Controlling conductor displacement in connectors with an inner conductor
In one aspect, the present invention provides an electrical connector having a center conductor and means for preventing displacement of the center conductor, which displacement typically occurs in conventional connectors when the connector is heated and then cooled.
1 . A connector, comprising:
a housing having an inner surface;
a dielectric body housed in the housing, the dielectric body having a first end and a second end;
a conductor having an interim section surrounded by the dielectric body, wherein
the dielectric body includes a rib positioned in a corresponding groove in the inner surface of the housing;
the housing includes a wall substantially facing the first end of the dielectric body; and
a gap exists between the wall and the first end of the dielectric body.
2 . A method comprising the steps of assembling a connector as described in claim 1 and heating the assembled connector at a temperature great than about 200 degrees Celsius for at least about 5 minutes.
3 . The connector of claim 1 , wherein the housing is a substantially metallic housing.
4 . The connector of claim 3 , wherein the dielectric body comprises Teflon and the metallic housing consist essentially of brass.
5 . The connector of claim 1 , wherein the length of the gap is about greater than or equal to a total amount of expected longitudinal expansion of the dielectric body.
6 . A method for assembling an electrical connector, comprising:
obtaining a housing;
obtaining a dielectric body having an end;
obtaining a conductor having an interim portion between two end portions, the interim section being surrounded by the dielectric body;
determining an expected longitudinal expansion of the dielectric body when the body is heated at a pre-determined temperature for a pre-determined amount of time;
placing the dielectric body into a cavity of the housing so that there exists a gap between the end of the dielectric body and a projection projecting inwardly from an inner surface of the housing, wherein
the length of the gap is about equal to or greater than the determined expected longitudinal expansion of the dielectric body.
7 . The method of claim 6 , further comprising forming a rib projecting outwardly from a surface of the dielectric body.
8 . The method of claim 7 , further comprising forming a groove in the inner surface of the housing.
9 . The method of claim 8 , further comprising positioning the dielectric body in the housing so that the rib is inserted into the groove.
10 . The method of claim 7 , wherein the rib is positioned about midway between the first end of the dielectric body and a second end of the dielectric body.
11 . The method of claim 7 , wherein the rib is positioned at or near a second end of the dielectric body, wherein the second end is opposite the first end.
12 . The method of claim 6 , wherein after the dielectric body is placed in the cavity of the housing the resulting assembly is heated at a temperature of at least about 200 degrees Celsius for at least about 5 minutes.
13 . The method of claim 6 , further comprising securing the dielectric body within the cavity.