This invention relates to a connector comprising a plurality of terminals arranged with short distances.
For example, this type of connector is disclosed in JP2016-152083A (Patent Document 1), the content of which is incorporated herein by reference.
Referring to
The bottom portion of the housing 91 has a plurality of separating portions 93. Each of the separating portions 93 is located between two of the passing holes 92 adjacent to each other in a pitch direction. This structure prevents the housing 91 from being lowered in strength although the housing 91 is formed with the passing holes 93.
When the inner terminals 96 are increased in number with the housing 91 unchanged in size, a distance between adjacent passing holes, or two of the passing holes 94 adjacent to each other in the pitch direction, is reduced. In other words, when the housing 91 is molded out of resin by using a metal die which has two parts configured to form the adjacent passing holes and is formed with a gap which correspond to the separating portion 93 and is located between the two parts of the metal die, the gap inevitably has a small size. As a result, the resin is hardly poured into the gap, and thereby the separating portion 93 might be insufficiently formed. As can be seen from the explanation described above, the connector of Patent Document 1 is not necessarily suitable for arranging a large number of terminals.
It is therefore an object of the present invention to provide a new connector having a structure suitable for arranging a large number of terminals and a mating connector mateable with this new connector.
An aspect of the present invention provides a connector comprising a housing and a plurality of terminals. The housing has two sidewalls, two edge walls and a bottom portion. Each of the sidewalls extends along a pitch direction. The sidewalls are apart from each other in a lateral direction perpendicular to the pitch direction. The edge walls are located at opposite ends of the housing in the pitch direction, respectively. The bottom portion couples the sidewalls together. The bottom portion has a projecting portion and two base portions which correspond to the sidewalls, respectively. The base portions are located at opposite sides of the projecting portion in the lateral direction, respectively. The projecting portion projects from the base portions in an upper-lower direction perpendicular to both the pitch direction and the lateral direction and is connected to at least one of the edge walls in the pitch direction. Each of the base portions has at least one predetermined portion. Each of the predetermined portions includes two passing holes and a separating portion. Each of the passing holes passes through the base portion in the upper-lower direction. Each of the separating portions separates the two passing holes from each other in the pitch direction and is connected to the projecting portion and a corresponding one of the sidewalls in the lateral direction. The terminals are divided into two terminal rows which correspond to the sidewalls, respectively. Each of the terminal rows includes at least two inner terminals. Each of the inner terminals has a held portion and a solderable portion. The held portion of each of the inner terminals is held by a corresponding one of the sidewalls. The solderable portions of the inner terminals are partially located in the passing holes, respectively.
The projecting portion of the connector of an aspect of the present invention projects in the upper-lower direction from the base portion having the passing holes and the separating portion and is connected to at least one of the edge walls, namely a predetermined edge wall. The projecting portion and the separating portion which are arranged as described above can be molded out of resin by using a metal die which is formed with a first groove corresponding to the projecting portion and a second groove corresponding to the separating portion. When the housing is molded, the resin is poured from a gate located in the vicinity of the predetermined edge wall into the first groove having a relatively large cross-section, and the resin can be poured downward into the second groove from the first groove. According to this molding method, the separating portion can be reliably formed even when the second groove has a small size in the pitch direction.
As apparent from the explanation described above, the present invention can provide a new connector having a structure suitable for arranging a large number of terminals. In addition, the present invention can provide a mating connector having a structure corresponding to the structure of this new connector, or a mating connector mateable with this new connector.
An appreciation of the objectives of the present invention and a more complete understanding of its structure may be had by studying the following description of the preferred embodiment and by referring to the accompanying drawings.
While the invention is susceptible to various modifications and alternative forms, specific embodiments thereof are shown by way of example in the drawings and will herein be described in detail. It should be understood, however, that the drawings and detailed description thereto are not intended to limit the invention to the particular form disclosed, but on the contrary, the intention is to cover all modifications, equivalents and alternatives falling within the spirit and scope of the present invention as defined by the appended claims.
