Terminal
The terminal design addresses blade tilting by using a conductive plate-like member with substrate-facing portions and slits to distribute external forces, ensuring stable connection and resistance to bending moments, thereby preventing deformation.
Patent Information
- Application Number
- JP2024114735
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2026-01-29
AI Technical Summary
Existing terminals experience blade portion tilting relative to the circuit board due to bending moments, leading to potential buckling and deformation when subjected to external forces.
The terminal design includes a conductive plate-like member with a flat base, blade portion, and substrate-facing portions that are bent and extended in specific directions to provide support and elasticity, reducing the inclination of the blade portion relative to the circuit board.
The design effectively reduces the inclination of the blade portion, preventing deformation and buckling by distributing external forces through substrate-facing portions and slits, ensuring stable connection and resistance to bending moments.
Smart Images

Figure 2026013958000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a terminal. [Background technology]
[0002] Patent Document 1 discloses a terminal formed by bending a single metal plate. This terminal has a blade-shaped terminal body (blade portion) that fits into a mating terminal, and at the end of the terminal, a leg that is inserted into a hole formed in a circuit board and two auxiliary legs that are bent and extend along the circuit board to contact the surface of the circuit board. The blade portion is supported on the circuit board by the leg and the two auxiliary legs. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Utility Model Application Publication No. 56-46981 Summary of the Invention [Problem to be solved by the invention]
[0004] In the terminal disclosed in Patent Document 1, for example, when an external force is applied to a blade portion erected on a circuit board, a bending moment occurs at the connection between the blade portion and the circuit board. Because the direction of the generated bending moment coincides with the extension direction of the auxiliary leg, even a small bending moment is easily transmitted to the auxiliary leg. Therefore, even if the generated bending moment is small, the bending angle of the auxiliary leg may change, causing the blade portion to tilt relative to the circuit board. If the terminal is mated with a mating terminal in a state where the blade portion is tilted, this may result in buckling (deformation) of the blade portion.
[0005] The present invention has been made in light of the above circumstances, and an object of the present invention is to provide a terminal that can reduce the inclination of the blade portion relative to the circuit board. [Means for solving the problem]
[0006] In order to achieve the above object, the terminal according to the present invention comprises: A plug terminal configured by bending a conductive plate-like member and mounted on a circuit board, A flat base; a flat blade portion extending continuously from the base in a first direction along the widest surface of the base; a first protruding portion having a flat plate shape, the first protruding portion being continuous with an end portion of the base portion in a second direction perpendicular to the first direction and along the widest surface, and extending in a third direction intersecting the second direction when viewed in the first direction; a second protruding portion having a flat plate shape, the second protruding portion being continuous with an end portion of the base portion in a fourth direction that is opposite to the second direction and along the widest surface, and extending in a fifth direction that intersects with the fourth direction when viewed in the first direction; a plate-shaped first board facing portion that extends continuously from the first protruding portion in a sixth direction that is the opposite direction to the first direction, and whose end in the sixth direction faces the circuit board; a plate-shaped second substrate facing portion that extends continuously from the second protruding portion in the sixth direction and whose end in the sixth direction faces the circuit board; Equipped with. [Effects of the Invention]
[0007] According to the present invention, the inclination of the blade portion relative to the circuit board can be reduced. [Brief explanation of the drawings]
[0008] [Figure 1] 1 is a first perspective view of a plug terminal according to a first embodiment of the present invention. [Figure 2] FIG. 2 is a second perspective view of the plug terminal according to the first embodiment of the present invention. [Figure 3] FIG. 2 is a development view of the plug terminal of FIG. 1. [Figure 4] 2 is a four-view diagram of the plug terminal of FIG. 1. [Figure 5] FIG. 1 is a perspective view of a receptacle terminal according to a first embodiment of the present invention. [Figure 6]6 is a perspective view showing how the plug terminal of FIG. 1 and the receptacle terminal of FIG. 5 are mated together. FIG. [Figure 7] FIG. 10 is a perspective view of a plug terminal according to a second embodiment of the present invention. [Figure 8] FIG. 10 is a perspective view of a plug terminal according to a third embodiment of the present invention. [Figure 9] FIG. 10 is a perspective view of a plug terminal according to a fourth embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0009] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. In each drawing, the same or equivalent parts are denoted by the same reference numerals. In the following embodiments, the terms "have," "include," or "contain" also mean "consist of" or "consist of."
[0010] Embodiment 1 First, a first embodiment of the present invention will be described. In this embodiment, two terminals that can be connected to each other to transmit signals between boards will be described. One of the two terminals is a plug terminal (terminal) 1A shown in Figures 1, 2, 3, and 4, and the other is a receptacle terminal 2 shown in Figure 5.
