Terminal fitting, mounting board, and board device
The terminal fitting design with protrusions and paired insertion portions stabilizes terminal fittings on circuit boards before soldering, preventing tilting and excessive insertion, ensuring secure and efficient attachment.
Patent Information
- Application Number
- JP2024059505
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-04-02
- Publication Date
- 2025-10-15
AI Technical Summary
Existing terminal fittings on circuit boards require a cover member that reduces the effective mounting surface area due to its projection, leading to inefficiencies in terminal placement and stability before soldering.
A terminal fitting design with a protrusion that abuts against the circuit board to restrict inclination and insertion depth, using paired insertion portions with protrusions to stabilize the fitting before soldering, ensuring stable temporary attachment.
Prevents tilting and excessive insertion of terminal fittings on circuit boards, allowing them to stand independently and securely before soldering, enhancing assembly efficiency and reliability.
Smart Images

Figure 2025156812000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a terminal fitting, a mounting board, and a board device. [Background technology]
[0002] Patent Document 1 discloses a terminal-equipped board in which board terminals are attached to the board by soldering. The board terminals are attached to a first cover member. Before soldering, the protruding portion of the first cover member abuts against the board, allowing the board terminals to stand independently on the board. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2016-100215 Summary of the Invention [Problem to be solved by the invention]
[0004] The technology in Patent Document 1 uses a first cover member as a means for allowing the board terminals to stand on the board before soldering. Because the first cover member is arranged to cover the mounting surface of the board, the effective area of the mounting surface of the board is reduced by the projected area of the first cover member.
[0005] The terminal fittings of the first disclosure and the board connector of the second disclosure were completed based on the above circumstances, and their purpose is to enable the terminal fittings to be temporarily held on the circuit board by themselves before being fixed to the circuit board by soldering. [Means for solving the problem]
[0006] The terminal fitting of the first disclosure is A terminal fitting attached to a first circuit board arranged to face a second circuit board, a terminal connection portion connected to a mating terminal provided on the second circuit board; a board connection portion that is inserted into a through hole of the first circuit board and fixed by solder; a protrusion formed to face the first circuit board, The protrusion abuts against the first circuit board, thereby restricting the inclination of the terminal connection portion relative to the first circuit board and restricting the insertion depth of the board connection portion into the through hole to a constant depth.
[0007] The mounting board of the second disclosure includes: a first circuit board disposed opposite the second circuit board; The terminal fitting according to the first disclosure is provided.
[0008] The substrate device of the third disclosure is a second circuit board; and the mounting substrate described in the second disclosure. [Effects of the Invention]
[0009] According to the first to third disclosures, before the terminal fittings are fixed to the first circuit board by soldering, the terminal fittings can be temporarily held on the first circuit board by themselves. [Brief explanation of the drawings]
[0010] [Figure 1] FIG. 1 is a cross-sectional view of a substrate device according to a first embodiment. [Figure 2] FIG. 2 is a plan view of the first circuit board. [Figure 3] FIG. 3 is a perspective view of the terminal fitting as viewed obliquely from the rear right. [Figure 4] FIG. 4 is a perspective view of the terminal fitting as viewed obliquely from the left rear. [Figure 5] FIG. 5 is a perspective view of the terminal fitting of the second embodiment as viewed obliquely from the right rear. [Figure 6] FIG. 6 is a perspective view of the terminal fitting of the second embodiment as viewed obliquely from the right rear. DETAILED DESCRIPTION OF THE INVENTION
[0011] [Description of the embodiments of the present disclosure] First, embodiments of the present disclosure will be listed and described. Any combination of the following multiple embodiments within a range that does not cause contradictions is also included in the description of the present invention.
[0012] The terminal fitting of the first disclosure is (1) A terminal fitting attached to a first circuit board disposed opposite a second circuit board, the terminal fitting having a terminal connection portion connected to a mating terminal provided on the second circuit board, a board connection portion inserted into a through hole of the first circuit board and fixed thereto by soldering, and a protrusion formed opposite the first circuit board, the protrusion abutting the first circuit board to restrict tilt of the terminal connection portion relative to the first circuit board and restrict the insertion depth of the board connection portion into the through hole to a fixed depth. According to the configuration of the first disclosure, before the board connection portion is fixed to the first circuit board by soldering, tilt of the terminal fitting relative to the first circuit board and over-insertion into the through hole are prevented. According to the first disclosure, before the terminal fitting is fixed to the first circuit board by soldering, the terminal fitting can stand independently on the first circuit board.