As shown in
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The housing 20 of the present embodiment has a peripheral wall 21 and a bottom portion 25. The peripheral wall 21 has two sidewalls 22 and two edge walls 23. Thus, the housing 20 has the two sidewalls 22 and the two edge walls 23.
The sidewalls 22 extend in parallel to each other. Each of the sidewalls 22 extends along a pitch direction perpendicular to the upper-lower direction. The pitch direction of the present embodiment is the Y-direction. The sidewalls 22 are apart from each other in a lateral direction perpendicular to both the upper-lower direction and the pitch direction. The lateral direction of the present embodiment is the X-direction.
The edge walls 23 are located at opposite ends of the housing 20 in the pitch direction, respectively. Each of the edge walls 23 of the present embodiment extends along the lateral direction and couples the two sidewalls 22 together in the lateral direction. The thus-formed peripheral wall 21 has a rectangular shape with no gap in a horizontal plane (XY-plane) perpendicular to the upper-lower direction. However, the present invention is not limited thereto. For example, each of the edge walls 23 may be apart from the sidewalls 22 in the lateral direction.
The bottom portion 25 couples the two sidewalls 22 together in the lateral direction. The bottom portion 25 of the present embodiment couples the two edge walls 23 together in the pitch direction. However, the present invention is not limited thereto. For example, the bottom portion 25 may be apart from one of the two edge walls 23 in the pitch direction.
The bottom portion 25 has a projecting portion 28 and two base portions 26 which correspond to the sidewalls 22, respectively. The base portions 26 are located at opposite sides of the projecting portion 28 in the lateral direction, respectively. In other words, each of the base portions 26 is located between the projecting portion 28 and the corresponding sidewall 22 in the lateral direction. The projecting portion 28 projects from the base portions 26 in the upper-lower direction. More specifically, the projecting portion 28 of the present embodiment projects downward from the base portions 26. Each of the base portions 26 and the projecting portion 28 of the present embodiment extends through the whole bottom portion 25 along the pitch direction. However, the present invention is not limited thereto. For example, each of the base portions 26 may be located only at the middle of the bottom portion 25 in the pitch direction.
The projecting portion 28 of the present embodiment extends along the pitch direction with no gap and is connected to the two edge walls 23 in the pitch direction. According to this structure, when the housing 20 is molded out of resin, the whole projecting portion 28 can be formed by a molding method in which the resin is poured from one gate 80 (inlet) which is located on a side corresponding to a bottom surface of the housing 20, or the positive Z-side of the housing 20. However, the present invention is not limited thereto. For example, the projecting portion 28 may include two parts which are apart from each other in the pitch direction. These two parts may be connected to the two edge walls 23, respectively. Instead, the projecting portion 28 may be a single part which is connected to only one of the edge walls 23 in the pitch direction. Thus, the projecting portion 28 may be connected to at least one of the edge walls 23 in the pitch direction.
Each of the base portions 26 of the present embodiment is provided with a large number of passing holes 272 and a large number of separating portions 274. Each of the passing holes 272 has a rectangular shape in the XY-plane and passes through the base portion 26 in the upper-lower direction. The passing holes 272 of each of the base portions 26 are arranged in regular intervals along the pitch direction. Each of the separating portions 274 is located between two of the passing holes 272 adjacent to each other in the pitch direction. The thus-formed separating portions 274 of each of the base portions 26 are arranged in regular intervals along the pitch direction. Each of the separating portions 274 extends with no gap along the lateral direction from the projecting portion 28 to the corresponding sidewall 22.
The passing holes 272 and the separating portions 274 of the present embodiment have the aforementioned structure and are arranged as described above. However, the present invention is not limited thereto. For example, the arrangement of the passing holes 272 is not limited to the regular interval arrangement.
Referring to
The holddowns 40 of the present embodiment have shapes same as each other. Each of the holddowns 40 has a fixable portion 42. The holddowns 40 of the present embodiment are insert-molded in the edge walls 23 of the housing 20, respectively, and strengthen the edge walls 23. When the connector 12 is mounted on the board 82, the fixable portion 42 is soldered on the board 82. However, the present invention is not limited thereto. For example, the holddowns 40 may be attached to the edge walls 23, respectively, after the housing 20 has been molded.
