Connector and connector pair
By independently controlling the side position of the reinforced accessories and preventing solder climbing, the position control problem in existing connectors is solved, and a high-strength, miniaturization and reliability connector design is achieved.
Patent Information
- Application Number
- CN202510719371.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2020-10-26
- Filing Date
- 2021-09-18
- Publication Date
- 2025-07-11
AI Technical Summary
In the existing connectors, the position control of the first and second side surfaces of the reinforcement accessories in the width direction of the connector is difficult to accurately and difficult to maintain flush, resulting in insufficient reliability and strength of the connector.
A connector is designed in which the second side portion of the reinforcement fitting is separated from the first side portion and its position is controlled by independent bending processing, the position accuracy is ensured by the design of the auxiliary sheet and the bend, and the barrier portion is formed by the nickel bottom plating and the laser beam to prevent solder from climbing.
High strength and miniaturization of reinforced accessories in the connector, while ensuring dimensional accuracy and reliability, preventing solder or flux from climbing, and improving the overall performance of the connector.
Smart Images

Figure CN120300515A_ABST
Abstract
Description
[0001] This application is a divisional application of an application filed by "Moles Limited" on September 18, 2021, with application number 202111109815.X and invention title "Connector and Connector Pair". Technical Field
[0002] The present disclosure relates to a connector and a connector pair. Background Art
[0003] Connectors such as board-to-board connectors have been used to electrically connect a pair of parallel circuit boards to each other. These connectors are attached to respective opposing surfaces of a pair of circuit boards and are fitted together to achieve electrical conduction. In addition, a technique has been proposed for attaching a reinforcing fitting at both ends for transmitting a current of power between a connector and a mating connector as a power terminal (see, for example, Patent Document 1).
[0004] Figure 11 FIG. is a perspective view showing a conventional connector.
[0005] In the figure, reference numeral 811 denotes a base of a plug connector as a connector mounted on the surface of a first circuit board (not shown), which has a pair of convex portions 812 into which a socket connector mounted on the surface of a second circuit board (not shown) is inserted. The convex portions 812 are rib portions extending in the longitudinal direction of the base 811, and a plurality of terminals 861 are arranged side by side at a predetermined pitch and are supported.
[0006] In addition, reinforcing fittings 851 are attached to both ends in the longitudinal direction of the base 811. The reinforcing fittings 851 protect both ends in the longitudinal direction of the base 811 and also serve as power terminals for transmitting a current of power to a reinforcing fitting of a socket connector not shown in the figure.
[0007] In addition, the reinforcing fitting 851 includes: an upper surface portion 852 covering a part of the upper surface of the base 811; an end surface portion 853 having an upper end connected to the upper surface portion 852 via a bent portion and extending in a direction orthogonal to the upper surface portion 852 to cover a part of the end surface of the base 811; and a first side surface portion 854 and a second side surface portion 855 connected to the upper surface portion 852 and extending in a direction orthogonal to the upper surface portion 852 to cover a part of the left and right side surfaces of the base 811. The lower end of the first side surface portion 854 is connected to a power connection pad formed on the surface of a first circuit board not shown in the figure by means such as welding. In addition, when the plug connector is fitted with the socket connector, the second side surface portion 855 contacts and conducts with the reinforcing fitting of the socket connector.
[0008] Prior Art Documents
[0009] Patent Documents
[0010]
Patent Document 1
[0011] However, with the aforementioned conventional connector, it is difficult to correctly control the positions of the outer surfaces of the first side face portion 854 and the second side face portion 855 of the reinforcement fitting 851 in the connector width direction.
[0012] The reinforcement fitting 851 is formed by subjecting a metal plate to stamping to form a generally flat plate-like member in which the upper face portion 852, the end face portion 853, the first side face portion 854, and the second side face portion 855 are integrally connected, and then bending the generally flat plate-like member so that the end face portion 853, the first side face portion 854, and the second side face portion 855 are orthogonal to the upper face portion 852.
[0013] At this time, for example, in order to form the outer surfaces of the first side face portion 854 and the second side face portion 855 flush, the first side face portion 854 and the second side face portion 855 at the left and right sides of the upper face portion 852 approach each other. Therefore, the bending process is simultaneously performed by the same die member. However, these members are independent of each other, and thus, the bending degrees are not strictly the same. As a result, it is difficult to make the outer surfaces of the first side face portion 854 and the second side face portion 855 strictly flush. Further, for example, in order to deviate the position of the first side face portion 854 from the position of the second side face portion 855 in the connector width direction, it is necessary to perform processing with different bending degrees on the first side face portion 854 and the second side face portion 855. However, the first side face portion 854 and the second side face portion 855 are close to each other, and thus, it is difficult to perform highly accurate bending processing on the first side face portion 854 and the second side face portion 855 independently.
[0014] In particular, in recent years, since the connector has become smaller and lower-profile, each part of the reinforcement fitting 851 has also become finer, and it is extremely difficult to precisely control the positions of the outer surfaces of the first side face portion 854 and the second side face portion 855 in the connector width direction by performing highly accurate bending processing on the fine first side face portion 854 and the second side face portion 855 that are close to each other on the left and right sides of the upper face portion 852.
[0015] Here, in order to solve the problems of the conventional connector, an object of the present invention is to provide a highly reliable connector and a connector pair provided with a reinforcement fitting having correct dimensional accuracy, exhibiting high strength, achieving a high shielding effect, and having a small and low-profile.
[0016] To this end, according to the present application, a connector is provided, wherein the connector includes a connector body, terminals attached to the connector body, and a reinforcing fitting attached to the connector body. The connector body includes fitting guide portions formed at both ends in the longitudinal direction, and the fitting guide portions are fitted with fitting guide portions formed at both ends in the longitudinal direction of a mating connector body of a mating connector. The reinforcing fitting includes: an upper surface portion covering at least a part of the upper surface of the fitting guide portion; an end surface portion covering at least a part of the end surface of the fitting guide portion; a first side surface portion covering at least a part of each side surface of the fitting guide portion; and a second side surface portion covering at least a part of each side surface of the fitting guide portion. The upper end of the end surface portion is connected to the upper surface portion via a rearward bending portion, the upper end of the first side surface portion is connected to the upper surface portion via a forward bending portion, the second side surface portion is separated from the upper surface portion, and the second side surface portion is located closer to the end surface of the fitting guide portion than the first side surface portion, and the rear end of the second side surface portion is connected to the end surface portion via a lateral bending portion.
[0017] According to an embodiment, the upper surface portion has a U-shaped recess formed at the inner end in the longitudinal direction of the connector body.
