The present invention relates to electrical connector technology and more particularly, to a signal terminal set for electrical connector, which has first signal terminals and second signal terminals respectively formed on a first material strip and a second material strip and so configured that the first signal terminals and the second signal terminals are set to create a compensated structure when the first material strip and the second material strip are arranged in a stack, simplifying the manufacturing process, increasing the yield and reducing the manufacturing cost.
A signal terminal set for electrical connector generally comprises two sets of signal terminals. In order to avoid crosstalk interference between the two sets of signal terminals, signal terminal sets with compensated structure are designed. In the compensated structure, the signal terminals of one set bridge over the signal terminals of the other set without contact to produce a capacitive effect, reducing crosstalk interference. In this prior art design, the vertical projections of the two sets of signal terminals are overlapped. In order to eliminate this problem, the two sets of signal terminals that are connected to respective material strips are differently curved so that one set of signal terminals can cross over the other set of signal terminals. However, this measure is complicated. For small size application, the fabrication of this design of signal terminal set is more difficult, resulting in reduced yield.
The present invention has been accomplished under the circumstances in view. It is therefore the main object of the present invention to provide a signal terminal set, which employs an alignment measure to keep a first material strip and a second material strip thereof in a stack so that the first signal terminals of the first material strip and second signal terminals of the second material strip are arranged to create a compensated structure, simplifying the manufacturing process and increasing the yield.
To achieve this and other objects of the present invention, a signal terminal set comprises a first material strip and a second material strip. The first material strip comprises a first connection plate, and a plurality of first signal terminals connected to the first connection plate. Each first signal terminal comprises a first bridging segment, a first mating connection segment extended from one end of the first bridging segment and connected to the first connection plate, and a first bonding segment extended from an opposite end of the first bridging segment. The second material strip comprises a second connection plate, and a plurality of second signal terminals connected to the second connection plate. Each second signal terminal comprises a first travel segment, a second mating connection segment extended from one end of the first travel segment and connected to the second connection plate, and a second bonding segment extended from an opposite end of the first travel segment. The first connection plate and the second connection plate are arranged in a stack to keep the first mating connection segments in parallel to the second mating connection segments and the first bonding segments in parallel to the second bonding segments, so that the first bridging segments bridge over the respective first travel segments with no contact therebetween to create a compensated structure.
Referring to
The first material strip 1 comprises a plurality of first signal terminals 11 arranged in parallel, a first connection plate 12 integrally connected with respective one ends of the first signal terminals 11, and a first positioning plate 13 integrally connected with respective opposite ends of the first signal terminals 11. Each first signal terminal 11 comprises a substantially arched first bridging segment 111 that curves sideways, a first mating connection segment 112 connected between one end of the first bridging segment 111 and the first connection plate 12, and a first bonding segment 113 connected between an opposite end of the first bridging segment 111 and the first positioning plate 13. Further, the first connection plate 12 is configured to provide a plurality of first positioning holes 121.
The second material strip 2 comprises a plurality of second signal terminals 21 arranged in parallel, a second connection plate 22 integrally connected with respective one ends of the second signal terminals 21, and a second positioning plate 23 integrally connected with respective opposite ends of the second signal terminals 21. Each second signal terminal 21 comprises a first travel segment 211 extending in a parallel manner relative to the second connection plate 22 and the second positioning plate 23, a second mating connection segment 212 connected between one end of the first travel segment 211 and the second connection plate 22, and a second bonding segment 213 connected between an opposite end of the first travel segment 211 and the second positioning plate 23. Further, the second connection plate 22 is configured to provide a plurality of second positioning holes 221.
In application, the first material strip 1 is attached onto the second material strip 2 in a stack to keep the first positioning holes 121 of the first connection plate 12 in alignment with the respective second positioning hole 221 of the second connection plate 22, and then pins (not shown) are respectively inserted through the first positioning holes 121 and the respective second positioning holes 221 to hold the first connection plate 12 and the second connection plate 22 together. Since the first bridging segments 111 and the first travel segments 211 are curved in reversed directions, the first mating connection segments 112 and the second mating connection segment 212 exhibit a parallel relationship, the first bonding segments 113 and the second bonding segment 213 also exhibit a parallel relationship, the first bridging segments 111 bridge over the respective first travel segments 211 without contact, creating a compensated structure. In this embodiment, the first bridging segments 111 and the first travel segments 211 are curved in reversed directions so that the first bonding segments 113 of the first signal terminals 11 are respectively disposed at one lateral side relative to the respective second mating connection segments 212 of the respective second signal terminals 21; the second bonding segments 213 of the second signal terminals 21 are respectively disposed at one lateral side relative to the respective first mating connection segments 112 of the respective first signal terminals 11, i.e., the arrangement of the first mating connection segments 112 and the second mating connection segments 212 is different from the arrangement of the first bonding segments 113 and the second bonding segments 213.
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When the first connection plate 32 of the first material strip 3 is stacked up with the second connection plate 42 of the second material strip 4, the first bridging segments 311 bridge over the respective first travel segments 411 without contact to create a compensated structure, the second bridging segments 314 bridge over the respective second travel segments 414 without contact to create another compensated structure, i.e., this third embodiment creates two compensated structures, enhancing the effect of eliminating crosstalk. Since the curving direction of the first bridging segment 311 and second bridging segment 314 is reversed to the curving direction of the first travel segment 411 and the second travel segment 414, the first bonding segments 313 of the first signal terminals 31 are not disposed in axial alignment with the respective first mating connection segments 312; the second bonding segments 413 of the second signal terminals 41 are not disposed in axial alignment with the respective second mating connection segments 412; the first extension segments 315 of the first signal terminals 31 are respectively disposed between the second bonding segments 413 and second mating connection segments 412 of the second signal terminals 41; the second extension segments 415 of the second signal terminals 41 are respectively disposed between the first bonding segments 313 and first mating connection segments 312 of the first signal terminals 31, i.e., the arrangement of the first mating connection segments 312 and second mating connection segment 412 is same as the arrangement of the first bonding segments 313 and second bonding segments 413.
Referring to
Number | Date | Country | Kind |
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106100409 | Jan 2017 | TW | national |