electromagnetic relay

By pressing the contact case to the drive device using a housing's pressing portion, the electromagnetic relay achieves cost-effective and efficient assembly without the need for brazing or welding, addressing the high precision and cost issues of conventional fixing methods.

JP7735849B2Active Publication Date: 2025-09-09OMRON CORP
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Patent Information

Application Number
JP2021203440
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-12-15
Publication Date
2025-09-09
Estimated Expiration
2041-12-15

AI Technical Summary

Technical Problem

Conventional methods of fixing the contact case in electromagnetic relays, such as brazing or welding, require high precision and increase manufacturing costs.

Method used

The contact case is pressed and fixed to the drive device by a pressing portion of the housing, eliminating the need for brazing or welding, thereby reducing manufacturing costs and improving production efficiency.

Benefits of technology

The contact case can be fixed inexpensively and with simpler methods, reducing the need for high precision components and enhancing the overall production efficiency of the electromagnetic relay.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an electromagnetic relay capable of reducing cost for fixing a contact case.SOLUTION: An electromagnetic relay comprises a first fixed terminal, a movable contact piece, a drive device, a contact case, and a housing. The first fixed terminal includes a first fixed contact. The movable contact piece includes a first movable contact opposed to the first fixed contact in a first direction. The drive device moves the movable contact piece in the first direction. The contact case is arranged side by side with the drive device in the first direction. The contact case houses the first fixed contact and the movable contact piece. The housing houses the contact case and the drive device. The housing includes a pressing part pressing the contact case against the drive device.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

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

[0002] Conventionally, there is known an electromagnetic relay having a contact case that houses a fixed contact and a movable contact piece (see Patent Document 1). The contact case is fixed to the yoke by means of brazing, welding, or the like. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2018-163761 Summary of the Invention [Problem to be solved by the invention]

[0004] When the contact case is fixed by brazing, welding or other means, high precision is required and the manufacturing cost increases.

[0005] An object of the present invention is to provide an electromagnetic relay in which the contact case can be fixed inexpensively. [Means for solving the problem]

[0006] An electromagnetic relay according to one aspect of the present invention comprises a first fixed terminal, a movable contact piece, a drive device, a contact case, and a housing. The first fixed terminal includes a first fixed contact. The movable contact piece includes a first movable contact facing the first fixed contact in a first direction. The drive device moves the movable contact piece in the first direction. The contact case is arranged alongside the drive device in the first direction. The contact case houses the first fixed contact and the movable contact piece. The housing houses the contact case and the drive device. The housing includes a pressing portion that presses the contact case against the drive device.

[0007] In this electromagnetic relay, the contact case is pressed and fixed to the drive device by the pressing portion of the housing, so fixing the contact case can be done more cheaply than when fixing the contact case by means of brazing, welding, etc. Because the contact case can be fixed in a simple manner, the production efficiency of the electromagnetic relay is improved. Also, compared to when fixing the contact case by means of welding, etc., high component precision is not required. Because the contact case can be fixed by the housing, the number of components can be reduced compared to when a separate member is provided to fix the contact case.

[0008] The contact case may include a case upper wall extending in a direction perpendicular to the first direction, a case side wall disposed laterally of the movable contact piece and extending in the first direction from the case upper wall toward the drive device, and a pressed portion protruding from the case side wall toward the housing and pressed by the pressing portion. In this case, the contact case can be fixed by pressing the pressed portion with the pressing portion.

[0009] The upper wall of the contact case may be made of resin and support the first fixed terminal. In this case, the pressed portion presses a position different from the upper wall that supports the first fixed terminal, so that the position of the first fixed terminal can be prevented from changing when the pressing portion presses the contact case.

[0010] The housing may further include a side wall disposed on a side of the case side wall and the drive device. The pressing portion of the housing may protrude from the side wall toward the case side wall. In this case, the pressing portion increases the strength of the side wall of the housing.

[0011] The pressing portion of the housing may have elasticity that allows it to bend in the first direction, which makes it easier to assemble the contact case.

[0012] The driving device may include a yoke that comes into contact with the pressed portion of the contact case. In this case, the pressed portion can be supported by the yoke.

[0013] The housing may further include a housing main body including an opening that opens in a direction from the drive device toward the contact case, and a lid portion that closes the opening of the housing main body. The lid portion may include a pressing portion. In this case, the pressing portion is provided on the lid portion, so that the contact case can be fixed with a simple configuration.

