LED strip connector system
10443831 ยท 2019-10-15
Inventors
Cpc classification
F21Y2103/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V15/015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R13/5219
ELECTRICITY
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/15
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R13/52
ELECTRICITY
F21S45/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/15
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V15/015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An LED strip connector system for providing secure electrical and mechanical connection between LED strips comprising a male socket end, a female socket end, a locking mechanism, a gasket, a wired housing, and an end cap. The locking mechanism consists of a clip and clip catch and provides a detachable, secure, vibration-resistant mechanical connection between strips. The gasket is made of an elastic, impermeable material and is configured and positioned to establish a moisture-resistant seal between connectors, protecting the electrical connection from environmental moisture. The wired housing connects a female socket end to a power cord. The end cap protects the exposed contacts of an open socket.
Claims
1. An apparatus for coupling light emitting diode (LED) strips to each other or to a power source, comprising: a male socket; a female socket; a locking mechanism catch located on an upper surface of the male socket; a locking mechanism clip arm located on the upper surface of the female socket, the locking mechanism clip arm and locking mechanism catch, when engaged, adapted to securely couple the male socket to the female socket; a gasket disposed between one of the male socket or the female socket, wherein such gasket is made of an elastic impermeable material; a wired housing adapted to receive the male socket, the wired housing comprising: a housing being made of a dielectric or insulating material, defining a front face as facing said female socket, a rear face opposite said front face, and an upper surface adjacent to the upper surface of said female socket, and being divided into a forward section and a rearward section; said forward section having a cuboid shape and being joined to said rearward section at an intermediate point, and said rearward section having on its rear face a narrow opening and being smoothly tapered between said intermediate point and said narrow opening; a wired housing male connection interface located on said forward section front face and comprising an extruded subsection of said front face for receiving the male socket wherein the four prongs of the male socket extend from said extrusion; and a notch within the housing dimensioned to receive the male socket locking mechanism catch.
2. The apparatus in accordance with claim 1, further comprising an end cap, the end cap comprising: a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said female socket, a rear face opposite said front face, and upper and lower surfaces between said front and rear faces; and an end cap connection interface being located on said end cap front face and comprising an extruded subsection of said front face, said extruded subsection having a slot set therein, said slot having a rectangular shape.
3. The apparatus in accordance with claim 2, further comprising a locking mechanism catch being a notch or ridge within or on said end cap upper surface, said catch for receiving a locking mechanism clip arm lip extending from the locking mechanism clip arm.
4. The apparatus in accordance with claim 1 wherein said male socket comprises: a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said female socket, a rear face opposite said front face, and upper and lower surfaces between said front and rear faces; a male connection interface being located on said male socket front face and comprising an extruded subsection of said front face and four prongs extending from said extrusion arranged linearly, said prongs being made of a conductive material; and the locking mechanism catch being a notch or ridge integrated on said male socket upper surface, said locking mechanism catch for receiving a lip extending downward from the locking mechanism clip arm of the female socket.
5. The apparatus in accordance with claim 1 wherein said female socket comprises: a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said male socket front face, a rear face opposite said female socket front face, and upper and lower surfaces between said female socket front face and female socket rear face; a female connection interface being located on said female socket front face and comprising a recessed subsection of said female socket front face and four apertures arranged linearly; said apertures being within said recessed subsection; said female connection interface being configured to receive said male connection interface; and said locking mechanism clip arm being flexibly coupled in a generally orthogonal position to a locking mechanism clip pivot point extending from said female socket housing upper surface, the locking mechanism clip arm having on an end thereof proximate the male socket, a clip arm lip configured to engage the locking mechanism catch, and when engaged, said male socket and said female socket being secured when mated.
6. The apparatus in accordance with claim 5 wherein said prongs have a length of between 2 millimeters and 6 millimeters.
7. The apparatus in accordance with claim 1 wherein the distance between a rear face of the male socket and a rear face of the female socket is in the range 5 millimeters and 12 millimeters when said male socket and said female socket are mated.
8. The apparatus in accordance with claim 1 wherein said gasket is configured and positioned such that it provides a seal between the male socket and the female socket.
9. The apparatus in accordance with claim 8 wherein said gasket is made of rubber.
10. The apparatus in accordance with claim 9 wherein said gasket is made of a material selected from the group consisting of silicone and plastic polymer.
11. An apparatus for coupling light emitting diode (LED) strips to each other or to a power source, comprising: a male socket; a female socket; a locking mechanism catch located on an upper surface of the male socket; a locking mechanism clip arm located on the upper surface of the female socket, the locking mechanism clip arm and locking mechanism catch, when engaged, adapted to securely couple the male socket to the female socket; a gasket disposed between one of the male socket or the female socket; an end cap, the end cap comprising: a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said female socket, a rear face opposite said front face, and upper and lower surfaces between said front and rear faces; an end cap connection interface being located on said end cap front face and comprising an extruded subsection of said front face, said extruded subsection having a slot set therein, said slot having a rectangular shape; and a locking mechanism catch being a notch or ridge within or on said end cap upper surface, said catch for receiving a locking mechanism clip arm lip extending from the locking mechanism clip arm.
12. The apparatus in accordance with claim 11 wherein said gasket is configured and positioned such that it provides a seal between the male socket and the female socket.
