IP Library › Granted Patent US 11,158,984
Granted Patent B2
US 11,158,984 · App. 16/265,418 · Granted Oct 26, 2021

RF connector with low passive intermodulation

Inventors: Martin Graßl (Erding, DE); Torsten Smyk (Westerham, DE)
H01R24/52H01R13/111H01R13/631H01R24/44H01R2103/00
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Quick Facts
Patent No.
US 11,158,984
App. No.
16/265,418
Granted
Oct 26, 2021
Kind
B2
Abstract

A coaxial connector includes a center conductor and an outer conductor coaxial with the center conductor. The outer conductor has a cylindrical shape with slits forming a plurality of spring loaded contact elements. The connector further has a base for mounting the coaxial connector and an outer housing. To improve passive intermodulation characteristics, the base, the slotted outer conductor and the outer housing are monolithically made in one piece.

Claims (27)

1. A radio-frequency (RF) connector comprising:

a stand-alone socket female connector that includes:

a center conductor of the socket connector having a first center axis of the socket connector, an outer surface of the center conductor contacting air,

an outer conductor of the socket connector coaxial with said center conductor, wherein the outer conductor of the socket connector is dimensioned to have a cylindrical shape with slits that form a plurality of spring-loaded contact elements of the outer conductor of the socket connector,

an outer housing portion forming an integral part with the outer conductor,

a base that is dimensioned to removably mount the stand-alone socket connector to an auxiliary component,

wherein the base is defined by a generally flat flange and a cylindrical protrusion from the generally flat flange to mount the generally flat flange of the base directly to the auxiliary component,

wherein said protrusion:

has an outer dimension smaller that an outer dimension of the flange;

is separated from the outer conductor by the flange;

extends along the first center axis; and

terminates the base on a side opposite to the outer conductor;

wherein said spring-loaded contact elements of the outer conductor are not pressed forming a press fit, nor soldered, nor welded into the base.

2. The RF connector according to claim 1 ,

wherein the outer housing and the base form an integral part and a front surface of the base that face the outer housing is either flat or contains an annular groove, formed circumferentially about the first center axis, and

when the front surface is flat, the base includes openings therethrough configured to mount the stand-alone socket connector to the auxiliary component, and the outer housing includes a first outer thread disposed around the plurality of spring-loaded contact elements of the outer conductor, and

when the front surface includes said annular groove,

the groove has a radius that is greater than a radius of the outer housing with respect to the first center axis, and

the outer housing comprises a second outer thread that is formed next to the front surface of the flange and that is separated from the first outer thread.

3. The RF connector according to claim 2 , wherein, when the front surface include said annular groove, a portion of the front surface outside of the groove is configured as a bearing surface to be brought in contact with the auxiliary component to mount the stand-alone socket connector to the auxiliary component between the bearing surface and a nut threaded onto the second outer thread.

4. The RF connector according to claim 1 , further comprising

a plug connector that has an outer conductor of the plug connector and a second center axis, and dimensioned to be mechanically mated with the socket connector;

wherein the socket connector includes a mechanical contact surface at a right angle to the first center axis and distant from the spring-loaded contact elements to define a spatial relationship of the socket connector and the plug connector element in a direction of the first center axis of the socket connector, when the socket connector and the plug connector are mated with one another, and

at least one precision centering means of the plug connector, said at least one precision means i) dimensioned to make the second center axis of the plug connector coincide with the first center axis of the socket connector when the socket connector and the plug connector are mated with one another.

5. The RF connector according to claim 4 , wherein

an outer conductor of the plug connector has a cylindrical outer contour thereof configured as at least one precision centering means of the plug connector and precision machined to geometrically match to at least one precision centering means of the socket connector.

6. The RF connector according to claim 4 , wherein the socket connector has at least one precision centering means has a cylindrical inner contour which is precision machined to geometrically match to the at least one precision centering means of the plug connector.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2019
From: GRASSL, MARTIN; SMYK, TORSTEN
To: SPINNER GMBH
Reel/Frame 049691/0898 →
Priority Claims (1)
EP 16182830.6 · Aug 4, 2016 · regional
Continuity (2)
Continuation PCTEP2017069641 · Aug 3, 2017
Related Publication 20190165524A1 · May 30, 2019
Cited By (2)
US 12,614,883 US 12,725,956