[0014] The contact case may include a case upper wall extending in a direction perpendicular to the first direction, and a case side wall disposed on a side of the movable contact piece and extending in the first direction from the case upper wall toward the drive device. The housing may further include an upper wall facing the case upper wall in the first direction. The upper wall of the housing may include a pressing portion. In this case, the contact case can be fixed by the upper wall of the housing.

[0015] The pressing portion may press the vicinity of the boundary between the upper wall and the side wall of the case, in which case the pressing portion can stably press the pressed portion.

[0016] The pressing portion may be disposed at a position overlapping the case side wall in the first direction. In this case, the pressing portion can press the pressed portion more stably.

[0017] The upper wall of the contact case may be made of resin and support the first fixed terminal. In this case, the pressed portion presses the vicinity of the side wall of the case, so that the position of the first fixed terminal can be prevented from changing when the pressing portion presses the contact case.

[0018] The housing may further include a housing main body including an opening that opens in a direction from the drive device toward the contact case, and a lid portion that closes the opening of the housing main body. The lid portion may include an upper wall. In this case, the contact case can be fixed with a simple structure.

[0019] The electromagnetic relay may further include a second fixed terminal including a second fixed contact. The movable contact piece may further include a second movable contact facing the second fixed contact in the first direction. In this case, in an electromagnetic relay including the second fixed terminal, the contact case can be fixed in a simple manner.

[0020] According to the present invention, it is possible to provide an electromagnetic relay in which the contact case can be fixed at low cost. [Brief explanation of the drawings]

[0021] [Figure 1] FIG. 2 is a cross-sectional schematic diagram of an electromagnetic relay. [Figure 2] FIG. 10 is a schematic cross-sectional view of an electromagnetic relay according to a modified example. [Figure 3] FIG. 10 is a schematic cross-sectional view of an electromagnetic relay according to a modified example. [Figure 4] FIG. 10 is a schematic cross-sectional view of an electromagnetic relay according to a modified example. DETAILED DESCRIPTION OF THE INVENTION

[0022] An embodiment of an electromagnetic relay 100 according to one aspect of the present invention will be described below with reference to the drawings. Note that when referring to the drawings, for ease of understanding, the upper side in FIG. 1 will be referred to as "upper", the lower side as "lower", the left side as "left", and the right side as "right". Furthermore, the direction perpendicular to the plane of FIG. 1 will be described as the front-to-rear direction. The up-to-down direction in this embodiment is an example of the first direction Z. These directions are defined for the sake of convenience of description and do not limit the arrangement direction of the electromagnetic relay 100.

[0023] 1 is a schematic cross-sectional view of an electromagnetic relay 100. As shown in FIG. 1, the electromagnetic relay 100 includes a contact device 2, a drive device 3, a contact case 4, and a housing 5.

[0024] The contact device 2 includes a first fixed terminal 6 , a second fixed terminal 7 , a movable contact piece 10 , and a movable mechanism 11 .

[0025] The first fixed terminal 6 and the second fixed terminal 7 are cylindrical terminals that extend in the vertical direction and are arranged at an interval from each other in the horizontal direction. The first fixed terminal 6 and the second fixed terminal 7 are made of a conductive material such as copper.

[0026] The first fixed terminal 6 includes a first fixed contact 6a and a first external connection portion 6b. The first fixed contact 6a is made of a conductive material such as copper. The first fixed contact 6a is disposed on the lower surface of the first fixed terminal 6 inside the contact case 4. The first fixed contact 6a may be integral with the first fixed terminal 6. The first external connection portion 6b protrudes upward from the housing 5 and is exposed to the outside of the housing 5.

[0027] The second fixed terminal 7 is disposed apart from the first fixed terminal 6 in the left-right direction. The second fixed terminal 7 is disposed to the right of the first fixed terminal 6. The second fixed terminal 7 includes a second fixed contact 7a and a second external connection portion 7b. The second fixed contact 7a is formed of a conductive material such as copper. The second fixed contact 7a is disposed on the underside of the second fixed terminal 7 within the contact case 4. The second fixed contact 7a may be integral with the second fixed terminal 7. The second external connection portion 7b protrudes upward from the housing 5 and is exposed to the outside of the housing 5.

[0028] The movable contact piece 10 is a plate-like member that is long in one direction and is made of a conductive material such as copper. The movable contact piece 10 is housed in a contact case 4. The movable contact piece 10 is disposed below the first fixed contact 6a and the second fixed contact 7a. The dimension of the movable contact piece 10 in the left-right direction is greater than the dimension of the movable contact piece 10 in the front-rear direction. That is, in this embodiment, the longitudinal direction of the movable contact piece 10 coincides with the left-right direction. Furthermore, the lateral direction of the movable contact piece 10 coincides with the front-rear direction.