[0013] (2) The board connection portion preferably has a pair of insertion portions that are individually inserted into a pair of the through holes that are spaced apart from each other. With this configuration, the pair of insertion portions are inserted into the through holes at two locations spaced apart from each other, so that the terminal fittings can be stably and temporarily held on the first circuit board before being fixed to the first circuit board by soldering.
[0014] (3) In (2), it is preferable that the protrusions are formed on both of the pair of insertion portions. With this configuration, the protrusions abut against the first circuit board at two locations spaced apart from each other, so that the terminal fittings can be temporarily held stably on the first circuit board before being fixed to the first circuit board by soldering.
[0015] (4) In (2) or (3), the pair of insertion sections preferably includes a pair of parallel plate-shaped insertion base sections and a plate-shaped folded section formed by folding back an extension from at least one of the insertion base sections toward the other insertion section and overlapping the at least one insertion base section, and the protrusion section preferably protrudes from the at least one insertion base section on the side opposite the folded section. This configuration allows the protrusion section to protrude less from the insertion base section than in a configuration in which the protrusion section protrudes on the same side as the folded section. Therefore, the protrusion section provides excellent reliability in preventing tilting and excessive insertion.
[0016] (5) In (2) or (3), the terminal connection portion preferably has a pair of closely folded flat plate portions, and the pair of insertion portions includes a first insertion portion extending from one of the flat plate portions and a second insertion portion extending from the other of the flat plate portions, the first insertion portion having a flat plate shape that is flush with the one of the flat plate portions, and the second insertion portion having a bent shape that is spaced apart from the first insertion portion. With this configuration, when the terminal connection portion is connected to a mating terminal, a reaction force acts on the terminal connection portion from the mating terminal. This reaction force is received by the first insertion portion and the second insertion portion that extend from the flat plate portions that constitute the terminal connection portion. Here, because the first insertion portion is flush with one of the flat plate portions, there is no risk of it being deformed even when subjected to the reaction force. Therefore, deformation of the board connection portion during connection to the mating terminal can be prevented.
[0017] (6) In (5), the protrusion preferably includes a first protrusion formed by hammering out a portion of the first insertion portion and a second protrusion extending cantilever-like from the second insertion portion. With this configuration, the reaction force from the terminal connection portion is received by the first protrusion, but since the first protrusion is formed by hammering out a portion of the first insertion portion, it has higher rigidity than the second protrusion extending cantilever-like from the second insertion portion. Therefore, the reaction force from the terminal connection portion can be reliably received.
[0018] The second disclosed mounting substrate is (7) A connector includes a first circuit board arranged to face a second circuit board, and the terminal fittings according to claim 1 attached to the first circuit board. According to the configuration of the second disclosure, before the board connection portion is fixed to the first circuit board by soldering, tilting of the terminal fittings relative to the first circuit board and excessive insertion into the through holes are prevented. According to the second disclosure, before the terminal fittings are fixed to the first circuit board by soldering, the terminal fittings can be made to stand independently on the first circuit board.
[0019] The substrate device of the third disclosure is (8) A second circuit board and the mounting board described in the second disclosure are included. According to the third disclosure, before the terminal fittings are fixed to the first circuit board by soldering, the terminal fittings can be made to stand independently on the first circuit board.
[0020] [Details of the embodiments of the present disclosure] [Example 1] A substrate device A, a mounting substrate 10, and a terminal fitting 20 according to a first embodiment of the present disclosure will be described with reference to FIGS. 1 to 4. The present invention is not limited to these examples, but is defined by the claims, and includes all modifications within the meaning and scope of the claims. In this first embodiment, the front-to-back direction is defined as the F direction in FIGS. 2 to 4. The up-down direction is defined as the H direction in FIGS. 1, 3, and 4. The left-to-right direction is defined as the R direction in FIGS. 1 to 4.
[0021] The board device A of the first embodiment includes a second circuit board 50, a board connector 52, and a mounting board 10. The second circuit board 50 is disposed horizontally with a second mounting surface 51 facing downward. The board connector 52 is attached to the second mounting surface 51. The board connector 52 includes a housing 53 fixed to the second circuit board 50, and a pair of female terminals 54 having elastic contact pieces 55. The pair of female terminals 54 are attached to the housing 53 while being accommodated within the housing 53.
