1. Field of The Invention
The present invention relates to a voltage multiple dimming control apparatus, more particularly to, a voltage multiple dimming control apparatus for correctly generating pulse width modulation signals without using an analog to digital converter.
2. Description of The Prior Arts
Nowadays, LED plays a role of LCD backlight module, gradually, to replace the CCFL backlight module. And the dimming characteristics of the backlight module can provide a better viewing and power consumption saving. Compared with CCFL, LED can offer better dimming characteristics. Brightness for backlight, such as environmental light source sensing or color contents, for instance, can be manipulated in different approaches. Generally speaking, all of the various control approaches should be combined in order to reach an optimal value.
Refer to
The aforesaid pulse width modulation signal passes a low-pass filter thus its high-frequency ripples are filtered and its DC signal will be converted to a plurality of digital codes by an analog to digital converter 5.
The aforesaid digital codes should be digital in term of serial format or parallel format, which comprises a plurality of bits for signal dimming control. And the signal, overall speaking, will be used for further processing.
Also, two of the aforesaid dimming controls will be in process, and one of the processes is to multiplication of the two controls in order to obtain the desirable dimming rate. Unfortunately, a digital multiplier 6 will occupy a huge space and further consume a lot of power. Exemplarily, a multiplier characterized in 8 bits ×8 bits, requires at least 64 adders.
Accordingly, in view of the above drawbacks, it is an imperative that a voltage multiple dimming control apparatus is designed to generating a pulse width modulation signal without the cost of an analog to digital converter so as to solve the drawbacks as the foregoing and to further reduce the circuit die size and power consumption.
In view of the disadvantages of prior art, the primary object of the present invention relates to a voltage multiple dimming control apparatus, characterized in correct pulse width modulation without using an analog to digital converter.
According to one aspect of the present invention, one skilled in the art can come out a voltage multiple dimming control apparatus, comprising: a pulse width modulating signal input terminal, for inputting a pulse width modulating signal; a digital signal input terminal, for inputting a digital signal; a power signal to analog signal unit, for receiving the pulse width modulating signal and converting the same into a first analog signal and a second analog signal, where the second analog signal is smaller than the first analog signal in their references; a digital to analog unit, for receiving the digital signal and converting the same into a third analog signal and a fourth analog signal, where the fourth analog signal is smaller than the third analog signal in their references; a first multiplying unit, for multiplying the first analog signal with the third analog signal so as to generate a first product; a second multiplying unit, for multiplying the second analog signal with the fourth analog signal so as to generate a second product; a voltage slope generating unit, for receiving a frequency setup signal to generate a sloped voltage; and a judging unit, for generating an on-or-off signal or a reset signal based upon said sloped voltage, said first product, and said second product, where the on-or-off signal On/Off is used for turning on or turning off a dimming output, and said reset signal is for resetting the voltage slope generating unit.
Hence, the present invention discloses an approach devoid of the conventional analog to digital converter, which an correctly generate pulse width modulating signal so that the whole circuit utilization die size and the operating power can be further reduced.
Further scope of applicability of the present application will become more apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become readily understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention and wherein:
The following descriptions are of exemplary embodiments only, and are not intended to limit the scope, applicability, or configuration of the invention in any way. Rather, the following description provides a convenient illustration for implementing exemplary embodiments of the invention. Various changes to the described embodiments may be made in the function and arrangement of the elements described. For your esteemed members of reviewing committee to further understand and recognize the fulfilled functions and structural characteristics of the invention, several exemplary embodiments cooperating with detailed description are presented as the follows.
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As the follows, the first product and the second product are further illustrated in the preferred embodiment in the present invention, together with how to judge the time frame for generating the on-or-off signal or the aforesaid Reset. Please refer to
The accurate current Ifreq will be mirrored and to charge a capacitor Cramp so as to generate the sloped voltage Vramp. While the sloped voltage Vramp is greater than the first product, the Vramp will be repeatedly and periodically reset so as to generate a periodic saw-tooth waveform, and its frequency can be expressed as Ifreq/(Cramp*the first analog signal*the third analog signal) . . . (2)
From the substitution between the equation (1) and the equation (2), the skilled artisan can have: its frequency can be also express as: Vbg/Rfreq*(Cramp*the first analog signal*the third analog signal).
Further in view of the dimming loading efficiency, that is, the second product/the first product . . . (4) the skilled artisan can control the desirable brightness.
From the aforesaid statement, the present invention can be clearly understood as providing a voltage multiple dimming control apparatus, without using any analog to digital converter, which is still able capable of generating a pulse width modulating signal whilst the circuit die size of the whole apparatus and power consumption can be reduced.
The invention being thus aforesaid, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.
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