Electrical connector having upper and lower power contacts in contact with metallic plate and making method thereof
A method of making an electrical connector comprises the steps of: insert molding a first insulator with an upper and lower rows of contacts and a metallic element arranged between the upper row of contacts and the lower row of contacts while leaving a void space to expose a bridge of the metallic element; cutting the bridge of the metallic element through the void space to form a first plate and a second plate separated from each other; and insert molding a second insulator to fill up the void space.
1. An electrical connector comprising:
a plurality of upper contacts and a plurality of lower contacts opposite to each other in a vertical direction,
said upper contacts including corresponding upper power contacts and upper grounding contacts;
said lower contacts including corresponding lower power contacts and lower grounding contacts;
a metallic power plate and a metallic grounding plate spaced from each other in a transverse direction perpendicular to said vertical direction; and
the upper contacts, the lower contacts, the power plate and the grounding plate all integrally formed within an insulator via insert-molding; wherein
in the vertical direction, the power plate is intimately sandwiched between the upper power contact and the lower power contact, and the grounding plate is intimately sandwiched between the upper grounding contact and the lower grounding contact; wherein
said power plate and said grounding plate are derived from same sheet metal, wherein said power plate and said grounding plate are originally linked with a bridge which extends in a transverse direction perpendicular to said vertical direction and is removed by cutting before completing said insulator so as to leave a space, which is originally occupied by the bridge, filled with a material of the insulator, and wherein said insulator includes a first insulator and a second insulator wherein the first insulator is applied to the upper contacts, the lower contacts, the power plate and the grounding plate before removing the bridge while the second insulator is applied to the upper contacts, the lower contacts, the power plate and the grounding plate after the bridge is removed so as to fill the space.
2. An electrical connector comprising: a plurality of upper contacts and a plurality of lower contacts opposite to each other in a vertical direction,
said upper contacts including corresponding upper power contacts and upper grounding contacts;
said lower contacts including corresponding lower power contacts and lower grounding contacts;
a metallic power plate and a metallic grounding plate spaced from each other in a transverse direction perpendicular to said vertical direction; and
the upper contacts, the lower contacts, the power plate and the grounding plate all integrally formed within an insulator via insert-molding;
wherein in the vertical direction, the power plate is intimately sandwiched between the upper power contact and the lower power contact, and the grounding plate is intimately sandwiched between the upper grounding contact and the lower grounding contact;
wherein said power plate and said grounding plate are derived from same sheet metal;
wherein said power plate and said grounding plate are originally linked with a bridge which extends in a transverse direction perpendicular to said vertical direction and is removed by cutting before completing said insulator so as to leave a space, which is originally occupied by the bridge, filled with material of the insulator;
wherein in the vertical direction, the power plate is thicker than both the upper power contact and the lower power contact, and the grounding plate is thicker than both the upper grounding contact and the lower grounding contact; in the transverse direction, the power plate is wider than both the upper power contact and the lower power contact, and the grounding plate is wider than both the upper grounding contact and the lower grounding contact.