Referring to
The terminals 30 of the present embodiment are arranged as described above. However, the present invention is not limited thereto. For example, each of the terminal rows 30R may include only two of the inner terminals 31 and may include only one of the outer terminals 35. Thus, each of the terminal rows 30R may include at least two of the inner terminals 31 and at least one of the outer terminals 35. Each of the terminal rows 30R may include only of two the inner terminals 31.
Referring to
The held portions 32 of the inner terminals 31 are held by the corresponding sidewall 22. Each of the held portions 32 of the present embodiment is insert-molded in the corresponding sidewall 22. Each of the held portions 32 is exposed from a lower surface of the corresponding sidewall 22 and is exposed from opposite surfaces of the corresponding sidewall 22 in the lateral direction. However, the present invention is not limited thereto. For example, each of the held portions 32 may be press-fit into the corresponding sidewall 22.
Each of the held portions 32 of the inner terminals 31 of the present embodiment is provided with two contact points 33. The contact points 33 of each of the inner terminals 31 are located on opposite surfaces of the held portion 32 in the lateral direction, respectively, and are electrically connected with the mating connector 16 under the mated state.
Referring to
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The held portions 36 of the outer terminals 35 are held by the corresponding sidewall 22. Each of the held portions 36 of the present embodiment is insert-molded in the corresponding sidewall 22. Each of the held portions 36 is exposed from the lower surface of the corresponding sidewall 22 and is exposed from the opposite surfaces of the corresponding sidewall 22 in the lateral direction. However, the present invention is not limited thereto. For example, each of the held portions 36 may be press-fit into the corresponding sidewall 22.
Each of the held portions 36 of the outer terminals 35 of the present embodiment is provided with two contact points 37. The contact points 37 of each of the outer terminals 35 are located on opposite surfaces of the held portion 36 in the lateral direction, respectively, and are electrically connected with the mating connector 16 under the mated state.
The solderable portion 38 of each of the outer terminals 35 extends outward from the held portion 36 in the lateral direction and is located outward of the corresponding sidewall 22 in the lateral direction. Referring to
Referring to
According to the aforementioned alternate arrangement, a distance between two of the terminals 30 adjacent to each other can be reduced in the pitch direction while the distance DS is kept to a value which is sufficiently large to prevent the solderable portions 38 from being short-circuited to each other. As a result, the connector 12 can be reduced in size in the pitch direction. However, the present invention is not limited thereto. For example, in each of the terminal rows 30R, two or more of the inner terminals 31 may be adjacent to each other, or two or more of the outer terminals 35 may be adjacent to each other.
Referring to
The aforementioned zigzag arrangement increases a distance between the solderable portion 34 of the inner terminal 31 of one of the base portions 26 and the solderable portion 34 of the inner terminal 31 of a remaining one of the base portions 26 while the connector 12 is unchanged in size in the lateral direction. As a result, insulation properties can be improved. However, the present invention is not limited thereto. For example, the passing hole 272 of one of the base portions 26 and the passing hole 272 of a remaining one of the base portions 26 may be arranged side by side in the lateral direction.
Explaining the structure of the base portion 26 from another viewpoint with reference to
Each of the base portions 26 of the present embodiment has a large number of the predetermined portions 27. However, the present invention is not limited thereto. For example, each of the base portions 26 may have only one of the predetermined portions 27. Thus, each of the base portions 26 should have at least one of the predetermined portions 27.
Referring to
If the projecting portion 28 is not formed, the first groove (not shown) will have a small cross-section. In an attempt of pouring the resin into the second grooves (not shown) each having a small cross-section through the first groove having a small cross-section, the resin might be blocked because of viscosity of the resin before the resin is moved to the far end of the second groove. As a result, the separating portion 274 might be insufficiently formed, and thereby the bottom portion 25 of the housing 20 formed with a large number of the passing holes 272 might be reduced in strength.