[0022] The mounting board 10 is configured to include a first circuit board 11 and at least a pair of terminal fittings 20. The first circuit board 11 is arranged horizontally below the second circuit board 50 with the first mounting surface 12 facing upward. Four through holes 13 are formed in the first circuit board 11 at intervals in the left-right direction. Each through hole 13 has an elongated shape in the front-to-rear direction in a plan view of the first circuit board 11 viewed from above. The first circuit board 11 and the second circuit board 50 are arranged parallel to each other and facing each other in the up-down direction.
[0023] The terminal fittings 20 are single components formed by bending a metal plate that has been punched into a predetermined shape. The terminal fittings 20 are symmetrical in the front-to-rear direction. A pair of terminal fittings 20 are arranged symmetrically on the left and right, and are electrically connected to the first circuit board 11 with solder S. The following describes the right-side terminal fitting 20 of the pair of left and right terminal fittings 20.
[0024] The terminal fitting 20 has a terminal connection portion 21 and a board connection portion 25. The terminal connection portion 21 includes a pair of left and right flat plate portions 22, 23 that overlap parallel to each other with the plate thickness direction oriented in the left-right direction, and a bent portion 24 that connects the upper edges of the pair of flat plate portions 22, 23. The pair of flat plate portions 22, 23 includes a first flat plate portion 22 and a second flat plate portion 23 on the right side of the first flat plate portion 22.
[0025] The board connection portion 25 includes a first insertion portion 26, a second insertion portion 29, a first protrusion 33, and a second protrusion 39. The first insertion portion 26 has a first insertion base portion 27 and a pair of first folded portions 28 that are symmetrical in the front-to-rear direction. The first insertion base portion 27 is a flat portion that extends downward from the lower edge of the first flat plate portion 22, forming a same plane as the first flat plate portion 22. The pair of front and rear first folded portions 28 are flat portion that are folded back to the right (toward the second insertion portion 29) from both front and rear end edges of the first insertion base portion 27 and overlap the right side surface of the first insertion base 27.
[0026] The second insertion portion 29 has an extending portion 30, a second insertion base portion 31, and a pair of second folded portions 32 that are symmetrical in the front-rear direction. The extending portion 30 is a flat portion that extends at a right angle from the lower edge of the second flat portion 23 to the right (away from the first insertion portion 26). The second insertion base portion 31 is a flat portion that extends downward from the extending edge (right edge) of the extending portion 30 in parallel with the first insertion base portion 27. The second insertion base portion 31 is disposed so as to face the first insertion base portion 27 with a gap in the plate thickness direction (left-right direction). The pair of front and rear second folded portions 32 are flat portions that are folded back to the left (towards the first insertion portion 26) from both front and rear end edges of the second insertion base portion 31 and overlap the left side surface of the second insertion base 31.
[0027] The first protrusion 33 is a portion formed by hammering out the center portion in the front-to-rear direction of the upper end of the first insertion base 27 to the left (the opposite side in the left-right direction from the first folded portion 28). The first protrusion 33 has a front surface 34, a rear surface 35, a top surface 36, and a side surface 37. The front surface 34 and the rear surface 35 are portions that individually protrude leftward from positions spaced apart in the front-to-rear direction on the left outer surface of the first insertion base 27. The top surface 36 connects the upper edges of the front surface 34 and the rear surface 35. The side surface 37 connects the left edges of the front surface 34, the rear surface 35, and the top surface 36. The lower surface of the first protrusion 33 functions as a first abutment surface 38 that abuts in surface contact with the first mounting surface 12 of the first circuit board 11.
[0028] The second protrusion 39 is a portion that extends in a cantilevered manner to the right (the opposite side of the second folded portion 32 in the left-right direction) from the upper edge of the second insertion base 31. The lower surface of the second protrusion 39 functions as a second abutment surface 40 that abuts in a surface-to-surface contact state against the first mounting surface 12. The first abutment surface 38 and the second abutment surface 40 are set to the same height.
