Electromagnetic switch with increased magnetic flux density
US-9484173-B2 · Nov 1, 2016 · US
US9734972B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9734972-B2 |
| Application number | US-201515111176-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 4, 2015 |
| Priority date | Feb 13, 2014 |
| Publication date | Aug 15, 2017 |
| Grant date | Aug 15, 2017 |
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An electromagnetic relay includes a contactor including a fixed contact and a movable contact, and an electromagnet device for moving the movable contact. The electromagnet device includes a coil generating a first magnetic flux by energization, a tubular body including a permanent magnet generating a second magnetic flux in a direction identical to a direction of the first magnetic flux and having a hollow extending in a center axis direction, a movable element disposed in the hollow of the tubular body and reciprocating in the center axis direction, and a yoke forming a magnetic circuit passing together with the movable element and the tubular body. The magnetic circuit allows at least one of the first and second magnetic fluxes to pass through the magnetic circuit. The electromagnet device is configured to, when the coil is energized, move the movable contact to a first position by attracting the movable element with the first magnetic flux and the second magnetic flux. The electromagnet device is configured to, when energization of the coil is suspended, move the movable contact to a second position different from the first position. This electromagnetic relay is easily designed and reduces power consumption at a low cost.
Opening claim text (preview).
What is claimed is: 1. An electromagnetic relay comprising: a contactor including a fixed contact and a movable contact; and an electromagnet device for moving the movable contact, wherein the electromagnet device includes: a coil generating a first magnetic flux upon energization thereof, the coil being wound about a center axis thereof that extends through an inside of the coil; a tubular body including a permanent magnet generating a second magnetic flux in a direction identical to a direction of the first magnetic flux, the tubular body having a hollow extending in a center axis direction along the center axis of the coil; a movable element disposed in the hollow of the tubular body and reciprocating in the center axis direction; and a yoke forming a magnetic circuit passing together with the movable element and the tubular body, the magnetic circuit allowing at least one of the first magnetic flux and the second magnetic flux to pass through the magnetic circuit, wherein the permanent magnet is disposed in the inside of the coil, and wherein the electromagnet device is configured to: when the coil is energized, move the movable contact to a first position by attracting the movable element with the first magnetic flux and the second magnetic flux; and when energization of the coil is suspended, move the movable contact to a second position different from the first position. 2. The electromagnetic relay of claim 1 , wherein the tubular body further includes a first tubular part and a second tubular part which are made of magnetic material, and wherein the permanent magnet is provided between the first tubular part and the second tubular part in the center axis direction. 3. The electromagnetic relay of claim 2 , wherein the first tubular part and the second tubular part of the tubular body faces the movable element in a direction perpendicular to the center axis direction when the movable contact is positioned at the first position and at the second position. 4. The electromagnetic relay of claim 1 , wherein the tubular body has a tubular part made of magnetic material, wherein one end of the tubular body in the center axis direction is connected to the yoke, and wherein the tubular part of the tubular body is disposed between the one end of the tubular body and the permanent magnet in the center axis direction. 5. The electromagnetic relay of claim 4 , wherein the tubular part of the tubular body faces the movable element in a direction perpendicular to the center axis direction when the movable contact is positioned at the first position and at the second position. 6. The electromagnetic relay of claim 4 , wherein the tubular part is seamlessly connected to the yoke. 7. The electromagnetic relay of claim 6 , wherein the tubular part is formed unitarily with the yoke. 8. The electromagnetic relay of claim 1 , wherein the tubular body has a tubular part made of magnetic material, wherein one end of the tubular body in the center axis direction is connected to the yoke, and wherein the permanent magnet is disposed between the one end of the tubular body and the tubular part in the center axis direction. 9. The electromagnetic relay of claim 1 , wherein the permanent magnet constitutes an entirety of the tubular body. 10. The electromagnetic relay of claim 1 , wherein the electromagnet device further includes a stationary element facing the movable element across a gap, the stationary element forming the magnetic circuit together with the tubular body, the movable element, and the yoke, and wherein the direction of the first magnetic flux in the gap is identical to a direction of the second magnetic flux in the gap.
Relays in which the armature is maintained in one position by a permanent magnet and freed by energisation of a coil producing an opposing magnetic field {(H01H51/02 - H01H51/26 take precedence)} · CPC title
movable inside coil and substantially lengthwise with respect to axis thereof; movable coaxially with respect to coil · CPC title
having at least one movable permanent magnet · CPC title
with rectilinearly movable armature · CPC title
Stationary parts of magnetic circuit, e.g. yoke · CPC title
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