[0018] According to an embodiment, the connector body includes a groove portion formed between the fitting guide portions formed at both ends in the longitudinal direction of the connector body. When viewed from the width direction of the connector body, the first side surface portion is located at a position overlapping at least a part of the groove portion, and when viewed from the width direction of the connector body, the second side surface portion is located at a position overlapping the fitting guide portion.
[0019] According to an embodiment, a tail connected to a connection pad on a substrate is connected to the lower end of the first side surface portion.
[0020] According to an embodiment, a barrier portion with a nickel-exposed surface is formed on the side surface of the first side surface portion.
[0021] The present application also provides a connector pair, wherein the connector pair includes: the connector as described above, and a mating connector fitted with the connector.
[0022] Therefore, the connector includes a connector body, terminals attached to the connector body, and a reinforcing fitting attached to the connector body. Among them, the connector body includes fitting guide portions formed at both ends in the longitudinal direction, and the fitting guide portions are fitted with mating fitting guide portions formed at both ends in the longitudinal direction of a mating connector body of a mating connector. The reinforcing fitting includes: an upper surface portion covering at least a part of the upper surface of the fitting guide portion; an end surface portion covering at least a part of the end surface of the fitting guide portion; a first side surface portion covering at least a part of each side surface of the fitting guide portion; and a second side surface portion covering at least a part of each side surface of the fitting guide portion, and the end surface portion is connected to the upper surface portion, the first side surface portion is connected to the upper surface portion, and the second side surface portion is located closer to the end surface of the fitting guide portion than the first side surface portion and is connected to the end surface portion.
[0023] In another connector, the upper end of the end surface portion is connected to the upper surface portion via a rearward bending portion, the upper end of the first side surface portion is connected to the upper surface portion via a forward bending portion, and the rear end of the second side surface portion is connected to the end surface portion via a sideward bending portion.
[0024] In addition, in another connector, the upper surface portion includes front connecting pieces connected to the left and right sides at its front end, the upper end of each first side surface portion is connected to the end of each front connecting piece via the forward bending portion and extends in the vertical direction, the end surface portion includes side connecting pieces connected to the left and right ends, and the rear end of each second side surface portion is connected to the end of each side connecting piece via the forward bending portion and extends in the vertical direction.
[0025] In addition, in another connector, the upper surface portion includes insertion recesses formed at both side edges in its width direction, each second side surface portion includes an upper end bending portion connected to its upper end and an auxiliary piece connected to the end of the upper end bending portion and extending downward or obliquely downward, and the auxiliary piece is inserted into the insertion recess.
[0026] In addition, in another connector, the second side surface portion includes an upper end bending portion connected to its upper end and an auxiliary piece connected to the end of the upper end bending portion and extending downward or obliquely downward, and at least a part of the auxiliary piece is inserted into a recess formed on the fitting guide portion.
[0027] In addition, in another connector, the tail of the connection pad connected to the substrate is connected to the lower end of the first side surface portion, the lower protruding portion of the connection pad connected to the substrate is connected to the lower end of the end surface portion, and an obstacle portion for preventing solder or flux from climbing is formed on the side surfaces of the first side surface portion and the end surface portion.
[0028] In addition, in another connector, a gold plating is provided on a nickel base plating on the first side surface portion and the side surface of the end surface portion, and the barrier portion is a portion where nickel is exposed on the surface.
[0029] A connector pair includes a connector according to the present disclosure and a mating connector that fits into the connector.
[0030] According to the present disclosure, a connector may be provided with a reinforcing fitting that is small and low-profile, yet exhibits high strength and correct dimensional accuracy to improve reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 is a perspective view of a first connector according to the present embodiment.
[0032] Figure 2a and Figure 2b are two-sided views showing a first connector according to the present embodiment, where Figure 2a is a plan view, and Figure 2b is a side view.
[0033] Figure 3 is an exploded view of a first connector according to the present embodiment.
[0034] Figure 4 is an exploded view of a second connector according to the present embodiment.
[0035] Figure 5 is a perspective view showing a state before a first connector and a second connector according to the present embodiment are mated.
[0036] Figures 6a to 6d are four-sided views of a first reinforcing fitting according to the present embodiment, where Figure 6a is a front view, Figure 6b is a side view, Figure 6c is a top view, and Figure 6d is a bottom view.
[0037] Figure 7a and Figure 7b are perspective views showing the outside of a first reinforcing fitting according to the present embodiment, where Figure 7a is a first perspective view and Figure 7b is a second perspective view.
[0038] Figure 8a and Figure 8b are perspective views showing the inside of a first reinforcing fitting according to the present embodiment, where Figure 8a is a first perspective view and Figure 8b is a second perspective view.
[0039] Figure 9a and Figure 9bis a cross-sectional view of a first reinforcing fitting attached to a first base according to this embodiment, where Figure 9a is a cross-sectional view taken along Figure 2a arrow A-A of Figure 9b and Figure 2a is a cross-sectional view taken along arrow B-B of
[0040] Figure 10a and Figure 10b are perspective views showing a first protruding end of a first base for attaching a first reinforcing fitting according to this embodiment, where Figure 10a is an overall view and Figure 10b is Figure 10a an enlarged view of part C in
[0041] Figure 11 is a perspective view showing a conventional connector.
[0042] 1 First connector
[0043] 11 First base
[0044] 11a, 111a mating surface
[0045] 11b, 111b mounting surface
[0046] 12 First convex part
[0047] 13, 112a groove part
[0048] 21 First protruding end
[0049] 21a Upper surface
[0050] 21b, 112 recess
[0051] 21c End face
[0052] 21d Side face
[0053] 22a End face recess
[0054] 22b First side face recess
[0055] 22b1, 22c1 Front side inner wall
[0056] 22c Second side face recess
[0057] 51 First reinforcing fitting
[0058] 52, 152, 852 Upper surface part
[0059] 52a Front connecting piece
[0060] 52a1 Front bending part
[0061] 52b Rearward bending part
[0062] 52c Insertion recess
[0063] 53, 153, 853 End face part
[0064] 53a Lower protrusion
[0065] 53b Lateral connecting piece
[0066] 53b1 Lateral bending part
[0067] 54, 854 First side face part
[0068] 54a, 62, 162 Tail part
[0069] 54a1 Lower end bending part
[0070] 54b, 55c, 55f Joining protrusion
[0071] 55, 855 Second side face part
[0072] 55a Upper side part
[0073] 55b Lower side part
[0074] 55d Upper end bending part
[0075] 55d1 Top face
[0076] 55e Auxiliary piece
[0077] 61 First terminal
[0078] 64 Connecting part
[0079] 65, 165a First contact part
[0080] 66, 166 Second contact part
[0081] 101 Second connector
[0082] 111 Second base
[0083] 113 Second protrusion
[0084] 113a Island end recess
[0085] 114 Side wall part
[0086] 115 Second terminal receiving cavity
[0087] 115a Second terminal receiving inner cavity
[0088] 115b Second terminal receiving outer cavity
[0089] 121 Second protruding end
[0090] 122 Fitting recess
[0091] 151 Second reinforcing fitting
[0092] 152a Lateral connection part
[0093] 152b Front connection part
[0094] 155 Side surface part
[0095] 155a Contact piece
[0096] 158 Bottom covering part
[0097] 158a Island end covering part
[0098] 161 Second terminal
[0099] 163 Held part
[0100] 164 Lower connection part
[0101] 165 Inner connection part
[0102] 167 Upper connection part
[0103] 811 Base
[0104] 812 Protrusion
[0105] 851 Reinforcing fitting
[0106] 861 Terminal Detailed implementation mode
[0107] The embodiments will be described in detail below with reference to the drawings.
