Female Terminals and Connectors

The female terminal's innovative design with divided cylindrical portions and a protective structure stabilizes the connection by preventing displacement, ensuring stable electrical contact without additional components.

JP7794285B2Active Publication Date: 2026-01-06AUTONETWORKS TECH LTD +2
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Patent Information

Application Number
JP2024231474
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2026-01-06
Estimated Expiration
2043-06-09

AI Technical Summary

Technical Problem

Existing connectors face issues with displacement of the columnar connecting portion inside the tubular connecting portion, which affects the stability of the electrical connection.

Method used

The female terminal is designed with a first and second peripheral wall forming a cylindrical connecting portion, featuring multiple divided cylindrical portions with inward protrusions and a slit, along with a protective portion and winding clamp, to stabilize the connection by preventing displacement of the male terminal.

Benefits of technology

The design effectively suppresses displacement of the male terminal within the female terminal, maintaining stable electrical contact through multiple contact points and a simplified structure without additional components like coil springs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a female terminal and a connector that can suppress displacement of a columnar connection part inside a tubular connection part.SOLUTION: A female terminal 31 includes a peripheral wall 50 having a tubular part 51, a peripheral wall 40 having a tubular part 41 provided opposite to the tubular part 51, and a tubular connection part 60 composed of the tubular part 51 and the tubular part 41. The tubular connection part 60 is a first connection part that has a columnar connection part 201 of a male terminal 200, which is inserted into the interior of the tubular connection part 60, and is electrically connected to the columnar connection part 201. The tubular part 51 has a plurality of divided tubular parts 52 that is divided in the axial direction of the tubular connection part 60. Each of the plurality of divided tubular parts 52 has an inner surface 54 facing the tubular part 41 and a protrusion 56 that protrudes in a cross-sectional arc from the inner surface 54 toward the inner radial direction of the tubular connection part 60.SELECTED DRAWING: Figure 8
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Description

[Technical Field]

[0001] The present disclosure relates to a female terminal and a connector. [Background technology]

[0002] Conventionally, a known connector for mounting on a vehicle includes a housing and a female terminal held in the housing. The columnar connecting portion of the male terminal is inserted into the tubular connecting portion of the female terminal, and the columnar connecting portion is electrically connected. This type of female terminal uses a biasing force from a biasing member such as a coil spring to ensure stable contact pressure with the columnar connecting portion of the male terminal (see, for example, Patent Document 1). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Patent Publication No. 2021-28903 Summary of the Invention [Problem to be solved by the invention]

[0004] In the above connector, it is desirable to suppress displacement of the columnar connecting portion inside the cylindrical connecting portion. An object of the present disclosure is to provide a female terminal and a connector that can suppress displacement of a columnar connecting portion inside a tubular connecting portion. [Means for solving the problem]

[0005] A female terminal of the present disclosure is a female terminal including a first peripheral wall having a first cylindrical portion, a second peripheral wall having a second cylindrical portion facing the first cylindrical portion, and a cylindrical connecting portion constituted by the first cylindrical portion and the second cylindrical portion, wherein the cylindrical connecting portion is a first connecting portion into which a columnar connecting portion of a male terminal is inserted and which is electrically connected to the columnar connecting portion, the first cylindrical portion has a plurality of divided cylindrical portions divided in the axial direction of the cylindrical connecting portion, each of the plurality of divided cylindrical portions has a first inner surface facing the second cylindrical portion and a protrusion protruding inward in the radial direction of the cylindrical connecting portion from the first inner surface in an arc-shaped cross section, the second cylindrical portion has a second inner surface facing the first inner surface, and the first peripheral wall is formed along a first direction. the second peripheral wall is formed in a band shape extending along the first direction, the second peripheral wall is formed in a band shape extending along the first direction, the first inner surface is provided facing the second cylindrical portion in a second direction intersecting the first direction, the female terminal has a protective portion provided at an end of the second peripheral wall in the first direction, the protective portion is formed integrally with the second peripheral wall, and the protective portion is formed so as to be folded back from the end of the second peripheral wall in the first direction while locating the end of the first peripheral wall in the first direction therein, the protective portion has a protective wall provided opposite the end of the first peripheral wall in the second direction, and the protective wall is provided at a distance from the end of the first peripheral wall in the first direction.

[0006] The connector of the present disclosure includes the female terminal described above and a housing that accommodates the female terminal therein. [Effects of the Invention]

[0007] The female terminal and connector of the present disclosure have the advantage of being able to suppress displacement of the columnar connecting portion inside the tubular connecting portion. [Brief explanation of the drawings]

[0008] [Figure 1] FIG. 1 is a perspective view showing a wire harness according to an embodiment. [Figure 2] FIG. 2 is an exploded perspective view showing the wire harness of the embodiment. [Figure 3] FIG. 3 is an exploded perspective view showing the wire harness of the embodiment. [Figure 4] FIG. 4 is a perspective view showing a part of the wire harness of the embodiment. [Figure 5] FIG. 5 is a side view showing a part of the wire harness of the embodiment. [Figure 6] FIG. 6 is a side view showing a part of the wire harness of the embodiment. [Figure 7] FIG. 7 is a cross-sectional view (a cross-sectional view taken along line 7-7 in FIGS. 5 and 6) showing a part of the wire harness of the embodiment. [Figure 8] FIG. 8 is a cross-sectional view (cross-sectional view taken along line 8-8 in FIGS. 5 and 6) showing a part of the wire harness of the embodiment. [Figure 9] FIG. 9 is a side view showing a female terminal according to one embodiment. [Figure 10] FIG. 10 is a cross-sectional perspective view showing a female terminal according to one embodiment. [Figure 11] FIG. 11 is a cross-sectional view (cross-sectional view taken along line 11-11 in FIGS. 5 and 6) showing a female terminal according to one embodiment. [Figure 12] FIG. 12 is a cross-sectional view (cross-sectional view taken along line 12-12 in FIG. 11) showing a female terminal according to one embodiment. [Figure 13] FIG. 13 is a cross-sectional perspective view showing a female terminal according to one embodiment. [Figure 14] FIG. 14 is an exploded perspective view showing a part of the wire harness of the embodiment. [Figure 15] FIG. 15 is a plan view showing a part of the wire harness of the embodiment. [Figure 16] FIG. 16 is a cross-sectional view (cross-sectional view taken along line 16-16 in FIG. 15) showing a part of the wire harness of the embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0009] [Description of the embodiments of the present disclosure] First, embodiments of the present disclosure will be listed and described. [1] The female terminal of the present disclosure comprises a first peripheral wall having a first cylindrical portion, a second peripheral wall having a second cylindrical portion facing the first cylindrical portion, and a cylindrical connecting portion constituted by the first cylindrical portion and the second cylindrical portion, wherein the cylindrical connecting portion is a first connecting portion into which a columnar connecting portion of a male terminal is inserted and which is electrically connected to the columnar connecting portion, and the first cylindrical portion has a plurality of divided cylindrical portions divided in the axial direction of the cylindrical connecting portion, and each of the plurality of divided cylindrical portions has a first inner surface facing the second cylindrical portion and a protrusion protruding from the first inner surface radially inward of the cylindrical connecting portion in an arc-shaped cross section.

[0010] According to this configuration, when the columnar connecting portion of the male terminal is press-fitted into the tubular connecting portion, the protrusions provided on the first inner surface of each of the plurality of divided tubular portions come into contact with the outer peripheral surface of the columnar connecting portion. Therefore, in the tubular connecting portion, the plurality of protrusions come into contact with the outer peripheral surface of the columnar connecting portion at a plurality of locations spaced apart in the axial direction. As a result, even when a swing is transmitted to the male terminal, the contact of the plurality of protrusions with the columnar connecting portion can effectively prevent displacement of the male terminal due to the swing. In other words, compared to when only one protrusion is provided on the inner surface of the first tubular portion, the contact pressure of the plurality of protrusions can more effectively prevent displacement of the columnar connecting portion inside the tubular connecting portion.

[0011] [2] In the above [1], the plurality of split tubular portions may be two split tubular portions, the first tubular portion may have a slit separating the two split tubular portions, and the slit may be provided at a central position of the tubular connecting portion in the axial direction.

[0012] According to this configuration, a slit separating the two split tubular portions is provided at the axial center of the tubular connecting portion. When the columnar connecting portion of the male terminal inserted into the tubular connecting portion is displaced, the columnar connecting portion rotates around the axial center of the tubular connecting portion. If a contact portion between the protrusion and the columnar connecting portion were provided at such a rotation center, the contact pressure of the protrusion would not act as a force to suppress the displacement of the columnar connecting portion. In contrast, in the above configuration, the protrusion is provided at a position other than the slit provided at the axial center of the tubular connecting portion. This allows the protrusion and the columnar connecting portion to come into contact at a position other than the rotation center of the displacement of the columnar connecting portion. This allows the contact pressure of the protrusion to effectively act as a force to suppress the displacement of the columnar connecting portion. As a result, the contact pressure of the multiple protrusions can effectively suppress the displacement of the columnar connecting portion inside the tubular connecting portion.

[0013] [3] In the above [2], the first peripheral wall is formed in a band shape extending along a first direction, the second peripheral wall is formed in a band shape extending along the first direction, the first inner surface is provided opposite the second cylindrical portion in a second direction intersecting with the first direction, the axial direction of the cylindrical connecting portion extends along a third direction intersecting with both the first direction and the second direction, the slit extends from the end face of the first peripheral wall in the first direction along a first opposite direction that is the opposite direction to the first direction, the slit penetrates the first peripheral wall in both the second direction and a second opposite direction that is the opposite direction to the second direction, and the slit may be open in the first direction.

