Electromagnetic relays

The electromagnetic relay separates the contact case and magnet holding member to prevent magnet vibrations from reaching the fixed terminal, enhancing operational stability and arc interruption performance.

JP7845010B2Active Publication Date: 2026-04-14OMRON CORP
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-04-13
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The vibration of a magnet in conventional electromagnetic relays is transmitted to the fixed terminal, which can adversely affect the relay's operation.

Method used

The electromagnetic relay is designed with separate components for the contact case and magnet holding member, preventing the direct transmission of magnet vibrations to the fixed terminal.

Benefits of technology

This design effectively suppresses the transmission of magnet vibrations to the fixed terminal, reducing the risk of malfunctions and maintaining arc interruption performance.

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Abstract

To provide an electromagnetic relay that can prevent vibration of a magnet from being transmitted to a stationary terminal.SOLUTION: An electromagnetic relay comprises a contact case, a first stationary terminal, a movable contact piece, a magnet, and a magnet holding member. The first stationary terminal is held in the contact case. The first stationary terminal includes a first stationary contact. The movable contact piece includes a first movable contact arranged opposite to the first stationary contact. The magnet is arranged separate from the contact case and generates a magnetic field inside the contact case. The magnet holding member is formed of a member different from the contact case and holds the magnet.SELECTED DRAWING: Figure 1
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Description

Technical Field

[0001] The present invention relates to an electromagnetic relay.

Background Art

[0002] Conventionally, an electromagnetic relay that uses the magnetic force of a magnet to extend and extinguish an arc generated at a contact is known. The magnet is held by a holding member that holds a fixed terminal (see Patent Document 1).

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] In the electromagnetic relay of Patent Document 1, the holding member holds the fixed terminal and the magnet. Therefore, when the electromagnetic relay is subjected to an impact, the vibration of the magnet is likely to be transmitted to the fixed terminal through the holding member. If the vibration of the magnet is transmitted to the fixed terminal, it may have an adverse effect on the operation of the electromagnetic relay.

[0005] An object of the present invention is to provide an electromagnetic relay capable of suppressing the transmission of the vibration of a magnet to a fixed terminal.

Means for Solving the Problems

[0006] An electromagnetic relay according to an aspect of the present invention includes a contact case, a first fixed terminal, a movable contact piece, a magnet, and a magnet holding member. The first fixed terminal is held by the contact case. The first fixed terminal includes a first fixed contact. The movable contact piece includes a first movable contact disposed to face the first fixed contact. The magnet is disposed away from the contact case and generates a magnetic field inside the contact case. The magnet holding member is formed of a member separate from the contact case and holds the magnet.

[0007] In this electromagnetic relay, the contact case that holds the first fixed terminal and the magnet holding member that holds the magnet are made of separate components. This makes it possible to suppress the transmission of magnet vibrations to the first fixed terminal compared to when the first fixed terminal and the magnet are held by the same component.

[0008] The electromagnetic relay may further include an outer case positioned outside the contact case. The magnet holder may be fixed to the outer case. In this case, the outer case can be used to hold the magnet.

[0009] The magnet holding member may include a first wall extending from the inner surface of the outer case and a second wall extending from the inner surface of the outer case. The magnet may be sandwiched between the first wall and the second wall. In this case, the magnet can be held with a simple configuration.

[0010] The first wall may be placed between the first fixed terminal and the magnet. In this case, the first wall can suppress the transmission of vibrations from the magnet to the first fixed terminal.

[0011] The first movable contact may be positioned opposite the first fixed contact in a first direction that includes a contact direction in which the first movable contact approaches the first fixed contact and a separation direction in which the first movable contact moves away from the first fixed contact. The magnet may be clamped in the first direction by the first wall and the second wall. In this case, the first wall and the second wall can prevent the magnet from moving in the first direction.

[0012] The magnet holding member may be integrally formed with the outer case. In this case, the number of parts can be reduced.

[0013] The magnet holding member may be positioned away from the contact case and the first fixed terminal. In this case, the transmission of magnet vibrations to the fixed terminal can be further suppressed.

[0014] The electromagnetic relay may further include a yoke connected to a magnet. The movement of the yoke may be restricted by a magnet retaining member. In this case, the movement of the yoke can be suppressed by the magnet retaining member.

[0015] The electromagnetic relay may further include a second fixed terminal. The second fixed terminal may be located away from the first fixed terminal. The second fixed terminal may include a second fixed contact. The movable contact piece may further include a second movable contact located opposite the second fixed contact.