[0029] The movable contact piece 10 is provided so as to be movable in a direction (here, upward) in which the first movable contact 10a contacts the first fixed contact 6a and in a direction (here, downward) in which the first movable contact 10a separates from the first fixed contact 6a. That is, in this embodiment, the movable contact piece 10 is provided so as to be movable in the up and down directions.

[0030] The movable contact piece 10 includes a first movable contact 10a and a second movable contact 10b. The first movable contact 10a faces the first fixed contact 6a in the vertical direction. The first movable contact 10a is disposed below the first fixed contact 6a and can come into contact with the first fixed contact 6a as the movable contact piece 10 moves. The second movable contact 10b faces the second fixed contact 7a in the vertical direction. The second movable contact 10b is disposed below the second fixed contact 7a and can come into contact with the second fixed contact 7a as the movable contact piece 10 moves. The first movable contact 10a and the second movable contact 10b may be integral with the movable contact piece 10.

[0031] The movable mechanism 11 includes a drive shaft 21, a first holding member 22, a second holding member 23, and a contact spring 24. The drive shaft 21 is connected to the movable contact piece 10. The drive shaft 21 extends in the vertical direction and penetrates the movable contact piece 10 in the vertical direction. The drive shaft 21 is provided so as to be movable in the vertical direction.

[0032] The first holding member 22 is fixed to the drive shaft 21 above the movable contact piece 10. The second holding member 23 is fixed to the drive shaft 21 below the movable contact piece 10. The contact spring 24 is disposed between the movable contact piece 10 and the second holding member 23. The contact spring 24 urges the movable contact piece 10 upward via the second holding member 23.

[0033] The drive device 3 is disposed below the contact device 2. The drive device 3 is fixed to the housing 5. The drive device 3 moves the movable contact piece 10 in the vertical direction via the drive shaft 21 of the movable mechanism 11 by electromagnetic force. The drive device 3 includes a coil 31, a movable iron core 32, a fixed iron core 33, a first yoke 34, a second yoke 35, and a return spring 36.

[0034] When a voltage is applied to the coil 31 and it is excited, it generates an electromagnetic force that moves the movable iron core 32 upward. The movable iron core 32 is connected to the drive shaft 21 so as to be movable integrally therewith. The fixed iron core 33 is disposed in a position facing the movable iron core 32. The fixed iron core 33 is disposed above the movable iron core 32. The drive shaft 21 passes through the fixed iron core 33 in the vertical direction. The drive shaft 21 is movable in the vertical direction relative to the fixed iron core 33.

[0035] The first yoke 34 is an example of a yoke. The first yoke 34 extends in a direction perpendicular to the up-down direction and has a rectangular shape when viewed from above. The first yoke 34 is disposed between the contact case 4 and the coil 31. The first yoke 34 covers the coil 31 from above. The first yoke 34 is connected to the fixed core 33. The first yoke 34 is fixed to the housing 5.

[0036] The second yoke 35 has a U-shape when viewed from the front-rear direction. The second yoke 35 is disposed around the coil 31 and is connected to the first yoke 34. The second yoke 35 covers the coil 31 from the left and right sides and from below. The second yoke 35 is fixed to the housing 5.

[0037] The return spring 36 is disposed between the movable iron core 32 and the fixed iron core 33, and biases the movable iron core 32 in a direction away from the fixed iron core 33 (downward in this case).

[0038] The operations of the contact device 2 and the drive device 3 are the same as those of the conventional devices, and therefore a description thereof will be omitted.

[0039] The contact case 4 has a substantially rectangular box shape and is made of an insulating material. In this embodiment, the contact case 4 is made of resin. However, the contact case 4 may also be made of ceramic or metal.

[0040] The contact case 4 is arranged vertically alongside the drive unit 3. In this embodiment, the contact case 4 is arranged above the drive unit 3. The contact case 4 houses a first fixed contact 6a, a second fixed contact 7a, and a movable contact piece 10.

[0041] The contact case 4 includes an upper wall 41 and a side wall 42. The upper wall 41 is an example of a case upper wall, and the side wall 42 is an example of a case side wall. The upper wall 41 and the side wall 42 are outer walls of the contact case 4. The upper wall 41 and the side wall 42 form a space that accommodates the first fixed contact 6a, the second fixed contact 7a, and the movable contact piece 10.