[0014] According to this configuration, the end of the first peripheral wall including the first cylindrical portion in the first direction is bifurcated by the slit, and the two divided cylindrical portions are thus formed as independent structures, thereby enabling the two divided cylindrical portions to independently ensure contact pressure with the columnar connecting portion of the male terminal.

[0015] [4] In the above [3], the two divided cylindrical portions may be formed symmetrically with respect to a virtual plane that includes the center of the slit in the third direction and extends in both the first direction and the first opposite direction.

[0016] According to this configuration, the two divided cylindrical portions are formed symmetrically with respect to the plane, which ensures that the two divided cylindrical portions provided on both sides of the slit have equal contact pressure.

[0017] [5] In the above [4], the protruding tip of the protrusion of each of the two split tubular portions may be located in the axial direction at a position spaced a first distance from the center of the tubular connecting portion in the axial direction.

[0018] According to this configuration, the protruding tip of each protrusion is provided at a position spaced a first distance from the axial center of the tubular connecting portion. Therefore, the protruding tip of the protrusion can be brought into contact with the columnar connecting portion at a position spaced a first distance from the rotation center of the displacement of the columnar connecting portion. This allows the contact pressure of the protrusions to preferably act as a force that suppresses the displacement of the columnar connecting portion. As a result, the contact pressure of the multiple protrusions can preferably suppress the displacement of the columnar connecting portion inside the tubular connecting portion.

[0019] [6] In any of [1] to [5] above, the second tubular portion has a second inner surface opposite to the first inner surface and a plurality of linear contact portions protruding from the second inner surface radially inward of the tubular connecting portion, the plurality of linear contact portions being provided at positions spaced apart from each other in the circumferential direction of the tubular connecting portion, and each of the plurality of linear contact portions may extend along the axial direction.

[0020] According to this configuration, when the columnar connecting portion of the male terminal is press-fitted into the tubular connecting portion, the linear contact portions provided on the second inner surface constituting the tubular connecting portion are pressed into line contact with the outer circumferential surface of the columnar connecting portion at multiple locations spaced apart in the circumferential direction. As a result, even if a rocking motion is transmitted to the male terminal, the contact of the multiple linear contact portions with the male terminal can effectively prevent displacement of the male terminal due to the rocking motion.

[0021] [7] In the above [6], the female terminal may further include a winding clamp portion that limits the distance between the first inner surface and the second inner surface, the winding clamp portion being formed integrally with the second peripheral wall, and the winding clamp portion being folded back from the second peripheral wall while holding the edge of the first peripheral wall inward, and may be in contact with the outer surface of the first peripheral wall.

[0022] According to this configuration, when the columnar connecting portion of the male terminal is press-fitted into the tubular connecting portion, the retaining portion prevents the separation distance between the first inner surface constituting the tubular connecting portion and the second inner surface constituting the tubular connecting portion from increasing. This restriction by the retaining portion allows the protrusion and the linear contact portion to be in favorable contact with the outer circumferential surface of the columnar connecting portion. As a result, the contact state between the tubular connecting portion and the columnar connecting portion can be stably maintained. Furthermore, the retaining portion is integrally formed with the second circumferential wall. Therefore, the contact state between the tubular connecting portion and the columnar connecting portion can be maintained with a simpler structure than when a separate part such as a coil spring is used. In other words, the structure of the female terminal can be simplified compared to when a separate part such as a coil spring is used.

[0023] [8] In the above [7], the female terminal may further include a connecting portion connecting the first peripheral wall and the second peripheral wall, and the connecting portion may be formed integrally with the first peripheral wall and also formed integrally with the second peripheral wall.

[0024] According to this configuration, the first peripheral wall and the second peripheral wall are connected by a connecting portion integrally formed with both the first peripheral wall and the second peripheral wall. This allows the first peripheral wall and the second peripheral wall to be integrally formed through the connecting portion. Therefore, the female terminal can be constructed by bending a single metal plate. As a result, the structure of the female terminal can be simplified.

[0025] [9] In the above [8], the first peripheral wall is formed in a band shape extending along a first direction, the second peripheral wall is formed in a band shape extending along the first direction, the first inner surface is arranged opposite the second tubular portion in a second direction intersecting the first direction, the female terminal further includes a protective portion arranged at an end of the second peripheral wall in the first direction, the protective portion is formed integrally with the second peripheral wall, and the protective portion is formed so as to be folded back from the end of the second peripheral wall in the first direction while arranging the end of the first peripheral wall in the first direction inside, the protective portion has a protective wall arranged opposite the end of the first peripheral wall in the second direction, and the protective wall may be arranged at a distance from the end of the first peripheral wall in the first direction.

[0026] According to this configuration, the protective wall of the protective portion formed integrally with the second peripheral wall is provided facing the end of the first peripheral wall in a spaced relationship with the end of the first peripheral wall in the first direction. Therefore, even if, for example, an excessively large external force is unintentionally applied to the end of the first peripheral wall in the first direction, causing the first peripheral wall to deform so as to move away from the second peripheral wall due to the external force, the deformation can be suitably prevented by the protective wall.

[0027]

[10] In the above [9], the winding pressure portion may be provided at the end of the second peripheral wall in a first opposite direction, which is opposite to the first direction, and the tubular connecting portion may be provided at an intermediate position between the winding pressure portion and the protective portion in the first direction.

[0028] According to this configuration, the winding presser is provided at a position different from the tubular connecting portion in the first direction. Such a winding presser can prevent the separation distance between the first circumferential wall and the second circumferential wall from increasing. Consequently, the winding presser can prevent the separation distance between the first inner surface constituting the tubular connecting portion and the second inner surface constituting the tubular connecting portion from increasing.

[0029]

[11] In the above [9] or

[10] , the female terminal may further include a wire connection portion provided at an end portion of the second peripheral wall in a first opposite direction that is opposite to the first direction, the wire connection portion being a second connection portion electrically connected to an electric wire, the wire connection portion being formed integrally with the second peripheral wall, and the wire connection portion extending from the end portion of the second peripheral wall in the first opposite direction toward the first opposite direction.

[0030] According to this configuration, the wire connecting portion that is electrically connected to the wire is formed integrally with the second peripheral wall, which reduces the number of parts of the female terminal and simplifies the structure of the female terminal.

[0031]

[12] The connector of the present disclosure comprises the female terminal according to any one of [1] to

[11] above, and a housing that accommodates the female terminal therein. This configuration can provide the same effects as the female terminal described above in [1].

[0032] [Details of the embodiments of the present disclosure] Specific examples of female terminals and connectors according to the present disclosure are described below with reference to the drawings. For ease of explanation, some components may be exaggerated or simplified in the drawings. The dimensional ratios of the various components may differ between the drawings. In this specification, "parallel" and "orthogonal" do not necessarily refer to strict parallel or orthogonal relationships, but also include roughly parallel or orthogonal relationships within the scope of the present embodiment's effects. In this specification, "equal" refers not only to exact equality but also to slight differences between comparable objects due to dimensional tolerances, etc. The term "cylindrical" as used in this specification does not only refer to a cylindrical structure formed by combining multiple components, but also to a cylindrical structure with a circumferentially continuous wall, such as a C-shape or U-shape, that has a notch or other feature in the circumferential direction. The term "cylindrical" includes, but is not limited to, circular, elliptical, and polygonal shapes with pointed or rounded corners. In this specification, "facing" refers to surfaces or components facing each other, including not only cases where they are completely facing each other but also cases where they are partially facing each other. Furthermore, in this specification, "facing" includes both cases where a separate component is interposed between the two components and cases where nothing is interposed between the two components. Furthermore, terms such as "first," "second," and "third" are used in this specification simply to distinguish between objects and do not rank them. The present invention is not limited to these examples, but is defined by the claims, and all modifications within the meaning and scope of the claims are intended to be included.

[0033] (Overall configuration of wire harness W1) As shown in FIG. 1, the wire harness W1 includes one or more (two in this embodiment) electric wires 20 and a connector C1 attached to an end of the electric wire 20. The wire harness W1 electrically connects, for example, electrical devices for a vehicle. Examples of the electrical devices for a vehicle include an inverter and a wheel drive motor. Although detailed illustration is omitted, the connector C1 is electrically connected to a mating connector provided in the electrical device. The mating connector includes, for example, one or more (two in this embodiment) male terminals 200 (see FIG. 4) that are mating terminals, and a mating housing that holds the two male terminals 200. Note that the directions in each drawing do not necessarily represent the postures of the connector C1 and the wire harness W1 when in use.

[0034] (Overall configuration of connector C1) As shown in FIG. 2, the connector C1 includes a housing 30 and a plurality of female terminals 31 connected to the ends of a plurality of electric wires 20. The housing 30 holds the plurality of electric wires 20. The housing 30 includes a housing main body 110 that accommodates the plurality of female terminals 31 therein and a retainer 120 attached to the housing main body 110. Each drawing illustrates mutually orthogonal X-, Y-, and Z-axes. Each drawing illustrates a first direction X1, which is a direction in the X-axis direction along the X-axis, and a first opposite direction X2, which is the opposite direction to the first direction X1. Each drawing illustrates a second direction Y1, which is a direction in the Y-axis direction along the Y-axis, and a second opposite direction Y2, which is the opposite direction to the second direction Y1. Each drawing illustrates a third direction Z1, which is a direction in the Z-axis direction along the Z-axis, and a third opposite direction Z2, which is the opposite direction to the third direction Z1. The directions described above are directions in a state where the connector C1 is assembled to the end of the electric wire 20 unless otherwise specified.