[0016] According to the present invention, it is possible to provide an electromagnetic relay that can suppress the transmission of magnet vibrations to fixed terminals. [Brief explanation of the drawing]

[0017] [Figure 1] This is a cross-sectional view of an electromagnetic relay. [Figure 2] This is a diagram to explain York. [Modes for carrying out the invention]

[0018] Hereinafter, an embodiment of an electromagnetic relay 100 according to one aspect of the present invention will be described with reference to the drawings. When referring to the drawings, the X1 direction will be described as the left direction, the X2 direction as the right direction, the Z1 direction as the up direction, and the Z2 direction as the down direction. The front side of the paper in Figure 1 will be described as the front side, and the back side of the paper in Figure 1 will be described as the rear side. The X1 and X2 directions will be described as the left-right direction, the Z1 and Z2 directions as the up-down direction, and the direction perpendicular to the paper in Figure 1 will be described as the front-back direction. These directions are defined for the convenience of explanation and do not limit the orientation of the electromagnetic relay 100.

[0019] As shown in Figure 1, the electromagnetic relay 100 comprises a case 2, a contact case 3, a contact device 4, and a drive device 5.

[0020] Case 2 is a roughly rectangular box shape and is made of an insulating material such as resin. Case 2 houses the contact case 3, the contact device 4, and the drive device 5. Case 2 is an example of an outer case.

[0021] The contact case 3 is disposed within the case 2. The contact case 3 is disposed above the drive device 5. The contact case 3 is substantially square box-shaped and formed of an insulating material such as resin.

[0022] The contact case 3 includes an upper case 31, a lower case 32, a first terminal support portion 33, and a second terminal support portion 34. The upper case 31 is open downward. The upper case 31 is disposed above the lower case 32. The upper case 31 is separate from the lower case 32. The upper case 31 is fixed to the lower case 32, for example, by snap-fit coupling. The lower case 32 is open upward. The upper part of the lower case 32 is covered by the upper case 31.

[0023] [[ID=A]] The first terminal support portion 33 and the second terminal support portion 34 are formed on the upper case 31. The first terminal support portion 33 protrudes rightward from the upper case 31. The first terminal support portion 3 is open rightward. The second terminal support portion 34 protrudes leftward from the upper case 31. The second terminal support portion 34 is open leftward.

[0024] The contact device 4 includes a first fixed terminal 6, a second fixed terminal 7, and a movable contact piece 8.

[0025] The first fixed terminal 6 and the second fixed terminal 7 are plate-shaped terminals formed of a conductive material. The first fixed terminal 6 and the second fixed terminal 7 extend in the left-right direction. The first fixed terminal 6 and the second fixed terminal 7 extend across the inside and outside of the contact case 3. The first fixed terminal 6 and the second fixed terminal 7 are arranged apart from each other in the left-right direction. The first fixed terminal 6 and the second fixed terminal 7 are held by the upper case 31 of the contact case 3. [[ID=]17]

[0026] The first fixed terminal 6 is press-fitted and fixed to the first terminal support portion 33. The first fixed terminal 6 protrudes outside from the right wall 2a of the case 2. The first fixed terminal 6 has a gap with respect to the right wall 2a of the case 2 and is not fixed to the case 2.

[0027] The first fixed terminal 6 includes a first fixed contact 6a and a first external connection part 6b. The first fixed contact 6a is housed in the contact case 3. The first fixed contact 6a is located on the lower surface of the first fixed terminal 6. The first external connection part 6b is located outside the case 2. The first external connection part 6b is connected to an external terminal (not shown), such as a busbar.

[0028] The second fixing terminal 7 has a shape symmetrical to the first fixing terminal 6. The second fixing terminal 7 is located to the left of the first fixing terminal 6. The second fixing terminal 7 is press-fitted and fixed to the second terminal support part 34. The second fixing terminal 7 protrudes outward from the left wall 2b of the case 2. The second fixing terminal 7 has a gap with respect to the left wall 2b of the case 2 and is not fixed to the case 2.

[0029] The second fixed terminal 7 includes a second fixed contact 7a and a second external connection part 7b. The second fixed contact 7a is housed in the contact case 3. The second fixed contact 7a is located on the lower surface of the second fixed terminal 7. The second external connection part 7b is located outside the case 2. The second external connection part 7b is connected to an external terminal (not shown), such as a busbar.