[0029] When mounting the terminal fittings 20 on the first circuit board 11, the board connecting portions 25 of the pair of left and right terminal fittings 20 are temporarily held against the first circuit board 11, which is positioned horizontally with the first mounting surface 12 facing upward. In this temporarily held state, the first insertion portion 26 and the second insertion portion 29 are individually inserted into the through-holes 13. When the first insertion portion 26 and the second insertion portion 29 are inserted into the through-holes 13, the first abutment surface 38 of the first protrusion 33 and the second abutment surface 40 of the second protrusion 39 come into surface contact with the first mounting surface 12. This abutment holds the terminal fittings 20 at a predetermined height relative to the first circuit board 11, and maintains a constant insertion depth of the first insertion portion 26 and the second insertion portion 29 into the through-holes 13.
[0030] In each terminal fitting 20, the first protrusion 33 and the second protrusion 39 are arranged with a gap in the left-right direction, so there is no risk of the terminal fitting 20 tilting left-right. In a plan view, the first insertion portion 26 and the second insertion portion 29 have an elongated shape in the front-to-back direction, so there is no risk of the terminal fitting 20 tilting front-to-back relative to the first circuit board 11. Therefore, by simply inserting the board connecting portion 25 into the through-hole 13, the terminal fitting 20 can stand on its own with a stable posture and height without using any other members.
[0031] With the terminal fitting 20 temporarily held on the first circuit board 11 as described above, the through-hole 13 and the first insertion portion 26 are electrically connected to each other with solder S, and the through-hole 13 and the second insertion portion 29 are electrically connected to each other with solder S. In this way, the terminal fitting 20 is connected to the first circuit board 11, and the assembly of the mounting board 10 is completed.
[0032] The mounted mounting board 10 is placed below the board connector 52. When the mounting board 10 and the board connector 52 are moved relative to each other in the vertical direction so that they approach each other, the pair of female terminals 54 and the pair of terminal fittings 20 are electrically connected. At this time, the elastic contact pieces 55 of the female terminals 54 contact the board connecting portions 25 in an elastically deformed state, and frictional resistance is generated between the female terminals 54 and the terminal fittings 20 due to the elastic restoring force of the elastic contact pieces 55. This frictional resistance acts as a pressing force from the female terminals 54 side to the terminal fittings 20 side.
[0033] Because second insertion portion 29 extends in a direction intersecting the pressing direction from female terminal 54 to terminal connection portion 21 and has an L-shaped bent shape, there is concern that it may be deformed by the pressing force from female terminal 54. First insertion base portion 27 of first insertion portion 26 is connected flush with terminal connection portion 21 (first flat plate portion 22) and has a flat plate shape parallel to the pressing direction from female terminal 54, so there is no concern that it will deform. In this way, first insertion base portion 27 receives the pressing force from female terminal 54 without deforming, so there is no concern that board connection portion 25 will be deformed.
[0034] The board device A of the first embodiment includes a second circuit board 50 and a mounting board 10. The mounting board 10 includes a first circuit board 11 disposed opposite the second circuit board 50, and a terminal fitting 20 attached to the first circuit board 11. The terminal fitting 20 includes a terminal connection portion 21, a board connection portion 25, a first protrusion 33, and a second protrusion 39. The terminal connection portion 21 is connected to a female terminal 54 (mating terminal) of a board connector 52 provided on the second circuit board 50. The board connection portion 25 is fixed by solder S in a state where it is inserted into a through hole 13 of the first circuit board 11. The first protrusion 33 and the second protrusion 39 are portions formed on the terminal fitting 20 so as to face a first mounting surface 12 of the first circuit board 11. When the first protrusion 33 and the second protrusion 39 abut against the first mounting surface 12, the inclination of the terminal connection portion 21 relative to the first circuit board 11 is regulated, and the insertion depth of the board connection portion 25 into the through hole 13 is regulated to a constant depth.
[0035] According to the board device A, mounting board 10, and terminal fitting 20 of this embodiment 1, before the board connection portion 25 is fixed to the first circuit board 11 with the solder S, tilting of the terminal fitting 20 with respect to the first circuit board 11 and excessive insertion of the board connection portion 25 into the through hole 13 are prevented. Therefore, before the terminal fitting 20 is fixed to the first circuit board 11 with the solder S, the terminal fitting 20 can stand alone on the first circuit board 11.