[0035] The female terminals 31 and the electric wires 20 are inserted into the housing body 110 along the first direction X1. A retainer 120 is attached to the housing body 110 along the third direction Z1. For example, a mating connector is connected to the connector C1 along the third direction Z1. For example, the male terminals 200 (see FIG. 4) of the mating connector are inserted into the housing body 110 along the third direction Z1.

[0036] (Configuration of electric wire 20) Each electric wire 20 has a conductive core wire 21 and an insulating coating 22 that surrounds the core wire 21 and has insulating properties. The core wire 21 may be, for example, a stranded wire made of a plurality of metal wires twisted together or a single-core wire made of a single conductor. The insulating coating 22 covers, for example, the entire outer circumferential surface of the core wire 21.

[0037] An end portion of the core wire 21 in the first direction X1 is exposed from the insulating coating 22. A female terminal 31 is connected to the end portion of the core wire 21 in the first direction X1 that is exposed from the insulating coating 22. 3, the end of the electric wire 20 in the first direction X1 is accommodated inside the housing main body 110. The electric wire 20 is led out in the first opposite direction X2 from the end of the housing main body 110 in the first opposite direction X2.

[0038] (Configuration of female terminal 31) As shown in Fig. 2, the two female terminals 31 are electrically connected to the two electric wires 20, respectively. The two female terminals 31 are arranged side by side along the Y-axis direction, for example. The two female terminals 31 have, for example, the same structure as each other. Here, the following description focuses on the female terminal 31 of the two female terminals 31 that is arranged on the second direction Y1 side.

[0039] Each female terminal 31 has a wire connection portion 32 to be connected to an end of the electric wire 20, and a terminal connection portion 33 extending in the first direction X1 from an end of the wire connection portion 32 in the first direction X1. Each female terminal 31 is, for example, a single component in which the wire connection portion 32 and the terminal connection portion 33 are continuously and integrally formed. Each female terminal 31 is formed, for example, by bending or combining a metal plate. Each female terminal 31 of this embodiment is formed by bending a single metal plate. Each female terminal 31 is made, for example, of metal. For example, a copper-based or aluminum-based metal material can be used as the material of each female terminal 31.

[0040] The electric wire connection portion 32 is connected to an end portion of the core wire 21 exposed from the insulating coating 22. The electric wire connection portion 32 is formed, for example, in a flat plate shape. The electric wire connection portion 32 extends, for example, in a strip shape along the X-axis direction. The electric wire connection portion 32 is connected to the core wire 21 by, for example, crimping or ultrasonic welding. This electrically and mechanically connects the electric wire connection portion 32 and the core wire 21.

[0041] 4, the terminal connection portion 33 is a female terminal portion to be connected to a male terminal 200 of a mating connector. Here, the male terminal 200 has a columnar columnar connection portion 201. In this embodiment, the columnar connection portion 201 is formed in a cylindrical shape.

[0042] The terminal connection portion 33 has a peripheral wall 40 having a cylindrical portion 41, a peripheral wall 50 having a cylindrical portion 51 facing the cylindrical portion 41, and a cylindrical connection portion 60. The terminal connection portion 33 has, for example, a connecting portion 70, a protruding portion 80, a winding pressing portion 90, and a protective portion 100. The peripheral walls 40 and 50 face each other in the Y-axis direction.

[0043] (Configuration of peripheral wall 40 and peripheral wall 50) As shown in FIGS. 4 and 5 , the end of the peripheral wall 40 in the first opposite direction X2 is connected to the end of the electric wire connection portion 32 in the first direction X1. The peripheral wall 40 is formed in a band shape extending along the first direction X1. For example, the peripheral wall 40 extends from the end of the electric wire connection portion 32 in the first direction X1 toward the first direction X1. In other words, the electric wire connection portion 32 extends from the end of the peripheral wall 40 in the first opposite direction X2 toward the first opposite direction X2. The peripheral wall 40 is formed in, for example, a flat plate shape. The peripheral wall 40 has a predetermined width along the Z-axis direction. As shown in FIG. 4 , the peripheral wall 40 has a predetermined thickness along the Y-axis direction. The peripheral wall 40 has an inner surface facing the peripheral wall 50 and an outer surface provided on the opposite side of the inner surface in the Y-axis direction.

[0044] As shown in FIGS. 4 and 6, the peripheral wall 50 is formed in a band shape extending in the first direction X1. The peripheral wall 50 is formed, for example, in a flat plate shape. The peripheral wall 50 has a predetermined width along the Z-axis direction. As shown in FIG. 4, the peripheral wall 50 has a predetermined thickness along the Y-axis direction. The peripheral wall 50 has an inner surface facing the inner surface of the peripheral wall 40 and an outer surface provided on the opposite side of the inner surface in the Y-axis direction from the inner surface. The inner surface of the peripheral wall 50 is provided spaced apart from the inner surface of the peripheral wall 40 in the Y-axis direction, for example. The peripheral wall 50 extends, for example, parallel to the peripheral wall 40.

[0045] The cylindrical portion 41 is provided at a middle position in the X-axis direction of the peripheral wall 40. The cylindrical portion 41 is provided between the winding presser portion 90 and the protective portion 100 in the X-axis direction. The cylindrical portion 41 is formed, for example, in the shape of a half cylinder as a whole. As shown in FIG. 5, the cylindrical portion 41 extends along the Z-axis direction. The cylindrical portion 41 extends over the entire length of the peripheral wall 40 in the Z-axis direction.

[0046] As shown in FIG. 4, the cylindrical portion 51 is provided at a middle position in the X-axis direction of the peripheral wall 50. The cylindrical portion 51 is provided between the winding presser portion 90 and the protective portion 100 in the X-axis direction. The cylindrical portion 51 is formed, for example, in the shape of a half cylinder as a whole. The cylindrical portion 51 extends along the Z-axis direction. The cylindrical portion 51 extends over the entire length of the peripheral wall 50 in the Z-axis direction.

[0047] The cylindrical portion 41 and the cylindrical portion 51 are curved in a direction away from each other. The cylindrical portion 41 and the cylindrical portion 51 constitute a cylindrical connecting portion 60. The cylindrical connecting portion 60 is a connecting portion into which the columnar connecting portion 201 of the male terminal 200 is inserted and which is electrically connected to the columnar connecting portion 201. The axial direction of the cylindrical connecting portion 60 extends, for example, in a direction intersecting the direction in which the peripheral walls 40, 50 extend (here, the X-axis direction), or in this embodiment, along the Z-axis direction. The cylindrical connecting portion 60 is open at both ends in the Z-axis direction. The columnar connecting portion 201 is inserted into the cylindrical connecting portion 60 of this embodiment along the third direction Z1.

[0048] 7, the tubular connecting part 60 is formed, for example, in a cylindrical shape as a whole. The tubular connecting part 60 has, for example, a maximum inner diameter dimension that is smaller than the maximum outer diameter dimension of the columnar connecting part 201. In other words, the tubular connecting part 60 is configured so that the columnar connecting part 201 is press-fitted into it.

[0049] The cylindrical portion 41 has an inner surface 42 facing the second direction Y1 and an outer surface provided on the opposite side of the inner surface 42. The outer surface of the cylindrical portion 41 is formed into a curved surface whose cross section, obtained by cutting the cylindrical portion 41 along a plane parallel to the X-axis direction, is curved in an arc shape. The outer surface of the cylindrical portion 41 is formed to protrude in an arc shape in a cross section toward the radially outward direction of the cylindrical connecting portion 60. Similarly, the inner surface 42 of the cylindrical portion 41 is formed to recess in an arc shape in a cross section toward the radially outward direction of the cylindrical connecting portion 60.

[0050] The inner surface 42 of the tubular portion 41 is provided with a plurality of (two in this embodiment) linear contact portions 43 that protrude from the inner surface 42 radially inward of the tubular connecting portion 60. The two linear contact portions 43 are provided at positions spaced apart from each other in the circumferential direction of the tubular connecting portion 60. The two linear contact portions 43 are provided so as to partially oppose each other in, for example, the X-axis direction. As shown in FIG. 5 , each linear contact portion 43 extends along the axial direction of the tubular connecting portion 60 (here, the Z-axis direction).

[0051] 7, the curvature of the inner surface 42 having the two linear contact portions 43 is set to be smaller than the curvature of the outer peripheral surface of the columnar connecting portion 201 of the male terminal 200. This allows the two linear contact portions 43 to be in suitable contact with the outer peripheral surface of the columnar connecting portion 201. At this time, each linear contact portion 43 is in linear contact with the outer peripheral surface of the columnar connecting portion 201 along the axial direction of the tubular connecting portion 60. That is, each linear contact portion 43 is in line contact with the outer peripheral surface of the columnar connecting portion 201.

[0052] 6, the tubular portion 51 has a plurality of (two in this embodiment) divided tubular portions 52 that are divided in the axial direction of the tubular connecting portion 60, and a slit 53 that separates the two divided tubular portions 52. The two divided tubular portions 52 are spaced apart in the axial direction of the tubular connecting portion 60, with the slit 53 sandwiched between them. The two divided tubular portions 52, for example, have the same structure. The two divided tubular portions 52 are formed, for example, symmetrically with respect to an imaginary plane that includes the center of the slit 53 in the Z-axis direction and extends in both the first direction X1 and the first opposite direction X2.