[0011] [Plug terminal] First, the plug terminal 1A will be described. As shown in Figures 1, 2, and 4, the plug terminal 1A is mounted on a first substrate 3 serving as a circuit board. The plug terminal 1A is connected to an electrode 3b on a main surface 3a of the first substrate 3. In Figures 1, 2, and 4, the first substrate 3 is indicated by a two-dot chain line.
[0012] In this embodiment, the plug terminal 1A will be described with reference to a three-axis Cartesian coordinate system consisting of the X1 axis, the Y1 axis, and the Z1 axis. Here, the X1 axis and the Y1 axis are defined as in-plane directions of the main surface 3a of the first substrate 3. The Z1 axis is defined as the normal direction to the main surface 3a of the first substrate 3.
[0013] In this embodiment, the +Z1 direction is defined as the first direction, the +X1 direction as the second direction, the -Y1 direction as the third direction, the -X1 direction as the fourth direction, the +Y1 direction as the fifth direction, and the -Z1 direction as the sixth direction.
[0014] The plug terminal 1A is connected to a receptacle terminal 2 (see FIG. 5) mounted on a second board 4 described later, and is used for power connection between the first board 3 and the second board 4, transmission of electrical signals, or grounding.
[0015] The plug terminal 1A is made of a conductive plate-like member, such as a metal, such as a copper alloy. Examples of copper alloys include beryllium copper, phosphor bronze, and titanium copper.
[0016] The plug terminal 1A is formed by punching and bending an elastic metal plate. Specifically, the metal plate is punched into the shape shown in FIG. 3. In FIG. 3, the in-plane directions of the metal plate are the α-axis and β-axis, and the thickness direction of the metal plate is the γ-axis. This metal plate has a shape that is axisymmetric with respect to a center line CL that is parallel to the β-axis. After punching, the metal plate is bent at the two-dot chain line by bending to form the plug terminal 1A shown in FIGS. 1, 2, and 4. The thickness of the metal plate is, for example, about 0.5 to 1 mm, but is not limited to this.
[0017] 1 to 4, the plug terminal 1A includes a base portion 11, a blade portion 12, a first protruding portion 13, a second protruding portion 14, a first substrate facing portion 15, and a second substrate facing portion 16.
[0018] [base] The base 11 is a rectangular, flat portion that serves as the base of the plug terminal 1A and to which other components are connected. The base 11 has a widest surface 11a that is perpendicular to the thickness direction. In FIG. 1, the X1-axis direction and the Z1-axis direction are along the widest surface 11a.
[0019] [Blade] The blade portion 12 is a flat portion extending continuously from the base portion 11 in a first direction (+Z1 direction) along the widest surface 11a of the base portion 11. The widest surface 12a of the blade portion 12 is continuous with the widest surface 11a of the base portion 11. As will be described later, the blade portion 12 comes into contact with the receptacle terminal 2 (see Figures 5 and 6). The tip 12b located at the +Z1 end of the blade portion 12 is tapered, which makes it easier for the blade portion 12 to mate with the receptacle terminal 2.
[0020] [First protrusion] The first protrusion 13 is a flat plate-shaped portion that continues to the end of the base 11 in the second direction (+X1 direction). When viewed in the first direction (+Z1 direction), the first protrusion 13 extends in a third direction (-Y1 direction) that intersects with the second direction (+X1 direction). As shown in FIG. 4, the first protrusion 13 protrudes in the third direction (-Y1 direction) relative to the widest surface 12a of the blade portion 12 when viewed in the first direction (+Z1 direction).
[0021] Here, for example, "looking in the first direction (+Z1 direction)" means viewing an object along a direction toward the end point of the first direction (+Z1 direction) from the observation point of the start point of the first direction (+Z1 direction). Specifically, in the arrow representing the first direction (+Z1 direction) in Fig. 4, it means viewing first protrusion 13 along a direction toward the tip of the arrow from the observation point of the start point of the arrow (the end opposite to the tip of the arrow).
[0022] [Second protrusion] The second protrusion 14 is a flat plate-shaped portion that continues to the end of the base 11 in the fourth direction (-X1 direction). The second protrusion 14 extends in a fifth direction (+Y1 direction) that intersects with the fourth direction (-X1 direction) when viewed in the first direction (+Z1 direction). As shown in FIG. 4, the second protrusion 14 protrudes in the fifth direction (+Y1 direction) relative to the widest surface 12a of the blade portion 12 when viewed in the first direction (+Z1 direction).
[0023] In this embodiment, the third direction (-Y1 direction) and the fifth direction (+Y1 direction) are opposite to each other. That is, the first protrusion 13 and the second protrusion 14 protrude in opposite directions when viewed in the first direction (+Z1 direction).