[0036] The board connection portion 25 has a pair of insertion portions (first insertion portion 26 and second insertion portion 29) that are individually inserted into a pair of spaced-apart through-holes 13. With this configuration, the first insertion portion 26 and the second insertion portion 29 are inserted into the through-holes 13 at two locations spaced apart from each other, so that the terminal fitting 20 can be temporarily held stably on the first circuit board 11 before the terminal fitting 20 is fixed to the first circuit board 11 with the solder S.
[0037] Protrusions (first protrusion 33 and second protrusion 39) are formed on both of the pair of insertion portions (first insertion portion 26 and second insertion portion 29). With this configuration, the first protrusion 33 and the second protrusion 39 abut against the first circuit board 11 at two locations spaced apart from each other, so that the terminal fitting 20 can be temporarily held stably on the first circuit board 11 before the terminal fitting 20 is fixed to the first circuit board 11 with the solder S.
[0038] The first insertion portion 26 has a plate-shaped first insertion base portion 27 and a plate-shaped first folded portion 28. The first folded portion 28 is formed by folding back a portion extending from the first insertion base portion 27 (at least one of the insertion base portions) toward the second insertion portion 29 (the other insertion portion) and overlapping the first insertion base portion 27. The first protrusion 33 protrudes from the first insertion base portion 27 to the opposite side from the first folded portion 28 in the left-right direction. With this configuration, the protrusion dimension of the first protrusion 33 from the first insertion base portion 27 can be kept small compared to a configuration in which the first protrusion 33 protrudes to the same side as the first folded portion 28. Therefore, the first protrusion 33 has excellent reliability in preventing tilting and excessive insertion.
[0039] The second insertion portion 29 has a plate-shaped second insertion base portion 31 and a plate-shaped second folded portion 32. The second folded portion 32 is formed by folding back a portion extending from the second insertion base portion 31 (at least the other insertion base portion) toward the first insertion portion 26 (one of the insertion portions) and overlapping the second insertion base portion 31. The second protrusion 39 protrudes from the second insertion base portion 31 on the opposite side from the second folded portion 32 in the left-right direction. With this configuration, the protrusion dimension of the second protrusion 39 from the second insertion base portion 31 can be kept small compared to a configuration in which the second protrusion 39 protrudes on the same side as the second folded portion 32. Therefore, the second protrusion 39 has excellent reliability in preventing tilting and excessive insertion.
[0040] The terminal connection portion 21 has a pair of closely folded flat plate portions 22, 23. The pair of insertion portions includes a first insertion portion 26 extending from the first flat plate portion 22 (one of the flat plate portions) and a second insertion portion 29 extending from the second flat plate portion 23 (the other flat plate portion). The first insertion portion 26 has a flat plate shape that is continuous and flush with the first flat plate portion 22. The second insertion portion 29 has a bent shape that is spaced apart from the first insertion portion 26. With this configuration, when the terminal connection portion 21 is connected to a female terminal 54 (a mating terminal), a reaction force acts on the terminal connection portion 21 from the female terminal 54. This reaction force is received by the first insertion portion 26 and the second insertion portion 29 that extend from the flat plate portions 22, 23 that constitute the terminal connection portion 21. Here, first insertion portion 26 is flush with first flat plate portion 22 and is therefore unlikely to deform even when subjected to a reaction force, thereby preventing deformation of board connection portion 25 when connected to female terminal 54.
[0041] The protrusions include a first protrusion 33 formed by hammering out a portion of the first insertion portion 26, and a second protrusion 39 extending in a cantilevered manner from the second insertion portion 29. With this configuration, the reaction force from the terminal connection portion 21 side is received by the first protrusion 33, but because the first protrusion 33 is formed by hammering out a portion of the first insertion portion 26, it has higher rigidity than the second protrusion 39 extending in a cantilevered manner from the second insertion portion 29. Therefore, the reaction force from the terminal connection portion 21 side can be reliably received.
[0042] [Example 2] A terminal fitting 60 according to a second embodiment of the present disclosure will be described with reference to Figures 5 to 6. In this second embodiment, the front-to-rear direction is defined as the F direction in Figures 5 and 6. The up-down direction is defined as the H direction in Figures 5 and 6. The left-to-right direction is defined as the R direction in Figures 5 and 6.
[0043] The terminal fitting 60 of the second embodiment is a single component formed by bending a metal plate that has been punched into a predetermined shape. The terminal fitting 60 has a front-to-back symmetrical shape. The terminal fitting 60 is electrically connected to a first circuit board (not shown in FIGS. 5 and 6) by soldering (not shown in FIGS. 5 and 6).