[0053] As shown in Fig. 8, each divided cylindrical portion 52 has an inner surface 54 facing the second opposite direction Y2 and an outer surface provided on the opposite side of the inner surface 54. As shown in Fig. 7, the outer surface of each divided cylindrical portion 52 is formed into a curved surface whose cross section, obtained by cutting the divided cylindrical portion 52 along a plane parallel to the X-axis direction, is curved in an arc. The outer surface of the divided cylindrical portion 52 is formed so as to protrude in an arc-shaped cross section radially outward from the cylindrical connecting portion 60. Similarly, the inner surface 54 of the divided cylindrical portion 52 is formed so as to recess in an arc-shaped cross section radially outward from the cylindrical connecting portion 60.

[0054] The outer surface of each divided cylindrical portion 52 is provided with a recess 55 that is recessed from the outer surface toward the inside in the radial direction of the cylindrical connecting portion 60. As shown in Fig. 6, the planar shape of the recess 55 as viewed from the Y-axis direction is, for example, rectangular. The recess 55 is formed, for example, over the entire length of the divided cylindrical portion 52 in the Z-axis direction.

[0055] As shown in Fig. 8, the inner surface 54 of each divided cylindrical portion 52 is provided with a protrusion 56 that protrudes from the inner surface 54 toward the inside in the radial direction of the cylindrical connecting portion 60. The protrusion 56 is provided, for example, on the inner surface 54 of the divided cylindrical portion 52 in a portion where the recessed portion 55 is formed. The protrusion 56 can be formed, for example, by embossing. The protrusion 56 is formed in an embossed shape by pressing the outer surface of the divided cylindrical portion 52 with a mold.

[0056] The protrusion 56 is formed, for example, so that the cross section of the protrusion 56 cut along a plane parallel to the axial direction (here, the Z-axis direction) of the tubular connecting part 60 protrudes in an arc shape radially inward of the tubular connecting part 60. The protrusion 56 is formed so as to protrude in an arc shape cross section radially inward of the tubular connecting part 60 from the inner surface 54. The protrusion 56 extends, for example, along the circumferential direction of the tubular connecting part 60. The protrusion 56 extends, for example, along the axial direction of the tubular connecting part 60. A protruding tip 56A of the protrusion 56 contacts the outer circumferential surface of the columnar connecting part 201 of the male terminal 200. The protruding tip 56A makes point contact with the outer circumferential surface of the columnar connecting part 201, for example.

[0057] 9, each protruding tip 56A is provided at the axial center of the divided cylindrical portion 52. Each protruding tip 56A is provided at a position, in the axial direction of the cylindrical connecting portion 60, spaced a first distance L1 from the axial center A1 of the cylindrical connecting portion 60. Each protruding tip 56A is provided at the center of the divided cylindrical portion 52 in the X-axis direction.

[0058] The slit 53 is formed to penetrate the tubular portion 51 in the Y-axis direction. That is, the slit 53 penetrates the peripheral wall 40 in both the second direction Y1 and the second opposite direction Y2. The slit 53 is provided between the two divided tubular portions 52 in the axial direction of the tubular portion 51. The slit 53 is provided, for example, at the center position of the tubular connecting portion 60 in the axial direction of the tubular connecting portion 60.

[0059] As shown in FIG. 10 , the slits 53 extend along the circumferential direction of the tubular portion 51 over the entire circumferential length of the tubular portion 51. For example, the slits 53 extend in the first direction X1 from the divided tubular portion 52 to an end face of the peripheral wall 50 in the first direction X1. For example, the slits 53 extend from the divided tubular portion 52 in the first opposite direction X2. In other words, the slits 53 extend from the end face of the peripheral wall 50 in the first direction X1 along the first opposite direction X2 to a position further in the first opposite direction X2 than the divided tubular portion 52. The slits 53 open in the first direction X1. That is, the slits 53 are formed so as to be cut out from the end face of the peripheral wall 50 in the first direction X1 toward the first opposite direction X2.

[0060] The end of the peripheral wall 50 in the first direction X1 is formed in a bifurcated structure by the slit 53. That is, the end of the peripheral wall 50 in the first direction X1 has two bifurcated divided portions 57. Each divided portion 57 has a divided tubular portion 52. Each divided portion 57 is formed, for example, so as to be cantilevered relative to the end of the peripheral wall 50 in the first opposite direction X2. The two divided portions 57 have, for example, the same structure as each other. The two divided portions 57 are formed symmetrically with respect to an imaginary plane that includes the center of the slit 53 in the Z-axis direction and extends in the X-axis direction.

[0061] As shown in FIG. 8 , each of the axial ends of the tubular connecting portion 60 has, for example, a guide portion 61. Each guide portion 61 is formed so that the opening width (here, inner diameter) of the tubular connecting portion 60 increases toward the open end of the tubular connecting portion 60 in the axial direction. Each guide portion 61 is formed, for example, by the inner surface of the tubular connecting portion 60 inclining radially outward as it approaches the open end of the tubular connecting portion 60. Each guide portion 61 is formed, for example, over the entire circumferential circumference of the inner surface 42 of the tubular portion 41 and over the entire circumferential circumference of the inner surface 54 of the tubular portion 51. Each guide portion 61 has the function of smoothly guiding the columnar connecting portion 201 of the male terminal 200 into the tubular connecting portion 60 when the columnar connecting portion 201 is inserted into the tubular connecting portion 60. Since such guide portions 61 are provided at both axial ends of the tubular connecting part 60, the change in insertion resistance can be made similar regardless of whether the insertion opening of the male terminal 200 into the tubular connecting part 60 is set at either of the axial ends of the tubular connecting part 60. Therefore, restrictions on the insertion direction of the male terminal 200 relative to the axial direction of the tubular connecting part 60 can be eliminated.

[0062] Of the axial ends of the split tubular portion 52, the end that faces the other split tubular portion 52 has, for example, a guide portion 62. Each guide portion 62 is formed so that the opening width of the split tubular portion 52 increases as it approaches the other split tubular portion 52. Each guide portion 62 is formed, for example, around the entire circumferential direction of the inner surface 54 of the split tubular portion 52.

[0063] As shown in FIG. 4 , the peripheral wall 50 has, for example, a protrusion 58. The protrusion 58 is provided at a position overlapping the winding presser portion 90 in a plan view seen from the Z-axis direction. The protrusion 58 is provided, for example, at an end of the peripheral wall 50 in the first opposite direction X2. The protrusion 58 extends, for example, from an end face of the peripheral wall 50 in the first opposite direction X2 toward the first direction X1. The protrusion 58 does not extend to the cylindrical portion 51 in the X-axis direction. The protrusion 58 does not extend to the slit 53 in the X-axis direction. The protrusion 58 is provided, for example, at a middle position of the peripheral wall 50 in the Z-axis direction. The planar shape of the protrusion 58 seen from the Y-axis direction is, for example, rectangular. The protrusion 58 can be formed, for example, by embossing.

[0064] 11, recesses 59 are provided on the inner surface of peripheral wall 50 at the portions where protrusions 58 are formed. Recesses 59 are formed so as to be recessed from the inner surface of peripheral wall 50 in a direction away from peripheral wall 40.

[0065] (Configuration of connecting portion 70) As shown in FIG. 4 , the connecting portion 70 connects the peripheral wall 40 and the peripheral wall 50. The connecting portion 70 connects the end of the peripheral wall 40 in the third opposite direction Z2 to the end of the peripheral wall 50 in the third opposite direction Z2. The connecting portion 70 is formed integrally with the peripheral wall 40 and is also formed integrally with the peripheral wall 50. The connecting portion 70 is formed to extend in the second direction Y1 from the end face of the peripheral wall 40 in the third opposite direction Z2 toward the end face of the peripheral wall 50 in the third opposite direction Z2. The connecting portion 70 is formed to be folded back from the end face of the peripheral wall 40 in the third opposite direction Z2 toward the end face of the peripheral wall 50 in the third opposite direction Z2.

[0066] The connecting portion 70 is provided, for example, at an end portion of the peripheral wall 40 in the first opposite direction X2. The connecting portion 70 extends in the first direction X1 from the end portion of the peripheral wall 40 in the first opposite direction X2. The connecting portion 70 protrudes in the third opposite direction Z2 beyond the end face of the peripheral wall 40 in the third opposite direction Z2, and also protrudes in the third opposite direction Z2 beyond the end face of the peripheral wall 50 in the third opposite direction Z2.

[0067] 11 , the connecting portion 70 has an extending portion 71 extending in the third opposite direction Z2 from the end face of the peripheral wall 40 in the third opposite direction Z2, and an extending portion 72 extending in the third opposite direction Z2 from the end face of the peripheral wall 50 in the third opposite direction Z2. The connecting portion 70 has a folded portion 73 connecting the extending portion 71 and the extending portion 72.