13. The apparatus in accordance with claim 12 wherein said gasket is made of an elastic impermeable material.
14. The apparatus in accordance with claim 13 wherein said gasket is made of rubber.
15. The apparatus in accordance with claim 13 wherein said gasket is made of silicone.
16. The apparatus in accordance with claim 13 wherein said gasket is made of a plastic polymer.
17. An apparatus for coupling light emitting diode (LED) strips to each other or to a power source, comprising: a male socket; a female socket; a locking mechanism catch located on an upper surface of the male socket; a locking mechanism clip arm located on the upper surface of the female socket, the locking mechanism clip arm and locking mechanism catch, when engaged, adapted to securely couple the male socket to the female socket; a gasket disposed between one of the male socket or the female socket; an end cap, the end cap comprising: a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said female socket, a rear face opposite said front face, and upper and lower surfaces between said front and rear faces; an end cap connection interface being located on said end cap front face and comprising an extruded subsection of said front face, said extruded subsection having a slot set therein, said slot having a rectangular shape; and a locking mechanism catch being a notch or ridge within or on said end cap upper surface, said catch for receiving a locking mechanism clip arm lip extending from the locking mechanism clip arm; wherein said male socket comprises: a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said female socket, a rear face opposite said front face, and upper and lower surfaces between said front and rear faces; a male connection interface being located on said male socket front face and comprising an extruded subsection of said front face and four prongs extending from said extrusion arranged linearly, said prongs being made of a conductive material; and the locking mechanism catch being a notch or ridge integrated on said male socket upper surface, said locking mechanism catch for receiving a lip extending downward from the locking mechanism clip arm of the female socket; and wherein said female socket comprises: a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said male socket front face, a rear face opposite said female socket front face, and upper and lower surfaces between said female socket front face and female socket rear face; a female connection interface being located on said female socket front face and comprising a recessed subsection of said female socket front face and four apertures arranged linearly; said apertures being within said recessed subsection; said female connection interface being configured to receive said male connection interface; and said locking mechanism clip arm being flexibly coupled in a generally orthogonal position to a locking mechanism clip pivot point extending from said female socket housing upper surface, the locking mechanism clip arm having on an end thereof proximate the male socket, a clip arm lip configured to engage the locking mechanism catch, and when engaged, said male socket and said female socket being secured when mated.
18. The apparatus in accordance with claim 17 wherein said prongs have a length of between 2 millimeters and 6 millimeters.
19. The apparatus in accordance with claim 18 wherein the distance between a rear face of the male socket and a rear face of the female socket is in the range 5 millimeters and 12 millimeters when said male socket and said female socket are mated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For a better understanding of the present invention including the features, advantages and specific embodiments, reference is made to the following detailed description along with accompanying Figures, in which:
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DETAILED DESCRIPTION
(13) While the making and using of the disclosed embodiments of the present invention is discussed in detail below, it should be appreciated that the present invention provides many applicable inventive concepts which can be embodied in a wide variety of specific contexts. some features of the preferred embodiments shown and discussed may be simplified or exaggerated for illustrating the principles of the invention.
(14) Reference will now be made in detail to the preferred embodiment of the present invention.
(15) Referring to
(16) Referring to
(17) Referring to
(18) Referring to
(19) Referring to
(20) To assemble the LED strip connector, referring to
(21) The invention further comprises a connector having a male socket and a second socket connecting a first string of electronic elements to a second string of electronic elements. The male socket is adapted to be coupled to a first string of electronic elements, the male socket further comprising a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said female socket, a rear face opposite said front face, and upper and lower surfaces between said front and rear faces; a male connection interface being located on said male socket front face and comprising an extruded subsection of said front face and four prongs extending from said extrusion arranged linearly, said prongs being made of a conductive material; and a locking mechanism notch or ridge within or on said male socket upper surface, said notch or ridge for receiving a locking mechanism clip arm lip extending from the locking mechanism clip arm.
(22) The female socket is coupled to a second string of electronic elements wherein said female socket further comprises a housing having a cuboid shape and being made of an insulated or dielectric material, defining a front face as facing said male socket front face, a rear face opposite said female socket front face, and upper and lower surfaces between said female socket front face and female socket rear face, and a female connection interface being located on said female socket front face and comprising a recessed subsection of said female socket front face and four apertures arranged linearly, said apertures being within said recessed subsection. The female connection interface is configured to receive said male connection interface.
(23) The locking mechanism clip arm is flexibly coupled in a generally orthogonal position to a locking mechanism clip pivot point extending from said female socket housing upper surface, the locking mechanism clip arm having on an end thereof proximate the male socket a clip arm lip configured to catch the locking mechanism notch or ridge such that, when caught, said male socket and said female socket are thus secured when mated. A gasket is adapted to be disposed between the male socket and the female socket.
(24) In an embodiment, the first string of electronic elements is a strip of light emitting diodes (LEDs). In a further embodiment, the second string of electronic elements is a strip of light emitting diodes (LEDs). In a further embodiment, either the first string or the second string of electronic elements is a power cord. The gasket is configured and positioned such that it provides a seal between the male socket and the female socket and is made of an elastic impermeable material. The gasket can be made of a material selected from the group consisting of rubber, silicone, plastic polymer, and other suitable elastomer.
(25) In an embodiment, the male socket prongs have a length of between 2 millimeters and 6 millimeters, preferably between 3.5 millimeters and 4.5 millimeters and the distance between the rear face of the male socket and the rear face of the female socket is between 5 millimeters and 12 millimeters when said male socket and said female socket are mated, preferably the distance between the rear face of the male socket and the rear face of the female socket is between 8 millimeters and 9 millimeters when said male socket and said female socket are mated.
(26) The embodiments shown and described above are only exemplary. Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description together with details of the connectors of the present invention, the disclosure is illustrative only and changes may be made within the principles of the invention to the full extent indicated by the broad general meaning of the terms used herein. Various alterations, modifications and substitutions can be made to the disclosed invention without departing in any way from the spirit and scope of the invention.