US 11,855,394 B2
Electrical plug connector and electrical connecting arrangement
Willem Blakborn, Inzell (DE)
Assigned to Rosenberger hochfrequenztechnik GmbH & Co. KG, Fridolfing. (DE)
Filed by Rosenberger Hochfrequenztechnik Gmbh & Co. KG, Fridolfing (DE)
Filed on Jun. 24, 2021, as Appl. No. 17/357,475.
Claims priority of application No. 20181901 (EP), filed on Jun. 24, 2020.
Prior Publication US 2021/0408740 A1, Dec. 30, 2021
Int. Cl. H01R 24/60 (2011.01); H01R 13/6587 (2011.01); H01R 13/66 (2006.01)
CPC H01R 24/60 (2013.01) [H01R 13/6587 (2013.01); H01R 13/6658 (2013.01)] 21 Claims
OG exemplary drawing
 
1. An angled electrical plug connector comprising:
an insulating part that has a first end and a second end, and the insulating part defines an angle between the first end and the second end;
an inner-conductor contact element pair for differential signal transmission, and wherein the inner-conductor contact element pair comprises,
a first inner-conductor contact element, and a second inner-conductor contact element, and wherein the first inner-conductor contact element and the second inner-conductor contact element each extend through the angled insulating part from the first end of the angled insulating part, and through the angle, to the second end of the angled insulating part; and wherein
the first and second inner-conductor contact elements, in a region proximate the first end of the angled insulating part, each have a contact section for contacting an inner conductor of a corresponding counterpart plug connector; and
the first inner-conductor contact element and the second inner-conductor contact element in a region proximate the second end of the angled insulating part, each have a press-in pin for pressing into a metal-plated recess defined in an electrical assembly; and wherein
the first inner-conductor contact element, and the second inner-conductor contact element each define a single centerline that extends from the contact section of the respective inner-conductor contact element through the press-in pin of the respective inner-conductor contact element; and wherein
the first and second inner-conductor contact elements each have exactly one support shoulder via which a pressing-in force that is required for pressing of each press-in pin into the metal-plated recess can be introduced; and wherein
the exactly one support shoulder is proximate the press-in pin and is laterally displaced from the single centerline of each of the first and second inner-conductor contact elements so that the pressing-in force applied to the exactly one support shoulder acts parallel to the single centerline but not along the single centerline; and wherein
the first and second inner-conductor contact elements each have a support surface which is averted from the exactly one support shoulder so that each of the first and second inner-conductor contact elements is supported in the angled insulating part; and wherein
the first inner-conductor contact element and the second inner-conductor contact element are each angled such that the contact section of the first inner-conductor contact element is angular relative to the press-in pin of the first inner-conductor contact element, and the contact section of the second inner-conductor contact element is angular relative to the press-in pin of the second inner-conductor contact element respectively; and wherein
the exactly one support shoulder of the first inner-conductor contact element and the exactly one support shoulder of the second inner-conductor contact element point in opposite directions.