The present invention relates generally to electrical connectors and, more particularly, to a female coaxial connector assembly.
Coaxial cable connector assemblies have been used for numerous automotive applications, such as global positioning systems (GPS), infotainment systems, and air bag systems. Coaxial cables typically consist of an outer shield conductor, an inner center conductor, a dielectric, and an insulation jacket. The outer conductor and the inner conductor of the coaxial cable often electrically interface with a mating coaxial cable through socket and plug connectors. Such conventional coaxial cable connectors are known in the art.
In order to standardize various types of connectors and thereby avoid confusion, certain industry standards have been established. One of these standards is referred to as FAKRA. FAKRA is the Automotive Standards Committee in the German Institute for Standardization (in German “Deutsches Institut für Normung”, best known by the acronym DIN), representing international standardization interests in the automotive field. The FAKRA standard provides a system, based on keying and color coding, for proper connector attachment. Like socket keys can only be connected to like plug keyways in FAKRA connectors. Secure positioning and locking of connector housings is facilitated by way of a FAKRA defined catch on the socket housing and a cooperating latch on the plug housing.
The connector assemblies include an inner contact and an outer contact that provides shielding for the inner contact. The outer contact is typically manufactured from a zinc die-cast or screw machined part, which is expensive to manufacture.
A need remains for a connector assembly that may be manufactured in a cost effective and reliable manner. Additionally, a need remains for a connector assembly that may utilize less expensive parts, such as stamped and formed parts, in existing outer housings and locks made for die-cast parts.
The subject matter discussed in the background section should not be assumed to be prior art merely as a result of its mention in the background section. Similarly, a problem mentioned in the background section or associated with the subject matter of the background section should not be assumed to have been previously recognized in the prior art. The subject matter in the background section merely represents different approaches, which in and of themselves may also be inventions.
In accordance with an embodiment of the invention, a coaxial connector assembly is provided. The coaxial connector assembly includes an inner contact that is configured to terminate a center conductor of a coaxial cable, an insulative inner sleeve that holds the inner contact within it and a tubular outer contact that surrounds the inner sleeve and the inner contact. The outer contact is configured to terminate a shield braid of the coaxial cable. The coaxial connector assembly further includes an insulative cylindrical outer sleeve defining a central cavity that extends longitudinally therethrough. The outer contact is disposed within this cavity. The cavity has an opening that is configured to receive a corresponding coaxial connector. A lip on a forward end of the outer sleeve extends into the opening such that a forward edge of the outer contact is not exposed within the opening. This lip may be angled inwardly toward the opening.
The outer contact may define a lock tab that radially protrudes from an outer surface of the outer contact and the outer sleeve may also define an aperture that extends radially from the cavity to the outer surface of the outer sleeve in which this lock tab is received.
Alternatively, the outer contact may define a pair of lock tabs. Each lock tab of this pair of lock tabs protrudes from opposite sides of an outer surface of the outer contact. The outer sleeve may also define a pair of apertures. Each aperture of the pair of apertures extends radially from the cavity to the outer surface through opposite sides of the outer sleeve in which one of the pair of lock tabs is received.
The cavity may define a pair of longitudinal slots. Each slot of the pair of slots extends radially through opposite sides of the outer sleeve and each slot is intermediate the pair of apertures. The pair of slots is configured to allow sides of the outer sleeve to flex outwardly.
The coaxial connector assembly may further include a connector housing in which the outer sleeve is received. The connector housing inhibits the sides of the outer sleeve from flexing outwardly.
In accordance with another embodiment of the invention, a female coaxial connector assembly is provided. The female coaxial connector assembly includes an inner contact that is configured to terminate a center conductor of a coaxial cable, an inner sleeve formed of a first dielectric material and holding the inner contact, and a tubular outer contact that is formed from a flat work piece. The outer contact surrounds the inner sleeve and the inner contact. The outer contact is configured to terminate a shield braid of the coaxial cable. The female coaxial connector assembly also includes a cylindrical outer sleeve that is formed of a second dielectric material. The outer sleeve defines a longitudinal cavity that extends therethrough. The outer contact is disposed within this cavity. The cavity has an opening that is configured to receive a corresponding male coaxial connector. A lip on a forward end of the outer sleeve is angled inwardly toward the opening and extends into the opening such that a forward edge of the outer contact is not exposed within the opening.
A lock tab may be formed in the flat work piece. The lock tab radially protrudes from the outer contact. The outer sleeve may also define an aperture that extends radially from the cavity to the outer surface of the outer sleeve in which this lock tab is received.
