The present invention relates to lamps. In particular the invention relates (not exclusively) to LED lamps and its components, the invention will be described in this context.
The following discussion of the background to the invention is intended to facilitate an understanding of the present invention only. It should be appreciated that the discussion is not an acknowledgement or admission that any of the material referred to was published, known or part of the common general knowledge of the person skilled in the art in any jurisdiction as at the priority date of the invention.
Early fluorescent lamp tubes are typically made of glass. As the fluorescent lamp tubes contain therein a small amount of mercury, one has to be extremely careful when taking or mounting the fluorescent lamp because leakage of the mercury within the lamp will damage the environment and may cause intoxication to a human being in contact therewith. Moreover, although the conventional fluorescent lamp is relatively cheap, it has the drawback that as a waste, there might be mercury pollution, or it may easily be broken due to its glass nature.
More recently, improved fluorescent lamp adopts light-emitting diode (LED) for illumination with a structure identical to the design of the earlier fluorescent lamps so as to adapt to the earlier lamp holders, i.e. retrofitting.
With reference to
However, current LED lamp tubes have at least the following drawbacks:
The present invention seeks to provide a lamp that alleviates the above mentioned drawbacks at least in part.
This invention aims at providing a lamp tube comprising a tube body, a circuit board and two end covers, the lamp tube facilitates a user to utilize a simple inserting action to form a reliable electrical conductive contact, whose circuit board and tube body are operable to rotate 360 degrees relative to the end covers to adjust the effects provided at different illuminating angles, thereby enhancing the overall usability.
In accordance with a first aspect of the invention there is a lamp tube, comprising a tube body, an inner side of said tube body being provided with a positioning slot; two end covers respectively disposed at two ends of said tube body, each of said end covers being provided with two electrical terminals, and an inner side of each of said end covers being provided with an electrically conducting terminal, said electrically conducting terminal being connected to said electrical terminals; and a circuit board disposed in said positioning slot, said circuit board being provided at each of two ends with a socket for insertion by said electrically conducting terminal of said end cover operable to form an electrical conduction therewith.
Preferably the tube body is formed at a lower edge thereof with a plurality of heat-dissipating fins.
Preferably said end cover and said tube body are combined through a protruding-rib-and-ring-furrow configuration.
Preferably the electrical terminal and the electrically conducting terminal of the end cover are integrally fabricated. This facilitates ease of moulding and reliable conduction of electricity between the electrical terminal and electrically conducting terminals even when the tube body is rotated relative to the end cover.
Preferably each socket comprises a connecting seat; said connecting seat provided with a housing, said housing comprises at least one inserting slot, said inserting slot being provided therein with a terminal and an electrically conducting plate that is connected to said terminal, said electrically conducting plate extending to a side edge of said housing for electrical connection with said circuit board, said inserting slot being for insertion by said electrically conducting terminal of said end cover to form a conduction therewith.
Preferably the electrically conducting plate extends outwardly from a bottom portion of said housing, said bottom portion of said housing being provided with at least one positioning post, said circuit board being provided with at least one positioning hole for receiving said positioning post.
Preferably the lamp tube comprises a sliding positioning structure disposed between said lamp tube and each of said end covers, said sliding positioning structure being provided with at least one protruding rib and a ring furrow capable of receiving said protruding rib so that said lamp tube and each of said end covers can be secured in position.
Preferably, the protruding rib is provided at an inner surface of each of said end covers, and said ring furrow is provided at an outer surface of said lamp tube proximate to each of two ends thereof. Such an end cover is easy to be moulded.
Alternatively, the protruding rib is provided at an outer surface of said lamp tube proximate to each of two ends, and said ring furrow is provided at en inner surface of each of said end covers.
In accordance with a second aspect of the invention there is an end cover for use with a tube body to form a lamp tube; said end cover being provided with two electrical terminals, and an inner side of each of said end cover being provided with an electrically conducting terminal, said electrically conducting terminal being integrally fabricated with the two electrical terminals; wherein the electrically conducting terminal is arranged to be inserted into a tube body; the tube body comprising a corresponding socket for insertion by the electrically conducting terminal of said end cover to form an electrical conduction therewith.
In accordance with a third aspect of the invention there is a circuit board for disposal within a lamp body comprising a tube body and two end covers, the circuit board being provided at each of two ends with a socket for insertion by an electrically conducting terminal of said end cover to form an electrical conduction therewith.
