Light bulb base and light bulb thereof
10711950 ยท 2020-07-14
Assignee
Inventors
Cpc classification
F21V17/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2103/33
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/232
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/235
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/104
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21K9/232
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/235
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A light bulb base includes a cylinder-shaped insulating component, a cylinder-shaped base connector, a metal thimble and a heat-dissipating component. The insulating component has a jack at its first side. The base connector has a circumferential interior bore extending there through. The interior bore accommodates the insulating component at a first side of the base connector. The metal thimble inserts into the jack at its first side via the interior bore. Such that the metal thimble rivets the base connector to the insulating component. The heat-dissipating component has a first side coupled to a second side of the insulating component. The heat-dissipating component includes a first opening at its second side. The heat-dissipating component also includes a cavity chamber disposed inside the first opening.
Claims
1. A light bulb, comprising: a light bulb base, comprising: a cylinder-shaped insulating component, having a jack at its first side; a cylinder-shaped base connector, having a circumferential interior bore extending there through, and the circumferential interior bore is configured to accommodate the cylinder-shaped insulating component at a first side of the cylinder-shaped base connector; a metal thimble, configured to insert into the jack at its first side via the circumferential interior bore, such that the metal thimble rivets the cylinder-shaped base connector to the cylinder-shaped insulating component; and a heat-dissipating component, having a first side coupled to a second side of the cylinder-shaped insulating component, the heat-dissipating component comprises a first opening at its second side and comprises a cavity chamber disposed inside the first opening; an illuminating plate, disposed at the first opening of the heat-dissipating component; a lampshade, coupled to the second side of the heat-dissipating component and configured to cover the illuminating plate; and a driving circuit board, disposed within the cavity chamber, electrically coupled to the illuminating plate, and electrically coupled to the metal thimble via the jack, wherein the heat-dissipating component further comprises an inward partially-circumferential prosection at its second side; wherein the lampshade further comprises a second opening and a circumferential ring projection that surrounds the second opening, and further comprises a groove disposed on the circumferential ring projection; and wherein the groove is configured to detachably engage with the inward partial-circumferentially projection for engaging the lampshade with the heat-dissipating component.
2. The light bulb of claim 1, wherein a second side of the metal thimble is exposed for being electrically coupled to an external power source or ground.
3. The light bulb of claim 1, wherein the heat-dissipating component is further coupled to the second side of the cylinder-shaped insulating component to form an integrated structure.
4. The light bulb of claim 1, wherein the cylinder-shaped base connector further comprises a circumferential threaded external sidewall.
5. The light bulb of claim 1, wherein the cylinder-shaped base connector further comprises an internal threaded surface on a circumferential internal sidewall of the cylinder-shaped base connector; wherein the cylinder-shaped insulating component further comprises an external threaded surface; and wherein the internal threaded surface of the cylinder-shaped base connector is configured to be detachably secured with the external threaded surface of the cylinder-shaped insulating component to form a tongue-and-groove fit.
6. The light bulb of claim 1, wherein the metal thimble is a rivet.
7. The light bulb of claim 1, wherein the cylinder-shaped insulating component further comprises a lateral opening, and the cylinder-shaped base connector is further configured to be electrically coupled to the driving circuit board via the lateral opening; and wherein the lateral opening is away from the metal thimble by a distance that keeps the cylinder-shaped base connector and the metal thimble in a mutually-insulated manner.
8. The light bulb of claim 7, wherein the cylinder-shaped base connector is further electrically coupled to an external power source or ground.
9. The light bulb of claim 1, wherein a length of the groove is larger than a length of the inward partial-circumferentially projection on the circumferential ring projection.
10. The light bulb of claim 1, wherein the groove is configured to detachably engage with the partial-circumferentially projection by rotating the heat-dissipating component in a clockwise manner or in a counterclockwise manner towards the lampshade along an axial direction of the heat-dissipating component.
11. The light bulb of claim 1, wherein the lampshade is partially sphere-shaped.
12. The light bulb of claim 1, wherein the lampshade is further configured to cover the driving circuit board.
13. The light bulb of claim 1, wherein the illuminating plate further comprises a screw through-hole, the heat-dissipating component further comprises a screw hole disposed at its second side; and wherein the light bulb further comprises a screw, configured to screw through the screw through-hole and into the screw hole, for screwing the illuminating plate to the heat-dissipating component.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(6) As mentioned above, the present invention discloses a cost-effective light bulb that can be assembled in a simpler manner, in comparison to the conventional LED light bulb.
