IP Library Granted Patent US 12665353
Granted Patent B2
US 12665353 · App. 17/924,385 · Granted Jun 23, 2026

Plug-in connector for symmetrical signal transmission

Inventors: Sebastian Stamm (Brakel, DE); Thomas Kaps (Vlotho, DE); Karsten Krome (Detmold, DE)
Assignee: PHOENIX CONTACT GMBH & CO. KG
H01R13/6476H01R13/506H01R31/06H01R13/64H01R2103/00
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Quick Facts
Patent No.
US 12665353
App. No.
17/924,385
Granted
Jun 23, 2026
Kind
B2
Abstract

A plug connector for symmetrical signal transmission includes: at least two connection contacts on a connection side of the plug connector; at least two plug contacts on a plugging side of the plug connector on an opposite side to the connection side; at least two conductors, each of which connects one connection contact to one of the plug contacts in an electrically conductive manner; and a dielectric enclosure of the at least two conductors, the dielectric enclosure having at least one clearance between the conductors.

Claims (95)

1 . A plug connector for symmetrical signal transmission, comprising:

at least two connection contacts on a connection side of the plug connector;

at least two plug contacts on a plugging side of the plug connector on an opposite side to the connection side;

at least two conductors, each of which is configured to connect one connection contact to one of the plug contacts in an electrically conductive manner; and

a dielectric enclosure of the at least two conductors, the dielectric enclosure having at least one clearance between the conductors,

wherein the dielectric enclosure is resilient in a first transverse direction transverse to a longitudinal direction of the at least two conductors, with the clearance deforming and/or with the at least two conductors bending.

2 . The plug connector of claim 1 , wherein a recess or through-opening in the dielectric enclosure encompasses the clearance.

3 . The plug connector of claim 1 , wherein the clearance comprises a gas-tight cavity.

4 . The plug connector of claim 1 , wherein the dielectric enclosure is integral in one piece and/or comprises an injection-molded part.

5 . The plug connector of claim 1 , wherein the dielectric enclosure extends from the connection side to the plugging side.

6 . The plug connector of claim 1 , wherein the dielectric enclosure surrounds each of the at least two conductors.

7 . The plug connector of claim 1 , wherein the dielectric enclosure surrounds each of the at least two conductors, one being on the plugging side and one on the connection side.

8 . The plug connector of claim 1 , wherein a material of the dielectric enclosure has a relative permittivity of at least 1.5 or 2 and/or of at most 8.

9 . The plug connector of claim 1 , wherein the dielectric enclosure between the conductors in a cross-section transverse to a longitudinal direction of the conductors through the clearance has an effective relative permittivity of less than 2.

10 . The plug connector of claim 9 , wherein an effective relative permittivity,

ε

r

(

eff

)

,

is determined by

ε

r

(

eff

)

=

d

j

d

j

ε

r

(

j

)

,

where d=Σ j d j is a distance between the conductors in cross-section and

ε

r

(

j

)

is a relative permittivity in the related portion of a width d j of the cross-section.

11 . The plug connector of claim 1 , further comprising:

a housing part having an inner surface and at least one latching recess in the inner surface, and a receiving opening that opens toward the inner surface and is configured to receive the dielectric enclosure in the longitudinal direction,

wherein the dielectric enclosure has a latch element which is arranged so as to slide over the inner surface, with contraction occurring in the first transverse direction, when the dielectric enclosure is received in the housing part, and to reach into the latching recess, with widening occurring in the first transverse direction, when the enclosure is in the received state in the housing part.

12 . The plug connector of claim 1 , wherein the clearance widens toward an exterior of the dielectric enclosure in a second transverse direction that is transverse to the first transverse direction and transverse to the longitudinal direction.

13 . The plug connector of claim 10 , further comprising:

a cable connected on the connection side to the at least two connection contacts in an electrically conductive manner, or a terminal of a printed circuit board,

wherein a cross-dimension of the clearance in the dielectric enclosure transverse to a longitudinal direction of the at least two conductors influences a characteristic impedance of the plug connector, the characteristic impedance being adjusted to a characteristic impedance of the cable or of the printed circuit board terminal.

14 . The plug connector of claim 13 , wherein the characteristic impedance of the plug connector is inversely proportional to a square root of the effective relative permittivity,

ε

r

(

eff

)

.

15 . The plug connector of claim 1 , wherein the symmetrical signal transmission comprises symmetrical differential signal transmission.

16 . The plug connector of claim 3 , wherein the gas-tight cavity is filled with air or a noble gas or evacuated.

17 . The plug connector of claim 6 , wherein the dielectric enclosure surrounds each of the at least two conductors, in each case at least at one point between the connection side and the plugging side or continuously between the connection side and the plugging side.

18 . The plug connector of claim 10 , wherein

ε

r

(

j

)

=

ε

r

(

Air

)

or

ε

r

(

j

)

=

1

in the portion of the cross-dimension, d j , of the clearance.

19 . The plug connector of claim 1 , wherein the dielectric enclosure is resilient in a first transverse direction transverse to the longitudinal direction of the at least two conductors, with the cross-dimension decreasing.

20 . A plug connector for symmetrical signal transmission, comprising:

at least two connection contacts on a connection side of the plug connector;

at least two plug contacts on a plugging side of the plug connector on an opposite side to the connection side;

at least two conductors, each of which is configured to connect one connection contact to one of the plug contacts in an electrically conductive manner; and

a dielectric enclosure of the at least two conductors, the dielectric enclosure having at least one clearance between the conductors,

wherein the clearance comprises a gas-tight cavity.