LAMP DESIGN WITH LED STEM STRUCTURE
20200109825 ยท 2020-04-09
Assignee
Inventors
- Peter ZALKA (Budapest, HU)
- Ede DOLEZSAR (Budapest, HU)
- Mate Imre KOVACS (Budapest, HU)
- Zoltan HARANGOZO (Budapest, HU)
- Peter RONA (Budapest, HU)
Cpc classification
F21K9/90
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/232
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/0625
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/0615
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/049
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21K9/90
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An LED light bulb includes a stand, a plurality of LED light sources supported by the stand and arranged along edges of at least two geometric shapes, and an envelope enclosing the stand and the plurality LED light sources. A method of assembling an LED light bulb includes arranging a plurality of LED light sources along edges of at least two geometric shapes, supporting the arrangement of LED light sources on a stand, and enclosing the plurality of LED light sources and the stand within an envelope.
Claims
1. An LED light bulb comprising: a stand comprising multiple frames, wherein each frame includes consecutive alternating segments of electrically conductive material for supplying power and electrically insulating material; a plurality of filament LED light sources comprising a first set of filament LED light sources and a second set of filament LED light sources arranged along outer edges of at least two virtual geometric shapes, wherein each virtual geometric shape including a cuboid, pyramid, or prism, and the first set of filament LED light sources are arranged along separate outer edges of a first virtual geometric shape and the second set of filament LED light sources are arranged along separate outer edges of a second virtual geometric shape of the at least two virtual geometric shapes wherein the at least two virtual geometric shapes are in contact with one another and one frame is connected to respective ends of the plurality of filament LED light sources and another frame is connected to opposite ends of the respective ends of the plurality of filament LED light sources; and an envelope enclosing the stand and the plurality of filament LED light sources.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The foregoing and other aspects of the disclosed embodiments are made more evident in the following Detailed Description, when read in conjunction with the attached Drawing Figures, wherein:
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DETAILED DESCRIPTION
[0031] The disclosed embodiments are directed to embodiments that utilize one or more arrangements of the LED light sources for providing consistent, even light.
[0032]
[0033] The base may further include a power supply 110 and a base connector 112. The base connector 112 may include electrical contacts, for example contacts 114, 116, for supplying electrical power to power supply 110. In at least one embodiment, contact 114 may be a threaded contact and contact 116 may be a button contact forming a standard Edison base connector. Contacts 114, 116 may connect power supply 110 to a standard 120V or 230V A.C. mains supply or any other suitable external power source. While an E26 base connector is illustrated, it should be understood that the disclosed embodiments may include any E style connector, for example, E11, E12, E17, any bayonet, screw, single or double contact, or mogul connector, or any base connector suitable for use with the disclosed embodiments.
[0034] Power supply 110 may include circuitry for conditioning the power provided by contacts 114, 116 for use by the LED light sources 106. In one or more aspects, the power supply 110 may include power conditioning, power conversion, power regulation, power factor correction, polarity correction, or other circuitry as required to adapt power from the external power source to drive the LED light sources 106. In at least one embodiment, power supply 110 may include a rectifier for rectifying an input of 120V or 230V A.C., a DC-DC converter, and filtering components for providing a constant current to the LED light source 106.
[0035] Envelope 104 may generally enclose the LED light sources 106 and may be constructed of glass, plastic, translucent ceramic, or other suitable material for transmitting light. While an A type envelope is shown, it should be understood that the disclosed embodiments may include AR, B, BR, C, E, ER, G, K, MB, MR, PAR, R, S, T, or any suitable envelope shape. For example, A refers to a classic Edison envelope, B refers to a candle shaped envelope, G refers to a globe shaped envelope, R refers to a reflector envelope, and T refers to a tube shaped envelope. However, the disclosed embodiments may utilize any appropriate envelope profile. At least one surface of envelope 104 may inherently diffuse light or may include a partial coating, frosting, texturing, a light diffusing coating, embedded light scattering particles, may be sandblasted, or may include other material for diffusing light. The envelope 104 may be vacuum sealed and filled with a gas, for example, hydrogen, helium, argon, nitrogen, halogen, xenon, krypton, or any other suitable gas.
[0036] The stand arrangement 108 generally includes a first frame 118 at a first end 120 of the LED light sources 106 and a second frame 122 at a second end 124 of the LED light sources 106. The first and second frames 118, 122 may be connected by a support member 126. Alternately, the first and second frames may be supported independently, using separate support members 128, 130. While some of the disclosed embodiments are described as having two frames or four frames, it should be understood that any number of frames may be utilized to provide mounting points for the LED light sources 106. In some embodiments, support members 128, 130 may provide an electrical connection between the power supply 110 and the LED light sources 106. Support members 126, 128, 130 may be embedded in a stem 132 which may be made of glass or any other suitable material.
[0037]
[0038] In this embodiment, the LED light sources 206A-206D may be supported on two frames, with a first end of LED light sources 206A-206D supported on a first frame 210, and a second end of LED light sources 206A-206D supported on a second frame 212. The first and second frames 210, 212 may include consecutive segments of electrically conductive material 214 and electrically insulating material 216. Different configurations of the electrically conductive segments 214 and electrically insulating segments 216 may be arranged to provide different power distributions to the plurality of light sources 206A-206D. For example, the electrically conductive segments 214 and electrically insulating segments 216 may be arranged to provide power to the LED light sources 206A-206D in parallel, in series, or in different combinations of parallel and series configurations.
[0039] The virtual geometric shapes may be interleaved in that they are positioned within each other. In this exemplary embodiment, the LED light sources 206A and 206B and LED light sources 206C and 206D may be arranged along a plurality of edges of virtual interleaved pyramids with LED light sources 206A and 206B arranged along a plurality of edges of virtual pyramid 218, and LED light sources 206C and 206D arranged along a plurality of edges of virtual pyramid 220. While the virtual pyramids 218, 220 may be illustrated as facing in opposite directions and having a common axis, it should be understood that the virtual pyramids may be arranged on different axes, and may face the same or other different directions. Furthermore, while the arrangement of
[0040]
[0041]
[0042]
[0043]
[0044]
[0045] The disclosed embodiments provide structures and techniques for arranging LED light sources in different configurations. Various modifications and adaptations may become apparent to those skilled in the relevant arts in view of the foregoing description, when read in conjunction with the accompanying drawings. However, all such and similar modifications of the teachings of the disclosed embodiments will still fall within the scope of the disclosed embodiments.
[0046] Furthermore, some of the features of the exemplary embodiments could be used to advantage without the corresponding use of other features. As such, the foregoing description should be considered as merely illustrative of the principles of the disclosed embodiments and not in limitation thereof.