The present invention relates to a backlight module, and more particularly to a backlight module that efficiently reduce power loss in internal constant current control circuit.
A light-emitting diode (LED) has advantages of power-saving, long lifetime and small size, so that using light emitting diodes as a backlight source is already the current trend of the technological development of liquid crystal display (LCD). However, the light emitting diodes still have many application problems needed to be overcome.
Means for applying light emitting diodes to backlight module are generally sorted into edge-type and direct-type. With reference to
However, the constant current control circuit 92 usually has different power loss on each of the light strings 90. This is because cost of classifying the light emitting diodes 900 according to device characteristic is too high, testing and classification on the forward voltage of each of the light emitting diodes 900 are generally not performed when arranging the light emitting diodes 900. With reference to
To overcome this problem, although each of the light string 90 is available to independently use one said DC/DC converter 91, so as to be provided different driving voltages according to forward-voltage characteristic of each said light string 90, such method will highly increase the cost of using the DC/DC converters 91 and does not match practical considerations in production cost.
Hence, it is necessary to provide a backlight module to overcome the problems existing in the conventional technology.
A primary object of the invention is to provide a backlight module which comprises light strings that reduce the difference in power loss on a constant current control circuit by the arrangement of light emitting diodes and thus efficiently reduce overall power loss of the constant current control circuit.
A secondary object of the present invention is to provide a backlight module which confirms the forward voltages of the light emitting diodes of each light string are distributed in the same voltage range when averagely dividing the light emitting diodes into the light strings, so as to diminish the difference in power loss that the light strings consume on the constant current control circuit.
To achieve the above object, the present invention provides a backlight module which comprises:
an LED module having a plurality of light emitting diodes, wherein the light emitting diodes are averagely divided into a plurality of light strings, wherein the light emitting diodes of each of the light strings are connected in series and each of the light strings has a first connecting end and a second connecting end, forward voltages of the light emitting diodes are between a minimum forward-voltage value and a maximum forward-voltage value and each of the light strings at least has one first light emitting diode and one second light emitting diode, wherein the first light emitting diode has the minimum forward-voltage value, the second light emitting diode has the maximum forward-voltage value;
a DC/DC converter connected to the first connecting ends of the light strings; and
a constant current control circuit connected to the second connecting ends of the light strings.
In one embodiment of the present invention, the forward voltages of the light emitting diodes of each of the light strings increase progressively from the minimum forward-voltage value to the maximum forward-voltage value in turn.
In one embodiment of the present invention, average forward-voltages of the light emitting diodes of each of the light strings are equal.
In one embodiment of the present invention, the light emitting diodes are arranged on a plane to form a light emitting surface of the backlight module.
In one embodiment of the present invention, the backlight module is a direct-type backlight module.
Furthermore, to achieve another above object, the present invention provides a backlight module which comprises an LED module, wherein the LED module has a plurality of light emitting diodes are averagely divided into a plurality of light strings, wherein the light emitting diodes of each of the light strings are connected in series, wherein forward voltages of the light emitting diodes are between a minimum forward-voltage value and a maximum forward-voltage value and each of the light strings at least has one first light emitting diode and one second light emitting diode, wherein the first light emitting diode has the minimum forward-voltage value, the second light emitting diode has the maximum forward-voltage value.
In one embodiment of the present invention, the forward voltages of the light emitting diodes of each of the light strings increase progressively from the minimum forward-voltage value to the maximum forward-voltage value in turn.
In one embodiment of the present invention, average forward-voltages of the light emitting diodes of each of the light strings are equal.
In one embodiment of the present invention, the light emitting diodes are arranged on a plane to form a light emitting surface of the backlight module.
In one embodiment of the present invention, the backlight module is a direct-type backlight module.
In one embodiment of the present invention, the light strings are connected between a DC/DC converter and a constant current control circuit.
The foregoing objects, features and advantages adopted by the present invention can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings.
With reference to
The LED module has a plurality of light emitting diodes 100, the light emitting diodes are arranged on a plane to form a light emitting surface, hence the present may be a direct-type backlight module. The light emitting diodes 100 are averagely divided into a plurality of light strings 10, wherein the light emitting diodes 100 of each of the light strings 10 are connected in series, and each of the light strings 10 has a first connecting end and a second connecting end. Forward voltages of the light emitting diodes 100 are between a minimum forward-voltage value and a maximum forward-voltage value, wherein each light string 10 at least has one first light emitting diode 100A and one second light emitting diode 100B, wherein the first light emitting diode 100A has the minimum forward-voltage value, the second light emitting diode 100B has the maximum forward-voltage value. Preferably, the forward voltages of the light emitting diodes 100 of each of the light strings 10 increase progressively from the minimum forward-voltage value to the maximum forward-voltage value in turn, and average forward-voltages of the light emitting diodes 100 of each of the light strings 10 are equal.
For this embodiment, with reference to
The DC/DC converter 20 is connected to the first connecting ends of the light strings 10 to convert a DC power to a proper dc-voltage-level for each of the light strings 10 to use.
The constant current control circuit 30 is connected to the second connecting ends of the light strings 10 to control current flowing through each of the light strings 10 to maintain said current constant.
The LED module of the backlight module of the present invention mainly comprises a plurality of light emitting diodes 100 which are averagely divided into a plurality light string 10, wherein forward voltages of the light emitting diodes 100 of each of the light string 10 are between a maximum forward-voltage value and a minimum forward-voltage value, so as to diminish the difference of power loss that each of the light strings 10 consumes on the constant current control circuit 30.
For the embodiment shown in
{(3.5−3.5)+(3.5−3.4)+(3.5−3.3)+(3.5−3.2)+(3.5−3.1)}×0.12 =0.12 W
As mentioned above, with the same current condition, compared with the power loss of 0.24 W that foregoing conventional backlight module may consume, the preferred embodiment of the present invention in
The present invention has been described with a preferred embodiment thereof and it is understood that many changes and modifications to the described embodiment can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 201010245678.8 | Jul 2010 | CN | national |
| Filing Document | Filing Date | Country | Kind | 371c Date |
|---|---|---|---|---|
| PCT/CN10/76533 | 9/1/2010 | WO | 00 | 12/2/2010 |