In contrast, according to the present embodiment, a large amount of resin larger than that in an instance where the projecting portion 28 is not formed can be poured from the gate 80 into the first groove (not shown) having a large cross-section. This large amount of resin poured from the gate 80 pushes the resin which flows into the second grooves (not shown), and thereby the resin is moved against its viscosity and fills the whole second grooves. According to the molding method of the present embodiment, the first groove works as a large channel in which the resin flows, and the separating portions 274 can be reliably formed even when each of the second grooves has a small size in the pitch direction. In addition, the thus-formed projecting portion 28 strengthens the housing 20 and makes the housing 20 unbendable. Thus, the present embodiment provides the connector 12 which is new and has a structure suitable for arranging a large number of terminals.
According to the present embodiment, the projecting portion 28 and all the separating portions 274 can be formed by using the only one gate 80. According to this manufacturing method, the manufacturing cost of the connector 12 can be reduced. However, the present invention is not limited thereto. For example, the projecting portion 28 and all the separating portions 274 may be formed by using two of the gates 80. In this instance, the projecting portion 28 may include two parts which are apart from each other in the pitch direction and are connected to the edge walls 23, respectively. However, according to a manufacturing method in which two or more of the gates 80 are provided, a weld line might be generated, and the housing 20 might be reduced in strength. Therefore, the number of the gate 80 is preferred to be one. According to this manufacturing method, the projecting portion 28 is preferred to extend with no gap along the pitch direction from a part located in the vicinity of the gate 80 to the edge wall 23 located opposite to the gate 80 in the pitch direction as shown in the present embodiment.
Referring to
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The island-like portion 56 of the present embodiment has a groove 57 and two projecting walls 58. The groove 57 opens at opposite sides thereof in the pitch direction. The groove 57 has opposite ends in the pitch direction each of which is a groove with a bottom and is recessed downward. The middle of the groove 57 in the pitch direction is a hole which passes through the mating housing 50 in the upper-lower direction. The projecting walls 58 are located at opposite sides of the groove 57 in the lateral direction, respectively, and extend along the groove 57, or along the opposite sides of the groove 57 in the lateral direction. In other words, each of the projecting walls 58 is located between the groove 57 and one of the mating sidewalls 52 in the lateral direction.
The island-like portion 56 of the present embodiment has the aforementioned structure. However, the present invention is not limited thereto. For example, the groove 57 may be a groove with a bottom along its entire length in the pitch direction. Thus, the hole of the groove 57 may not be formed. Each of the projecting walls 58 may include two parts which are apart from each other in the pitch direction.
Referring to
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Each of the held portions 63 of the mating inner terminals 61 is press-fit into and is held by the projecting wall 58 of the island-like portion 56. Each of the held portions 63 of the mating outer terminals 62 is press-fit into and is held by the corresponding mating sidewall 52. However, the present invention is not limited thereto. For example, the held portions 63 may be insert-molded in the mating housing 50.
Each of the solderable portions 64 of the mating inner terminals 61 of the present embodiment is partially located in the groove 57. Each of the solderable portions 64 of the mating outer terminals 62 of the present embodiment extends outward from the held portion 63 in the lateral direction and is partially located outward of the corresponding mating sidewall 52 in the lateral direction. Referring to
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As can be seen from the explanation described above, the mating connector 16 has a structure corresponding to the connector 12. The present embodiment provides the mating connector 16 having a structure corresponding to the connector 12, or the mating connector 16 mateable with the connector 12.
Number | Date | Country | Kind |
---|---|---|---|
2022-011661 | Jan 2022 | JP | national |
2022-021499 | Feb 2022 | JP | national |
2022-087366 | May 2022 | JP | national |
This application is based on and claims priority under 35 U.S.C. §119 to Japanese Patent Applications No. JP 2022-011661 filed Jan. 28, 2022, No. JP 2022-021499 filed Feb. 15, 2022 and No. JP 2022-087366 filed May 30, 2022, the contents of which are incorporated herein in their entirety by reference.