[0042] The upper wall 41 extends in a direction perpendicular to the vertical direction. The upper wall 41 is disposed above the movable contact piece 10 and supports the first fixed terminal 6 and the second fixed terminal 7. The first fixed terminal 6 and the second fixed terminal 7 penetrate the upper wall 41 in the vertical direction.

[0043] The side walls 42 are arranged on the sides of the movable contact piece 10. The side walls 42 are arranged on the front, rear, left and right sides of the movable contact piece 10. The side walls 42 are connected to the top wall 41. The side walls 42 extend in the vertical direction from the top wall 41 toward the first yoke 34 of the drive device 3. The lower ends of the side walls 42 contact the upper surface of the first yoke 34 of the drive device 3. The contact case 4 is open downward. The lower part of the contact case 4 is closed by, for example, a bottom wall member (not shown) that is separate from the contact case 4.

[0044] The contact case 4 includes a first pressed portion 43 and a second pressed portion 44. The first pressed portion 43 and the second pressed portion 44 protrude from the side wall 42 toward the housing 5 in a direction perpendicular to the up-down direction. The first pressed portion 43 and the second pressed portion 44 protrude from the lower end of the side wall 42 toward the outside of the contact case 4. The first pressed portion 43 and the second pressed portion 44 are arranged in contact with the upper surface of the first yoke 34. The first pressed portion 43 protrudes leftward from the lower left end of the side wall 42. The second pressed portion 44 protrudes rightward from the lower right end of the side wall 42.

[0045] The housing 5 has a substantially rectangular box shape and is made of an insulating material. In this embodiment, the housing 5 is made of resin. The housing 5 accommodates the drive unit 3 and the contact case 4.

[0046] The housing 5 includes a housing body 51 and a lid (not shown). The housing body 51 is open toward the front. The contact device 2, the contact case 4, and the drive device 3 are inserted into the housing body 51 from the front. The opening of the housing body 51 is closed by the lid.

[0047] The housing 5 includes an upper wall 52, a lower wall 53, and a side wall 54. The upper wall 52, the lower wall 53, and the side wall 54 are outer walls of the housing 5. In this embodiment, the housing main body 51 includes the upper wall 52, the lower wall 53, and the side wall 54. The upper wall 52 and the lower wall 53 extend in a direction perpendicular to the up-down direction and are rectangular when viewed from above. The upper wall 52 is disposed above the contact case 4. The lower wall 53 is disposed below the drive unit 3 and limits the downward movement of the drive unit 3.

[0048] The side wall 54 is disposed between the upper wall 52 and the lower wall 53 and is connected to the upper wall 52 and the lower wall 53. The side wall 54 includes a left wall 54a, a right wall 54b, and a rear wall (not shown). The left wall 54a and the right wall 54b extend in a direction perpendicular to the left-right direction. The left wall 54a is disposed to the left of the contact case 4 and the drive unit 3. The right wall 54b is disposed to the right of the contact case 4 and the drive unit 3. The rear wall is disposed behind the contact case 4 and the drive unit 3.

[0049] The housing 5 includes a first pressing portion 55 and a second pressing portion 56. The first pressing portion 55 and the second pressing portion 56 have elasticity that allows them to bend in the vertical direction. The first pressing portion 55 and the second pressing portion 56 are disposed within the housing 5.

[0050] The first pressing portion 55 and the second pressing portion 56 press and fix the contact case 4 against the drive device 3. In detail, the first pressing portion 55 presses the first pressed portion 43 of the contact case 4 downward, pressing the first pressed portion 43 against the first yoke 34 of the drive device 3. The second pressing portion 56 presses the second pressed portion 44 of the contact case 4 downward, pressing the second pressed portion 44 against the first yoke 34 of the drive device 3. In this way, the contact case 4 is fixed to the drive device 3.

[0051] The first pressing portion 55 is a rib that protrudes rightward from the inner surface of the left wall 54a of the side wall 54. The first pressing portion 55 extends from the inner surface of the left wall 54a to a position where it overlaps with the first pressed portion 43 in the vertical direction. The second pressing portion 56 is a rib that protrudes leftward from the inner surface of the right wall 54b of the side wall 54. The second pressing portion 56 extends from the inner surface of the right wall 54b to a position where it overlaps with the second pressed portion 44 in the vertical direction. Here, the first pressing portion 55 and the first pressed portion 43 are in surface contact, but the first pressing portion 55 and the first pressed portion 43 may also be in point contact. The same applies to the second pressing portion 56 and the second pressed portion 44.

