve 11. The support sleeve 11 thus defines the axial length of the screw-receiving hole 4. The screw-receiving hole 4 is arranged outside the interior 23 as viewed with respect to the outer wall 21. Consequently, to provide the appropriate ground connection, the bridging element 6 extends from the interior 23 toward the screw-receiving hole 4/an environment 24 of the housing 2.
[0043] The bridging element 6 has a first end region 7 towards its side arranged in the interior 23, which is also shown in detail in
[0044] Towards a side facing away from the first end region 7, which faces the screw-receiving hole 4, the bridging element 6 has a second end region 8 which is designed to be specifically resilient/spring-elastically flexible (
[0045] As can be seen, for example, in an overall consideration of
[0046] In
[0047] When mounted on the vehicle, the mounting screw 5 is screwed into a further housing not shown for the sake of clarity, e.g., a clutch housing, a transmission housing or a motor housing, and is thus electrically connected to a further vehicle ground.
[0048] Moreover, as can be seen in more detail in
[0049] Preferably, the bridging element 6 is produced by punching and has a thickness of 0.6 mm to 0.8 mm. The usual material of the bridging element 6 is CuSn6 or CuNiSi.
[0050] In
[0051] For more precise positioning of the bridging element 6, the latter has an alignment hole 27 in that U-shaped intermediate region 26. This alignment hole 27 interacts with a mechanical fixing element as part of the production process and is held in the appropriate position. In further embodiments, it is also possible to implement the fixing element as an element remaining in the housing 2 after the primary forming process.
[0052]
[0053] In
[0054] In other words, the electronic module (control unit) according to the disclosure is a part of a drive unit of an actuator with BLDC motor (electric motor 16), or an independent control unit, which is spatially separated from the corresponding actuator with BLDC motor, or another electromechanical actuator assembly, which has a ground connection to a vehicle ground. This connection to the vehicle ground ensures the correct function of the actuator/control unit. In the case of a relatively small control unit with a plastic housing, as in the case of the IPL actuator, the compactness of the actuator, or the associated control unit, is of high importance. For this purpose, a contact between a PCB (printed circuit board 14) and the vehicle ground is robustly implemented.
[0055] The compact control unit is mechanically mounted on a corresponding interface in the vehicle (transmission housing, internal combustion engine, vehicle body, etc.) by means of a certain number of screw connections. Preferably, self-tapping screws (mounting screws 5) are used, which have relatively high tightening torques or can implement relatively high screw preloads.
[0056] A ground connection between the PCB (PCB incl. components, designated as control unit of the actuator) and the vehicle ground (e.g., transmission housing) is implemented by an extra pin (bridging element 6) with a press-fit zone (first end region 7). This pin is inserted at the same time as the connector pins (contact pins 29) when the housing 2 of the control unit is overmolded or, depending on the design and concept, mounted in the housing 2 together with the connector pins in a subsequent process. The pin with the press-fit zone/press-in zone is provided (ELO pin, NEO pin, etc.) at the interface of the pin/ground pin in the direction of the PCB. At this interface, the electrical contact between the pin and PCB is implemented by a certain number of gas-tight zones with a metal/metal contact. At the interface between the pin and the screw head 9 at the corresponding tightening position, the mass pin has a zone (second end region 8) with reduced mechanical stiffness in order to keep the deformation forces relatively low when tightening/mounting the mounting screw 5 at the corresponding position, or to facilitate deformation of the pin. The pins are produced by punching and made of material with a thickness from 0.6 mm to 0.8 mm. The usual base material of the pin is CuSn6 or CuNiSi
[0057] This zone with reduced mechanical stiffness is dimensioned such that after elastic-plastic deformation by the tightening process of the mounting screw 5, a residual elasticity is present so that the pin structure still guarantees the desired electrical contact between the pin and the screw head by a specified residual force under geometric tolerances. In order to avoid a possible decrease in the screw preload force over the lifetime of the application, metal sleeves (support sleeve 11) are usually used for the axial introduction of the screw preload force into the plastic housing.
[0058] In
[0059]
[0060] In
[0061]
[0062] In this case, the deformable zone is always implemented on the interface of the mass pin with screw contact on the width of the pin in the punching direction, so that in a zone with a higher width, the corresponding sealing interface for sealing in the overmolding tool is implemented.
LIST OF REFERENCE SYMBOLS
[0063] 1 Control unit
[0064] 2 Housing
[0065] 3 Electronic component
[0066] 4 Screw-receiving hole
[0067] 5 Mounting screw
[0068] 6 Bridging element
[0069] 7 First end region
[0070] 8 Second end region
[0071] 9 Screw head
[0072] 10 Support region
[0073] 11 Support sleeve
[0074] 12 Elongated hole
[0075] 13 Metal sheet
[0076] 14 Printed circuit board
[0077] 15 Drive module
[0078] 16 Electric motor
[0079] 17 Actuator
[0080] 18 Main part
[0081] 19 Cover
[0082] 20 Spindle drive
[0083] 21 Outer wall
[0084] 22 Receiving contour
[0085] 23 Interior
[0086] 24 Environment
[0087] 25 Press pin
[0088] 26 Intermediate region
[0089] 27 Alignment hole
[0090] 28 Connector region
[0091] 29 Contact pin
[0092] 30 Contact region