[0108] Figure 1 is a perspective view of the first connector according to this embodiment; Figure 2a and Figure 2b are two - side views showing the first connector according to this embodiment; Figure 3 is an exploded view of the first connector according to this embodiment; Figure 4 is an exploded view of the second connector according to this embodiment; Figure 5 is a perspective view showing the state before the first connector and the second connector according to this embodiment are mated. Note that in Figure 2a and Figure 2b among them, Figure 2a is a plan view, and Figure 2b is a side view.
[0109] In the figure, the first connector 1 is a connector of the first embodiment and is one of a pair of board-to-board connectors that form a connector pair. The first connector 1 is a surface-mounted connector mounted on the surface of a first board (not shown), the first board being a board as a mounting element, and the first connector 1 is fitted with a second connector 101, which is a mating connector of the connector pair. Further, the second connector 101 is the other of the pair of board-to-board connectors, is a surface-mounted connector mounted on the surface of a second board (not shown), the second board being a board as a mounting element, and the second connector 101 is fitted with the first connector 1.
[0110] The first connector 1 and the second connector 101 of the present embodiment are preferably used to electrically connect the first board and the second board and can also be used to electrically connect other components. For example, the first board and the second board are each a printed circuit board, a flexible flat cable (FFC), a flexible circuit board (FPC), etc. used in an electronic device or the like, but can be any type of board.
[0111] Note that in the present embodiment, expressions indicating directions such as up, down, left, right, front, and back for explaining the configuration and operation of each part of the first connector 1 and the second connector 101 are relative and not absolute, and are appropriate when each part of the first connector 1 and the second connector 101 is in the posture shown in the figure. However, when their postures change, these directions should be interpreted as changing according to the change in posture.
[0112] The first connector 1 is a so-called plug connector type and includes a first base 11 integrally formed of an insulating material such as synthetic resin as a connector body. As shown in the figure, the first base 11 has a substantially rectangular parallelepiped shape with a substantially rectangular thick plate shape. An elongated groove portion 13 extending in the longitudinal direction (X-axis direction) of the first base 11 and a first convex portion 12 as an elongated convex portion defining the outside of the groove portion 13 and extending in the longitudinal direction of the first base 11 are integrally formed on the side (i.e., the fitting surface 11a side (Z-axis positive direction side)) of the first base 11 into which the second connector 101 is inserted. The first convex portion 12 is formed along both sides of the groove portion 13 and along both sides of the first base 11. For example, the first connector 1 has dimensions of approximately 10.0 mm in length, approximately 1.1 mm in width, and approximately 0.5 mm in thickness. However, these dimensions can be appropriately changed.
[0113] First terminals 61 as terminals are attached to the respective first convex portions 12. A plurality (e.g., 25) of first terminals 61 are formed at a predetermined pitch (e.g., approximately 0.35 mm) on both the left and right sides. The pitch and number of the first terminals 61 can be appropriately changed. In the groove portion 13, the side mounted on the first board (i.e., the mounting surface 11b side (Z-axis negative direction side)) is closed by a bottom plate.
[0114] The first terminal 61 can be held while being press-fitted into the first base 11. However, here, the first terminal 61 will be described as an element integrally formed with the first base 11 by overmolding (insert molding). In other words, the first base 11 is formed by setting the first terminal 61 inside and then filling the cavity of the mold with resin. Therefore, it should be noted that although the first terminal 61 is not separated from the first base 11, for the sake of convenience, in Figure 3 the figures, the first terminal 61 is shown as being separated from the first base 11.
[0115] The first terminal 61 is an element integrally formed by performing processes such as stamping and bending on a conductive metal plate, and includes a first contact portion 65, a connecting portion 64 connected to the upper end of the first contact portion 65, a second contact portion 66 connected to the outer end of the connecting portion 64, and a tail portion 62 connected to the lower end of the first contact portion 65. The tail portion 62 extends toward the outside of the first base 11 and is connected to a connection pad by welding or the like, and the connection pad is connected to a conductive trace of the first substrate. The conductive trace is typically a signal line. In addition, the surfaces of the first contact portion 65, the connecting portion 64, and the second contact portion 66 are exposed on the respective side surfaces and the fitting surface 11a of the first convex portion 12.
[0116] First protruding end portions 21 as fitting guide portions are respectively arranged at both ends in the longitudinal direction of the first base 11. The first protruding end portions 21 are thick elements extending in the width direction (Y-axis direction) of the first base 11, both ends of the first protruding end portions 21 are connected to both ends in the longitudinal direction of the first convex portion 12, and the upper surface of the first protruding end portions 21 has a substantially rectangular shape. In a state where the first connector 1 and the second connector 101 are fitted together, the first protruding end portions 21 serve as insertion convex portions inserted into fitting recesses 122 of second protruding end portions 121 included in the second connector 101. A first reinforcing fitting 51 is attached to the first protruding end portions 21 as a reinforcing fitting.
[0117] The first reinforcing fitting 51 is an element integrally formed by performing processes such as stamping and bending on a metal plate, and includes: an upper surface portion 52 covering at least a part of the upper surface 21a of the first protruding end portion 21; an end surface portion 53 covering at least a part of an end surface 21c which is a surface of the first protruding end portion 21 on the outside in the longitudinal direction of the first base 11; and a first side surface portion 54 and a second side surface portion 55 which, as side surface portions, cover at least a part of both side surfaces 21d which are two surfaces of the first protruding end portion 21 on the outside in the width direction (Y-axis direction) of the first base 11. It should be noted that a tail portion 54a extending toward the outside in the width direction of the first base 11 is connected to the lower end of the first side surface portion 54.
