High speed connector with moldable conductors
An electrical connector including a housing defining an interior cavity and extending from a mounting end to an engagement end, and at least one signal component disposed within the interior cavity of the housing. The housing is formed from a conductive composite material and engages the at least one signal component to shield the interior cavity.
1. An electrical connector comprising:
a housing defining an interior cavity and extending from a mounting end to an engagement end;
a first signal component disposed within the interior cavity and defining plural first channels that extend from the mounting end to the engagement end of the housing;
a second signal component defining plural second channels that extend from the mounting end to the engagement end of the housing, the second signal component engaging the first signal component disposed within the interior cavity;
a first shell section defining plural first shell channels and formed from a conductive composite material forming a first section of an outer wall of the housing to shield the interior cavity, wherein each of the plural first shell channels aligns with a corresponding first channel of the plural first channels to form an electrical connection between the engagement end and the mounting end; and
a second shell section defining plural first shell channels and formed from a conductive composite material forming a second section of the outer wall of the housing to shield the interior cavity, wherein each of the plurality of second shell channels aligns with a corresponding second channel of the plurality of second channels to form the electrical connection between the engagement end and the mounting end.
2. The electrical connector of claim 1 , wherein the conductive composite material is a polymer binder that includes metallic particles of differing shapes and sizes.
3. The electrical connector of claim 1 , wherein the conductive composite material has a conductivity in a range between 10,000 Siemens per meter and 40,000 Siemens per meter.
4. The electrical connector of claim 3 , wherein the conductive composite material has a resistivity in a range between 0.02 Ohm-centimeters and 0.001 Ohm-centimeters.
5. The electrical connector of claim 1 , wherein the housing at the mounting end is configured to couple to a printed circuit board, and at the engagement end is configured to couple to an electric component; wherein the plural first channels of the first signal component each form a pathway between the printed circuit board and the electric component; wherein the plural second channels of the second signal component each also form a pathway between the printed circuit board and the electric component.
6. The electrical connector of claim 1 , comprising a plurality of ground contacts secured to the housing.
7. The electrical connector of claim 6 , wherein the ground contacts are molded into the housing formed from the conductive composite material.
8. The electrical connector of claim 6 , wherein the housing formed from the conductive composite material includes at least one slot that receives a ground contact insert that includes the ground contacts.
9. The electrical connector of claim 1 , wherein the housing is of one-piece construction.
10. The electrical connector of claim 1 , wherein the mounting end of the housing is transverse to the engagement end of the housing.
11. The electrical connector of claim 1 , wherein the first shell section receives and is molded together with ground contacts.
12. The electrical connector of claim 11 ,
wherein the conductive composite material has a conductivity of at least 10,000 Siemens per meter and a resistivity that is less than 0.02 Ohm-centimeters.