[0024] [First substrate facing part] The first substrate facing portion 15 is a plate-shaped portion that extends continuously in the sixth direction (-Z1 direction) from the first protruding portion 13. The first substrate facing portion 15 faces the first substrate 3 at an end portion in the sixth direction (-Z1 direction).
[0025] The first substrate facing portion 15 includes a first member 15a that is continuous with the first protruding portion 13 and extends in the sixth direction (-Z1 direction), a first bent portion 15b that is formed by bending at least a portion of the first member 15a around an axis that extends in the third direction (-Y1 direction), and a first extending portion 15c that is continuous with the first bent portion 15b and faces the first substrate 3. The first extending portion 15c extends in the fourth direction (-X1 direction) by bending the first bent portion 15b around an axis that extends in the third direction (-Y1 direction). The first member 15a includes first leg portions 15a1 on both sides of the first bent portion 15b that extend in the third direction (-Y1 direction) and that protrude further toward the first substrate 3 than the first extending portion 15c.
[0026] [Second substrate facing part] The second substrate facing portion 16 is a plate-shaped portion that extends in the sixth direction (-Z1 direction) continuously from the second protruding portion 14. The second substrate facing portion 16 faces the first substrate 3 at its end in the sixth direction (-Z1 direction).
[0027] The second substrate facing portion 16 has a second member 16a that is continuous with the second protruding portion 14 and extends in the sixth direction (-Z1 direction), a second bent portion 16b that is formed by bending at least a portion of the second member 16a around an axis along the fifth direction (+Y1 direction), and a second extending portion 16c that is continuous with the second bent portion 16b and faces the first substrate 3. The second extending portion 16c extends in the second direction (+X direction) because the second bent portion 16b is bent around an axis along the fifth direction (+Y1 direction). The second member 16a has second leg portions 16a1 on both sides of the second bent portion 16b along the fifth direction (+Y1 direction) that protrude further toward the first substrate 3 than the second extending portion 16c.
[0028] The plug terminal 1A is preferably mounted so that the blade portion 12 is not inclined relative to the first substrate 3. The plug terminal 1A is mounted on the first substrate 3 by soldering the first extension portion 15c and the first leg portion 15a1 of the first substrate facing portion 15 and the second extension portion 16c and the second leg portion 16a1 of the second substrate facing portion 16 to the electrode 3b formed on the main surface 3a of the first substrate 3. At this time, the solder wraps around to the surfaces of the first bent portion 15b and the second bent portion 16b facing the electrode 3b, forming a so-called back fillet between this surface and the electrode 3b. At least one of the first leg portion 15a1 and the second leg portion 16a1 does not have to be soldered to the electrode 3b.
[0029] In the present embodiment, first leg portion 15a1 protrudes further toward first substrate 3 than first extending portion 15c, and second leg portion 16a1 protrudes further toward first substrate 3 than second extending portion 16c. Therefore, first leg portion 15a1 and second leg portion 16a1 are connected to first substrate 3, while gaps are formed between first extending portion 15c and second extending portion 16c and electrode 3b of first substrate 3. In other words, blade portion 12 is supported on first substrate 3 by first leg portion 15a1 and second leg portion 16a1. During soldering, even if a difference in the cooling rate of the solder occurs between the back fillet at the first extending portion 15c and the first bent portion 15b and the back fillet at the second extending portion 16c and the second bent portion 16b, the plug terminal 1A is supported by the first leg portion 15a1 and the second leg portion 16a1 on the first substrate 3, so that the inclination of the plug terminal 1A due to the difference in the cooling rate of the back fillet does not occur. As a result, the inclination of the blade portion 12 in the Y1-axis direction with respect to the main surface 3a can be reduced.
[0030] 3, bending is performed on the portions that will become first bent portion 15b and second bent portion 16b. This forms first extending portion 15c and second extending portion 16c. At this time, due to variations in bending accuracy, first extending portion 15c and second extending portion 16c may be misaligned with respect to a plane that is horizontal to main surface 3a of first substrate 3. However, because gaps are formed between first extending portion 15c and second extending portion 16c and first substrate 3, and blade portion 12 is supported on first substrate 3 by first leg portion 15a1 and second leg portion 16a1, plug terminal 1A can be mounted on first substrate 3 with blade portion 12 oriented perpendicular to main surface 3a of first substrate 3.