In accordance with a fourth aspect of the invention there is a socket for use with the circuit board of the third aspect of the invention, the socket comprises a connecting seat; said connecting seat being provided with a housing, said housing comprises at least one inserting slot, said inserting slot being provided therein with a terminal and an electrically conducting plate that is connected to said terminal, said electrically conducting plate extending to a side edge of said housing for electrical connection with said circuit board, said inserting slot being for insertion by said electrically conducting terminal of said end cover to form a conduction therewith.
The present invention will now be described, by way of example only, with reference to the accompanying drawing, in which:
Other arrangements of the invention are possible and, consequently, the accompanying drawings are not to be understood as superseding the generality of the preceding description of the invention.
The features of this invention can be clearly understood with reference to the drawings of this case and the detailed description of the embodiments.
In accordance with a first embodiment of the present invention there is a lamp tube 100.
At the inner side of the tube body 21 there is provided a seat body 211. The seat body 211 is provided with a positioning slot 212 for placement of the circuit board 23. In the embodiment shown in the
In normal operation, the end covers 22 are respectively disposed at the two ends of the tube body 21. Each end cover 22 is provided with at least two electrical terminals 221 for connection to an electrical source or mains (not shown). At the inner side of each end cover 22, i.e. the side which provides connection to the tube body 21 there is provided an electrical conducting terminal 222.
Electrical conducting terminal 222 comprises conducting material which should withstand a high electrical current (typically up to 2 amperes). Electrical conducting terminal 222 is shaped in a form of a rod. The electrical conducting terminal 222 is electrically connected to the electrical terminals 221, wherein the electrical terminals 221 are integrally fabricated with the electrically conducting terminal 222. The electrical terminals 221 and conducting terminal 222 may be integrally fabricated with the end cover 22 by injection moulding.
Circuit board 23 is disposed within the positioning slot 212. Each end of the circuit board 23 is provided with a socket 231, suitably mounted on the circuit board 23. The circuit board 23 may be provided with a plurality of light-emitting diodes 232. The circuit board 23 has a circuit (not shown) to electrically connect the light-emitting diodes 232. The circuit forms electrical connection with the socket 231. Each socket 231 is adapted to receive a corresponding electrical conducting terminal 222 for the receipt of electrical power. The rod-socket arrangement provides a secure and reliable electrical connection, maximizing the electrical contact in operation where the tube body 21 is rotated relative to the end covers 22. Having a dedicated electrical connector in the form of socket 231 mounted on the circuit board 23 also reduces any direct damage to the main circuit board 23 arising from wear and tear when the end cover 22 is fitted to the circuit board 23 and the tube body 21 is rotated relative to the end covers 22. Any wear and tear is thus restricted to the socket 231 and conducting terminal 222 which may be easily replaceable.
The end cover 22 and the tube body 21 may be connected through a protruding-rib-and-ring-furrow configuration. In the embodiment shown in the
Alternatively, it may be the case where the end cover 22 is provided at the inner side with a ring furrow 214 and the tube body 21 is correspondingly provided with a ring of protruding rib 223.
This invention has the following advantages as compared to a conventional lamp tube:
It is to be appreciated that Lamp tube 2 may be a LED lamp tube, such as (but not limited to) T8 LED lamp tubes.
In accordance with a second embodiment of the invention, wherein like numerals reference like parts, there is illustrated in
At the inner side of the tube body 21 there is provided a positioning slot 211 for placement of the circuit board 23.
In operation, the end covers 22 are respectively disposed at two ends of the tube body 21. Each end cover 22 is provided with two electrical terminals 221, and at the inner side of each end cover 22 there is provided an electrically conducting terminal 222. The electrically conducting terminal 222 is connected to the electrical terminals 221, wherein the electrical terminals 221 are integrally fabricated with the electrically conducting terminal 222, and is integrally fabricated with the end cover 22 by over molding.
In normal operation, the circuit board 23 is disposed within the positioning slot 212. The circuit board 23 is provided at each of two ends with a socket 231 respectively. The circuit board 23 may be provided with a plurality of light-emitting diodes 232. The circuit board 23 has a circuit (not shown) to electrically connect the light-emitting diodes 232. The circuit forms electrical connection with the socket 231.
