1. Field of the Invention
The present invention relates to a coupled lamp driving device, and particularly to a coupled lamp driving device capable of maintaining a uniform luminance among lamps used in a liquid crystal display (LCD) backlight source.
2. Description of the Prior Art
Referring to
Referring to
In the above mentioned device, the leakage transformer operates by means of the leakage filtering and resonance at its secondary side. In this regard, the leakage transformer requires high leakage and high number of coils to operate. However, the higher leakage means the coupling effect is poorer. Further, the high number of the coils increase an internal resistance of the coils of the leakage transformer. Both the higher leakage and coil number contribute to a power loss and thus result in a high temperature. Further, if is it the case that a multiple of leakage transformers are used in parallel, the error of each of the leakage transformer has to be seriously controlled, so that the output of the lamps can be balanced.
Therefore, the leakage transformer has to be considered in its specification and cost in the design of the conventional lamp driving device, and thus the leakage transformer will often form a limitation in the conventional lamp driving device.
In view of the above, there exist many disadvantages in the prior art and am improved lamp driving device has to be proposed.
After years of research and studies, the inventor of the present invention set forth a coupled lamp driving device, which is taken as the present invention.
It is, therefore, an object of the present invention to provide a coupled lamp driving device capable of effectively balancing a plurality of lamps and thus maintaining a uniform luminance over the lamps.
It is another object of the present invention to provide a coupled lamp driving device, in which a coupled transformer is used. Since it is not required to have a leakage of the transformer to filter owing to the provision of the coupled transformer, the larger the coupling coefficient is, the efficiency the better. Meanwhile, a number of coils the transformer needs not to be large and will be feasible as long as the magnetic flux of the transformer is acceptable. Since the fewer coils results in the less internal resistance, the overall efficiency can be enhanced.
It is still another object of the present invention to provide a coupled lamp driving device, which has an improved stability and lifetime and a lowered cost, dimension of the transformer spacial arrangement.
In accordance with the present invention, a coupled lamp driving device comprises an alternating current (AC) power supply providing a sine-wave to two ends of each of a plurality of coupled transformers each having a primary side connected to each other at a primary side thereof and a secondary side; the plurality of coupled transformers connected to each other at the primary side thereof directing the sine-wave signal from the AC power supply to the two sides of the primary side of each of the coupled transformers and connected to an end of one of a plurality of lamps at one end of the secondary side thereof and connected to a reference level at the other end thereof; and the plurality of lamps each having the other end connected to a reference level. Since the primary sides of the coupled transformers are connected in series, a current flown on the primary side of each of the coupled transformers is equal to each other, respectively. Further, since the numbers of coils of the primary and secondary sides, respectively, are equal to each other, currents flown on the secondary side of each of the coupled transformers are also the same. Therefore, the luminance of each of the plurality of lamps can be maintained uniformly.
The drawings disclose illustrative embodiments of the present invention which serve to exemplify the various advantages and objects hereof, and are as follows:
Referring to
Each of a plurality of lamps 33 has a high voltage end connected to one end of the secondary side of a respective one of the coupled transformers 32, and a low voltage end connected to a reference level.
Referring to
A square-wave controller 46 is used to output a control signal to the square-wave switch 42.
Each of the plurality of coupled transformers 45 is connected to each other at the primary side thereof and directs the sine-wave signal obtained through the inductor 43 and the capacitor 44 to the two ends of the primary side of each of the plurality of coupled transformers 45 and connected to one end, a high voltage end, of a respective of a plurality of lamps at one end of the secondary side thereof and connected to a reference level at the other end thereof. Since the coupled transformers 45 are connected in series at their primary sides, a current flown on the primary side of each of the plurality of coupled transformers 45 is equal to each other. Further, since the coil numbers provided at the primary and secondary of each of the coupled transformers 45 are the same, an output current flown on the secondary side of each of the coupled transformers 45 is equal to each other.
The plurality of lamps 45 each have the other end, a low voltage end, connected to a reference level.
Referring to
A square-wave switch 52 is used to receive the DC power, convert the DC power into a square-wave signal and then output the square-wave signal.
The driving transformer 53 is used to receive the square-wave signal from the square-wave switch 52 at a primary side thereof. Between the square-wave switch 52 and the driving transformer 53, a capacitor 58 may be disposed for blocking a DC noise. Further, the driving transformer 53 converts the square-wave signal into a sine-wave signal through a leakage thereof (not shown) and a capacitor 54, and provides the sine-wave signal to two ends of each of a plurality of coupled transformers 55 connected to each other at a primary side thereof.
A square-wave controller 56 is used to output a control signal to the square-wave switch 52.
The plurality of coupled transformers 55 connected to each other at the primary side is used to direct the sine-wave signal obtained through the driving transformer 53 and the capacitor 54 to the two ends of the primary side of each of the plurality of coupled transformers 55 and connected to an end of one of a plurality of lamps 57 at one end of the secondary side thereof and connected to a reference level at the other end thereof. Since the primary sides of the coupled transformer 55 are connected in series, a current flown on each of the coupled transformers are equal to each other, respectively. Further, since the numbers of coils of the primary and secondary sides of the coupled transformer 55, respectively, are equal to each other, currents flown on the secondary side of each of the coupled transformers 55 are also the same. Therefore, the luminance of each of the plurality of lamps 57 can be maintained uniformly.
The plurality of lamps each having the other end connected to a reference level.
Compared with the prior art, the coupled lamp driving device has the following advantages. 1. The plurality of lamps can be effectively balanced in the coupled driving device of the present invention, achieving the goal of maintaining a uniform luminance over the lamps. 2. Since it is not required to have the leakage of the transformer to filter owing to the provision of the coupled transformer in the present invention, the larger the coupling coefficient is, the efficiency the better. Meanwhile, the coil number of the transformer needs not to be large and will be feasible as long as the magnetic flux of the transformer is acceptable. Since the fewer coils results in the less internal resistance, the overall efficiency can be enhanced. 3. The coupled lamp driving device has an improved stability and lifetime and a lowered cost, dimension of the transformer spacial arrangement.
Many changes and modifications in the above described embodiment of the invention can, of course, be carried out without departing from the scope thereof. Accordingly, to promote the progress in science and the useful arts, the invention is disclosed and is intended to be limited only by the scope of the appended claims.