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(8) The base connector 110 has a circumferential interior bore 114 that extends through the base connector 110. The interior bore 114 is capable of accommodating the insulating component 120 at a first side of the base connector 110, which is an upper side of the base connector in view of
(9) In one example, an internal sidewall of the base connector 110 is in contact with an external surface of the insulating component 120 when the base connector 110 accommodates the insulating component 120. In one example, the internal sidewall of the base connector 110 is a threaded surface, and the external surface of the insulating component 120 is also a threaded surface. Also, in one example, the threaded internal sidewall of the base connector 110 can be detachably secured with the threaded external surface of the insulating component 120 to form a tongue-and-groove fit.
(10) The insulating component 120 has a jack 122 at its first side, which is a bottom side of the insulating component 120 in view of
(11) On top of that, the insulating component 120 provides additional physical support for the base connector 110 via the contact between the external surface of the insulating component 120 and the inner sidewall of the base connector 110. With the aid of the insulating component 120's additional support, a whole strength of the light bulb base 100 is significantly increased.
(12) In this way, the base connector 110 can be made of a conductive metal that is more flexible. In other words, the light bulb base 100 is more cost-effective by applying such flexible conductive metal in the base connector 110. Besides, the process of assembling the base connector 110 to the light bulb base 100 is getting easier and more error-tolerable. As a result, the light bulb base 100 is capable of passing external pressure tests in an easier manner because of its increased strength supported by the insulating component 120.
(13) In one example, the metal thimble 130 is exposed at its second side, which is a lower side of the metal thimble 130 in view of
(14) In one example, the metal thimble 130 is a rivet that rivets the base connector 110 to the insulating component 120.
(15) In one example, the light bulb base 100 additionally includes a heat-dissipating component 140 for dissipating heats generated by the light bulb base 100 under operation. The heat-dissipating component 140 is coupled to the insulating component 120 at its second side to the base connector 110, where the insulating component 120's second side is a top side of the insulating component 120 in view of
(16) In one example, the heat-dissipating component 140 can be coupled to the insulating component 120 to form an integrated structure. In this way, the cost and the complexity of preparing two different molds for fabricating the heat-dissipating component 140 and the insulating component 120 are significantly reduced. In other words, only one mold is required to fabricate the integrated structure that incorporates both the heat-dissipating component 140 and the insulating component 120.
(17) In one example, the base connector 110 has a circumferential external threaded surface 112 that can be electrically coupled to an external power source, which has a threaded socket for engaging with the base connector 110 on the external threaded surface. In another example, under the condition that the metal thimble 130 is also electrically coupled to another power source, one of the power sources may be a positive DC voltage source, whereas the other one power source may be a negative voltage source or a ground voltage source. In this way, the light bulb incorporating the light bulb base 100 illuminates with the aid of both the external power sources.
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(19) The light bulb includes the light bulb base 100 shown in
(20) More specifically, in one example, the heat-dissipating component 140 further includes an opening 142 at its second side and further includes a cavity chamber 144 disposed inside the opening 142.
(21) The illuminating plate 310 is disposed at the opening 142. And the illuminating plate 310 illuminates while being powered up. In one example, the illuminating plate 310 includes at least one light emitting diode arranged in various formations and/or on various locations thereon.
(22) The lampshade 320 has one side coupled to the second side of the heat-dissipating element 140, for example, the upper side as shown in
(23) The driving circuit board 330 is disposed within the cavity chamber 144. Also, the driving circuit board 330 is electrically coupled to the illuminating plate 310. In this way, the driving circuit board 330 is capable of powering up the illuminating plate 310 for illuminating purposes. Specifically, the driving circuit board 330 is also electrically coupled to the metal thimble 130 via the jack 122, as illustrated in
(24) In one example, as shown in
(25) In one example, as shown in
(26) In one example, the groove 329 is defined by at least two limiters, e.g., limiters 326 and 324 as shown in
(27) In one example, the lampshade 320 is partially sphere-shaped, as illustrated in
(28) In one example, the lampshade 320 also covers the driving circuit board 330 along with the illuminating plate 310.
(29) In one example, the illuminating plate 310 further includes at least one screw through-hole, e.g. at least one screw through-hole 510 shown in
(30) Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.