[0044] The terminal fitting 60 has a terminal connection portion 61 and a board connection portion 65. The terminal connection portion 61 includes a pair of left and right flat plate portions 62, 63 that overlap parallel to each other with the plate thickness direction facing the left-right direction, and a bent portion 64 that connects the upper edges of the pair of flat plate portions 62, 63. The pair of flat plate portions 62, 63 includes a first flat plate portion 62 and a second flat plate portion 63 on the right side of the first flat plate portion 62.
[0045] The board connection portion 65 has an insertion base portion 66, a pair of front and rear folded portions 67, a first protrusion portion 68, and a second protrusion portion 74. The insertion base portion 66 is a flat plate-like portion that extends downward from the lower edge of the first flat plate portion 62, forming a same plane as the first flat plate portion 62. The pair of front and rear folded portions 67 are flat plate-like portions that are folded back to the right from both front and rear end edges of the insertion base portion 66 and overlap the right side surface of the insertion base 66.
[0046] The first protrusion 68 is a portion formed by hammering out the center portion in the front-to-rear direction of the upper end of the insertion base 66 to the left (the opposite side in the left-to-right direction from the folded-back portion 67). The first protrusion 68 has a front surface 69, a rear surface 70, an upper surface 71, and a side surface 72. The front surface 69 and the rear surface 70 are portions that individually protrude leftward from positions spaced apart in the front-to-rear direction on the left outer surface of the insertion base 66. The upper surface 71 connects the upper edges of the front surface 69 and the rear surface 70. The side surface 72 connects the left edges of the front surface 69, the rear surface 70, and the upper surface 71. The lower surface of the first protrusion 68 functions as a first abutment surface 73 that abuts in a surface-to-surface contact state against the mounting surface of the first circuit board (not shown in FIGS. 5 and 6 ).
[0047] The second protrusions 74 are portions that extend in a cantilevered manner to the right (the opposite side from the insertion base 66 in the left-right direction) from the upper edges of the front and rear folded portions 67. The lower surfaces of the second protrusions 74 function as second abutment surfaces 75 that abut in a surface-to-surface contact state against the mounting surface of the first circuit board. The first abutment surface 73 and the second abutment surface 75 are set at the same height.
[0048] When mounting the terminal fitting 60 on the first circuit board, the board connecting portion 65 of the terminal fitting 60 is temporarily held against the first circuit board, which is placed horizontally with the first mounting surface facing upward. In this temporarily held state, the insertion portion (insertion base portion 66 and folded portion 67) is inserted into the through-hole (not shown in FIGS. 5 and 6). When the insertion portion is inserted into the through-hole, the first abutment surface 73 of the first protrusion 68 and the second abutment surface 75 of the second protrusion 74 come into surface contact with the first mounting surface. This abutment holds the terminal fitting 60 at a predetermined height relative to the first circuit board, and maintains a constant insertion depth of the first insertion portion and the second insertion portion into the through-hole.
[0049] The first protrusion 68 and the second protrusion 74 protrude from the board connection portion 65 on opposite sides in the left-right direction. Because the first protrusion 68 and the second protrusion 74 are spaced apart in the left-right direction, there is no risk of the terminal fitting 60 tilting left-right. In a plan view, the insertion portion has an elongated shape in the front-to-back direction, so there is no risk of the terminal fitting 60 tilting front-to-back relative to the first circuit board. Therefore, by simply inserting the board connection portion 65 into the through-hole, the terminal fitting 60 can stand on its own with a stable posture and height without the use of any other components. Thereafter, with the terminal fitting 60 temporarily held on the first circuit board, the through-hole and the insertion portion are soldered to be electrically conductive.
[0050] The terminal fitting 60 of the second embodiment has a terminal connection portion 61, a board connection portion 65, and a first protrusion 68 and a second protrusion 74 formed to face a first circuit board (not shown). The first protrusion 68 and the second protrusion 74 abut against the first circuit board, thereby restricting the inclination of the terminal connection portion 61 relative to the first circuit board and restricting the insertion depth of the board connection portion 65 into the through-hole to a fixed depth. The terminal fitting 60 of the second embodiment prevents the terminal fitting 60 from inclining relative to the first circuit board and from being excessively inserted into the through-hole before the board connection portion 65 is fixed to the first circuit board by soldering. The terminal fitting 60 of the second embodiment allows the terminal fitting 60 to stand independently on the first circuit board before the terminal fitting 60 is fixed to the first circuit board by soldering.
