This application is based upon, claims the benefit of priority of, and incorporates by reference the contents of Japanese Patent Application No. 2003-372946 filed on Oct. 31, 2003.
The present invention relates to a resin housing structure of electrical circuit device mounted in a vehicle.
Various electrical circuit devices having sensors mounted thereon are mounted in vehicles. One of such electrical circuit devices is an electrical circuit device mounted in the front portion of a vehicle for collision detection. This device has a G sensor for detecting collision or vibration to inflate an air bag at vehicle crash time. A related art implementation of this electrical circuit device is shown in
The connector shape and vehicle fixing shape of the electrical circuit device mounted in the vehicle are determined on the basis of the design demands of a vehicle maker. Therefore, the determination of a fixing place of the electrical circuit device, etc. changes, and thus resin cases having various shapes may be needed. When three kinds of connector shapes such as 2P connector, 4P connector and 6P connector are assumed and also three kinds of vehicle fixing shapes such as metal bush thick type, metal bush thin type and metal bolt type are assumed, nine types of case shapes are achieved by multiplying the number (three) of the types in the connector shape and the number (three) of the types in the vehicle fixing shape are needed. Here,
Therefore, what is needed is a resin housing structure of an electrical circuit device which can adapt to many kinds of shapes with a small number of molding molds.
Respective means suitable to solve the above problem will be described by adding the action and effect thereof as occasion demands.
According to the present invention, a resin housing structure of electrical circuit device mounted in a vehicle is characterized in that a resin connector equipped with an electrical circuit having a sensor mounted thereon and a connector terminal for electrically connecting the electrical circuit to the external, and a resin case equipped with a fixing portion to be fixed to a vehicle are divisionally formed, and the resin connector and the resin case are joined to each other and unified into one body.
Accordingly, the resin connector formed by using a mold for molding the resin connector and the resin case formed by using a mold for molding the resin case are integrally joined to each other, whereby the number of types of molds can be more greatly reduced as compared with a conventional structure achieved by manufacturing a resin housing of overall electrical circuit device with a single molding mold. Accordingly, the cost required for the molding molds can be reduced. Furthermore, when an electrical circuit device having a new shape can be implemented by combining an existing resin connector shape and an existing resin case shape, it can be manufactured by using an existing mold for molding the resin connector and an existing mold for molding the resin case without newly forming a molding mold, so that the present invention can take a quick countermeasure to provide an increase of the types in the shape of the electrical circuit device.
It is preferable that the shape of the resin connector is selected from plural kinds of connector shapes and the shape of the fixing portion of the resin case is selected from plural kinds of fixing shapes. Therefore, the present invention can adapt to a electrical circuit device whose number of types in shape is equal to the product of the number of types in the connector shape and the number of types in the vehicle fixing shape.
Furthermore, the resin connector and the resin case are joined to each other by any one of adhesion based on adhesive, laser welding, vibration welding, ultrasonic welding, caulking, DSI formation. Accordingly, in accordance with a specification required to the electrical circuit device, the resin connector and the resin case can be surely integrally joined to each other according to any one joint method.
Furthermore, the sensor is preferably a G sensor for detecting acceleration. Accordingly, in collision detecting electrical circuit device having a G sensor mounted therein, many kinds of connector shapes and fixing shapes can be dealt with by a few types of molding molds.
According to the resin housing structure of the electrical circuit device of the present invention, the number of molds can be reduced to be less than that of the conventional structure that the resin housing of the overall electrical circuit device is manufactured by a single molding mold. Accordingly, the manufacturing cost of the molding molds can be reduced. Furthermore, when an electrical circuit device having a new shape can be implemented by combining an existing resin connector shape and an existing resin case shape, it can be manufactured by using an existing mold for molding the resin connector and an existing mold for molding the resin case without newly forming a molding mold. Therefore, the present invention can take a quick countermeasure to increase of the number of types concerning the shapes of electrical circuit device.
The above and other objects, features and advantages of the present invention will become more apparent from the following detailed description made with reference to the accompanying drawings. In the drawings:
A preferred embodiment according to the present invention will be described hereunder with reference to the accompanying drawings.
The electrical circuit device 1 according to the embodiment of the present invention is a collision detecting sensor which is equipped to the front portion of a vehicle and transmits a G detection signal representing occurrence of collision or vibration to an air bag control device.