[0118] The upper face part 52 is a flat plate extending parallel to the fitting face 11a and the mounting face 11b. In addition, the end face part 53 is a flat plate connecting to the outer edge in the longitudinal direction of the first base 11 at the upper face part 52 and extending toward the mounting face 11b (negative Z-axis direction). In addition, the first side face part 54 is a flat plate connecting to the outer edge in the width direction of the first base 11 at the upper face part 52 and extending toward the mounting face 11b. Note that a second side face part 55, which is a flat plate extending generally parallel to the first side face part 54 and toward the mounting face 11b, is connected to the outer edge in the width direction of the first base 11 at the end face part 53.
[0119] In addition, an end face recess 22a is formed on the end face 21c of the first protruding end part 21, and a first side face recess 22b and a second side face recess 22c are formed on the side face 21d of the first protruding end part 21. In addition, when the first reinforcing fitting 51 is attached to the first protruding end part 21, the first reinforcing fitting 51 descends from Figure 3 the position shown relative to the first base 11, the end face part 53 is inserted and housed in the end face recess 22a, and the first side face part 54 and the second side face part 55 are inserted and housed in the first side face recess 22b and the second side face recess 22c. Note that a recess 21b is formed on the upper surface 21a of the first protruding end part 21, and at least the lower end of an auxiliary piece 55e, which will be described later and is provided by the second side face part 55, is inserted and housed in the recess 21b.
[0120] The tail part 54a of the first side face part 54 is connected to a connection pad by welding or the like, and the connection pad is connected to the conductive trace of the first substrate. The conductive trace is typically a power line or a ground line. Similarly, the lower end of the end face part 53 is connected to the connection pad of the first substrate by welding or the like.
[0121] The second connector 101 is a so-called socket connector type and includes a second base 111 integrally formed of an insulating material such as synthetic resin as a mating connector body. As shown in the figure, the second base 111 has a generally rectangular parallelepiped shape of a thick plate with a generally rectangular recess 112 for the first base 11 of the first connector 1 to be inserted formed on the side where the first connector 1 is inserted (i.e., the fitting face 111a side (negative Z-axis side)), and the periphery of the recess 112 is surrounded. For example, the second connector 101 has dimensions of approximately 11.0 mm in length (dimension in the X-axis direction), approximately 1.9 mm in width (dimension in the Y-axis direction), and approximately 0.6 mm in thickness (dimension in the Z-axis direction). However, these dimensions can be appropriately changed.
[0122] The second convex portion 113 that is inserted into the groove portion 13 of the first connector 1 as a middle island is integrally formed within the recess portion 112, and side wall portions 114 that extend parallel to the second convex portion 113 are integrally formed with the second base 111 on both sides of the second convex portion 113 (the positive Y-axis side and the negative Y-axis side). The second convex portion 113 and the side wall portions 114 project upward (in the negative Z-axis direction) from the bottom plate that defines the bottom surface of the recess portion 112 and extend in the length direction (X-axis direction) of the second base 111. As a result, groove portions 112a are formed as elongated recesses that extend in the length direction of the second base 111 on both sides of the second convex portion 113 as a part of the recess portion 112.
[0123] Second terminal receiving inner cavities 115a having a groove-like shape are formed on the side surfaces on both sides of the second convex portion 113. Second terminal receiving outer cavities 115b having a groove-like shape are formed on the inner side surfaces of the side wall portions 114. The second terminal receiving inner cavities 115a and the second terminal receiving outer cavities 115b are connected to each other and integrated at the bottom surface of the groove portion 112a, so that the second terminal receiving inner cavities 115a and the second terminal receiving outer cavities 115b are described as second terminal receiving cavities 115 when described together. The second terminal receiving cavities 115 are formed to penetrate the bottom plate in the plate thickness direction (Z-axis direction).
[0124] In the first embodiment, the second terminal receiving cavities 115 are formed on both sides in the width direction (Y-axis direction) of the second base 111 and are arranged in the length direction of the second base 111. Specifically, only the same number of terminals are formed on both sides of the second convex portion 113 at the same pitch as the pitch of the first terminals 61 of the first connector 1. The pitch and the number of the second terminal receiving cavities 115 can be appropriately changed. In addition, only the same number of second terminals 161 that are received in the respective second terminal receiving cavities 115 as terminals and are attached to the second base 111 are also arranged on both sides of the second convex portion 113 at the same pitch.
[0125] The second terminal 161 is an element integrally formed by performing processing such as stamping and bending on a conductive metal plate, and includes a held portion 163, a tail portion 162 connected to the lower end of the held portion 163, an upper side connection portion 167 connected to the upper end of the held portion 163, a second contact portion 166 connected to the lower end of the upper side connection portion 167 and opposite to the held portion 163, a lower side connection portion 164 connected to the lower end of the second contact portion 166, and an inner side connection portion 165 connected to the end on the side opposite to the second contact portion 166 of the lower side connection portion 164.
[0126] The held portion 163 is a portion that is embedded and held in the second terminal housing outer cavity 115b and extends in the fitting direction (Z-axis direction) (i.e., in the thickness direction of the second base 111). The tail portion 162 is bent and connected to the held portion 163, extends in the left-right direction (Y-axis direction) (i.e., outward in the width direction of the second base 111), and is connected to the connection pad by welding or the like. The connection pad is connected to the conductive trace of the second substrate. The conductive trace is typically a signal line. The upper connection portion 167 is a portion bent to protrude upward (negative Z-axis direction).
[0127] The second contact portion 166 extending downward (positive Z-axis direction) is connected to the lower end of the upper connection portion 167 on the opposite side of the held portion 163. The lower connection portion 164 is a portion having a generally U-shaped side surface shape and is connected to the lower end of the second contact portion 166. The first contact portion 165a bent approximately 180 degrees is connected to the upper end of the inner connection portion 165 and protrudes upward and toward the second contact portion 166.
[0128] The second terminal 161 is inserted into the second terminal housing cavity 115 from the mounting surface 111b side which is the lower surface (positive Z-axis direction surface) of the second base 111, and the held portion 163 is clamped from both sides by the side walls of the second terminal housing outer cavity 115b formed on the inner side surfaces of the side wall portions 114. Thus, the second terminal 161 is fixed to the second base 111. In this state (i.e., the state where the second terminal 161 is loaded in the second base 111), the first contact portion 165a and the second contact portion 166 are located on the left and right sides of the groove portion 112a and face each other. The second terminal 161 is an element integrally formed by processing a metal plate, and thus has a certain degree of elasticity. It can be clearly seen from the shape that the interval between the first contact portion 165a and the second contact portion 166 facing each other can change elastically. That is, when the first terminal 61 included in the first connector 1 is inserted between the first contact portion 165a and the second contact portion 166, the interval between the first contact portion 165a and the second contact portion 166 elastically elongates.
