The present invention relates to a LED light bulb which is produced easily.
A light-emitting diode is driven by direct current, so a conventional light-emitting diode bulb contains a conversion circuit for converting alternating current into the direct current to drive the light-emitting diode. Since the light-emitting diode is broken at high temperature, and the light-emitting diode bulb also contains plural dissipating fins for dissipating heat of the light-emitting diode bulb to avoid a damage of the light-emitting diode bulb at the high temperature. Preferably, the light-emitting diode bulb is electrically connected with a bulb holder by using the conversion circuit.
For example, another conventional light-emitting diode bulb is disclosed in TW Patent No. I384170 and contains a dissipating casing, a metal cap, a driving circuit board, an illuminating piece, a gasket, and a lampshade. The dissipating casing includes an opening defined on a first end thereof and a connecting hole formed on a second end thereof. The metal cover is fixed on the connecting hole of the dissipating casing, and the driving circuit board is mounted in the dissipating casing and is electrically connected with the metal cap. The illuminating piece and the gasket are arranged in the opening, such that the illuminating piece is electrically coupled with the driving circuit board. A modular light emitting diode bulb is disclosed in TW Patent No. 455988 and contains: a lampshade, an illuminating plate printed an electric circuit and having plural light-emitting diode covering elements, a light cap, a bulb holder, and a driving module printed an electric circuit and electrically connected with a plurality of electronic components; wherein the illuminating plate has a female joining seat; the light cap has a first opening end, a second open end, and a screwing portion; the bulb holder has a connecting element, an insulating element, and a contacting element; the driving module has a male joining seat, a ground wire, and a live wire; the first open end of the light cap is covered on the illuminating plate, the female joining seat is in connection with the male joining seat, the ground wire contacts with the contacting element of the bulb holder, the live wire contacts with the contacting element of the bulb holder, and the contacting element is screwed with the screwing portion of the light cap.
However, the modular light emitting diode bulb is produced complicatedly and troublesomely.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide a LED light bulb which is produced easily
To obtain above objective, a LED light bulb provided by the present invention contain: a body, a circuit unit, an illumination unit.
The body includes a first shell, a second shell coupled with the first shell, an accommodating chamber defined between the first shell and the second shell, and a connecting section connected with the bulb holder.
The connecting section has a first opening and a second opening which pass through the connecting section.
The circuit unit is accommodated in the accommodating chamber and includes a driving circuit, a first electrode, and a second electrode. The first electrode is electrically connected with a first power contact in the bulb holder through the first opening, and the second electrode is electrically connected with a second power contact in the bulb holder via the second opening.
The illumination unit is electrically connected with the driving circuit.
With reference to
The first shell 11L and the second shell 11R is injection or extrusion molded from plastic material or other insulation material, and they are painted or electroplated. The first shell 11L has a first coupling face 12L, and the second shell 11R has a second coupling face 12R for coupling with the first coupling face 11L of the first shell 11L, wherein each of the first coupling face 12L and the second coupling face 12R is a flat surface, as shown in
The circuit unit 20 is mounted in the accommodating chamber 14 and includes the driving circuit 21, the driving circuit 21, and the first electrode 22, wherein the driving circuit 21 has electronic component and a printed circuit electrically connected with the electronic component, such that the driving circuit 21 transforms power source (such as transforming alternating current into direct current or transforming direct current into alternating current) and controls the power source (such as changing voltage, stabilizing voltage, and controlling constant current). The first electrode 22 is electrically connected with the first power contact in the bulb holder, and the second electrode 23 is electrically connected with the second power contact in the bulb holder, wherein the bulb holder supplies DC power or AC power. The driving circuit 21 is electrically connected with the bulb holder through the first electrode 22 and the second electrode 23, such that the DC power or the AC power of the bulb holder is transformed to drive the at least one LED element 31 to illume lights. The driving circuit 21, the first electrode 22, and the second electrode 23 are fixed on a circuit board 24, and the circuit board 24 is secured in the accommodating chamber 14 of the body 10.
The illumination unit 30 includes the at least one LED element 31 electrically connected with the circuit unit 20 for driving the at least one LED element 31 to illuminate the lights. The at least one LED element 31 is disposed on a first rim 241 (as shown in
With reference to
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A profile of the connecting section 13 matches with the bulb holder, wherein after the first shell 11L and the second shell 11R are connected together, the connecting section 13 has a first opening 131 and a second opening 132 which are elongated or circular, and the first opening corresponds to the first power contact, the second opening 132 corresponds to the second power contact. The circuit board 24 of the circuit unit 20 is mounted in the accommodating chamber 14, the first electrode 22 and the second electrode 23 of the circuit unit 20 are electroplated on the circuit board 24, the first electrode 22 of the circuit unit 20 is inserted into the first opening 131 of the connecting section 13 and exposes outside (as illustrated in
As shown in
The second electrode 23 of the circuit unit 20 is electrically connected with the fourth electrode 52 via the second opening 132 of the connecting section 13. For example, an electric wire is welded with the fourth electrode 52 or is inserted through the second opening 132 to contact with the fourth electrode 52. When the metal connector 50 is joined with the bulb holder, the third electrode 51 of the metal connector 50 is electrically connected with the first power contact, and the fourth electrode 52 of the metal connector 50 is electrically connected with the second power contact. Preferably, the metal connector 50 is replaced based on various specifications and types to cooperate with the bulb holder.
With reference to
a body 10, a circuit unit 20, an illumination unit 30, and a metal connector 50. The body 10 includes a first shell 11L, a second shell 11R coupled with the first shell 11L, a connecting section 13 arranged on a first end thereof, and an accommodating chamber 14 defined between the first shell 11L and the second shell 11R. The body 10 further includes a joining portion 17 and an accommodating chamber 14, the joining portion 17 has a first attachment portion 171 L arranged on the first shell 11L and a second attachment portion 171R arranged on the second shell 11R to couple with the first attachment portion 171L, the joining portion 17 has a second opening 132 and a mouth 18 defined on a top surface thereof, wherein the metal connector 50 is fitted with the joining portion 17 to form a connecting section 13A for connecting with the bulb holder. For instance, each of the first attachment portion 171L and the second attachment portion 171R of the joining portion 17 has threads arranged thereon so that the metal connector 50 is screwed with the joining portion 17. The circuit unit 20 is fixed in the accommodating chamber 14 and includes a driving circuit 21, a first electrode 22, and a second electrode 23, wherein the first electrode 22 is electrically connected with the third electrode 51 of the metal connector 50 through the mouth 18, and the second electrode 23 is electrically connected with the fourth electrode 52 of the metal connector 50 via the second opening 132. Furthermore, the illumination unit 30 is secured in the transparent cover 40 and is electrically in connection with the driving circuit 21.
The connecting section 13 and the metal connector 50 cooperate with the bulb holder. As shown in
While the preferred embodiments of the invention have been set forth for the purpose of disclosure, modifications of the disclosed embodiments of the invention as well as other embodiments thereof may occur to those skilled in the art. Accordingly, the appended claims are intended to cover all embodiments which do not depart from the spirit and scope of the invention.