The present invention relates to a connector connected to a solenoid embedded in a hole formed on a housing of a device to be attached.
A connector connected to a solenoid embedded in a hole formed on a housing of a device to be attached is disclosed, for example, in Pat. Application publication No. JP-H11-159449 A.
Since this connector of Patent Application Publication No.JP-H11-159449 A is attached to a solenoid housing one end of which is exposed to the atmosphere from an opening edge part of the above-described hole, in order to ensure the waterproof and corrosion resistance of a solenoid, it is considered that it is necessary to carry out a surface treatment for corrosion resistance on the outer surface of the solenoid housing, and it causes increase of cost for manufacturing the solenoid.
Accordingly, an object of the present invention is to provide a connector connected to a solenoid embedded in a hole formed on a housing of a device to be attached, which can reduce the process cost for ensuring waterproof and corrosion resistance of the solenoid, compared with a conventional structure.
To achieve the above objects, a connector according to the present invention is connected to a solenoid embedded in a hole formed on a housing of a device to be attached, and the connector comprises connector electric terminal members capable of being engaged with electric terminal members of the solenoid, and a case which stores the connector electric terminal members, which is removably attached to the solenoid and which covers an opening edge part of the hole.
In this connector according to the present invention, because the case of the connector covers the opening edge part of the hole in which the solenoid is embedded, the solenoid is not exposed directly to the outside environment, and there is few chance of contact with moisture. Therefore, even if the grade of the treatment for ensuring the waterproof and corrosion resistance is reduced as compared with a conventional grade, the waterproof and corrosion resistance of the solenoid can be ensured. Therefore, in the connector according to the present invention, the process cost for ensuring the waterproof and corrosion resistance of the solenoid can be reduced, compared with a conventional structure.
In the connector according to the present invention, it is preferred that a seal member is provided for sealing a gap between the case and the opening edge part of the hole. By the structure where the seal member is disposed for sealing a gap between the case of the connector and the opening edge part of the hole in which the solenoid is embedded, the solenoid is completely isolated from outside environment, and contact chance with moisture is wiped out. As a result, the process cost for ensuring the waterproof and corrosion resistance of the solenoid can be further reduced.
Further, in the connector according to the present invention, it is preferred that the case is molded with a resin. By molding the case of the connector with a resin, it is facilitated to make the shape of the case complicated, the electric insulation property of the connector may be improved, and the connector may be made light.
Further, in the connector according to the present invention, it is preferred that a rotation preventing mechanism is formed at an engaging portion between the case and the solenoid. By preventing rotation of the connector relative to the solenoid, it is prevented that an excessive force is applied to electric terminal members of both the connector and the solenoid and the electric terminal members are damaged.
Further, in the connector according to the present invention, it is preferred that a removal preventing mechanism is formed at an engaging portion between the case and the solenoid. By this, removal of the connector from the solenoid may be prevented.
Further, in the connector according to the present invention, it is preferred that a rotation preventing mechanism for preventing rotation of the case relative to the housing of the device to be attached is formed at an engaging portion between the case and the housing of the device to be attached. By this, it is prevented that the connector rotates by receiving an external force and electric terminal members are damaged.
Further, in the connector according to the present invention, it is preferred that a removal preventing member engaged with the hole of the housing of the device to be attached is provided for engaging the case and preventing removal of the case from the hole. By this, removal of the connector from the housing of the device to be attached may be prevented, and ultimately, removal of the solenoid from the housing of the device to be attached may be prevented.
Further, in the connector according to the present invention, it is preferred that a diode is disposed between the connector electric terminal members. By disposing a diode in the connector, the structure of the solenoid may be simplified.
Such a connector according to the present invention is suitable in a case where the device to be attached is a variable displacement compressor, and in particular, suitable in a case where the variable displacement compressor is a compressor used in an air conditioning system for a vehicle.
In the connector according to the present invention, because the case of the connector covers the opening edge part of the hole in which the solenoid is embedded, the solenoid is not exposed directly to the outside environment, and there is few chance of contact with moisture. Therefore, even if the grade of the treatment for ensuring the waterproof and corrosion resistance is reduced as compared with a conventional grade, the waterproof and corrosion resistance of the solenoid can be ensured. Therefore, in the connector according to the present invention, the process cost for ensuring the waterproof and corrosion resistance of the solenoid can be reduced, compared with a conventional structure.
Hereinafter, desirable embodiments of connectors according to the present invention will be explained as to a case of a connector capable of being applied to a displacement control solenoid valve of a variable displacement compressor, particularly, of a variable displacement compressor suitable for use in an air conditioning system for a vehicle.
Connector 3 is constructed from a pair of connector electric terminal members 3a which can be attached to and detached from the pair of electric terminal members 2a of solenoid 2, a pair of lead wires 3b coupled to connector electric terminal members 3a, an insulation rubber 3c, and a case 3d made of a resin which stores connector electric terminal members 3a.
Connector electric terminal members 3a are insert molded integrally with case 3d. Insulation rubber 3c attached to lead wires 3b and closing the peripheries of lead wires 3b is engaged to an end portion of case 3d, lead wires 3b and connector electric terminal members 3a are coupled, a resin is injected into case 3d surrounding the coupling portion and a lid is provided thereon, and connector 3 is thus formed.
As depicted in
In connector 3 according to this embodiment, because case 3d covers the opening edge part of hole 101 in which solenoid 2 is embedded, solenoid 2 is not exposed directly to outside environment, and there is few chance of contact with moisture. Therefore, even if the grade of the treatment for ensuring the waterproof and corrosion resistance is reduced as compared with a conventional grade, the waterproof and corrosion resistance of solenoid 2 can be ensured. Therefore, in connector 3, the process cost for ensuring the waterproof and corrosion resistance of solenoid 2 can be reduced, compared with a conventional structure.
Moreover, by molding case 3d of connector 3 with a resin, it is facilitated to make the shape of case 3d complicated, the electric insulation property of connector 3 may be improved, and connector 3 may be made light.
Further, by providing snap ring 4, removal of connector 3 from housing 100 may be prevented, and removal of solenoid 2, ultimately, solenoid valve 10, from housing 100 may be prevented.
Further, as depicted in
Further, although not depicted, an appropriate engaging portion for removing connector 3 attached to housing 100 by using a jig may be formed on case 3d of connector 3.
The connector according to the present invention can be suitably used not only for a solenoid valve for displacement control of a variable displacement compressor but also for various solenoids attached to housings of devices.
Number | Date | Country | Kind |
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2004-231327 | Aug 2004 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2005/014169 | 8/3/2005 | WO | 00 | 2/6/2007 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2006/013872 | 2/9/2006 | WO | A |
Number | Name | Date | Kind |
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3997232 | Dunaway | Dec 1976 | A |
4204739 | Shoenleben | May 1980 | A |
4239319 | Gladd et al. | Dec 1980 | A |
4295701 | Gunn | Oct 1981 | A |
5113101 | Liu et al. | May 1992 | A |
5518419 | Denyer et al. | May 1996 | A |
5567170 | Kroeber | Oct 1996 | A |
5801465 | Yamada | Sep 1998 | A |
6290537 | Sommer | Sep 2001 | B1 |
6591684 | Babala et al | Jul 2003 | B2 |
Number | Date | Country |
---|---|---|
H07-326424 | Dec 1995 | JP |
11-159449 | Jun 1999 | JP |
2001-227457 | Aug 2001 | JP |
2003-124021 | Apr 2003 | JP |
Number | Date | Country | |
---|---|---|---|
20070184697 A1 | Aug 2007 | US |