The electrical circuit device 1 is constructed by separately forming a connector portion 10 and a case portion 20 and then joining these portions into one body. The constructions of the connector portion 10 and the case portion 20 and the joining of these portions will be described more fully below.
Referring to
The connector main body 11 is a resin-molded part that may be formed from, for example, PBT (polybuthylene terephthalate) resin, nylon resin or the like. The connector main body 11 is equipped with a recess portion 11a for receiving, for example, a plug of a signal transmitting code electrically connected to the air bag control device.
The circuit portion 12 comprises a P-plate (glass epoxy type board) on which an electrical circuit is mounted. The electrical circuit includes a G sensor and outputs collision or vibration detected by the G sensor as a G detection signal. The circuit portion 12 is supported by a wire 14 connected to a connector terminal 13 exposed from the end face of the connector main body 11 at the opposite side to the recess portion 11a, and electrically connected to the wire 14. The circuit portion 12 may be designed in such a P-plate less type that the G sensor is directly mounted on the connector main body 11 without using any P-plate.
The connector terminal 13 is a pin-type metal part electrically connected to the circuit portion 12 and the wire 14. About half of the connector terminal 13 containing one end portion thereof is exposed to project into the inside of the recess portion 11a of the connector main body 11, and about the remaining half containing the other end portion is integrally molded with the connector main body 11 to be embedded in the connector main body 11. When the plug of the signal transmitting code connected to the air bag control device described above is engagingly inserted in the recess portion 11a, the plug and the exposed portion of the terminal connector 13 are brought into contact with each other, whereby the air bag control device and the circuit portion 12 are electrically connected to each other. In the figures, a 2P type terminal connector in which two end portions of a pin-type terminal connector 13 are exposed in the recess portion 11a of the connector main body 11 is adopted. However, a 4P type terminal connector in which four end portions are exposed or a 6P type terminal connector in which six end portions are exposed may be adopted.
Referring to
Referring to
Next, the effect achieved by using the resin housing structure of the electrical circuit device 1 described above will be described. Various connector shapes and vehicle fixing shapes of various kinds of electrical circuit devices mounted in vehicles are used from the viewpoint of design ideas of vehicle makers, fixing places of electrical circuit device, etc.
Here, it is assumed a case where three kinds of shapes containing a 4P connector (number 2) and a 6P connector (number 3) in addition to the 2P connector (number 1) used in the above embodiment must be considered as the connector shapes as shown in
According to the resin housing structure of the electrical circuit device, the present invention can adapt to the nine types in shape of electrical circuit device by using three types of molds for molding the connector portion 10 and three types of molds for molding the case portions 20, totally six types of resin molding molds.
As is apparent from the foregoing description, according to this embodiment, the connector portion 10 manufactured by using the mold for molding the connector portion 10 and the case portion manufactured by using the mold for molding the case portion 20 are joined and unified into one body, whereby the number of molds can be reduced more greatly as compared with the conventional structure that the resin housing of the overall electrical circuit device is manufactured by one mold. Accordingly, the cost required to manufacture the molds can be reduced. Furthermore, when an electrical circuit device having a new shape can be implemented by combining the shape of an existing connector portion 10 and the shape of an existing case portion 20, the electrical circuit device concerned can be manufactured by using both the existing molds for the connector portion 10 and the case portion 20 without manufacturing any new mold, so that the increase of the types in shape of electrical circuit device can be quickly supported.
Furthermore, it is preferable that the connector portion 10 is selected from plural types of connector shapes, and also the fixing portion of the case 20 is selected from plural types of fixing shapes. Accordingly, an electrical circuit device whose number of types is equal to the product of the number of types in connector shape and the number of types in fixing shape can be supported.
The electrical circuit device 1 is collision detecting electric circuit equipment in which a G sensor for detecting acceleration is mounted, and thus collision detecting electrical circuit device in which many types of connector shapes and fixing shapes exist can be supported by a small number of types in shape of molds.
The present invention is not limited to the above embodiments, and various kinds of modifications may be made without departing from the subject matter.
For example, the connector shapes and vehicle fixing shapes of the electrical circuit device in the above embodiments are merely examples, and thus it should be understood that the present invention is not limited to these examples.
The resin housing structure of the electrical circuit device of the present invention is applicable to electrical circuit device having various kinds of mechanic or electric sensors for which plural kinds of connector shapes and vehicle fixing shapes exist.
Number | Date | Country | Kind |
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2003-372946 | Oct 2003 | JP | national |