[0031] [slit] Furthermore, in the plug terminal 1A, a first slit 30A is formed between the first protrusion 13 and the first substrate facing portion 15, extending in the third direction (-Y1 direction) from the end portion closer to the base 11. A second slit 30B is formed between the second protrusion 14 and the second substrate facing portion 16, extending in the fifth direction (+Y1 direction) from the end portion closer to the base 11. The first slit 30A and the second slit 30B create elasticity between the first protrusion 13 and the first substrate facing portion 15 and between the second protrusion 14 and the second substrate facing portion 16, facilitating deformation between the two. This makes it difficult for an external force applied to the blade portion 12 to be transmitted to the portion connected to the first substrate 3, thereby preventing cracks from occurring in the solder between the plug terminal 1A and the electrode 3b.
[0032] [Receptacle terminal] Next, a description will be given of the receptacle terminal 2. The receptacle terminal 2 is fitted with the plug terminal 1A according to the first embodiment shown in FIGS.
[0033] As shown in FIG. 5, the receptacle terminal 2 is mounted on the second substrate 4. The receptacle terminal 2 is connected to an electrode 4b formed on the main surface 4a of the second substrate 4. In FIG. 5, the second substrate 4 is indicated by a two-dot chain line. In this embodiment, the receptacle terminal 2 will be described with reference to a three-axis Cartesian coordinate system consisting of the X2, Y2, and Z2 axes. Here, the X2 and Y2 axes are defined as axes in the in-plane direction of the main surface 4a of the second substrate 4. The Z2 axis is also defined as an axis normal to the main surface 4a of the second substrate 4.
[0034] The receptacle terminal 2 is connected to the plug terminal 1A (see Figures 1 and 2) mounted on the first board 3 as described above, and is used for power connection, electrical signal transmission, or grounding between the first board 3 and the second board 4.
[0035] The receptacle terminal 2 is made of a conductive metal plate, similar to the plug terminal 1A. The material of the receptacle terminal 2 does not need to be the same as that of the plug terminal 1A, but it is preferable that they are the same material from the viewpoint of electrical conductivity.
[0036] The receptacle terminal 2 is formed by punching and bending an elastic metal plate. Specifically, the receptacle terminal 2 is formed by punching an elastic metal plate into the shape shown in FIG.
[0037] As shown in FIG. 5, the receptacle terminal 2 includes a board connecting portion 21, linking portions 22 and 23, and contact portions 24 and 25.
[0038] The substrate connection portion 21 is a plate-like portion that is connected to the electrode 4b formed on the main surface 4a of the second substrate 4 by soldering.
[0039] The connecting portion 22 is a plate-shaped portion of both ends of the substrate connecting portion 21 in the X2 axis direction that extends from the +X2 end in the +Z2 direction, i.e., extends in a direction away from the second substrate 4. The connecting portion 23 is a plate-shaped portion of both ends of the substrate connecting portion 21 in the X2 axis direction that extends from the -X2 end in the +Z2 direction.
[0040] The contact portion 24 includes contact points 24a and 24b. The contact point 24a is a plate-shaped portion that extends in the -X2 direction from the -Y2 end of the connecting portion 22 and further extends in the +Z2 direction. The contact point 24b is a plate-shaped portion that extends in the +X2 direction from the -Y2 end of the connecting portion 23 and further extends in the +Z2 direction. The contact points 24a and 24b are arranged side by side and closely spaced in the X2 axis direction.
[0041] Contact portion 25 includes contact points 25a and 25b. Contact point 25a is a plate-shaped portion that extends in the -X2 direction from the +Y2 end of connecting portion 22 and then in the +Z2 direction. Contact point 25b is a plate-shaped portion that extends in the +X2 direction from the +Y2 end of connecting portion 23 and then in the +Z2 direction. Contact points 25a and 25b are arranged side by side and closely spaced in the X2 axis direction.
[0042] Contact portion 24a and contact portion 25a are arranged close to each other in the Y2-axis direction, and contact portion 24b and contact portion 25b are arranged close to each other in the Y2-axis direction. As a result, contact portion 24 and contact portion 25 are arranged opposite each other in the Y2-axis direction and sandwich blade portion 12 as described below. The distance between contact portion 24 and contact portion 25 decreases as they move in the +Z1 direction, and the position where the distance is shortest is the contact position. Beyond the contact position, the +Z2 end of contact portion 24 and the +Z2 end of contact portion 25 extend in directions away from each other to make it easier to receive blade portion 12 between them.
[0043] [Mating Operation] Next, a description will be given of the mating operation of the plug terminal 1A and the receptacle terminal 2 according to the present embodiment 1. When mated, the plug terminal 1A mounted on the first substrate 3 and the receptacle terminal 2 mounted on the second substrate 4 are oriented such that the +Z1 direction and the +Z2 direction are opposite to each other, as shown in FIG.
[0044] As shown in FIG. 6, blade portion 12 of plug terminal 1A is inserted between contact portion 24 and contact portion 25 of receptacle terminal 2, whereby plug terminal 1A and receptacle terminal 2 are connected together.