[0129] In addition, the second protruding end portions 121 are arranged as fitting guiding portions for fitting at both ends in the length direction of the second base 111. The fitting recess portions 122 are formed as a part of the recess portions 112 in each of the second protruding end portions 121. The fitting recess portions 122 are generally rectangular recesses and are connected to both ends in the length direction of each groove portion 112a. In addition, in the state where the first connector 1 and the second connector 101 are fitted, the first protruding end portion 21 provided on the first connector 1 is inserted into the fitting recess portion 122.
[0130] In addition, the second protruding end portion 121 has side walls on three sides defining the fitting recess 122 that are substantially U-shaped when viewed in the fitting direction. In addition, the recessed island end recess 113a is formed at the end portion in the longitudinal direction of the second convex portion 113.
[0131] The second reinforcing fitting 151 is attached to the second protruding end portion 121 as a reinforcing fitting attached to the second base 111. The second reinforcing fitting 151 is an element integrally formed by performing processing such as stamping and bending on a metal plate, and includes: an upper surface portion 152 covering at least a part of the upper surface of the end wall portion of the second protruding end portion 121; an end surface portion 153 covering at least a part of the end surface of the surface of the second protruding end portion 121 on the outer side in the longitudinal direction of the second base 111; side surface portions 155 covering at least a part of both side surfaces on the outer sides in the width direction (Y-axis direction) of the second protruding end portion 121 of the second base 111; and a bottom surface covering portion 158 covering at least a part of the bottom surface of the fitting recess 122. Note that the upper surface portion 152 includes a side connection portion 152a and a front connection portion 152b. The side surface portions 155 are connected to the ends of the side connection portion 152a, and the bottom surface covering portion 158 is connected to the end of the front connection portion 152b. In addition, a contact piece 155a extending obliquely downward toward the bottom surface of the fitting recess 122 is connected to the upper end of the side surface portion 155, and an island end covering portion 158a is connected to the end of the bottom surface covering portion 158. The end of the island end covering portion 158a is inserted into the island end recess 113a. In addition, the vicinity of the lower end of the contact piece 155a is a portion that elastically contacts and conducts the second side surface portion 55 of the first reinforcing fitting 51 when the first connector 1 and the second connector 101 are fitted.
[0132] The lower end of the side surface portion 155 is connected to a connection pad by welding or the like, and the connection pad is connected to a conductive trace of the second substrate. The conductive trace is typically a power supply line or a ground line. Similarly, the lower end of the end surface portion 153 is connected to a connection pad of the second substrate by welding or the like.
[0133] Next, the configuration of the aforementioned first reinforcing fitting 51 will be described in detail.
[0134] Figures 6a to 6d is a four-sided view of the first reinforcing fitting according to the present embodiment; Figure 7a and Figure 7b is a perspective view showing the outside of the first reinforcing fitting according to the present embodiment; Figure 8a and Figure 8b is a perspective view showing the inside of the first reinforcing fitting according to the present embodiment; Figure 9a and Figure 9b is a cross-sectional view of the first reinforcing fitting attached to the first base according to the present embodiment; and Figure 10a and Figure 10bis a perspective view showing a first protruding end portion of a first base for attaching a first reinforcing fitting according to the present embodiment. Note that in Figures 6a to 6d and Figure 6a is a front view, Figure 6b is a side view, Figure 6c is a top view, and Figure 6d is a bottom view. In Figure 7a and Figure 7b and Figure 8a and Figure 8b and Figure 7a and Figure 8a is a first perspective view and Figure 7b and Figure 8b is a second perspective view. In Figure 9a and Figure 9b and Figure 9a is a cross-sectional view taken along arrow A-A of Figure 2a and Figure 9b is a cross-sectional view taken along arrow B-B of Figure 2a and Figure 10a and Figure 10b and Figure 10a is an overall view and Figure 10b is Figure 10a an enlarged view of portion C in
[0135] In the present embodiment, the upper surface portion 52 of the first reinforcing fitting 51 includes front connecting pieces 52a on each side of the front end (which is the inner end in the longitudinal direction of the first base 11). As Figure 6c shown, the front connecting piece 52a is a strip-shaped plate having a substantially crank shape when viewed from the up-and-down direction (the fitting direction), and as Figure 7b shown, at its end is a front bending portion 52a1 that bends approximately 90 degrees when viewed from the longitudinal direction of the first base 11 to face downward. When the front connecting piece 52a is not formed, the upper ends of the front bending portion 52a1 can be connected to the left and right sides near the front end of the upper surface portion 52 of the first reinforcing fitting 51.
[0136] In addition, the end (i.e., the tip) of the front bending portion 52a1 is connected to the upper end of the first side surface portion 54 and extends toward the mounting surface 11b (i.e., in the downward direction). Note that as Figure 6aAs shown, the end (i.e., the lower end) of the first side surface portion 54 has a lower end bending portion 54a1, which bends approximately 90 degrees to face the outside in the width direction of the first base 11 when viewed in the length direction of the first base 11. In addition, a tail portion 54 extending to the outside in the width direction of the first base 11 is connected to the end of the lower end bending portion 54a1. The tail portion 54a is connected to a connection pad by welding or the like, and the connection pad is connected to a conductive trace of the first substrate. In addition, in the first side surface portion 54, an engaging protrusion 54b is formed at the inner end (i.e., the front end) in the length direction of the first base 11. When the first side surface portion 54 is inserted into the first side surface concave portion 22b of the first base 11, the engaging protrusion 54b engages with the front inner side wall 22b1 of the first side surface concave portion 22b, as Figure 10a shown, whereby the first side surface portion 54 is stably held within the first side surface concave portion 22b.
[0137] In addition, the aforementioned upper surface portion 52 is connected at the rear end (which is the outer end in the length direction of the first base 11) and includes a rear bending portion 52b, which bends approximately 90 degrees to face downward when viewed in the width direction of the first base 11, as Figure 6b shown. In addition, the upper end of the end surface portion 53 is connected to the end (i.e., the lower end) of the rear bending portion 52b.
[0138] The end surface portion 53 includes a lower protruding portion 53a that is connected to its lower end and protrudes downward at the center in the width direction (Y-axis direction). The lower end of the lower protruding portion 53a is connected to a connection pad of the first substrate by welding or the like. The end surface portion 53 includes side connection pieces 53b connected to the left and right side ends. The side connection pieces 53b are strip-shaped plates extending to the outside in the width direction and have side bending portions 53b1 formed at their ends, and the side bending portions 53b1 bend approximately 90 degrees to face forward, as Figure 6c and Figure 6d shown.