[0052] In the electromagnetic relay 100 configured as described above, the contact case 4 is pressed and fixed to the drive unit 3 by the first pressing portion 55 and the second pressing portion 56 of the housing 5, so fixing the contact case 4 can be done more inexpensively than when fixing the contact case 4 by means of brazing, welding, etc. Since the contact case 4 can be fixed by a simple method, the production efficiency of the electromagnetic relay 100 is improved. Also, high component precision is not required compared to when fixing the contact case 4 by means of welding, etc.

[0053] The above describes an embodiment of an electromagnetic relay according to one aspect of the present invention, but the present invention is not limited to the above embodiment, and various modifications are possible within the scope of the gist of the invention.

[0054] The configuration of the first fixed terminal 6 and the second fixed terminal 7 may be changed. The first fixed terminal 6 and the second fixed terminal 7 may have a C-shaped bent shape. The first fixed terminal 6 and the second fixed terminal 7 may also be plate-shaped terminals. For example, the first fixed terminal 6 may protrude leftward from the left wall 54a of the housing 5, and the second fixed terminal 7 may protrude rightward from the right wall 54b of the housing 5.

[0055] The configuration of the contact device 2 and the drive device 3 may be changed. For example, the movable contact piece 10 may be arranged above the first fixed terminal 6 and the second fixed terminal 7, and the fixed core 33 may be arranged below the movable core 32.

[0056] The configurations of the first pressing portion 55 and the second pressing portion 56 may be changed. That is, the configurations of the contact case 4 and the housing 5 may be changed. The top wall 41 of the contact case 4 may be separate from the side wall 42. The contact case 4 may include a bottom wall that is integral with the side wall 42.

[0057] The first pressing portion 55 and the second pressing portion 56 may have any shape as long as they press the first pressed portion 43 and the second pressed portion 44 against the drive device 3. The first pressing portion 55 and the second pressing portion 56 may protrude downward from the inner surface of the upper wall 52 of the housing 5. Furthermore, the first pressed portion 43 and the second pressed portion 44 may be disposed spaced apart from the first yoke 34 in the up-down direction.

[0058] The second pressing portion 56 may be omitted. In this case, for example, the contact case 4 may be made of ceramic, and the first pressing portion 55 may be disposed at the center of the upper wall 41 of the contact case 4. Furthermore, the housing 5 may have three or more pressing portions that press the contact case 4 against the drive device 3.

[0059] FIG. 2 is a diagram illustrating a modified example of the first pressing portion 55 and the second pressing portion 56. As shown in FIG. 2, the first pressing portion 55 and the second pressing portion 56 may be disposed on the upper wall 52 of the housing 5. In the modified example shown in FIG. 2, the first pressing portion 55 and the second pressing portion 56 are formed by a portion of the inner surface of the upper wall 52 of the housing 5. The first pressed portion 43 and the second pressed portion 44 are disposed on the upper surface of the upper wall 41 of the contact case 4. The first pressed portion 43 and the second pressed portion 44 have a convex shape that protrudes toward the upper wall 52 of the housing 5. Alternatively, the first pressed portion 43 and the second pressed portion 44 may be formed by a flat surface, and the first pressing portion 55 and the second pressing portion 56 may have a convex shape that protrudes toward the first pressed portion 43 and the second pressed portion 44.

[0060] The first pressing portion 55 and the second pressing portion 56 press the vicinity of the boundary between the top wall 41 and the side wall 42. The first pressing portion 55 and the second pressing portion 56 are arranged at positions overlapping with the side wall 42 in the up-down direction. In the example shown in FIG. 2, the first pressing portion 55 is arranged at a position overlapping with the left wall 42a of the side wall 42 in the up-down direction. The second pressing portion 56 is arranged at a position overlapping with the right wall 42b of the side wall 42 in the up-down direction.

[0061] 3 and 4 are diagrams illustrating modified examples of the housing 5. As shown in FIGS. 3 and 4, the housing main body 51 of the housing 5 may include an opening 51a that opens in a direction from the drive device 3 toward the contact case 4 (upward in this case). The first pressed portion 43 and the second pressed portion 44 may be configured so that the contact case 4 is pressed against the drive device 3 by a lid portion 58 of the housing 5. That is, as shown in FIGS. 3 and 4, the first pressing portion 55 and the second pressing portion 56 may be provided on the lid portion 58.

