The present invention relates to a lamp, and more particularly to an integrated lamp by integrating a passive component therewith. The present invention also relates to a light source system having such an integrated lamp.
Lamps are widely used in lighting systems such as flat panel display devices and indoor lighting devices. For example, a flat panel display device such as a liquid crystal display (LCD) has multiple cold cathode fluorescent lamps (CCFLs) as light sources. These lamps are usually driven by a driving circuit such as an inverter and the stability of the lamps is also controlled by the inverter.
Recently, as the size of the LCD device is increased, the number and the size of the lamps are both increased. In a case that the currents passing through lamps are not identical, the brightness will not be uniform. Under this circumstance, the lamps will be quickly aged and thus the use life of the lamps will be shortened. For assuming uniform brightness of the LCD device and preventing quick ageing of the lamps, additional passive components 15 are soldered on both ends of the lamps 11. The passive components 15 are for example capacitors or inductors. Each passive component 15 is electrically interconnected between a contact terminal 111 of a corresponding lamp 11 and the trace patterns or conductive wires of the substrates 12. Due to the characteristics of the passive component 15, the currents passing through all of the lamps 11 are substantially equal.
Although the passive components 15 are effective to balance the currents passing through all of the lamps 11, there are still some drawbacks. For example, since the passive components 15 are successively welded on the substrates 12 to make electrical connection between the lamps 11 and the trace patterns or conductive wires of the substrates 12, the fabricating process of the LCD device 1 is very complicated and the throughput is usually insufficient.
Therefore, there is a need of providing an integrated lamp and a light source system having such an integrated lamp so as to obviate the drawbacks encountered from the prior art.
An object of the present invention provides an integrated lamp and a power source system, in which the passive components are no longer welded on the substrates so as to simplify the fabricating process of the power source system and enhance the throughput.
In accordance with an aspect of the present invention, there is provided an integrated lamp. The integrated lamp includes a transparent tube body, a passive component and a covering part. The passive component is disposed at an end of the transparent tube body, and electrically connected to the transparent tube body. The covering part is electrically connected to the passive component and has a receptacle. The end of the transparent tube body is sheathed by the covering part such that the passive component is accommodated within the receptacle.
In accordance with another aspect of the present invention, there is provided a power source system. The power source system includes a main body, an integrated lamp and an inverter. The integrated lamp includes a transparent tube body, a passive component and a covering part. The passive component is disposed at an end of the transparent tube body, and electrically connected to the transparent tube body. The covering part is electrically connected to the passive component and has a receptacle. The end of the transparent tube body is sheathed by the covering part such that the passive component is accommodated within the receptacle. The inverter is electrically connected to the covering part of the integrated lamp for driving illumination of the integrated lamp.
The above contents of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only. It is not intended to be exhaustive or to be limited to the precise form disclosed.
The passive components 22 are disposed on bilateral sides of the transparent tube body 21. In this embodiment, the passive components 22 are disc-type ceramic capacitors. Each passive component 22 has multiple electrodes 221, a first conductive terminal 222 and a second conductive terminal 223. The first conductive terminal 222 and the second conductive terminal 223 are opposed to each other with respect to the disc-type ceramic capacitor 22 and connected to corresponding electrodes 221. In addition, the first conductive terminal 222 is electrically connected to a corresponding conductive part 211 of the transparent tube body 21 such that the disc-type ceramic capacitor 22 is electrically connected to the transparent tube body 21.
The covering parts 23 are made of conductive materials such as metallic materials. The covering parts 23 are sheathed around both ends of the transparent tube body 21. Each covering part 23 has a receptacle 231 and an opening 232. The opening 232 faces a corresponding second conductive terminal 223 of the disc-type ceramic capacitors 22. When the covering parts 23 are sheathed around both ends of the transparent tube body 21, the disc-type ceramic capacitors 22 are accommodated within the receptacles 231 of covering parts 23 and the second conductive terminals 223 pierce through corresponding openings 232. In some embodiments, the portions of the second conductive terminals 223 that pierce through the openings 232 are coated with a soldering material 24. Via the soldering material 24, the second conductive terminals 223 are electrically connected to the covering parts 23. In addition, the disc-type ceramic capacitors 22 are fixed in the receptacles 231 of the covering parts 23 via the soldering material 24.
The passive component used in the integrated lamp of the present invention is not limited to the disc-type ceramic capacitor 22 as shown in
The passive component used in the integrated lamp of the present invention is not limited to the capacitor as described in
In this embodiment, the substrates 62 are made of conductive materials such as metallic materials. The substrates 62 are disposed within the main body 60 and at two opposite sides of the main body 60. Moreover, corresponding to the covering parts 23 of the integrated lamps 2, multiple engaging structures 621 are formed in/on the surface of the substrates 62. Likewise, the engaging structures 621 are made of conductive materials such as metallic materials. When the covering parts 23 are engaged with the engaging structures 621, the integrated lamps 2 are firmly fixed on the substrates 62 and within the main body 60 in parallel. In addition, when the covering parts 23 are engaged with the engaging structures 621, the second conductive terminals 223 of the passive components piercing through corresponding openings 232 of the covering parts 23 are also electrically connected to the corresponding engaging structures 621. Since the engaging structures 621 are electrically connected with the substrates 62, the integrated lamps 2 are electrically connected with the substrates 62 through the engaging structures 621.
In some embodiments, the substrates 62 are circuit boards. The circuit boards have trace patterns or conductive wires thereon to be electrically connected to the engaging structures 621. Via the engaging structures 621, the integrated lamps 2 are electrically connected with the circuit boards.
Please refer to
Since the integrated lamps 2 have respective passive components, the currents passing through the integrated lamps 2 of the LCD device 6 are identical through collective operations of the passive components. In addition, since the integrated lamps 2 are engaged with the engaging structures 621 of the substrates 62, the process of assembling the integrated lamps 2 is simplified in comparison with the conventional technology of welding passive components on the substrates. In other words, the fabricating process of the LCD device 6 is simplified and thus the throughput is enhanced.
In this embodiment, the engaging structures 631 of the inverter 63 are made of conductive materials such as metallic materials. When the covering parts 23 are engaged with the engaging structures 631 of the inverter 63, the inverter 63 is electrically connected with the integrated lamps 2 through the engaging structures 631, thereby controlling and driving illumination of the integrated lamps 2. In addition, since the LCD device 6 of this embodiment has only one substrate 62 and the inverter 63 is disposed within the main body 61, no jumper wire is required to electrically connect the inverter 63 with the integrated lamps 2 and the fabricating cost is reduced.
From the above description, the integrated lamp of the present invention is fabricated by integrating at least a passive component within a transparent tube body and electrically connecting to a covering part. Due to the characteristics of the passive component, the currents passing through all of the integrated lamps of the power source system are substantially equal. Moreover, when the covering parts of the integrated lamps are engaged with the engaging structures of the substrate or the inverter, the integrated lamps including the passive components can be easily mounted on the flat panel display device. Since the passive components are no longer welded on the substrates, the process of fabricating the flat panel display device is simplified and the throughput is enhanced.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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097130281 | Aug 2008 | TW | national |