[0051] [Other Examples] The present invention is not limited to the examples described above and illustrated in the drawings, but is defined by the claims. The present invention includes the meaning equivalent to the claims and all modifications within the scope of the claims, including the following embodiments. The positional relationship between the first circuit board and the second circuit board is not limited to a parallel arrangement, and the second circuit board may be slightly tilted relative to the first circuit board. In the first and second embodiments, the protrusions may be formed in locations other than the board connection portion. In the first embodiment, the protruding portion may protrude to the same side as the folded portion. In the first embodiment, the folded-back portion may be folded back from the insertion base portion only in one of the pair of insertion portions. In the first embodiment, both the first insertion portion and the second insertion portion may be bent. In the first embodiment, the first protrusion formed on the first insertion portion may be configured to extend from the first insertion portion in a cantilevered manner. In the first embodiment, the second protrusion formed on the second insertion portion may be formed by hammering out a part of the second insertion portion. [Explanation of symbols]
[0052] 10...Mounting board 11…First circuit board 12...First mounting surface 13...Through hole 20...Terminal fitting 21...Terminal connection part 22...First flat plate portion (one flat plate portion) 23... Second flat plate portion (the other flat plate portion) 24...Bend 25...Board connection part 26...First insertion part (insertion part) 27...First insertion base (insertion base) 28...First folding part (folding part) 29...Second insertion part (insertion part) 30...Extending part 31...Second insertion base (insertion base) 32…Second folding part (folding part) 33...first protrusion 34…Front part 35...Rear section 36...Top part 37…Side part 38...First contact surface 39…Second protrusion 40…Second contact surface 50…Second circuit board 51...Second mounting surface 52...Board connector 53…Housing 54...Female terminal (mating terminal) 55...Elastic contact piece 60...Terminal fitting 61...Terminal connection part 62...First flat plate part 63…Second flat plate part 64...Bend 65...Board connection part 66...insertion base 67...Folding section 68...first protrusion 69...Front section 70...Rear section 71...Top part 72...Side part 73…First contact surface 74…Second protrusion 75…Second contact surface A... Substrate device S...Solder
Claims
1. A terminal fitting attached to a first circuit board arranged to face a second circuit board, a terminal connection portion connected to a mating terminal provided on the second circuit board; a board connection portion that is inserted into a through hole of the first circuit board and fixed by solder; a protrusion formed to face the first circuit board, A terminal fitting in which the protrusion abuts against the first circuit board, thereby restricting the inclination of the terminal connection portion relative to the first circuit board and restricting the insertion depth of the board connection portion into the through hole to a constant depth.
2. The terminal fitting according to claim 1 , wherein the board connecting portion has a pair of insertion portions that are individually inserted into a pair of the through holes that are spaced apart from each other.
3. 3. The terminal fitting according to claim 2, wherein the protrusions are formed on both of the pair of insertion portions.
4. The pair of insertion parts are a pair of plate-shaped insertion base portions that are parallel to each other; a plate-shaped folded-back portion in which a portion extending from at least one of the insertion base portions is folded back toward the other insertion portion and overlapped with the at least one insertion base portion, 4. The terminal fitting according to claim 2, wherein the protruding portion protrudes from the at least one insertion base portion toward a side opposite to the folded portion.
5. The terminal connection portion has a pair of closely folded flat plate portions, the pair of insertion portions includes a first insertion portion extending from one of the flat plate portions and a second insertion portion extending from the other of the flat plate portions, the first insertion portion has a flat plate shape that is flush with the one flat plate portion, 4. The terminal fitting according to claim 2, wherein the second insertion portion is bent so as to be spaced apart from the first insertion portion.
6. The terminal fitting according to claim 5 , wherein the protrusion includes a first protrusion formed by hammering out a part of the first insertion portion, and a second protrusion extending in a cantilevered manner from the second insertion portion.
7. a first circuit board disposed opposite the second circuit board; A mounting board comprising the terminal metal fitting according to claim 1 .
8. a second circuit board; A substrate device comprising the mounting substrate according to claim 7 .
Citation Information
Patent Citations
Terminal for substrate and substrate with terminal
JP2016100215A