Plug-in connector
View Patent ↗The invention relates to a plug-in connector ( 1 ), comprising a housing, a printed circuit board ( 2 ) and RF contacts (K 1 -K 8 ), the RF contacts (K 1 -K 8 ) being electrically connected to the printed circuit board ( 2 ), the RF contacts (K 1 -K 8 ) being formed by an integral, flexible printed circuit board ( 4 ), from which the individual contacts (K 1 -K 8 ) are cut free, the flexible printed circuit board ( 4 ) being prestressed by a spring-elastic element ( 6 ).
1. A plug-in connector, comprising:
a housing holding a printed circuit board;
a flexible printed circuit board from which a plurality of sections are cut free;
a plurality of RF contacts, each of the RF contacts being formed at one of the cut free sections of the flexible printed circuit board, and each of the RF contacts being electrically connected to the printed circuit board held by the housing; and
a spring-elastomeric element including a plurality of individual springs, each spring being disposed beneath one of the cut free sections of the flexible printed circuit board to bias the respective cut free section.
2. The plug-in connector as claimed in claim 1 , further comprising a receptacle coupled to the housing, the receptacle defining a plurality of depressions, each of the springs of the spring-elastomeric element including a knob disposed in one of the depressions of the receptacle.
3. The plug-in connector as claimed in claim 2 , wherein each of the knobs includes a stop edge that rests on an upper side of the receptacle.
4. The plug-in connector as claimed in claim 1 , wherein the housing includes a first part and a second part, the printed circuit board being fixedly mounted in the second part, and the first and second parts being moveably connected to one another.
5. The plug-in connector as claimed in claim 4 , wherein the first and second parts are pivotally connected to one another.
6. The plug-in connector as claimed in claim 1 , wherein at least two adjacent contacts are bent in opposite directions toward the contact region.
7. The plug-in connector as claimed in claim 1 , wherein additional capacitances are formed on the flexible printed circuit board and compensate for crosstalk.
8. The plug-in connector as claimed in claim 7 , wherein the capacitances form a non-current-conducting path.
9. The plug-in connector as claimed in claim 1 , wherein additional capacitances are formed on the printed circuit board.
10. The plug-in connector as claimed in claim 1 , wherein the plug-in connector forms an RJ45 socket.
11. The plug-in connector as claimed in claim 1 , further comprising an anvil including a plurality of arches moveable relative to a frame structure, the frame structure being coupled to the housing, each of the arches being positioned between one of the cut free sections of the flexible printed circuit board and the respective one of the springs.