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Component holder for a hall sensor and process for manufacturing a component holder

a technology for components and sensors, which is applied in the direction of casings/cabinets/drawers, instruments, pulse techniques, etc., can solve the problems of high cost of mounting hall sensors and component holders on printed circuit boards, difficult to determine with a high degree of precision the rotational position of a rotor to be detected that belongs to an adjusting motor

Inactive Publication Date: 2002-05-02
ROBERT BOSCH GMBH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0002] The component holder according to the invention, with the characterizing features of claim 1 or 2, as well as the process for manufacturing a component holder according to claim 9, has the advantage over the prior art that a play-free connection of the Hall sensor in the component holder occurs, by means of which the Hall sensor can be fastened to a printed circuit board with a high degree of precision in relation to a magnet ring. It is also particularly advantageous that the component holder according to the invention permits an automatic placement of the printed circuit board by means of automatic placement machines in mass production so that assembly costs are reduced.[0003] Advantageous improvements and updates of the component holder disclosed in claim 1 and 2, as well as of the process disclosed in claim 9, are possible by means of the measures taken in the dependent claims.

Problems solved by technology

However, this type of mounting of the Hall sensor and component holder on the printed circuit board is costly.
In addition, the superposition of the component holder does not permit a play-free seating of the Hall sensor in the component holder.
Without a play-free seating, though, it is very difficult to determine with a high degree of precision the rotational position of a rotor to be detected that belongs to an adjusting motor.
Furthermore, the component holder known from the prior art is not suited for an automatic placement in mass production by means of an automatic placement machines.

Method used

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  • Component holder for a hall sensor and process for manufacturing a component holder
  • Component holder for a hall sensor and process for manufacturing a component holder
  • Component holder for a hall sensor and process for manufacturing a component holder

Examples

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Embodiment Construction

[0015] FIG. 1 is a perspective representation of a component holder 1 with a Hall sensor 2 according to a first exemplary embodiment according to the invention. For example, the Hall sensor 2 is used in a known manner for position detection of the rotational position of a rotor 5 that is indicated with dashed lines in FIGS. 3, 4, and 9. The rotor 5 is a component of an adjusting motor, not shown in detail, of the kind that is used, for example, for window regulator motors or as a sunroof drive mechanism for motor vehicles. Distributed on its circumference, the rotor 5 has magnet rings, not shown in detail, which preferably have multi-poled, permanently magnetized regions. The rotational position of the rotor 5 can be determined in a known manner in the cooperation of the magnetized regions of the rotor 5 with the Hall sensor 2.

[0016] Hall sensors 2 of this kind have an essentially block-shaped housing 12. As shown in FIG. 5, a bottom view of the component holder 1 with Hall sensor 2...

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Abstract

Known Hall sensors are fastened to a printed circuit board by way of component holders in order, by way of the component holders, to achieve an exact positioning and securing on the printed circuit board in relation to a magnet ring of a rotor of an adjusting motor. But a properly manufactured assembly that is executed by means of automatic placement machines is not possible with the known component holders. Therefore a component holder (1) for a Hall sensor (2) is proposed, which is partially injection molded only onto the connecting prongs (8, 9, 10) of the Hall sensor (2) or is injection molded onto connecting prongs (8, 9, 10) and at least partially onto a housing (12) of the Hall sensor (2). The component holder for a Hall sensor according to the invention is provided for adjusting motors, in particular for window regulator motors of motor vehicles.

Description

PRIOR ART[0001] The invention is based on a component holder for a Hall sensor according to the preamble to claim 1 or 2 and on a process for manufacturing a component holder according to the preamble of claim 9. A component holder for a Hall sensor is already known (German Patent Disclosure 32 35 204), which is placed over the Hall sensor in order to hold it in all directions so that it is possible to position the Hall sensor on a printed circuit board in a narrow radial tolerance range in relation to a circumferential magnet ring. The component holder has injection molded centering pins which can be inserted into corresponding openings of the printed circuit board. In order to mount the Hall sensor, its connecting prongs are first slid into openings of the printed circuit board and then the component holder is placed over it until the component holder, with its underside, comes into contact with the surface of the printed circuit board. However, this type of mounting of the Hall s...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): B29C45/14G01D11/24H01L43/04H02K11/215H02K29/08H05K3/30
CPCG01D11/245H05K3/301H02K11/0021H02K11/215
Inventor RIEHL, GUENTHERHAGER, MARTIN
Owner ROBERT BOSCH GMBH
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