This application is the U.S. national phase application of PCT International Application No. PCT/DE2008/000189, filed Feb. 2, 2008, which claims priority to German Patent Application No. DE 10 2007 014 279.1, filed Mar. 19, 2007, the contents of such applications being incorporated by reference herein.
1. Field of the Invention
The invention relates to a sensor arrangement.
2. Description of the Related Art
Sensor arrangements are used in particular in the automobile industry. The installation site of such sensor arrangements is in particular a gearbox or engine compartment of a motor vehicle. The sensor elements of a sensor arrangement of this type are used for example to determine an engine speed or assembly path. The sensor elements are electrically contacted to external read-out or control devices via the contact pins. Contact elements are here surrounded by a plastic body.
An object of the present invention is to further develop a sensor arrangement of the type described in the introduction in such a manner that the cost of manufacturing it is reduced while maintaining the same level of security against unwanted electrostatic discharge, or against the formation of an unwanted short circuit.
According to aspects of the invention, it has been recognised that no dual-stage injection method for surrounding the contact element with the plastic body is necessary when collars made of synthetic material are provided which run around the affixing positions. As a result, the distance between a surface of the plastic body which is adjacent to the affixing position on the one hand and an exposed area of the contact element on said affixing position on the other is enlarged to such a size that during the mounting of the sensor arrangement or the remaining motor vehicle, and during the use of the motor vehicle, neither an electric discharge nor a short circuit can occur. In particular, due to the collar, a distance between the exposed areas of adjacent affixing positions is enlarged in such a manner that no short circuits, for example as a result of metal shavings, in particular when the sensor arrangement is used in a gearbox, can occur.
An embodiment of a collar can be produced at a low cost when for example the collar is also generated when the plastic body is insert moulded.
A lid according to at least one embodiment protects the sensor element. The lid can completely cover the sensor element. Alternatively, it is possible that the lid only covers the sensor element where protection against unwanted electrostatic discharge or a short circuit is required.
The advantages of the method according to aspects of the invention correspond to those which have already been discussed with reference to the sensor arrangement according to aspects of the invention.
A connecting body according to at least one embodiment makes it easier to mount the sensor arrangement. The connecting body also secures the contactability of the contact pins after the connecting body has been loosened if the connecting body is connected to the contact element via the free contact ends of the contact pins.
A connecting body according to one or more aspects of the invention also ensures a correct relative positioning of the contact paths of the contact element which are assigned to the contact pins.
A connection of the connecting body with the contact element via the contact pins also ensures that the connecting body can be removed during the course of manufacturing the sensor arrangement without leading to exposed areas, on which unwanted electrostatic discharges or short circuits may occur.
By means of caulking in accordance with one or more aspects of the invention, the exposed areas of the contact element can be completely closed. As a result, protection against shavings, or a seal against shavings is in particular guaranteed.
Exemplary embodiments of the invention will now be explained in greater detail below with reference to the drawing, in which:
A sensor arrangement 1 has a sensor element with the embodiment shown in
In order to connect the signal of the sensor element with an external read-out and control device not shown in greater detail, contact pins 4 are used. The latter are arranged on one end of the plastic body 5 of the sensor arrangement 1 which lies opposite the sensor element. The plastic body 5 is also known as a sensor dome. The shaving protection lid 2 which is used to protect the sensor element 3 is in particular removably connected to the plastic body 5, for example by latching with it or by being hot caulked to it. Overall, with the embodiment shown in
A contact element 6, also known as a punch scrap, is in electrical contact with the sensor element on the one hand and the contact pins 4 on the other. The contact element 6 is made of a copper alloy. The contact element 6 forms conducting or contact tracks which are respectively assigned to the contact pins, and which lead from the respective connection points of the sensor element 3 through to the contact pins 4. The contact element 6 is insert moulded with the plastic body 5. Here, a single-stage insert moulding method is used. With this single-stage insert moulding method, the contact element 6 is retained or held at affixing positions 7 in an injecting tool. Overall, fourteen affixing positions 7 of this type face the viewer from the perspective shown in
Around the areas of the affixing positions 7 which are bare of the plastic material following the insert moulding, the affixing positions 7 respectively comprise one circumferential collar 8 which is made of the injected plastic material. Depending on the form of the retaining elements of the injecting tool, the collar 8 is here formed with a different diameter and different collar wall thicknesses. With the sensor arrangement 1 shown in
On the collars 8 with a smaller diameter, the punch scrap 6 is held, i.e. affixed. With the collars 8 with a larger collar diameter, the punch scrap 6 is retained and affixed. For this retention, the punch scrap 6 has a drill hole.
Since the collars 8 are produced during the insert moulding of the contact element 6 with the plastic material which creates the structure of the plastic body 5, the collars 8 are formed as a single piece onto the plastic body 5.
The collars 8 ensure that the areas of the affixing positions 7 which are bare of the plastic material do not form unwanted contacts with external components or with shavings.
While the sensor arrangement 1 is being manufactured, the ends of the contact pins 4 which are later free are connected with each other via a connecting web or connecting body 9. The connecting web 9 is in general exposed, i.e. it is not insert moulded. The connecting web 9 thus lies completely outside the plastic body 5.
The sensor arrangement 1 shown in
When insert moulding the contact element 6 in precisely one injection stage, the collars 8 are formed at the same time. Ultimately, the connecting web 9 is cut out of the contact pins 4, so that the free ends of the contact pins 4 are exposed for connection to an external read-out and control device.
Additionally, the formed collars 8 can be caulked over the affixing positions 7, so that the material from the collars 8 closes the exposed areas of the affixing positions. As a result, further security against unwanted electrical contact from outside is created.
The sensor arrangement 1 shown in
It can be seen from the section shown in
In contrast to the embodiment shown in
The manufacture of the sensor arrangement 1 shown in
Number | Date | Country | Kind |
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10 2007 014 279 | Mar 2007 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/DE2008/000189 | 2/2/2008 | WO | 00 | 10/16/2009 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2008/113312 | 9/25/2008 | WO | A |
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