Alternatively, a pair of lock tabs may be formed in the flat work piece. Each lock tab of the pair of lock tabs protrudes from opposite sides of the outer contact. The outer sleeve may also define a pair of apertures. Each aperture of the pair of apertures extends radially from the cavity to the outer surface through opposite sides of the outer sleeve in which one of the pair of lock tabs is received. A rearward edge of the lock tab engages a forward edge of the aperture, thereby inhibiting removal of the outer contact from the outer sleeve.
The outer sleeve may define a pair of slots that extend longitudinally from a rearward flange of the outer sleeve. Each slot of the pair of slots extends radially through opposite sides of the outer sleeve. Each slot is located intermediate the pair of apertures. The pair of slots is configured to allow sides of the outer sleeve to flex outwardly when a forward surface of the lock tabs engages the rearward flange of the outer sleeve.
The female coaxial connector may further include a connector housing in which the outer sleeve is received. The connector housing inhibits the sides of the outer sleeve from flexing outwardly, thereby retaining the pair of lock tabs within the pair of apertures.
The present invention will now be described, by way of example with reference to the accompanying drawings, in which:
Presented herein is a description of a coaxial connector assembly configured to terminate a shielded coaxial cable and suitable for use in automotive applications.
The coaxial connector 12 also includes an outer contact 24 that is configured to hold the inner contact 16 and inner sleeve 18. The outer contact 24 is formed from a flat sheet of electrically conductive material (not shown) and folded into first and second barrel sections 24a, 24b that are substantially oriented at right angles to one another. The outer contact 24 is also formed from a sheet of an electrically conductive material and also may be plated. The first barrel section 24a extending longitudinally (e.g. along an X axis) is configured to receive the inner sleeve 18 containing the inner contact 16. The second barrel section 24b extending vertically (e.g. along a Z axis) is configured to receive the coaxial cable 14 and attach to the shield conductor 28 of the coaxial cable 14 by a tubular ferrule 26 crimped to the outer contact 24. The outer contact 24 is formed of an electrically conductive material to provide electrical continuity between the shield conductor 28 of the coaxial cable 14 and an outer contact (not shown) of the corresponding mating male coaxial connector assembly.
The outer contact 24 is held within an insulative outer sleeve 30 that snaps into a connector housing 32. This connector housing 32 is configured to receive a corresponding connector housing of the mating male coaxial connector assembly. The connector housing 32 further includes a connector position assurance (CPA) device 34. This assembly 10 may conforming with the FAKRA standard.
FAKRA connectors are radio frequency (RF) connectors that have an interface that complies with the standard for a uniform connector system established by the FAKRA automobile expert group. The FAKRA connectors have a standardized keying system and locking system that fulfill the high functional and safety requirements of automotive applications. The FAKRA connectors are based on a subminiature version B connector (SMB connector) and feature snap on coupling. FAKRA connectors are designed to provide either 50 Ohm or 75 ohm impedance. The coaxial connector 12 may utilize other types of connectors other than the FAKRA connectors described herein.
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The connector housing 32 is illustrated in detail in
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While the assembly 10 in the illustrated example is a right angle or 90° configuration between the coaxial cable 14 and the outer and inner contacts, other embodiments may be envisioned in which the coaxial connector is in a straight or 180° configuration or is in any other angular confirmation.
Further, while the assembly 10 shown herein is referred to as a female coaxial connector assembly because it includes a female socket inner contact 16, other embodiments may be envisioned in which the assembly 10 includes a male pin inner contact.
Accordingly, a coaxial connector assembly 10 is provided. The assembly 10 includes an outer sleeve 30 that holds a coaxial connector 12 within a connector housing 32. This outer sleeve 30 has a lip 40 at the forward end 42 that guides an outer contact of a mating coaxial connector into the outer contact 24 of the coaxial connector 12. The lip 40 also covers the forward edge 44 of the outer contact 24 of the coaxial connector 12 which prevents stubbing (i.e. butting contact) of the outer contacts as they are mated. The connector housing 32 also includes primary and secondary locking features to secure the outer sleeve 30 holding the coaxial connector 12 within the connector housing 32. This assembly 10 may be configured to meet the FAKRA connector standards.
While this invention has been described in terms of the preferred embodiments thereof, it is not intended to be so limited, but rather only to the extent set forth in the claims that follow. Moreover, the use of the terms first, second, primary secondary, etc. does not denote any order of importance, but rather the terms first, second, etc. are used to distinguish one element from another. Furthermore, the use of the terms a, an, etc. do not denote a limitation of quantity, but rather denote the presence of at least one of the referenced items.
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