[0030] The movable contact piece 8 is housed in the contact case 3. The movable contact piece 8 is a plate-shaped terminal that is elongated in one direction and is made of a conductive material. The movable contact piece 8 extends in the left-right direction. The movable contact piece 8 is movable in the up-down direction.

[0031] The movable contact piece 8 includes a first movable contact 8a and a second movable contact 8b. The first movable contact 8a and the second movable contact 8b are located on the upper surface of the movable contact piece 8. The first movable contact 8a is positioned opposite the first fixed contact 6a in a first direction which includes a contact direction in which the first movable contact 8a approaches the first fixed contact 6a and a separation direction in which the first movable contact 8a moves away from the first fixed contact 6a. In this embodiment, the vertical direction is an example of the first direction, the upward direction is an example of the contact direction, and the downward direction is an example of the separation direction. The second movable contact 8b is positioned opposite the second fixed contact 7a in the vertical direction.

[0032] The drive unit 5 is located inside the case 2. The drive unit 5 moves the movable contact piece 8 in the vertical direction. The drive unit 5 includes a movable mechanism 11, a coil 12, a movable iron core 13, a fixed iron core 14, yokes 15 and 16, and a return spring 17.

[0033] The movable mechanism 11 is connected to the movable contact piece 8. The movable mechanism 11 includes a holder 11a, a drive shaft 11b, and a contact spring 11c. The holder 11a holds the movable contact piece 8. The holder 11a moves integrally with the movable contact piece 8. The drive shaft 11b extends in the vertical direction. The drive shaft 11b is connected to the holder 11a so as to be vertically movable relative to the holder 11a. The contact spring 11c is positioned between the holder 11a and the drive shaft 11b. The contact spring 11c biases the movable contact piece 8 upward via the holder 11a.

[0034] When a voltage is applied to the coil 12 and it is energized, it generates an electromagnetic force that moves the movable core 13 upward. The movable core 13 is fixed to the drive shaft 11b so as to be integrally movable. The fixed core 14 is positioned above the movable core 13 and opposite it. The yokes 15 and 16 are arranged to surround the coil 12. The yoke 15 has a roughly U-shape and is connected to the fixed core 14. The yoke 16 is positioned below the coil 12 and is connected to the yoke 15. The return spring 17 biases the movable core 13 downward.

[0035] The operation of the electromagnetic relay 100 is the same as in the conventional design, so it will be explained briefly. Figure 1 shows the state in which the coil 12 is not energized. In this state, the first movable contact 8a is away from the first fixed contact 6a, and the second movable contact 8b is away from the second fixed contact 7a. When the coil 12 is energized, the movable iron core 13 is attracted to the fixed iron core 14 and moves upward together with the drive shaft 11b. As the drive shaft 11b moves, the movable contact piece 8 moves upward via the contact spring 11c, causing the first movable contact 8a to contact the first fixed contact 6a and the second movable contact 8b to contact the second fixed contact 7a. When the voltage application to the coil 12 is stopped, the drive shaft 11b moves downward together with the movable iron core 13 due to the biasing force of the return spring 17. As a result, the movable contact piece 8 moves downward, causing the first movable contact 8a to move away from the first fixed contact 6a and the second movable contact 8b to move away from the second fixed contact 7a.

[0036] The electromagnetic relay 100 further comprises a first magnet 40, a second magnet 50, a first magnet holding member 60, and a second magnet holding member 70. The first magnet 40 and the second magnet 50 are examples of magnets. The first magnet holding member 60 and the second magnet holding member 70 are examples of magnet holding members.

[0037] The first magnet 40 and the second magnet 50 generate a magnetic field inside the contact case 3. The first magnet 40 and the second magnet 50 are permanent magnets. The first magnet 40 and the second magnet 50 have a rectangular parallelepiped shape.

[0038] The first magnet 40 is located inside the case 2. The first magnet 40 is located away from the contact case 3. The first magnet 40 is located to the right of the contact case 3. The first magnet 40 is located below the first fixed terminal 6 and overlaps with the first fixed terminal 6 when viewed from above. The first magnet 40 is located below the first terminal support portion 33 and overlaps with the first terminal support portion 33 when viewed from above. The first magnet 40 is held by the first magnet holding member 60.

[0039] The second magnet 50 is located inside the case 2. The second magnet 50 is located away from the contact case 3. The second magnet 50 is located to the left of the contact case 3. The second magnet 50 is located opposite the first magnet 40 in the left-right direction. The second magnet 50 is located below the second fixing terminal 7 and overlaps with the second fixing terminal 7 when viewed from above. The second magnet 50 is located below the second terminal support portion 34 and overlaps with the second terminal support portion 34 when viewed from above. The second magnet 50 is held by the second magnet holding member 70.