[0045] When the blade portion 12 enters between the contact portions 24 and 25, the contact portions 24 and 25 are pressed by the blade portion 12 and elastically deform, widening the gap between the contact portions 24 and 25. The blade portion 12 enters deeper, past the contact point where the gap between the contact portions 24 and 25 is shortest. As a result, the blade portion 12 is sandwiched between the contact portions 24 and 25.
[0046] This electrically connects the electrical circuit of the first board 3 and the electrical circuit of the second board 4 via the plug terminal 1A and the receptacle terminal 2, making it possible to connect a power source, transmit electrical signals, or ground between the first board 3 and the second board 4.
[0047] Plug terminal 1A is connected to first board 3 at first substrate facing portion 15 extending in a third direction (-Y1 direction) that intersects with widest surface 12a of flat blade portion 12, and second substrate facing portion 16 extending in a fifth direction (+Y1 direction) that intersects with widest surface 12a of similarly flat blade portion 12. Specifically, plug terminal 1A is connected to first board 3 via first extension portion 15c extending in the -X1 direction and second extension portion 16c extending in the +X1 direction. Therefore, even if an external force is applied to blade portion 12 in a direction intersecting widest surface 12a (i.e., the +Y1 direction and the -Y1 direction), plug terminal 1A is connected to first board 3 via first extension portion 15c and second extension portion 16c, which extend in the -X1 direction and the +X1 direction, respectively, which are directions perpendicular to the direction of the external force, and therefore a bending moment caused by the external force is unlikely to occur in first bent portion 15b and second bent portion 16b. As a result, the inclination of blade portion 12 in the Y1-axis direction relative to first board 3 can be reduced.
[0048] The plug terminal 1A has a structure that is resistant to deformation due to bending moments around the X1 axis direction, since the first leg portion 15a1 at both ends along the third direction and the second leg portion 16a1 at both ends along the fifth direction are connected to the first substrate 3.
[0049] Embodiment 2 Next, a second embodiment of the present invention will be described. As shown in Fig. 7, a plug terminal 1B according to this embodiment is the same as plug terminal 1A according to the first embodiment in that it includes a base portion 11, a blade portion 12, a first protruding portion 13, a second protruding portion 14, a first substrate facing portion 15, and a second substrate facing portion 16.
[0050] The first protrusion 13 and the second protrusion 14 protrude in the third and fifth directions relative to the widest surface 12a of the blade portion 12 when viewed in the first direction (+Z1 direction). In this embodiment, the third and fifth directions are the same, the +Y1 direction, and in plug terminal 1B, both the first protrusion 13 and the second protrusion 14 protrude in the +Y1 direction relative to the widest surface 12a when viewed in the first direction (+Z1 direction). Because the first protrusion 13 and the second protrusion 14 protrude in the same direction, the dimension of plug terminal 1B along the Y1 axis direction can be made smaller than that of plug terminal 1A.
[0051] The first substrate facing portion 15 has a first member 15a extending in the sixth direction (-Z1 direction), a first bent portion 15b formed by bending the first member 15a around an axis along the third direction (+Y1 direction), and a first extending portion 15c continuing from the first bent portion 15b and facing the first substrate 3. The second substrate facing portion 16 has a second member 16a extending in the sixth direction (-Z1 direction), a second bent portion 16b formed by bending the second member 16a around an axis along the fifth direction (+Y1 direction), and a second extending portion 16c continuing from the second bent portion 16b and facing the first substrate 3.
[0052] In plug terminal 1B, first member 15a does not have first leg portion 15a1, and second member 16a does not have second leg portion 16a1. Furthermore, unlike plug terminal 1A, plug terminal 1B does not have first slit 30A or second slit 30B. However, in plug terminal 1B as well, the axial direction in which first bent portion 15b is bent and the axial direction in which second bent portion 16b is bent intersect with the direction in which a bending moment occurs when blade portion 12 tilts. This prevents the bending angle of first substrate facing portion 15 and second substrate facing portion 16 from changing due to the bending moment. As a result, it is possible to prevent blade portion 12 from tilting relative to first substrate 3 due to an external force applied to blade portion 12.
[0053] Embodiment 3 Next, a third embodiment of the present invention will be described. As shown in Fig. 8, a plug terminal 1C according to this embodiment is the same as the plug terminals 1A and 1B according to the first and second embodiments in that it includes a base portion 11, a blade portion 12, a first protruding portion 13, a second protruding portion 14, a first substrate facing portion 15, and a second substrate facing portion 16.