[0068] The extending portion 71 is formed integrally and continuously with the peripheral wall 40. The folded portion 73 is formed integrally and continuously with the extending portion 71. The folded portion 73 is formed so as to be folded back from an end of the extending portion 71 toward the peripheral wall 50. The folded portion 73 is, for example, folded back in a U-shape from an end of the extending portion 71 toward the third direction Z1. The extending portion 72 extends from the folded portion 73 toward the peripheral wall 50 in the third direction Z1. The extending portion 72 is formed integrally and continuously with the folded portion 73 and is also formed integrally and continuously with the peripheral wall 50. The connecting portion 70, consisting of the extending portion 71, the folded portion 73, and the extending portion 72, forms a U-shaped folded shape that is convex in a direction away from the peripheral wall 40 and the peripheral wall 50 (here, the third opposite direction Z2). The connecting portion 70 is folded back so that the peripheral wall 50 is disposed opposite to the peripheral wall 40. In other words, in the terminal connection portion 33, the peripheral wall 50 is folded in half toward the upper side of the peripheral wall 40 by the connecting portion 70.

[0069] (Configuration of protrusion 80) As shown in FIG. 12 , the protrusion 80 is provided on an end surface of the peripheral wall 50 in the third direction Z1. The protrusion 80 has, for example, a protrusion base 81 extending in the third direction Z1 from the end surface of the peripheral wall 50 in the third direction Z1, and a protrusion 82 extending in the third direction Z1 from a part of the protrusion tip surface of the protrusion base 81. The protrusion base 81 is formed continuously and integrally with the peripheral wall 50. The protrusion base 81 extends along the first direction X1 from the end surface of the peripheral wall 50 in the first opposite direction X2. The protrusion 82 is formed continuously and integrally with the protrusion base 81. The protrusion 82 protrudes in the third direction Z1 beyond the protrusion tip surface of the protrusion base 81, in this case the end surface in the third direction Z1. The protrusion 82 is provided, for example, only at a middle position in the X-axis direction of the protrusion base 81. For example, in a plan view seen from the Y-axis direction, the protrusion 82 is formed so that the width along the X-axis direction decreases as it approaches the protrusion tip surface of the protrusion 82 from the protrusion base 81.

[0070] (Configuration of winding presser section 90) As shown in FIG. 4 , the winding pressing portion 90 is formed to limit the separation distance between the inner surface 42 of the cylindrical portion 41 and the inner surface 54 of the divided cylindrical portion 52. The winding pressing portion 90 limits the separation distance between the inner surfaces 42 and 54 from increasing. The winding pressing portion 90 limits the opening of the connecting portion 70. The winding pressing portion 90 is formed integrally with the peripheral wall 40. The winding pressing portion 90 is provided, for example, at the end of the peripheral wall 40 in the third direction Z1. The winding pressing portion 90 is formed, for example, to be folded back from the peripheral wall 40 while holding the edge of the peripheral wall 50 inward. The winding pressing portion 90 is formed, for example, to be folded back from the end face of the peripheral wall 40 in the third direction Z1 while placing the end face of the peripheral wall 50 inward in the third direction Z1. The winding pressing portion 90 is in contact with the outer surface of the peripheral wall 50.

[0071] The winding presser portion 90 is provided, for example, at the end of the peripheral wall 40 in the first opposite direction X2. The winding presser portion 90 extends in the first direction X1 from the end of the peripheral wall 40 in the first opposite direction X2. The winding presser portion 90 is provided, for example, at a position overlapping with the connecting portion 70 in a plan view seen from the Z-axis direction. For example, the winding presser portion 90 is provided on the opposite side of the connecting portion 70 in the Z-axis direction, with the peripheral wall 40 in between.

[0072] As shown in Figure 11, the winding pressure portion 90 has an extension portion 91 extending in the third direction Z1 from the end face of the peripheral wall 40 in the third direction Z1, a folded portion 92 provided at the end of the extension portion 91, and a pressure portion 93 extending from the end of the folded portion 92 toward the peripheral wall 50.

[0073] The extending portion 91 is formed integrally and continuously with the peripheral wall 40. The folded portion 92 is formed integrally and continuously with the extending portion 91. The folded portion 92 is formed so as to be folded back from an end of the extending portion 91 in the third direction Z1 toward the peripheral wall 50. The folded portion 92 is, for example, folded back in a U-shape from an end of the extending portion 91 in the third opposite direction Z2. The pressing portion 93 is formed integrally and continuously with the folded portion 92. The pressing portion 93 extends from the folded portion 92 toward the protruding portion 80 and the peripheral wall 50 in the third opposite direction Z2. The extending portion 91, the folded portion 92, and the pressing portion 93 form the winding pressing portion 90 in a U-shaped folded shape that is convex in a direction away from the peripheral wall 40 and the peripheral wall 50 (here, the third direction Z1).

[0074] The pressing portion 93 is provided so as to press the outer surface of the peripheral wall 50 from the outside. The pressing portion 93 is provided so as to press, for example, the outer surface of the protruding base 81 from the outside. The pressing portion 93 has an opposing surface 94 that faces the outer surface of the peripheral wall 50. The opposing surface 94 extends, for example, parallel to the outer surface of the peripheral wall 50. The opposing surface 94 is in surface contact with the outer surface of the peripheral wall 50, for example.

[0075] Here, the first protrusion amount P1 of the winding pressing portion 90 from the end face of the peripheral wall 40 in the third direction Z1 is equal to, for example, the second protrusion amount P2 of the connecting portion 70 from the end face of the peripheral wall 40 in the third opposite direction Z2. The first protrusion amount P1 is the longest distance along the Z axis direction from the end face of the peripheral wall 40 in the third direction Z1 to the protruding tip of the winding pressing portion 90. The second protrusion amount P2 is the longest distance along the Z axis direction from the end face of the peripheral wall 40 in the third opposite direction Z2 to the protruding tip of the connecting portion 70. The length dimension of the folded portion 92 along the Y axis direction is greater than the length dimension of the folded portion 73 along the Y axis direction by, for example, the thickness of the peripheral wall 50.

[0076] The amount by which the winding pressing portion 90 protrudes from the outer surface of the peripheral wall 50 in the Y-axis direction is equal to the amount by which the convex portion 58 protrudes from the outer surface of the peripheral wall 50 in the Y-axis direction. In other words, the convex portion 58 is formed so that the amount by which it protrudes from the outer surface of the peripheral wall 50 is equal to that of the winding pressing portion 90.

[0077] As shown in Fig. 4, the winding presser portion 90 has a through-hole 95 into which the protrusion 82 fits. The through-hole 95 penetrates the winding presser portion 90 in the thickness direction. The through-hole 95 extends, for example, from the middle position of the folded-back portion 92 to the middle position of the presser portion 93. The through-hole 95 is formed to a size that allows the protrusion 82 to fit therein.

[0078] As shown in Figure 13, the winding presser part 90 has an engagement surface 96 that defines a through hole 95 and engages with the protrusion 82. The engagement surface 96 faces, for example, the second direction Y1. The engagement surface 96 faces the inner surface of the protrusion 82 in the Y-axis direction. The engagement surface 96 extends, for example, parallel to the inner surface of the protrusion 82. The engagement surface 96 is in surface contact with the inner surface of the protrusion 82. The outer surface of the protrusion 82 is exposed from the winding presser part 90 by, for example, the through hole 95.

[0079] In the terminal connection portion 33 of this embodiment, the outer surface of the peripheral wall 50 is pressed from the outside by the pressing portion 93 of the winding pressing portion 90, and the engagement surface 96 of the winding pressing portion 90 is pressed from the outside by the protrusion 82 of the protruding portion 80. This makes it possible to stably limit the separation distance between the peripheral wall 40 and the peripheral wall 50 from becoming too large.

[0080] (Configuration of protection unit 100) 4, the protective portion 100 is provided to protect, for example, the end portion in the first direction X1 of the terminal connection portion 33. The protective portion 100 is provided at the end portion in the first direction X1 of the peripheral wall 40. The protective portion 100 is formed, for example, integrally with the peripheral wall 40. The protective portion 100 is formed so as to be folded back from the end portion in the first direction X1 of the peripheral wall 40 while locating the end portion in the first direction X1 of the peripheral wall 50 inside.

[0081] The protective portion 100 has an extending portion 101 extending from an end of the peripheral wall 40 in the first direction X1 toward the second direction Y1, and a protective wall 102 extending from an end of the extending portion 101 in the second direction Y1 toward the peripheral wall 50. The extending portion 101 is formed integrally and continuously with the peripheral wall 40. The protective wall 102 is formed integrally and continuously with the extending portion 101. The extending portion 101 and the protective wall 102 form a U-shaped folded portion that is convex in a direction away from the peripheral wall 50 (here, in the first direction X1). The protective wall 102 is provided to face the end of the peripheral wall 50 in the first direction X1 in the Y-axis direction. The protective wall 102 is provided at a distance from the outer surface of the peripheral wall 50. That is, a gap is provided between the protective wall 102 and the outer surface of the peripheral wall 50. The protective wall 102 is provided so as to be spaced apart from the outer surface of the peripheral wall 50, for example, when the columnar connecting part 201 is inserted into the cylindrical connecting part 60. The length dimension of the extending part 101 along the Y-axis direction is greater than the length dimension of the folded part 92 along the Y-axis direction.

[0082] (Configuration of housing main body 110) As shown in Fig. 3, the housing body 110 holds the female terminals 31 so that the electric wires 20 are led out in the first opposite direction X2. The housing body 110 accommodates two female terminals 31 therein. The housing body 110 is formed, for example, in a box shape as a whole. The housing body 110 is made of, for example, a synthetic resin.