The sliding positioning structure 240 is disposed between the tube body 21 and each end cover 22 to facilitate a secure connection between the tube body 21 and each end cover 22. The sliding positioning mechanism 240 is provided with at least one protruding rib 241 and a ring furrow 242 for receiving the protruding rib 241. The protruding rib 241 is provided at two sides with a cutting groove 243. In the second embodiment shown in the
Through directly inserting the electrically conducting terminal 222 of each end cover 22 into the socket 231 to form an electrical contact conduction, when the tube body 21 is inserted into a conventional lamp seat structure, the electrical terminals 221 and the electrically conducting terminal 222 form an electrical current loop through the socket 231 and the circuit board 23, such that the light emitting diodes 232 emit light and are lit up when electrical power is provided from the mains. In addition, through the protruding rib 241 sliding in the ring furrow 242, the tube body 21 and each end cover 22 can perform relative rotations by 360 degrees as shown in
Alternatively, the protruding rib 241 may also be disposed at an outer surface of the tube body 21 proximate to the two end sides as shown in
In accordance with the third embodiment of the invention where like numerals reference like parts there is provided a lamp tube 1000, the structural schematic diagram of which is illustrated in
At the inner side of the tube body 21 there is provided a seat body 211. The seat body 211 is provided with a positioning slot 212 for placement of the circuit board 23. In the embodiment shown in the figure, the lamp tube 21 is circular-tube shaped, and at a lower edge of the tube body 21 there are formed a plurality of heat-dissipating fins 213 for heat dissipation. In normal operation, the end covers 22 are respectively disposed at two ends of the lamp tube 21. Each end cover 22 is provided with two electrical terminals 221, and at the inner side of each end cover 22 there is provided an electrically conducting terminal 222. The electrically conducting terminal 222 is connected to the electrical terminals 221, wherein the electrical terminals 221 are integrally fabricated with the electrically conducting terminal 222, and is integrally fabricated with the end cover 22 by over molding.
In normal operation, the circuit board 23 is disposed within the positioning slot 212. The circuit board 23 is provided at each of two ends with a connecting seat 231a. The circuit board 23 may be provided with a plurality of light-emitting diodes 232. The circuit board 23 has a circuit (not shown) to electrically connect the light-emitting diodes 232. The circuit forms electrical connection with the connecting seat 231a.
The connecting seat 231a comprises a housing 233. Housing 233 is made of an electrical insulative material, for example, reinforced Polybutylene terephthalate (PBT). The reinforced PBT is able to resist heat of up to 300 degree Celsius. The housing 233 is provided with at least one inserting slot 234. The inserting slot 234 is provided inside with an electrical terminal 235 and an electrically conducting plate 236 is connected to the terminal 235 (Refer to
When the lamp tube 1000 is inserted into a conventional lamp seat structure, the electrical terminals 221 and the electrically conducting terminal 222 form an electrical current loop through the connecting seat 231a and the circuit board 23, such that the light emitting diodes 232 emit light and are lit up due to receipt of electrical power from the mains. Therefore, this embodiment utilizes a simple inserting action to assemble the end cover and the lamp tube, making it easy to assemble, easy to maintain, easy to inspect, and easy to replace components, thereby enhancing usability.
Moreover, the end cover 22 and the lamp tube 1000 may be combined through a protruding-rib-and-ring-furrow configuration as depicted in the second embodiment.
In summary, the embodiments provide a better and practical LED lamp tube which does not require screws bolts as depicted in the prior art shown in
Number | Date | Country | Kind |
---|---|---|---|
100125250 | Jul 2011 | TW | national |
100213133 | Jul 2011 | TW | national |
101200372 | Jan 2012 | TW | national |
101200373 | Jan 2012 | TW | national |
201210133522.X | May 2012 | CN | national |
201220193702.2 | May 2012 | CN | national |
201220193742.7 | May 2012 | CN | national |
201220193853.8 | May 2012 | CN | national |
This application claims priority from the following Taiwan and China patent applications: TW 100213133;TW 100125250;TW 101200372;TW 101200373;CN 201220193853.8;CN 201210133522.X;CN 201220193742.7; andCN 201220193702.2 the entire contents of which are incorporated herein by reference.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/SG2012/000248 | 7/13/2012 | WO | 00 | 4/7/2014 |