[0040] The first magnet holding member 60 is a separate component from the contact case 3 and holds the first magnet 40. The first magnet holding member 60 is fixed to the case 2. In this embodiment, the first magnet holding member 60 is integrally formed with the case 2. The first magnet holding member 60 is positioned away from the contact case 3 and the first fixed terminal 6.

[0041] The first magnet holding member 60 includes a first wall 60a and a second wall 60b. The first wall 60a and the second wall 60b extend from the inner surface of the case 2. The first wall 60a and the second wall 60b extend to the left from the right wall 2a of the case 2. The first wall 60a and the second wall 60b extend from the right wall 2a of the case 2 toward the right side of the contact case 3.

[0042] The first wall 60a is positioned between the first fixed terminal 6 and the first magnet 40. The first wall 60a is positioned between the first terminal support 33 and the first magnet 40. When viewed from above, the first wall 60a overlaps with the first fixed terminal 6 and the first terminal support 33. The second wall 60b is positioned opposite the first wall 60a in the vertical direction.

[0043] The second wall 60b is located below the first wall 60a. The second wall 60b is positioned opposite the first wall 60a in the vertical direction.

[0044] The first magnet 40 is positioned between the first wall 60a and the second wall 60b. The first magnet 40 is held vertically between the first wall 60a and the second wall 60b.

[0045] The second magnet holding member 70 has a shape symmetrical to the first magnet holding member 60. The second magnet holding member 70 is a separate component from the contact case 3 and holds the second magnet 50. The second magnet holding member 70 is fixed to the case 2. In this embodiment, the second magnet holding member 70 is integrally formed with the case 2. The second magnet holding member 70 is positioned away from the contact case 3 and the second fixing terminal 7.

[0046] The second magnet holding member 70 includes a third wall 70a and a fourth wall 70b. The third wall 70a and the fourth wall 70b extend to the right from the left wall 2b of the case 2. The third wall 70a and the fourth wall 70b extend from the left wall 2b of the case 2 toward the left side of the contact case 3.

[0047] The third wall 70a is positioned between the second fixed terminal 7 and the second magnet 50. The third wall 70a is positioned between the second terminal support 34 and the second magnet 50. When viewed from above, the third wall 70a overlaps with the second fixed terminal 7 and the second terminal support 34.

[0048] The second magnet 50 is positioned between the third wall 70a and the fourth wall 70b. The second magnet 50 is sandwiched vertically between the third wall 70a and the fourth wall 70b.

[0049] In this electromagnetic relay 100, the contact case 3 that holds the first fixed terminal 6 and the first magnet holding member 60 that holds the first magnet 40 are made of separate components. This suppresses the transmission of vibrations from the first magnet 40 to the first fixed terminal 6 compared to when the first fixed terminal 6 and the first magnet 40 are held by the same component. In other words, it suppresses the adverse effect of vibrations from the first magnet 40 on the first fixed terminal 6. As a result, malfunctions of the electromagnetic relay 100 can be suppressed. Similarly, since the contact case 3 that holds the second fixed terminal 7 and the second magnet holding member 70 that holds the second magnet 50 are made of separate components, it is possible to suppress the transmission of vibrations from the second magnet 50 to the second fixed terminal 7.

[0050] Furthermore, since the first magnet holding member 60 can hold the first magnet 40, it becomes easier to maintain the size of the first magnet 40. As a result, the arc interruption performance can be maintained.

[0051] Although an embodiment of an electromagnetic relay according to one aspect of the present invention has been described above, the present invention is not limited to the above embodiment, and various modifications are possible without departing from the spirit of the invention.

[0052] The configuration of the contact case 3 may be changed. The contact case 3 may be composed of a single component. The configuration of the contact device 4 may be changed. For example, the first fixed terminal 6 and the second fixed terminal 7 may be cylindrical terminals. The configuration of the drive device 5 may be changed. The drive device 5 may be configured to push the movable iron core 13 downwards. In this case, the movable contact piece 8 is positioned above the first fixed terminal 6 and the second fixed terminal 7.