[0083] The housing body 110 has an opening 111 that opens in the first opposite direction X2. The electric wires 20 connected to the female terminals 31 are drawn out to the outside of the housing body 110 through the opening 111. The housing body 110 has, for example, a peripheral wall 112 provided in the third opposite direction Z2 and a tubular portion 113 provided on the outer surface of the peripheral wall 112. The tubular portion 113 is a fitting tubular portion into which a mating housing of a mating connector (not shown) is fitted. The tubular portion 113 is provided at the end of the peripheral wall 112 in the first direction X1. The tubular portion 113 protrudes from the outer surface of the peripheral wall 112 radially outward of the housing body 110 (here, in the third opposite direction Z2). The tubular portion 113 is formed in, for example, a rectangular tubular shape.

[0084] The tubular portion 113 has an insertion hole 114. The insertion hole 114 is formed to communicate between the inside and outside of the housing body 110. The insertion hole 114 opens in the third direction Z1 and also opens in the third opposite direction Z2. The insertion hole 114, for example, penetrates the tubular portion 113 in the Z-axis direction and also penetrates the peripheral wall 112 in the Z-axis direction. The insertion hole 114 is formed to expose the female terminals 31 accommodated in the housing body 110. Here, each female terminal 31 accommodated inside the housing body 110 is arranged so that the open end of the tubular connecting portion 60 is exposed from the insertion hole 114.

[0085] (Configuration of retainer 120) The retainer 120 is attached to the tubular portion 113 of the housing main body 110. The retainer 120 has a main body portion 121 and one or more (two in this embodiment) restriction portions 122 that restrict movement of the female terminals 31 in the first opposite direction X2. The retainer 120 is, for example, a single component in which the main body portion 121 and the restriction portions 122 are continuously and integrally formed. The retainer 120 is made of, for example, a synthetic resin.

[0086] The main body 121 is formed, for example, in a frame shape as a whole. The outer peripheral edge of the main body 121 is formed, for example, in a quadrangular shape when viewed from the Z-axis direction. The main body 121 is formed, for example, so as to cover the end face of the tubular portion 113 in the third opposite direction Z2.

[0087] The main body 121 has one or more (two in this embodiment) insertion holes 123. Each insertion hole 123 penetrates the main body 121 in the Z-axis direction. Each insertion hole 123 is formed to communicate with the insertion hole 114 of the tubular portion 113. The two insertion holes 123 are formed, for example, to expose the open ends of the tubular connecting portions 60 of the two female terminals 31 housed in the housing main body 110, respectively.

[0088] As shown in FIG. 14, two restricting portions 122 are provided corresponding to the two female terminals 31, respectively. The two restricting portions 122 are provided side by side along the Y-axis direction, for example. Each restricting portion 122 is formed, for example, in a cylindrical shape that accommodates a portion of the female terminal 31. The cross-sectional shape of each restricting portion 122 is U-shaped overall. The axial direction of each restricting portion 122 extends along the X-axis direction. Each restricting portion 122 is open in the first direction X1 and also in the first opposite direction X2. Each restricting portion 122 is open in the third direction Z1.

[0089] For example, the female terminals 31 are inserted into the internal space of each restricting portion 122 along the third opposite direction Z2. For example, the end of the terminal connection portion 33 of each female terminal 31 in the first opposite direction X2 is accommodated in the internal space of each restricting portion 122. For example, two female terminals 31 are accommodated in each of the two restricting portions 122, with the female terminals 31 facing in different directions. More specifically, the restricting portion 122 of the two restricting portions 122 provided on the second direction Y1 side accommodates the female terminal 31 with the winding presser portion 90 facing the third direction Z1. The restricting portion 122 of the two restricting portions 122 provided on the second opposite direction Y2 side accommodates the female terminal 31 with the winding presser portion 90 facing the third opposite direction Z2. Specifically, the female terminal 31 provided on the second opposite direction Y2 side is accommodated in the restricting portion 122 in an orientation rotated 180° from the female terminal 31 provided on the second direction Y1 side. 3, when the retainer 120 is attached to the tubular portion 113 of the housing main body 110, each restricting portion 122 is inserted into the housing main body 110 along the third direction Z1. At this time, each restricting portion 122 is inserted into the housing main body 110 so as to accommodate the female terminal 31 therein.

[0090] 14, 15, and 16, each restricting portion 122 has a bottom wall 124, a side wall 125 protruding from a first side edge of the bottom wall 124, and a side wall 126 protruding from a second side edge of the bottom wall 124. The first side edge of the bottom wall 124 faces the bottom wall 124 of the other restricting portion 122. The second side edge of the bottom wall 124 is provided on the opposite side to the first side edge in the Y-axis direction.

[0091] 16, each of the side walls 125, 126 is formed integrally and continuously with the bottom wall 124. Each of the side walls 125, 126 protrudes from the bottom wall 124 in the third direction Z1. Each of the side walls 125, 126 is formed, for example, in a plate shape. The two side walls 125, 126 face each other, for example, in the width direction of the bottom wall 124 (here, the Y-axis direction).

[0092] The gap between the inner surface of the side wall 125 and the inner surface of the side wall 126 is set to a size that can accommodate the winding presser portion 90, for example. The shortest distance between the inner surface of the side wall 125 and the inner surface of the side wall 126 is set to be slightly larger than the longest distance of the winding presser portion 90 along the Y-axis direction. Here, the protrusion 58 of the female terminal 31 is formed so that the amount of protrusion along the Y-axis direction from the outer surface of the peripheral wall 50 is equal to the amount of protrusion along the Y-axis direction of the winding presser portion 90. Therefore, the protrusion 58 can be suitably accommodated between the inner surfaces of the side wall 125 and the side wall 126. By providing such protrusion 58, it is possible to prevent the gap between the female terminal 31 and the inner surfaces of the side walls 125 and 126 from becoming large in areas where the winding presser portion 90 is not provided. This makes it possible to suitably prevent the female terminal 31 from tilting inside each restricting portion 122.

[0093] 15, each restricting portion 122 has an engaging wall 127 that engages with the female terminal 31. The engaging wall 127 is provided, for example, so as to close a part of the opening of the restricting portion 122 in the first opposite direction X2. The engaging wall 127 is, for example, formed continuously and integrally with the bottom wall 124. The engaging wall 127 is, for example, formed continuously and integrally with the side wall 126. The engaging wall 127 extends, for example, from the end of the side wall 126 in the first opposite direction X2 toward the side wall 125 along the Y-axis direction. The engaging wall 127 does not extend to the side wall 125 in the Y-axis direction.

[0094] The engagement wall 127 is provided so as to be able to engage with an end face of the peripheral wall 50 of the female terminal 31 in the first opposite direction X2 in the X-axis direction when the retainer 120 is attached to the housing main body 110 (see FIG. 2). The engagement wall 127 restricts movement of the female terminal 31 in the first opposite direction X2. The restriction portion 122 having such an engagement wall 127 ensures the position of the female terminal 31 in the X-axis direction inside the housing main body 110 (see FIG. 2).

[0095] Next, the function of the female terminal 31 will be described. As shown in FIG. 9 , the columnar connecting portion 201 of the male terminal 200 is press-fitted into the tubular connecting portion 60. Here, if a swing is transmitted to the male terminal 200 from, for example, a mating electric wire (not shown), the swing may cause the columnar connecting portion 201 to be displaced in the direction of the arrow in the figure inside the tubular connecting portion 60. Specifically, the swing may cause the columnar connecting portion 201 to rotate in the direction of the arrow in the figure around the center A1 of the tubular connecting portion 60 in the axial direction as the center of rotation. In this case, for example, if the protruding tip 56A of the protrusion 56 provided on the tubular portion 51 is provided at the center A1 of the tubular connecting portion 60, the contact portion between the protruding tip 56A of the protrusion 56 and the columnar connecting portion 201 becomes the center of rotation for the displacement of the columnar connecting portion 201. In this case, the contact pressure (contact pressure) of the protrusion 56 on the columnar connecting portion 201 does not act as a force to suppress the displacement of the columnar connecting portion 201.

[0096] In contrast, in the female terminal 31 of this embodiment, the tubular portion 51 is bifurcated to form two separate tubular portions 52, and a protrusion 56 is formed on the inner surface 54 of each of the two separate tubular portions 52. The protruding tip 56A of each protrusion 56 is located at a position spaced a first distance L1 from the center A1 of the tubular connecting portion 60. This allows the protruding tip 56A of each protrusion 56 to contact the outer circumferential surface of the columnar connecting portion 201 at a position spaced from the center A1, which serves as the center of rotation for displacement of the columnar connecting portion 201. Therefore, the contact pressure of each protrusion 56 on the columnar connecting portion 201 can act as a force to suppress displacement of the columnar connecting portion 201. More specifically, when the contact pressure of each protrusion 56 on the columnar connecting portion 201 is F1 and the coefficient of friction is μ, each protrusion 56 can suppress displacement of the columnar connecting portion 201 with a force of F1 × μ × L1. Therefore, the two protrusions 56 can suppress the displacement of the columnar connecting portion 201 with a force of 2×F1×μ×L1.

[0097] Even when the contact portion between the protruding tip 56A on the third direction Z1 side and the columnar connecting part 201 serves as the rotation center for displacement of the columnar connecting part 201, the displacement of the columnar connecting part 201 can be suppressed by the same force as when the center A1 serves as the rotation center. More specifically, the protruding tip 56A on the third opposite direction Z2 side of the two protruding tips 56A is located at a position spaced a distance of 2×L1 from the other protruding tip 56A that serves as the rotation center. Therefore, the protrusion 56 on the third opposite direction Z2 side can suppress the displacement of the columnar connecting part 201 with a force of 2×F1×μ×L1.