[0054] In this embodiment, the third direction is the -Y1 direction, and the fifth direction is the +Y1 direction. In the plug terminal 1C, the first protrusion 13 and the second protrusion 14 protrude in the third direction (-Y1 direction) and the fifth direction (+Y1 direction) relative to the widest surface 12a of the blade portion 12 when viewed in the first direction (+Z1 direction). That is, the first protrusion 13 and the second protrusion 14 protrude in opposite directions when viewed in the first direction (+Z1 direction).
[0055] The first substrate facing portion 15 has a first member 15a extending in the sixth direction (-Z1 direction), a first bent portion 15b formed by bending the first member 15a around an axis along the third direction (-Y1 direction), and a first extending portion 15c continuing from the first bent portion 15b and facing the first substrate 3. The second substrate facing portion 16 has a second member 16a extending in the sixth direction (-Z1 direction), a second bent portion 16b formed by bending the second member 16a around the fifth direction (+Y1 direction), and a second extending portion 16c continuing from the second bent portion 16b and facing the first substrate 3.
[0056] In the plug terminal 1C, the first member 15a does not have a first leg portion 15a1, and the second member 16a does not have a second leg portion 16a1. Unlike the plug terminal 1A, the plug terminal 1C does not have a first slit 30A or a second slit 30B. However, in the plug terminal 1C, the axial direction in which the first member 15a and the first extension portion 15c are bent and the axial direction in which the second member 16a and the second extension portion 16c are bent intersect with the direction in which the bending moment occurs when the blade portion 12 tilts. Therefore, this bending moment can be prevented from changing the bending angle between the first member 15a and the first extension portion 15c in the first substrate facing portion 15 and the bending angle between the second member 16a and the second extension portion 16c in the second substrate facing portion 16. As a result, tilting of the blade portion 12 relative to the first substrate 3 due to an external force applied to the blade portion 12 can be prevented.
[0057] The first protrusion 13 and the second protrusion 14 protrude in opposite directions when viewed in the first direction (+Z1 direction), so that the first extension 15c and the second extension 16c do not interfere with each other even if they are extended in the X1 axis direction. Therefore, the first extension 15c and the second extension 16c of the plug terminal 1C can be made longer than those of the plug terminal 1B. This allows the position of the plug terminal 1C on the first board 3 to be stabilized.
[0058] Embodiment 4 Next, a fourth embodiment of the present invention will be described. As shown in Fig. 9, a plug terminal 1D according to this embodiment is the same as the plug terminals 1A, 1B, and 1C according to the first, second, and third embodiments in that it includes a base portion 11, a blade portion 12, a first protruding portion 13, a second protruding portion 14, a first substrate facing portion 15, and a second substrate facing portion 16.
[0059] In this embodiment, the third direction is the -Y1 direction, and the fifth direction is the +Y1 direction. In the plug terminal 1D, the first protrusion 13 and the second protrusion 14 protrude from the widest surface 12a of the blade portion 12 when viewed in the first direction (+Z1 direction). The first protrusion 13 and the second protrusion 14 protrude in opposite directions when viewed in the first direction (+Z1 direction).
[0060] The first substrate facing portion 15 has a first member 15a extending in the sixth direction (-Z1 direction), a first bent portion 15b formed by bending at least a part of the first member 15a around an axis along the third direction (-Y1 direction), and a first extending portion 15c continuous with the first bent portion 15b and facing the first substrate 3. The second substrate facing portion 16 has a second member 16a extending in the sixth direction (-Z1 direction), a second bent portion 16b formed by bending at least a part of the second member 16a around the fifth direction (+Y1 direction), and a second extending portion 16c continuous with the second bent portion 16b and facing the first substrate 3. The first member 15a has first leg portions 15a1 on both sides of a first extending portion 15c along the third direction (-Y1 direction) that protrude further toward the first substrate 3 than the first extending portion 15c. The second member 16a also has second leg portions 16a1 on both sides of a second extending portion 16c in the fifth direction (+Y1 direction) that protrude further toward the first substrate 3 than the second extending portion 16c.
[0061] In the plug terminal 1D, a first slit 30C is formed between the first protruding portion 13 and the first board facing portion 15, extending in the third direction (-Y1 direction) from an end portion closer to the base portion 11, and a second slit 30D is formed between the second protruding portion 14 and the second board facing portion 16, extending in the fifth direction (+Y1 direction) from an end portion closer to the base portion 11. The first slit 30C and the second slit 30D are larger than the first slit 30A and the second slit 30B. This makes it easier to displace the first protruding portion 13 relative to the first board facing portion 15, and easier to displace the second protruding portion 14 relative to the second board facing portion 16. This makes it harder for an external force applied to the blade portion 12 to be transmitted to the first board facing portion 15 and the second board facing portion 16, which are connected to the first board 3.