[0053] The configuration of the first magnet holding member 60 may be changed. The first magnet holding member 60 may be made of a separate component from the case 2. The first magnet holding member 60 may be made of a different material from the case 2. The first magnet holding member 60 may be fixed to a different component from the case 2. The first magnet holding member 60 may have a structure in which the first magnet 40 is press-fitted and fixed. The first magnet holding member 60 may have a structure that clamps the first magnet 40 from the front and rear directions. For example, the first wall 60a and the second wall 60b may be arranged facing each other in the front and rear directions.

[0054] The first magnet holding member 60 only needs to have a structure that can hold the first magnet 40. That is, the first magnet holding member 60 only needs to have a structure that restricts the movement of the first magnet 40. For example, the first magnet holding member 60 may have a projection that restricts the movement of the first magnet 40 in the front-rear direction, or a projection that restricts the movement of the first magnet 40 to the left.

[0055] In the above embodiment, the first wall 60a was located on the right wall 2a of the case 2, but the first wall 60a may also be located on the upper wall 2c of the case 2. The first wall 60a may extend across the right wall 2a and the upper wall 2c of the case 2. The upper wall 2c of the case 2 may be made of a different component from the right wall 2a of the case 2. The first wall 60a and the second wall 60b may also be located on the front wall of the case 2 (not shown) or the rear wall of the case 2 (not shown).

[0056] The arrangement of the first magnet 40 may be changed. The present invention may also be applied to an electromagnetic relay in which the first magnet 40 is positioned in front of or behind the contact case 3. For example, if the first magnet 40 is positioned in front of the contact case 3, the first magnet holding member 60 may be positioned on the front wall of the case 2.

[0057] The electromagnetic relay 100 may further include a yoke 80, as shown in Figure 2. The yoke 80 extends in the left-right direction and is connected to the first magnet 40 and the second magnet 50. In this case, the yoke 80 may be held by the first magnet holding member 60. Alternatively, the movement of the yoke 80 may be restricted by the first magnet holding member 60. Specifically, a portion of the yoke 80 may be positioned between the first wall 60a and the second wall 60b of the first magnet holding member 60. The movement of the yoke 80 in the vertical direction may be restricted by the first wall 60a and the second wall 60b. The yoke 80 may be clamped in the vertical direction by the first wall 60a and the second wall 60b. Similarly, the yoke 80 may be held by the second magnet holding member 70, or its movement may be restricted by the second magnet holding member 70. [Explanation of Symbols]

[0058] 2 cases (an example of an outer case) 3 Contact Case 6 1st fixed terminal 6a 1st fixed contact 7 Second fixed terminal 7a 2nd fixed contact 40. First Magnet (An Example of a Magnet) 60. First magnet holding member (an example of a magnet holding member) 60a Wall 1 60b 2nd wall 80 York 100 Electromagnetic relay

Claims

1. Contact case and An outer case positioned outside the aforementioned contact case, A first fixed terminal, which includes a first fixed contact and is held in the contact case, A movable contact piece including a first movable contact positioned opposite the first fixed contact, A magnet is positioned away from the contact case and generates a magnetic field inside the contact case, A magnet holding member, which is composed of a separate component from the aforementioned contact case and holds the magnet, Equipped with, The magnet holding member is fixed to the outer case, The magnet holding member includes a first wall extending from the inner surface of the outer case and a second wall extending from the inner surface of the outer case. The magnet is sandwiched between the first wall and the second wall. Electromagnetic relay.

2. The first wall is positioned between the first fixing terminal and the magnet. The electromagnetic relay according to claim 1.

3. The first movable contact has a contact direction in which the first movable contact approaches the first fixed contact, and The first movable contact moves away from the first fixed contact in a first direction including an opening direction. It is positioned opposite the point, The magnet is sandwiched in the first direction by the first wall and the second wall. The electromagnetic relay according to claim 1 or 2.

4. The magnet holding member is integrally formed with the outer case. The electromagnetic relay according to claim 1 or 2.

5. The magnet holding member is positioned away from the contact case and the first fixing terminal. 、 The electromagnetic relay according to claim 1 or 2.

6. The yoke further comprises the magnet connected to the aforementioned magnet, The movement of the yoke is restricted by the magnet holding member. The electromagnetic relay according to claim 1 or 2.

7. The second fixed terminal includes a second fixed contact and is further provided to be located away from the first fixed terminal. picture, The movable contact piece further includes a second movable contact positioned opposite the second fixed contact. 、 The electromagnetic relay according to claim 1 or 2.

Citation Information

Patent Citations

  • Contact device

    JP2012199120A

  • Circuit breaker

    JP2013222560A

  • Contact mechanism and electromagnetic contactor using the same

    JP2019096474A