[0098] Next, the effects of this embodiment will be described. (1) The female terminal 31 includes a peripheral wall 50 having a cylindrical portion 51, a peripheral wall 40 having a cylindrical portion 41 provided opposite the cylindrical portion 51, and a cylindrical connecting portion 60 configured by the cylindrical portion 51 and the cylindrical portion 41. The cylindrical connecting portion 60 is a first connecting portion into which the columnar connecting portion 201 of the male terminal 200 is inserted and which is electrically connected to the columnar connecting portion 201. The cylindrical portion 51 has a plurality of divided cylindrical portions 52 divided in the axial direction of the cylindrical connecting portion 60. Each of the plurality of divided cylindrical portions 52 has an inner surface 54 facing the cylindrical portion 41 and a protrusion 56 protruding from the inner surface 54 radially inward of the cylindrical connecting portion 60 in an arc-shaped cross section.

[0099] According to this configuration, when the columnar connecting portion 201 of the male terminal 200 is press-fitted into the tubular connecting portion 60, the protrusions 56 provided on the inner surface 54 of each of the plurality of divided tubular portions 52 are pressed against the outer peripheral surface of the columnar connecting portion 201. Therefore, in the tubular connecting portion 60, the plurality of protrusions 56 are pressed against the outer peripheral surface of the columnar connecting portion 201 at a plurality of locations spaced apart in the axial direction. As a result, even when a swing is transmitted to the male terminal 200, the displacement of the male terminal 200 due to the swing can be suitably prevented by the contact of the plurality of protrusions 56 with the columnar connecting portion 201. In other words, compared to when only one protrusion 56 is provided on the inner surface of the tubular portion 51, the contact pressure of the plurality of protrusions 56 can more effectively suppress the displacement of the columnar connecting portion 201 inside the tubular connecting portion 60.

[0100] (2) When the columnar connecting part 201 is press-fitted into the tubular connecting part 60, the two protrusions 56 come into contact with the outer peripheral surface of the columnar connecting part 201. Therefore, the combined contact resistance of the two protrusions 56 can be reduced compared to when only one protrusion 56 is provided on the inner surface of the tubular part 51. This can improve thermal performance.

[0101] (3) The slit 53 separating the two split tubular portions 52 is provided at the center A1 of the tubular connecting portion 60 in the axial direction. In this case, when the columnar connecting portion 201 of the male terminal 200 inserted into the tubular connecting portion 60 is displaced, the columnar connecting portion 201 rotates around the center A1 of the tubular connecting portion 60 in the axial direction. If a contact portion between the protrusion 56 and the columnar connecting portion 201 is provided at such a rotation center, the contact pressure of the protrusion 56 on the columnar connecting portion 201 cannot act as a force to suppress the displacement of the columnar connecting portion 201. In contrast, in the female terminal 31 of this embodiment, the protrusion 56 is provided at a position different from the slit 53 provided at the center A1 of the tubular connecting portion 60 in the axial direction. Therefore, the protrusion 56 can come into contact with the columnar connecting portion 201 at a position different from the rotation center of the displacement of the columnar connecting portion 201. This allows the contact pressure of the protrusions 56 on the columnar connecting part 201 to act suitably as a force that suppresses displacement of the columnar connecting part 201. As a result, the contact pressure of the multiple protrusions 56 can suitably suppress displacement of the columnar connecting part 201 inside the tubular connecting part 60.

[0102] (4) The slits 53 extend from the end face of the peripheral wall 50 in the first direction X1 along the first opposite direction X2. The slits 53 are open in the first direction X1. According to this configuration, the end of the peripheral wall 50 in the first direction X1, including the tubular portion 51, is formed into a bifurcated structure by the slits 53. Therefore, the two divided tubular portions 52 are formed into a structure independent of each other. This allows the two divided tubular portions 52 to independently ensure the contact pressure of the male terminal 200 against the columnar connecting portion 201.

[0103] (5) The two divided cylindrical portions 52 are formed symmetrically with respect to the plane. Therefore, the two divided cylindrical portions 52 provided on both sides of the slit 53 can ensure equal contact pressure. This ensures well-balanced contact pressure on both sides of the slit 53.

[0104] (6) The protruding tip 56A of each protrusion 56 is provided at a position spaced a first distance L1 from the center A1 of the tubular connecting part 60 in the axial direction. Therefore, the protruding tip 56A of the protrusion 56 can be brought into contact with the columnar connecting part 201 at a position spaced a first distance L1 from the rotation center of the displacement of the columnar connecting part 201. This allows the contact pressure of the protrusions 56 to suitably act as a force that suppresses the displacement of the columnar connecting part 201. As a result, the contact pressure of the multiple protrusions 56 can suitably suppress the displacement of the columnar connecting part 201 inside the tubular connecting part 60.

[0105] (7) The tubular connecting portion 60 has a plurality of linear contact portions 43 that protrude radially inward from the inner surface 42 of the tubular connecting portion 60 and are provided at positions spaced apart from one another in the circumferential direction of the tubular connecting portion 60. The linear contact portions 43 extend along the axial direction of the tubular connecting portion 60. With this configuration, when the columnar connecting portion 201 of the male terminal 200 is press-fitted into the tubular connecting portion 60, the linear contact portions 43 provided on the inner surface 42 constituting the tubular connecting portion 60 are pressed into line contact with the outer circumferential surface of the columnar connecting portion 201 at a plurality of positions spaced apart in the circumferential direction. As a result, even if a rocking motion is transmitted to the male terminal 200, the contact of the plurality of linear contact portions 43 with the columnar connecting portion 201 can prevent displacement of the male terminal 200 due to the rocking motion.

[0106] (8) When the columnar connecting portion 201 of the male terminal 200 is press-fitted into the tubular connecting portion 60, the retaining portion 90 prevents the distance between the inner surface 42 and the inner surface 54 of the tubular connecting portion 60 from increasing. This restriction by the retaining portion 90 allows the protrusion 56 and the linear contact portion 43 to be in good contact with the outer circumferential surface of the columnar connecting portion 201. As a result, the press-fit state between the tubular connecting portion 60 and the columnar connecting portion 201 can be stably maintained. Furthermore, the retaining portion 90 is integrally formed with the peripheral wall 40. Therefore, the press-fit state between the tubular connecting portion 60 and the columnar connecting portion 201 can be maintained with a simpler structure than when a separate part such as a coil spring is used. In other words, the structure of the female terminal 31 can be simplified compared to when a separate part such as a coil spring is used.

[0107] (9) The peripheral wall 40 and the peripheral wall 50 are connected by the connecting portion 70 formed integrally with both the peripheral wall 40 and the peripheral wall 50. This allows the peripheral wall 40 and the peripheral wall 50 to be formed integrally through the connecting portion 70. Therefore, the female terminal 31 can be formed by bending a single metal plate. As a result, the structure of the female terminal 31 can be simplified.

[0108] (10) The protective wall 102 of the protective portion 100 formed integrally with the peripheral wall 40 is provided facing and spaced apart from the end of the peripheral wall 50 in the first direction X1. Therefore, even if, for example, an excessively large external force is unintentionally applied to the end of the peripheral wall 50 in the first direction X1 and the peripheral wall 50 is deformed so as to be separated from the peripheral wall 40 due to the external force, the protective wall 102 can effectively prevent the deformation.

[0109] (11) The winding pressing portion 90 is provided at the end of the peripheral wall 40 in the first opposite direction X2. The tubular connecting portion 60 is provided at an intermediate position between the winding pressing portion 90 and the protective portion 100 in the first direction X1. With this configuration, the winding pressing portion 90 is provided at a position different from that of the tubular connecting portion 60 in the first direction X1. Such a winding pressing portion 90 can prevent the separation distance between the peripheral wall 40 and the peripheral wall 50 from increasing. Consequently, the winding pressing portion 90 can prevent the separation distance between the inner surface 42 that constitutes the tubular connecting portion 60 and the inner surface 54 that constitutes the tubular connecting portion 60 from increasing.

[0110] (12) The wire connecting portion 32, which is electrically connected to the wire 20, is formed integrally with the peripheral wall 40. This reduces the number of parts of the female terminal 31, and simplifies the structure of the female terminal 31.

[0111] (Other embodiments) The above embodiment can be modified as follows: The above embodiment and the following modifications can be combined with each other to the extent that no technical contradiction occurs.

[0112] The structure of the female terminal 31 in the above embodiment can be modified as needed. The protrusions 58 of the female terminals 31 may be omitted. In this case, the recesses 59 of the female terminals 31 are also omitted.

[0113] In the above embodiment, the protective portion 100 is formed integrally with the peripheral wall 40, but this is not limiting. For example, the protective portion 100 may be formed integrally with the peripheral wall 50. In this case, the protective portion 100 is formed, for example, so as to be folded back from the end of the peripheral wall 50 in the first direction X1 toward the end of the peripheral wall 40 in the first direction X1.

[0114] The protective portion 100 of the female terminal 31 may be omitted. The guide portion 62 in the divided cylindrical portion 52 of the female terminal 31 may be omitted. The guide portion 61 in the cylindrical connecting portion 60 of the female terminal 31 may be omitted.

[0115] In the female terminal 31 of the above embodiment, each protrusion 56 is formed over the entire axial length of the split tubular portion 52, but this is not limitative. For example, each protrusion 56 may be provided only at a middle position in the axial direction of the split tubular portion 52.

[0116] Three or more linear contact portions 43 may be provided on the inner surface 42 of the cylindrical portion 41 of the female terminal 31 . The inner surface 42 of the female terminal 31 may be provided with a plurality of linear contact portions 43 and a protrusion 56 having an arc-shaped cross section.

