1. Field of the Invention
The present invention relates to an electromagnetic relay.
2. Description of Related Art
An electromagnetic relay usually includes a bus bar used for a connection with a connector and an electronic component, as shown in
As shown in
The present invention was made in view of the above-described circumstances, and an object thereof is to provide an electromagnetic relay in which a relay body is integrated with a connector and which can be connected to an electronic component without using a bus bar.
According to an aspect of the invention, there is provided an electromagnetic relay comprising: a relay body; a connector which is integrated with the relay body; and an electronic-component connection terminal which protrudes from the relay body.
Hereinafter, exemplary embodiments of the invention will be described in detail with reference to the drawings.
An electromagnetic relay 1 of the exemplary embodiment includes a connector 20 and an electronic-component terminal 30. The connector 20 is provided on and integrated with an upper surface of a relay body 2, thereby integrated with the relay body 2. The electronic-component connection terminal 30 protrudes from a lower surface of the relay body 2. The connector 20 includes one terminal 201. The terminal 201 and the electronic-component connection terminal 30 are connected to a fixed terminal 15 disposed in the relay body 2. The electronic-component connection terminal 30 and the fixed terminal 15 may be configured by a same member or respective separated members. The electronic component 102 (see
The electromagnet unit 11 includes a yoke 111 and a coil 112 fixed to the yoke 111. The armature 12 is bent into a substantially dogleg shape, and swingably supported via a hinge spring (not shown) by the upper end edge of the yoke 111 of the electromagnet unit 11. The card 13 is supported by the base 10 so as to be swingable toward the armature 12 and the movable terminal 14. The card 13 has a first branch portion 131 which contacts the armature 12, and a second branch portion 132 which contacts the movable terminal 14. The movable terminal 14 is placed so as to oppose the card 13, and an upper end portion thereof contacts the second branch portion 132 of the card 13. In the movable terminal 14, a movable contact 141 is disposed below a position at which the movable terminal 14 contacts the second branch portion 132 of the card 13. The fixed terminal 15 is placed so as to oppose the movable terminal 14, and an upper end portion thereof is formed into an L-shape. A part of the L-shaped portion, which extends in a vertical direction, corresponds to the terminal 201 of the connector 20.
In the electromagnetic relay 1, when no voltage is applied to the electromagnet unit 11, a portion of the armature in the vicinity of a lower end portion 121 is urged by the spring force of the hinge spring (not shown). Therefore, an attractable surface of the upper end portion 122 of the armature 12 is separated from a magnetic pole portion 113 of the electromagnet unit 11. Since the attractable surface of the upper end portion 122 of the armature 12 is separated from the magnetic pole portion 113 of the electromagnet unit 11, the card 13 is in a resting state, and the movable contact 141 of the movable terminal 14 and a fixed contact 151 of the fixed terminal 15 are in a separated state. When a voltage is applied to the electromagnet unit 11 in this state, the electromagnet unit 11 is in an energized state, and the attractable surface of the upper end portion 122 of the armature 12 is attracted to the electromagnet unit 11. Then, the swinging operation of the armature 12 at this time causes the card 13 to swing toward the movable terminal 14, so that the movable contact 141 of the movable terminal 14 contacts the fixed contact 151 of the fixed terminal 15, whereby the movable terminal 14 and the fixed terminal 15 are in a current conducting state.
In the state in which the voltage is applied to the electromagnet unit 11, when the voltage application is stopped, the electromagnet unit 11 is in a de-energized state, and the attracted force of the armature 12 to the electromagnet unit 11 is released. When the attracted force of the armature 12 is released, a part of the armature 12 in the vicinity of the lower end portion 121 is urged by the spring force of the hinge spring (not shown), and the armature 12 swings in the direction opposite to that in the case in which the voltage is applied. The swinging operation of the armature 12 at this time causes the card 13 to swing toward the armature 12, so that the movable contact 141 of the movable terminal 14 is separated from the fixed contact 151 of the fixed terminal 15, whereby the movable terminal 14 and the fixed terminal 15 are in a current non-conducting state.
As described above, according to the electromagnetic relay 1 of the first exemplary embodiment, the connector 20 is provided so as to be integrated with the relay body 2, and the electronic-component connection terminal 30 is disposed so as to protrude from the relay body 2. Therefore, the relay body 2 and the connector 20 can be integrated with each other, and an electronic component can be connected to the electromagnetic relay 1 without using a bus bar.
In the electromagnetic relay 1 of the exemplary embodiment, one connector 20 is disposed. Alternatively, a plurality of connectors may be provided integrally with the relay body 2. Furthermore, the electronic-component connection terminal 30 may be disposed for each of a plurality of fixed terminals 15. The number of the electronic-component connection terminal 30 is not limited to one, and it is a matter of course that a plurality of electronic-component connection terminals may be disposed.
Further, as shown in
According to the exemplary embodiments of the invention, the connector is integrated with the relay body, and the electronic-component connection terminal protrudes from the relay body. Therefore, the relay body and the connector can be integrated with each other, and an electronic component can be connected to the relay without using a bus bar.
Number | Date | Country | Kind |
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2011-063972 | Mar 2011 | JP | national |