[0139] In addition, the end (i.e., the front end) of the side bending portion 53b1 is connected to the outer end (i.e., the rear end) in the length direction of the first base 11 at the second side surface portion 55. The second side surface portion 55 includes a flat upper side portion 55a and a lower side portion 55b that extend in the vertical direction and the front-rear direction (i.e., in the X-Z direction). As Figure 6b shown, the upper side portion 55a is formed wider than the lower side portion 55b. Specifically, the upper side portion 55a has a larger dimension in the front-rear direction. It should be noted that the rear ends of the upper side portion 55a and the lower side portion 55b are in the same position with respect to the length direction of the first base 11, and thus, the front end of the upper side portion 55a is located closer to the inner side (i.e., in the front) in the length direction of the first base 11 than the front end of the lower side portion 55b.
[0140] The outer surface of the upper side portion 55a is a portion near the lower end of the contact piece 155a of the second reinforcement fitting 151 that contacts the second connector 101. As Figure 6b shown, the upper side portion 55a is formed with a dimension in the front-rear direction that is larger than the first side surface portion 54 and also larger than the lower side portion 55b. Therefore, even when there is a slight misalignment when the first connector 1 and the second connector 101 are engaged, the contact near the lower end of the contact piece 155a of the second reinforcement fitting 151 can be reliably maintained. In addition, the engaging projection 55c is formed at the front end of the lower side portion 55b. When the second side surface portion 55 is inserted into the second side surface recess 22c of the first base 11, the engaging projection 55c engages the front inner side wall 22c1 of the second side surface recess 22c, as Figure 10a shown, whereby the second side surface portion 55 is stably held within the second side surface recess 22c.
[0141] In addition, as Figure 9a shown, the upper end of the upper side portion 55a is connected to the upper end bent portion 55d, and the upper end bent portion 55d bends the end to face downward or obliquely downward, and the upper end of the auxiliary piece 55e that extends downward or obliquely downward is connected to the end of the upper end bent portion 55d. Note that in Figures 7a to 9b etc., for the convenience of graphical illustration, only an example of the auxiliary piece 55e that extends only generally vertically downward rather than obliquely downward is drawn. In addition, the engaging projection 55f is formed on the front end of the auxiliary piece 55e. When at least a part of the auxiliary piece 55e including at least the lower end is inserted into the recess 21b of the first base 11, the engaging projection 55f engages the front inner side wall of the recess 21b, whereby the auxiliary piece 55e is stably held within the recess 21b.
[0142] Note that the recesses are formed by inserting into the recess 52c so as to be recessed inward in the width direction on both side edges in the width direction of the upper surface portion 52. In addition, at least a part of the vicinity of the upper end of the second side surface portion 55, specifically, the vicinity of the end of the upper end bent portion 55d and the auxiliary piece 55e are inserted into the insertion recess 52c, and the part including at least the lower end of the auxiliary piece 55e is inserted and held within the recess 21b. Note that the vicinity of the end of the upper end bent portion 55d and the auxiliary piece 55e do not contact the insertion recess 52c, and therefore, the second side surface portion 55 and the upper surface portion 52 do not contact.
[0143] Thus, by inserting at least a part of the vicinity of the upper end of the second side surface portion 55 into the insertion recess 52c, the position of the top surface 55d1 of the upper end bent portion 55d (which is the upper end surface of the second side surface portion 55) can be precisely controlled. Specifically, the position of the top surface 55d1 in the thickness direction (Z-axis direction) of the first base 11 can be controlled to be not higher than the position of the upper surface portion 52. In other words, as Figure 9aAs shown, the position of the top surface 55d1 can be controlled to be the same as or lower than the position of the upper surface portion 52 in the thickness direction of the first base 11. If the position of the top surface 55d1 is higher than the position of the upper surface portion 52 in the thickness direction of the first base 11, then, during the fitting operation between the first connector 1 and the second connector 101, when the first connector 1 slides back and forth or left and right (in the X-axis or Y-axis direction) relative to the second connector 101, the top surface 55d1 and its vicinity may catch the second reinforcement fitting 151 of the second connector 101, etc., and the second side surface portion 55 may turn upward. However, in the present embodiment, the vicinity of the end of the upper end bent portion 55d and the auxiliary piece 55e are inserted into the insertion recess 52c, and thus, the position of the top surface 55d1 can be controlled not to be higher than the position of the upper surface portion 52. Further, if at least the portion including the lower end of the auxiliary piece 55e is inserted and held in the recess 21b of the first base 11, then the position of the top surface 55d1 can be more reliably controlled not to be higher than the position of the upper surface portion 52.
[0144] Further, although the present embodiment describes the first reinforcement fitting 51 formed with the insertion recess 52c, the upper end bent portion 55d, and the auxiliary piece 55e, the first reinforcement fitting 51 without these members may also be employed. Specifically, the recess portion of the insertion recess 52c has a plate piece as the upper surface, and the shape of the second side surface portion 55 does not have the upper end bent portion 55d and the auxiliary piece 55e. Even in this case, the upper end of the second side surface portion 55 can still be controlled not to be higher than the position of the upper surface portion 52.
[0145] Further, in the first reinforcement fitting 51 of the present embodiment, the end surface portion 53 is connected to the upper surface portion 52 via the rear bent portion 52b, the first side surface portion 54 is connected to the upper surface portion 52 via the front connecting piece 52a including the front bent portion 52a1, and the second side surface portion 55 is connected to the end surface portion 53 via the side connecting piece 53b including the side bent portion 53b1. Generally, in manufacturing fittings such as the first reinforcement fitting 51, a metal plate is stamped to form a generally flat plate-like element in which each part is integrally connected, and then the generally flat plate-like element is bent to obtain the final three-dimensional shape. In the case of the aforementioned first reinforcement fitting 51, the metal plate is stamped to form a generally flat plate-like element in which the portions corresponding to each part including the upper surface portion 52, the end surface portion 53, the first side surface portion 54, and the second side surface portion 55 are integrally connected, and then the generally flat plate-like element is bent to form bent portions such as the rear bent portion 52b, the front bent portion 52a1, and the side bent portion 53b1. Thus, the final product can have a shape as Figures 6a to 8bThe first reinforcing fitting 51 of the product having the three-dimensional shape shown, etc. Thus, it can then be seen that each of the first side surface portion 54 and the second side surface portion 55 covering both sides in the width direction of the first base 11 is a portion obtained by independent bending, although these portions are close to each other in the first reinforcing fitting 51 of the final product.
[0146] Therefore, in the first reinforcing fitting 51 of the present embodiment, the positions of the first side surface portion 54 and the second side surface portion 55 can be independently and precisely controlled with respect to the width direction (Y-axis direction) of the first base 11. For example, the outer surfaces of the first side surface portion 54 and the second side surface portion 55 can be correctly flush with respect to the width direction of the first base 11. In addition, considering that the connection strength between the first reinforcing fitting 51 and the first substrate is more stable when the distance between the left and right tails 54a is wide, with respect to the width direction of the first base 11, the position of the first side surface portion 54 can be more on the outer side than the position of the second side surface portion 55. Further, with respect to the width direction of the first base 11, the position of the outer surface of the second side surface portion 55 can be strictly adjusted according to the position near the lower end of the contact piece 155a of the second reinforcing fitting 151 of the second connector 101 with which it contacts.