[0117] In the female terminal 31 of the above embodiment, the inner surface 42 of the tubular portion 41 is provided with a plurality of linear contact portions 43, and the tubular portion 51 has a plurality of divided tubular portions 52 and protrusions 56 provided on the inner surface 54 thereof, but this is not limited to this. For example, the tubular portion 41 may have a plurality of divided tubular portions 52 and protrusions 56 provided on the inner surface 54 thereof.

[0118] The structure of the slits 53 in the above embodiment can be modified as appropriate. The structure of the slits 53 is not particularly limited as long as they can separate the adjacent divided tubular portions 52. For example, the slits 53 do not have to extend from the divided tubular portions 52 to the end face of the peripheral wall 50 in the first direction X1.

[0119] In the cylindrical portion 51 of the above embodiment, the two divided cylindrical portions 52 are formed symmetrically with respect to a plane, but this is not limited to this. For example, the protrusions 56 of the two divided cylindrical portions 52 may be set to different protrusion heights. For example, the distances between the protruding tips 56A of the two protrusions 56 and the center A1 may be set to different distances.

[0120] The number of divided cylindrical portions 52 included in the cylindrical portion 51 of the above embodiment is not particularly limited. For example, the cylindrical portion 51 may have three or more divided cylindrical portions 52. In this case, the cylindrical portion 51 has two or more slits 53. It is preferable that the number of divided cylindrical portions 52 included in the cylindrical portion 51 is an even number. By setting the number of divided cylindrical portions 52 to an even number, the protruding tips 56A of all of the protrusions 56 can be suitably provided at positions different from the center A1 of the cylindrical connecting portion 60 in the axial direction.

[0121] The position of the winding presser portion 90 may be changed as appropriate in the female terminal 31. For example, the winding presser portion 90 may be provided at a position different from the connecting portion 70 in the X-axis direction. In the above embodiment, the contact pressure on the columnar connecting portion 201 is ensured by restricting the separation distance between the inner surface 42 and the inner surface 54 with the winding presser 90, but this is not limited to this. For example, the contact pressure on the columnar connecting portion 201 may be ensured by using a biasing member such as a coil spring that is separate from the peripheral walls 40, 50.

[0122] In the above embodiment, the electric wire connecting portion 32 is formed integrally with the peripheral wall 40, but this is not limiting. For example, the electric wire connecting portion 32 may be formed integrally with the peripheral wall 50. In the female terminal 31 of the above embodiment, of the wire connecting portion 32 and the terminal connecting portion 33, only the terminal connecting portion 33 is formed in a structure in which the peripheral wall 50 is folded in half onto the peripheral wall 40. However, this is not limiting, and for example, both the wire connecting portion 32 and the terminal connecting portion 33 may be formed in a structure in which two plates are folded over each other.

[0123] As long as the housing body 110 in the above embodiment has a structure capable of accommodating the female terminals 31, other structures may be modified as appropriate. The structure of the retainer 120 in the above embodiment can be modified as appropriate. For example, the restricting portion 122 may be omitted.

[0124] In the above embodiment, the columnar connecting portion 201 of the male terminal 200 is embodied in a cylindrical shape, but is not limited to this. For example, the columnar connecting portion 201 may be formed in a columnar shape other than a cylindrical shape. For example, the cross-sectional shape of the columnar connecting portion 201 may be formed in an elliptical or polygonal shape.

[0125] The embodiments disclosed herein should be considered to be illustrative in all respects and not restrictive. The scope of the present invention is defined by the claims, not by the above meaning, and is intended to include all modifications within the meaning and scope of the claims. [Explanation of symbols]

[0126] 20...electric wire, 21...core wire, 22...insulating coating, 30...housing, 31...female terminal, 32...electric wire connection portion (second connection portion), 33...terminal connection portion, 40...circumferential wall (second peripheral wall), 41...cylindrical portion (second cylindrical portion), 42...inner surface (second inner surface), 43...linear contact portion, 50...circumferential wall (first peripheral wall), 51...cylindrical portion (first cylindrical portion), 52...divided cylindrical portion, 53...slit, 54...inner surface (first inner surface), 55...recessed portion, 56...protrusion, 56A...protrusion Protruding tip, 57...dividing portion, 58...convex portion, 59...recessed portion, 60...cylindrical connecting portion (first connecting portion), 61, 62...guiding portion, 70...connecting portion, 71, 72...extending portion, 73...folded portion, 80...projecting portion, 81...projecting base portion, 82...projection, 90...winding pressing portion, 91...extending portion, 92...folded portion, 93...pressing portion, 94...opposing surface, 95...through hole, 96...engaging surface, 100...protective portion, 101...extending portion, 102...protective wall, 110...housing Main unit , 111...opening, 112...circumferential wall, 113...tubular portion, 114...insertion hole, 120...retainer, 121...main body portion, 122...regulating portion, 123...insertion hole, 124...bottom wall, 125, 126...side wall, 127...engagement wall, 200...male terminal, 201...columnar connecting portion, W1...wire harness, C1...connector, A1...center, L1...first distance, P1...first protrusion amount, P2...second protrusion amount, X1...first direction, X2...first opposite direction, Y1...second direction, Y2...second opposite direction, Z1...third direction, Z2...third opposite direction.

Claims

1. a first peripheral wall having a first cylindrical portion; a second peripheral wall having a second cylindrical portion facing the first cylindrical portion; a female terminal including a cylindrical connecting portion formed by the first cylindrical portion and the second cylindrical portion, the cylindrical connecting portion is a first connecting portion into which the columnar connecting portion of the male terminal is inserted and which is electrically connected to the columnar connecting portion, the first cylindrical portion has a plurality of divided cylindrical portions that are divided in the axial direction of the cylindrical connecting portion, each of the plurality of divided cylindrical portions has a first inner surface facing the second cylindrical portion and a protrusion that protrudes from the first inner surface toward a radially inward direction of the cylindrical connecting portion and has an arc-shaped cross section; the second cylindrical portion has a second inner surface facing the first inner surface, The first peripheral wall is formed in a band shape extending along a first direction, The second peripheral wall is formed in a band shape extending along the first direction, the first inner surface is provided opposite to the second cylindrical portion in a second direction intersecting the first direction, the female terminal includes a protective portion provided at an end of the second peripheral wall in the first direction, the protective portion is integrally formed with the second peripheral wall, the protective portion is formed to be folded back from the end of the second peripheral wall in the first direction while arranging the end of the first peripheral wall in the first direction therein, the protective portion has a protective wall provided opposite to an end of the first peripheral wall in the first direction, The protective wall is provided spaced apart from the end of the first peripheral wall in the first direction.

2. the plurality of divided cylindrical portions are two divided cylindrical portions, the first cylindrical portion has a slit that separates the two divided cylindrical portions, The female terminal according to claim 1 , wherein the slit is provided at a central position of the tubular connecting portion in the axial direction.

3. the axial direction of the cylindrical connecting portion extends along a third direction intersecting both the first direction and the second direction, the slit extends from an end surface of the first peripheral wall in the first direction along a first opposite direction that is a direction opposite to the first direction, the slit penetrates the first peripheral wall in both the second direction and a second opposite direction that is a direction opposite to the second direction, The female terminal according to claim 2 , wherein the slit is open in the first direction.

4. 4. The female terminal according to claim 3, wherein the two split tubular portions are formed symmetrically with respect to an imaginary plane that includes the center of the slit in the third direction and extends in both the first direction and the first opposite direction.

5. 5. The female terminal according to claim 4, wherein the protruding tip of the protrusion of each of the two split tubular portions is located at a position in the axial direction that is spaced a first distance from the center of the tubular connecting portion in the axial direction.

6. the second cylindrical portion has the second inner surface and a plurality of linear contact portions protruding from the second inner surface toward a radially inward direction of the cylindrical connecting portion, the plurality of linear contact portions are provided at positions spaced apart from one another in a circumferential direction of the cylindrical connecting portion, The female terminal according to claim 1 , wherein each of the plurality of linear contact portions extends along the axial direction.

7. The female terminal further includes a winding presser portion that limits a distance between the first inner surface and the second inner surface, The winding pressure portion is formed integrally with the second peripheral wall, The female terminal according to claim 6 , wherein the retainer portion is folded back from the second peripheral wall while holding an edge of the first peripheral wall inward, and is in contact with an outer surface of the first peripheral wall.

8. The female terminal further includes a connecting portion that connects the first peripheral wall and the second peripheral wall, The female terminal according to claim 7 , wherein the connecting portion is formed integrally with the first peripheral wall and is formed integrally with the second peripheral wall.

9. the winding pressing portion is provided at an end portion of the second peripheral wall in a first opposite direction, which is opposite to the first direction, The female terminal according to claim 7 , wherein the tubular connecting portion is provided at an intermediate position between the winding pressing portion and the protection portion in the first direction.

10. The female terminal further includes a wire connection portion provided at an end portion of the second peripheral wall in a first opposite direction, which is opposite to the first direction, the electric wire connection portion is a second connection portion electrically connected to an electric wire, the electric wire connection portion is formed integrally with the second peripheral wall, The female terminal according to claim 1 , wherein the wire connection portion extends in the first opposite direction from an end of the second peripheral wall in the first opposite direction.

11. The female terminal according to any one of claims 1 to 10, a housing that accommodates the female terminal therein.

Citation Information

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