ELECTRONIC DEVICE AND MANUFACTURING METHOD THEREFOR
20170076894 ยท 2017-03-16
Assignee
Inventors
- Kazuhiro TSUTSUI (Kumamoto-shi, Kumamoto, JP)
- Ayaka MIYAKE (Kikuchi-shi, Kumamoto, JP)
- Jun SASAKI (Yamaga-shi, Kumamoto, JP)
- Franco Vernaroli (Patrica, IT)
- Fabio Mangiapelo (Alatri, IT)
- Francesco Greco (Frosinone, IT)
Cpc classification
H01H50/64
ELECTRICITY
H01R13/514
ELECTRICITY
H01H2050/049
ELECTRICITY
H01H49/00
ELECTRICITY
International classification
H01H50/04
ELECTRICITY
H01R13/514
ELECTRICITY
H01H50/64
ELECTRICITY
Abstract
An electronic device capable of reducing costs for equipment is shown. Of a plurality of housings each having an electromagnetic relay body incorporated therein, the adjacent housings are unified with a disconnectable connector provided on facing outer surfaces of the housings.
Claims
1. An electronic device, comprising: an internal component; a plurality of housings each having the internal component incorporated therein; and a first disconnectable connector that connects facing outer surfaces of the adjacent housings of the plurality of housings to each other to unify the adjacent housings.
2. The electronic device according to claim 1, comprising: a second disconnectable connector that connects the facing outer surfaces of the adjacent housings to each other to unify the adjacent housings, the first and second disconnectable connectors being inclined so as to be line-symmetric.
3. The electronic device according to claim 2, wherein the first and second connectors are inclined in a direction in which, with a symmetric axis of line-symmetry at a center, a distance increases from a first end to a second end of each connector, and are also inclined with a wider inclination angle from a bend portion, provided in a middle of each connector, toward the second end.
4. The electronic device according to claim 1, wherein the internal component comprises an electromagnetic relay body that drives a contact opening and closing mechanism by use of an electromagnet unit.
5. The electronic device according to claim 1, wherein the internal component comprises a switch body that drives a contact opening and closing mechanism.
6. The electronic device according to claim 1, wherein the internal component comprises a sensor body including a detection element capable of detecting an external environment.
7. A manufacturing method for an electronic device, comprising: incorporating an internal component in each of a plurality of housings that are unified in such a manner that a disconnectable connector connects facing outer surfaces of the housings to each other; and cutting the connector to separate the housings from each other.
8. The electronic device according to claim 2, wherein the internal component comprises an electromagnetic relay body that drives a contact opening and closing mechanism by use of an electromagnet unit.
9. The electronic device according to claim 3, wherein the internal component comprises an electromagnetic relay body that drives a contact opening and closing mechanism by use of an electromagnet unit.
10. The electronic device according to claim 2, wherein the internal component comprises a switch body that drives a contact opening and closing mechanism.
11. The electronic device according to claim 3, wherein the internal component comprises a switch body that drives a contact opening and closing mechanism.
12. The electronic device according to claim 2, wherein the internal component comprises a sensor body including a detection element capable of detecting an external environment.
13. The electronic device according to claim 3, wherein the internal component comprises a sensor body including a detection element capable of detecting an external environment.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DESCRIPTION OF EMBODIMENTS
[0032] Embodiments of an electronic device according to the present invention will be described in accordance with the attached drawings of
[0033] An electronic device 10 according to a first embodiment is a case of applying the electronic device to an electromagnetic relay as shown in
[0034] As shown in
[0035] The electromagnetic relay body 20 is made up of: an electromagnet unit 21 provided upright on the base 11; a movable iron piece 22 that revolves based on excitation and degaussing of the electromagnet unit 21; a movable contact piece 23 that is bent (swaged) and fixed to the movable iron piece 22 and revolves integrally with the movable iron piece 22; and a normally-closed fixed contact 24a and a normally-open fixed contact 25a which a movable contact 23a, provided on a free end of the movable contact piece 23, alternately comes into contact with and is separated from. The normally-closed fixed contact 24a and the normally-open fixed contact 25a are respectively bent (swaged) and fixed to a normally-closed fixed contact terminal 24 and a normally-open fixed contact terminal 25 each provided upright on the base 11. Further, a terminal part 23b of the movable contact piece 23 is pressed and fixed into the base 11, and terminal parts 24b, 25b of the normally-closed fixed contact terminal 24 and normally-open fixed contact terminal 25 are each pressed and fixed into the base 11.
[0036] As shown in
[0037] That is, each of the connectors 14 is inclined in a direction in which a distance increases from one end toward the other end with respect to a symmetric axis. Further, the one end 14a which is formed from a bend portion 14b provided in the middle of each connector 14 toward the other end is inclined with a wider inclination angle.
[0038] This is aimed to facilitate manufacturing and molding of a mold and is also aimed to make a blade of a cutter (not shown) uniformly worn out in cutting operation after the molding. In particular, bending of the one end 14a of the connector 14 with a wider inclination angle from the bend portion 14b is aimed to enhance the mechanical strength, thereby preventing damage to be caused at the time of chucking with a chucking machine (not shown).
[0039] The blade of the cutter is moved along the foregoing symmetric axis in the cutting operation. Each connector 14 at this time may be disposed in a direction in which the distance from the symmetric axis increases, or may conversely be disposed in a direction in which the distance from the symmetric axis decreases.
[0040] In the present embodiment, as shown in
[0041] If a bipolar electromagnetic relay is required, the electronic device 10 may be used as one electromagnetic relay as it is (
[0042] The electronic device according to the present embodiment is not restricted to the foregoing embodiment. For example, as shown in
[0043] Further, in the electronic device according to the present embodiment, for example, as shown in
[0044] Moreover, in the electronic device according to the present embodiment, for example, as shown in
[0045] Alternatively, as shown in
[0046] As a matter of course, the connectors according to the foregoing embodiments may be appropriately combined as needed. For example, the connector with the quadrilateral cross section and the linear connector may be provided on the outer surface of the same one housing.
[0047] Further, two housings with respect to one electronic device is not restrictive, but three or four housings may be applied to one electronic device.
INDUSTRIAL APPLICABILITY
[0048] As a matter of course, the electronic device according to the present invention is not restricted to the foregoing electromagnetic relays, but is also applicable to other electronic devices such as a switch and a sensor.
TABLE-US-00001 REFERENCE SIGNS LIST 10: electronic device 11: base 12: case 13: housing 14: connector 14a: one end 14b: bend portion 15: electromagnet relay 20: electromagnet relay body