[0147] In addition, in the present embodiment, when the first reinforcing fitting 51 is connected to the first substrate by welding, the climbing of the solder or flux does not cause the solder or flux to adhere to the second side surface portion 55 near the lower end of the contact piece 155a that contacts the second reinforcing fitting 151. In the first reinforcing fitting 51, welding is performed at the lower end of the tail 54a connected to the lower end of the first side surface portion 54 and the lower end of the lower protruding portion 53a of the end surface portion 53. However, even though the first side surface portion 54 and the second side surface portion 55 on both sides in the width direction of the first base 11 are close to each other, the solder or flux does not effectively reach the second side surface portion 55 because it has to travel a long path from the tail 54a, through the first side surface portion 54, the front connecting piece 52a, the upper surface portion 52, the end surface portion 53, the side connecting piece 53b, etc. to reach the second side surface portion 55. In addition, the solder or flux applied to the lower end of the lower protruding portion 53a of the end surface portion 53 also needs to travel a long path (this long path travels along the end surface portion 53 through a distance in the width direction of about 1 / 2 of the width of the first connector 1 (this distance is much larger than the pitch of the first terminals 61)) and further through the side connecting piece 53b, and thus does not reach the second side surface portion 55.
[0148] Note that, if it is necessary to more reliably prevent the attachment of solder or flux, a barrier portion for preventing the climbing of solder or flux may be formed near the lower end of the first side surface portion 54 and near the upper end of the lower protruding portion 53a. For example, when the first reinforcing fitting 51 is a nickel (Ni) plating provided as an undercoat on the surface of the metal plate and a gold (Au) plating is further applied to the side surfaces such as the front side and the rear side of the first side surface portion 54 including the tail portion 54a and the lower end bent portion 54a1 and to the side surfaces such as the front side and the rear side of the end surface portion 53 including the lower protruding portion 53a, a laser beam is irradiated to melt the gold and expose the nickel on the surface in the portion irradiated with the laser beam to form the barrier portion. If the barrier portion is formed as an elongated strip extending in the X-axis direction and the Y-axis direction on the side surfaces such as the front side and the rear side near the lower end of the first side surface portion 54 and on the side surfaces such as the front side and the rear side near the lower end or the upper end of the lower protruding portion 53a of the end surface portion 53, the climbing of solder or flux over the barrier portion can be prevented. Therefore, the attachment of solder or flux to the second side surface portion 55 can be more reliably prevented.
[0149] Subsequently, the operation of fitting together the first connector 1 and the second connector 101 having the above-described configuration will be described.
[0150] Here, the tail portion 62 of the first terminal 61 is connected to a connection pad connected to a conductive trace (not shown) of the first substrate by welding or the like, the tail portion 54a of the first side surface portion 54 of the first reinforcing fitting 51 is connected to a connection pad connected to a conductive trace of the first substrate by welding or the like, and the lower end of the lower protruding portion 53a of the end surface portion 53 is connected to a connection pad of the first substrate by welding or the like, whereby the first connector 1 is surface-mounted on the first substrate. Note that the conductive trace connected to the connection pad to which the tail portion 62 of the first terminal 61 is connected is a signal line, and the conductive trace connected to the connection pad to which the tail portion 54a of the first side surface portion 54 of the first reinforcing fitting 51 is connected is a power line. In addition, the connection pad to which the lower end of the lower protruding portion 53a of the end surface portion 53 is connected may or may not be connected to the power line.
[0151] Similarly, the tail portion 162 of the second terminal 161 is connected to a connection pad connected to a conductive trace (not shown) of the second substrate by welding or the like, the lower end of the side surface portion 155 of the second reinforcing fitting 151 is connected to a connection pad connected to a conductive trace of the second substrate by welding or the like, and the lower end of the end surface portion 153 is connected to a connection pad of the second substrate by welding or the like, whereby the second connector 101 is surface-mounted on the second substrate. Note that the conductive trace connected to the connection pad to which the tail portion 162 of the second terminal 161 is connected is a signal line, and the conductive trace connected to the connection pad to which the side surface portion 155 of the second reinforcing fitting 151 is connected is a power line. In addition, the connection pad to which the lower end of the end surface portion 153 is connected may or may not be connected to the power line.
[0152] First, as shown in Figure 5 , the operator positions the mating surface 11a of the first base 11 of the first connector 1 and the mating surface 111a of the second base 111 of the second connector 101 to face each other, and aligns the position of the first convex portion 12 of the first connector 1 with the position of the corresponding groove portion 112a of the second connector 101. When the position of the first protruding end portion 21 of the first connector 1 aligns with the position of the corresponding mating recess 122 of the second connector 101, the positioning of the first connector 1 and the second connector 101 is completed.
[0153] In this state, when the first connector 1 and / or the second connector 101 moves in the direction approaching the opposite side (i.e., in the mating direction), the first convex portion 12 and the first protruding end portion 21 of the first connector 1 are inserted into the groove portion 112a and the mating recess 122 of the second connector 101. As a result, when the mating between the first connector 1 and the second connector 101 is completed, the first terminal 61 and the second terminal 161 enter a conductive state.
[0154] Incidentally, the first connector 1 and the second connector 101 are respectively mounted on a first substrate and a second substrate having a large area. Therefore, the operator cannot see the mating surface 11a of the first connector 1 and the mating surface 111a of the second connector 101 and must perform the mating operation by feel. As a result, since correct alignment cannot be performed by feel, the positions of the first connector 1 and the second connector 101 may not be aligned.
[0155] In this state, if the operator moves the first connector 1 and / or the second connector 101 in the mating direction, one first protruding end portion 21 of the first connector 1 contacts one second protruding end portion 121 of the second connector 101, and the first protruding end portion 21 receives a large pressure in the mating direction (i.e., from top to bottom in Figure 1 ).
[0156] However, in the present embodiment, a first reinforcing fitting 51 is attached to the first protruding end portion 21, most of the upper surface 21a of the first protruding end portion 21 is covered by the upper surface portion 52 of the first reinforcing fitting 51, most of the end surface portion 21c of the first protruding end portion 21 is covered by the end surface portion 53 of the first reinforcing fitting 51, and most of the side surface 21d of the first protruding end portion 21 is covered by the first side surface portion 54 and the second side surface portion 55 of the first reinforcing fitting 51. Therefore, even when receiving a large pressure from the second protruding end portion 121, the pressure is transmitted from the first reinforcing fitting 51 to the first substrate. Thus, almost no pressure is transmitted to the first protruding end portion 21. Therefore, the first protruding end portion 21 is not damaged or broken and can exhibit high strength.
