Armature of relay
11004639 · 2021-05-11
Assignee
Inventors
Cpc classification
H01H51/29
ELECTRICITY
H01H50/58
ELECTRICITY
International classification
H01H1/12
ELECTRICITY
Abstract
A relay includes a case and a coil unit is located in the case. Multiple first legs each have the first end thereof connected to the coil unit, and the second end thereof extending beyond the case. A second leg has the first end thereof located in the case and forms a contact, and the second end of the second leg extends beyond the case. A third leg includes an upright section and a transverse section which extends from the upright section and located in the case. The upright section has one end thereof extending beyond the case. An armature has a connection section connected to the transverse section, and a main section located beneath the contact. The connection section increases conductive area and flexibility of the armature in the case.
Claims
1. A relay comprising: a case having a room defined therein; a coil unit located in the room; multiple first legs each having a first end thereof connected to the coil unit, and a second end of each first leg extending beyond the case; a second leg having a first end thereof located in the room and forming a contact, a second end of the second leg extending beyond the case; a third leg having an upright section and a transverse section, the transverse section extending from one side of a first end of the upright section and located in the case, the upright section having a second end thereof extending beyond the case, and an armature having a connection section and a main section, the connection section connected to the transverse section, a bent portion formed between the connection section and the main section, the main section including a first portion, a second portion and a neck which is formed between the first and second portions, the first portion extending from the bent portion, a length of the first portion being longer than a length of each of the connection section, the second portion and the neck, the first portion and the second portion being located on two planes, the neck inclinedly connected between the first portion and the second portion, a distal end of the main section located beneath the contact, the connection section configured to increase conductive area and flexibility of the armature in the room.
2. The relay as claimed in claim 1, wherein an extension portion is formed between the bent portion and the connection section, the extension portion is an L-shaped portion.
3. The relay as claimed in claim 1, wherein the first portion includes an elongate hole defined axially therethrough.
4. The relay as claimed in claim 1, wherein the first portion includes a recess defined in each of two sides thereof.
5. The relay as claimed in claim 1, wherein the first portion includes a wing extending from each of two sides thereof.
6. The relay as claimed in claim 1, wherein the transverse section of the third leg extends from a top end of the upright section, the upright section and the transverse section are located on a common plane, an angle of 180 degrees is formed between the upright section and the transverse section.
7. The relay as claimed in claim 1, wherein the transverse section of the third leg extends from one side of the upright section, an angle of 90 degrees is formed between the upright section and the transverse section.
8. The relay as claimed in claim 1, wherein the case includes a body and a housing which is mounted to the body, the room is formed in the body, the coil unit includes a coil seat, a conductive plate and a driving member, the first ends of the multiple first legs are connected to two ends of the coil set, a first end of the conductive plate is located between the coils seat and the armature, a second end of the conductive plate is resiliently contact the coils seat or is removed from the coils seat, the driving member is connected to the first end of the conductive plate, the conductive plate pivots when the conductive plate is magnetically attracted by the coil seat, and the driving member controls the armature to pivot, the main section of the armature contacts the contact when the armature pivots, a circuit is formed between the coil unit, the first legs, the second leg, the third leg and the armature.
9. The relay as claimed in claim 7, wherein the case 1 includes a body and a housing which is mounted to the body, the room is formed in the body, the coil unit includes a coil seat, a conductive plate and a driving member, the first ends of the multiple first legs are connected to two ends of the coil set, a first end of the conductive plate is located between the coils seat and the armature, a second end of the conductive plate is resiliently contact the coils seat or is removed from the coils seat, the driving member is connected to the first end of the conductive plate, the conductive plate pivots when the conductive plate is magnetically attracted by the coil seat, and the driving member controls the armature to pivot, the main section of the armature contacts the contact when the armature pivots, a circuit is formed between the coil unit, the first legs, the second leg, the third leg and the armature.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(14) Referring to
(15) An armature 6 is located in the room 11 and includes a connection section 61 and a main section 62. The connection section 61 is riveted to the transverse section 52. A bent portion 62 is formed between the connection section 61 and the main section 62. The distal end of the main section 62 located beneath the contact 41. A gap is formed between the transverse section 52 and the bent portion 63. The connection section 61 is configured to increase conductive area and flexibility of the armature 6 in the room 11. In other words, after the coil unit 2 is activated, the armature 6 is more flexible than the conventional armature such that the contact between the armature 6 and the contact 41 is more accurate.
(16) The armature 6 of the present invention includes the bent portion 63 and the connection section 61, and both of which are not provided for the conventional armature 6. As shown in
(17) As shown in
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(24) In the previous embodiments, the connection section 61 of the armature 6 is riveted to outside of the transverse section 52.
(25) The coil unit 2 includes a coil seat 21, a conductive plate 22 and a driving member 23. The first ends of the multiple first legs 3 are connected to two ends of the coil set 21. The first end of the conductive plate 22 is located between the coils seat 21 and the armature 6, and the second end of the conductive plate 22 is resiliently contact the coils seat 21 or is removed from the coils seat 21. The driving member 23 is connected to the first end of the conductive plate 22. The conductive plate 22 pivots when the conductive plate 22 is magnetically attracted by the coil seat 21, and the driving member 23 controls the armature 6 to pivot. The main section 62 of the armature 6 contacts the contact 41 when the armature 6 pivots, so that a circuit is formed between the coil unit 2, the first legs 3, the second leg 4, the third leg 5 and the armature 6.
(26) While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.