The present invention relates to a pressure controller, in particular for slip-controlled motor vehicle brake systems.
DE 198 41 334 A1 discloses a pressure controller of this type for a wheel-slip controlled motor vehicle brake system which includes a first housing for accommodating a plurality of electrically operable pressure control valves and a second housing for accommodating electric and electronic components. When the second housing is placed on the first housing, not only the pressure control valves but also a plurality of pressure sensors arranged in a block-shaped sensor housing are electrically contacted. The sensor housing is fluid-tightly closed by a cover provided with a seal-tight electric plug to permit an electric connection between the pressure sensors and the electric and electronic components in the second housing. The sensor housing along with the cover forms an independently operable, structurally complicated pressure sensor module which must be attached in an extremely precise fashion between the two housings by means of clamping bolts.
In view of the above, an object of the invention is to simplify the structure of the pressure controller.
According to the invention, this object is achieved for a pressure controller of the type mentioned hereinabove using a second housing arranged on a first housing and a compensation device arranged between a sensor housing and the second housing to compensate for process and assembly tolerances.
Further features, advantages and possible applications of the invention can be taken from the description of several embodiments by way of the accompanying drawings.
In the drawings:
In all embodiments illustrated in
For the simple, yet reliable attachment and sealing of the pressure pipes 13 in the first housing 1 by means of self-calking engagement, the material of the pipe portions 14 exhibits a greater hardness than the material of the first housing 1. To displace the softer material of the first housing 1 into the recesses 16 of the pipe portions 14, the pipe portions 14 have stepped portions 18 which, in the capacity of a calking punch, provide an undetachable, leakproof connection between the pressure pipes 12 and the first housing 1 when the pipe portions 14 are forced into the pressure channels 13.
Likewise the pressure pipes 12 are connected to the sensor housing 3 by means of a self-calking engagement in an undetachable and fluid-tight fashion already before they are forced into the first housing 1, for what reason the material of the sensor housing 3 has a hardness lower than that of the material of the pressure pipes 12, which are likewise provided at their periphery with stepped portions for displacing the softer material of the sensor housing 3 into the recesses 16 at the pressure pipes 12. The pressure pipes 12 are preferably made of steel, while the first housing 1 and the sensor housing 3 are manufactured using a light-metal alloy.
As the pressure sensor module corresponding to the previous illustration is undetachably connected to the first housing 1, special measures need to be taken to ensure a simplest possible, fluid-tight and safe electrical connection between the pressure sensor module and the electric and electronic components in the second housing 2 irrespective of process and assembly tolerances.
In view of the above, the invention proposes that at least one means for compensating process and assembly tolerances is arranged between the sensor housing 3 and the second housing 2, for what purpose an elastic and sealed electric contact 5 is especially appropriate that is preferably designed as a spring contact which, when required, between the sensor housing 3 and the second housing 2, is able to bridge a radial or lateral offset between the contact surfaces of the second housing 2 and the pressure sensor module for the purpose of tolerance compensation.
For the sake of clarity, the illustration of an offset has been omitted in
To seal the elastic electric contact 5, a housing frame 4 is provided between the sensor housing 3 and the second housing 2. The electric contact 5 which is preferably configured as a helical spring abuts with the end of a spring winding within the housing frame 4 on a generously sized contact surface 16 of a circuit board 7 in a mechanically biased manner. The circuit board 7 accommodates the electric and/or electronic components 6 necessary for several pressure measuring elements 6, received among others by a pressure signal evaluating circuit. The result is a unit whose function can be pre-tested before the pressure sensor module is undetachably fastened at the first housing 1.
The housing frame 4 plunges with its end area remote from the sensor housing 3 into an elastic or plastic sealing material 8, which compensates the process and/or assembly tolerances and is injection-molded into a housing groove 10 within the projection 9 arranged at the bottom side of the second housing 2. A silicone gel is especially appropriate as sealing material 8.
In order to compensate the assembly and process tolerances, the width of the housing groove 10 is dimensioned larger than the wall thickness of the housing frame 4 by a tolerance rate required therefor, with the result of safeguarding a reliable, moisture-proof sealing of the sensitive electric and/or electronic components in the pressure sensor module.
Following the above general description of the invention, some expedient details of the housing frame will now be explained more closely making reference to the
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Number | Date | Country | Kind |
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103 07 236.5 | Feb 2003 | DE | national |
103 43 310.4 | Sep 2003 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP03/14635 | 12/19/2003 | WO | 8/19/2005 |