[0157] Accordingly, in the present embodiment, the first connector 1 has a first base 11, a first terminal 61 attached to the first base 11, and a first reinforcing fitting 51 attached to the first base 11. Further, the first base 11 includes first protruding ends 21 formed at both ends in the longitudinal direction, and the first protruding ends 21 are fitted with second protruding ends 121 formed at both ends in the longitudinal direction of a second base 111 of the second connector 101. The first reinforcing fitting 51 includes: an upper surface portion 52 covering at least a part of the upper surface 21a of the first protruding end 21; an end surface portion 53 covering at least a part of the end surface 21c of the first protruding end 21; a first side surface portion 54 covering at least a part of each side surface 21d of the first protruding end 21; and a second side surface portion 55 covering at least a part of each side surface 21d of the first protruding end 21. The end surface portion 53 is connected to the upper surface portion 52, the first side surface portion 54 is connected to the upper surface portion 52, and the second side surface portion 55 is located closer to the end surface 21c of the first protruding end 21 than the first side surface portion 54 and is connected to the end surface portion 53.
[0158] As a result, the first connector 1 can be provided with the first reinforcing fitting 51 having a small size and low profile while still exhibiting high strength and correct dimensional accuracy, and thereby the reliability is improved.
[0159] Further, the upper end of the end surface portion 53 is connected to the upper surface portion 52 via a rearward bending portion 52b, the upper end of the first side surface portion 54 is connected to the upper surface portion 52 via a forward bending portion 52a1, and the rear end of the second side surface portion 55 is connected to the end surface portion 53 via a lateral bending portion 53b1. Accordingly, bending processing can be independently applied to the first side surface portion 54 and the second side surface portion 55, and thereby, in the width direction of the first base 11, the positions of the first side surface portion 54 and the second side surface portion 55 can be independently and precisely controlled.
[0160] Further, the upper surface portion 52 includes front connecting pieces 52a connected to both the left and right sides at its front end, the upper end of each first side surface portion 54 is connected to the end of each corresponding front connecting piece 52a via a forward bending portion 52a1 and extends in the vertical direction, the end surface portion 53 includes side connecting pieces 53b connected to both the left and right ends, and the rear end of each second side surface portion 55 is connected to the end of each corresponding side connecting piece 53b via a forward bending portion 53b1 and extends in the vertical direction. As a result, the first side surface portion 54 and the second side surface portion 55 can be obtained by independent processing, and thereby the positions of the first side surface portion 54 and the second side surface portion 55 can be easily controlled.
[0161] In addition, the upper portion 52 includes insertion recesses 52c formed at both side edges in its width direction. Each second side surface portion 55 includes an upper end bent portion 55d connected to its upper end and an auxiliary piece 55e connected to the end of the upper end bent portion 55d and extending downward or obliquely downward. The auxiliary piece 55e is inserted into the insertion recess 52c. Thus, the auxiliary piece 55e is inserted into the insertion recess 52c, and accordingly, the position of the top surface 55d1 of the upper end bent portion 55d (which is the upper end surface of the second side surface portion 55) can be controlled not to be higher than the position of the upper portion 52.
[0162] In addition, a recess 21b is formed in the upper surface 21a of the first protruding end portion 21, and at least the lower end of the auxiliary piece 55e is inserted into the recess 21b. Therefore, the state where the auxiliary piece 55e is inserted into the insertion recess 52c is stably maintained.
[0163] In addition, the tail portion 54a connected to the connection pad on the substrate is also connected to the lower end of the first side surface portion 54, the lower protruding portion 53a of the connection pad connected to the substrate is connected to the lower end of the end surface portion 53, and a barrier portion for preventing solder or flux from climbing is formed on the side surfaces of the first side surface portion 54 and the end surface portion 53. Therefore, solder or flux can be reliably prevented from adhering to the second side surface portion 55.
[0164] In addition, a gold plating layer is provided on the nickel bottom plating layer on the side surfaces of the first side surface portion 54 and the end surface portion 53, and the barrier portion is a portion where nickel is exposed on the surface. Therefore, the barrier portion for preventing solder or flux from climbing can be easily formed by irradiating a laser beam.
[0165] It should be noted that the disclosure herein describes features related to suitable exemplary embodiments. After reading the disclosure herein, those skilled in the art will naturally think of various other embodiments, modifications, and variations within the scope and spirit of the appended patent claims. For example, the staggered arrangement of the terminals does not have to be regular. Additionally, the arrangement of the terminals on the left and right half portions does not need to be the same. Moreover, the left and right half portions do not have to be axially symmetric.
[0166] Industrial Applicability
[0167] The present disclosure can be applied to connectors and connector pairs.
Claims
1. Connector, wherein, The connector includes a connector body, terminals attached to the connector body, and a reinforcing fitting attached to the connector body. The connector body includes fitting guide portions formed at both ends in the longitudinal direction, and the fitting guide portions are fitted with fitting guide portions formed at both ends in the longitudinal direction of a mating connector body of a mating connector. The reinforcing fitting includes: an upper surface portion covering at least a part of the upper surface of the fitting guide portion; an end surface portion covering at least a part of the end surface of the fitting guide portion; a first side surface portion covering at least a part of each side surface of the fitting guide portion; and a second side surface portion covering at least a part of each side surface of the fitting guide portion. The upper end of the end surface portion is connected to the upper surface portion via a rearward bending portion, the upper end of the first side surface portion is connected to the upper surface portion via a forward bending portion, the second side surface portion is separated from the upper surface portion, and the second side surface portion is located closer to the end surface of the fitting guide portion than the first side surface portion, and the rear end of the second side surface portion is connected to the end surface portion via a lateral bending portion.
2. The connector according to claim 1, wherein the upper surface portion has a U-shaped recess formed at the inner end in the longitudinal direction of the connector body.
3. The connector according to claim 1 or 2, wherein the connector body includes a groove portion formed between the fitting guide portions formed at both ends in the longitudinal direction of the connector body, and when viewed from the width direction of the connector body, the first side surface portion is located at a position overlapping at least a part of the groove portion, and when viewed from the width direction of the connector body, the second side surface portion is located at a position overlapping the fitting guide portion.
4. The connector according to any one of claims 1-3, wherein a tail connected to a connection pad on a substrate is connected to the lower end of the first side surface portion.
5. The connector according to any one of claims 1-4, wherein a barrier portion with nickel exposed on the surface is formed on the side surface of the first side surface portion.
6. Connector pair, wherein, The connector pair includes: the connector according to any one of claims 1-5, and a mating connector that mates with the connector.
Citation Information
Patent Citations
Connector assembly
JP2015185541A