[0062] The lid portion 58 is attached to the top of the housing body 51 so as to close the opening 51a of the housing body 51. The lid portion 58 is fixed to the housing body 51 by, for example, a snap-fit ​​connection. The contact device 2, the contact case 4, and the drive device 3 are inserted into the housing body 51 from above. The lid portion 58 forms part of the side wall 54 of the housing 5.

[0063] 3, the first pressed portion 43 and the second pressed portion 44 protrude from the lower end of the side wall 42 toward the outside of the contact case 4, as in the above embodiment. The first pressing portion 55 protrudes downward from the side wall 58b of the lid portion 58 toward the first pressed portion 43, and the second pressing portion 56 protrudes downward from the side wall 58b of the lid portion 58 toward the second pressed portion 44.

[0064] 4, similarly to the modified example shown in Fig. 2, the first pressing portion 55 and the second pressing portion 56 are arranged on the upper wall 58a of the cover portion 58 (the upper wall 52 of the housing 5), and the first pressed portion 43 and the second pressed portion 44 are arranged on the upper surface of the upper wall 41 of the contact case 4. The first pressing portion 55 and the second pressing portion 56 have a convex shape that protrudes toward the first pressed portion 43 and the second pressed portion 44. [Explanation of symbols]

[0065] 3. Drive unit 4 Contact Case 41 Upper wall (example of upper wall of case) 42 Side wall (example of case side wall) 5. Housing 51 Housing body 51a aperture 52 Upper Wall 54 Side wall 55 First pressing portion (an example of a pressing portion) 56 Second pressing portion (an example of a pressing portion) 58 Lid 6 1st fixed terminal 6a 1st fixed contact 7 Second fixed terminal 7a 2nd fixed contact 10 Movable contact piece 10a 1st movable contact 10b 2nd movable contact 100 Electromagnetic relay Z 1st direction

Claims

1. a first fixed terminal including a first fixed contact; a movable contact piece including a first movable contact facing the first fixed contact in a first direction; a drive device that moves the movable contact piece in the first direction; a contact case arranged next to the driving device in the first direction and accommodating the first fixed contact and the movable contact piece; a housing including a pressing portion that presses the contact case against the driving device, the housing accommodating the contact case and the driving device; Equipped with Electromagnetic relay.

2. the contact case includes a case upper wall extending in a direction perpendicular to the first direction, a case side wall disposed on a side of the movable contact piece and extending from the case upper wall toward the drive device in the first direction, and a pressed portion protruding from the case side wall toward the housing and pressed by the pressing portion.

2. The electromagnetic relay according to claim 1.

3. the case upper wall is made of resin and supports the first fixed terminal; 3. The electromagnetic relay according to claim 2.

4. the housing further includes a side wall disposed laterally of the case side wall and the drive device, The pressing portion of the housing protrudes from the side wall toward the case side wall.

4. An electromagnetic relay according to claim 2 or 3.

5. The pressing portion of the housing has elasticity that allows it to bend in the first direction.

5. The electromagnetic relay according to claim 4.

6. the drive device includes a yoke that contacts the pressed portion of the contact case, 6. An electromagnetic relay according to any one of claims 2 to 5.

7. the housing further includes a housing main body including an opening that opens in a direction from the drive device toward the contact case, and a lid portion that closes the opening, The lid portion includes the pressing portion.

7. An electromagnetic relay according to claim 1.

8. the contact case includes a case upper wall extending in a direction perpendicular to the first direction, and a case side wall disposed on a side of the movable contact piece and extending from the case upper wall toward the drive device in the first direction, the housing further includes an upper wall facing the case upper wall in the first direction, The upper wall of the housing includes the pressing portion.

2. The electromagnetic relay according to claim 1.

9. The pressing portion presses the vicinity of the boundary between the case top wall and the case side wall.

9. The electromagnetic relay according to claim 8.

10. The pressing portion is disposed at a position overlapping the case side wall in the first direction.

10. The electromagnetic relay according to claim 9.

11. the case upper wall is made of resin and supports the first fixed terminal; 11. An electromagnetic relay according to claim 9 or 10.

12. the housing further includes a housing main body including an opening that opens in a direction from the drive device toward the contact case, and a lid portion that closes the opening, the lid of the housing includes the top wall of the housing; 12. An electromagnetic relay according to any one of claims 8 to 11.

13. a second fixed terminal including a second fixed contact; The movable contact piece further includes a second movable contact facing the second fixed contact in the first direction.

12. An electromagnetic relay according to any one of claims 1 to 11.

Citation Information

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