[0062] In plug terminal 1D, base 11 is formed with a notch 31 extending in a first direction (+Z1 direction) from an end portion facing first board 3. Due to this notch 31, even if a rotational force about an axis along the +Z1 direction is applied to blade portion 12, for example, base 11 deforms to absorb the rotational force, making it difficult for the rotational force to be transmitted to the portion connected to first board 3.
[0063] [summary] (1) As described above in detail, plug terminals 1A to 1D according to the present embodiment are connected to first substrate 3 at first substrate-facing portion 15, which extends in the third direction (-Y1 or +Y1 direction), a direction intersecting widest surface 12a of flat blade portion 12, and second substrate-facing portion 16, which extends in the fifth direction (+Y1 direction), intersecting widest surface 12a of flat blade portion 12. Therefore, even if an external force is applied to blade portion 12 in a direction intersecting widest surface 12a, plug terminal 1A is connected to first substrate 3 at surfaces extending in the third and fifth directions (Y1-axis direction), and deformation due to a bending moment generated by the external force is suppressed. As a result, the inclination of blade portion 12 relative to first substrate 3 can be reduced.
[0064] In plug terminals 1A to 1D, first substrate facing portion 15 and second substrate facing portion 16 extend in a direction perpendicular to widest surface 12a of blade portion 12, but this is not limited thereto. First substrate facing portion 15 and second substrate facing portion 16 may extend in any direction intersecting widest surface 12a of blade portion 12.
[0065] (2) In plug terminals 1A to 1D, at least a portion of first substrate facing portion 15 is connected to first substrate 3, and at least a portion of second substrate facing portion 16 is connected to first substrate 3. As described above, at least a portion of first substrate facing portion 15 extending in the third direction (-Y1 or +Y1 direction) that intersects with widest surface 12a of flat blade portion 12, and at least a portion of second substrate facing portion 16 extending in the fifth direction (+Y1 direction) that intersects with widest surface 12a of similarly flat blade portion 12, are connected to first substrate 3. In this manner, plug terminals 1A to 1D can be stably mounted on first substrate 3.
[0066] (3) In the plug terminals 1A to 1D, the first substrate facing portion 15 includes a first member 15a extending in the sixth direction (−Z1 direction), a first bent portion 15b formed by bending at least a portion of the first member 15a around an axis along the third direction (−Y1 or +Y1 direction), and a first extending portion 15c continuous with the first bent portion 15b and facing the first substrate 3. The second substrate facing portion 16 includes a second member 16a extending in the sixth direction (−Z1 direction), a second bent portion 16b formed by bending at least a portion of the second member 16a around an axis along the fifth direction (+Y1 direction), and a second extending portion 16c continuous with the second bent portion 16b and facing the first substrate 3. This makes it possible to increase the area over which first substrate 3 and plug terminals 1A to 1D are connected, thereby stabilizing the posture of plug terminals 1A to 1D.
[0067] (4) The first member 15a has first leg portions 15a1 on both sides of the first bent portion 15b along the third direction (-Y1 direction) that protrude further toward the first board 3 than the first extending portion 15c. The second member 16a has second leg portions 16a1 on both sides of the second bent portion 16b along the fifth direction (+Y1 direction) that protrude further toward the first board 3 than the second extending portion 16c. This makes it possible to mount the plug terminal 1A on the first board 3 with the blade portions 12 oriented perpendicular to the main surface 3a of the first board 3, regardless of the processing accuracy of the bending of the first extending portions 15c and the second extending portions 16c.
[0068] (5) When viewed in the first direction (+Z1 direction), the first protrusion 13 and the second protrusion 14 protrude relative to the widest surface 12a of the blade portion 12. In this way, the blade portion 12 can be supported by the portion extending in a direction intersecting the widest surface 12a. Therefore, even if an external force is applied to the blade portion 12 in a direction intersecting the widest surface 12a, the portion extending in the direction intersecting the widest surface 12a can be prevented from being deformed by the external force.
[0069] (6) In plug terminals 1A, 1C, and 1D, first protrusion 13 and second protrusion 14 protrude in opposite directions when viewed in the first direction (+Z1 direction). This makes the shape when viewed in the first direction (+Z1 direction) rotationally symmetric, and provides a structural strength that is strong against rotational forces around an axis along the first direction (+Z1 direction).
[0070] (7) First slits 30A and 30C are formed between the first protruding portion 13 and the first substrate facing portion 15, extending in the third direction (-Y1 direction) from the end portion closer to the base 11, and second slits 30B and 30D are formed between the second protruding portion 14 and the second substrate facing portion 16, extending in the fifth direction (+Y1 direction) from the end portion closer to the base 11. This makes it possible to change the relative position of the first protruding portion 13 with respect to the first substrate facing portion 15 and the relative position of the second protruding portion 14 with respect to the second substrate facing portion 16, and makes it difficult for external force applied to the blade portion 12 to be transmitted to the portion connected to the first substrate 3.
[0071] (8) According to the plug terminal 1D of the fourth embodiment, the base 11 is formed with a notch 31 extending in the first direction (+Z1 direction) from the end portion facing the first board 3. This allows the base 11 to be deformable in the rotational direction around the axis along the first direction (+Z1 direction), making it difficult for an external force applied to the blade portion 12 to be transmitted to the portion connected to the first board 3.
[0072] This invention allows various embodiments and modifications without departing from the broad spirit and scope of this invention. Furthermore, the above-described embodiments are intended to explain this invention and do not limit the scope of this invention. That is, the scope of this invention is defined by the claims, not the embodiments. Various modifications made within the scope of the claims and the meaning of the invention equivalent thereto are considered to be within the scope of this invention. [Industrial Applicability]
[0073] The present invention can be applied to terminals that are mounted on circuit boards and connect the circuit boards together. [Explanation of symbols]
[0074] 1A, 1B, 1C, 1D Plug terminal (terminal), 2 Receptacle terminal, 3 1st board (circuit board), 3a main surface, 3b electrode, 4 2nd board, 4a main surface, 4b electrode, 11 base, 11a widest surface, 12 blade section, 12a widest surface, 12b tip, 13 1st protrusion, 14 2nd protrusion, 15 1st board facing part, 15a 1st member, 15a1 1st leg part, 15b 1st bent part, 15c 1st extending part, 16 2nd board facing part, 16a 2nd member, 16a1 2nd leg part, 16b 2nd bent part, 16c 2nd extending part, 21 Board connecting part, 22, 23 Connecting part, 24 Contact part, 24a, 24b Contact part, 25 Contact part, 25a, 25b Contact portion, 30A, 30C first slit, 30B, 30D second slit, 31 notch
Claims
1. A plug terminal configured by bending a conductive plate-like member and mounted on a circuit board, A flat base; a flat blade portion extending continuously from the base in a first direction along the widest surface of the base; a first protruding portion having a flat plate shape, the first protruding portion being continuous with an end portion of the base portion in a second direction perpendicular to the first direction and along the widest surface, and extending in a third direction intersecting the second direction when viewed in the first direction; a second protruding portion having a flat plate shape, the second protruding portion being continuous with an end of the base portion in a fourth direction that is opposite to the second direction and along the widest surface, and extending in a fifth direction that intersects with the fourth direction when viewed in the first direction; a plate-shaped first board facing portion that extends continuously from the first protruding portion in a sixth direction that is the opposite direction to the first direction, and whose end in the sixth direction faces the circuit board; a plate-shaped second board facing portion that extends continuously from the second protruding portion in the sixth direction and has an end portion in the sixth direction facing the circuit board; A terminal comprising:
2. At least a portion of the first substrate facing portion is connected to the circuit board, At least a portion of the second substrate facing portion is connected to the circuit board. The terminal according to claim 1 .
3. the first substrate facing portion is a first member that is continuous with the first protruding portion and extends in the sixth direction; a first bent portion formed by bending at least a portion of the first member around an axis along the third direction; a first extending portion that is continuous with the first bent portion and faces the circuit board; the second substrate facing portion is a second member that is continuous with the second protruding portion and extends in the sixth direction; a second bent portion formed by bending at least a portion of the second member around an axis along the fifth direction; a second extending portion that is continuous with the second bent portion and faces the circuit board; The terminal according to claim 1 .
4. the first member has first leg portions on both sides of the first bent portion along the third direction, the first leg portions extending further toward the circuit board than the first extending portion; the second member has second leg portions on both sides of the second bent portion along the fifth direction, the second leg portions extending further toward the circuit board than the second extending portion; The terminal according to claim 3 .
5. The first protrusion and the second protrusion protrude relative to the widest surface of the blade portion when viewed in the first direction. The terminal according to claim 1 .
6. The first protrusion and the second protrusion protrude in opposite directions to each other when viewed in the first direction. The terminal according to claim 1 .
7. a first slit extending in the third direction from an end portion closer to the base portion is formed between the first protruding portion and the first substrate facing portion; a second slit extending in the fifth direction from an end portion closer to the base portion is formed between the second protruding portion and the second substrate facing portion; The terminal according to claim 1 .
8. The base portion has a notch formed therein, the notch extending in the first direction from an end portion facing the circuit board. The terminal according to claim 1 .
Citation Information
Patent Citations
JP1981046981U